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| 1 // Copyright 2009 the V8 project authors. All rights reserved. | 1 // Copyright 2009 the V8 project authors. All rights reserved. |
| 2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
| 3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
| 4 // met: | 4 // met: |
| 5 // | 5 // |
| 6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
| 7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
| 8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
| 9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
| 10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
| (...skipping 10 matching lines...) Expand all Loading... |
| 21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT | 21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT |
| 22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, | 22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
| 23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY | 23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
| 24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT | 24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
| 25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE | 25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE |
| 26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. | 26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
| 27 | 27 |
| 28 #ifndef V8_FRAME_ELEMENT_H_ | 28 #ifndef V8_FRAME_ELEMENT_H_ |
| 29 #define V8_FRAME_ELEMENT_H_ | 29 #define V8_FRAME_ELEMENT_H_ |
| 30 | 30 |
| 31 #include "register-allocator-inl.h" | 31 #include "number-info.h" |
| 32 #include "macro-assembler.h" |
| 32 | 33 |
| 33 namespace v8 { | 34 namespace v8 { |
| 34 namespace internal { | 35 namespace internal { |
| 35 | 36 |
| 36 // ------------------------------------------------------------------------- | 37 // ------------------------------------------------------------------------- |
| 37 // Virtual frame elements | 38 // Virtual frame elements |
| 38 // | 39 // |
| 39 // The internal elements of the virtual frames. There are several kinds of | 40 // The internal elements of the virtual frames. There are several kinds of |
| 40 // elements: | 41 // elements: |
| 41 // * Invalid: elements that are uninitialized or not actually part | 42 // * Invalid: elements that are uninitialized or not actually part |
| 42 // of the virtual frame. They should not be read. | 43 // of the virtual frame. They should not be read. |
| 43 // * Memory: an element that resides in the actual frame. Its address is | 44 // * Memory: an element that resides in the actual frame. Its address is |
| 44 // given by its position in the virtual frame. | 45 // given by its position in the virtual frame. |
| 45 // * Register: an element that resides in a register. | 46 // * Register: an element that resides in a register. |
| 46 // * Constant: an element whose value is known at compile time. | 47 // * Constant: an element whose value is known at compile time. |
| 47 | 48 |
| 48 class FrameElement BASE_EMBEDDED { | 49 class FrameElement BASE_EMBEDDED { |
| 49 public: | 50 public: |
| 50 enum SyncFlag { | 51 enum SyncFlag { |
| 51 NOT_SYNCED, | 52 NOT_SYNCED, |
| 52 SYNCED | 53 SYNCED |
| 53 }; | 54 }; |
| 54 | 55 |
| 56 inline NumberInfo::Type number_info() { |
| 57 // Copied elements do not have number info. Instead |
| 58 // we have to inspect their backing element in the frame. |
| 59 ASSERT(!is_copy()); |
| 60 if (!is_constant()) return NumberInfoField::decode(value_); |
| 61 Handle<Object> value = handle(); |
| 62 if (value->IsSmi()) return NumberInfo::kSmi; |
| 63 if (value->IsHeapNumber()) return NumberInfo::kHeapNumber; |
| 64 return NumberInfo::kUnknown; |
| 65 } |
| 66 |
| 67 inline void set_number_info(NumberInfo::Type info) { |
| 68 // Copied elements do not have number info. Instead |
| 69 // we have to inspect their backing element in the frame. |
| 70 ASSERT(!is_copy()); |
| 71 value_ = value_ & ~NumberInfoField::mask(); |
| 72 value_ = value_ | NumberInfoField::encode(info); |
| 73 } |
| 74 |
| 55 // The default constructor creates an invalid frame element. | 75 // The default constructor creates an invalid frame element. |
| 56 FrameElement() { | 76 FrameElement() { |
| 57 value_ = TypeField::encode(INVALID) | 77 value_ = TypeField::encode(INVALID) |
| 58 | CopiedField::encode(false) | 78 | CopiedField::encode(false) |
| 59 | SyncedField::encode(false) | 79 | SyncedField::encode(false) |
| 80 | NumberInfoField::encode(NumberInfo::kUninitialized) |
| 60 | DataField::encode(0); | 81 | DataField::encode(0); |
| 61 } | 82 } |
| 62 | 83 |
| 63 // Factory function to construct an invalid frame element. | 84 // Factory function to construct an invalid frame element. |
| 64 static FrameElement InvalidElement() { | 85 static FrameElement InvalidElement() { |
| 65 FrameElement result; | 86 FrameElement result; |
| 66 return result; | 87 return result; |
| 67 } | 88 } |
| 68 | 89 |
| 69 // Factory function to construct an in-memory frame element. | 90 // Factory function to construct an in-memory frame element. |
| 70 static FrameElement MemoryElement() { | 91 static FrameElement MemoryElement(NumberInfo::Type info) { |
