/* ---------------------------------------------------------------------------- * This file was automatically generated by SWIG (http://www.swig.org). * Version 1.3.29 * * This file is not intended to be easily readable and contains a number of * coding conventions designed to improve portability and efficiency. Do not make * changes to this file unless you know what you are doing--modify the SWIG * interface file instead. * ----------------------------------------------------------------------------- */ #ifdef __cplusplus template class SwigValueWrapper { T *tt; public: SwigValueWrapper() : tt(0) { } SwigValueWrapper(const SwigValueWrapper& rhs) : tt(new T(*rhs.tt)) { } SwigValueWrapper(const T& t) : tt(new T(t)) { } ~SwigValueWrapper() { delete tt; } SwigValueWrapper& operator=(const T& t) { delete tt; tt = new T(t); return *this; } operator T&() const { return *tt; } T *operator&() { return tt; } private: SwigValueWrapper& operator=(const SwigValueWrapper& rhs); }; #endif /* ----------------------------------------------------------------------------- * This section contains generic SWIG labels for method/variable * declarations/attributes, and other compiler dependent labels. * ----------------------------------------------------------------------------- */ /* template workaround for compilers that cannot correctly implement the C++ standard */ #ifndef SWIGTEMPLATEDISAMBIGUATOR # if defined(__SUNPRO_CC) # if (__SUNPRO_CC <= 0x560) # define SWIGTEMPLATEDISAMBIGUATOR template # else # define SWIGTEMPLATEDISAMBIGUATOR # endif # else # define SWIGTEMPLATEDISAMBIGUATOR # endif #endif /* inline attribute */ #ifndef SWIGINLINE # if defined(__cplusplus) || (defined(__GNUC__) && !defined(__STRICT_ANSI__)) # define SWIGINLINE inline # else # define SWIGINLINE # endif #endif /* attribute recognised by some compilers to avoid 'unused' warnings */ #ifndef SWIGUNUSED # if defined(__GNUC__) # if !(defined(__cplusplus)) || (__GNUC__ > 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4)) # define SWIGUNUSED __attribute__ ((__unused__)) # else # define SWIGUNUSED # endif # elif defined(__ICC) # define SWIGUNUSED __attribute__ ((__unused__)) # else # define SWIGUNUSED # endif #endif #ifndef SWIGUNUSEDPARM # ifdef __cplusplus # define SWIGUNUSEDPARM(p) # else # define SWIGUNUSEDPARM(p) p SWIGUNUSED # endif #endif /* internal SWIG method */ #ifndef SWIGINTERN # define SWIGINTERN static SWIGUNUSED #endif /* internal inline SWIG method */ #ifndef SWIGINTERNINLINE # define SWIGINTERNINLINE SWIGINTERN SWIGINLINE #endif /* exporting methods */ #if (__GNUC__ >= 4) || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4) # ifndef GCC_HASCLASSVISIBILITY # define GCC_HASCLASSVISIBILITY # endif #endif #ifndef SWIGEXPORT # if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__) # if defined(STATIC_LINKED) # define SWIGEXPORT # else # define SWIGEXPORT __declspec(dllexport) # endif # else # if defined(__GNUC__) && defined(GCC_HASCLASSVISIBILITY) # define SWIGEXPORT __attribute__ ((visibility("default"))) # else # define SWIGEXPORT # endif # endif #endif /* calling conventions for Windows */ #ifndef SWIGSTDCALL # if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__) # define SWIGSTDCALL __stdcall # else # define SWIGSTDCALL # endif #endif /* Deal with Microsoft's attempt at deprecating C standard runtime functions */ #if !defined(SWIG_NO_CRT_SECURE_NO_DEPRECATE) && defined(_MSC_VER) # define _CRT_SECURE_NO_DEPRECATE #endif /* Fix for jlong on some versions of gcc on Windows */ #if defined(__GNUC__) && !defined(__INTELC__) typedef long long __int64; #endif /* Fix for jlong on 64-bit x86 Solaris */ #if defined(__x86_64) # ifdef _LP64 # undef _LP64 # endif #endif #include #include #include /* Support for throwing Java exceptions */ typedef enum { SWIG_JavaOutOfMemoryError = 1, SWIG_JavaIOException, SWIG_JavaRuntimeException, SWIG_JavaIndexOutOfBoundsException, SWIG_JavaArithmeticException, SWIG_JavaIllegalArgumentException, SWIG_JavaNullPointerException, SWIG_JavaDirectorPureVirtual, SWIG_JavaUnknownError } SWIG_JavaExceptionCodes; typedef struct { SWIG_JavaExceptionCodes code; const char *java_exception; } SWIG_JavaExceptions_t; static void SWIGUNUSED SWIG_JavaThrowException(JNIEnv *jenv, SWIG_JavaExceptionCodes code, const char *msg) { jclass excep; static const SWIG_JavaExceptions_t java_exceptions[] = { { SWIG_JavaOutOfMemoryError, "java/lang/OutOfMemoryError" }, { SWIG_JavaIOException, "java/io/IOException" }, { SWIG_JavaRuntimeException, "java/lang/RuntimeException" }, { SWIG_JavaIndexOutOfBoundsException, "java/lang/IndexOutOfBoundsException" }, { SWIG_JavaArithmeticException, "java/lang/ArithmeticException" }, { SWIG_JavaIllegalArgumentException, "java/lang/IllegalArgumentException" }, { SWIG_JavaNullPointerException, "java/lang/NullPointerException" }, { SWIG_JavaDirectorPureVirtual, "java/lang/RuntimeException" }, { SWIG_JavaUnknownError, "java/lang/UnknownError" }, { (SWIG_JavaExceptionCodes)0, "java/lang/UnknownError" } }; const SWIG_JavaExceptions_t *except_ptr = java_exceptions; while (except_ptr->code != code && except_ptr->code) except_ptr++; jenv->ExceptionClear(); excep = jenv->FindClass(except_ptr->java_exception); if (excep) jenv->ThrowNew(excep, msg); } /* Contract support */ #define SWIG_contract_assert(nullreturn, expr, msg) if (!(expr)) {SWIG_JavaThrowException(jenv, SWIG_JavaIllegalArgumentException, msg); return nullreturn; } else #include using namespace std; #include "cpl_port.h" #include "cpl_string.h" #include "gdal.h" #include "gdal_priv.h" #include "gdal_alg.h" #include "gdalwarper.h" typedef void GDALMajorObjectShadow; typedef void GDALDriverShadow; typedef void GDALDatasetShadow; typedef void GDALRasterBandShadow; typedef int FALSE_IS_ERR; #if defined(SWIG_NOINCLUDE) || defined(SWIG_NOARRAYS) int SWIG_JavaArrayInBool (JNIEnv *jenv, jboolean **jarr, bool **carr, jbooleanArray input); void SWIG_JavaArrayArgoutBool (JNIEnv *jenv, jboolean *jarr, bool *carr, jbooleanArray input); jbooleanArray SWIG_JavaArrayOutBool (JNIEnv *jenv, bool *result, jsize sz); int SWIG_JavaArrayInSchar (JNIEnv *jenv, jbyte **jarr, signed char **carr, jbyteArray input); void SWIG_JavaArrayArgoutSchar (JNIEnv *jenv, jbyte *jarr, signed char *carr, jbyteArray input); jbyteArray SWIG_JavaArrayOutSchar (JNIEnv *jenv, signed char *result, jsize sz); int SWIG_JavaArrayInUchar (JNIEnv *jenv, jshort **jarr, unsigned char **carr, jshortArray input); void SWIG_JavaArrayArgoutUchar (JNIEnv *jenv, jshort *jarr, unsigned char *carr, jshortArray input); jshortArray SWIG_JavaArrayOutUchar (JNIEnv *jenv, unsigned char *result, jsize sz); int SWIG_JavaArrayInShort (JNIEnv *jenv, jshort **jarr, short **carr, jshortArray input); void SWIG_JavaArrayArgoutShort (JNIEnv *jenv, jshort *jarr, short *carr, jshortArray input); jshortArray SWIG_JavaArrayOutShort (JNIEnv *jenv, short *result, jsize sz); int SWIG_JavaArrayInUshort (JNIEnv *jenv, jint **jarr, unsigned short **carr, jintArray input); void SWIG_JavaArrayArgoutUshort (JNIEnv *jenv, jint *jarr, unsigned short *carr, jintArray input); jintArray SWIG_JavaArrayOutUshort (JNIEnv *jenv, unsigned short *result, jsize sz); int SWIG_JavaArrayInInt (JNIEnv *jenv, jint **jarr, int **carr, jintArray input); void SWIG_JavaArrayArgoutInt (JNIEnv *jenv, jint *jarr, int *carr, jintArray input); jintArray SWIG_JavaArrayOutInt (JNIEnv *jenv, int *result, jsize sz); int