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Unified Diff: runtime/vm/intermediate_language.h

Issue 12221139: Revert "Remove SminessPropagator and FlowGraphTypePropagator and all associated infrastructure and … (Closed) Base URL: https://dart.googlecode.com/svn/branches/bleeding_edge/dart
Patch Set: Created 7 years, 10 months ago
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Index: runtime/vm/intermediate_language.h
diff --git a/runtime/vm/intermediate_language.h b/runtime/vm/intermediate_language.h
index 5f3be97cd6c08304c708f3b139d12c6c9b44bae1..1d70a291fb7b5f59b0aa6dd7475c2d8e15a2a291 100644
--- a/runtime/vm/intermediate_language.h
+++ b/runtime/vm/intermediate_language.h
@@ -77,121 +77,6 @@ RECOGNIZED_LIST(DEFINE_ENUM_LIST)
};
-// CompileType describes type of the value produced by the definition.
-//
-// It captures the following properties:
-// - whether value can potentially be null or it is definitely not null;
-// - concrete class id of the value or kDynamicCid if unknown statically;
-// - abstract super type of the value, concrete type of the value in runtime
-// is guaranteed to be sub type of this type.
-//
-// Values of CompileType form a lattice with a None type as a bottom and a
-// nullable Dynamic type as a top element. Method Union provides a join
-// operation for the lattice.
-class CompileType : public ZoneAllocated {
- public:
- static const bool kNullable = true;
- static const bool kNonNullable = false;
-
- // Return type such that concrete value's type in runtime is guaranteed to
- // be subtype of it.
- const AbstractType* ToAbstractType();
-
- // Return class id such that it is either kDynamicCid or in runtime
- // value is guaranteed to have an equal class id.
- intptr_t ToCid();
-
- // Return class id such that it is either kDynamicCid or in runtime
- // value is guaranteed to be either null or have an equal class id.
- intptr_t ToNullableCid();
-
- // Returns true if the value is guaranteed to be not-null or is known to be
- // always null.
- bool HasDecidableNullability();
-
- // Returns true if the value is known to be always null.
- bool IsNull();
-
- // Returns true if this type is more specific than given type.
- bool IsMoreSpecificThan(const AbstractType& other);
-
- // Returns true if value of this type is assignable to a location of the
- // given type.
- bool IsAssignableTo(const AbstractType& type) {
- bool is_instance;
- return CanComputeIsInstanceOf(type, kNullable, &is_instance) &&
- is_instance;
- }
-
- // Create a new CompileType representing given combination of class id and
- // abstract type. The pair is assumed to be coherent.
- static CompileType* New(intptr_t cid, const AbstractType& type);
-
- // Create a new CompileType representing given abstract type. By default
- // values as assumed to be nullable.
- static CompileType* FromAbstractType(const AbstractType& type,
- bool is_nullable = kNullable);
-
- // Create a new CompileType representing an value with the given class id.
- // Resulting CompileType is nullable only if cid is kDynamicCid or kNullCid.
- static CompileType* FromCid(intptr_t cid);
-
- // Create None CompileType. It is the bottom of the lattice and is used to
- // represent type of the phi that was not yet inferred.
- static CompileType* None() {
- return new CompileType(true, kIllegalCid, NULL);
- }
-
- // Create Dynamic CompileType. It is the top of the lattice and is used to
- // represent unknown type.
- static CompileType* Dynamic();
-
- static CompileType* Null();
-
- // Create non-nullable Bool type.
- static CompileType* Bool();
-
- // Create non-nullable Int type.
- static CompileType* Int();
-
- // Perform a join operation over the type lattice.
- void Union(CompileType* other);
-
- // Returns true if this and other types are the same.
- bool IsEqualTo(CompileType* other) {
- return (is_nullable_ == other->is_nullable_) &&
- (ToNullableCid() == other->ToNullableCid()) &&
- (ToAbstractType()->Equals(*other->ToAbstractType()));
- }
-
- // Replaces this type with other.
- void ReplaceWith(CompileType* other) {
- is_nullable_ = other->is_nullable_;
- cid_ = other->cid_;
- type_ = other->type_;
- }
-
- bool IsNone() const {
- return (cid_ == kIllegalCid) && (type_ == NULL);
- }
-
- void PrintTo(BufferFormatter* f) const;
- const char* ToCString() const;
-
- private:
- CompileType(bool is_nullable, intptr_t cid, const AbstractType* type)
- : is_nullable_(is_nullable), cid_(cid), type_(type) { }
-
- bool CanComputeIsInstanceOf(const AbstractType& type,
- bool is_nullable,
- bool* is_instance);
-
- bool is_nullable_;
- intptr_t cid_;
- const AbstractType* type_;
-};
-
-
class Value : public ZoneAllocated {
public:
// A forward iterator that allows removing the current value from the
@@ -217,7 +102,7 @@ class Value : public ZoneAllocated {
next_use_(NULL),
instruction_(NULL),
use_index_(-1),
- reaching_type_(NULL) { }
+ reaching_cid_(kIllegalCid) { }
Definition* definition() const { return definition_; }
void set_definition(Definition* definition) { definition_ = definition; }
@@ -239,11 +124,8 @@ class Value : public ZoneAllocated {
Value* Copy() { return new Value(definition_); }
- CompileType* Type();
-
- void SetReachingType(CompileType* type) {
- reaching_type_ = type;
- }
+ RawAbstractType* CompileType() const;
+ intptr_t ResultCid() const;
void PrintTo(BufferFormatter* f) const;
@@ -258,12 +140,24 @@ class Value : public ZoneAllocated {
// Assert if BindsToConstant() is false, otherwise returns the constant value.
const Object& BoundConstant() const;
+ // Compute a run-time null test at compile-time and set result in is_null.
