Java Native Interface (JNI)标准是java平台的一部分,它容许Java代码和其余语言写的代码进行交互。JNI 是本地编程接口,它使得在 Java 虚拟机 (VM) 内部运行的 Java 代码可以与用其它编程语言(如 C、C++ 和汇编语言)编写的应用程序和库进行交互操做。html
因为Android的应用层的类都是以Java写的,这些Java类编译为Dex型式的Bytecode以后,必须靠Dalvik虚拟机(VM: Virtual Machine)来执行。VM在Android平台里,扮演很重要的角色。java
此外,在执行Java类的过程当中,若是Java类须要与C组件沟通时,VM就会去载入C组件,而后让Java的函数顺利地调用到C组件的函数。此时,VM扮演着桥梁的角色,让Java与C组件能经过标准的JNI介面而相互沟通。android
应用层的Java类是在虚拟机(VM: Vitual Machine)上执行的,而C件不是在VM上执行,那么Java程式又如何要求VM去载入(Load)所指定的C组件呢? 可以使用下述指令:编程
System.loadLibrary(*.so的档案名); 数组
例如,Android框架里所提供的MediaPlayer.java类,含指令:安全
public class MediaPlayer{ 框架
static {编程语言
System.loadLibrary("media_jni");ide
}函数
}
这要求VM去载入Android的/system/lib/libmedia_jni.so档案。载入*.so以后,Java类与*.so档案就汇合起来,一块儿执行了。
---- JNI_OnLoad()与JNI_OnUnload()函数的用途
当Android的VM(Virtual Machine)执行到System.loadLibrary()函数时,首先会去执行C组件里的JNI_OnLoad()函数。它的用途有二:
(1)告诉VM此C组件使用那一个JNI版本。若是你的*.so档没有提供JNI_OnLoad()函数,VM会默认该*.so档是使用最老的JNI 1.1版本。因为新版的JNI作了许多扩充,若是须要使用JNI的新版功能,例如JNI 1.4的java.nio.ByteBuffer,就必须藉由JNI_OnLoad()函数来告知VM。
(2)因为VM执行到System.loadLibrary()函数时,就会当即先呼叫JNI_OnLoad(),因此C组件的开发者能够藉由JNI_OnLoad()来进行C组件内的初期值之设定(Initialization)。
例如,在Android的/system/lib/libmedia_jni.so档案里,就提供了JNI_OnLoad()函数,其程式码片断为:
//#defineLOG_NDEBUG 0 #define LOG_TAG"MediaPlayer-JNI" jint JNI_OnLoad(JavaVM* vm, void* reserved) { JNIEnv* env = NULL; jint result = -1; if (vm->GetEnv((void**) &env, JNI_VERSION_1_4) != JNI_OK) { LOGE("ERROR: GetEnv failed\n"); goto bail; } assert(env != NULL); if (register_android_media_MediaPlayer(env) < 0) { LOGE("ERROR: MediaPlayer native registration failed\n"); goto bail; } if (register_android_media_MediaRecorder(env) < 0) { LOGE("ERROR: MediaRecorder native registration failed\n"); goto bail; } if (register_android_media_MediaScanner(env) < 0) { LOGE("ERROR: MediaScanner native registration failed\n"); goto bail; } if (register_android_media_MediaMetadataRetriever(env) < 0) { LOGE("ERROR: MediaMetadataRetriever native registrationfailed\n"); goto bail; } /* success -- return valid version number */ result = JNI_VERSION_1_4; bail: return result; }
此函数回传JNI_VERSION_1_4值给VM,因而VM知道了其所使用的JNI版本了。此外,它也作了一些初期的动做(可呼叫任何本地函数),例如指令:
if(register_android_media_MediaPlayer(env) < 0) {
LOGE("ERROR: MediaPlayer native registration failed\n");
goto bail;
}
就将此组件提供的各个本地函数(NativeFunction)登记到VM里,以便能加快后续呼叫本地函数的效率。
JNI_OnUnload()函数与JNI_OnLoad()相对应的。在载入C组件时会当即呼叫JNI_OnLoad()来进行组件内的初期动做;而当VM释放该C组件时,则会呼叫JNI_OnUnload()函数来进行善后清除动做。当VM呼叫JNI_OnLoad()或JNI_Unload()函数时,都会将VM的指针(Pointer)传递给它们,其参数以下:
jint JNI_OnLoad(JavaVM* vm, void* reserved){ } jint JNI_OnUnload(JavaVM* vm, void*reserved){ } 在JNI_OnLoad()函数里,就透过VM之指标而取得JNIEnv之指标值,并存入env指标变数里,以下述指令: jint JNI_OnLoad(JavaVM* vm, void*reserved){ JNIEnv* env = NULL; jint result = -1; if (vm->GetEnv((void**) &env, JNI_VERSION_1_4) != JNI_OK) { LOGE("ERROR: GetEnv failed\n"); goto bail; } }
