3481c5661a
The native port callback is now passed the message as a decodes Dart_CMessage structure. The Dart_CMessage structure is allocated in a zone and the callback receiving it should expect the lifetime to be controlled by the caller. Added support for zones which do not require a current isolate. Changed the GrowableArray to support allocating in aprovided zone instead of the zone for the current isolate. R=turnidge@google.com, asiva@google.com BUG= TEST= Review URL: https://chromiumcodereview.appspot.com//9325022 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@4068 260f80e4-7a28-3924-810f-c04153c831b5
138 lines
3.6 KiB
C++
138 lines
3.6 KiB
C++
// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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// Defines growable array classes, that differ where they are allocated:
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// - GrowableArray: allocate on stack.
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// - ZoneGrowableArray: allocated in the zone.
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#ifndef VM_GROWABLE_ARRAY_H_
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#define VM_GROWABLE_ARRAY_H_
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#include "platform/utils.h"
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#include "vm/allocation.h"
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#include "vm/isolate.h"
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#include "vm/zone.h"
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namespace dart {
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template<typename T, typename B>
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class BaseGrowableArray : public B {
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public:
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explicit BaseGrowableArray(BaseZone* zone)
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: length_(0), capacity_(0), data_(NULL), zone_(zone) {
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ASSERT(zone_ != NULL);
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}
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BaseGrowableArray(int initial_capacity, BaseZone* zone)
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: length_(0), capacity_(0), data_(NULL), zone_(zone) {
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ASSERT(zone_ != NULL);
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if (initial_capacity > 0) {
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capacity_ = Utils::RoundUpToPowerOfTwo(initial_capacity);
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data_ = reinterpret_cast<T*>(zone_->Allocate(capacity_ * sizeof(T)));
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}
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}
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int length() const { return length_; }
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T* data() const { return data_; }
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bool is_empty() const { return length_ == 0; }
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void Add(const T& value) {
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Resize(length() + 1);
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Last() = value;
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}
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void RemoveLast() {
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ASSERT(length_ > 0);
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length_--;
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}
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T& operator[](int index) const {
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ASSERT(0 <= index);
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ASSERT(index < length_);
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ASSERT(length_ <= capacity_);
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return data_[index];
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}
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T& Last() const {
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ASSERT(length_ > 0);
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return operator[](length_ - 1);
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}
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void AddArray(const BaseGrowableArray<T, B>& src) {
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for (int i = 0; i < src.length(); i++) {
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Add(src[i]);
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}
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}
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void Clear() {
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length_ = 0;
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}
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// Sort the array in place.
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inline void Sort(int compare(const T*, const T*));
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private:
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int length_;
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int capacity_;
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T* data_;
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BaseZone* zone_; // Zone in which we are allocating the array.
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void Resize(int new_length);
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DISALLOW_COPY_AND_ASSIGN(BaseGrowableArray);
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};
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template<typename T, typename B>
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inline void BaseGrowableArray<T, B>::Sort(
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int compare(const T*, const T*)) {
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typedef int (*CompareFunction)(const void*, const void*);
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qsort(data_, length_, sizeof(T), reinterpret_cast<CompareFunction>(compare));
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}
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template<typename T, typename B>
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void BaseGrowableArray<T, B>::Resize(int new_length) {
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if (new_length > capacity_) {
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int new_capacity = Utils::RoundUpToPowerOfTwo(new_length);
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T* new_data = reinterpret_cast<T*>(
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zone_->Reallocate(reinterpret_cast<uword>(data_),
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capacity_ * sizeof(T),
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new_capacity * sizeof(T)));
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ASSERT(new_data != NULL);
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data_ = new_data;
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capacity_ = new_capacity;
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}
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length_ = new_length;
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}
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template<typename T>
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class GrowableArray : public BaseGrowableArray<T, ValueObject> {
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public:
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explicit GrowableArray(int initial_capacity)
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: BaseGrowableArray<T, ValueObject>(
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initial_capacity,
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Isolate::Current()->current_zone()->GetBaseZone()) {}
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GrowableArray()
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: BaseGrowableArray<T, ValueObject>(
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Isolate::Current()->current_zone()->GetBaseZone()) {}
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};
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template<typename T>
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class ZoneGrowableArray : public BaseGrowableArray<T, ZoneAllocated> {
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public:
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explicit ZoneGrowableArray(int initial_capacity)
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: BaseGrowableArray<T, ZoneAllocated>(
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initial_capacity,
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Isolate::Current()->current_zone()->GetBaseZone()) {}
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ZoneGrowableArray() :
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BaseGrowableArray<T, ZoneAllocated>(
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Isolate::Current()->current_zone()->GetBaseZone()) {}
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};
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} // namespace dart
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#endif // VM_GROWABLE_ARRAY_H_
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