+ // Return false if the computation is not possible at compile time.
+ bool CanComputeIsNull(bool* is_null) const;
+
+ // Compute a run-time type test at compile-time and set result in is_instance.
+ // Return false if the computation is not possible at compile time.
+ bool CanComputeIsInstanceOf(const AbstractType& type,
+ bool* is_instance) const;
+
// Compile time constants, Bool, Smi and Nulls do not need to update
// the store buffer.
- bool NeedsStoreBuffer();
+ bool NeedsStoreBuffer() const;
bool Equals(Value* other) const;
+ void set_reaching_cid(intptr_t cid) { reaching_cid_ = cid; }
+ intptr_t reaching_cid() const { return reaching_cid_; }
+
private:
Definition* definition_;
Value* previous_use_;
@@ -271,7 +165,7 @@ class Value : public ZoneAllocated {
Instruction* instruction_;
intptr_t use_index_;
- CompileType* reaching_type_;
+ intptr_t reaching_cid_;
DISALLOW_COPY_AND_ASSIGN(Value);
};
@@ -1200,24 +1094,37 @@ class Definition : public Instruction {
// Compile time type of the definition, which may be requested before type
// propagation during graph building.
- CompileType* Type() {
- if (type_ == NULL) {
- type_ = ComputeInitialType();
+ virtual RawAbstractType* CompileType() const = 0;
+
+ virtual intptr_t ResultCid() const = 0;
+
+ bool HasPropagatedType() const {
+ return !propagated_type_.IsNull();
+ }
+ RawAbstractType* PropagatedType() const {
+ ASSERT(HasPropagatedType());
+ return propagated_type_.raw();
+ }
+ // Returns true if the propagated type has changed.
+ bool SetPropagatedType(const AbstractType& propagated_type) {
+ if (propagated_type.IsNull()) {
+ // Not a typed definition, e.g. access to a VM field.
+ return false;
}
- return type_;
+ const bool changed =
+ propagated_type_.IsNull() || !propagated_type.Equals(propagated_type_);
+ propagated_type_ = propagated_type.raw();
+ return changed;
}
- // Compute initial compile type for this definition. It is safe to use this
- // approximation even before type propagator was run (e.g. during graph
- // building).
- virtual CompileType* ComputeInitialType() const {
- return CompileType::Dynamic();
- }
+ bool has_propagated_cid() const { return propagated_cid_ != kIllegalCid; }
+ intptr_t propagated_cid() const { return propagated_cid_; }
- // Update CompileType of the definition. Returns true if the type has changed.
- virtual bool RecomputeType() {
- return false;
- }
+ // May compute and set propagated cid.
+ virtual intptr_t GetPropagatedCid();
+
+ // Returns true if the propagated cid has changed.
+ bool SetPropagatedCid(intptr_t cid);
bool HasUses() const {
return (input_use_list_ != NULL) || (env_use_list_ != NULL);
@@ -1286,11 +1193,14 @@ class Definition : public Instruction {
friend class RangeAnalysis;
Range* range_;
- CompileType* type_;
private:
intptr_t temp_index_;
intptr_t ssa_temp_index_;
+ // TODO(regis): GrowableArray<const AbstractType*> propagated_types_;
+ // For now:
+ AbstractType& propagated_type_;
+ intptr_t propagated_cid_;
Value* input_use_list_;
Value* env_use_list_;
UseKind use_kind_;
@@ -1318,8 +1228,8 @@ class PhiInstr : public Definition {
virtual BlockEntryInstr* GetBlock() const { return block(); }
JoinEntryInstr* block() const { return block_; }
- virtual CompileType* ComputeInitialType() const;
- virtual bool RecomputeType();
+ virtual RawAbstractType* CompileType() const;
+ virtual intptr_t GetPropagatedCid();
virtual intptr_t ArgumentCount() const { return 0; }
@@ -1333,6 +1243,9 @@ class PhiInstr : public Definition {
virtual bool HasSideEffect() const { return false; }
+ // TODO(regis): This helper will be removed once we support type sets.
+ RawAbstractType* LeastSpecificInputType() const;
+
// Phi is alive if it reaches a non-environment use.
bool is_alive() const { return is_alive_; }
void mark_alive() { is_alive_ = true; }
@@ -1355,6 +1268,11 @@ class PhiInstr : public Definition {
return 0;
}
+ virtual intptr_t ResultCid() const {
+ UNREACHABLE();
+ return kIllegalCid;
+ }
+
DECLARE_INSTRUCTION(Phi)
virtual void PrintTo(BufferFormatter* f) const;
@@ -1395,6 +1313,12 @@ class ParameterInstr : public Definition {
// Get the block entry for that instruction.
virtual BlockEntryInstr* GetBlock() const { return block_; }
+ // Compile type of the passed-in parameter.
+ virtual RawAbstractType* CompileType() const;
+
+ // No known propagated cid for parameters.
