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| 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file | 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a | 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 // Declares a Simulator for MIPS instructions if we are not generating a native | 5 // Declares a Simulator for MIPS instructions if we are not generating a native |
| 6 // MIPS binary. This Simulator allows us to run and debug MIPS code generation | 6 // MIPS binary. This Simulator allows us to run and debug MIPS code generation |
| 7 // on regular desktop machines. | 7 // on regular desktop machines. |
| 8 // Dart calls into generated code by "calling" the InvokeDartCode stub, | 8 // Dart calls into generated code by "calling" the InvokeDartCode stub, |
| 9 // which will start execution in the Simulator or forwards to the real entry | 9 // which will start execution in the Simulator or forwards to the real entry |
| 10 // on a MIPS HW platform. | 10 // on a MIPS HW platform. |
| (...skipping 17 matching lines...) Expand all Loading... |
| 28 ~Simulator(); | 28 ~Simulator(); |
| 29 | 29 |
| 30 // The currently executing Simulator instance, which is associated to the | 30 // The currently executing Simulator instance, which is associated to the |
| 31 // current isolate | 31 // current isolate |
| 32 static Simulator* Current(); | 32 static Simulator* Current(); |
| 33 | 33 |
| 34 // Accessors for register state. | 34 // Accessors for register state. |
| 35 void set_register(Register reg, int32_t value); | 35 void set_register(Register reg, int32_t value); |
| 36 int32_t get_register(Register reg) const; | 36 int32_t get_register(Register reg) const; |
| 37 | 37 |
| 38 // Accessors for floating point register state. |
| 39 void set_fregister(FRegister freg, double value); |
| 40 double get_fregister(FRegister) const; |
| 41 |
| 42 // Accessor for the pc. |
| 43 int32_t get_pc() const { return pc_; } |
| 44 |
| 38 // Accessors for hi, lo registers. | 45 // Accessors for hi, lo registers. |
| 39 void set_hi_register(int32_t value) { hi_reg_ = value; } | 46 void set_hi_register(int32_t value) { hi_reg_ = value; } |
| 40 void set_lo_register(int32_t value) { lo_reg_ = value; } | 47 void set_lo_register(int32_t value) { lo_reg_ = value; } |
| 41 int32_t get_hi_register() const { return hi_reg_; } | 48 int32_t get_hi_register() const { return hi_reg_; } |
| 42 int32_t get_lo_register() const { return lo_reg_; } | 49 int32_t get_lo_register() const { return lo_reg_; } |
| 43 | 50 |
| 44 // Accessor to the internal simulator stack top. | 51 // Accessor to the internal simulator stack top. |
| 45 uword StackTop() const; | 52 uword StackTop() const; |
| 46 | 53 |
| 47 // Call on program start. | 54 // Call on program start. |
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| 61 // the ra is set to this value on transition from native C code to | 68 // the ra is set to this value on transition from native C code to |
| 62 // simulated execution, so that the simulator can "return" to the native | 69 // simulated execution, so that the simulator can "return" to the native |
| 63 // C code. | 70 // C code. |
| 64 static const uword kEndSimulatingPC = -1; | 71 static const uword kEndSimulatingPC = -1; |
| 65 | 72 |
| 66 // Special registers for the results of div, divu. | 73 // Special registers for the results of div, divu. |
| 67 int32_t hi_reg_; | 74 int32_t hi_reg_; |
| 68 int32_t lo_reg_; | 75 int32_t lo_reg_; |
| 69 | 76 |
| 70 int32_t registers_[kNumberOfCpuRegisters]; | 77 int32_t registers_[kNumberOfCpuRegisters]; |
| 78 double fregisters_[kNumberOfFRegisters]; |
| 71 uword pc_; | 79 uword pc_; |
| 72 | 80 |
| 73 // Simulator support. | 81 // Simulator support. |
| 74 char* stack_; | 82 char* stack_; |
| 75 int icount_; | 83 int icount_; |
| 76 bool delay_slot_; | 84 bool delay_slot_; |
| 77 | 85 |
| 86 // Registered breakpoints. |
| 87 Instr* break_pc_; |
| 88 int32_t break_instr_; |
| 89 |
| 78 // Illegal memory access support. | 90 // Illegal memory access support. |
| 79 static bool IsIllegalAddress(uword addr) { | 91 static bool IsIllegalAddress(uword addr) { |
| 80 return addr < 64*1024; | 92 return addr < 64*1024; |
| 81 } | 93 } |
| 94 void HandleIllegalAccess(uword addr, Instr* instr); |
| 95 |
| 96 // Read and write memory. |
| 97 void UnalignedAccess(const char* msg, uword addr, Instr* instr); |
| 82 | 98 |
| 83 bool OverflowFrom(int32_t alu_out, | 99 bool OverflowFrom(int32_t alu_out, |
| 84 int32_t left, | 100 int32_t left, |
| 85 int32_t right, | 101 int32_t right, |
| 86 bool addition); | 102 bool addition); |
| 87 | 103 |
| 88 void set_pc(uword value) { pc_ = value; } | 104 void set_pc(uword value) { pc_ = value; } |
| 89 | 105 |
| 90 void Format(Instr* instr, const char* format); | 106 void Format(Instr* instr, const char* format); |
| 91 | 107 |
| 92 inline int8_t ReadB(uword addr); | 108 inline int8_t ReadB(uword addr); |
| 93 inline uint8_t ReadBU(uword addr); | 109 inline uint8_t ReadBU(uword addr); |
| 94 inline int16_t ReadH(uword addr, Instr* instr); | 110 inline int16_t ReadH(uword addr, Instr* instr); |
| 95 inline uint16_t ReadHU(uword addr, Instr *instr); | 111 inline uint16_t ReadHU(uword addr, Instr *instr); |
| 96 inline int ReadW(uword addr, Instr* instr); | 112 inline int ReadW(uword addr, Instr* instr); |
| 97 | 113 |
| 98 inline void WriteB(uword addr, uint8_t value); | 114 inline void WriteB(uword addr, uint8_t value); |
| 99 inline void WriteH(uword addr, uint16_t value, Instr* isntr); | 115 inline void WriteH(uword addr, uint16_t value, Instr* isntr); |
| 100 inline void WriteW(uword addr, int value, Instr* instr); | 116 inline void WriteW(uword addr, int value, Instr* instr); |
| 101 | 117 |
| 102 void DecodeSpecial(Instr* instr); | 118 void DecodeSpecial(Instr* instr); |
| 103 void DecodeSpecial2(Instr* instr); | 119 void DecodeSpecial2(Instr* instr); |
| 104 void DecodeSpecial3(Instr *instr); | |
| 105 void InstructionDecode(Instr* instr); | 120 void InstructionDecode(Instr* instr); |
| 106 | 121 |
| 107 void Execute(); | 122 void Execute(); |
| 108 void ExecuteDelaySlot(); | 123 void ExecuteDelaySlot(); |
| 124 |
| 125 friend class SimulatorDebugger; |
| 109 }; | 126 }; |
| 110 | 127 |
| 111 } // namespace dart | 128 } // namespace dart |
| 112 | 129 |
| 113 #endif // VM_SIMULATOR_MIPS_H_ | 130 #endif // VM_SIMULATOR_MIPS_H_ |
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