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      1 /*
      2  * Copyright (C) 2005 The Android Open Source Project
      3  *
      4  * Licensed under the Apache License, Version 2.0 (the "License");
      5  * you may not use this file except in compliance with the License.
      6  * You may obtain a copy of the License at
      7  *
      8  *      http://www.apache.org/licenses/LICENSE-2.0
      9  *
     10  * Unless required by applicable law or agreed to in writing, software
     11  * distributed under the License is distributed on an "AS IS" BASIS,
     12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     13  * See the License for the specific language governing permissions and
     14  * limitations under the License.
     15  */
     16 
     17 #ifndef ANDROID_REF_BASE_H
     18 #define ANDROID_REF_BASE_H
     19 
     20 #include <cutils/atomic.h>
     21 
     22 #include <stdint.h>
     23 #include <sys/types.h>
     24 #include <stdlib.h>
     25 #include <string.h>
     26 
     27 #include <utils/StrongPointer.h>
     28 #include <utils/TypeHelpers.h>
     29 
     30 // ---------------------------------------------------------------------------
     31 namespace android {
     32 
     33 class TextOutput;
     34 TextOutput& printWeakPointer(TextOutput& to, const void* val);
     35 
     36 // ---------------------------------------------------------------------------
     37 
     38 #define COMPARE_WEAK(_op_)                                      \
     39 inline bool operator _op_ (const sp<T>& o) const {              \
     40     return m_ptr _op_ o.m_ptr;                                  \
     41 }                                                               \
     42 inline bool operator _op_ (const T* o) const {                  \
     43     return m_ptr _op_ o;                                        \
     44 }                                                               \
     45 template<typename U>                                            \
     46 inline bool operator _op_ (const sp<U>& o) const {              \
     47     return m_ptr _op_ o.m_ptr;                                  \
     48 }                                                               \
     49 template<typename U>                                            \
     50 inline bool operator _op_ (const U* o) const {                  \
     51     return m_ptr _op_ o;                                        \
     52 }
     53 
     54 // ---------------------------------------------------------------------------
     55 
     56 class ReferenceRenamer {
     57 protected:
     58     // destructor is purposedly not virtual so we avoid code overhead from
     59     // subclasses; we have to make it protected to guarantee that it
     60     // cannot be called from this base class (and to make strict compilers
     61     // happy).
     62     ~ReferenceRenamer() { }
     63 public:
     64     virtual void operator()(size_t i) const = 0;
     65 };
     66 
     67 // ---------------------------------------------------------------------------
     68 
     69 class RefBase
     70 {
     71 public:
     72             void            incStrong(const void* id) const;
     73             void            decStrong(const void* id) const;
     74 
     75             void            forceIncStrong(const void* id) const;
     76 
     77             //! DEBUGGING ONLY: Get current strong ref count.
     78             int32_t         getStrongCount() const;
     79 
     80     class weakref_type
     81     {
     82     public:
     83         RefBase*            refBase() const;
     84 
     85         void                incWeak(const void* id);
     86         void                decWeak(const void* id);
     87 
     88         // acquires a strong reference if there is already one.
     89         bool                attemptIncStrong(const void* id);
     90 
     91         // acquires a weak reference if there is already one.
     92         // This is not always safe. see ProcessState.cpp and BpBinder.cpp
     93         // for proper use.
     94         bool                attemptIncWeak(const void* id);
     95 
     96         //! DEBUGGING ONLY: Get current weak ref count.
     97         int32_t             getWeakCount() const;
     98 
     99         //! DEBUGGING ONLY: Print references held on object.
    100         void                printRefs() const;
    101 
    102         //! DEBUGGING ONLY: Enable tracking for this object.
    103         // enable -- enable/disable tracking
    104         // retain -- when tracking is enable, if true, then we save a stack trace
    105         //           for each reference and dereference; when retain == false, we
    106         //           match up references and dereferences and keep only the
    107         //           outstanding ones.
