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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 #ifndef VM_DEOPT_INSTRUCTIONS_H_ | 5 #ifndef VM_DEOPT_INSTRUCTIONS_H_ |
6 #define VM_DEOPT_INSTRUCTIONS_H_ | 6 #define VM_DEOPT_INSTRUCTIONS_H_ |
7 | 7 |
8 #include "vm/allocation.h" | 8 #include "vm/allocation.h" |
9 #include "vm/assembler.h" | 9 #include "vm/assembler.h" |
10 #include "vm/code_generator.h" | 10 #include "vm/code_generator.h" |
| 11 #include "vm/deferred_objects.h" |
11 #include "vm/growable_array.h" | 12 #include "vm/growable_array.h" |
12 #include "vm/object.h" | 13 #include "vm/object.h" |
13 | 14 |
14 namespace dart { | 15 namespace dart { |
15 | 16 |
16 class Location; | 17 class Location; |
17 class Value; | 18 class Value; |
18 class MaterializeObjectInstr; | 19 class MaterializeObjectInstr; |
19 | 20 |
20 // Holds all data relevant for execution of deoptimization instructions. | 21 // Holds all data relevant for execution of deoptimization instructions. |
21 class DeoptimizationContext : public ValueObject { | 22 class DeoptContext { |
22 public: | 23 public: |
23 // 'to_frame_start' points to the fixed size portion of the frame under sp. | |
24 // 'num_args' is 0 if there are no arguments or if there are optional | 24 // 'num_args' is 0 if there are no arguments or if there are optional |
25 // arguments. | 25 // arguments. |
26 DeoptimizationContext(intptr_t* to_frame_start, | 26 DeoptContext(const Array& object_table, |
27 intptr_t to_frame_size, | 27 intptr_t num_args, |
28 const Array& object_table, | 28 DeoptReasonId deopt_reason); |
29 intptr_t num_args, | 29 |
30 DeoptReasonId deopt_reason); | 30 ~DeoptContext(); |
| 31 |
| 32 // 'start' points to the fixed size portion of the frame under sp. |
| 33 // |
| 34 // DeoptContext does not claim ownership of the frame memory. |
| 35 void SetToFrame(intptr_t* start, intptr_t size); |
| 36 |
| 37 // DeoptContext does not claim ownership of the frame memory. |
| 38 void SetFromFrame(intptr_t* start, intptr_t size); |
| 39 |
| 40 // DeoptContext does not claim ownership of the memory used for the |
| 41 // saved registers. |
| 42 void SetSavedRegisters(fpu_register_t* fpu_registers, |
| 43 intptr_t* cpu_registers); |
| 44 |
| 45 intptr_t* from_frame() const { return from_frame_; } |
| 46 fpu_register_t* fpu_registers() const { return fpu_registers_; } |
| 47 intptr_t* cpu_registers() const { return cpu_registers_; } |
31 | 48 |
32 intptr_t* GetFromFrameAddressAt(intptr_t index) const { | 49 intptr_t* GetFromFrameAddressAt(intptr_t index) const { |
| 50 ASSERT(from_frame_ != NULL); |
33 ASSERT((0 <= index) && (index < from_frame_size_)); | 51 ASSERT((0 <= index) && (index < from_frame_size_)); |
34 return &from_frame_[index]; | 52 return &from_frame_[index]; |
35 } | 53 } |
36 | 54 |
37 intptr_t* GetToFrameAddressAt(intptr_t index) const { | 55 intptr_t* GetToFrameAddressAt(intptr_t index) const { |
| 56 ASSERT(to_frame_ != NULL); |
38 ASSERT((0 <= index) && (index < to_frame_size_)); | 57 ASSERT((0 <= index) && (index < to_frame_size_)); |
39 return &to_frame_[index]; | 58 return &to_frame_[index]; |
40 } | 59 } |
41 | 60 |
42 intptr_t GetFromFp() const; | 61 intptr_t GetFromFp() const; |
43 intptr_t GetFromPp() const; | 62 intptr_t GetFromPp() const; |
44 intptr_t GetFromPc() const; | 63 intptr_t GetFromPc() const; |
45 | 64 |
46 intptr_t GetCallerFp() const; | 65 intptr_t GetCallerFp() const; |
47 void SetCallerFp(intptr_t callers_fp); | 66 void SetCallerFp(intptr_t callers_fp); |
48 | 67 |
49 RawObject* ObjectAt(intptr_t index) const { | 68 RawObject* ObjectAt(intptr_t index) const { |
50 return object_table_.At(index); | 69 const Array& object_table = Array::Handle(object_table_); |