因为VM一般是多执行绪(Multi-threading)的执行环境。每个执行绪在呼叫JNI_OnLoad()时,所传递进来的JNIEnv指标值都是不一样的。为了配合这种多执行绪的环境,C组件开发者在撰写本地函数时,可藉由JNIEnv指标值之不一样而避免执行绪的资料冲突问题,才能确保所写的本地函数能安全地在Android的多执行绪VM里安全地执行。基于这个理由,当在呼叫C组件的函数时,都会将JNIEnv指标值传递给它,以下:
jint JNI_OnLoad(JavaVM* vm, void* reserved)
{
JNIEnv* env = NULL;
if (register_android_media_MediaPlayer(env) < 0) {
}
}
这JNI_OnLoad()呼叫register_android_media_MediaPlayer(env)函数时,就将env指标值传递过去。如此,在register_android_media_MediaPlayer()函数就能藉由该指标值而区别不一样的执行绪,以便化解资料冲突的问题。
例如,在register_android_media_MediaPlayer()函数里,可撰写下述指令:
if ((*env)->MonitorEnter(env, obj) != JNI_OK) {
}
查看是否已经有其余执行绪进入此物件,若是没有,此执行绪就进入该物件里执行了。还有,也可撰写下述指令:
if ((*env)->MonitorExit(env, obj) != JNI_OK) {
}
查看是否此执行绪正在此物件内执行,若是是,此执行绪就会当即离开。
应用层级的Java类别透过VM而呼叫到本地函数。通常是仰赖VM去寻找*.so里的本地函数。若是须要连续呼叫不少次,每次都须要寻找一遍,会多花许多时间。此时,组件开发者能够自行将本地函数向VM进行登记。例如,在Android的/system/lib/libmedia_jni.so档案里的代码段以下:
//#define LOG_NDEBUG 0 #define LOG_TAG "MediaPlayer-JNI" static JNINativeMethod gMethods[] = { {"setDataSource", "(Ljava/lang/String;)V", (void *)android_media_MediaPlayer_setDataSource}, {"setDataSource", "(Ljava/io/FileDescriptor;JJ)V", (void *)android_media_MediaPlayer_setDataSourceFD}, {"prepare", "()V", (void*)android_media_MediaPlayer_prepare}, {"prepareAsync", "()V", (void*)android_media_MediaPlayer_prepareAsync}, {"_start", "()V", (void*)android_media_MediaPlayer_start}, {"_stop", "()V", (void*)android_media_MediaPlayer_stop}, {"getVideoWidth", "()I", (void*)android_media_MediaPlayer_getVideoWidth}, {"getVideoHeight", "()I", (void*)android_media_MediaPlayer_getVideoHeight}, {"seekTo", "(I)V", (void*)android_media_MediaPlayer_seekTo}, {"_pause", "()V", (void*)android_media_MediaPlayer_pause}, {"isPlaying", "()Z", (void*)android_media_MediaPlayer_isPlaying}, {"getCurrentPosition", "()I", (void*)android_media_MediaPlayer_getCurrentPosition}, {"getDuration", "()I", (void*)android_media_MediaPlayer_getDuration}, {"_release", "()V", (void*)android_media_MediaPlayer_release}, {"_reset", "()V", (void*)android_media_MediaPlayer_reset}, {"setAudioStreamType","(I)V", (void*)android_media_MediaPlayer_setAudioStreamType}, {"setLooping", "(Z)V", (void*)android_media_MediaPlayer_setLooping}, {"setVolume", "(FF)V", (void*)android_media_MediaPlayer_setVolume}, {"getFrameAt", "(I)Landroid/graphics/Bitmap;", (void *)android_media_MediaPlayer_getFrameAt}, {"native_setup", "(Ljava/lang/Object;)V", (void *)android_media_MediaPlayer_native_setup}, {"native_finalize", "()V", (void*)android_media_MediaPlayer_native_finalize}, }; static intregister_android_media_MediaPlayer(JNIEnv *env){ return AndroidRuntime::registerNativeMethods(env, "android/media/MediaPlayer",gMethods, NELEM(gMethods)); } jint JNI_OnLoad(JavaVM* vm, void*reserved){ if (register_android_media_MediaPlayer(env) < 0) { LOGE("ERROR: MediaPlayer native registration failed\n"); goto bail; } }