SWIG_JavaArrayInUint (JNIEnv *jenv, jlong **jarr, unsigned int **carr, jlongArray input); void SWIG_JavaArrayArgoutUint (JNIEnv *jenv, jlong *jarr, unsigned int *carr, jlongArray input); jlongArray SWIG_JavaArrayOutUint (JNIEnv *jenv, unsigned int *result, jsize sz); int SWIG_JavaArrayInLong (JNIEnv *jenv, jint **jarr, long **carr, jintArray input); void SWIG_JavaArrayArgoutLong (JNIEnv *jenv, jint *jarr, long *carr, jintArray input); jintArray SWIG_JavaArrayOutLong (JNIEnv *jenv, long *result, jsize sz); int SWIG_JavaArrayInUlong (JNIEnv *jenv, jlong **jarr, unsigned long **carr, jlongArray input); void SWIG_JavaArrayArgoutUlong (JNIEnv *jenv, jlong *jarr, unsigned long *carr, jlongArray input); jlongArray SWIG_JavaArrayOutUlong (JNIEnv *jenv, unsigned long *result, jsize sz); int SWIG_JavaArrayInLonglong (JNIEnv *jenv, jlong **jarr, jlong **carr, jlongArray input); void SWIG_JavaArrayArgoutLonglong (JNIEnv *jenv, jlong *jarr, jlong *carr, jlongArray input); jlongArray SWIG_JavaArrayOutLonglong (JNIEnv *jenv, jlong *result, jsize sz); int SWIG_JavaArrayInFloat (JNIEnv *jenv, jfloat **jarr, float **carr, jfloatArray input); void SWIG_JavaArrayArgoutFloat (JNIEnv *jenv, jfloat *jarr, float *carr, jfloatArray input); jfloatArray SWIG_JavaArrayOutFloat (JNIEnv *jenv, float *result, jsize sz); int SWIG_JavaArrayInDouble (JNIEnv *jenv, jdouble **jarr, double **carr, jdoubleArray input); void SWIG_JavaArrayArgoutDouble (JNIEnv *jenv, jdouble *jarr, double *carr, jdoubleArray input); jdoubleArray SWIG_JavaArrayOutDouble (JNIEnv *jenv, double *result, jsize sz); #else /* bool[] support */ int SWIG_JavaArrayInBool (JNIEnv *jenv, jboolean **jarr, bool **carr, jbooleanArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetBooleanArrayElements(input, 0); if (!*jarr) return 0; *carr = new bool[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseBooleanArrayElements(input, jarr, 0); } jbooleanArray SWIG_JavaArrayOutBool (JNIEnv *jenv, bool *result, jsize sz) { jboolean *arr; int i; jbooleanArray jresult = jenv->NewBooleanArray(sz); if (!jresult) return NULL; arr = jenv->GetBooleanArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseBooleanArrayElements(jresult, arr, 0); return jresult; } /* signed char[] support */ int SWIG_JavaArrayInSchar (JNIEnv *jenv, jbyte **jarr, signed char **carr, jbyteArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetByteArrayElements(input, 0); if (!*jarr) return 0; *carr = new signed char[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseByteArrayElements(input, jarr, 0); } jbyteArray SWIG_JavaArrayOutSchar (JNIEnv *jenv, signed char *result, jsize sz) { jbyte *arr; int i; jbyteArray jresult = jenv->NewByteArray(sz); if (!jresult) return NULL; arr = jenv->GetByteArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseByteArrayElements(jresult, arr, 0); return jresult; } /* unsigned char[] support */ int SWIG_JavaArrayInUchar (JNIEnv *jenv, jshort **jarr, unsigned char **carr, jshortArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetShortArrayElements(input, 0); if (!*jarr) return 0; *carr = new unsigned char[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseShortArrayElements(input, jarr, 0); } jshortArray SWIG_JavaArrayOutUchar (JNIEnv *jenv, unsigned char *result, jsize sz) { jshort *arr; int i; jshortArray jresult = jenv->NewShortArray(sz); if (!jresult) return NULL; arr = jenv->GetShortArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseShortArrayElements(jresult, arr, 0); return jresult; } /* short[] support */ int SWIG_JavaArrayInShort (JNIEnv *jenv, jshort **jarr, short **carr, jshortArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetShortArrayElements(input, 0); if (!*jarr) return 0; *carr = new short[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseShortArrayElements(input, jarr, 0); } jshortArray SWIG_JavaArrayOutShort (JNIEnv *jenv, short *result, jsize sz) { jshort *arr; int i; jshortArray jresult = jenv->NewShortArray(sz); if (!jresult) return NULL; arr = jenv->GetShortArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseShortArrayElements(jresult, arr, 0); return jresult; } /* unsigned short[] support */ int SWIG_JavaArrayInUshort (JNIEnv *jenv, jint **jarr, unsigned short **carr, jintArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetIntArrayElements(input, 0); if (!*jarr) return 0; *carr = new unsigned short[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseIntArrayElements(input, jarr, 0); } jintArray SWIG_JavaArrayOutUshort (JNIEnv *jenv, unsigned short *result, jsize sz) { jint *arr; int i; jintArray jresult = jenv->NewIntArray(sz); if (!jresult) return NULL; arr = jenv->GetIntArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseIntArrayElements(jresult, arr, 0); return jresult; } /* int[] support */ int SWIG_JavaArrayInInt (JNIEnv *jenv, jint **jarr, int **carr, jintArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetIntArrayElements(input, 0); if (!*jarr) return 0; *carr = new int[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseIntArrayElements(input, jarr, 0); } jintArray SWIG_JavaArrayOutInt (JNIEnv *jenv, int *result, jsize sz) { jint *arr; int i; jintArray jresult = jenv->NewIntArray(sz); if (!jresult) return NULL; arr = jenv->GetIntArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseIntArrayElements(jresult, arr, 0); return jresult; } /* unsigned int[] support */ int SWIG_JavaArrayInUint (JNIEnv *jenv, jlong **jarr, unsigned int **carr, jlongArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetLongArrayElements(input, 0); if (!*jarr) return 0; *carr = new unsigned int[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseLongArrayElements(input, jarr, 0); } jlongArray SWIG_JavaArrayOutUint (JNIEnv *jenv, unsigned int *result, jsize sz) { jlong *arr; int i; jlongArray jresult = jenv->NewLongArray(sz); if (!jresult) return NULL; arr = jenv->GetLongArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseLongArrayElements(jresult, arr, 0); return jresult; } /* long[] support */ int SWIG_JavaArrayInLong (JNIEnv *jenv, jint **jarr, long **carr, jintArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetIntArrayElements(input, 0); if (!*jarr) return 0; *carr = new long[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseIntArrayElements(input, jarr, 0); } jintArray SWIG_JavaArrayOutLong (JNIEnv *jenv, long *result, jsize sz) { jint *arr; int i; jintArray jresult = jenv->NewIntArray(sz); if (!jresult) return NULL; arr = jenv->GetIntArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseIntArrayElements(jresult, arr, 0); return jresult; } /* unsigned long[] support */ int SWIG_JavaArrayInUlong (JNIEnv *jenv, jlong **jarr, unsigned long **carr, jlongArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetLongArrayElements(input, 0); if (!*jarr) return 0; *carr = new unsigned long[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseLongArrayElements(input, jarr, 0); } jlongArray SWIG_JavaArrayOutUlong (JNIEnv *jenv, unsigned long *result, jsize sz) { jlong *arr; int i; jlongArray jresult = jenv->NewLongArray(sz); if (!jresult) return NULL; arr = jenv->GetLongArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseLongArrayElements(jresult, arr, 0); return jresult; } /* jlong[] support */ int SWIG_JavaArrayInLonglong (JNIEnv *jenv, jlong **jarr, jlong **carr, jlongArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetLongArrayElements(input, 0); if (!