Home | History | Annotate | Download | only in foundation
      1 /*
      2  * Copyright (C) 2010 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 A_MESSAGE_H_
     18 
     19 #define A_MESSAGE_H_
     20 
     21 #include <media/stagefright/foundation/ABase.h>
     22 #include <media/stagefright/foundation/ALooper.h>
     23 #include <utils/KeyedVector.h>
     24 #include <utils/RefBase.h>
     25 
     26 namespace android {
     27 
     28 struct ABuffer;
     29 struct AHandler;
     30 struct AString;
     31 class Parcel;
     32 
     33 struct AReplyToken : public RefBase {
     34     explicit AReplyToken(const sp<ALooper> &looper)
     35         : mLooper(looper),
     36           mReplied(false) {
     37     }
     38 
     39 private:
     40     friend struct AMessage;
     41     friend struct ALooper;
     42     wp<ALooper> mLooper;
     43     sp<AMessage> mReply;
     44     bool mReplied;
     45 
     46     sp<ALooper> getLooper() const {
     47         return mLooper.promote();
     48     }
     49     // if reply is not set, returns false; otherwise, it retrieves the reply and returns true
     50     bool retrieveReply(sp<AMessage> *reply) {
     51         if (mReplied) {
     52             *reply = mReply;
     53             mReply.clear();
     54         }
     55         return mReplied;
     56     }
     57     // sets the reply for this token. returns OK or error
     58     status_t setReply(const sp<AMessage> &reply);
     59 };
     60 
     61 struct AMessage : public RefBase {
     62     AMessage();
     63     AMessage(uint32_t what, const sp<const AHandler> &handler);
     64 
     65     // Construct an AMessage from a parcel.
     66     // nestingAllowed determines how many levels AMessage can be nested inside
     67     // AMessage. The default value here is arbitrarily set to 255.
     68     // FromParcel() returns NULL on error, which occurs when the input parcel
     69     // contains
     70     // - an AMessage nested deeper than maxNestingLevel; or
     71     // - an item whose type is not recognized by this function.
     72     // Types currently recognized by this function are:
     73     //   Item types      set/find function suffixes
     74     //   ==========================================
     75     //     int32_t                Int32
     76     //     int64_t                Int64
     77     //     size_t                 Size
     78     //     float                  Float
     79     //     double                 Double
     80     //     AString                String
     81     //     AMessage               Message
     82     static sp<AMessage> FromParcel(const Parcel &parcel,
     83                                    size_t maxNestingLevel = 255);
     84 
     85     // Write this AMessage to a parcel.
     86     // All items in the AMessage must have types that are recognized by
     87     // FromParcel(); otherwise, TRESPASS error will occur.
     88     void writeToParcel(Parcel *parcel) const;
     89 
     90     void setWhat(uint32_t what);
     91     uint32_t what() const;
     92 
     93     void setTarget(const sp<const AHandler> &handler);
     94 
     95     void clear();
     96 
     97     void setInt32(const char *name, int32_t value);
     98     void setInt64(const char *name, int64_t value);
     99     void setSize(const char *name, size_t value);
    100     void setFloat(const char *name, float value);
    101     void setDouble(const char *name, double value);
    102     void setPointer(const char *name, void *value);
    103     void setString(const char *name, const char *s, ssize_t len = -1);
    104     void setString(const char *name, const AString &s);
    105     void setObject(const char *name, const sp<RefBase> &obj);
    106     void setBuffer(const char *name, const sp<ABuffer> &buffer);
    107     void setMessage(const char *name, const sp<AMessage> &obj);
    108 
    109     void setRect(
    110             const char *name,
    111             int32_t left, int32_t top, int32_t right, int32_t bottom);
    112 
    113     bool contains(const char *name) const;
    114 
    115     bool findInt32(const char *name, int32_t *value) const;
    116     bool findInt64(const char *name, int64_t *value) const;
    117     bool findSize(const char *name, size_t *value) const;
    118     bool findFloat(const char *name, float *value) const;
    119     bool findDouble(const char *name, double *value) const;
    120     bool findPointer(const char *name, void **value) const;
    121     bool findString(const char *name, AString *value) const;
    122     bool findObject(const char *name, sp<RefBase> *obj) const;
    123     bool findBuffer(const char *name, sp<ABuffer> *buffer) const;
    124     bool findMessage(const char *name, sp<AMessage> *obj) const;
    125 
    126     // finds signed integer types cast to int64_t
    127     bool findAsInt64(const char *name, int64_t *value) const;
    128 
    129     // finds any numeric type cast to a float
    130     bool findAsFloat(const char *name, float *value) const;
    131 
    132     bool findRect(
    133             const char *name,
    134             int32_t *left, int32_t *top, int32_t *right, int32_t *bottom) const;
    135 
    136     status_t post(int64_t delayUs = 0);
    137 
    138     // Posts the message to its target and waits for a response (or error)
    139     // before returning.
