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Ben Murdochb8a8cc12014-11-26 15:28:44 +00001// Copyright 2012 the V8 project authors. All rights reserved.
2// Use of this source code is governed by a BSD-style license that can be
3// found in the LICENSE file.
Steve Blocka7e24c12009-10-30 11:49:00 +00004
5
6// Declares a Simulator for ARM instructions if we are not generating a native
7// ARM binary. This Simulator allows us to run and debug ARM code generation on
8// regular desktop machines.
9// V8 calls into generated code by "calling" the CALL_GENERATED_CODE macro,
10// which will start execution in the Simulator or forwards to the real entry
11// on a ARM HW platform.
12
13#ifndef V8_ARM_SIMULATOR_ARM_H_
14#define V8_ARM_SIMULATOR_ARM_H_
15
Ben Murdochb8a8cc12014-11-26 15:28:44 +000016#include "src/allocation.h"
Steve Blocka7e24c12009-10-30 11:49:00 +000017
John Reck59135872010-11-02 12:39:01 -070018#if !defined(USE_SIMULATOR)
19// Running without a simulator on a native arm platform.
20
21namespace v8 {
22namespace internal {
Steve Blocka7e24c12009-10-30 11:49:00 +000023
24// When running without a simulator we call the entry directly.
Ben Murdoch4a90d5f2016-03-22 12:00:34 +000025#define CALL_GENERATED_CODE(isolate, entry, p0, p1, p2, p3, p4) \
Steve Blocka7e24c12009-10-30 11:49:00 +000026 (entry(p0, p1, p2, p3, p4))
27
Ben Murdoche0cee9b2011-05-25 10:26:03 +010028typedef int (*arm_regexp_matcher)(String*, int, const byte*, const byte*,
Ben Murdochb8a8cc12014-11-26 15:28:44 +000029 void*, int*, int, Address, int, Isolate*);
Ben Murdoche0cee9b2011-05-25 10:26:03 +010030
31
32// Call the generated regexp code directly. The code at the entry address
33// should act as a function matching the type arm_regexp_matcher.
34// The fifth argument is a dummy that reserves the space used for
35// the return address added by the ExitFrame in native calls.
Ben Murdoch4a90d5f2016-03-22 12:00:34 +000036#define CALL_GENERATED_REGEXP_CODE(isolate, entry, p0, p1, p2, p3, p4, p5, p6, \
37 p7, p8) \
38 (FUNCTION_CAST<arm_regexp_matcher>(entry)(p0, p1, p2, p3, NULL, p4, p5, p6, \
39 p7, p8))
John Reck59135872010-11-02 12:39:01 -070040
Steve Blocka7e24c12009-10-30 11:49:00 +000041// The stack limit beyond which we will throw stack overflow errors in
42// generated code. Because generated code on arm uses the C stack, we
43// just use the C stack limit.
44class SimulatorStack : public v8::internal::AllStatic {
45 public:
Ben Murdoch257744e2011-11-30 15:57:28 +000046 static inline uintptr_t JsLimitFromCLimit(v8::internal::Isolate* isolate,
47 uintptr_t c_limit) {
48 USE(isolate);
Steve Blocka7e24c12009-10-30 11:49:00 +000049 return c_limit;
50 }
Steve Blockd0582a62009-12-15 09:54:21 +000051
Ben Murdoch4a90d5f2016-03-22 12:00:34 +000052 static inline uintptr_t RegisterCTryCatch(v8::internal::Isolate* isolate,
53 uintptr_t try_catch_address) {
54 USE(isolate);
Steve Blockd0582a62009-12-15 09:54:21 +000055 return try_catch_address;
56 }
57
Ben Murdoch4a90d5f2016-03-22 12:00:34 +000058 static inline void UnregisterCTryCatch(v8::internal::Isolate* isolate) {
59 USE(isolate);
60 }
Steve Blocka7e24c12009-10-30 11:49:00 +000061};
62
Ben Murdoch4a90d5f2016-03-22 12:00:34 +000063} // namespace internal
64} // namespace v8
Steve Blocka7e24c12009-10-30 11:49:00 +000065
John Reck59135872010-11-02 12:39:01 -070066#else // !defined(USE_SIMULATOR)
67// Running with a simulator.