+ virtual intptr_t GetPropagatedCid();
+
virtual intptr_t ArgumentCount() const { return 0; }
intptr_t InputCount() const { return 0; }
@@ -1413,9 +1337,12 @@ class ParameterInstr : public Definition {
return 0;
}
- virtual void PrintOperandsTo(BufferFormatter* f) const;
+ virtual intptr_t ResultCid() const {
+ UNREACHABLE();
+ return kIllegalCid;
+ }
- virtual CompileType* ComputeInitialType() const;
+ virtual void PrintOperandsTo(BufferFormatter* f) const;
private:
const intptr_t index_;
@@ -1446,7 +1373,12 @@ class PushArgumentInstr : public Definition {
virtual intptr_t ArgumentCount() const { return 0; }
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
+ virtual intptr_t GetPropagatedCid() { return propagated_cid(); }
+ virtual intptr_t ResultCid() const {
+ UNREACHABLE();
+ return kIllegalCid;
+ }
Value* value() const { return value_; }
@@ -1667,6 +1599,7 @@ class StoreContextInstr : public TemplateInstruction<1> {
}
DECLARE_INSTRUCTION(StoreContext);
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 0; }
@@ -1885,12 +1818,16 @@ class ConstraintInstr : public TemplateDefinition<2> {
return (inputs_[1] == NULL) ? 1 : 2;
}
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const {
+ return Type::SmiType();
+ }
virtual bool CanDeoptimize() const { return false; }
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kSmiCid; }
+
virtual bool AttributesEqual(Instruction* other) const {
UNREACHABLE();
return false;
@@ -1932,7 +1869,7 @@ class ConstantInstr : public TemplateDefinition<0> {
: value_(value) { }
DECLARE_INSTRUCTION(Constant)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
const Object& value() const { return value_; }
@@ -1942,6 +1879,8 @@ class ConstantInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const;
+
virtual bool AttributesEqual(Instruction* other) const;
virtual bool AffectedBySideEffect() const { return false; }
@@ -1964,7 +1903,8 @@ class AssertAssignableInstr : public TemplateDefinition<3> {
const String& dst_name)
: token_pos_(token_pos),
dst_type_(AbstractType::ZoneHandle(dst_type.raw())),
- dst_name_(dst_name) {
+ dst_name_(dst_name),
+ is_eliminated_(false) {
ASSERT(value != NULL);
ASSERT(instantiator != NULL);
ASSERT(instantiator_type_arguments != NULL);
@@ -1976,8 +1916,7 @@ class AssertAssignableInstr : public TemplateDefinition<3> {
}
DECLARE_INSTRUCTION(AssertAssignable)
- virtual CompileType* ComputeInitialType() const;
- virtual bool RecomputeType();
+ virtual RawAbstractType* CompileType() const;
Value* value() const { return inputs_[0]; }
Value* instantiator() const { return inputs_[1]; }
@@ -1990,6 +1929,14 @@ class AssertAssignableInstr : public TemplateDefinition<3> {
}
const String& dst_name() const { return dst_name_; }
+ bool is_eliminated() const {
+ return is_eliminated_;
+ }
+ void eliminate() {
+ ASSERT(!is_eliminated_);
+ is_eliminated_ = true;
+ }
+
virtual void PrintOperandsTo(BufferFormatter* f) const;
virtual bool CanDeoptimize() const { return true; }
@@ -1999,12 +1946,16 @@ class AssertAssignableInstr : public TemplateDefinition<3> {
virtual bool AffectedBySideEffect() const { return false; }
virtual bool AttributesEqual(Instruction* other) const;
+ virtual intptr_t ResultCid() const { return value()->ResultCid(); }
+ virtual intptr_t GetPropagatedCid();
+
virtual Definition* Canonicalize(FlowGraphOptimizer* optimizer);
private:
const intptr_t token_pos_;
AbstractType& dst_type_;
const String& dst_name_;
+ bool is_eliminated_;
DISALLOW_COPY_AND_ASSIGN(AssertAssignableInstr);
};
@@ -2013,17 +1964,26 @@ class AssertAssignableInstr : public TemplateDefinition<3> {
class AssertBooleanInstr : public TemplateDefinition<1> {
public:
AssertBooleanInstr(intptr_t token_pos, Value* value)
- : token_pos_(token_pos) {
+ : token_pos_(token_pos),
+ is_eliminated_(false) {
ASSERT(value != NULL);
inputs_[0] = value;
}
DECLARE_INSTRUCTION(AssertBoolean)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
intptr_t token_pos() const { return token_pos_; }
Value* value() const { return inputs_[0]; }
+ bool is_eliminated() const {
+ return is_eliminated_;
+ }
+ void eliminate() {
+ ASSERT(!is_eliminated_);
+ is_eliminated_ = true;
+ }
+
virtual void PrintOperandsTo(BufferFormatter* f) const;
virtual bool CanDeoptimize() const { return true; }
@@ -2033,10 +1993,13 @@ class AssertBooleanInstr : public TemplateDefinition<1> {
virtual bool AffectedBySideEffect() const { return false; }
virtual bool AttributesEqual(Instruction* other) const { return true; }
+ virtual intptr_t ResultCid() const { return kBoolCid; }
+
virtual Definition* Canonicalize(FlowGraphOptimizer* optimizer);
private:
const intptr_t token_pos_;
+ bool is_eliminated_;
DISALLOW_COPY_AND_ASSIGN(AssertBooleanInstr);
};
@@ -2052,7 +2015,7 @@ class ArgumentDefinitionTestInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(ArgumentDefinitionTest)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
intptr_t token_pos() const { return ast_node_.token_pos(); }
intptr_t formal_parameter_index() const {
@@ -2061,7 +2024,6 @@ class ArgumentDefinitionTestInstr : public TemplateDefinition<1> {
const String& formal_parameter_name() const {
