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This chapter discusses how the JNI maps Java types to native C types.
The following definition is provided for convenience.
#define JNI_FALSE 0 #define JNI_TRUE 1The
jsize
integer type is used to describe cardinal indices and sizes:
typedef jint jsize;
typedef jobject jclass;In C++, JNI introduces a set of dummy classes to enforce the subtyping relationship. For example:
class _jobject {}; class _jclass : public _jobject {}; ... typedef _jobject *jobject; typedef _jclass *jclass;
struct _jfieldID; /* opaque structure */ typedef struct _jfieldID *jfieldID; /* field IDs */ struct _jmethodID; /* opaque structure */ typedef struct _jmethodID *jmethodID; /* method IDs */
jvalue
union type is used as the element type in argument arrays. It is
declared as follows:
typedef union jvalue { jboolean z; jbyte b; jchar c; jshort s; jint i; jlong j; jfloat f; jdouble d; jobject l; } jvalue;
long f (int n, String s, int[] arr);has the following type signature:
(ILjava/lang/String;[I)J
\u0001
to \u007F
are
represented by a single byte, as follows:
The seven bits of data in the byte give the value of the character that is
represented. The null character (\u000
) and characters in the range \u0080
to \u07FF
are represented by a pair of bytes, x and y, as follows:
The bytes represent the character with the value ((x&0x1f)<<6)+(y&0x3f)
.
Characters in the range \u0800
to \uFFFF
are represented by three bytes, x, y,
and z:
The character with the value ((x&0xf)<<12)+(y&0x3f)<<6)+(z&0x3f)
is
represented by the three bytes.
There are two differences between this format and the "standard" UTF-8
format. First, the null byte (byte)0
is encoded using the two-byte format
rather than the one-byte format. This means that Java VM UTF-8 strings never
have embedded nulls. Second, only the one-byte, two-byte, and three-byte
formats are used. The Java VM does not recognize the longer UTF-8 formats.
Java Native Interface Specification (HTML generated by dkramer on March 15, 1997)
Copyright © 1996, 1997 Sun Microsystems, Inc.
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