Steve Blockd0582a62009-12-15 09:54:21 +000068
Ben Murdochb8a8cc12014-11-26 15:28:44 +000069#include "src/arm/constants-arm.h"
70#include "src/assembler.h"
71#include "src/hashmap.h"
Steve Blocka7e24c12009-10-30 11:49:00 +000072
Steve Block1e0659c2011-05-24 12:43:12 +010073namespace v8 {
74namespace internal {
Steve Blocka7e24c12009-10-30 11:49:00 +000075
Steve Block6ded16b2010-05-10 14:33:55 +010076class CachePage {
77 public:
78 static const int LINE_VALID = 0;
79 static const int LINE_INVALID = 1;
80
81 static const int kPageShift = 12;
82 static const int kPageSize = 1 << kPageShift;
83 static const int kPageMask = kPageSize - 1;
84 static const int kLineShift = 2; // The cache line is only 4 bytes right now.
85 static const int kLineLength = 1 << kLineShift;
86 static const int kLineMask = kLineLength - 1;
87
88 CachePage() {
89 memset(&validity_map_, LINE_INVALID, sizeof(validity_map_));
90 }
91
92 char* ValidityByte(int offset) {
93 return &validity_map_[offset >> kLineShift];
94 }
95
96 char* CachedData(int offset) {
97 return &data_[offset];
98 }
99
100 private:
101 char data_[kPageSize]; // The cached data.
102 static const int kValidityMapSize = kPageSize >> kLineShift;
103 char validity_map_[kValidityMapSize]; // One byte per line.
104};
105
106
Steve Blocka7e24c12009-10-30 11:49:00 +0000107class Simulator {
108 public:
Steve Block44f0eee2011-05-26 01:26:41 +0100109 friend class ArmDebugger;
Steve Blocka7e24c12009-10-30 11:49:00 +0000110 enum Register {
111 no_reg = -1,
112 r0 = 0, r1, r2, r3, r4, r5, r6, r7,
113 r8, r9, r10, r11, r12, r13, r14, r15,
114 num_registers,
115 sp = 13,
116 lr = 14,
Steve Blockd0582a62009-12-15 09:54:21 +0000117 pc = 15,
118 s0 = 0, s1, s2, s3, s4, s5, s6, s7,
119 s8, s9, s10, s11, s12, s13, s14, s15,
120 s16, s17, s18, s19, s20, s21, s22, s23,
121 s24, s25, s26, s27, s28, s29, s30, s31,
122 num_s_registers = 32,
123 d0 = 0, d1, d2, d3, d4, d5, d6, d7,
124 d8, d9, d10, d11, d12, d13, d14, d15,
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000125 d16, d17, d18, d19, d20, d21, d22, d23,
126 d24, d25, d26, d27, d28, d29, d30, d31,
127 num_d_registers = 32,
128 q0 = 0, q1, q2, q3, q4, q5, q6, q7,
129 q8, q9, q10, q11, q12, q13, q14, q15,
130 num_q_registers = 16
Steve Blocka7e24c12009-10-30 11:49:00 +0000131 };
132
Ben Murdoch257744e2011-11-30 15:57:28 +0000133 explicit Simulator(Isolate* isolate);
Steve Blocka7e24c12009-10-30 11:49:00 +0000134 ~Simulator();
135
136 // The currently executing Simulator instance. Potentially there can be one
137 // for each native thread.
Steve Block44f0eee2011-05-26 01:26:41 +0100138 static Simulator* current(v8::internal::Isolate* isolate);
Steve Blocka7e24c12009-10-30 11:49:00 +0000139
140 // Accessors for register state. Reading the pc value adheres to the ARM
141 // architecture specification and is off by a 8 from the currently executing
142 // instruction.
