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      1 /*
      2 **
      3 ** Copyright 2008, The Android Open Source Project
      4 **
      5 ** Licensed under the Apache License, Version 2.0 (the "License");
      6 ** you may not use this file except in compliance with the License.
      7 ** You may obtain a copy of the License at
      8 **
      9 **     http://www.apache.org/licenses/LICENSE-2.0
     10 **
     11 ** Unless required by applicable law or agreed to in writing, software
     12 ** distributed under the License is distributed on an "AS IS" BASIS,
     13 ** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     14 ** See the License for the specific language governing permissions and
     15 ** limitations under the License.
     16 */
     17 
     18 //#define LOG_NDEBUG 0
     19 #define LOG_TAG "Camera-JNI"
     20 #include <utils/Log.h>
     21 
     22 #include "jni.h"
     23 #include "JNIHelp.h"
     24 #include "android_runtime/AndroidRuntime.h"
     25 #include <android_runtime/android_graphics_SurfaceTexture.h>
     26 #include <android_runtime/android_view_Surface.h>
     27 
     28 #include <cutils/properties.h>
     29 #include <utils/Vector.h>
     30 #include <utils/Errors.h>
     31 
     32 #include <gui/GLConsumer.h>
     33 #include <gui/Surface.h>
     34 #include <camera/Camera.h>
     35 #include <binder/IMemory.h>
     36 
     37 using namespace android;
     38 
     39 enum {
     40     // Keep up to date with Camera.java
     41     CAMERA_HAL_API_VERSION_NORMAL_CONNECT = -2,
     42 };
     43 
     44 struct fields_t {
     45     jfieldID    context;
     46     jfieldID    facing;
     47     jfieldID    orientation;
     48     jfieldID    canDisableShutterSound;
     49     jfieldID    face_rect;
     50     jfieldID    face_score;
     51     jfieldID    rect_left;
     52     jfieldID    rect_top;
     53     jfieldID    rect_right;
     54     jfieldID    rect_bottom;
     55     jmethodID   post_event;
     56     jmethodID   rect_constructor;
     57     jmethodID   face_constructor;
     58 };
     59 
     60 static fields_t fields;
     61 static Mutex sLock;
     62 
     63 // provides persistent context for calls from native code to Java
     64 class JNICameraContext: public CameraListener
     65 {
     66 public:
     67     JNICameraContext(JNIEnv* env, jobject weak_this, jclass clazz, const sp<Camera>& camera);
     68     ~JNICameraContext() { release(); }
     69     virtual void notify(int32_t msgType, int32_t ext1, int32_t ext2);
     70     virtual void postData(int32_t msgType, const sp<IMemory>& dataPtr,
     71                           camera_frame_metadata_t *metadata);
     72     virtual void postDataTimestamp(nsecs_t timestamp, int32_t msgType, const sp<IMemory>& dataPtr);
     73     void postMetadata(JNIEnv *env, int32_t msgType, camera_frame_metadata_t *metadata);
     74     void addCallbackBuffer(JNIEnv *env, jbyteArray cbb, int msgType);
     75     void setCallbackMode(JNIEnv *env, bool installed, bool manualMode);
     76     sp<Camera> getCamera() { Mutex::Autolock _l(mLock); return mCamera; }
     77     bool isRawImageCallbackBufferAvailable() const;
     78     void release();
     79 
     80 private:
     81     void copyAndPost(JNIEnv* env, const sp<IMemory>& dataPtr, int msgType);
     82     void clearCallbackBuffers_l(JNIEnv *env, Vector<jbyteArray> *buffers);
     83     void clearCallbackBuffers_l(JNIEnv *env);
     84     jbyteArray getCallbackBuffer(JNIEnv *env, Vector<jbyteArray> *buffers, size_t bufferSize);
     85 
     86     jobject     mCameraJObjectWeak;     // weak reference to java object
     87     jclass      mCameraJClass;          // strong reference to java class
     88     sp<Camera>  mCamera;                // strong reference to native object
     89     jclass      mFaceClass;  // strong reference to Face class
     90     jclass      mRectClass;  // strong reference to Rect class
     91     Mutex       mLock;
     92 
     93     /*
     94      * Global reference application-managed raw image buffer queue.
     95      *
     96      * Manual-only mode is supported for raw image callbacks, which is
     97      * set whenever method addCallbackBuffer() with msgType =
     98      * CAMERA_MSG_RAW_IMAGE is called; otherwise, null is returned
     99      * with raw image callbacks.
    100      */
    101     Vector<jbyteArray> mRawImageCallbackBuffers;
    102 
    103     /*
    104      * Application-managed preview buffer queue and the flags
    105      * associated with the usage of the preview buffer callback.
    106      */
    107     Vector<jbyteArray> mCallbackBuffers; // Global reference application managed byte[]
    108     bool mManualBufferMode;              // Whether to use application managed buffers.
    109     bool mManualCameraCallbackSet;       // Whether the callback has been set, used to
    110                                          // reduce unnecessary calls to set the callback.