return ast_node_.formal_parameter_name();
}
-
Value* saved_arguments_descriptor() const { return inputs_[0]; }
virtual void PrintOperandsTo(BufferFormatter* f) const;
@@ -2070,6 +2032,8 @@ class ArgumentDefinitionTestInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kBoolCid; }
+
private:
const ArgumentDefinitionTestNode& ast_node_;
@@ -2084,12 +2048,14 @@ class CurrentContextInstr : public TemplateDefinition<0> {
CurrentContextInstr() { }
DECLARE_INSTRUCTION(CurrentContext)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual bool CanDeoptimize() const { return false; }
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
DISALLOW_COPY_AND_ASSIGN(CurrentContextInstr);
};
@@ -2103,6 +2069,7 @@ class ClosureCallInstr : public TemplateDefinition<0> {
arguments_(arguments) { }
DECLARE_INSTRUCTION(ClosureCall)
+ virtual RawAbstractType* CompileType() const;
const Array& argument_names() const { return ast_node_.arguments()->names(); }
intptr_t token_pos() const { return ast_node_.token_pos(); }
@@ -2118,6 +2085,8 @@ class ClosureCallInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const ClosureCallNode& ast_node_;
ZoneGrowableArray<PushArgumentInstr*>* arguments_;
@@ -2154,6 +2123,7 @@ class InstanceCallInstr : public TemplateDefinition<0> {
}
DECLARE_INSTRUCTION(InstanceCall)
+ virtual RawAbstractType* CompileType() const;
const ICData* ic_data() const { return ic_data_; }
bool HasICData() const {
@@ -2179,6 +2149,8 @@ class InstanceCallInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
protected:
friend class FlowGraphOptimizer;
void set_ic_data(ICData* value) { ic_data_ = value; }
@@ -2218,6 +2190,7 @@ class PolymorphicInstanceCallInstr : public TemplateDefinition<0> {
}
DECLARE_INSTRUCTION(PolymorphicInstanceCall)
+ virtual RawAbstractType* CompileType() const;
const ICData& ic_data() const { return ic_data_; }
@@ -2225,6 +2198,8 @@ class PolymorphicInstanceCallInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
virtual void PrintOperandsTo(BufferFormatter* f) const;
private:
@@ -2321,7 +2296,7 @@ class StrictCompareInstr : public ComparisonInstr {
StrictCompareInstr(Token::Kind kind, Value* left, Value* right);
DECLARE_INSTRUCTION(StrictCompare)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual void PrintOperandsTo(BufferFormatter* f) const;
@@ -2334,6 +2309,8 @@ class StrictCompareInstr : public ComparisonInstr {
virtual Definition* Canonicalize(FlowGraphOptimizer* optimizer);
+ virtual intptr_t ResultCid() const { return kBoolCid; }
+
virtual void EmitBranchCode(FlowGraphCompiler* compiler,
BranchInstr* branch);
@@ -2364,7 +2341,7 @@ class EqualityCompareInstr : public ComparisonInstr {
}
DECLARE_INSTRUCTION(EqualityCompare)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
const ICData* ic_data() const { return ic_data_; }
bool HasICData() const {
@@ -2377,22 +2354,21 @@ class EqualityCompareInstr : public ComparisonInstr {
void set_receiver_class_id(intptr_t value) { receiver_class_id_ = value; }
intptr_t receiver_class_id() const { return receiver_class_id_; }
- bool IsInlinedNumericComparison() const {
- return (receiver_class_id() == kDoubleCid)
- || (receiver_class_id() == kMintCid)
- || (receiver_class_id() == kSmiCid);
- }
-
virtual void PrintOperandsTo(BufferFormatter* f) const;
virtual bool CanDeoptimize() const {
- return !IsInlinedNumericComparison();
+ return (receiver_class_id() != kDoubleCid)
+ && (receiver_class_id() != kMintCid)
+ && (receiver_class_id() != kSmiCid);
}
-
virtual bool HasSideEffect() const {
- return !IsInlinedNumericComparison();
+ return (receiver_class_id() != kDoubleCid)
+ && (receiver_class_id() != kMintCid)
+ && (receiver_class_id() != kSmiCid);
}
+ virtual intptr_t ResultCid() const;
+
virtual void EmitBranchCode(FlowGraphCompiler* compiler,
BranchInstr* branch);
@@ -2433,7 +2409,7 @@ class RelationalOpInstr : public ComparisonInstr {
}
DECLARE_INSTRUCTION(RelationalOp)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
const ICData* ic_data() const { return ic_data_; }
bool HasICData() const {
@@ -2450,21 +2426,21 @@ class RelationalOpInstr : public ComparisonInstr {
intptr_t operands_class_id() const { return operands_class_id_; }
- bool IsInlinedNumericComparison() const {
- return (operands_class_id() == kDoubleCid)
- || (operands_class_id() == kMintCid)
- || (operands_class_id() == kSmiCid);
- }
-
virtual void PrintOperandsTo(BufferFormatter* f) const;
virtual bool CanDeoptimize() const {
- return !IsInlinedNumericComparison();
+ return (operands_class_id() != kDoubleCid)
+ && (operands_class_id() != kMintCid)
+ && (operands_class_id() != kSmiCid);
}
virtual bool HasSideEffect() const {
- return !IsInlinedNumericComparison();
+ return (operands_class_id() != kDoubleCid)
+ && (operands_class_id() != kMintCid)
+ && (operands_class_id() != kSmiCid);
}
+ virtual intptr_t ResultCid() const;
+
virtual void EmitBranchCode(FlowGraphCompiler* compiler,
BranchInstr* branch);
@@ -2506,7 +2482,7 @@ class StaticCallInstr : public TemplateDefinition<0> {
}
DECLARE_INSTRUCTION(StaticCall)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
// Accessors forwarded to the AST node.