143 void set_register(int reg, int32_t value);
144 int32_t get_register(int reg) const;
Ben Murdoch8b112d22011-06-08 16:22:53 +0100145 double get_double_from_register_pair(int reg);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000146 void set_register_pair_from_double(int reg, double* value);
Kristian Monsen25f61362010-05-21 11:50:48 +0100147 void set_dw_register(int dreg, const int* dbl);
Steve Blocka7e24c12009-10-30 11:49:00 +0000148
Steve Blockd0582a62009-12-15 09:54:21 +0000149 // Support for VFP.
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000150 void get_d_register(int dreg, uint64_t* value);
151 void set_d_register(int dreg, const uint64_t* value);
152 void get_d_register(int dreg, uint32_t* value);
153 void set_d_register(int dreg, const uint32_t* value);
154 void get_q_register(int qreg, uint64_t* value);
155 void set_q_register(int qreg, const uint64_t* value);
156 void get_q_register(int qreg, uint32_t* value);
157 void set_q_register(int qreg, const uint32_t* value);
158
Steve Blockd0582a62009-12-15 09:54:21 +0000159 void set_s_register(int reg, unsigned int value);
160 unsigned int get_s_register(int reg) const;
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000161
162 void set_d_register_from_double(int dreg, const double& dbl) {
163 SetVFPRegister<double, 2>(dreg, dbl);
164 }
165
166 double get_double_from_d_register(int dreg) {
167 return GetFromVFPRegister<double, 2>(dreg);
168 }
169
170 void set_s_register_from_float(int sreg, const float flt) {
171 SetVFPRegister<float, 1>(sreg, flt);
172 }
173
174 float get_float_from_s_register(int sreg) {
175 return GetFromVFPRegister<float, 1>(sreg);
176 }
177
178 void set_s_register_from_sinteger(int sreg, const int sint) {
179 SetVFPRegister<int, 1>(sreg, sint);
180 }
181
182 int get_sinteger_from_s_register(int sreg) {
183 return GetFromVFPRegister<int, 1>(sreg);
184 }
Steve Blockd0582a62009-12-15 09:54:21 +0000185
Steve Blocka7e24c12009-10-30 11:49:00 +0000186 // Special case of set_register and get_register to access the raw PC value.
187 void set_pc(int32_t value);
188 int32_t get_pc() const;
189
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000190 Address get_sp() const {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000191 return reinterpret_cast<Address>(static_cast<intptr_t>(get_register(sp)));
192 }
193
Steve Blocka7e24c12009-10-30 11:49:00 +0000194 // Accessor to the internal simulator stack area.
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000195 uintptr_t StackLimit(uintptr_t c_limit) const;
Steve Blocka7e24c12009-10-30 11:49:00 +0000196
197 // Executes ARM instructions until the PC reaches end_sim_pc.
198 void Execute();
199
200 // Call on program start.
Ben Murdoch257744e2011-11-30 15:57:28 +0000201 static void Initialize(Isolate* isolate);
Steve Blocka7e24c12009-10-30 11:49:00 +0000202
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000203 static void TearDown(HashMap* i_cache, Redirection* first);
204
Steve Blocka7e24c12009-10-30 11:49:00 +0000205 // V8 generally calls into generated JS code with 5 parameters and into
206 // generated RegExp code with 7 parameters. This is a convenience function,
207 // which sets up the simulator state and grabs the result on return.
208 int32_t Call(byte* entry, int argument_count, ...);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000209 // Alternative: call a 2-argument double function.
210 void CallFP(byte* entry, double d0, double d1);
211 int32_t CallFPReturnsInt(byte* entry, double d0, double d1);
212 double CallFPReturnsDouble(byte* entry, double d0, double d1);
Steve Blocka7e24c12009-10-30 11:49:00 +0000213
Steve Blockd0582a62009-12-15 09:54:21 +0000214 // Push an address onto the JS stack.
215 uintptr_t PushAddress(uintptr_t address);
216
217 // Pop an address from the JS stack.
218 uintptr_t PopAddress();
219
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100220 // Debugger input.
221 void set_last_debugger_input(char* input);
222 char* last_debugger_input() { return last_debugger_input_; }
223
Steve Block6ded16b2010-05-10 14:33:55 +0100224 // ICache checking.