    108 
    109         void                trackMe(bool enable, bool retain);
    110     };
    111 
    112             weakref_type*   createWeak(const void* id) const;
    113 
    114             weakref_type*   getWeakRefs() const;
    115 
    116             //! DEBUGGING ONLY: Print references held on object.
    117     inline  void            printRefs() const { getWeakRefs()->printRefs(); }
    118 
    119             //! DEBUGGING ONLY: Enable tracking of object.
    120     inline  void            trackMe(bool enable, bool retain)
    121     {
    122         getWeakRefs()->trackMe(enable, retain);
    123     }
    124 
    125     typedef RefBase basetype;
    126 
    127 protected:
    128                             RefBase();
    129     virtual                 ~RefBase();
    130 
    131     //! Flags for extendObjectLifetime()
    132     enum {
    133         OBJECT_LIFETIME_STRONG  = 0x0000,
    134         OBJECT_LIFETIME_WEAK    = 0x0001,
    135         OBJECT_LIFETIME_MASK    = 0x0001
    136     };
    137 
    138             void            extendObjectLifetime(int32_t mode);
    139 
    140     //! Flags for onIncStrongAttempted()
    141     enum {
    142         FIRST_INC_STRONG = 0x0001
    143     };
    144 
    145     virtual void            onFirstRef();
    146     virtual void            onLastStrongRef(const void* id);
    147     virtual bool            onIncStrongAttempted(uint32_t flags, const void* id);
    148     virtual void            onLastWeakRef(const void* id);
    149 
    150 private:
    151     friend class weakref_type;
    152     class weakref_impl;
    153 
    154                             RefBase(const RefBase& o);
    155             RefBase&        operator=(const RefBase& o);
    156 
    157 private:
    158     friend class ReferenceMover;
    159 
    160     static void renameRefs(size_t n, const ReferenceRenamer& renamer);
    161 
    162     static void renameRefId(weakref_type* ref,
    163             const void* old_id, const void* new_id);
    164 
    165     static void renameRefId(RefBase* ref,
    166             const void* old_id, const void* new_id);
    167 
    168         weakref_impl* const mRefs;
    169 };
    170 
    171 // ---------------------------------------------------------------------------
    172 
    173 template <class T>
    174 class LightRefBase
    175 {
    176 public:
    177     inline LightRefBase() : mCount(0) { }
    178     inline void incStrong(__attribute__((unused)) const void* id) const {
    179         android_atomic_inc(&mCount);
    180     }
    181     inline void decStrong(__attribute__((unused)) const void* id) const {
    182         if (android_atomic_dec(&mCount) == 1) {
    183             delete static_cast<const T*>(this);
    184         }
    185     }
    186     //! DEBUGGING ONLY: Get current strong ref count.
    187     inline int32_t getStrongCount() const {
    188         return mCount;
    189     }
    190 
    191     typedef LightRefBase<T> basetype;
    192 
    193 protected:
    194     inline ~LightRefBase() { }
    195 
    196 private:
    197     friend class ReferenceMover;
    198     inline static void renameRefs(size_t n, const ReferenceRenamer& renamer) { }
    199     inline static void renameRefId(T* ref,
    200             const void* old_id, const void* new_id) { }
    201 
    202 private:
    203     mutable volatile int32_t mCount;
    204 };
    205 
    206 // ---------------------------------------------------------------------------
    207 
    208 template <typename T>
    209 class wp