const Function& function() const { return function_; }
@@ -2524,6 +2500,7 @@ class StaticCallInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return result_cid_; }
void set_result_cid(intptr_t value) { result_cid_ = value; }
bool is_known_constructor() const { return is_known_constructor_; }
@@ -2541,6 +2518,7 @@ class StaticCallInstr : public TemplateDefinition<0> {
// Some library constructors have known semantics.
bool is_known_constructor_;
+
DISALLOW_COPY_AND_ASSIGN(StaticCallInstr);
};
@@ -2552,7 +2530,7 @@ class LoadLocalInstr : public TemplateDefinition<0> {
context_level_(context_level) { }
DECLARE_INSTRUCTION(LoadLocal)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
const LocalVariable& local() const { return local_; }
intptr_t context_level() const { return context_level_; }
@@ -2566,6 +2544,8 @@ class LoadLocalInstr : public TemplateDefinition<0> {
return false;
}
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const LocalVariable& local_;
const intptr_t context_level_;
@@ -2586,7 +2566,7 @@ class StoreLocalInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(StoreLocal)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
const LocalVariable& local() const { return local_; }
Value* value() const { return inputs_[0]; }
@@ -2604,6 +2584,8 @@ class StoreLocalInstr : public TemplateDefinition<1> {
return false;
}
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const LocalVariable& local_;
const intptr_t context_level_;
@@ -2618,6 +2600,7 @@ class NativeCallInstr : public TemplateDefinition<0> {
: ast_node_(*node) {}
DECLARE_INSTRUCTION(NativeCall)
+ virtual RawAbstractType* CompileType() const;
intptr_t token_pos() const { return ast_node_.token_pos(); }
@@ -2637,6 +2620,8 @@ class NativeCallInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const NativeBodyNode& ast_node_;
@@ -2658,7 +2643,7 @@ class StoreInstanceFieldInstr : public TemplateDefinition<2> {
}
DECLARE_INSTRUCTION(StoreInstanceField)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
const Field& field() const { return field_; }
@@ -2674,6 +2659,8 @@ class StoreInstanceFieldInstr : public TemplateDefinition<2> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const Field& field_;
const bool emit_store_barrier_;
@@ -2687,7 +2674,7 @@ class LoadStaticFieldInstr : public TemplateDefinition<0> {
explicit LoadStaticFieldInstr(const Field& field) : field_(field) {}
DECLARE_INSTRUCTION(LoadStaticField);
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
const Field& field() const { return field_; }
@@ -2697,6 +2684,8 @@ class LoadStaticFieldInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
virtual bool AffectedBySideEffect() const { return !field().is_final(); }
virtual bool AttributesEqual(Instruction* other) const;
@@ -2717,7 +2706,7 @@ class StoreStaticFieldInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(StoreStaticField);
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
const Field& field() const { return field_; }
Value* value() const { return inputs_[0]; }
@@ -2728,6 +2717,8 @@ class StoreStaticFieldInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const Field& field_;
@@ -2751,7 +2742,7 @@ class LoadIndexedInstr : public TemplateDefinition<2> {
}
DECLARE_INSTRUCTION(LoadIndexed)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
Value* array() const { return inputs_[0]; }
Value* index() const { return inputs_[1]; }
@@ -2764,6 +2755,8 @@ class LoadIndexedInstr : public TemplateDefinition<2> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const;
+
virtual Representation representation() const;
virtual bool AttributesEqual(Instruction* other) const;
@@ -2792,7 +2785,7 @@ class StringFromCharCodeInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(StringFromCharCode)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
Value* char_code() const { return inputs_[0]; }
@@ -2800,6 +2793,8 @@ class StringFromCharCodeInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return cid_; }
+
virtual bool AttributesEqual(Instruction* other) const { return true; }
virtual bool AffectedBySideEffect() const { return false; }
@@ -2831,6 +2826,7 @@ class StoreIndexedInstr : public TemplateDefinition<3> {
}
DECLARE_INSTRUCTION(StoreIndexed)
+ virtual RawAbstractType* CompileType() const;
Value* array() const { return inputs_[0]; }
Value* index() const { return inputs_[1]; }
@@ -2845,6 +2841,8 @@ class StoreIndexedInstr : public TemplateDefinition<3> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
virtual Representation RequiredInputRepresentation(intptr_t idx) const;
virtual intptr_t DeoptimizationTarget() const {