    111 };
    112 
    113 bool JNICameraContext::isRawImageCallbackBufferAvailable() const
    114 {
    115     return !mRawImageCallbackBuffers.isEmpty();
    116 }
    117 
    118 sp<Camera> get_native_camera(JNIEnv *env, jobject thiz, JNICameraContext** pContext)
    119 {
    120     sp<Camera> camera;
    121     Mutex::Autolock _l(sLock);
    122     JNICameraContext* context = reinterpret_cast<JNICameraContext*>(env->GetLongField(thiz, fields.context));
    123     if (context != NULL) {
    124         camera = context->getCamera();
    125     }
    126     ALOGV("get_native_camera: context=%p, camera=%p", context, camera.get());
    127     if (camera == 0) {
    128         jniThrowRuntimeException(env, "Method called after release()");
    129     }
    130 
    131     if (pContext != NULL) *pContext = context;
    132     return camera;
    133 }
    134 
    135 JNICameraContext::JNICameraContext(JNIEnv* env, jobject weak_this, jclass clazz, const sp<Camera>& camera)
    136 {
    137     mCameraJObjectWeak = env->NewGlobalRef(weak_this);
    138     mCameraJClass = (jclass)env->NewGlobalRef(clazz);
    139     mCamera = camera;
    140 
    141     jclass faceClazz = env->FindClass("android/hardware/Camera$Face");
    142     mFaceClass = (jclass) env->NewGlobalRef(faceClazz);
    143 
    144     jclass rectClazz = env->FindClass("android/graphics/Rect");
    145     mRectClass = (jclass) env->NewGlobalRef(rectClazz);
    146 
    147     mManualBufferMode = false;
    148     mManualCameraCallbackSet = false;
    149 }
    150 
    151 void JNICameraContext::release()
    152 {
    153     ALOGV("release");
    154     Mutex::Autolock _l(mLock);
    155     JNIEnv *env = AndroidRuntime::getJNIEnv();
    156 
    157     if (mCameraJObjectWeak != NULL) {
    158         env->DeleteGlobalRef(mCameraJObjectWeak);
    159         mCameraJObjectWeak = NULL;
    160     }
    161     if (mCameraJClass != NULL) {
    162         env->DeleteGlobalRef(mCameraJClass);
    163         mCameraJClass = NULL;
    164     }
    165     if (mFaceClass != NULL) {
    166         env->DeleteGlobalRef(mFaceClass);
    167         mFaceClass = NULL;
    168     }
    169     if (mRectClass != NULL) {
    170         env->DeleteGlobalRef(mRectClass);
    171         mRectClass = NULL;
    172     }
    173     clearCallbackBuffers_l(env);
    174     mCamera.clear();
    175 }
    176 
    177 void JNICameraContext::notify(int32_t msgType, int32_t ext1, int32_t ext2)
    178 {
    179     ALOGV("notify");
    180 
    181     // VM pointer will be NULL if object is released
    182     Mutex::Autolock _l(mLock);
    183     if (mCameraJObjectWeak == NULL) {
    184         ALOGW("callback on dead camera object");
    185         return;
    186     }
    187     JNIEnv *env = AndroidRuntime::getJNIEnv();
    188 
    189     /*
    190      * If the notification or msgType is CAMERA_MSG_RAW_IMAGE_NOTIFY, change it
    191      * to CAMERA_MSG_RAW_IMAGE since CAMERA_MSG_RAW_IMAGE_NOTIFY is not exposed
    192      * to the Java app.
    193      */
    194     if (msgType == CAMERA_MSG_RAW_IMAGE_NOTIFY) {
    195         msgType = CAMERA_MSG_RAW_IMAGE;
    196     }
    197 
    198     env->CallStaticVoidMethod(mCameraJClass, fields.post_event,
    199             mCameraJObjectWeak, msgType, ext1, ext2, NULL);
    200 }
    201 
    202 jbyteArray JNICameraContext::getCallbackBuffer(
    203         JNIEnv* env, Vector<jbyteArray>* buffers, size_t bufferSize)
    204 {
    205     jbyteArray obj = NULL;
    206 
    207     // Vector access should be protected by lock in postData()
    208     if (!buffers->isEmpty()) {
    209         ALOGV("Using callback buffer from queue of length %d", buffers->size());
    210         jbyteArray globalBuffer = buffers->itemAt(0);
    211         buffers->removeAt(0);
    212 
    213         obj = (jbyteArray)env->NewLocalRef(globalBuffer);
    214         env->DeleteGlobalRef(globalBuffer);
    215 
    216         if (obj != NULL) {
    217             jsize bufferLength = env->GetArrayLength(obj);
    218             if ((int)bufferLength < (int)bufferSize) {
    219                 ALOGE("Callback buffer was too small! Expected %d bytes, but got %d bytes!",
    220                     bufferSize, bufferLength);
    221                 env->DeleteLocalRef(obj);
    222                 return NULL;
    223             }
    224         }
    225     }
    226 
    227     return obj;
    228 }
    229 
    230 void JNICameraContext::copyAndPost(JNIEnv* env, const sp<IMemory>& dataPtr, int msgType)
    231 {
    232     jbyteArray obj = NULL;
    233 
    234     // allocate Java byte array and copy data
    235     if (dataPtr != NULL) {
    236         ssize_t offset;
    237         size_t size;
    238         sp<IMemoryHeap> heap = dataPtr->getMemory(&offset, &size);
    239         ALOGV("copyAndPost: off=%zd, size=%zu", offset, size);
    240         uint8_t *heapBase = (uint8_t*)heap->base();
    241 
    242         if (heapBase != NULL) {
    243             const jbyte* data = reinterpret_cast<const jbyte*>(heapBase + offset);
    244 
    245             if (msgType == CAMERA_MSG_RAW_IMAGE) {
    246                 obj = getCallbackBuffer(env, &mRawImageCallbackBuffers, size);
    247             } else if (msgType == CAMERA_MSG_PREVIEW_FRAME && mManualBufferMode) {
    248                 obj = getCallbackBuffer(env, &mCallbackBuffers, size);
    249 
    250                 if (mCallbackBuffers.isEmpty()) {
    251                     ALOGV("Out of buffers, clearing callback!");
    252                     mCamera->setPreviewCallbackFlags(CAMERA_FRAME_CALLBACK_FLAG_NOOP);
    253                     mManualCameraCallbackSet = false;
    254 
    255                     if (obj == NULL) {
    256                         return;
    257                     }
    258                 }
    259             } else {
    260                 ALOGV("Allocating callback buffer");
    261                 obj = env->NewByteArray(size);
    262             }
    263 
    264             if (obj == NULL) {
    265                 ALOGE("Couldn't allocate byte array for JPEG data");
    266                 env->ExceptionClear();
    267             } else {
    268                 env->SetByteArrayRegion(obj, 0, size, data);
    269             }
    270         } else {
    271             ALOGE("image heap is NULL");
    272         }
    273     }
    274 
    275     // post image data to Java
    276     env->CallStaticVoidMethod(mCameraJClass, fields.post_event,
    277             mCameraJObjectWeak, msgType, 0, 0, obj);
    278     if (obj) {
    279         env->DeleteLocalRef(obj);
    280     }
    281 }
    282 
    283 void JNICameraContext::postData(int32_t msgType, const sp<IMemory>& dataPtr,
    284                                 camera_frame_metadata_t *metadata)
    285 {
    286     // VM pointer will be NULL if object is released
    287     Mutex::Autolock _l(mLock);
    288     JNIEnv *env = AndroidRuntime::getJNIEnv();
    289     if (mCameraJObjectWeak == NULL) {
    290         ALOGW("callback on dead camera object");
    291         return;
    292     }
    293 
    294     int32_t dataMsgType = msgType & ~CAMERA_MSG_PREVIEW_METADATA;
    295 
    296     // return data based on callback type
    297     switch (dataMsgType) {
    298         case CAMERA_MSG_VIDEO_FRAME:
    299             // should never happen
    300             break;
    301 
    302         // For backward-compatibility purpose, if there is no callback
    303         // buffer for raw image, the callback returns null.
