GSP: Cleaned up command buffer decoding.
GSP: Cleaned up code and added additional comments. GSP: Removed unnecessary TODO comment. GSP: Changed u32 iterators in TriggerCmdReqQueue to unsigned.
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36fd1c169e
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cad2f21985
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@ -23,21 +23,23 @@ GraphicsDebugger g_debugger;
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namespace GSP_GPU {
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namespace GSP_GPU {
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Handle g_event = 0;
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Handle g_interrupt_event = 0; ///< Handle to event triggered when GSP interrupt has been signalled
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Handle g_shared_memory = 0;
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Handle g_shared_memory = 0; ///< Handle to GSP shared memorys
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u32 g_thread_id = 1; ///< Thread index into interrupt relay queue, 1 is arbitrary
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u32 g_thread_id = 1;
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/// Gets a pointer to a thread command buffer in GSP shared memory
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static inline u8* GetCommandBuffer(u32 thread_id) {
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if (0 == g_shared_memory)
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return nullptr;
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/// Gets a pointer to the start (header) of a command buffer in GSP shared memory
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return Kernel::GetSharedMemoryPointer(g_shared_memory,
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static inline u8* GetCmdBufferPointer(u32 thread_id, u32 offset=0) {
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0x800 + (thread_id * sizeof(CommandBuffer)));
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if (0 == g_shared_memory) return nullptr;
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return Kernel::GetSharedMemoryPointer(g_shared_memory, 0x800 + (thread_id * 0x200) + offset);
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}
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}
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/// Gets a pointer to the start (header) of a command buffer in GSP shared memory
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/// Gets a pointer to the interrupt relay queue for a given thread index
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static inline InterruptQueue* GetInterruptQueue(u32 thread_id) {
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static inline InterruptRelayQueue* GetInterruptRelayQueue(u32 thread_id) {
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return (InterruptQueue*)Kernel::GetSharedMemoryPointer(g_shared_memory, sizeof(InterruptQueue) * thread_id);
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return (InterruptRelayQueue*)Kernel::GetSharedMemoryPointer(g_shared_memory,
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sizeof(InterruptRelayQueue) * thread_id);
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}
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}
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/// Write a GSP GPU hardware register
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/// Write a GSP GPU hardware register
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@ -111,15 +113,15 @@ void ReadHWRegs(Service::Interface* self) {
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void RegisterInterruptRelayQueue(Service::Interface* self) {
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void RegisterInterruptRelayQueue(Service::Interface* self) {
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u32* cmd_buff = Service::GetCommandBuffer();
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u32* cmd_buff = Service::GetCommandBuffer();
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u32 flags = cmd_buff[1];
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u32 flags = cmd_buff[1];
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g_event = cmd_buff[3];
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g_interrupt_event = cmd_buff[3];
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g_shared_memory = Kernel::CreateSharedMemory("GSPSharedMem");
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g_shared_memory = Kernel::CreateSharedMemory("GSPSharedMem");
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_assert_msg_(GSP, (g_event != 0), "handle is not valid!");
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_assert_msg_(GSP, (g_interrupt_event != 0), "handle is not valid!");
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cmd_buff[2] = g_thread_id++; // ThreadID
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cmd_buff[2] = g_thread_id++; // ThreadID
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cmd_buff[4] = g_shared_memory; // GSP shared memory
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cmd_buff[4] = g_shared_memory; // GSP shared memory
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Kernel::SignalEvent(GSP_GPU::g_event); // TODO(bunnei): Is this correct?
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Kernel::SignalEvent(g_interrupt_event); // TODO(bunnei): Is this correct?