| 70 return object_table.At(index); |
51 } | 71 } |
52 | 72 |
53 intptr_t RegisterValue(Register reg) const { | 73 intptr_t RegisterValue(Register reg) const { |
54 return registers_copy_[reg]; | 74 return cpu_registers_[reg]; |
55 } | 75 } |
56 | 76 |
57 double FpuRegisterValue(FpuRegister reg) const { | 77 double FpuRegisterValue(FpuRegister reg) const { |
58 return *reinterpret_cast<double*>(&fpu_registers_copy_[reg]); | 78 return *reinterpret_cast<double*>(&fpu_registers_[reg]); |
59 } | 79 } |
60 | 80 |
61 int64_t FpuRegisterValueAsInt64(FpuRegister reg) const { | 81 int64_t FpuRegisterValueAsInt64(FpuRegister reg) const { |
62 return *reinterpret_cast<int64_t*>(&fpu_registers_copy_[reg]); | 82 return *reinterpret_cast<int64_t*>(&fpu_registers_[reg]); |
63 } | 83 } |
64 | 84 |
65 simd128_value_t FpuRegisterValueAsSimd128(FpuRegister reg) const { | 85 simd128_value_t FpuRegisterValueAsSimd128(FpuRegister reg) const { |
66 const float* address = reinterpret_cast<float*>(&fpu_registers_copy_[reg]); | 86 const float* address = reinterpret_cast<float*>(&fpu_registers_[reg]); |
67 return simd128_value_t().readFrom(address); | 87 return simd128_value_t().readFrom(address); |
68 } | 88 } |
69 | 89 |
70 Isolate* isolate() const { return isolate_; } | 90 Isolate* isolate() const { return isolate_; } |
71 | 91 |
72 intptr_t from_frame_size() const { return from_frame_size_; } | 92 intptr_t from_frame_size() const { return from_frame_size_; } |
73 | 93 |
74 DeoptReasonId deopt_reason() const { return deopt_reason_; } | 94 DeoptReasonId deopt_reason() const { return deopt_reason_; } |
75 | 95 |
| 96 void VisitObjectPointers(ObjectPointerVisitor* visitor); |
| 97 |
| 98 void PrepareForDeferredMaterialization(intptr_t count) { |
| 99 if (count > 0) { |
| 100 deferred_objects_ = new DeferredObject*[count]; |
| 101 deferred_objects_count_ = count; |
| 102 } |
| 103 } |
| 104 |
| 105 DeferredObject* GetDeferredObject(intptr_t idx) const { |
| 106 return deferred_objects_[idx]; |
| 107 } |
| 108 |
| 109 // Sets the materialized value for some deferred object. |
| 110 // |
| 111 // Claims ownership of the memory for 'object'. |
| 112 void SetDeferredObjectAt(intptr_t idx, DeferredObject* object) { |
| 113 deferred_objects_[idx] = object; |
| 114 } |
| 115 |
| 116 intptr_t DeferredObjectsCount() const { |
| 117 return deferred_objects_count_; |
| 118 } |
| 119 |
| 120 void DeferMaterializedObjectRef(intptr_t idx, intptr_t* slot) { |
| 121 deferred_object_refs_ = new DeferredObjectRef( |
| 122 idx, |
| 123 reinterpret_cast<RawInstance**>(slot), |
| 124 deferred_object_refs_); |
| 125 } |
| 126 |
| 127 void DeferDoubleMaterialization(double value, RawDouble** slot) { |
| 128 deferred_boxes_ = new DeferredDouble( |
| 129 value, |
| 130 reinterpret_cast<RawInstance**>(slot), |
| 131 deferred_boxes_); |
| 132 } |
| 133 |
| 134 void DeferMintMaterialization(int64_t value, RawMint** slot) { |
| 135 deferred_boxes_ = new DeferredMint( |
| 136 value, |
| 137 reinterpret_cast<RawInstance**>(slot), |
| 138 deferred_boxes_); |
| 139 } |
| 140 |
| 141 void DeferFloat32x4Materialization(simd128_value_t value, |
| 142 RawFloat32x4** slot) { |
| 143 deferred_boxes_ = new DeferredFloat32x4( |
| 144 value, |
| 145 reinterpret_cast<RawInstance**>(slot), |
| 146 deferred_boxes_); |
| 147 } |
| 148 |
| 149 void DeferUint32x4Materialization(simd128_value_t value, |
| 150 RawUint32x4** slot) { |
| 151 deferred_boxes_ = new DeferredUint32x4( |
| 152 value, |
| 153 reinterpret_cast<RawInstance**>(slot), |
| 154 deferred_boxes_); |
| 155 } |
| 156 |
| 157 // Materializes all deferred objects. Returns the total number of |
| 158 // artificial arguments used during deoptimization. |
| 159 intptr_t MaterializeDeferredObjects(); |
