1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
5 // The LazyInstance<Type, Traits> class manages a single instance of Type,
6 // which will be lazily created on the first time it's accessed. This class is
7 // useful for places you would normally use a function-level static, but you
8 // need to have guaranteed thread-safety. The Type constructor will only ever
9 // be called once, even if two threads are racing to create the object. Get()
10 // and Pointer() will always return the same, completely initialized instance.
11 // When the instance is constructed it is registered with AtExitManager. The
12 // destructor will be called on program exit.
14 // LazyInstance is completely thread safe, assuming that you create it safely.
15 // The class was designed to be POD initialized, so it shouldn't require a
16 // static constructor. It really only makes sense to declare a LazyInstance as
17 // a global variable using the LAZY_INSTANCE_INITIALIZER initializer.
19 // LazyInstance is similar to Singleton, except it does not have the singleton
20 // property. You can have multiple LazyInstance's of the same type, and each
21 // will manage a unique instance. It also preallocates the space for Type, as
22 // to avoid allocating the Type instance on the heap. This may help with the
23 // performance of creating the instance, and reducing heap fragmentation. This
24 // requires that Type be a complete type so we can determine the size.
27 // static LazyInstance<MyClass> my_instance = LAZY_INSTANCE_INITIALIZER;
28 // void SomeMethod() {
29 // my_instance.Get().SomeMethod(); // MyClass::SomeMethod()
31 // MyClass* ptr = my_instance.Pointer();
32 // ptr->DoDoDo(); // MyClass::DoDoDo
35 #ifndef BASE_LAZY_INSTANCE_H_
36 #define BASE_LAZY_INSTANCE_H_
38 #include <new> // For placement new.
40 #include "base/atomicops.h"
41 #include "base/base_export.h"
42 #include "base/basictypes.h"
43 #include "base/logging.h"
44 #include "base/memory/aligned_memory.h"
45 #include "base/third_party/dynamic_annotations/dynamic_annotations.h"
46 #include "base/threading/thread_restrictions.h"
48 // LazyInstance uses its own struct initializer-list style static
49 // initialization, as base's LINKER_INITIALIZED requires a constructor and on
50 // some compilers (notably gcc 4.4) this still ends up needing runtime
52 #define LAZY_INSTANCE_INITIALIZER {0}
56 template <typename Type
>
57 struct DefaultLazyInstanceTraits
{
58 static const bool kRegisterOnExit
= true;
59 static const bool kAllowedToAccessOnNonjoinableThread
= false;
61 static Type
* New(void* instance
) {
62 DCHECK_EQ(reinterpret_cast<uintptr_t>(instance
) & (ALIGNOF(Type
) - 1), 0u)
63 << ": Bad boy, the buffer passed to placement new is not aligned!\n"
64 "This may break some stuff like SSE-based optimizations assuming the "
65 "<Type> objects are word aligned.";
66 // Use placement new to initialize our instance in our preallocated space.
67 // The parenthesis is very important here to force POD type initialization.
68 return new (instance
) Type();
70 static void Delete(Type
* instance
) {
71 // Explicitly call the destructor.
76 // We pull out some of the functionality into non-templated functions, so we
77 // can implement the more complicated pieces out of line in the .cc file.
80 // Use LazyInstance<T>::Leaky for a less-verbose call-site typedef; e.g.:
81 // base::LazyInstance<T>::Leaky my_leaky_lazy_instance;
83 // base::LazyInstance<T, base::internal::LeakyLazyInstanceTraits<T> >
84 // my_leaky_lazy_instance;
85 // (especially when T is MyLongTypeNameImplClientHolderFactory).
86 // Only use this internal::-qualified verbose form to extend this traits class
87 // (depending on its implementation details).
88 template <typename Type
>
89 struct LeakyLazyInstanceTraits
{
90 static const bool kRegisterOnExit
= false;
91 static const bool kAllowedToAccessOnNonjoinableThread
= true;
93 static Type
* New(void* instance
) {
94 return DefaultLazyInstanceTraits
<Type
>::New(instance
);
96 static void Delete(Type
* instance
) {
100 // Our AtomicWord doubles as a spinlock, where a value of
101 // kBeingCreatedMarker means the spinlock is being held for creation.