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}
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}
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/**
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/**
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@ -127,7 +129,7 @@ void RegisterInterruptRelayQueue(Service::Interface* self) {
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* @param interrupt_id ID of interrupt that is being signalled
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* @param interrupt_id ID of interrupt that is being signalled
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*/
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*/
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void SignalInterrupt(InterruptId interrupt_id) {
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void SignalInterrupt(InterruptId interrupt_id) {
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if (0 == GSP_GPU::g_event) {
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if (0 == g_interrupt_event) {
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WARN_LOG(GSP, "cannot synchronize until GSP event has been created!");
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WARN_LOG(GSP, "cannot synchronize until GSP event has been created!");
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return;
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return;
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}
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}
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@ -136,34 +138,26 @@ void SignalInterrupt(InterruptId interrupt_id) {
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return;
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return;
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}
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}
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for (int thread_id = 0; thread_id < 0x4; ++thread_id) {
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for (int thread_id = 0; thread_id < 0x4; ++thread_id) {
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InterruptQueue* interrupt_queue = GetInterruptQueue(thread_id);
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InterruptRelayQueue* interrupt_relay_queue = GetInterruptRelayQueue(thread_id);
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interrupt_queue->number_interrupts = interrupt_queue->number_interrupts + 1;
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interrupt_relay_queue->number_interrupts = interrupt_relay_queue->number_interrupts + 1;
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u8 next = interrupt_queue->index;
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next += interrupt_queue->number_interrupts;
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next = next % 0x34;
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interrupt_queue->slot[next] = interrupt_id;
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u8 next = interrupt_relay_queue->index;
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interrupt_queue->error_code = 0x0; // No error
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next += interrupt_relay_queue->number_interrupts;
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next = next % 0x34; // 0x34 is the number of interrupt slots
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interrupt_relay_queue->slot[next] = interrupt_id;
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interrupt_relay_queue->error_code = 0x0; // No error
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}
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}
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Kernel::SignalEvent(GSP_GPU::g_event);
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Kernel::SignalEvent(g_interrupt_event);
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}
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}
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/// Executes the next GSP command
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/// Executes the next GSP command
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void ExecuteCommand(u32 thread_id, u32 command_index) {
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void ExecuteCommand(const Command& command) {
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// Utility function to convert register ID to address
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// Utility function to convert register ID to address
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auto WriteGPURegister = [](u32 id, u32 data) {
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auto WriteGPURegister = [](u32 id, u32 data) {
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GPU::Write<u32>(0x1EF00000 + 4 * id, data);
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GPU::Write<u32>(0x1EF00000 + 4 * id, data);
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};
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};
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CmdBufferHeader* header = (CmdBufferHeader*)GetCmdBufferPointer(thread_id);
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auto& command = *(const Command*)GetCmdBufferPointer(thread_id, (command_index + 1) * 0x20);
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g_debugger.GXCommandProcessed(GetCmdBufferPointer(thread_id, 0x20 + (header->index * 0x20)));
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NOTICE_LOG(GSP, "decoding command 0x%08X", (int)command.id.Value());
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switch (command.id) {
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switch (command.id) {
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// GX request DMA - typically used for copying memory from GSP heap to VRAM
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// GX request DMA - typically used for copying memory from GSP heap to VRAM
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@ -181,7 +175,9 @@ void ExecuteCommand(u32 thread_id, u32 command_index) {
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auto& params = command.set_command_list_last;
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auto& params = command.set_command_list_last;
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WriteGPURegister(GPU::Regs::CommandProcessor + 2, params.address >> 3);
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WriteGPURegister(GPU::Regs::CommandProcessor + 2, params.address >> 3);
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WriteGPURegister(GPU::Regs::CommandProcessor, params.size >> 3);
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WriteGPURegister(GPU::Regs::CommandProcessor, params.size >> 3);
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WriteGPURegister(GPU::Regs::CommandProcessor + 4, 1); // TODO: Not sure if we are supposed to always write this .. seems to trigger processing though
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// TODO: Not sure if we are supposed to always write this .. seems to trigger processing though
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WriteGPURegister(GPU::Regs::CommandProcessor + 4, 1);
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// TODO: Move this to GPU
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// TODO: Move this to GPU
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// TODO: Not sure what units the size is measured in
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// TODO: Not sure what units the size is measured in
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@ -246,20 +242,24 @@ void ExecuteCommand(u32 thread_id, u32 command_index) {
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default:
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default:
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ERROR_LOG(GSP, "unknown command 0x%08X", (int)command.id.Value());
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ERROR_LOG(GSP, "unknown command 0x%08X", (int)command.id.Value());
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}
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}
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header->number_commands = header->number_commands - 1; // Indicates that command has completed
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}
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}
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/// This triggers handling of the GX command written to the command buffer in shared memory.
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/// This triggers handling of the GX command written to the command buffer in shared memory.
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void TriggerCmdReqQueue(Service::Interface* self) {
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void TriggerCmdReqQueue(Service::Interface* self) {
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// Iterate through each thread's command queue...