| 160 |
76 private: | 161 private: |
77 const Array& object_table_; | 162 RawArray* object_table_; |
78 intptr_t* to_frame_; | 163 intptr_t* to_frame_; |
79 const intptr_t to_frame_size_; | 164 intptr_t to_frame_size_; |
80 intptr_t* from_frame_; | 165 intptr_t* from_frame_; |
81 intptr_t from_frame_size_; | 166 intptr_t from_frame_size_; |
82 intptr_t* registers_copy_; | 167 intptr_t* cpu_registers_; |
83 fpu_register_t* fpu_registers_copy_; | 168 fpu_register_t* fpu_registers_; |
84 const intptr_t num_args_; | 169 const intptr_t num_args_; |
85 const DeoptReasonId deopt_reason_; | 170 const DeoptReasonId deopt_reason_; |
86 intptr_t caller_fp_; | 171 intptr_t caller_fp_; |
87 Isolate* isolate_; | 172 Isolate* isolate_; |
88 | 173 |
89 DISALLOW_COPY_AND_ASSIGN(DeoptimizationContext); | 174 DeferredSlot* deferred_boxes_; |
| 175 DeferredSlot* deferred_object_refs_; |
| 176 |
| 177 intptr_t deferred_objects_count_; |
| 178 DeferredObject** deferred_objects_; |
| 179 |
| 180 DISALLOW_COPY_AND_ASSIGN(DeoptContext); |
90 }; | 181 }; |
91 | 182 |
92 | 183 |
93 | 184 |
94 // Represents one deopt instruction, e.g, setup return address, store object, | 185 // Represents one deopt instruction, e.g, setup return address, store object, |
95 // store register, etc. The target is defined by instruction's position in | 186 // store register, etc. The target is defined by instruction's position in |
96 // the deopt-info array. | 187 // the deopt-info array. |
97 class DeoptInstr : public ZoneAllocated { | 188 class DeoptInstr : public ZoneAllocated { |
98 public: | 189 public: |
99 enum Kind { | 190 enum Kind { |
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119 kMaterializeObject | 210 kMaterializeObject |
120 }; | 211 }; |
121 | 212 |
122 static DeoptInstr* Create(intptr_t kind_as_int, intptr_t from_index); | 213 static DeoptInstr* Create(intptr_t kind_as_int, intptr_t from_index); |
123 | 214 |
124 DeoptInstr() {} | 215 DeoptInstr() {} |
125 virtual ~DeoptInstr() {} | 216 virtual ~DeoptInstr() {} |
126 | 217 |
127 virtual const char* ToCString() const = 0; | 218 virtual const char* ToCString() const = 0; |
128 | 219 |
129 virtual void Execute(DeoptimizationContext* deopt_context, | 220 virtual void Execute(DeoptContext* deopt_context, intptr_t* to_addr) = 0; |
130 intptr_t* to_addr) = 0; | |
131 | 221 |
132 virtual DeoptInstr::Kind kind() const = 0; | 222 virtual DeoptInstr::Kind kind() const = 0; |
133 | 223 |
134 bool Equals(const DeoptInstr& other) const { | 224 bool Equals(const DeoptInstr& other) const { |
135 return (kind() == other.kind()) && (from_index() == other.from_index()); | 225 return (kind() == other.kind()) && (from_index() == other.from_index()); |
136 } | 226 } |
137 | 227 |
138 // Decode the payload of a suffix command. Return the suffix length and | 228 // Decode the payload of a suffix command. Return the suffix length and |
139 // set the output parameter info_number to the index of the shared suffix. | 229 // set the output parameter info_number to the index of the shared suffix. |
140 static intptr_t DecodeSuffix(intptr_t from_index, intptr_t* info_number); | 230 static intptr_t DecodeSuffix(intptr_t from_index, intptr_t* info_number); |
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266 DeoptInfo* info, | 356 DeoptInfo* info, |
267 Smi* reason); | 357 Smi* reason); |
268 | 358 |
269 private: | 359 private: |
270 static const intptr_t kEntrySize = 3; | 360 static const intptr_t kEntrySize = 3; |
271 }; | 361 }; |
272 | 362 |
273 } // namespace dart | 363 } // namespace dart |
274 | 364 |
275 #endif // VM_DEOPT_INSTRUCTIONS_H_ | 365 #endif // VM_DEOPT_INSTRUCTIONS_H_ |
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