*jarr) return 0; *carr = new jlong[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseLongArrayElements(input, jarr, 0); } jlongArray SWIG_JavaArrayOutLonglong (JNIEnv *jenv, jlong *result, jsize sz) { jlong *arr; int i; jlongArray jresult = jenv->NewLongArray(sz); if (!jresult) return NULL; arr = jenv->GetLongArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseLongArrayElements(jresult, arr, 0); return jresult; } /* float[] support */ int SWIG_JavaArrayInFloat (JNIEnv *jenv, jfloat **jarr, float **carr, jfloatArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetFloatArrayElements(input, 0); if (!*jarr) return 0; *carr = new float[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseFloatArrayElements(input, jarr, 0); } jfloatArray SWIG_JavaArrayOutFloat (JNIEnv *jenv, float *result, jsize sz) { jfloat *arr; int i; jfloatArray jresult = jenv->NewFloatArray(sz); if (!jresult) return NULL; arr = jenv->GetFloatArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseFloatArrayElements(jresult, arr, 0); return jresult; } /* double[] support */ int SWIG_JavaArrayInDouble (JNIEnv *jenv, jdouble **jarr, double **carr, jdoubleArray input) { int i; jsize sz; if (!input) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "null array"); return 0; } sz = jenv->GetArrayLength(input); *jarr = jenv->GetDoubleArrayElements(input, 0); if (!*jarr) return 0; *carr = new double[sz]; if (!*carr) { SWIG_JavaThrowException(jenv, SWIG_JavaOutOfMemoryError, "array memory allocation failed"); return 0; } for (i=0; iGetArrayLength(input); for (i=0; iReleaseDoubleArrayElements(input, jarr, 0); } jdoubleArray SWIG_JavaArrayOutDouble (JNIEnv *jenv, double *result, jsize sz) { jdouble *arr; int i; jdoubleArray jresult = jenv->NewDoubleArray(sz); if (!jresult) return NULL; arr = jenv->GetDoubleArrayElements(jresult, 0); if (!arr) return NULL; for (i=0; iReleaseDoubleArrayElements(jresult, arr, 0); return jresult; } #endif void Debug( const char *msg_class, const char *message ) { CPLDebug( msg_class, message ); } void Error( CPLErr msg_class = CE_Failure, int err_code = 0, const char* msg = "error" ) { CPLError( msg_class, err_code, msg ); } CPLErr PushErrorHandler( char const * pszCallbackName = "CPLQuietErrorHandler" ) { CPLErrorHandler pfnHandler = NULL; if( EQUAL(pszCallbackName,"CPLQuietErrorHandler") ) pfnHandler = CPLQuietErrorHandler; else if( EQUAL(pszCallbackName,"CPLDefaultErrorHandler") ) pfnHandler = CPLDefaultErrorHandler; else if( EQUAL(pszCallbackName,"CPLLoggingErrorHandler") ) pfnHandler = CPLLoggingErrorHandler; if ( pfnHandler == NULL ) return CE_Fatal; CPLPushErrorHandler( pfnHandler ); return CE_None; } SWIGINTERN char const *GDALMajorObjectShadow_GetDescription(GDALMajorObjectShadow *self){ return GDALGetDescription( self ); } SWIGINTERN void GDALMajorObjectShadow_SetDescription(GDALMajorObjectShadow *self,char const *pszNewDesc){ GDALSetDescription( self, pszNewDesc ); } SWIGINTERN char **GDALMajorObjectShadow_GetMetadata_Dict(GDALMajorObjectShadow *self,char const *pszDomain=""){ return GDALGetMetadata( self, pszDomain ); } SWIGINTERN char **GDALMajorObjectShadow_GetMetadata_List(GDALMajorObjectShadow *self,char const *pszDomain=""){ return GDALGetMetadata( self, pszDomain ); } SWIGINTERN CPLErr GDALMajorObjectShadow_SetMetadata__SWIG_0(GDALMajorObjectShadow *self,char **papszMetadata,char const *pszDomain=""){ return GDALSetMetadata( self, papszMetadata, pszDomain ); } SWIGINTERN CPLErr GDALMajorObjectShadow_SetMetadata__SWIG_1(GDALMajorObjectShadow *self,char *pszMetadataString,char const *pszDomain=""){ char *tmpList[2]; tmpList[0] = pszMetadataString; tmpList[1] = 0; return GDALSetMetadata( self, tmpList, pszDomain ); } SWIGINTERN GDALDatasetShadow *GDALDriverShadow_Create(GDALDriverShadow *self,char const *name,int xsize,int ysize,int bands=1,GDALDataType eType=GDT_Byte,char **options=0){ GDALDatasetShadow* ds = (GDALDatasetShadow*) GDALCreate( self, name, xsize, ysize, bands, eType, options ); return ds; } SWIGINTERN GDALDatasetShadow *GDALDriverShadow_CreateCopy(GDALDriverShadow *self,char const *name,GDALDatasetShadow *src,int strict=1,char **options=0){ GDALDatasetShadow *ds = (GDALDatasetShadow*) GDALCreateCopy(self, name, src, strict, options, 0, 0 ); return ds; } SWIGINTERN int GDALDriverShadow_Delete(GDALDriverShadow *self,char const *name){ return GDALDeleteDataset( self, name ); } char const *GDALDriverShadow_ShortName_get( GDALDriverShadow *h ) { return GDALGetDriverShortName( h ); } char const *GDALDriverShadow_LongName_get( GDALDriverShadow *h ) { return GDALGetDriverLongName( h ); } char const *GDALDriverShadow_HelpTopic_get( GDALDriverShadow *h ) { return GDALGetDriverHelpTopic( h ); } SWIGINTERN GDAL_GCP *new_GDAL_GCP(double x=0.0,double y=0.0,double z=0.0,double pixel=0.0,double line=0.0,char const *info="",char const *id=""){ GDAL_GCP *self = (GDAL_GCP*) CPLMalloc( sizeof( GDAL_GCP ) ); self->dfGCPX = x; self->dfGCPY = y; self->dfGCPZ = z; self->dfGCPPixel = pixel; self->dfGCPLine = line; self->pszInfo = CPLStrdup( (info == 0) ? "" : info ); self->pszId = CPLStrdup( (id==0)? "" : id ); return self; } SWIGINTERN void delete_GDAL_GCP(GDAL_GCP *self){ if ( self->pszInfo ) CPLFree( self->pszInfo ); if ( self->pszId ) CPLFree( self->pszId ); CPLFree( self ); } double GDAL_GCP_GCPX_get( GDAL_GCP *h ) { return h->dfGCPX; } void GDAL_GCP_GCPX_set( GDAL_GCP *h, double val ) { h->dfGCPX = val; } double GDAL_GCP_GCPY_get( GDAL_GCP *h ) { return h->dfGCPY; } void GDAL_GCP_GCPY_set( GDAL_GCP *h, double val ) { h->dfGCPY = val; } double GDAL_GCP_GCPZ_get( GDAL_GCP *h ) { return h->dfGCPZ; } void GDAL_GCP_GCPZ_set( GDAL_GCP *h, double val ) { h->dfGCPZ = val; } double GDAL_GCP_GCPPixel_get( GDAL_GCP *h ) { return h->dfGCPPixel; } void GDAL_GCP_GCPPixel_set( GDAL_GCP *h, double val ) { h->dfGCPPixel = val; } double GDAL_GCP_GCPLine_get( GDAL_GCP *h ) { return h->dfGCPLine; } void GDAL_GCP_GCPLine_set( GDAL_GCP *h, double val ) { h->dfGCPLine = val; } const char * GDAL_GCP_Info_get( GDAL_GCP *h ) { return h->pszInfo; } void GDAL_GCP_Info_set( GDAL_GCP *h, const char * val ) { if ( h->pszInfo ) CPLFree( h->pszInfo ); h->pszInfo = CPLStrdup(val); } const char * GDAL_GCP_Id_get( GDAL_GCP *h ) { return h->pszId; } void GDAL_GCP_Id_set( GDAL_GCP *h, const char * val ) { if ( h->pszId ) CPLFree( h->pszId ); h->pszId = CPLStrdup(val); } /* Duplicate, but transposed names for C# because * the C# module outputs backwards names */ double GDAL_GCP_get_GCPX( GDAL_GCP *h ) { return h->dfGCPX; } void GDAL_GCP_set_GCPX( GDAL_GCP *h, double val ) { h->dfGCPX = val; } double GDAL_GCP_get_GCPY( GDAL_GCP *h ) { return h->dfGCPY; } void GDAL_GCP_set_GCPY( GDAL_GCP *h, double val ) { h->dfGCPY = val; } double GDAL_GCP_get_GCPZ( GDAL_GCP *h ) { return h->dfGCPZ; } void GDAL_GCP_set_GCPZ( GDAL_GCP *h, double val ) { h->dfGCPZ = val; } double GDAL_GCP_get_GCPPixel( GDAL_GCP *h ) { return h->dfGCPPixel; } void GDAL_GCP_set_GCPPixel( GDAL_GCP *h, double val ) { h->dfGCPPixel = val; } double GDAL_GCP_get_GCPLine( GDAL_GCP *h ) { return h->dfGCPLine; } void GDAL_GCP_set_GCPLine( GDAL_GCP *h, double val ) { h->dfGCPLine = val; } const char * GDAL_GCP_get_Info( GDAL_GCP *h ) { return h->pszInfo; } void GDAL_GCP_set_Info( GDAL_GCP *h, const char * val ) { if ( h->pszInfo ) CPLFree( h->pszInfo ); h->pszInfo = CPLStrdup(val); } const char * GDAL_GCP_get_Id( GDAL_GCP *h ) { return h->pszId; } void