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// Iterate through each thread's command queue...
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for (u32 thread_id = 0; thread_id < 0x4; ++thread_id) {
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for (unsigned thread_id = 0; thread_id < 0x4; ++thread_id) {
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CmdBufferHeader* header = (CmdBufferHeader*)GetCmdBufferPointer(thread_id);
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CommandBuffer* command_buffer = (CommandBuffer*)GetCommandBuffer(thread_id);
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// Iterate through each command...
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// Iterate through each command...
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for (u32 command_index = 0; command_index < header->number_commands; ++command_index) {
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for (unsigned i = 0; i < command_buffer->number_commands; ++i) {
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ExecuteCommand(thread_id, command_index);
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g_debugger.GXCommandProcessed((u8*)&command_buffer->commands[i]);
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// Decode and execute command
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ExecuteCommand(command_buffer->commands[i]);
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// Indicates that command has completed
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command_buffer->number_commands = command_buffer->number_commands - 1;
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}
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}
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}
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}
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}
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}
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@ -303,7 +303,7 @@ const Interface::FunctionInfo FunctionTable[] = {
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Interface::Interface() {
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Interface::Interface() {
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Register(FunctionTable, ARRAY_SIZE(FunctionTable));
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Register(FunctionTable, ARRAY_SIZE(FunctionTable));
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g_event = 0;
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g_interrupt_event = 0;
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g_shared_memory = 0;
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g_shared_memory = 0;
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g_thread_id = 1;
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g_thread_id = 1;
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}
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}
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@ -41,8 +41,8 @@ enum class CommandId : u32 {
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SET_COMMAND_LIST_FIRST = 0x05,
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SET_COMMAND_LIST_FIRST = 0x05,
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};
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};
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/// GSP thread interrupt queue header
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/// GSP thread interrupt relay queue
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struct InterruptQueue {
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struct InterruptRelayQueue {
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union {
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union {
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u32 hex;
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u32 hex;
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@ -61,23 +61,8 @@ struct InterruptQueue {
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InterruptId slot[0x34]; ///< Interrupt ID slots
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InterruptId slot[0x34]; ///< Interrupt ID slots
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};
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};
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static_assert(sizeof(InterruptQueue) == 0x40, "InterruptQueue struct has incorrect size");
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static_assert(sizeof(InterruptRelayQueue) == 0x40,
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"InterruptRelayQueue struct has incorrect size");
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/// GSP shared memory GX command buffer header
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union CmdBufferHeader {
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u32 hex;
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// Current command index. This index is updated by GSP module after loading the command data,
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// right before the command is processed. When this index is updated by GSP module, the total
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// commands field is decreased by one as well.
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BitField<0,8,u32> index;
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// Total commands to process, must not be value 0 when GSP module handles commands. This must be
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// <=15 when writing a command to shared memory. This is incremented by the application when
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// writing a command to shared memory, after increasing this value TriggerCmdReqQueue is only
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// used if this field is value 1.
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BitField<8,8,u32> number_commands;
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};
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/// GSP command
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/// GSP command
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struct Command {
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struct Command {
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@ -117,6 +102,29 @@ struct Command {
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};
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};
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static_assert(sizeof(Command) == 0x20, "Command struct has incorrect size");
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static_assert(sizeof(Command) == 0x20, "Command struct has incorrect size");
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/// GSP shared memory GX command buffer header
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struct CommandBuffer {
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union {
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u32 hex;
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// Current command index. This index is updated by GSP module after loading the command
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// data, right before the command is processed. When this index is updated by GSP module,
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// the total commands field is decreased by one as well.
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BitField<0,8,u32> index;
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// Total commands to process, must not be value 0 when GSP module handles commands. This
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// must be <=15 when writing a command to shared memory. This is incremented by the
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// application when writing a command to shared memory, after increasing this value
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// TriggerCmdReqQueue is only used if this field is value 1.
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BitField<8,8,u32> number_commands;
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};
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u32 unk[7];
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Command commands[0xF];
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};
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static_assert(sizeof(CommandBuffer) == 0x200, "CommandBuffer struct has incorrect size");
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/// Interface to "srv:" service
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/// Interface to "srv:" service
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class Interface : public Service::Interface {
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class Interface : public Service::Interface {
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public:
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public:
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