@@ -2871,7 +2869,7 @@ class BooleanNegateInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(BooleanNegate)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
Value* value() const { return inputs_[0]; }
@@ -2879,6 +2877,8 @@ class BooleanNegateInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kBoolCid; }
+
private:
DISALLOW_COPY_AND_ASSIGN(BooleanNegateInstr);
};
@@ -2905,7 +2905,7 @@ class InstanceOfInstr : public TemplateDefinition<3> {
}
DECLARE_INSTRUCTION(InstanceOf)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
Value* value() const { return inputs_[0]; }
Value* instantiator() const { return inputs_[1]; }
@@ -2921,6 +2921,8 @@ class InstanceOfInstr : public TemplateDefinition<3> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kBoolCid; }
+
private:
const intptr_t token_pos_;
Value* value_;
@@ -2945,7 +2947,7 @@ class AllocateObjectInstr : public TemplateDefinition<0> {
}
DECLARE_INSTRUCTION(AllocateObject)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return arguments_->length(); }
PushArgumentInstr* ArgumentAt(intptr_t index) const {
@@ -2961,6 +2963,8 @@ class AllocateObjectInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return cid_; }
+
private:
const ConstructorCallNode& ast_node_;
ZoneGrowableArray<PushArgumentInstr*>* const arguments_;
@@ -2983,6 +2987,7 @@ class AllocateObjectWithBoundsCheckInstr : public TemplateDefinition<2> {
}
DECLARE_INSTRUCTION(AllocateObjectWithBoundsCheck)
+ virtual RawAbstractType* CompileType() const;
const Function& constructor() const { return ast_node_.constructor(); }
intptr_t token_pos() const { return ast_node_.token_pos(); }
@@ -2993,6 +2998,8 @@ class AllocateObjectWithBoundsCheckInstr : public TemplateDefinition<2> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const ConstructorCallNode& ast_node_;
@@ -3022,7 +3029,7 @@ class CreateArrayInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(CreateArray)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return arguments_->length(); }
@@ -3037,6 +3044,8 @@ class CreateArrayInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kArrayCid; }
+
private:
const intptr_t token_pos_;
ZoneGrowableArray<PushArgumentInstr*>* const arguments_;
@@ -3056,7 +3065,7 @@ class CreateClosureInstr : public TemplateDefinition<0> {
token_pos_(token_pos) { }
DECLARE_INSTRUCTION(CreateClosure)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
intptr_t token_pos() const { return token_pos_; }
const Function& function() const { return function_; }
@@ -3072,6 +3081,8 @@ class CreateClosureInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const Function& function_;
ZoneGrowableArray<PushArgumentInstr*>* arguments_;
@@ -3098,7 +3109,7 @@ class LoadFieldInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(LoadField)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
Value* value() const { return inputs_[0]; }
intptr_t offset_in_bytes() const { return offset_in_bytes_; }
@@ -3111,6 +3122,8 @@ class LoadFieldInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return result_cid_; }
+
virtual bool AttributesEqual(Instruction* other) const;
virtual bool AffectedBySideEffect() const { return !immutable_; }
@@ -3158,7 +3171,7 @@ class StoreVMFieldInstr : public TemplateDefinition<2> {
}
DECLARE_INSTRUCTION(StoreVMField)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
Value* value() const { return inputs_[0]; }
Value* dest() const { return inputs_[1]; }
@@ -3171,6 +3184,8 @@ class StoreVMFieldInstr : public TemplateDefinition<2> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const intptr_t offset_in_bytes_;
const AbstractType& type_;
@@ -3192,6 +3207,7 @@ class InstantiateTypeArgumentsInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(InstantiateTypeArguments)
+ virtual RawAbstractType* CompileType() const;
Value* instantiator() const { return inputs_[0]; }
const AbstractTypeArguments& type_arguments() const {
@@ -3205,6 +3221,8 @@ class InstantiateTypeArgumentsInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return true; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const intptr_t token_pos_;
const AbstractTypeArguments& type_arguments_;
@@ -3226,6 +3244,7 @@ class ExtractConstructorTypeArgumentsInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(ExtractConstructorTypeArguments)
+ virtual RawAbstractType* CompileType() const;
Value* instantiator() const { return inputs_[0]; }
const AbstractTypeArguments& type_arguments() const {
@@ -3239,6 +3258,8 @@ class ExtractConstructorTypeArgumentsInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const intptr_t token_pos_;