GDAL_GCP_set_Id( GDAL_GCP *h, const char * val ) { if ( h->pszId ) CPLFree( h->pszId ); h->pszId = CPLStrdup(val); } static CPLErr DSReadRaster_internal( GDALDatasetShadow *obj, int xoff, int yoff, int xsize, int ysize, int buf_xsize, int buf_ysize, GDALDataType buf_type, int *buf_size, char **buf, int band_list, int *pband_list ) { *buf_size = buf_xsize * buf_ysize * GDALGetDataTypeSize( buf_type ) / 8; *buf = (char*) malloc( *buf_size ); CPLErr result = GDALDatasetRasterIO(obj, GF_Read, xoff, yoff, xsize, ysize, (void*) *buf, buf_xsize, buf_ysize, buf_type, band_list, pband_list, 0, 0, 0 ); if ( result != CE_None ) { free( *buf ); *buf = 0; *buf_size = 0; } return result; } SWIGINTERN void delete_GDALDatasetShadow(GDALDatasetShadow *self){ if ( GDALDereferenceDataset( self ) <= 0 ) { GDALClose(self); } } SWIGINTERN GDALDriverShadow *GDALDatasetShadow_GetDriver(GDALDatasetShadow *self){ return (GDALDriverShadow*) GDALGetDatasetDriver( self ); } SWIGINTERN GDALRasterBandShadow *GDALDatasetShadow_GetRasterBand(GDALDatasetShadow *self,int nBand){ return (GDALRasterBandShadow*) GDALGetRasterBand( self, nBand ); } SWIGINTERN char const *GDALDatasetShadow_GetProjection(GDALDatasetShadow *self){ return GDALGetProjectionRef( self ); } SWIGINTERN char const *GDALDatasetShadow_GetProjectionRef(GDALDatasetShadow *self){ return GDALGetProjectionRef( self ); } SWIGINTERN CPLErr GDALDatasetShadow_SetProjection(GDALDatasetShadow *self,char const *prj){ return GDALSetProjection( self, prj ); } SWIGINTERN void GDALDatasetShadow_GetGeoTransform(GDALDatasetShadow *self,double argout[6]){ if ( GDALGetGeoTransform( self, argout ) != 0 ) { argout[0] = 0.0; argout[1] = 1.0; argout[2] = 0.0; argout[3] = 0.0; argout[4] = 0.0; argout[5] = 1.0; } } SWIGINTERN CPLErr GDALDatasetShadow_SetGeoTransform(GDALDatasetShadow *self,double argin[6]){ return GDALSetGeoTransform( self, argin ); } SWIGINTERN int GDALDatasetShadow_BuildOverviews(GDALDatasetShadow *self,char const *resampling="NEAREST",int overviewlist=0,int *pOverviews=0){ return GDALBuildOverviews( self, resampling, overviewlist, pOverviews, 0, 0, 0, 0); } SWIGINTERN int GDALDatasetShadow_GetGCPCount(GDALDatasetShadow *self){ return GDALGetGCPCount( self ); } SWIGINTERN char const *GDALDatasetShadow_GetGCPProjection(GDALDatasetShadow *self){ return GDALGetGCPProjection( self ); } SWIGINTERN void GDALDatasetShadow_GetGCPs(GDALDatasetShadow *self,int *nGCPs,GDAL_GCP const **pGCPs){ *nGCPs = GDALGetGCPCount( self ); *pGCPs = GDALGetGCPs( self ); } SWIGINTERN CPLErr GDALDatasetShadow_SetGCPs(GDALDatasetShadow *self,int nGCPs,GDAL_GCP const *pGCPs,char const *pszGCPProjection){ return GDALSetGCPs( self, nGCPs, pGCPs, pszGCPProjection ); } SWIGINTERN void GDALDatasetShadow_FlushCache(GDALDatasetShadow *self){ GDALFlushCache( self ); } SWIGINTERN CPLErr GDALDatasetShadow_AddBand(GDALDatasetShadow *self,GDALDataType datatype=GDT_Byte,char **options=0){ return GDALAddBand( self, datatype, options ); } SWIGINTERN CPLErr GDALDatasetShadow_WriteRaster(GDALDatasetShadow *self,int xoff,int yoff,int xsize,int ysize,int buf_len,char *buf_string,int *buf_xsize=0,int *buf_ysize=0,GDALDataType *buf_type=0,int band_list=0,int *pband_list=0){ int nxsize = (buf_xsize==0) ? xsize : *buf_xsize; int nysize = (buf_ysize==0) ? ysize : *buf_ysize; GDALDataType ntype; if ( buf_type != 0 ) { ntype = (GDALDataType) *buf_type; } else { int lastband = GDALGetRasterCount( self ) - 1; ntype = GDALGetRasterDataType( GDALGetRasterBand( self, lastband ) ); } bool myBandList = false; int nBandCount; int *pBandList; if ( band_list != 0 ) { myBandList = false; nBandCount = band_list; pBandList = pband_list; } else { myBandList = true; nBandCount = GDALGetRasterCount( self ); pBandList = (int*) CPLMalloc( sizeof(int) * nBandCount ); for( int i = 0; i< nBandCount; ++i ) { pBandList[i] = i; } } return GDALDatasetRasterIO( self, GF_Write, xoff, yoff, xsize, ysize, (void*) buf_string, nxsize, nysize, ntype, band_list, pband_list, 0, 0, 0 ); if ( myBandList ) { CPLFree( pBandList ); } } SWIGINTERN CPLErr GDALDatasetShadow_ReadRaster(GDALDatasetShadow *self,int xoff,int yoff,int xsize,int ysize,int *buf_len,char **buf,int *buf_xsize=0,int *buf_ysize=0,GDALDataType *buf_type=0,int band_list=0,int *pband_list=0){ int nxsize = (buf_xsize==0) ? xsize : *buf_xsize; int nysize = (buf_ysize==0) ? ysize : *buf_ysize; GDALDataType ntype; if ( buf_type != 0 ) { ntype = (GDALDataType) *buf_type; } else { int lastband = GDALGetRasterCount( self ) - 1; ntype = GDALGetRasterDataType( GDALGetRasterBand( self, lastband ) ); } bool myBandList = false; int nBandCount; int *pBandList; if ( band_list != 0 ) { myBandList = false; nBandCount = band_list; pBandList = pband_list; } else { myBandList = true; nBandCount = GDALGetRasterCount( self ); pBandList = (int*) CPLMalloc( sizeof(int) * nBandCount ); for( int i = 0; i< nBandCount; ++i ) { pBandList[i] = i; } } return DSReadRaster_internal( self, xoff, yoff, xsize, ysize, nxsize, nysize, ntype, buf_len, buf, nBandCount, pBandList); if ( myBandList ) { CPLFree( pBandList ); } } int GDALDatasetShadow_RasterXSize_get( GDALDatasetShadow *h ) { return GDALGetRasterXSize( h ); } int GDALDatasetShadow_RasterYSize_get( GDALDatasetShadow *h ) { return GDALGetRasterYSize( h ); } int GDALDatasetShadow_RasterCount_get( GDALDatasetShadow *h ) { return GDALGetRasterCount( h ); } static CPLErr ReadRaster_internal( GDALRasterBandShadow *obj, int xoff, int yoff, int xsize, int ysize, int buf_xsize, int buf_ysize, GDALDataType buf_type, int *buf_size, char **buf ) { *buf_size = buf_xsize * buf_ysize * GDALGetDataTypeSize( buf_type ) / 8; *buf = (char*) malloc( *buf_size ); CPLErr result = GDALRasterIO( obj, GF_Read, xoff, yoff, xsize, ysize, (void *) *buf, buf_xsize, buf_ysize, buf_type, 0, 0 ); if ( result != CE_None ) { free( *buf ); *buf = 0; *buf_size = 0; } return result; } static CPLErr WriteRaster_internal( GDALRasterBandShadow *obj, int xoff, int yoff, int xsize, int ysize, int buf_xsize, int buf_ysize, GDALDataType buf_type, int buf_size, char *buffer ) { if ( buf_size < buf_xsize * buf_ysize * GDALGetDataTypeSize( buf_type) /8 ) { return CE_Failure; } return GDALRasterIO( obj, GF_Write, xoff, yoff, xsize, ysize, (void *) buffer, buf_xsize, buf_ysize, buf_type, 0, 0 ); } SWIGINTERN void GDALRasterBandShadow_GetBlockSize(GDALRasterBandShadow *self,int *pnBlockXSize,int *pnBlockYSize){ GDALGetBlockSize(self, pnBlockXSize, pnBlockYSize); } SWIGINTERN GDALColorInterp GDALRasterBandShadow_GetRasterColorInterpretation(GDALRasterBandShadow *self){ return GDALGetRasterColorInterpretation( self ); } SWIGINTERN CPLErr GDALRasterBandShadow_SetRasterColorInterpretation(GDALRasterBandShadow *self,GDALColorInterp val){ return GDALSetRasterColorInterpretation( self, val ); } SWIGINTERN void GDALRasterBandShadow_GetNoDataValue(GDALRasterBandShadow *self,double *val,int *hasval){ *val = GDALGetRasterNoDataValue( self, hasval ); } SWIGINTERN CPLErr GDALRasterBandShadow_SetNoDataValue(GDALRasterBandShadow *self,double d){ return GDALSetRasterNoDataValue( self, d ); } SWIGINTERN void GDALRasterBandShadow_GetMinimum(GDALRasterBandShadow *self,double *val,int *hasval){ *val = GDALGetRasterMinimum( self, hasval ); } SWIGINTERN void GDALRasterBandShadow_GetMaximum(GDALRasterBandShadow *self,double *val,int *hasval){ *val = GDALGetRasterMaximum( self, hasval ); } SWIGINTERN void