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@ -131,6 +131,16 @@ public: |
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return HANDLE_TYPE; |
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return HANDLE_TYPE; |
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} |
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} |
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/// Gets the current status of the process |
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ProcessStatus GetStatus() const { |
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return status; |
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} |
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/// Gets the unique ID that identifies this particular process. |
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u32 GetProcessID() const { |
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return process_id; |
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} |
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/// Title ID corresponding to the process |
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/// Title ID corresponding to the process |
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u64 program_id; |
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u64 program_id; |
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@ -154,11 +164,6 @@ public: |
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u32 allowed_processor_mask = THREADPROCESSORID_DEFAULT_MASK; |
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u32 allowed_processor_mask = THREADPROCESSORID_DEFAULT_MASK; |
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u32 allowed_thread_priority_mask = 0xFFFFFFFF; |
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u32 allowed_thread_priority_mask = 0xFFFFFFFF; |
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u32 is_virtual_address_memory_enabled = 0; |
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u32 is_virtual_address_memory_enabled = 0; |
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/// Current status of the process |
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ProcessStatus status; |
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/// The ID of this process |
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u32 process_id = 0; |
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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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@ -171,6 +176,12 @@ public: |
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*/ |
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*/ |
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void Run(VAddr entry_point, s32 main_thread_priority, u32 stack_size); |
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void Run(VAddr entry_point, s32 main_thread_priority, u32 stack_size); |
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/** |
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* Prepares a process for termination by stopping all of its threads |
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* and clearing any other resources. |
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*/ |
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void PrepareForTermination(); |
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void LoadModule(SharedPtr<CodeSet> module_, VAddr base_addr); |
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void LoadModule(SharedPtr<CodeSet> module_, VAddr base_addr); |
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/////////////////////////////////////////////////////////////////////////////////////////////// |
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/////////////////////////////////////////////////////////////////////////////////////////////// |
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@ -195,6 +206,12 @@ private: |
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explicit Process(KernelCore& kernel); |
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explicit Process(KernelCore& kernel); |
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~Process() override; |
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~Process() override; |
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/// Current status of the process |
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ProcessStatus status; |
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/// The ID of this process |
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u32 process_id = 0; |
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// Memory used to back the allocations in the regular heap. A single vector is used to cover |
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// Memory used to back the allocations in the regular heap. A single vector is used to cover |
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// the entire virtual address space extents that bound the allocations, including any holes. |
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// the entire virtual address space extents that bound the allocations, including any holes. |
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// This makes deallocation and reallocation of holes fast and keeps process memory contiguous |
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// This makes deallocation and reallocation of holes fast and keeps process memory contiguous |
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