    304         case CAMERA_MSG_RAW_IMAGE:
    305             ALOGV("rawCallback");
    306             if (mRawImageCallbackBuffers.isEmpty()) {
    307                 env->CallStaticVoidMethod(mCameraJClass, fields.post_event,
    308                         mCameraJObjectWeak, dataMsgType, 0, 0, NULL);
    309             } else {
    310                 copyAndPost(env, dataPtr, dataMsgType);
    311             }
    312             break;
    313 
    314         // There is no data.
    315         case 0:
    316             break;
    317 
    318         default:
    319             ALOGV("dataCallback(%d, %p)", dataMsgType, dataPtr.get());
    320             copyAndPost(env, dataPtr, dataMsgType);
    321             break;
    322     }
    323 
    324     // post frame metadata to Java
    325     if (metadata && (msgType & CAMERA_MSG_PREVIEW_METADATA)) {
    326         postMetadata(env, CAMERA_MSG_PREVIEW_METADATA, metadata);
    327     }
    328 }
    329 
    330 void JNICameraContext::postDataTimestamp(nsecs_t timestamp, int32_t msgType, const sp<IMemory>& dataPtr)
    331 {
    332     // TODO: plumb up to Java. For now, just drop the timestamp
    333     postData(msgType, dataPtr, NULL);
    334 }
    335 
    336 void JNICameraContext::postMetadata(JNIEnv *env, int32_t msgType, camera_frame_metadata_t *metadata)
    337 {
    338     jobjectArray obj = NULL;
    339     obj = (jobjectArray) env->NewObjectArray(metadata->number_of_faces,
    340                                              mFaceClass, NULL);
    341     if (obj == NULL) {
    342         ALOGE("Couldn't allocate face metadata array");
    343         return;
    344     }
    345 
    346     for (int i = 0; i < metadata->number_of_faces; i++) {
    347         jobject face = env->NewObject(mFaceClass, fields.face_constructor);
    348         env->SetObjectArrayElement(obj, i, face);
    349 
    350         jobject rect = env->NewObject(mRectClass, fields.rect_constructor);
    351         env->SetIntField(rect, fields.rect_left, metadata->faces[i].rect[0]);
    352         env->SetIntField(rect, fields.rect_top, metadata->faces[i].rect[1]);
    353         env->SetIntField(rect, fields.rect_right, metadata->faces[i].rect[2]);
    354         env->SetIntField(rect, fields.rect_bottom, metadata->faces[i].rect[3]);
    355 
    356         env->SetObjectField(face, fields.face_rect, rect);
    357         env->SetIntField(face, fields.face_score, metadata->faces[i].score);
    358 
    359         env->DeleteLocalRef(face);
    360         env->DeleteLocalRef(rect);
    361     }
    362     env->CallStaticVoidMethod(mCameraJClass, fields.post_event,
    363             mCameraJObjectWeak, msgType, 0, 0, obj);
    364     env->DeleteLocalRef(obj);
    365 }
    366 
    367 void JNICameraContext::setCallbackMode(JNIEnv *env, bool installed, bool manualMode)
    368 {
    369     Mutex::Autolock _l(mLock);
    370     mManualBufferMode = manualMode;
    371     mManualCameraCallbackSet = false;
    372 
    373     // In order to limit the over usage of binder threads, all non-manual buffer
    374     // callbacks use CAMERA_FRAME_CALLBACK_FLAG_BARCODE_SCANNER mode now.
    375     //
    376     // Continuous callbacks will have the callback re-registered from handleMessage.
    377     // Manual buffer mode will operate as fast as possible, relying on the finite supply
    378     // of buffers for throttling.