GDALRasterBandShadow_GetOffset(GDALRasterBandShadow *self,double *val,int *hasval){ *val = GDALGetRasterOffset( self, hasval ); } SWIGINTERN void GDALRasterBandShadow_GetScale(GDALRasterBandShadow *self,double *val,int *hasval){ *val = GDALGetRasterScale( self, hasval ); } SWIGINTERN CPLErr GDALRasterBandShadow_GetStatistics(GDALRasterBandShadow *self,int approx_ok,int force,double *min,double *max,double *mean,double *stddev){ return GDALGetRasterStatistics( self, approx_ok, force, min, max, mean, stddev ); } SWIGINTERN CPLErr GDALRasterBandShadow_SetStatistics(GDALRasterBandShadow *self,double min,double max,double mean,double stddev){ return GDALSetRasterStatistics( self, min, max, mean, stddev ); } SWIGINTERN int GDALRasterBandShadow_GetOverviewCount(GDALRasterBandShadow *self){ return GDALGetOverviewCount( self ); } SWIGINTERN GDALRasterBandShadow *GDALRasterBandShadow_GetOverview(GDALRasterBandShadow *self,int i){ return (GDALRasterBandShadow*) GDALGetOverview( self, i ); } SWIGINTERN int GDALRasterBandShadow_Checksum(GDALRasterBandShadow *self,int xoff=0,int yoff=0,int *xsize=0,int *ysize=0){ int nxsize = (xsize!=0) ? *xsize : GDALGetRasterBandXSize( self ); int nysize = (ysize!=0) ? *ysize : GDALGetRasterBandYSize( self ); return GDALChecksumImage( self, xoff, yoff, nxsize, nysize ); } SWIGINTERN void GDALRasterBandShadow_ComputeRasterMinMax(GDALRasterBandShadow *self,double argout[2],int approx_ok=0){ GDALComputeRasterMinMax( self, approx_ok, argout ); } SWIGINTERN void GDALRasterBandShadow_ComputeBandStats(GDALRasterBandShadow *self,double argout[2],int samplestep=1){ GDALComputeBandStats( self, samplestep, argout+0, argout+1, NULL, NULL ); } SWIGINTERN CPLErr GDALRasterBandShadow_Fill(GDALRasterBandShadow *self,double real_fill,double imag_fill=0.0){ return GDALFillRaster( self, real_fill, imag_fill ); } SWIGINTERN CPLErr GDALRasterBandShadow_ReadRaster(GDALRasterBandShadow *self,int xoff,int yoff,int xsize,int ysize,int *buf_len,char **buf,int *buf_xsize=0,int *buf_ysize=0,int *buf_type=0){ int nxsize = (buf_xsize==0) ? xsize : *buf_xsize; int nysize = (buf_ysize==0) ? ysize : *buf_ysize; GDALDataType ntype = (buf_type==0) ? GDALGetRasterDataType(self) : (GDALDataType)*buf_type; return ReadRaster_internal( self, xoff, yoff, xsize, ysize, nxsize, nysize, ntype, buf_len, buf ); } SWIGINTERN CPLErr GDALRasterBandShadow_WriteRaster(GDALRasterBandShadow *self,int xoff,int yoff,int xsize,int ysize,int buf_len,char *buf_string,int *buf_xsize=0,int *buf_ysize=0,int *buf_type=0){ int nxsize = (buf_xsize==0) ? xsize : *buf_xsize; int nysize = (buf_ysize==0) ? ysize : *buf_ysize; GDALDataType ntype = (buf_type==0) ? GDALGetRasterDataType(self) : (GDALDataType)*buf_type; return WriteRaster_internal( self, xoff, yoff, xsize, ysize, nxsize, nysize, ntype, buf_len, buf_string ); } SWIGINTERN void GDALRasterBandShadow_FlushCache(GDALRasterBandShadow *self){ GDALFlushRasterCache( self ); } SWIGINTERN GDALColorTable *GDALRasterBandShadow_GetRasterColorTable(GDALRasterBandShadow *self){ return (GDALColorTable*) GDALGetRasterColorTable( self ); } SWIGINTERN int GDALRasterBandShadow_SetRasterColorTable(GDALRasterBandShadow *self,GDALColorTable *arg){ return GDALSetRasterColorTable( self, arg ); } SWIGINTERN CPLErr GDALRasterBandShadow_ReadRaster_Direct(GDALRasterBandShadow *self,int xoff,int yoff,int xsize,int ysize,int buf_xsize,int buf_ysize,GDALDataType buf_type,void *buf){ return GDALRasterIO( self, GF_Read, xoff, yoff, xsize, ysize, buf, buf_xsize, buf_ysize, buf_type, 0, 0 ); } SWIGINTERN CPLErr GDALRasterBandShadow_WriteRaster_Direct(GDALRasterBandShadow *self,int xoff,int yoff,int xsize,int ysize,int buf_xsize,int buf_ysize,GDALDataType buf_type,void *buf){ return GDALRasterIO( self, GF_Write, xoff, yoff, xsize, ysize, buf, buf_xsize, buf_ysize, buf_type, 0, 0 ); } GDALDataType GDALRasterBandShadow_DataType_get( GDALRasterBandShadow *h ) { return GDALGetRasterDataType( h ); } int GDALRasterBandShadow_XSize_get( GDALRasterBandShadow *h ) { return GDALGetRasterBandXSize( h ); } int GDALRasterBandShadow_YSize_get( GDALRasterBandShadow *h ) { return GDALGetRasterBandYSize( h ); } int GetDriverCount() { return GDALGetDriverCount(); } GDALDriverShadow* GetDriverByName( char const *name ) { return (GDALDriverShadow*) GDALGetDriverByName( name ); } GDALDriverShadow* GetDriver( int i ) { return (GDALDriverShadow*) GDALGetDriver( i ); } GDALDatasetShadow* Open( char const* name, GDALAccess eAccess = GA_ReadOnly ) { GDALDatasetShadow *ds = GDALOpen( name, eAccess ); return (GDALDatasetShadow*) ds; } GDALDatasetShadow* OpenShared( char const* name, GDALAccess eAccess = GA_ReadOnly ) { GDALDatasetShadow *ds = GDALOpenShared( name, eAccess ); return (GDALDatasetShadow*) ds; } GDALDatasetShadow *AutoCreateWarpedVRT( GDALDatasetShadow *src_ds, const char *src_wkt = 0, const char *dst_wkt = 0, GDALResampleAlg eResampleAlg = GRA_NearestNeighbour, double maxerror = 0.0 ) { GDALDatasetShadow *ds = GDALAutoCreateWarpedVRT( src_ds, src_wkt, dst_wkt, eResampleAlg, maxerror, 0 ); if (ds == 0) { /*throw CPLGetLastErrorMsg(); causes a SWIG_exception later*/ } return ds; } char **GeneralCmdLineProcessor( char **papszArgv, int nOptions = 0 ) { GDALGeneralCmdLineProcessor( CSLCount(papszArgv), &papszArgv, nOptions ); return papszArgv; } #ifdef __cplusplus extern "C" { #endif JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Debug(JNIEnv *jenv, jclass jcls, jstring jarg1, jstring jarg2) { char *arg1 = (char *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return ; } arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } Debug((char const *)arg1,(char const *)arg2); if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Error(JNIEnv *jenv, jclass jcls, jint jarg1, jint jarg2, jstring jarg3) { CPLErr arg1 = (CPLErr) CE_Failure ; int arg2 = (int) 0 ; char *arg3 = (char *) "error" ; (void)jenv; (void)jcls; arg1 = (CPLErr)jarg1; arg2 = (int)jarg2; arg3 = 0; if (jarg3) { arg3 = (char *)jenv->GetStringUTFChars(jarg3, 0); if (!arg3) return ; } Error(arg1,arg2,(char const *)arg3); if (arg3) jenv->ReleaseStringUTFChars(jarg3, arg3); } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_PushErrorHandler_1_1SWIG_10(JNIEnv *jenv, jclass jcls, jstring jarg1) { jint jresult = 0 ; char *arg1 = (char *) "CPLQuietErrorHandler" ; CPLErr result; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } result = (CPLErr)PushErrorHandler((char const *)arg1); jresult = (jint)result; if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_PushErrorHandler_1_1SWIG_11(JNIEnv *jenv, jclass jcls, jlong jarg1) { CPLErrorHandler arg1 ; CPLErrorHandler *argp1 ; (void)jenv; (void)jcls; argp1 = *(CPLErrorHandler **)&jarg1; if (!argp1) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "Attempt to dereference null CPLErrorHandler"); return ; } arg1 = *argp1; CPLPushErrorHandler(arg1); } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_PopErrorHandler(JNIEnv *jenv, jclass jcls) { (void)jenv; (void)jcls; CPLPopErrorHandler(); } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_ErrorReset(JNIEnv *jenv, jclass jcls) { (void)jenv; (void)jcls; CPLErrorReset(); } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_GetLastErrorNo(JNIEnv *jenv, jclass jcls) { jint jresult = 0 ; int result; (void)jenv; (void)jcls; result = (int)CPLGetLastErrorNo(); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_GetLastErrorType(JNIEnv *jenv, jclass