当VM载入libmedia_jni.so档案时,就呼叫JNI_OnLoad()函数。接着,JNI_OnLoad()呼叫register_android_media_MediaPlayer()函数。此时,就呼叫到AndroidRuntime::registerNativeMethods()函数,向VM(即AndroidRuntime)登记gMethods[]表格所含的本地函数了。简而言之,registerNativeMethods()函数的用途有二:
(1)更有效率去找到函数。
(2)可在执行期间进行抽换。因为gMethods[]是一个<名称,函数指针>对照表,在程序执行时,可屡次呼叫registerNativeMethods()函数来更换本地函数之指针,而达到弹性抽换本地函数之目的。
其中很重要的区别是Andorid使用了一种Java 和 C 函数的映射表数组,并在其中描述了函数的参数和返回值。这个数组的类型是JNINativeMethod,定义以下:
typedef struct {
const char* name; /*Java中函数的名字*/
const char* signature; /*描述了函数的参数和返回值*/
void* fnPtr; /*函数指针,指向C函数*/
} JNINativeMethod;
其中比较难以理解的是第二个参数,例如
"()V"
"(II)V"
"(Ljava/lang/String;Ljava/lang/String;)V"
实际上这些字符是与函数的参数类型一一对应的。
"()" 中的字符表示参数,后面的则表明返回值。例如"()V"就表示voidFunc();
"(II)V" 表示 void Func(int, int);
具体的每个字符的对应关系以下
字符 Java类型 C类型 V void void Z jboolean boolean I jint int J jlong long D jdouble double F jfloat float B jbyte byte C jchar char S jshort short
数组则以"["开始,用两个字符表示
[I jintArray int[] [F jfloatArray float[] [B jbyteArray byte[] [C jcharArray char[] [S jshortArray short[] [D jdoubleArray double[] [J jlongArray long[] [Z jbooleanArray boolean[]上面的都是基本类型。若是Java函数的参数是class,则以"L"开头,以";"结尾,中间是用"/" 隔开的包及类名。而其对应的C函数名的参数则为jobject. 一个例外是String类,其对应的类为jstring
Ljava/lang/String; String jstring
Ljava/net/Socket; Socket jobject
若是JAVA函数位于一个嵌入类,则用$做为类名间的分隔符。
例如"(Ljava/lang/String;Landroid/os/FileUtils$FileStatus;)Z"。
typedef union jvalue { jboolean z; jbyte b; jchar c; jshort s; jint i; jlong j; jfloat f; jdouble d; jobject l; } jvalue;
//建立一个jobject对象,jmethodID是方法id,能够找到该对象的构造函数 jobject (*NewObject)(JNIEnv*, jclass, jmethodID, ...); //建立一个jstring对象 jstring (*NewString)(JNIEnv*, const jchar*, jsize); jstring (*NewStringUTF)(JNIEnv*, const char*); //下面都是建立一个数组,jsize类型是JNI提供的,它最终的类型仍是jint jobjectArray (*NewObjectArray)(JNIEnv*, jsize, jclass, jobject); jbooleanArray (*NewBooleanArray)(JNIEnv*, jsize); jbyteArray (*NewByteArray)(JNIEnv*, jsize); jcharArray (*NewCharArray)(JNIEnv*, jsize); jshortArray (*NewShortArray)(JNIEnv*, jsize); jintArray (*NewIntArray)(JNIEnv*, jsize); jlongArray (*NewLongArray)(JNIEnv*, jsize); jfloatArray (*NewFloatArray)(JNIEnv*, jsize); jdoubleArray (*NewDoubleArray)(JNIEnv*, jsize);
//获取obj对象的字段名称为fieldName,字段类型为fieldType的字段ID。好比(*env)->GetFieldID(env, personClass, "name","Ljava/lang/String;")。 jfieldID (*GetFieldID)(JNIEnv*, jclass obj, const char* fieldName, const char* fieldType); //获取obj对象字段ID为fieldId的值 jobject (*GetObjectField)(JNIEnv*, jobject obj, jfieldID fieldId); jboolean (*GetBooleanField)(JNIEnv*, jobject, jfieldID); jbyte (*GetByteField)(JNIEnv*, jobject, jfieldID); jchar (*GetCharField)(JNIEnv*, jobject, jfieldID); jshort (*GetShortField)(JNIEnv*, jobject, jfieldID); jint (*GetIntField)(JNIEnv*, jobject, jfieldID); jlong (*GetLongField)(JNIEnv*, jobject, jfieldID); jfloat (*GetFloatField)(JNIEnv*, jobject, jfieldID) __NDK_FPABI__; jdouble (*GetDoubleField)(JNIEnv*, jobject, jfieldID) __NDK_FPABI__; //给obj对象字段ID为fieldId的属性设值,好比(*env)->SetObjectField(env, mPerson, field_name, (*env)->NewStringUTF(env,"val native")); void (*SetObjectField)(JNIEnv*, jobject obj, jfieldID fieldId, jobject val); void (*SetBooleanField)(JNIEnv*, jobject, jfieldID, jboolean); void (*SetByteField)(JNIEnv*, jobject, jfieldID, jbyte); void (*SetCharField)(JNIEnv*, jobject, jfieldID, jchar); void (*SetShortField)(JNIEnv*, jobject, jfieldID, jshort); void (*SetIntField)(JNIEnv*, jobject, jfieldID, jint); void (*SetLongField)(JNIEnv*, jobject, jfieldID, jlong); void (*SetFloatField)(JNIEnv*, jobject, jfieldID, jfloat) __NDK_FPABI__; void (*SetDoubleField)(JNIEnv*, jobject, jfieldID, jdouble) __NDK_FPABI__; //下面静态属性。 jobject (*GetStaticObjectField)(JNIEnv*, jclass, jfieldID); jboolean (*GetStaticBooleanField)(JNIEnv*, jclass, jfieldID); jbyte (*GetStaticByteField)(JNIEnv*, jclass, jfieldID); jchar (*GetStaticCharField)(JNIEnv*, jclass, jfieldID); jshort (*GetStaticShortField)(JNIEnv*, jclass, jfieldID); jint (*GetStaticIntField)(JNIEnv*, jclass, jfieldID); jlong (*GetStaticLongField)(JNIEnv*, jclass, jfieldID); jfloat (*GetStaticFloatField)(JNIEnv*, jclass, jfieldID) __NDK_FPABI__; jdouble (*GetStaticDoubleField)(JNIEnv*, jclass, jfieldID) __NDK_FPABI__; void (*SetStaticObjectField)(JNIEnv*, jclass, jfieldID, jobject); void (*SetStaticBooleanField)(JNIEnv*, jclass, jfieldID, jboolean); void (*SetStaticByteField)(JNIEnv*, jclass, jfieldID, jbyte); void (*SetStaticCharField)(JNIEnv*, jclass, jfieldID, jchar); void (*SetStaticShortField)(JNIEnv*, jclass, jfieldID, jshort); void (*SetStaticIntField)(JNIEnv*, jclass, jfieldID, jint); void (*SetStaticLongField)(JNIEnv*, jclass, jfieldID, jlong); void (*SetStaticFloatField)(JNIEnv*, jclass, jfieldID, jfloat) __NDK_FPABI__; void (*SetStaticDoubleField)(JNIEnv*, jclass, jfieldID, jdouble) __NDK_FPABI__; //获取数组长度 jboolean* (*GetBooleanArrayElements)(JNIEnv*, jbooleanArray, jboolean*); jbyte* (*GetByteArrayElements)(JNIEnv*, jbyteArray, jboolean*); jchar* (*GetCharArrayElements)(JNIEnv*, jcharArray, jboolean*); jshort* (*GetShortArrayElements)(JNIEnv*, jshortArray, jboolean*); jint* (*GetIntArrayElements)(JNIEnv*, jintArray, jboolean*); jlong* (*GetLongArrayElements)(JNIEnv*, jlongArray, jboolean*); jfloat* (*GetFloatArrayElements)(JNIEnv*, jfloatArray, jboolean*); jdouble* (*GetDoubleArrayElements)(JNIEnv*, jdoubleArray, jboolean*); //获取方法ID jmethodID (*GetStaticMethodID)(JNIEnv*, jclass, const char*, const char*);
