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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_LOCATIONS_H_ | 5 #ifndef VM_LOCATIONS_H_ |
| 6 #define VM_LOCATIONS_H_ | 6 #define VM_LOCATIONS_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/bitfield.h" | 10 #include "vm/bitfield.h" |
| 11 | 11 |
| 12 namespace dart { | 12 namespace dart { |
| 13 | 13 |
| 14 class BufferFormatter; | 14 class BufferFormatter; |
| 15 class Value; | 15 class Value; |
| 16 class PairLocation; |
| 16 | 17 |
| 17 | 18 |
| 18 enum Representation { | 19 enum Representation { |
| 19 kNoRepresentation, | 20 kNoRepresentation, |
| 20 kTagged, | 21 kTagged, |
| 21 kUntagged, | 22 kUntagged, |
| 22 kUnboxedDouble, | 23 kUnboxedDouble, |
| 23 kUnboxedMint, | 24 kUnboxedMint, |
| 24 kUnboxedFloat32x4, | 25 kUnboxedFloat32x4, |
| 25 kUnboxedInt32x4, | 26 kUnboxedInt32x4, |
| 26 kUnboxedFloat64x2, | 27 kUnboxedFloat64x2, |
| 28 kPairOfTagged, |
| 29 kPairOfUnboxedDouble, |
| 27 kNumRepresentations | 30 kNumRepresentations |
| 28 }; | 31 }; |
| 29 | 32 |
| 30 | 33 |
| 31 // Location objects are used to connect register allocator and code generator. | 34 // Location objects are used to connect register allocator and code generator. |
| 32 // Instruction templates used by code generator have a corresponding | 35 // Instruction templates used by code generator have a corresponding |
| 33 // LocationSummary object which specifies expected location for every input | 36 // LocationSummary object which specifies expected location for every input |
| 34 // and output. | 37 // and output. |
| 35 // Each location is encoded as a single word: for non-constant locations | 38 // Each location is encoded as a single word: for non-constant locations |
| 36 // low 3 bits denote location kind, rest is kind specific location payload | 39 // low 4 bits denote location kind, rest is kind specific location payload |
| 37 // e.g. for REGISTER kind payload is register code (value of the Register | 40 // e.g. for REGISTER kind payload is register code (value of the Register |
| 38 // enumeration), constant locations contain a tagged (low 2 bits are set to 01) | 41 // enumeration), constant locations contain a tagged (low 2 bits are set to 01) |
| 39 // Object handle. | 42 // Object handle. |
| 40 // | 43 // |
| 41 // Locations must satisfy the following invariant: if two locations' encodings | 44 // Locations must satisfy the following invariant: if two locations' encodings |
| 42 // are bitwise unequal then these two locations are guaranteed to be disjoint. | 45 // are bitwise unequal then these two locations are guaranteed to be disjoint. |
| 43 // Properties like representation belong to the value that is stored in | 46 // Properties like representation belong to the value that is stored in |
| 44 // the location not to the location itself. | 47 // the location not to the location itself. |
| 45 class Location : public ValueObject { | 48 class Location : public ValueObject { |
| 46 private: | 49 private: |
| 47 enum { | 50 enum { |
| 48 // Number of bits required to encode Kind value. | 51 // Number of bits required to encode Kind value. |
| 49 kBitsForKind = 4, | 52 kBitsForKind = 4, |
| 50 kBitsForPayload = kWordSize * kBitsPerByte - kBitsForKind, | 53 kBitsForPayload = kWordSize * kBitsPerByte - kBitsForKind, |
| 51 }; | 54 }; |
| 52 | 55 |
| 53 static const uword kInvalidLocation = 0; | 56 static const uword kInvalidLocation = 0; |
| 54 static const uword kConstantMask = 0x3; | 57 static const uword kConstantMask = 0x3; |
| 55 | 58 |
| 56 static const intptr_t kMachineRegisterMask = 0x6; | |
| 57 static const intptr_t kMachineRegister = 0x6; | |
| 58 | |
| 59 public: | 59 public: |
| 60 // Constant payload can overlap with kind field so Kind values | 60 // Constant payload can overlap with kind field so Kind values |
| 61 // have to be chosen in a way that their last 2 bits are never | 61 // have to be chosen in a way that their last 2 bits are never |
| 62 // the same as kConstant. | 62 // the same as kConstant or kPairLocation. |
| 63 // Note that two locations with different kinds should never point to | 63 // Note that two locations with different kinds should never point to |