    379 
    380     if (!installed) {
    381         mCamera->setPreviewCallbackFlags(CAMERA_FRAME_CALLBACK_FLAG_NOOP);
    382         clearCallbackBuffers_l(env, &mCallbackBuffers);
    383     } else if (mManualBufferMode) {
    384         if (!mCallbackBuffers.isEmpty()) {
    385             mCamera->setPreviewCallbackFlags(CAMERA_FRAME_CALLBACK_FLAG_CAMERA);
    386             mManualCameraCallbackSet = true;
    387         }
    388     } else {
    389         mCamera->setPreviewCallbackFlags(CAMERA_FRAME_CALLBACK_FLAG_BARCODE_SCANNER);
    390         clearCallbackBuffers_l(env, &mCallbackBuffers);
    391     }
    392 }
    393 
    394 void JNICameraContext::addCallbackBuffer(
    395         JNIEnv *env, jbyteArray cbb, int msgType)
    396 {
    397     ALOGV("addCallbackBuffer: 0x%x", msgType);
    398     if (cbb != NULL) {
    399         Mutex::Autolock _l(mLock);
    400         switch (msgType) {
    401             case CAMERA_MSG_PREVIEW_FRAME: {
    402                 jbyteArray callbackBuffer = (jbyteArray)env->NewGlobalRef(cbb);
    403                 mCallbackBuffers.push(callbackBuffer);
    404 
    405                 ALOGV("Adding callback buffer to queue, %d total",
    406                         mCallbackBuffers.size());
    407 
    408                 // We want to make sure the camera knows we're ready for the
    409                 // next frame. This may have come unset had we not had a
    410                 // callbackbuffer ready for it last time.
    411                 if (mManualBufferMode && !mManualCameraCallbackSet) {
    412                     mCamera->setPreviewCallbackFlags(CAMERA_FRAME_CALLBACK_FLAG_CAMERA);
    413                     mManualCameraCallbackSet = true;
    414                 }
    415                 break;
    416             }
    417             case CAMERA_MSG_RAW_IMAGE: {
    418                 jbyteArray callbackBuffer = (jbyteArray)env->NewGlobalRef(cbb);
    419                 mRawImageCallbackBuffers.push(callbackBuffer);
    420                 break;
    421             }
    422             default: {
    423                 jniThrowException(env,
    424                         "java/lang/IllegalArgumentException",
    425                         "Unsupported message type");
    426                 return;
    427             }
    428         }
    429     } else {
    430        ALOGE("Null byte array!");
    431     }
    432 }
    433 
    434 void JNICameraContext::clearCallbackBuffers_l(JNIEnv *env)
    435 {
    436     clearCallbackBuffers_l(env, &mCallbackBuffers);
    437     clearCallbackBuffers_l(env, &mRawImageCallbackBuffers);
    438 }
    439 
    440 void JNICameraContext::clearCallbackBuffers_l(JNIEnv *env, Vector<jbyteArray> *buffers) {
    441     ALOGV("Clearing callback buffers, %d remained", buffers->size());
    442     while (!buffers->isEmpty()) {
    443         env->DeleteGlobalRef(buffers->top());
    444         buffers->pop();
    445     }
    446 }
    447 
    448 static jint android_hardware_Camera_getNumberOfCameras(JNIEnv *env, jobject thiz)
    449 {
    450     return Camera::getNumberOfCameras();
    451 }
    452 
    453 static void android_hardware_Camera_getCameraInfo(JNIEnv *env, jobject thiz,
    454     jint cameraId, jobject info_obj)
    455 {
    456     CameraInfo cameraInfo;
    457     status_t rc = Camera::getCameraInfo(cameraId, &cameraInfo);
    458     if (rc != NO_ERROR) {
    459         jniThrowRuntimeException(env, "Fail to get camera info");
    460         return;
    461     }
    462     env->SetIntField(info_obj, fields.facing, cameraInfo.facing);
    463     env->SetIntField(info_obj, fields.orientation, cameraInfo.orientation);
    464 
    465     char value[PROPERTY_VALUE_MAX];
    466     property_get("ro.camera.sound.forced", value, "0");
    467     jboolean canDisableShutterSound = (strncmp(value, "0", 2) == 0);
    468     env->SetBooleanField(info_obj, fields.canDisableShutterSound,
    469             canDisableShutterSound);
    470 }
    471 
    472 // connect to camera service
    473 static jint android_hardware_Camera_native_setup(JNIEnv *env, jobject thiz,
    474     jobject weak_this, jint cameraId, jint halVersion, jstring clientPackageName)
    475 {
    476     // Convert jstring to String16
    477     const char16_t *rawClientName = env->GetStringChars(clientPackageName, NULL);
    478     jsize rawClientNameLen = env->GetStringLength(clientPackageName);
    479     String16 clientName(rawClientName, rawClientNameLen);
    480     env->ReleaseStringChars(clientPackageName, rawClientName);
    481 
    482     sp<Camera> camera;
    483     if (halVersion == CAMERA_HAL_API_VERSION_NORMAL_CONNECT) {
    484         // Default path: hal version is don't care, do normal camera connect.
    485         camera = Camera::connect(cameraId, clientName,
    486                 Camera::USE_CALLING_UID);
    487     } else {
    488         jint status = Camera::connectLegacy(cameraId, halVersion, clientName,
    489                 Camera::USE_CALLING_UID, camera);
    490         if (status != NO_ERROR) {
    491             return status;
    492         }
    493     }
    494 
    495     if (camera == NULL) {
    496         return -EACCES;
    497     }
    498 
    499     // make sure camera hardware is alive
    500     if (camera->getStatus() != NO_ERROR) {
    501         return NO_INIT;
    502     }
    503 
    504     jclass clazz = env->GetObjectClass(thiz);
    505     if (clazz == NULL) {
    506         // This should never happen
    507         jniThrowRuntimeException(env, "Can't find android/hardware/Camera");
    508         return INVALID_OPERATION;
    509     }
    510 
    511     // We use a weak reference so the Camera object can be garbage collected.
    512     // The reference is only used as a proxy for callbacks.