| 71 FrameElement result(MEMORY, no_reg, SYNCED); | 92 FrameElement result(MEMORY, no_reg, SYNCED, info); |
| 72 return result; | 93 return result; |
| 73 } | 94 } |
| 74 | 95 |
| 75 // Factory function to construct an in-register frame element. | 96 // Factory function to construct an in-register frame element. |
| 76 static FrameElement RegisterElement(Register reg, | 97 static FrameElement RegisterElement(Register reg, |
| 77 SyncFlag is_synced) { | 98 SyncFlag is_synced, |
| 78 return FrameElement(REGISTER, reg, is_synced); | 99 NumberInfo::Type info) { |
| 100 return FrameElement(REGISTER, reg, is_synced, info); |
| 79 } | 101 } |
| 80 | 102 |
| 81 // Factory function to construct a frame element whose value is known at | 103 // Factory function to construct a frame element whose value is known at |
| 82 // compile time. | 104 // compile time. |
| 83 static FrameElement ConstantElement(Handle<Object> value, | 105 static FrameElement ConstantElement(Handle<Object> value, |
| 84 SyncFlag is_synced) { | 106 SyncFlag is_synced) { |
| 85 FrameElement result(value, is_synced); | 107 FrameElement result(value, is_synced); |
| 86 return result; | 108 return result; |
| 87 } | 109 } |
| 88 | 110 |
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| 178 private: | 200 private: |
| 179 enum Type { | 201 enum Type { |
| 180 INVALID, | 202 INVALID, |
| 181 MEMORY, | 203 MEMORY, |
| 182 REGISTER, | 204 REGISTER, |
| 183 CONSTANT, | 205 CONSTANT, |
| 184 COPY | 206 COPY |
| 185 }; | 207 }; |
| 186 | 208 |
| 187 // Used to construct memory and register elements. | 209 // Used to construct memory and register elements. |
| 188 FrameElement(Type type, Register reg, SyncFlag is_synced) { | 210 FrameElement(Type type, |
| 211 Register reg, |
| 212 SyncFlag is_synced, |
| 213 NumberInfo::Type info) { |
| 189 value_ = TypeField::encode(type) | 214 value_ = TypeField::encode(type) |
| 190 | CopiedField::encode(false) | 215 | CopiedField::encode(false) |
| 191 | SyncedField::encode(is_synced != NOT_SYNCED) | 216 | SyncedField::encode(is_synced != NOT_SYNCED) |
| 217 | NumberInfoField::encode(info) |
| 192 | DataField::encode(reg.code_ > 0 ? reg.code_ : 0); | 218 | DataField::encode(reg.code_ > 0 ? reg.code_ : 0); |
| 193 } | 219 } |
| 194 | 220 |
| 195 // Used to construct constant elements. | 221 // Used to construct constant elements. |
| 196 FrameElement(Handle<Object> value, SyncFlag is_synced) { | 222 FrameElement(Handle<Object> value, SyncFlag is_synced) { |
| 197 value_ = TypeField::encode(CONSTANT) | 223 value_ = TypeField::encode(CONSTANT) |
| 198 | CopiedField::encode(false) | 224 | CopiedField::encode(false) |
| 199 | SyncedField::encode(is_synced != NOT_SYNCED) | 225 | SyncedField::encode(is_synced != NOT_SYNCED) |
| 226 | NumberInfoField::encode(NumberInfo::kUninitialized) |
| 200 | DataField::encode(ConstantList()->length()); | 227 | DataField::encode(ConstantList()->length()); |
| 201 ConstantList()->Add(value); | 228 ConstantList()->Add(value); |
| 202 } | 229 } |
| 203 | 230 |
| 204 Type type() const { return TypeField::decode(value_); } | 231 Type type() const { return TypeField::decode(value_); } |
| 205 void set_type(Type type) { | 232 void set_type(Type type) { |
| 206 value_ = value_ & ~TypeField::mask(); | 233 value_ = value_ & ~TypeField::mask(); |
| 207 value_ = value_ | TypeField::encode(type); | 234 value_ = value_ | TypeField::encode(type); |
| 208 } | 235 } |
| 209 | 236 |
| 210 void set_index(int new_index) { | 237 void set_index(int new_index) { |
| 211 ASSERT(is_copy()); | 238 ASSERT(is_copy()); |
| 212 value_ = value_ & ~DataField::mask(); | 239 value_ = value_ & ~DataField::mask(); |
| 213 value_ = value_ | DataField::encode(new_index); | 240 value_ = value_ | DataField::encode(new_index); |
| 214 } | 241 } |
| 215 | 242 |
| 216 void set_reg(Register new_reg) { | 243 void set_reg(Register new_reg) { |
| 217 ASSERT(is_register()); | 244 ASSERT(is_register()); |
| 218 value_ = value_ & ~DataField::mask(); | 245 value_ = value_ & ~DataField::mask(); |
| 219 value_ = value_ | DataField::encode(new_reg.code_); | 246 value_ = value_ | DataField::encode(new_reg.code_); |
| 220 } | 247 } |
| 221 | 248 |
| 222 // Encode type, copied, synced and data in one 32 bit integer. | 249 // Encode type, copied, synced and data in one 32 bit integer. |
| 223 uint32_t value_; | 250 uint32_t value_; |
| 224 | 251 |
| 225 class TypeField: public BitField<Type, 0, 3> {}; | 252 class TypeField: public BitField<Type, 0, 3> {}; |
| 226 class CopiedField: public BitField<uint32_t, 3, 1> {}; | 253 class CopiedField: public BitField<bool, 3, 1> {}; |
| 227 class SyncedField: public BitField<uint32_t, 4, 1> {}; | 254 class SyncedField: public BitField<bool, 4, 1> {}; |
| 228 class DataField: public BitField<uint32_t, 5, 32 - 6> {}; | 255 class NumberInfoField: public BitField<NumberInfo::Type, 5, 3> {}; |
| 256 class DataField: public BitField<uint32_t, 8, 32 - 8> {}; |
| 229 | 257 |
| 230 friend class VirtualFrame; | 258 friend class VirtualFrame; |
| 231 }; | 259 }; |
| 232 | 260 |
| 233 } } // namespace v8::internal | 261 } } // namespace v8::internal |
| 234 | 262 |
| 235 #endif // V8_FRAME_ELEMENT_H_ | 263 #endif // V8_FRAME_ELEMENT_H_ |
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