jobject (*CallObjectMethod)(JNIEnv*, jobject, jmethodID, ...); jobject (*CallObjectMethodV)(JNIEnv*, jobject, jmethodID, va_list); jobject (*CallObjectMethodA)(JNIEnv*, jobject, jmethodID, jvalue*); jboolean (*CallBooleanMethod)(JNIEnv*, jobject, jmethodID, ...); jboolean (*CallBooleanMethodV)(JNIEnv*, jobject, jmethodID, va_list); jboolean (*CallBooleanMethodA)(JNIEnv*, jobject, jmethodID, jvalue*); jbyte (*CallByteMethod)(JNIEnv*, jobject, jmethodID, ...); jbyte (*CallByteMethodV)(JNIEnv*, jobject, jmethodID, va_list); jbyte (*CallByteMethodA)(JNIEnv*, jobject, jmethodID, jvalue*); jchar (*CallCharMethod)(JNIEnv*, jobject, jmethodID, ...); jchar (*CallCharMethodV)(JNIEnv*, jobject, jmethodID, va_list); jchar (*CallCharMethodA)(JNIEnv*, jobject, jmethodID, jvalue*); jshort (*CallShortMethod)(JNIEnv*, jobject, jmethodID, ...); jshort (*CallShortMethodV)(JNIEnv*, jobject, jmethodID, va_list); jshort (*CallShortMethodA)(JNIEnv*, jobject, jmethodID, jvalue*); jint (*CallIntMethod)(JNIEnv*, jobject, jmethodID, ...); jint (*CallIntMethodV)(JNIEnv*, jobject, jmethodID, va_list); jint (*CallIntMethodA)(JNIEnv*, jobject, jmethodID, jvalue*); jlong (*CallLongMethod)(JNIEnv*, jobject, jmethodID, ...); jlong (*CallLongMethodV)(JNIEnv*, jobject, jmethodID, va_list); jlong (*CallLongMethodA)(JNIEnv*, jobject, jmethodID, jvalue*); jfloat (*CallFloatMethod)(JNIEnv*, jobject, jmethodID, ...) __NDK_FPABI__; jfloat (*CallFloatMethodV)(JNIEnv*, jobject, jmethodID, va_list) __NDK_FPABI__; jfloat (*CallFloatMethodA)(JNIEnv*, jobject, jmethodID, jvalue*) __NDK_FPABI__; jdouble (*CallDoubleMethod)(JNIEnv*, jobject, jmethodID, ...) __NDK_FPABI__; jdouble (*CallDoubleMethodV)(JNIEnv*, jobject, jmethodID, va_list) __NDK_FPABI__; jdouble (*CallDoubleMethodA)(JNIEnv*, jobject, jmethodID, jvalue*) __NDK_FPABI__; void (*CallVoidMethod)(JNIEnv*, jobject, jmethodID, ...); void (*CallVoidMethodV)(JNIEnv*, jobject, jmethodID, va_list); void (*CallVoidMethodA)(JNIEnv*, jobject, jmethodID, jvalue*); jobject (*CallStaticObjectMethod)(JNIEnv*, jclass, jmethodID, ...); jobject (*CallStaticObjectMethodV)(JNIEnv*, jclass, jmethodID, va_list); jobject (*CallStaticObjectMethodA)(JNIEnv*, jclass, jmethodID, jvalue*); jboolean (*CallStaticBooleanMethod)(JNIEnv*, jclass, jmethodID, ...); jboolean (*CallStaticBooleanMethodV)(JNIEnv*, jclass, jmethodID,
void ReleaseBooleanArrayElements(jbooleanArray array, jboolean* elems, jint mode) { functions->ReleaseBooleanArrayElements(this, array, elems, mode); } void ReleaseByteArrayElements(jbyteArray array, jbyte* elems, jint mode) { functions->ReleaseByteArrayElements(this, array, elems, mode); } void ReleaseCharArrayElements(jcharArray array, jchar* elems, jint mode) { functions->ReleaseCharArrayElements(this, array, elems, mode); } void ReleaseShortArrayElements(jshortArray array, jshort* elems, jint mode) { functions->ReleaseShortArrayElements(this, array, elems, mode); } void ReleaseIntArrayElements(jintArray array, jint* elems, jint mode) { functions->ReleaseIntArrayElements(this, array, elems, mode); } void ReleaseLongArrayElements(jlongArray array, jlong* elems, jint mode) { functions->ReleaseLongArrayElements(this, array, elems, mode); } void ReleaseFloatArrayElements(jfloatArray array, jfloat* elems, jint mode)