    513     sp<JNICameraContext> context = new JNICameraContext(env, weak_this, clazz, camera);
    514     context->incStrong((void*)android_hardware_Camera_native_setup);
    515     camera->setListener(context);
    516 
    517     // save context in opaque field
    518     env->SetLongField(thiz, fields.context, (jlong)context.get());
    519     return NO_ERROR;
    520 }
    521 
    522 // disconnect from camera service
    523 // It's okay to call this when the native camera context is already null.
    524 // This handles the case where the user has called release() and the
    525 // finalizer is invoked later.
    526 static void android_hardware_Camera_release(JNIEnv *env, jobject thiz)
    527 {
    528     ALOGV("release camera");
    529     JNICameraContext* context = NULL;
    530     sp<Camera> camera;
    531     {
    532         Mutex::Autolock _l(sLock);
    533         context = reinterpret_cast<JNICameraContext*>(env->GetLongField(thiz, fields.context));
    534 
    535         // Make sure we do not attempt to callback on a deleted Java object.
    536         env->SetLongField(thiz, fields.context, 0);
    537     }
    538 
    539     // clean up if release has not been called before
    540     if (context != NULL) {
    541         camera = context->getCamera();
    542         context->release();
    543         ALOGV("native_release: context=%p camera=%p", context, camera.get());
    544 
    545         // clear callbacks
    546         if (camera != NULL) {
    547             camera->setPreviewCallbackFlags(CAMERA_FRAME_CALLBACK_FLAG_NOOP);
    548             camera->disconnect();
    549         }
    550 
    551         // remove context to prevent further Java access
    552         context->decStrong((void*)android_hardware_Camera_native_setup);
    553     }
    554 }
    555 
    556 static void android_hardware_Camera_setPreviewSurface(JNIEnv *env, jobject thiz, jobject jSurface)
    557 {
    558     ALOGV("setPreviewSurface");
    559     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    560     if (camera == 0) return;
    561 
    562     sp<IGraphicBufferProducer> gbp;
    563     sp<Surface> surface;
    564     if (jSurface) {
    565         surface = android_view_Surface_getSurface(env, jSurface);
    566         if (surface != NULL) {
    567             gbp = surface->getIGraphicBufferProducer();
    568         }
    569     }
    570 
    571     if (camera->setPreviewTarget(gbp) != NO_ERROR) {
    572         jniThrowException(env, "java/io/IOException", "setPreviewTexture failed");
    573     }
    574 }
    575 
    576 static void android_hardware_Camera_setPreviewTexture(JNIEnv *env,
    577         jobject thiz, jobject jSurfaceTexture)
    578 {
    579     ALOGV("setPreviewTexture");
    580     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    581     if (camera == 0) return;
    582 
    583     sp<IGraphicBufferProducer> producer = NULL;
    584     if (jSurfaceTexture != NULL) {
    585         producer = SurfaceTexture_getProducer(env, jSurfaceTexture);
    586         if (producer == NULL) {
    587             jniThrowException(env, "java/lang/IllegalArgumentException",
    588                     "SurfaceTexture already released in setPreviewTexture");
    589             return;
    590         }
    591 
    592     }
    593 
    594     if (camera->setPreviewTarget(producer) != NO_ERROR) {
    595         jniThrowException(env, "java/io/IOException",
    596                 "setPreviewTexture failed");
    597     }
    598 }
    599 
    600 static void android_hardware_Camera_setPreviewCallbackSurface(JNIEnv *env,
    601         jobject thiz, jobject jSurface)
    602 {
    603     ALOGV("setPreviewCallbackSurface");
    604     JNICameraContext* context;
    605     sp<Camera> camera = get_native_camera(env, thiz, &context);
    606     if (camera == 0) return;
    607 
    608     sp<IGraphicBufferProducer> gbp;
    609     sp<Surface> surface;
    610     if (jSurface) {
    611         surface = android_view_Surface_getSurface(env, jSurface);
    612         if (surface != NULL) {
    613             gbp = surface->getIGraphicBufferProducer();
    614         }
    615     }
    616     // Clear out normal preview callbacks
    617     context->setCallbackMode(env, false, false);
    618     // Then set up callback surface
    619     if (camera->setPreviewCallbackTarget(gbp) != NO_ERROR) {
    620         jniThrowException(env, "java/io/IOException", "setPreviewCallbackTarget failed");
    621     }
    622 }
    623 
    624 static void android_hardware_Camera_startPreview(JNIEnv *env, jobject thiz)
    625 {
    626     ALOGV("startPreview");
    627     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    628     if (camera == 0) return;
    629 
    630     if (camera->startPreview() != NO_ERROR) {
    631         jniThrowRuntimeException(env, "startPreview failed");
    632         return;
    633     }
    634 }
    635 
    636 static void android_hardware_Camera_stopPreview(JNIEnv *env, jobject thiz)
    637 {
    638     ALOGV("stopPreview");
    639     sp<Camera> c = get_native_camera(env, thiz, NULL);
    640     if (c == 0) return;
    641 
    642     c->stopPreview();
    643 }
    644 
    645 static jboolean android_hardware_Camera_previewEnabled(JNIEnv *env, jobject thiz)
    646 {
    647     ALOGV("previewEnabled");
    648     sp<Camera> c = get_native_camera(env, thiz, NULL);
    649     if (c == 0) return JNI_FALSE;
    650 
    651     return c->previewEnabled() ? JNI_TRUE : JNI_FALSE;
    652 }
    653 
    654 static void android_hardware_Camera_setHasPreviewCallback(JNIEnv *env, jobject thiz, jboolean installed, jboolean manualBuffer)
    655 {
    656     ALOGV("setHasPreviewCallback: installed:%d, manualBuffer:%d", (int)installed, (int)manualBuffer);
    657     // Important: Only install preview_callback if the Java code has called
    658     // setPreviewCallback() with a non-null value, otherwise we'd pay to memcpy
    659     // each preview frame for nothing.