    210 {
    211 public:
    212     typedef typename RefBase::weakref_type weakref_type;
    213 
    214     inline wp() : m_ptr(0) { }
    215 
    216     wp(T* other);
    217     wp(const wp<T>& other);
    218     wp(const sp<T>& other);
    219     template<typename U> wp(U* other);
    220     template<typename U> wp(const sp<U>& other);
    221     template<typename U> wp(const wp<U>& other);
    222 
    223     ~wp();
    224 
    225     // Assignment
    226 
    227     wp& operator = (T* other);
    228     wp& operator = (const wp<T>& other);
    229     wp& operator = (const sp<T>& other);
    230 
    231     template<typename U> wp& operator = (U* other);
    232     template<typename U> wp& operator = (const wp<U>& other);
    233     template<typename U> wp& operator = (const sp<U>& other);
    234 
    235     void set_object_and_refs(T* other, weakref_type* refs);
    236 
    237     // promotion to sp
    238 
    239     sp<T> promote() const;
    240 
    241     // Reset
    242 
    243     void clear();
    244 
    245     // Accessors
    246 
    247     inline  weakref_type* get_refs() const { return m_refs; }
    248 
    249     inline  T* unsafe_get() const { return m_ptr; }
    250 
    251     // Operators
    252 
    253     COMPARE_WEAK(==)
    254     COMPARE_WEAK(!=)
    255     COMPARE_WEAK(>)
    256     COMPARE_WEAK(<)
    257     COMPARE_WEAK(<=)
    258     COMPARE_WEAK(>=)
    259 
    260     inline bool operator == (const wp<T>& o) const {
    261         return (m_ptr == o.m_ptr) && (m_refs == o.m_refs);
    262     }
    263     template<typename U>
    264     inline bool operator == (const wp<U>& o) const {
    265         return m_ptr == o.m_ptr;
    266     }
    267 
    268     inline bool operator > (const wp<T>& o) const {
    269         return (m_ptr == o.m_ptr) ? (m_refs > o.m_refs) : (m_ptr > o.m_ptr);
    270     }
    271     template<typename U>
    272     inline bool operator > (const wp<U>& o) const {
    273         return (m_ptr == o.m_ptr) ? (m_refs > o.m_refs) : (m_ptr > o.m_ptr);
    274     }
    275 
    276     inline bool operator < (const wp<T>& o) const {
    277         return (m_ptr == o.m_ptr) ? (m_refs < o.m_refs) : (m_ptr < o.m_ptr);
    278     }
    279     template<typename U>
    280     inline bool operator < (const wp<U>& o) const {
    281         return (m_ptr == o.m_ptr) ? (m_refs < o.m_refs) : (m_ptr < o.m_ptr);
    282     }
    283                          inline bool operator != (const wp<T>& o) const { return m_refs != o.m_refs; }
    284     template<typename U> inline bool operator != (const wp<U>& o) const { return !operator == (o); }
    285                          inline bool operator <= (const wp<T>& o) const { return !operator > (o); }
    286     template<typename U> inline bool operator <= (const wp<U>& o) const { return !operator > (o); }
    287                          inline bool operator >= (const wp<T>& o) const { return !operator < (o); }
    288     template<typename U> inline bool operator >= (const wp<U>& o) const { return !operator < (o); }
    289 
    290 private:
    291     template<typename Y> friend class sp;
    292     template<typename Y> friend class wp;
    293 
    294     T*              m_ptr;
    295     weakref_type*   m_refs;
    296 };
    297 
    298 template <typename T>
    299 TextOutput& operator<<(TextOutput& to, const wp<T>& val);
    300 
    301 #undef COMPARE_WEAK
    302 
    303 // ---------------------------------------------------------------------------
    304 // No user serviceable parts below here.