| 64 // the same place. For example kQuadStackSlot location should never intersect | 64 // the same place. For example kQuadStackSlot location should never intersect |
| 65 // with kDoubleStackSlot location. | 65 // with kDoubleStackSlot location. |
| 66 enum Kind { | 66 enum Kind { |
| 67 // This location is invalid. Payload must be zero. | 67 // This location is invalid. Payload must be zero. |
| 68 kInvalid = 0, | 68 kInvalid = 0, |
| 69 | 69 |
| 70 // Constant value. This location contains a tagged Object handle. | 70 // Constant value. This location contains a tagged Object handle. |
| 71 kConstant = 1, | 71 kConstant = 1, |
| 72 | 72 |
| 73 // This location contains a pointer to a PairLocation. |
| 74 kPairLocation = 2, |
| 75 |
| 73 // Unallocated location represents a location that is not fixed and can be | 76 // Unallocated location represents a location that is not fixed and can be |
| 74 // allocated by a register allocator. Each unallocated location has | 77 // allocated by a register allocator. Each unallocated location has |
| 75 // a policy that specifies what kind of location is suitable. Payload | 78 // a policy that specifies what kind of location is suitable. Payload |
| 76 // contains register allocation policy. | 79 // contains register allocation policy. |
| 77 kUnallocated = 2, | 80 kUnallocated = 3, |
| 78 | 81 |
| 79 // Spill slots allocated by the register allocator. Payload contains | 82 // Spill slots allocated by the register allocator. Payload contains |
| 80 // a spill index. | 83 // a spill index. |
| 81 kStackSlot = 3, // Word size slot. | 84 kStackSlot = 4, // Word size slot. |
| 82 kDoubleStackSlot = 4, // 64bit stack slot. | 85 kDoubleStackSlot = 7, // 64bit stack slot. |
| 83 kQuadStackSlot = 8, // 128bit stack slot. | 86 kQuadStackSlot = 11, // 128bit stack slot. |
| 84 | 87 |
| 85 // Register location represents a fixed register. Payload contains | 88 // Register location represents a fixed register. Payload contains |
| 86 // register code. | 89 // register code. |
| 87 kRegister = 6, | 90 kRegister = 8, |
| 88 | 91 |
| 89 // FpuRegister location represents a fixed fpu register. Payload contains | 92 // FpuRegister location represents a fixed fpu register. Payload contains |
| 90 // its code. | 93 // its code. |
| 91 kFpuRegister = 7, | 94 kFpuRegister = 12, |
| 92 }; | 95 }; |
| 93 | 96 |
| 94 Location() : value_(kInvalidLocation) { | 97 Location() : value_(kInvalidLocation) { |
| 95 ASSERT(IsInvalid()); | 98 ASSERT(IsInvalid()); |
| 96 } | 99 } |
| 97 | 100 |
| 98 Location(const Location& other) : ValueObject(), value_(other.value_) { } | 101 Location(const Location& other) : ValueObject(), value_(other.value_) { } |
| 99 | 102 |
| 100 Location& operator=(const Location& other) { | 103 Location& operator=(const Location& other) { |
| 101 value_ = other.value_; | 104 value_ = other.value_; |
| (...skipping 14 matching lines...) Expand all Loading... |
| 116 Location loc(reinterpret_cast<uword>(&obj) | kConstant); | 119 Location loc(reinterpret_cast<uword>(&obj) | kConstant); |
| 117 ASSERT(&obj == &loc.constant()); | 120 ASSERT(&obj == &loc.constant()); |
| 118 return loc; | 121 return loc; |
| 119 } | 122 } |
| 120 | 123 |
| 121 const Object& constant() const { | 124 const Object& constant() const { |
| 122 ASSERT(IsConstant()); | 125 ASSERT(IsConstant()); |
| 123 return *reinterpret_cast<const Object*>(value_ & ~kConstantMask); | 126 return *reinterpret_cast<const Object*>(value_ & ~kConstantMask); |
| 124 } | 127 } |
| 125 | 128 |
| 129 bool IsPairLocation() const { |
| 130 ASSERT((kPairLocation & kConstantMask) == kPairLocation); |
| 131 return (value_ & kConstantMask) == kPairLocation; |
| 132 } |
| 133 |
| 134 static Location Pair(Location first, Location second); |
| 135 |
| 136 PairLocation* AsPairLocation() const; |
| 137 |
| 126 // Unallocated locations. | 138 // Unallocated locations. |
| 127 enum Policy { | 139 enum Policy { |
| 128 kAny, | 140 kAny, |
| 129 kPrefersRegister, | 141 kPrefersRegister, |
| 130 kRequiresRegister, | 142 kRequiresRegister, |
| 131 kRequiresFpuRegister, | 143 kRequiresFpuRegister, |
| 132 kWritableRegister, | 144 kWritableRegister, |
| 133 kSameAsFirstInput, | 145 kSameAsFirstInput, |
| 134 }; | 146 }; |
| 135 | 147 |