Steve Block44f0eee2011-05-26 01:26:41 +0100225 static void FlushICache(v8::internal::HashMap* i_cache, void* start,
226 size_t size);
Steve Block6ded16b2010-05-10 14:33:55 +0100227
Ben Murdochb0fe1622011-05-05 13:52:32 +0100228 // Returns true if pc register contains one of the 'special_values' defined
229 // below (bad_lr, end_sim_pc).
230 bool has_bad_pc() const;
231
Ben Murdoch257744e2011-11-30 15:57:28 +0000232 // EABI variant for double arguments in use.
233 bool use_eabi_hardfloat() {
234#if USE_EABI_HARDFLOAT
235 return true;
236#else
237 return false;
238#endif
239 }
240
Steve Blocka7e24c12009-10-30 11:49:00 +0000241 private:
242 enum special_values {
243 // Known bad pc value to ensure that the simulator does not execute
244 // without being properly setup.
245 bad_lr = -1,
246 // A pc value used to signal the simulator to stop execution. Generally
247 // the lr is set to this value on transition from native C code to
248 // simulated execution, so that the simulator can "return" to the native
249 // C code.
250 end_sim_pc = -2
251 };
252
253 // Unsupported instructions use Format to print an error and stop execution.
Steve Block1e0659c2011-05-24 12:43:12 +0100254 void Format(Instruction* instr, const char* format);
Steve Blocka7e24c12009-10-30 11:49:00 +0000255
256 // Checks if the current instruction should be executed based on its
257 // condition bits.
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000258 inline bool ConditionallyExecute(Instruction* instr);
Steve Blocka7e24c12009-10-30 11:49:00 +0000259
260 // Helper functions to set the conditional flags in the architecture state.
261 void SetNZFlags(int32_t val);
262 void SetCFlag(bool val);
263 void SetVFlag(bool val);
Ben Murdoch257744e2011-11-30 15:57:28 +0000264 bool CarryFrom(int32_t left, int32_t right, int32_t carry = 0);
Ben Murdochda12d292016-06-02 14:46:10 +0100265 bool BorrowFrom(int32_t left, int32_t right, int32_t carry = 1);
Steve Blocka7e24c12009-10-30 11:49:00 +0000266 bool OverflowFrom(int32_t alu_out,
267 int32_t left,
268 int32_t right,
269 bool addition);
270
Ben Murdoch257744e2011-11-30 15:57:28 +0000271 inline int GetCarry() {
272 return c_flag_ ? 1 : 0;
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000273 }
Ben Murdoch257744e2011-11-30 15:57:28 +0000274
Steve Blockd0582a62009-12-15 09:54:21 +0000275 // Support for VFP.
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000276 void Compute_FPSCR_Flags(float val1, float val2);
Steve Blockd0582a62009-12-15 09:54:21 +0000277 void Compute_FPSCR_Flags(double val1, double val2);
278 void Copy_FPSCR_to_APSR();
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000279 inline float canonicalizeNaN(float value);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000280 inline double canonicalizeNaN(double value);
Steve Blockd0582a62009-12-15 09:54:21 +0000281
Steve Blocka7e24c12009-10-30 11:49:00 +0000282 // Helper functions to decode common "addressing" modes
Steve Block1e0659c2011-05-24 12:43:12 +0100283 int32_t GetShiftRm(Instruction* instr, bool* carry_out);
284 int32_t GetImm(Instruction* instr, bool* carry_out);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000285 int32_t ProcessPU(Instruction* instr,
286 int num_regs,
287 int operand_size,
288 intptr_t* start_address,
289 intptr_t* end_address);
Steve Block1e0659c2011-05-24 12:43:12 +0100290 void HandleRList(Instruction* instr, bool load);
Ben Murdoch8b112d22011-06-08 16:22:53 +0100291 void HandleVList(Instruction* inst);
Steve Block1e0659c2011-05-24 12:43:12 +0100292 void SoftwareInterrupt(Instruction* instr);
Steve Blocka7e24c12009-10-30 11:49:00 +0000293
Teng-Hui Zhu3e5fa292010-11-09 16:16:48 -0800294 // Stop helper functions.