    660     JNICameraContext* context;
    661     sp<Camera> camera = get_native_camera(env, thiz, &context);
    662     if (camera == 0) return;
    663 
    664     // setCallbackMode will take care of setting the context flags and calling
    665     // camera->setPreviewCallbackFlags within a mutex for us.
    666     context->setCallbackMode(env, installed, manualBuffer);
    667 }
    668 
    669 static void android_hardware_Camera_addCallbackBuffer(JNIEnv *env, jobject thiz, jbyteArray bytes, jint msgType) {
    670     ALOGV("addCallbackBuffer: 0x%x", msgType);
    671 
    672     JNICameraContext* context = reinterpret_cast<JNICameraContext*>(env->GetLongField(thiz, fields.context));
    673 
    674     if (context != NULL) {
    675         context->addCallbackBuffer(env, bytes, msgType);
    676     }
    677 }
    678 
    679 static void android_hardware_Camera_autoFocus(JNIEnv *env, jobject thiz)
    680 {
    681     ALOGV("autoFocus");
    682     JNICameraContext* context;
    683     sp<Camera> c = get_native_camera(env, thiz, &context);
    684     if (c == 0) return;
    685 
    686     if (c->autoFocus() != NO_ERROR) {
    687         jniThrowRuntimeException(env, "autoFocus failed");
    688     }
    689 }
    690 
    691 static void android_hardware_Camera_cancelAutoFocus(JNIEnv *env, jobject thiz)
    692 {
    693     ALOGV("cancelAutoFocus");
    694     JNICameraContext* context;
    695     sp<Camera> c = get_native_camera(env, thiz, &context);
    696     if (c == 0) return;
    697 
    698     if (c->cancelAutoFocus() != NO_ERROR) {
    699         jniThrowRuntimeException(env, "cancelAutoFocus failed");
    700     }
    701 }
    702 
    703 static void android_hardware_Camera_takePicture(JNIEnv *env, jobject thiz, jint msgType)
    704 {
    705     ALOGV("takePicture");
    706     JNICameraContext* context;
    707     sp<Camera> camera = get_native_camera(env, thiz, &context);
    708     if (camera == 0) return;
    709 
    710     /*
    711      * When CAMERA_MSG_RAW_IMAGE is requested, if the raw image callback
    712      * buffer is available, CAMERA_MSG_RAW_IMAGE is enabled to get the
    713      * notification _and_ the data; otherwise, CAMERA_MSG_RAW_IMAGE_NOTIFY
    714      * is enabled to receive the callback notification but no data.
    715      *
    716      * Note that CAMERA_MSG_RAW_IMAGE_NOTIFY is not exposed to the
    717      * Java application.
    718      */
    719     if (msgType & CAMERA_MSG_RAW_IMAGE) {
    720         ALOGV("Enable raw image callback buffer");
    721         if (!context->isRawImageCallbackBufferAvailable()) {
    722             ALOGV("Enable raw image notification, since no callback buffer exists");
    723             msgType &= ~CAMERA_MSG_RAW_IMAGE;
    724             msgType |= CAMERA_MSG_RAW_IMAGE_NOTIFY;
    725         }
    726     }
    727 
    728     if (camera->takePicture(msgType) != NO_ERROR) {
    729         jniThrowRuntimeException(env, "takePicture failed");
    730         return;
    731     }
    732 }
    733 
    734 static void android_hardware_Camera_setParameters(JNIEnv *env, jobject thiz, jstring params)
    735 {
    736     ALOGV("setParameters");
    737     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    738     if (camera == 0) return;
    739 
    740     const jchar* str = env->GetStringCritical(params, 0);
    741     String8 params8;
    742     if (params) {
    743         params8 = String8(str, env->GetStringLength(params));
    744         env->ReleaseStringCritical(params, str);
    745     }
    746     if (camera->setParameters(params8) != NO_ERROR) {
    747         jniThrowRuntimeException(env, "setParameters failed");
    748         return;
    749     }
    750 }
    751 
    752 static jstring android_hardware_Camera_getParameters(JNIEnv *env, jobject thiz)
    753 {
    754     ALOGV("getParameters");
    755     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    756     if (camera == 0) return 0;
    757 
    758     String8 params8 = camera->getParameters();
    759     if (params8.isEmpty()) {
    760         jniThrowRuntimeException(env, "getParameters failed (empty parameters)");
    761         return 0;
    762     }
    763     return env->NewStringUTF(params8.string());
    764 }
    765 
    766 static void android_hardware_Camera_reconnect(JNIEnv *env, jobject thiz)
    767 {
    768     ALOGV("reconnect");
    769     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    770     if (camera == 0) return;
    771 
    772     if (camera->reconnect() != NO_ERROR) {
    773         jniThrowException(env, "java/io/IOException", "reconnect failed");
    774         return;
    775     }
    776 }
    777 
    778 static void android_hardware_Camera_lock(JNIEnv *env, jobject thiz)
    779 {
    780     ALOGV("lock");
    781     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    782     if (camera == 0) return;
    783 
    784     if (camera->lock() != NO_ERROR) {
    785         jniThrowRuntimeException(env, "lock failed");
    786     }
    787 }
    788 
    789 static void android_hardware_Camera_unlock(JNIEnv *env, jobject thiz)
    790 {
    791     ALOGV("unlock");
    792     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    793     if (camera == 0) return;
    794 
    795     if (camera->unlock() != NO_ERROR) {
    796         jniThrowRuntimeException(env, "unlock failed");
    797     }
    798 }
    799 