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| 204 bool IsFpuRegister() const { | 216 bool IsFpuRegister() const { |
| 205 return kind() == kFpuRegister; | 217 return kind() == kFpuRegister; |
| 206 } | 218 } |
| 207 | 219 |
| 208 FpuRegister fpu_reg() const { | 220 FpuRegister fpu_reg() const { |
| 209 ASSERT(IsFpuRegister()); | 221 ASSERT(IsFpuRegister()); |
| 210 return static_cast<FpuRegister>(payload()); | 222 return static_cast<FpuRegister>(payload()); |
| 211 } | 223 } |
| 212 | 224 |
| 213 static bool IsMachineRegisterKind(Kind kind) { | 225 static bool IsMachineRegisterKind(Kind kind) { |
| 214 return (kind & kMachineRegisterMask) == kMachineRegister; | 226 return (kind == kRegister) || (kind == kFpuRegister); |
| 215 } | 227 } |
| 216 | 228 |
| 217 static Location MachineRegisterLocation(Kind kind, | 229 static Location MachineRegisterLocation(Kind kind, |
| 218 intptr_t reg) { | 230 intptr_t reg) { |
| 219 if (kind == kRegister) { | 231 if (kind == kRegister) { |
| 220 return RegisterLocation(static_cast<Register>(reg)); | 232 return RegisterLocation(static_cast<Register>(reg)); |
| 221 } else { | 233 } else { |
| 222 ASSERT(kind == kFpuRegister); | 234 ASSERT(kind == kFpuRegister); |
| 223 return FpuRegisterLocation(static_cast<FpuRegister>(reg)); | 235 return FpuRegisterLocation(static_cast<FpuRegister>(reg)); |
| 224 } | 236 } |
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| 330 static const intptr_t kStackIndexBias = | 342 static const intptr_t kStackIndexBias = |
| 331 static_cast<intptr_t>(1) << (kBitsForPayload - 1); | 343 static_cast<intptr_t>(1) << (kBitsForPayload - 1); |
| 332 | 344 |
| 333 // Location either contains kind and payload fields or a tagged handle for | 345 // Location either contains kind and payload fields or a tagged handle for |
| 334 // a constant locations. Values of enumeration Kind are selected in such a | 346 // a constant locations. Values of enumeration Kind are selected in such a |
| 335 // way that none of them can be interpreted as a kConstant tag. | 347 // way that none of them can be interpreted as a kConstant tag. |
| 336 uword value_; | 348 uword value_; |
| 337 }; | 349 }; |
| 338 | 350 |
| 339 | 351 |
| 352 class PairLocation : public ZoneAllocated { |
| 353 public: |
| 354 PairLocation() { |
| 355 for (intptr_t i = 0; i < kPairLength; i++) { |
| 356 ASSERT(locations_[i].IsInvalid()); |
| 357 } |
| 358 } |
| 359 |
| 360 intptr_t length() const { return kPairLength; } |
| 361 |
| 362 Location At(intptr_t i) const { |
| 363 ASSERT(i >= 0); |
| 364 ASSERT(i < kPairLength); |
| 365 return locations_[i]; |
| 366 } |
| 367 |
| 368 void SetAt(intptr_t i, Location loc) { |
| 369 ASSERT(i >= 0); |
| 370 ASSERT(i < kPairLength); |
| 371 locations_[i] = loc; |
| 372 } |
| 373 |
| 374 Location* SlotAt(intptr_t i) { |
| 375 ASSERT(i >= 0); |
| 376 ASSERT(i < kPairLength); |
| 377 return &locations_[i]; |
| 378 } |
| 379 |
| 380 private: |
| 381 static const intptr_t kPairLength = 2; |
| 382 Location locations_[kPairLength]; |
| 383 }; |
| 384 |
| 385 |
| 340 class RegisterSet : public ValueObject { | 386 class RegisterSet : public ValueObject { |
| 341 public: | 387 public: |
| 342 RegisterSet() : cpu_registers_(0), fpu_registers_(0) { | 388 RegisterSet() : cpu_registers_(0), fpu_registers_(0) { |
| 343 ASSERT(kNumberOfCpuRegisters <= (kWordSize * kBitsPerByte)); | 389 ASSERT(kNumberOfCpuRegisters <= (kWordSize * kBitsPerByte)); |
| 344 ASSERT(kNumberOfFpuRegisters <= (kWordSize * kBitsPerByte)); | 390 ASSERT(kNumberOfFpuRegisters <= (kWordSize * kBitsPerByte)); |
| 345 } | 391 } |
| 346 | 392 |
| 347 | 393 |
| 348 void Add(Location loc) { | 394 void Add(Location loc) { |
| 349 if (loc.IsRegister()) { | 395 if (loc.IsRegister()) { |
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| 488 BitmapBuilder* stack_bitmap_; | 534 BitmapBuilder* stack_bitmap_; |
| 489 | 535 |
| 490 const ContainsCall contains_call_; | 536 const ContainsCall contains_call_; |
| 491 RegisterSet live_registers_; | 537 RegisterSet live_registers_; |
| 492 }; | 538 }; |
| 493 | 539 |
| 494 | 540 |
| 495 } // namespace dart | 541 } // namespace dart |
| 496 | 542 |
| 497 #endif // VM_LOCATIONS_H_ | 543 #endif // VM_LOCATIONS_H_ |
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