    305 
    306 template<typename T>
    307 wp<T>::wp(T* other)
    308     : m_ptr(other)
    309 {
    310     if (other) m_refs = other->createWeak(this);
    311 }
    312 
    313 template<typename T>
    314 wp<T>::wp(const wp<T>& other)
    315     : m_ptr(other.m_ptr), m_refs(other.m_refs)
    316 {
    317     if (m_ptr) m_refs->incWeak(this);
    318 }
    319 
    320 template<typename T>
    321 wp<T>::wp(const sp<T>& other)
    322     : m_ptr(other.m_ptr)
    323 {
    324     if (m_ptr) {
    325         m_refs = m_ptr->createWeak(this);
    326     }
    327 }
    328 
    329 template<typename T> template<typename U>
    330 wp<T>::wp(U* other)
    331     : m_ptr(other)
    332 {
    333     if (other) m_refs = other->createWeak(this);
    334 }
    335 
    336 template<typename T> template<typename U>
    337 wp<T>::wp(const wp<U>& other)
    338     : m_ptr(other.m_ptr)
    339 {
    340     if (m_ptr) {
    341         m_refs = other.m_refs;
    342         m_refs->incWeak(this);
    343     }
    344 }
    345 
    346 template<typename T> template<typename U>
    347 wp<T>::wp(const sp<U>& other)
    348     : m_ptr(other.m_ptr)
    349 {
    350     if (m_ptr) {
    351         m_refs = m_ptr->createWeak(this);
    352     }
    353 }
    354 
    355 template<typename T>
    356 wp<T>::~wp()
    357 {
    358     if (m_ptr) m_refs->decWeak(this);
    359 }
    360 
    361 template<typename T>
    362 wp<T>& wp<T>::operator = (T* other)
    363 {
    364     weakref_type* newRefs =
    365         other ? other->createWeak(this) : 0;
    366     if (m_ptr) m_refs->decWeak(this);
    367     m_ptr = other;
    368     m_refs = newRefs;
    369     return *this;
    370 }
    371 
    372 template<typename T>
    373 wp<T>& wp<T>::operator = (const wp<T>& other)
    374 {
    375     weakref_type* otherRefs(other.m_refs);
    376     T* otherPtr(other.m_ptr);
    377     if (otherPtr) otherRefs->incWeak(this);
    378     if (m_ptr) m_refs->decWeak(this);
    379     m_ptr = otherPtr;
    380     m_refs = otherRefs;
    381     return *this;
    382 }
    383 
    384 template<typename T>
    385 wp<T>& wp<T>::operator = (const sp<T>& other)
    386 {
    387     weakref_type* newRefs =
    388         other != NULL ? other->createWeak(this) : 0;
    389     T* otherPtr(other.m_ptr);
    390     if (m_ptr) m_refs->decWeak(this);
    391     m_ptr = otherPtr;
    392     m_refs = newRefs;
    393     return *this;
    394 }
    395 
    396 template<typename T> template<typename U>
    397 wp<T>& wp<T>::operator = (U* other)
    398 {
    399     weakref_type* newRefs =
    400         other ? other->createWeak(this) : 0;
    401     if (m_ptr) m_refs->decWeak(this);
    402     m_ptr = other;
    403     m_refs = newRefs;
    404     return *this;
    405 }
    406 
    407 template<typename T> template<typename U>
    408 wp<T>& wp<T>::operator = (const wp<U>& other)
    409 {
    410     weakref_type* otherRefs(other.m_refs);
    411     U* otherPtr(other.m_ptr);
    412     if (otherPtr) otherRefs->incWeak(this);
    413     if (m_ptr) m_refs->decWeak(this);
    414     m_ptr = otherPtr;
    415     m_refs = otherRefs;
    416     return *this;
    417 }
    418 
    419 template<typename T> template<typename U>
    420 wp<T>& wp<T>::operator = (const sp<U>& other)
    421 {
    422     weakref_type* newRefs =
    423         other != NULL ? other->createWeak(this) : 0;
    424     U* otherPtr(other.m_ptr);
    425     if (m_ptr) m_refs->decWeak(this);
    426     m_ptr = otherPtr;
    427     m_refs = newRefs;
    428     return *this;
    429 }
    430 
    431 template<typename T>
    432 void wp<T>::set_object_and_refs(T* other, weakref_type* refs)
    433 {
    434     if (other) refs->incWeak(this);
    435     if (m_ptr) m_refs->decWeak(this);
    436     m_ptr = other;
    437     m_refs = refs;
    438 }
    439 
    440 template<typename T>
    441 sp<T> wp<T>::promote() const
    442 {
    443     sp<T> result;
    444     if (m_ptr && m_refs->attemptIncStrong(&result)) {
    445         result.set_pointer(m_ptr);
    446     }
    447     return result;
    448 }
    449 
    450 template<typename T>
    451 void wp<T>::clear()
    452 {
    453     if (m_ptr) {
    454         m_refs->decWeak(this);
    455         m_ptr = 0;
    456     }
    457 }
    458 
    459 template <typename T>
    460 inline TextOutput& operator<<(TextOutput& to, const wp<T>& val)
    461 {
    462     return printWeakPointer(to, val.unsafe_get());
    463 }
    464 
    465 // ---------------------------------------------------------------------------
    466 
    467 // this class just serves as a namespace so TYPE::moveReferences can stay
    468 // private.
