Files
sdk/runtime/vm/deferred_objects.h
T
fschneider@google.com 15dfa97ab6 Fix bug and refactor optimized try-catch.
When untagged values flow into a exception-throwing instruction
 they need to be converted eagerly. Catch block entries assume all
 values are tagged at the entry.

 I changed the generation of moves at throwing
 instructions in try-catch: Instead of manuallu emitting moves,
 construct a parallel move and use the resolver to emit the native code.
 This eliminates a lot of duplicated code from all platforms.

 It will also allow to re-use stack space that is currently allocated
 separately for each individual try-catch in a function.

 I added a few more unrelated minor changes in various parts of the VM
 * Simpilify guard code generation
 * Resolve refactoring TODO in deoptimization
 * Improve names

R=johnmccutchan@google.com

Review URL: https://codereview.chromium.org//125103002

git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@31536 260f80e4-7a28-3924-810f-c04153c831b5
2014-01-07 09:58:45 +00:00

189 lines
4.8 KiB
C++

// Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
#ifndef VM_DEFERRED_OBJECTS_H_
#define VM_DEFERRED_OBJECTS_H_
#include "platform/globals.h"
namespace dart {
// Forward declarations.
class Instance;
class RawInstance;
class RawObject;
class DeoptContext;
// Used by the deoptimization infrastructure to defer allocation of
// unboxed objects until frame is fully rewritten and GC is safe.
// Describes a stack slot that should be populated with a reference to
// the materialized object.
class DeferredSlot {
public:
DeferredSlot(RawInstance** slot, DeferredSlot* next)
: slot_(slot), next_(next) { }
virtual ~DeferredSlot() { }
RawInstance** slot() const { return slot_; }
DeferredSlot* next() const { return next_; }
virtual void Materialize(DeoptContext* deopt_context) = 0;
private:
RawInstance** const slot_;
DeferredSlot* const next_;
DISALLOW_COPY_AND_ASSIGN(DeferredSlot);
};
class DeferredDouble : public DeferredSlot {
public:
DeferredDouble(double value, RawInstance** slot, DeferredSlot* next)
: DeferredSlot(slot, next), value_(value) { }
virtual void Materialize(DeoptContext* deopt_context);
double value() const { return value_; }
private:
const double value_;
DISALLOW_COPY_AND_ASSIGN(DeferredDouble);
};
class DeferredMint : public DeferredSlot {
public:
DeferredMint(int64_t value, RawInstance** slot, DeferredSlot* next)
: DeferredSlot(slot, next), value_(value) { }
virtual void Materialize(DeoptContext* deopt_context);
int64_t value() const { return value_; }
private:
const int64_t value_;
DISALLOW_COPY_AND_ASSIGN(DeferredMint);
};
class DeferredFloat32x4 : public DeferredSlot {
public:
DeferredFloat32x4(simd128_value_t value, RawInstance** slot,
DeferredSlot* next)
: DeferredSlot(slot, next), value_(value) { }
virtual void Materialize(DeoptContext* deopt_context);
simd128_value_t value() const { return value_; }
private:
const simd128_value_t value_;
DISALLOW_COPY_AND_ASSIGN(DeferredFloat32x4);
};
class DeferredInt32x4 : public DeferredSlot {
public:
DeferredInt32x4(simd128_value_t value, RawInstance** slot,
DeferredSlot* next)
: DeferredSlot(slot, next), value_(value) { }
virtual void Materialize(DeoptContext* deopt_context);
simd128_value_t value() const { return value_; }
private:
const simd128_value_t value_;
DISALLOW_COPY_AND_ASSIGN(DeferredInt32x4);
};
// Describes a slot that contains a reference to an object that had its
// allocation removed by AllocationSinking pass.
// Object itself is described and materialized by DeferredObject.
class DeferredObjectRef : public DeferredSlot {
public:
DeferredObjectRef(intptr_t index, RawInstance** slot, DeferredSlot* next)
: DeferredSlot(slot, next), index_(index) { }
virtual void Materialize(DeoptContext* deopt_context);
intptr_t index() const { return index_; }
private:
const intptr_t index_;
DISALLOW_COPY_AND_ASSIGN(DeferredObjectRef);
};
// Describes an object which allocation was removed by AllocationSinking pass.
// Arguments for materialization are stored as a part of expression stack
// for the bottommost deoptimized frame so that GC could discover them.
// They will be removed from the stack at the very end of deoptimization.
class DeferredObject {
public:
DeferredObject(intptr_t field_count, intptr_t* args)
: field_count_(field_count),
args_(reinterpret_cast<RawObject**>(args)),
object_(NULL) { }
intptr_t ArgumentCount() const {
return kFieldsStartIndex + kFieldEntrySize * field_count_;
}
RawInstance* object();
private:
enum {
kClassIndex = 0,
kFieldsStartIndex = kClassIndex + 1
};
enum {
kFieldIndex = 0,
kValueIndex,
kFieldEntrySize,
};
// Materializes the object. Returns amount of values that were consumed
// and should be removed from the expression stack at the very end of
// deoptimization.
void Materialize();
RawObject* GetClass() const {
return args_[kClassIndex];
}
RawObject* GetField(intptr_t index) const {
return args_[kFieldsStartIndex + kFieldEntrySize * index + kFieldIndex];
}
RawObject* GetValue(intptr_t index) const {
return args_[kFieldsStartIndex + kFieldEntrySize * index + kValueIndex];
}
// Amount of fields that have to be initialized.
const intptr_t field_count_;
// Pointer to the first materialization argument on the stack.
// The first argument is Class of the instance to materialize followed by
// Field, value pairs.
RawObject** args_;
// Object materialized from this description.
const Instance* object_;
DISALLOW_COPY_AND_ASSIGN(DeferredObject);
};
} // namespace dart
#endif // VM_DEFERRED_OBJECTS_H_