// Copyright 2014 Citra Emulator Project // Licensed under GPLv2 or any later version // Refer to the license.txt file included. #pragma once #include "common/common_types.h" #include "core/arm/skyeye_common/arm_regformat.h" namespace Core { struct ThreadContext; } /// Generic ARM11 CPU interface class ARM_Interface : NonCopyable { public: ARM_Interface() { num_instructions = 0; } virtual ~ARM_Interface() { } /** * Runs the CPU for the given number of instructions * @param num_instructions Number of instructions to run */ void Run(int num_instructions) { ExecuteInstructions(num_instructions); this->num_instructions += num_instructions; } /// Step CPU by one instruction void Step() { Run(1); } /** * Set the Program Counter to an address * @param addr Address to set PC to */ virtual void SetPC(u32 addr) = 0; /* * Get the current Program Counter * @return Returns current PC */ virtual u32 GetPC() const = 0; /** * Get an ARM register * @param index Register index (0-15) * @return Returns the value in the register */ virtual u32 GetReg(int index) const = 0; /** * Set an ARM register * @param index Register index (0-15) * @param value Value to set register to */ virtual void SetReg(int index, u32 value) = 0; /** * Get the current CPSR register * @return Returns the value of the CPSR register */ virtual u32 GetCPSR() const = 0; /** * Set the current CPSR register * @param cpsr Value to set CPSR to */ virtual void SetCPSR(u32 cpsr) = 0; /** * Gets the value stored in a CP15 register. * @param reg The CP15 register to retrieve the value from. * @return the value stored in the given CP15 register. */ virtual u32 GetCP15Register(CP15Register reg) = 0; /** * Stores the given value into the indicated CP15 register. * @param reg The CP15 register to store the value into. * @param value The value to store into the CP15 register. */ virtual void SetCP15Register(CP15Register reg, u32 value) = 0; /** * Advance the CPU core by the specified number of ticks (e.g. to simulate CPU execution time) * @param ticks Number of ticks to advance the CPU core */ virtual void AddTicks(u64 ticks) = 0; /** * Initializes a CPU context for use on this CPU * @param context Thread context to reset * @param stack_top Pointer to the top of the stack * @param entry_point Entry point for execution * @param arg User argument for thread */ virtual void ResetContext(Core::ThreadContext& context, u32 stack_top, u32 entry_point, u32 arg) = 0; /** * Saves the current CPU context * @param ctx Thread context to save */ virtual void SaveContext(Core::ThreadContext& ctx) = 0; /** * Loads a CPU context * @param ctx Thread context to load */ virtual void LoadContext(const Core::ThreadContext& ctx) = 0; /// Prepare core for thread reschedule (if needed to correctly handle state) virtual void PrepareReschedule() = 0; /// Getter for num_instructions u64 GetNumInstructions() { return num_instructions; } s64 down_count; ///< A decreasing counter of remaining cycles before the next event, decreased by the cpu run loop protected: /** * Executes the given number of instructions * @param num_instructions Number of instructions to executes */ virtual void ExecuteInstructions(int num_instructions) = 0; private: u64 num_instructions; ///< Number of instructions executed };