/* ----------------------------------------------------------------------------- * cdata.i * * SWIG library file containing macros for manipulating raw C data as strings. * ----------------------------------------------------------------------------- */ %include %{ typedef struct SWIGCDATA { char *data; int len; } SWIGCDATA; %} /* ----------------------------------------------------------------------------- * Typemaps for returning binary data * ----------------------------------------------------------------------------- */ #if SWIGGUILE %typemap(out) SWIGCDATA { $result = scm_from_locale_stringn($1.data,$1.len); } %typemap(in) (const void *indata, int inlen) = (char *STRING, int LENGTH); #elif SWIGPHP %typemap(out) SWIGCDATA { ZVAL_STRINGL($result, $1.data, $1.len); } %typemap(in) (const void *indata, int inlen) = (char *STRING, int LENGTH); #elif SWIGJAVA %apply (char *STRING, int LENGTH) { (const void *indata, int inlen) } %typemap(jni) SWIGCDATA "jbyteArray" %typemap(jtype) SWIGCDATA "byte[]" %typemap(jstype) SWIGCDATA "byte[]" %fragment("SWIG_JavaArrayOutCDATA", "header") { static jbyteArray SWIG_JavaArrayOutCDATA(JNIEnv *jenv, char *result, jsize sz) { jbyte *arr; int i; jbyteArray jresult = JCALL1(NewByteArray, jenv, sz); if (!jresult) return NULL; arr = JCALL2(GetByteArrayElements, jenv, jresult, 0); if (!arr) return NULL; for (i=0; i"); /* Memory move function. Due to multi-argument typemaps this appears to be wrapped as void memmove(void *data, const char *s); */ void memmove(void *data, const void *indata, int inlen);