Steve Block1e0659c2011-05-24 12:43:12 +0100295 inline bool isStopInstruction(Instruction* instr);
Teng-Hui Zhu3e5fa292010-11-09 16:16:48 -0800296 inline bool isWatchedStop(uint32_t bkpt_code);
297 inline bool isEnabledStop(uint32_t bkpt_code);
298 inline void EnableStop(uint32_t bkpt_code);
299 inline void DisableStop(uint32_t bkpt_code);
300 inline void IncreaseStopCounter(uint32_t bkpt_code);
301 void PrintStopInfo(uint32_t code);
302
Steve Blocka7e24c12009-10-30 11:49:00 +0000303 // Read and write memory.
304 inline uint8_t ReadBU(int32_t addr);
305 inline int8_t ReadB(int32_t addr);
306 inline void WriteB(int32_t addr, uint8_t value);
307 inline void WriteB(int32_t addr, int8_t value);
308
Steve Block1e0659c2011-05-24 12:43:12 +0100309 inline uint16_t ReadHU(int32_t addr, Instruction* instr);
310 inline int16_t ReadH(int32_t addr, Instruction* instr);
Steve Blocka7e24c12009-10-30 11:49:00 +0000311 // Note: Overloaded on the sign of the value.
Steve Block1e0659c2011-05-24 12:43:12 +0100312 inline void WriteH(int32_t addr, uint16_t value, Instruction* instr);
313 inline void WriteH(int32_t addr, int16_t value, Instruction* instr);
Steve Blocka7e24c12009-10-30 11:49:00 +0000314
Steve Block1e0659c2011-05-24 12:43:12 +0100315 inline int ReadW(int32_t addr, Instruction* instr);
316 inline void WriteW(int32_t addr, int value, Instruction* instr);
Steve Blocka7e24c12009-10-30 11:49:00 +0000317
Kristian Monsen25f61362010-05-21 11:50:48 +0100318 int32_t* ReadDW(int32_t addr);
319 void WriteDW(int32_t addr, int32_t value1, int32_t value2);
320
Steve Blocka7e24c12009-10-30 11:49:00 +0000321 // Executing is handled based on the instruction type.
Steve Block1e0659c2011-05-24 12:43:12 +0100322 // Both type 0 and type 1 rolled into one.
323 void DecodeType01(Instruction* instr);
324 void DecodeType2(Instruction* instr);
325 void DecodeType3(Instruction* instr);
326 void DecodeType4(Instruction* instr);
327 void DecodeType5(Instruction* instr);
328 void DecodeType6(Instruction* instr);
329 void DecodeType7(Instruction* instr);
Steve Blocka7e24c12009-10-30 11:49:00 +0000330
Steve Blockd0582a62009-12-15 09:54:21 +0000331 // Support for VFP.
Steve Block1e0659c2011-05-24 12:43:12 +0100332 void DecodeTypeVFP(Instruction* instr);
333 void DecodeType6CoprocessorIns(Instruction* instr);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000334 void DecodeSpecialCondition(Instruction* instr);
Steve Blockd0582a62009-12-15 09:54:21 +0000335
Steve Block1e0659c2011-05-24 12:43:12 +0100336 void DecodeVMOVBetweenCoreAndSinglePrecisionRegisters(Instruction* instr);
337 void DecodeVCMP(Instruction* instr);
338 void DecodeVCVTBetweenDoubleAndSingle(Instruction* instr);
339 void DecodeVCVTBetweenFloatingPointAndInteger(Instruction* instr);
Steve Block6ded16b2010-05-10 14:33:55 +0100340
Steve Blocka7e24c12009-10-30 11:49:00 +0000341 // Executes one instruction.
Steve Block1e0659c2011-05-24 12:43:12 +0100342 void InstructionDecode(Instruction* instr);
Steve Blocka7e24c12009-10-30 11:49:00 +0000343
Steve Block6ded16b2010-05-10 14:33:55 +0100344 // ICache.
Steve Block44f0eee2011-05-26 01:26:41 +0100345 static void CheckICache(v8::internal::HashMap* i_cache, Instruction* instr);
346 static void FlushOnePage(v8::internal::HashMap* i_cache, intptr_t start,
347 int size);
348 static CachePage* GetCachePage(v8::internal::HashMap* i_cache, void* page);
Steve Block6ded16b2010-05-10 14:33:55 +0100349
Steve Blocka7e24c12009-10-30 11:49:00 +0000350 // Runtime call support.