    800 static void android_hardware_Camera_startSmoothZoom(JNIEnv *env, jobject thiz, jint value)
    801 {
    802     ALOGV("startSmoothZoom");
    803     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    804     if (camera == 0) return;
    805 
    806     status_t rc = camera->sendCommand(CAMERA_CMD_START_SMOOTH_ZOOM, value, 0);
    807     if (rc == BAD_VALUE) {
    808         char msg[64];
    809         sprintf(msg, "invalid zoom value=%d", value);
    810         jniThrowException(env, "java/lang/IllegalArgumentException", msg);
    811     } else if (rc != NO_ERROR) {
    812         jniThrowRuntimeException(env, "start smooth zoom failed");
    813     }
    814 }
    815 
    816 static void android_hardware_Camera_stopSmoothZoom(JNIEnv *env, jobject thiz)
    817 {
    818     ALOGV("stopSmoothZoom");
    819     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    820     if (camera == 0) return;
    821 
    822     if (camera->sendCommand(CAMERA_CMD_STOP_SMOOTH_ZOOM, 0, 0) != NO_ERROR) {
    823         jniThrowRuntimeException(env, "stop smooth zoom failed");
    824     }
    825 }
    826 
    827 static void android_hardware_Camera_setDisplayOrientation(JNIEnv *env, jobject thiz,
    828         jint value)
    829 {
    830     ALOGV("setDisplayOrientation");
    831     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    832     if (camera == 0) return;
    833 
    834     if (camera->sendCommand(CAMERA_CMD_SET_DISPLAY_ORIENTATION, value, 0) != NO_ERROR) {
    835         jniThrowRuntimeException(env, "set display orientation failed");
    836     }
    837 }
    838 
    839 static jboolean android_hardware_Camera_enableShutterSound(JNIEnv *env, jobject thiz,
    840         jboolean enabled)
    841 {
    842     ALOGV("enableShutterSound");
    843     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    844     if (camera == 0) return JNI_FALSE;
    845 
    846     int32_t value = (enabled == JNI_TRUE) ? 1 : 0;
    847     status_t rc = camera->sendCommand(CAMERA_CMD_ENABLE_SHUTTER_SOUND, value, 0);
    848     if (rc == NO_ERROR) {
    849         return JNI_TRUE;
    850     } else if (rc == PERMISSION_DENIED) {
    851         return JNI_FALSE;
    852     } else {
    853         jniThrowRuntimeException(env, "enable shutter sound failed");
    854         return JNI_FALSE;
    855     }
    856 }
    857 
    858 static void android_hardware_Camera_startFaceDetection(JNIEnv *env, jobject thiz,
    859         jint type)
    860 {
    861     ALOGV("startFaceDetection");
    862     JNICameraContext* context;
    863     sp<Camera> camera = get_native_camera(env, thiz, &context);
    864     if (camera == 0) return;
    865 
    866     status_t rc = camera->sendCommand(CAMERA_CMD_START_FACE_DETECTION, type, 0);
    867     if (rc == BAD_VALUE) {
    868         char msg[64];
    869         snprintf(msg, sizeof(msg), "invalid face detection type=%d", type);
    870         jniThrowException(env, "java/lang/IllegalArgumentException", msg);
    871     } else if (rc != NO_ERROR) {
    872         jniThrowRuntimeException(env, "start face detection failed");
    873     }
    874 }
    875 
    876 static void android_hardware_Camera_stopFaceDetection(JNIEnv *env, jobject thiz)
    877 {
    878     ALOGV("stopFaceDetection");
    879     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    880     if (camera == 0) return;
    881 
    882     if (camera->sendCommand(CAMERA_CMD_STOP_FACE_DETECTION, 0, 0) != NO_ERROR) {
    883         jniThrowRuntimeException(env, "stop face detection failed");
    884     }
    885 }
    886 
    887 static void android_hardware_Camera_enableFocusMoveCallback(JNIEnv *env, jobject thiz, jint enable)
    888 {
    889     ALOGV("enableFocusMoveCallback");
    890     sp<Camera> camera = get_native_camera(env, thiz, NULL);
    891     if (camera == 0) return;
    892 
    893     if (camera->sendCommand(CAMERA_CMD_ENABLE_FOCUS_MOVE_MSG, enable, 0) != NO_ERROR) {
    894         jniThrowRuntimeException(env, "enable focus move callback failed");
    895     }
    896 }
    897 
    898 //-------------------------------------------------
    899 
    900 static JNINativeMethod camMethods[] = {
    901   { "getNumberOfCameras",
    902     "()I",
    903     (void *)android_hardware_Camera_getNumberOfCameras },
    904   { "_getCameraInfo",
    905     "(ILandroid/hardware/Camera$CameraInfo;)V",
    906     (void*)android_hardware_Camera_getCameraInfo },
    907   { "native_setup",
    908     "(Ljava/lang/Object;IILjava/lang/String;)I",
    909     (void*)android_hardware_Camera_native_setup },
    910   { "native_release",
    911     "()V",
    912     (void*)android_hardware_Camera_release },
    913   { "setPreviewSurface",
    914     "(Landroid/view/Surface;)V",
    915     (void *)android_hardware_Camera_setPreviewSurface },
    916   { "setPreviewTexture",
    917     "(Landroid/graphics/SurfaceTexture;)V",
    918     (void *)android_hardware_Camera_setPreviewTexture },
    919   { "setPreviewCallbackSurface",
    920     "(Landroid/view/Surface;)V",
    921     (void *)android_hardware_Camera_setPreviewCallbackSurface },
    922   { "startPreview",
    923     "()V",
    924     (void *)android_hardware_Camera_startPreview },
    925   { "_stopPreview",
    926     "()V",
    927     (void *)android_hardware_Camera_stopPreview },
    928   { "previewEnabled",
    929     "()Z",