const AbstractTypeArguments& type_arguments_;
@@ -3257,6 +3278,7 @@ class ExtractConstructorInstantiatorInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(ExtractConstructorInstantiator)
+ virtual RawAbstractType* CompileType() const;
Value* instantiator() const { return inputs_[0]; }
const AbstractTypeArguments& type_arguments() const {
@@ -3269,6 +3291,8 @@ class ExtractConstructorInstantiatorInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const ConstructorCallNode& ast_node_;
@@ -3284,7 +3308,7 @@ class AllocateContextInstr : public TemplateDefinition<0> {
num_context_variables_(num_context_variables) {}
DECLARE_INSTRUCTION(AllocateContext);
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
intptr_t token_pos() const { return token_pos_; }
intptr_t num_context_variables() const { return num_context_variables_; }
@@ -3295,6 +3319,8 @@ class AllocateContextInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
const intptr_t token_pos_;
const intptr_t num_context_variables_;
@@ -3311,6 +3337,7 @@ class ChainContextInstr : public TemplateInstruction<1> {
}
DECLARE_INSTRUCTION(ChainContext)
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 0; }
@@ -3337,12 +3364,14 @@ class CloneContextInstr : public TemplateDefinition<1> {
Value* context_value() const { return inputs_[0]; }
DECLARE_INSTRUCTION(CloneContext)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual bool CanDeoptimize() const { return true; }
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kContextCid; }
+
private:
const intptr_t token_pos_;
@@ -3360,6 +3389,7 @@ class CatchEntryInstr : public TemplateInstruction<0> {
const LocalVariable& stacktrace_var() const { return stacktrace_var_; }
DECLARE_INSTRUCTION(CatchEntry)
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 0; }
@@ -3390,6 +3420,7 @@ class CheckEitherNonSmiInstr : public TemplateInstruction<2> {
}
DECLARE_INSTRUCTION(CheckEitherNonSmi)
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 0; }
@@ -3431,13 +3462,15 @@ class BoxDoubleInstr : public TemplateDefinition<1> {
virtual bool AffectedBySideEffect() const { return false; }
virtual bool AttributesEqual(Instruction* other) const { return true; }
+ virtual intptr_t ResultCid() const;
+
virtual Representation RequiredInputRepresentation(intptr_t idx) const {
ASSERT(idx == 0);
return kUnboxedDouble;
}
DECLARE_INSTRUCTION(BoxDouble)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
private:
const intptr_t token_pos_;
@@ -3462,13 +3495,15 @@ class BoxIntegerInstr : public TemplateDefinition<1> {
virtual bool AffectedBySideEffect() const { return false; }
virtual bool AttributesEqual(Instruction* other) const { return true; }
+ virtual intptr_t ResultCid() const;
+
virtual Representation RequiredInputRepresentation(intptr_t idx) const {
ASSERT(idx == 0);
return kUnboxedMint;
}
DECLARE_INSTRUCTION(BoxInteger)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
private:
DISALLOW_COPY_AND_ASSIGN(BoxIntegerInstr);
@@ -3486,12 +3521,15 @@ class UnboxDoubleInstr : public TemplateDefinition<1> {
Value* value() const { return inputs_[0]; }
virtual bool CanDeoptimize() const {
- return (value()->Type()->ToCid() != kDoubleCid)
- && (value()->Type()->ToCid() != kSmiCid);
+ return (value()->ResultCid() != kDoubleCid)
+ && (value()->ResultCid() != kSmiCid);
}
virtual bool HasSideEffect() const { return false; }
+ // The output is not an instance but when it is boxed it becomes double.
+ virtual intptr_t ResultCid() const { return kDoubleCid; }
+
virtual Representation representation() const {
return kUnboxedDouble;
}
@@ -3500,7 +3538,7 @@ class UnboxDoubleInstr : public TemplateDefinition<1> {
virtual bool AttributesEqual(Instruction* other) const { return true; }
DECLARE_INSTRUCTION(UnboxDouble)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
private:
DISALLOW_COPY_AND_ASSIGN(UnboxDoubleInstr);
@@ -3518,13 +3556,15 @@ class UnboxIntegerInstr : public TemplateDefinition<1> {
Value* value() const { return inputs_[0]; }
virtual bool CanDeoptimize() const {
- return (value()->Type()->ToCid() != kSmiCid)
- && (value()->Type()->ToCid() != kMintCid);
+ return (value()->ResultCid() != kMintCid)
+ && (value()->ResultCid() != kSmiCid);
}
virtual bool HasSideEffect() const { return false; }
- virtual CompileType* ComputeInitialType() const;
+ virtual intptr_t ResultCid() const;
+
+ virtual RawAbstractType* CompileType() const;
virtual Representation representation() const {
return kUnboxedMint;
@@ -3559,6 +3599,9 @@ class MathSqrtInstr : public TemplateDefinition<1> {
return true;
}
+ // The output is not an instance but when it is boxed it becomes double.