    469 class ReferenceMover {
    470 public:
    471     // it would be nice if we could make sure no extra code is generated
    472     // for sp<TYPE> or wp<TYPE> when TYPE is a descendant of RefBase:
    473     // Using a sp<RefBase> override doesn't work; it's a bit like we wanted
    474     // a template<typename TYPE inherits RefBase> template...
    475 
    476     template<typename TYPE> static inline
    477     void move_references(sp<TYPE>* d, sp<TYPE> const* s, size_t n) {
    478 
    479         class Renamer : public ReferenceRenamer {
    480             sp<TYPE>* d;
    481             sp<TYPE> const* s;
    482             virtual void operator()(size_t i) const {
    483                 // The id are known to be the sp<>'s this pointer
    484                 TYPE::renameRefId(d[i].get(), &s[i], &d[i]);
    485             }
    486         public:
    487             Renamer(sp<TYPE>* d, sp<TYPE> const* s) : s(s), d(d) { }
    488         };
    489 
    490         memmove(d, s, n*sizeof(sp<TYPE>));
    491         TYPE::renameRefs(n, Renamer(d, s));
    492     }
    493 
    494 
    495     template<typename TYPE> static inline
    496     void move_references(wp<TYPE>* d, wp<TYPE> const* s, size_t n) {
    497 
    498         class Renamer : public ReferenceRenamer {
    499             wp<TYPE>* d;
    500             wp<TYPE> const* s;
    501             virtual void operator()(size_t i) const {
    502                 // The id are known to be the wp<>'s this pointer
    503                 TYPE::renameRefId(d[i].get_refs(), &s[i], &d[i]);
    504             }
    505         public:
    506             Renamer(wp<TYPE>* d, wp<TYPE> const* s) : s(s), d(d) { }
    507         };
    508 
    509         memmove(d, s, n*sizeof(wp<TYPE>));
    510         TYPE::renameRefs(n, Renamer(d, s));
    511     }
    512 };
    513 
    514 // specialization for moving sp<> and wp<> types.
    515 // these are used by the [Sorted|Keyed]Vector<> implementations
    516 // sp<> and wp<> need to be handled specially, because they do not
    517 // have trivial copy operation in the general case (see RefBase.cpp
    518 // when DEBUG ops are enabled), but can be implemented very
    519 // efficiently in most cases.
    520 
    521 template<typename TYPE> inline
    522 void move_forward_type(sp<TYPE>* d, sp<TYPE> const* s, size_t n) {
    523     ReferenceMover::move_references(d, s, n);
    524 }
    525 
    526 template<typename TYPE> inline
    527 void move_backward_type(sp<TYPE>* d, sp<TYPE> const* s, size_t n) {
    528     ReferenceMover::move_references(d, s, n);
    529 }
    530 
    531 template<typename TYPE> inline
    532 void move_forward_type(wp<TYPE>* d, wp<TYPE> const* s, size_t n) {
    533     ReferenceMover::move_references(d, s, n);
    534 }
    535 
    536 template<typename TYPE> inline
    537 void move_backward_type(wp<TYPE>* d, wp<TYPE> const* s, size_t n) {
    538     ReferenceMover::move_references(d, s, n);
    539 }
    540 
    541 
    542 }; // namespace android
    543 
    544 // ---------------------------------------------------------------------------
    545 
    546 #endif // ANDROID_REF_BASE_H
    547