    930     (void *)android_hardware_Camera_previewEnabled },
    931   { "setHasPreviewCallback",
    932     "(ZZ)V",
    933     (void *)android_hardware_Camera_setHasPreviewCallback },
    934   { "_addCallbackBuffer",
    935     "([BI)V",
    936     (void *)android_hardware_Camera_addCallbackBuffer },
    937   { "native_autoFocus",
    938     "()V",
    939     (void *)android_hardware_Camera_autoFocus },
    940   { "native_cancelAutoFocus",
    941     "()V",
    942     (void *)android_hardware_Camera_cancelAutoFocus },
    943   { "native_takePicture",
    944     "(I)V",
    945     (void *)android_hardware_Camera_takePicture },
    946   { "native_setParameters",
    947     "(Ljava/lang/String;)V",
    948     (void *)android_hardware_Camera_setParameters },
    949   { "native_getParameters",
    950     "()Ljava/lang/String;",
    951     (void *)android_hardware_Camera_getParameters },
    952   { "reconnect",
    953     "()V",
    954     (void*)android_hardware_Camera_reconnect },
    955   { "lock",
    956     "()V",
    957     (void*)android_hardware_Camera_lock },
    958   { "unlock",
    959     "()V",
    960     (void*)android_hardware_Camera_unlock },
    961   { "startSmoothZoom",
    962     "(I)V",
    963     (void *)android_hardware_Camera_startSmoothZoom },
    964   { "stopSmoothZoom",
    965     "()V",
    966     (void *)android_hardware_Camera_stopSmoothZoom },
    967   { "setDisplayOrientation",
    968     "(I)V",
    969     (void *)android_hardware_Camera_setDisplayOrientation },
    970   { "_enableShutterSound",
    971     "(Z)Z",
    972     (void *)android_hardware_Camera_enableShutterSound },
    973   { "_startFaceDetection",
    974     "(I)V",
    975     (void *)android_hardware_Camera_startFaceDetection },
    976   { "_stopFaceDetection",
    977     "()V",
    978     (void *)android_hardware_Camera_stopFaceDetection},
    979   { "enableFocusMoveCallback",
    980     "(I)V",
    981     (void *)android_hardware_Camera_enableFocusMoveCallback},
    982 };
    983 
    984 struct field {
    985     const char *class_name;
    986     const char *field_name;
    987     const char *field_type;
    988     jfieldID   *jfield;
    989 };
    990 
    991 static int find_fields(JNIEnv *env, field *fields, int count)
    992 {
    993     for (int i = 0; i < count; i++) {
    994         field *f = &fields[i];
    995         jclass clazz = env->FindClass(f->class_name);
    996         if (clazz == NULL) {
    997             ALOGE("Can't find %s", f->class_name);
    998             return -1;
    999         }
   1000 
   1001         jfieldID field = env->GetFieldID(clazz, f->field_name, f->field_type);
   1002         if (field == NULL) {
   1003             ALOGE("Can't find %s.%s", f->class_name, f->field_name);
   1004             return -1;
   1005         }
   1006 
   1007         *(f->jfield) = field;
   1008     }
   1009 
   1010     return 0;
   1011 }
   1012 
   1013 // Get all the required offsets in java class and register native functions
   1014 int register_android_hardware_Camera(JNIEnv *env)
   1015 {
   1016     field fields_to_find[] = {
   1017         { "android/hardware/Camera", "mNativeContext",   "J", &fields.context },
   1018         { "android/hardware/Camera$CameraInfo", "facing",   "I", &fields.facing },
   1019         { "android/hardware/Camera$CameraInfo", "orientation",   "I", &fields.orientation },
   1020         { "android/hardware/Camera$CameraInfo", "canDisableShutterSound",   "Z",
   1021           &fields.canDisableShutterSound },
   1022         { "android/hardware/Camera$Face", "rect", "Landroid/graphics/Rect;", &fields.face_rect },
   1023         { "android/hardware/Camera$Face", "score", "I", &fields.face_score },
   1024         { "android/graphics/Rect", "left", "I", &fields.rect_left },
   1025         { "android/graphics/Rect", "top", "I", &fields.rect_top },
   1026         { "android/graphics/Rect", "right", "I", &fields.rect_right },
   1027         { "android/graphics/Rect", "bottom", "I", &fields.rect_bottom },
   1028     };
   1029 
   1030     if (find_fields(env, fields_to_find, NELEM(fields_to_find)) < 0)
   1031         return -1;
   1032 
   1033     jclass clazz = env->FindClass("android/hardware/Camera");
   1034     fields.post_event = env->GetStaticMethodID(clazz, "postEventFromNative",
   1035                                                "(Ljava/lang/Object;IIILjava/lang/Object;)V");
   1036     if (fields.post_event == NULL) {
   1037         ALOGE("Can't find android/hardware/Camera.postEventFromNative");
   1038         return -1;
   1039     }
   1040 
   1041     clazz = env->FindClass("android/graphics/Rect");
   1042     fields.rect_constructor = env->GetMethodID(clazz, "<init>", "()V");
   1043     if (fields.rect_constructor == NULL) {
   1044         ALOGE("Can't find android/graphics/Rect.Rect()");
   1045         return -1;
   1046     }
   1047 
   1048     clazz = env->FindClass("android/hardware/Camera$Face");
   1049     fields.face_constructor = env->GetMethodID(clazz, "<init>", "()V");
   1050     if (fields.face_constructor == NULL) {
   1051         ALOGE("Can't find android/hardware/Camera$Face.Face()");
   1052         return -1;
   1053     }
   1054 
   1055     // Register native functions
   1056     return AndroidRuntime::registerNativeMethods(env, "android/hardware/Camera",
   1057                                               camMethods, NELEM(camMethods));
   1058 }
   1059