    140     status_t postAndAwaitResponse(sp<AMessage> *response);
    141 
    142     // If this returns true, the sender of this message is synchronously
    143     // awaiting a response and the reply token is consumed from the message
    144     // and stored into replyID. The reply token must be used to send the response
    145     // using "postReply" below.
    146     bool senderAwaitsResponse(sp<AReplyToken> *replyID);
    147 
    148     // Posts the message as a response to a reply token.  A reply token can
    149     // only be used once. Returns OK if the response could be posted; otherwise,
    150     // an error.
    151     status_t postReply(const sp<AReplyToken> &replyID);
    152 
    153     // Performs a deep-copy of "this", contained messages are in turn "dup'ed".
    154     // Warning: RefBase items, i.e. "objects" are _not_ copied but only have
    155     // their refcount incremented.
    156     sp<AMessage> dup() const;
    157 
    158     // Performs a shallow or deep comparison of |this| and |other| and returns
    159     // an AMessage with the differences.
    160     // Warning: RefBase items, i.e. "objects" are _not_ copied but only have
    161     // their refcount incremented.
    162     // This is true for AMessages that have no corresponding AMessage equivalent in |other|.
    163     // (E.g. there is no such key or the type is different.) On the other hand, changes in
    164     // the AMessage (or AMessages if deep is |false|) are returned in new objects.
    165     sp<AMessage> changesFrom(const sp<const AMessage> &other, bool deep = false) const;
    166 
    167     AString debugString(int32_t indent = 0) const;
    168 
    169     enum Type {
    170         kTypeInt32,
    171         kTypeInt64,
    172         kTypeSize,
    173         kTypeFloat,
    174         kTypeDouble,
    175         kTypePointer,
    176         kTypeString,
    177         kTypeObject,
    178         kTypeMessage,
    179         kTypeRect,
    180         kTypeBuffer,
    181     };
    182 
    183     size_t countEntries() const;
    184     const char *getEntryNameAt(size_t index, Type *type) const;
    185 
    186 protected:
    187     virtual ~AMessage();
    188 
    189 private:
    190     friend struct ALooper; // deliver()
    191 
    192     uint32_t mWhat;
    193 
    194     // used only for debugging
    195     ALooper::handler_id mTarget;
    196 
    197     wp<AHandler> mHandler;
    198     wp<ALooper> mLooper;
    199 
    200     struct Rect {
    201         int32_t mLeft, mTop, mRight, mBottom;
    202     };
    203 
    204     struct Item {
    205         union {
    206             int32_t int32Value;
    207             int64_t int64Value;
    208             size_t sizeValue;
    209             float floatValue;
    210             double doubleValue;
    211             void *ptrValue;
    212             RefBase *refValue;
    213             AString *stringValue;
    214             Rect rectValue;
    215         } u;
    216         const char *mName;
    217         size_t      mNameLength;
    218         Type mType;
    219         void setName(const char *name, size_t len);
    220     };
    221 
    222     enum {
    223         kMaxNumItems = 64
    224     };
    225     Item mItems[kMaxNumItems];
    226     size_t mNumItems;
    227 
    228     Item *allocateItem(const char *name);
    229     void freeItemValue(Item *item);
    230     const Item *findItem(const char *name, Type type) const;
    231 
    232     void setObjectInternal(
    233             const char *name, const sp<RefBase> &obj, Type type);
    234 
    235     size_t findItemIndex(const char *name, size_t len) const;
    236 
    237     void deliver();
    238 
    239     DISALLOW_EVIL_CONSTRUCTORS(AMessage);
    240 };
    241 
    242 }  // namespace android
    243 
    244 #endif  // A_MESSAGE_H_
    245