+ virtual intptr_t ResultCid() const { return kDoubleCid; }
+
virtual Representation representation() const {
return kUnboxedDouble;
}
@@ -3575,7 +3618,7 @@ class MathSqrtInstr : public TemplateDefinition<1> {
}
DECLARE_INSTRUCTION(MathSqrt)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
private:
DISALLOW_COPY_AND_ASSIGN(MathSqrtInstr);
@@ -3613,6 +3656,8 @@ class BinaryDoubleOpInstr : public TemplateDefinition<2> {
return op_kind() == other->AsBinaryDoubleOp()->op_kind();
}
+ virtual intptr_t ResultCid() const;
+
virtual Representation representation() const {
return kUnboxedDouble;
}
@@ -3629,7 +3674,7 @@ class BinaryDoubleOpInstr : public TemplateDefinition<2> {
}
DECLARE_INSTRUCTION(BinaryDoubleOp)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual Definition* Canonicalize(FlowGraphOptimizer* optimizer);
@@ -3673,7 +3718,8 @@ class BinaryMintOpInstr : public TemplateDefinition<2> {
return op_kind() == other->AsBinaryMintOp()->op_kind();
}
- virtual CompileType* ComputeInitialType() const;
+ virtual intptr_t ResultCid() const;
+ virtual RawAbstractType* CompileType() const;
virtual Representation representation() const {
return kUnboxedMint;
@@ -3733,7 +3779,8 @@ class ShiftMintOpInstr : public TemplateDefinition<2> {
return op_kind() == other->AsShiftMintOp()->op_kind();
}
- virtual CompileType* ComputeInitialType() const;
+ virtual intptr_t ResultCid() const;
+ virtual RawAbstractType* CompileType() const;
virtual Representation representation() const {
return kUnboxedMint;
@@ -3787,7 +3834,8 @@ class UnaryMintOpInstr : public TemplateDefinition<1> {
return op_kind() == other->AsUnaryMintOp()->op_kind();
}
- virtual CompileType* ComputeInitialType() const;
+ virtual intptr_t ResultCid() const;
+ virtual RawAbstractType* CompileType() const;
virtual Representation representation() const {
return kUnboxedMint;
@@ -3842,7 +3890,7 @@ class BinarySmiOpInstr : public TemplateDefinition<2> {
DECLARE_INSTRUCTION(BinarySmiOp)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual bool CanDeoptimize() const;
@@ -3851,6 +3899,8 @@ class BinarySmiOpInstr : public TemplateDefinition<2> {
virtual bool AffectedBySideEffect() const { return false; }
virtual bool AttributesEqual(Instruction* other) const;
+ virtual intptr_t ResultCid() const;
+
void set_overflow(bool overflow) {
overflow_ = overflow;
}
@@ -3893,12 +3943,14 @@ class UnarySmiOpInstr : public TemplateDefinition<1> {
virtual void PrintOperandsTo(BufferFormatter* f) const;
DECLARE_INSTRUCTION(UnarySmiOp)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual bool CanDeoptimize() const { return op_kind() == Token::kNEGATE; }
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kSmiCid; }
+
private:
const Token::Kind op_kind_;
@@ -3914,6 +3966,7 @@ class CheckStackOverflowInstr : public TemplateInstruction<0> {
intptr_t token_pos() const { return token_pos_; }
DECLARE_INSTRUCTION(CheckStackOverflow)
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 0; }
@@ -3936,7 +3989,7 @@ class SmiToDoubleInstr : public TemplateDefinition<0> {
InstanceCallInstr* instance_call() const { return instance_call_; }
DECLARE_INSTRUCTION(SmiToDouble)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 1; }
@@ -3944,6 +3997,8 @@ class SmiToDoubleInstr : public TemplateDefinition<0> {
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kDoubleCid; }
+
private:
InstanceCallInstr* instance_call_;
@@ -3963,7 +4018,7 @@ class DoubleToIntegerInstr : public TemplateDefinition<1> {
InstanceCallInstr* instance_call() const { return instance_call_; }
DECLARE_INSTRUCTION(DoubleToInteger)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 1; }
@@ -3971,6 +4026,9 @@ class DoubleToIntegerInstr : public TemplateDefinition<1> {
virtual bool HasSideEffect() const { return false; }
+ // Result could be any of the int types.
+ virtual intptr_t ResultCid() const { return kDynamicCid; }
+
private:
InstanceCallInstr* instance_call_;
@@ -3991,12 +4049,14 @@ class DoubleToSmiInstr : public TemplateDefinition<1> {
Value* value() const { return inputs_[0]; }
DECLARE_INSTRUCTION(DoubleToSmi)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual bool CanDeoptimize() const { return true; }
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kSmiCid; }
+
virtual Representation RequiredInputRepresentation(intptr_t idx) const {
ASSERT(idx == 0);
return kUnboxedDouble;
@@ -4025,12 +4085,14 @@ class DoubleToDoubleInstr : public TemplateDefinition<1> {
MethodRecognizer::Kind recognized_kind() const { return recognized_kind_; }
DECLARE_INSTRUCTION(DoubleToDouble)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual bool CanDeoptimize() const { return false; }
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kDoubleCid; }
+
virtual Representation representation() const {
return kUnboxedDouble;
}
@@ -4066,13 +4128,15 @@ class InvokeMathCFunctionInstr : public Definition {
MethodRecognizer::Kind recognized_kind() const { return recognized_kind_; }
DECLARE_INSTRUCTION(InvokeMathCFunction)
- virtual CompileType* ComputeInitialType() const;
+ virtual RawAbstractType* CompileType() const;
virtual void PrintOperandsTo(BufferFormatter* f) const;
virtual bool CanDeoptimize() const { return false; }
virtual bool HasSideEffect() const { return false; }
+ virtual intptr_t ResultCid() const { return kDoubleCid; }
+
virtual Representation representation() const {
return kUnboxedDouble;
}
@@ -4124,6 +4188,7 @@ class CheckClassInstr : public TemplateInstruction<1> {
const ICData& unary_checks);
DECLARE_INSTRUCTION(CheckClass)
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 0; }
@@ -4160,6 +4225,7 @@ class CheckSmiInstr : public TemplateInstruction<1> {
}
DECLARE_INSTRUCTION(CheckSmi)
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 0; }
@@ -4195,6 +4261,7 @@ class CheckArrayBoundInstr : public TemplateInstruction<2> {
}
DECLARE_INSTRUCTION(CheckArrayBound)
+ virtual RawAbstractType* CompileType() const;
virtual intptr_t ArgumentCount() const { return 0; }
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