Steve Block1e0659c2011-05-24 12:43:12 +0100351 static void* RedirectExternalReference(
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000352 Isolate* isolate, void* external_function,
Steve Block1e0659c2011-05-24 12:43:12 +0100353 v8::internal::ExternalReference::Type type);
Steve Blocka7e24c12009-10-30 11:49:00 +0000354
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000355 // Handle arguments and return value for runtime FP functions.
356 void GetFpArgs(double* x, double* y, int32_t* z);
Steve Blocka7e24c12009-10-30 11:49:00 +0000357 void SetFpResult(const double& result);
358 void TrashCallerSaveRegisters();
359
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000360 template<class ReturnType, int register_size>
361 ReturnType GetFromVFPRegister(int reg_index);
362
363 template<class InputType, int register_size>
364 void SetVFPRegister(int reg_index, const InputType& value);
365
Ben Murdochda12d292016-06-02 14:46:10 +0100366 void SetSpecialRegister(SRegisterFieldMask reg_and_mask, uint32_t value);
367 uint32_t GetFromSpecialRegister(SRegister reg);
368
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000369 void CallInternal(byte* entry);
370
Steve Blockd0582a62009-12-15 09:54:21 +0000371 // Architecture state.
Kristian Monsen50ef84f2010-07-29 15:18:00 +0100372 // Saturating instructions require a Q flag to indicate saturation.
373 // There is currently no way to read the CPSR directly, and thus read the Q
374 // flag, so this is left unimplemented.
Steve Blocka7e24c12009-10-30 11:49:00 +0000375 int32_t registers_[16];
376 bool n_flag_;
377 bool z_flag_;
378 bool c_flag_;
379 bool v_flag_;
380
Steve Blockd0582a62009-12-15 09:54:21 +0000381 // VFP architecture state.
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000382 unsigned int vfp_registers_[num_d_registers * 2];
Steve Blockd0582a62009-12-15 09:54:21 +0000383 bool n_flag_FPSCR_;
384 bool z_flag_FPSCR_;
385 bool c_flag_FPSCR_;
386 bool v_flag_FPSCR_;
387
Russell Brenner90bac252010-11-18 13:33:46 -0800388 // VFP rounding mode. See ARM DDI 0406B Page A2-29.
Steve Block1e0659c2011-05-24 12:43:12 +0100389 VFPRoundingMode FPSCR_rounding_mode_;
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000390 bool FPSCR_default_NaN_mode_;
Russell Brenner90bac252010-11-18 13:33:46 -0800391
Steve Blockd0582a62009-12-15 09:54:21 +0000392 // VFP FP exception flags architecture state.
393 bool inv_op_vfp_flag_;
394 bool div_zero_vfp_flag_;
395 bool overflow_vfp_flag_;
396 bool underflow_vfp_flag_;
397 bool inexact_vfp_flag_;
398
399 // Simulator support.
Steve Blocka7e24c12009-10-30 11:49:00 +0000400 char* stack_;
401 bool pc_modified_;
402 int icount_;
Steve Blocka7e24c12009-10-30 11:49:00 +0000403
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100404 // Debugger input.
405 char* last_debugger_input_;
406
Steve Block6ded16b2010-05-10 14:33:55 +0100407 // Icache simulation
Steve Block44f0eee2011-05-26 01:26:41 +0100408 v8::internal::HashMap* i_cache_;
Steve Block6ded16b2010-05-10 14:33:55 +0100409
Steve Blockd0582a62009-12-15 09:54:21 +0000410 // Registered breakpoints.
Steve Block1e0659c2011-05-24 12:43:12 +0100411 Instruction* break_pc_;
412 Instr break_instr_;
Teng-Hui Zhu3e5fa292010-11-09 16:16:48 -0800413
Steve Block44f0eee2011-05-26 01:26:41 +0100414 v8::internal::Isolate* isolate_;
415
Teng-Hui Zhu3e5fa292010-11-09 16:16:48 -0800416 // A stop is watched if its code is less than kNumOfWatchedStops.