102 static const subtle::AtomicWord kLazyInstanceStateCreating
= 1;
104 // Check if instance needs to be created. If so return true otherwise
105 // if another thread has beat us, wait for instance to be created and
107 BASE_EXPORT
bool NeedsLazyInstance(subtle::AtomicWord
* state
);
109 // After creating an instance, call this to register the dtor to be called
110 // at program exit and to update the atomic state to hold the |new_instance|
111 BASE_EXPORT
void CompleteLazyInstance(subtle::AtomicWord
* state
,
112 subtle::AtomicWord new_instance
,
114 void (*dtor
)(void*));
116 } // namespace internal
118 template <typename Type
, typename Traits
= DefaultLazyInstanceTraits
<Type
> >
121 // Do not define a destructor, as doing so makes LazyInstance a
122 // non-POD-struct. We don't want that because then a static initializer will
123 // be created to register the (empty) destructor with atexit() under MSVC, for
124 // example. We handle destruction of the contained Type class explicitly via
125 // the OnExit member function, where needed.
126 // ~LazyInstance() {}
128 // Convenience typedef to avoid having to repeat Type for leaky lazy
130 typedef LazyInstance
<Type
, internal::LeakyLazyInstanceTraits
<Type
> > Leaky
;
138 // Avoid making TLS lookup on release builds.
139 if (!Traits::kAllowedToAccessOnNonjoinableThread
)
140 ThreadRestrictions::AssertSingletonAllowed();
142 // If any bit in the created mask is true, the instance has already been
143 // fully constructed.
144 static const subtle::AtomicWord kLazyInstanceCreatedMask
=
145 ~internal::kLazyInstanceStateCreating
;
147 // We will hopefully have fast access when the instance is already created.
148 // Since a thread sees private_instance_ == 0 or kLazyInstanceStateCreating
149 // at most once, the load is taken out of NeedsInstance() as a fast-path.
150 // The load has acquire memory ordering as a thread which sees
151 // private_instance_ > creating needs to acquire visibility over
152 // the associated data (private_buf_). Pairing Release_Store is in
153 // CompleteLazyInstance().
154 subtle::AtomicWord value
= subtle::Acquire_Load(&private_instance_
);
155 if (!(value
& kLazyInstanceCreatedMask
) &&
156 internal::NeedsLazyInstance(&private_instance_
)) {
157 // Create the instance in the space provided by |private_buf_|.
158 value
= reinterpret_cast<subtle::AtomicWord
>(
159 Traits::New(private_buf_
.void_data()));
160 internal::CompleteLazyInstance(&private_instance_
, value
, this,
161 Traits::kRegisterOnExit
? OnExit
: NULL
);
164 // This annotation helps race detectors recognize correct lock-less
165 // synchronization between different threads calling Pointer().
166 // We suggest dynamic race detection tool that "Traits::New" above
167 // and CompleteLazyInstance(...) happens before "return instance()" below.
168 // See the corresponding HAPPENS_BEFORE in CompleteLazyInstance(...).
169 ANNOTATE_HAPPENS_AFTER(&private_instance_
);
173 bool operator==(Type
* p
) {
174 switch (subtle::NoBarrier_Load(&private_instance_
)) {
177 case internal::kLazyInstanceStateCreating
:
178 return static_cast<void*>(p
) == private_buf_
.void_data();
180 return p
== instance();
184 // Effectively private: member data is only public to allow the linker to
185 // statically initialize it and to maintain a POD class. DO NOT USE FROM
186 // OUTSIDE THIS CLASS.
188 subtle::AtomicWord private_instance_
;
189 // Preallocated space for the Type instance.
190 base::AlignedMemory
<sizeof(Type
), ALIGNOF(Type
)> private_buf_
;
194 return reinterpret_cast<Type
*>(subtle::NoBarrier_Load(&private_instance_
));
197 // Adapter function for use with AtExit. This should be called single
198 // threaded, so don't synchronize across threads.
199 // Calling OnExit while the instance is in use by other threads is a mistake.
200 static void OnExit(void* lazy_instance
) {
201 LazyInstance
<Type
, Traits
>* me
=
202 reinterpret_cast<LazyInstance
<Type
, Traits
>*>(lazy_instance
);
203 Traits::Delete(me
->instance());
204 subtle::NoBarrier_Store(&me
->private_instance_
, 0);
210 #endif // BASE_LAZY_INSTANCE_H_