417 // Only watched stops support enabling/disabling and the counter feature.
418 static const uint32_t kNumOfWatchedStops = 256;
419
420 // Breakpoint is disabled if bit 31 is set.
421 static const uint32_t kStopDisabledBit = 1 << 31;
422
423 // A stop is enabled, meaning the simulator will stop when meeting the
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000424 // instruction, if bit 31 of watched_stops_[code].count is unset.
425 // The value watched_stops_[code].count & ~(1 << 31) indicates how many times
Teng-Hui Zhu3e5fa292010-11-09 16:16:48 -0800426 // the breakpoint was hit or gone through.
Steve Block1e0659c2011-05-24 12:43:12 +0100427 struct StopCountAndDesc {
Teng-Hui Zhu3e5fa292010-11-09 16:16:48 -0800428 uint32_t count;
429 char* desc;
430 };
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000431 StopCountAndDesc watched_stops_[kNumOfWatchedStops];
Steve Blocka7e24c12009-10-30 11:49:00 +0000432};
433
John Reck59135872010-11-02 12:39:01 -0700434
435// When running with the simulator transition into simulated execution at this
436// point.
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000437#define CALL_GENERATED_CODE(isolate, entry, p0, p1, p2, p3, p4) \
438 reinterpret_cast<Object*>(Simulator::current(isolate)->Call( \
John Reck59135872010-11-02 12:39:01 -0700439 FUNCTION_ADDR(entry), 5, p0, p1, p2, p3, p4))
440
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000441#define CALL_GENERATED_FP_INT(isolate, entry, p0, p1) \
442 Simulator::current(isolate)->CallFPReturnsInt(FUNCTION_ADDR(entry), p0, p1)
John Reck59135872010-11-02 12:39:01 -0700443
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000444#define CALL_GENERATED_REGEXP_CODE(isolate, entry, p0, p1, p2, p3, p4, p5, p6, \
445 p7, p8) \
446 Simulator::current(isolate) \
447 ->Call(entry, 10, p0, p1, p2, p3, NULL, p4, p5, p6, p7, p8)
John Reck59135872010-11-02 12:39:01 -0700448
449
Steve Blocka7e24c12009-10-30 11:49:00 +0000450// The simulator has its own stack. Thus it has a different stack limit from
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000451// the C-based native code. The JS-based limit normally points near the end of
452// the simulator stack. When the C-based limit is exhausted we reflect that by
453// lowering the JS-based limit as well, to make stack checks trigger.
Steve Blocka7e24c12009-10-30 11:49:00 +0000454class SimulatorStack : public v8::internal::AllStatic {
455 public:
Ben Murdoch257744e2011-11-30 15:57:28 +0000456 static inline uintptr_t JsLimitFromCLimit(v8::internal::Isolate* isolate,
457 uintptr_t c_limit) {
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000458 return Simulator::current(isolate)->StackLimit(c_limit);
Steve Blocka7e24c12009-10-30 11:49:00 +0000459 }
Steve Blockd0582a62009-12-15 09:54:21 +0000460
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000461 static inline uintptr_t RegisterCTryCatch(v8::internal::Isolate* isolate,
462 uintptr_t try_catch_address) {
463 Simulator* sim = Simulator::current(isolate);
Steve Blockd0582a62009-12-15 09:54:21 +0000464 return sim->PushAddress(try_catch_address);
465 }
466
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000467 static inline void UnregisterCTryCatch(v8::internal::Isolate* isolate) {
468 Simulator::current(isolate)->PopAddress();
Steve Blockd0582a62009-12-15 09:54:21 +0000469 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000470};
471
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000472} // namespace internal
473} // namespace v8
Steve Blocka7e24c12009-10-30 11:49:00 +0000474
John Reck59135872010-11-02 12:39:01 -0700475#endif // !defined(USE_SIMULATOR)
Steve Blocka7e24c12009-10-30 11:49:00 +0000476#endif // V8_ARM_SIMULATOR_ARM_H_