jcls) { jint jresult = 0 ; CPLErr result; (void)jenv; (void)jcls; result = (CPLErr)CPLGetLastErrorType(); jresult = (jint)result; return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GetLastErrorMsg(JNIEnv *jenv, jclass jcls) { jstring jresult = 0 ; char *result = 0 ; (void)jenv; (void)jcls; result = (char *)CPLGetLastErrorMsg(); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_PushFinderLocation(JNIEnv *jenv, jclass jcls, jstring jarg1) { char *arg1 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return ; } CPLPushFinderLocation((char const *)arg1); if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_PopFinderLocation(JNIEnv *jenv, jclass jcls) { (void)jenv; (void)jcls; CPLPopFinderLocation(); } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_FinderClean(JNIEnv *jenv, jclass jcls) { (void)jenv; (void)jcls; CPLFinderClean(); } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_FindFile(JNIEnv *jenv, jclass jcls, jstring jarg1, jstring jarg2) { jstring jresult = 0 ; char *arg1 = (char *) 0 ; char *arg2 = (char *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } result = (char *)CPLFindFile((char const *)arg1,(char const *)arg2); if(result) jresult = jenv->NewStringUTF(result); if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_SetConfigOption(JNIEnv *jenv, jclass jcls, jstring jarg1, jstring jarg2) { char *arg1 = (char *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return ; } arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } CPLSetConfigOption((char const *)arg1,(char const *)arg2); if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GetConfigOption(JNIEnv *jenv, jclass jcls, jstring jarg1, jstring jarg2) { jstring jresult = 0 ; char *arg1 = (char *) 0 ; char *arg2 = (char *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } result = (char *)CPLGetConfigOption((char const *)arg1,(char const *)arg2); if(result) jresult = jenv->NewStringUTF(result); if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_CPLBinaryToHex(JNIEnv *jenv, jclass jcls, jint jarg1, jlong jarg2) { jstring jresult = 0 ; int arg1 ; GByte *arg2 = (GByte *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = (int)jarg1; arg2 = *(GByte **)&jarg2; result = (char *)CPLBinaryToHex(arg1,(GByte const *)arg2); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_CPLHexToBinary(JNIEnv *jenv, jclass jcls, jstring jarg1, jlong jarg2) { jlong jresult = 0 ; char *arg1 = (char *) 0 ; int *arg2 = (int *) 0 ; GByte *result = 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } arg2 = *(int **)&jarg2; result = (GByte *)CPLHexToBinary((char const *)arg1,arg2); *(GByte **)&jresult = result; if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_MajorObject_1GetDescription(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDALMajorObjectShadow *arg1 = (GDALMajorObjectShadow *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALMajorObjectShadow **)&jarg1; result = (char *)GDALMajorObjectShadow_GetDescription(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_MajorObject_1SetDescription(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { GDALMajorObjectShadow *arg1 = (GDALMajorObjectShadow *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDALMajorObjectShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } GDALMajorObjectShadow_SetDescription(arg1,(char const *)arg2); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT jobject JNICALL Java_org_gdal_gdal_gdalJNI_MajorObject_1GetMetadata_1Dict(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { jobject jresult = 0 ; GDALMajorObjectShadow *arg1 = (GDALMajorObjectShadow *) 0 ; char *arg2 = (char *) "" ; char **result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALMajorObjectShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } result = (char **)GDALMajorObjectShadow_GetMetadata_Dict(arg1,(char const *)arg2); { /* %typemap(out) char ** -> to hash */ /* Convert a char array to a Hashtable */ char **stringarray = result; const jclass hashtable = jenv->FindClass("java/util/Hashtable"); const jmethodID constructor = jenv->GetMethodID(hashtable, "", "()V"); const jmethodID put = jenv->GetMethodID(hashtable, "put", "(Ljava/lang/Object;Ljava/lang/Object;)Ljava/lang/Object;"); jresult = jenv->NewObject(hashtable, constructor); if ( stringarray != NULL ) { while (*stringarray != NULL ) { char const *valptr; char *keyptr; /*printf("working on pair: %s\n", *stringarray);*/ valptr = CPLParseNameValue( *stringarray, &keyptr ); if ( valptr != 0 ) { jstring name = jenv->NewStringUTF(keyptr); jstring value = jenv->NewStringUTF(valptr); jenv->CallObjectMethod(jresult, put, name, value); CPLFree( keyptr ); } stringarray++; } } } if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); return jresult; } JNIEXPORT jobject JNICALL Java_org_gdal_gdal_gdalJNI_MajorObject_1GetMetadata_1List(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { jobject jresult = 0 ; GDALMajorObjectShadow *arg1 = (GDALMajorObjectShadow *) 0 ; char *arg2 = (char *) "" ; char **result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALMajorObjectShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } result = (char **)GDALMajorObjectShadow_GetMetadata_List(arg1,(char const *)arg2); { /* %typemap(out) char ** -> ( string ) */ char **stringarray = result; const jclass vector = jenv->FindClass("java/util/Vector"); const jmethodID constructor = jenv->GetMethodID(vector, "", "()V"); const jmethodID add = jenv->GetMethodID(vector, "add", "(Ljava/lang/Object;)Z"); jresult = jenv->NewObject(vector, constructor); if ( stringarray != NULL ) { while(*stringarray != NULL) { /*printf("working on string %s\n", *stringarray);*/ jstring value = (jstring)jenv->NewStringUTF(*stringarray); jenv->CallBooleanMethod(jresult, add, value); stringarray++; } } } if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_MajorObject_1SetMetadata_1_1SWIG_10(JNIEnv *jenv, jclass jcls, jlong jarg1, jobject jarg2, jstring jarg3) { jint jresult = 0 ; GDALMajorObjectShadow *arg1 = (GDALMajorObjectShadow *) 0 ; char **arg2 = (char **) 0 ; char *arg3 = (char *) "" ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALMajorObjectShadow **)&jarg1; { /* %typemap(in) char **dict */ /* Convert the Hashtable to a char array */ arg2 = NULL; if(jarg2 != 0) { const jclass hashtable = jenv->FindClass("java/util/Hashtable"); const jclass enumeration = jenv->FindClass("java/util/Enumeration"); const jmethodID get = jenv->GetMethodID(hashtable, "get", "(Ljava/lang/Object;)Ljava/lang/Object;"); const jmethodID keys = jenv->GetMethodID(hashtable, "keys", "()Ljava/lang/Enumeration;"); const jmethodID hasMoreElements = jenv->GetMethodID(enumeration, "hasMoreElements", "()Z"); const jmethodID getNextElement = jenv->GetMethodID(enumeration, "getNextElement", "()Ljava/lang/Object;"); for (jobject keyset = jenv->CallObjectMethod(jarg2, keys); jenv->CallBooleanMethod(keyset, hasMoreElements) == JNI_TRUE;) { jstring key = (jstring)jenv->CallObjectMethod(keyset, getNextElement); jstring value = (jstring)jenv->CallObjectMethod(jarg2, get, key); const char *keyptr = jenv->GetStringUTFChars(key, 0); const char *valptr = jenv->GetStringUTFChars(value, 0); arg2 = CSLAddNameValue(arg2, keyptr, valptr); jenv->ReleaseStringUTFChars(key, keyptr); jenv->ReleaseStringUTFChars(value, valptr); } } } arg3 = 0; if (jarg3) { arg3 = (char *)jenv->GetStringUTFChars(jarg3, 0); if (!arg3) return 0; } result = (CPLErr)GDALMajorObjectShadow_SetMetadata__SWIG_0(arg1,arg2,(char const *)arg3); jresult = (jint)result; { /* %typemap(freearg) char **dict */ CSLDestroy( arg2 ); } if (arg3) jenv->ReleaseStringUTFChars(jarg3, arg3); return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_MajorObject_1SetMetadata_1_1SWIG_11(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2, jstring jarg3) { jint jresult = 0 ; GDALMajorObjectShadow *arg1 = (GDALMajorObjectShadow *) 0 ; char *arg2 = (char *) 0 ; char *arg3 = (char *) "" ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALMajorObjectShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } arg3 = 0; if (jarg3) { arg3 = (char *)jenv->GetStringUTFChars(jarg3, 0); if (!arg3) return 0; } result = (CPLErr)GDALMajorObjectShadow_SetMetadata__SWIG_1(arg1,arg2,(char const *)arg3); jresult = (jint)result; if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); if (arg3) jenv->ReleaseStringUTFChars(jarg3, arg3); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_Driver_1ShortName_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDALDriverShadow *arg1 = (GDALDriverShadow *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDriverShadow **)&jarg1; result = (char *)GDALDriverShadow_ShortName_get(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_Driver_1LongName_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDALDriverShadow *arg1 = (GDALDriverShadow *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDriverShadow **)&jarg1; result = (char *)GDALDriverShadow_LongName_get(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_Driver_1HelpTopic_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDALDriverShadow *arg1 = (GDALDriverShadow *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDriverShadow **)&jarg1; result = (char *)GDALDriverShadow_HelpTopic_get(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_Driver_1Create(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2, jint jarg3, jint jarg4, jint jarg5, jint jarg6, jobject jarg7) { jlong jresult = 0 ; GDALDriverShadow *arg1 = (GDALDriverShadow *) 0 ; char *arg2 = (char *) 0 ; int arg3 ; int arg4 ; int arg5 = (int) 1 ; GDALDataType arg6 = (GDALDataType) GDT_Byte ; char **arg7 = (char **) 0 ; GDALDatasetShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDriverShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } arg3 = (int)jarg3; arg4 = (int)jarg4; arg5 = (int)jarg5; arg6 = (GDALDataType)jarg6; { /* %typemap(in) char **options */ arg7 = NULL; if(jarg7 != 0) { const jclass vector = jenv->FindClass("java/util/Vector"); const jclass enumeration = jenv->FindClass("java/util/Enumeration"); const jmethodID elements = jenv->GetMethodID(vector, "elements", "()Ljava/util/Enumeration;"); const jmethodID hasMoreElements = jenv->GetMethodID(enumeration, "hasMoreElements", "()Z"); const jmethodID getNextElement = jenv->GetMethodID(enumeration, "nextElement", "()Ljava/lang/Object;"); if(vector == NULL || enumeration == NULL || elements == NULL || hasMoreElements == NULL || getNextElement == NULL) { fprintf(stderr, "Could not load (options **) jni types.\n"); return 0; } for (jobject keys = jenv->CallObjectMethod(jarg7, elements); jenv->CallBooleanMethod(keys, hasMoreElements) == JNI_TRUE;) { jstring value = (jstring)jenv->CallObjectMethod(keys, getNextElement); const char *valptr = jenv->GetStringUTFChars(value, 0); arg7 = CSLAddString(arg7, valptr); jenv->ReleaseStringUTFChars(value, valptr); } } } result = (GDALDatasetShadow *)GDALDriverShadow_Create(arg1,(char const *)arg2,arg3,arg4,arg5,arg6,arg7); *(GDALDatasetShadow **)&jresult = result; if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); { /* %typemap(freearg) char **options */ CSLDestroy( arg7 ); } return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_Driver_1CreateCopy(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2, jlong jarg3, jint jarg4, jobject jarg5) { jlong jresult = 0 ; GDALDriverShadow *arg1 = (GDALDriverShadow *) 0 ; char *arg2 = (char *) 0 ; GDALDatasetShadow *arg3 = (GDALDatasetShadow *) 0 ; int arg4 = (int) 1 ; char **arg5 = (char **) 0 ; GDALDatasetShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDriverShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } arg3 = *(GDALDatasetShadow **)&jarg3; arg4 = (int)jarg4; { /* %typemap(in) char **options */ arg5 = NULL; if(jarg5 != 0) { const jclass vector = jenv->FindClass("java/util/Vector"); const jclass enumeration = jenv->FindClass("java/util/Enumeration"); const jmethodID elements = jenv->GetMethodID(vector, "elements", "()Ljava/util/Enumeration;"); const jmethodID hasMoreElements = jenv->GetMethodID(enumeration, "hasMoreElements", "()Z"); const jmethodID getNextElement = jenv->GetMethodID(enumeration, "nextElement", "()Ljava/lang/Object;"); if(vector == NULL || enumeration == NULL || elements == NULL || hasMoreElements == NULL || getNextElement == NULL) { fprintf(stderr, "Could not load (options **) jni types.\n"); return 0; } for (jobject keys = jenv->CallObjectMethod(jarg5, elements); jenv->CallBooleanMethod(keys, hasMoreElements) == JNI_TRUE;) { jstring value = (jstring)jenv->CallObjectMethod(keys, getNextElement); const char *valptr = jenv->GetStringUTFChars(value, 0); arg5 = CSLAddString(arg5, valptr); jenv->ReleaseStringUTFChars(value, valptr); } } } result = (GDALDatasetShadow *)GDALDriverShadow_CreateCopy(arg1,(char const *)arg2,arg3,arg4,arg5); *(GDALDatasetShadow **)&jresult = result; if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); { /* %typemap(freearg) char **options */ CSLDestroy( arg5 ); } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Driver_1Delete(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { jint jresult = 0 ; GDALDriverShadow *arg1 = (GDALDriverShadow *) 0 ; char *arg2 = (char *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALDriverShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } result = (int)GDALDriverShadow_Delete(arg1,(char const *)arg2); jresult = (jint)result; if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPX_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPX_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPX_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPX_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPY_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPY_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPY_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPY_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPZ_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPZ_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPZ_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPZ_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPPixel_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPPixel_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPPixel_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPPixel_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPLine_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPLine_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1GCPLine_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPLine_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1Info_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } GDAL_GCP_Info_set(arg1,arg2); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1Info_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (char *)GDAL_GCP_Info_get(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1Id_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } GDAL_GCP_Id_set(arg1,arg2); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GCP_1Id_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (char *)GDAL_GCP_Id_get(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_new_1GCP(JNIEnv *jenv, jclass jcls, jdouble jarg1, jdouble jarg2, jdouble jarg3, jdouble jarg4, jdouble jarg5, jstring jarg6, jstring jarg7) { jlong jresult = 0 ; double arg1 = (double) 0.0 ; double arg2 = (double) 0.0 ; double arg3 = (double) 0.0 ; double arg4 = (double) 0.0 ; double arg5 = (double) 0.0 ; char *arg6 = (char *) "" ; char *arg7 = (char *) "" ; GDAL_GCP *result = 0 ; (void)jenv; (void)jcls; arg1 = (double)jarg1; arg2 = (double)jarg2; arg3 = (double)jarg3; arg4 = (double)jarg4; arg5 = (double)jarg5; arg6 = 0; if (jarg6) { arg6 = (char *)jenv->GetStringUTFChars(jarg6, 0); if (!arg6) return 0; } arg7 = 0; if (jarg7) { arg7 = (char *)jenv->GetStringUTFChars(jarg7, 0); if (!arg7) return 0; } result = (GDAL_GCP *)new_GDAL_GCP(arg1,arg2,arg3,arg4,arg5,(char const *)arg6,(char const *)arg7); *(GDAL_GCP **)&jresult = result; if (arg6) jenv->ReleaseStringUTFChars(jarg6, arg6); if (arg7) jenv->ReleaseStringUTFChars(jarg7, arg7); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_delete_1GCP(JNIEnv *jenv, jclass jcls, jlong jarg1) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; delete_GDAL_GCP(arg1); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPX_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPX_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPX_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPX_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPY_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPY_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPY_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPY_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPZ_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPZ_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPZ_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPZ_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPPixel_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPPixel_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPPixel_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPPixel_set(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPLine_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_GCPLine_get(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1GCPLine_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_GCPLine_set(arg1,arg2); } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1Info_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (char *)GDAL_GCP_Info_get(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1Info_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } GDAL_GCP_Info_set(arg1,(char const *)arg2); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1Id_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (char *)GDAL_GCP_Id_get(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1Id_1set(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } GDAL_GCP_Id_set(arg1,(char const *)arg2); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1get_1GCPX(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_get_GCPX(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1set_1GCPX(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_set_GCPX(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1get_1GCPY(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_get_GCPY(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1set_1GCPY(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_set_GCPY(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1get_1GCPZ(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_get_GCPZ(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1set_1GCPZ(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_set_GCPZ(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1get_1GCPPixel(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_get_GCPPixel(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1set_1GCPPixel(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_set_GCPPixel(arg1,arg2); } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1get_1GCPLine(JNIEnv *jenv, jclass jcls, jlong jarg1) { jdouble jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double result; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (double)GDAL_GCP_get_GCPLine(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1set_1GCPLine(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; double arg2 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = (double)jarg2; GDAL_GCP_set_GCPLine(arg1,arg2); } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1get_1Info(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (char *)GDAL_GCP_get_Info(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1set_1Info(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } GDAL_GCP_set_Info(arg1,(char const *)arg2); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1get_1Id(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; result = (char *)GDAL_GCP_get_Id(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_GDAL_1GCP_1set_1Id(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { GDAL_GCP *arg1 = (GDAL_GCP *) 0 ; char *arg2 = (char *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDAL_GCP **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return ; } GDAL_GCP_set_Id(arg1,(char const *)arg2); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_GCPsToGeoTransform(JNIEnv *jenv, jclass jcls, jint jarg1, jlong jarg2, jdoubleArray jarg3, jint jarg4) { jlong jresult = 0 ; int arg1 ; GDAL_GCP *arg2 = (GDAL_GCP *) 0 ; double *arg3 ; int arg4 = (int) 1 ; FALSE_IS_ERR result; jdouble *jarr3 ; (void)jenv; (void)jcls; arg1 = (int)jarg1; arg2 = *(GDAL_GCP **)&jarg2; if (jarg3 && jenv->GetArrayLength(jarg3) != 6) { SWIG_JavaThrowException(jenv, SWIG_JavaIndexOutOfBoundsException, "incorrect array size"); return 0; } if (!SWIG_JavaArrayInDouble(jenv, &jarr3, &arg3, jarg3)) return 0; arg4 = (int)jarg4; result = GDALGCPsToGeoTransform(arg1,(GDAL_GCP const *)arg2,arg3,arg4); { /* %typemap(out) IF_FALSE_RETURN_NONE */ jresult = 0; } SWIG_JavaArrayArgoutDouble(jenv, jarr3, arg3, jarg3); delete [] arg3; { /* %typemap(ret) IF_FALSE_RETURN_NONE */ } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1RasterXSize_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; result = (int)GDALDatasetShadow_RasterXSize_get(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1RasterYSize_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; result = (int)GDALDatasetShadow_RasterYSize_get(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1RasterCount_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; result = (int)GDALDatasetShadow_RasterCount_get(arg1); jresult = (jint)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_delete_1Dataset(JNIEnv *jenv, jclass jcls, jlong jarg1) { GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; delete_GDALDatasetShadow(arg1); } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1GetDriver(JNIEnv *jenv, jclass jcls, jlong jarg1) { jlong jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; GDALDriverShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; result = (GDALDriverShadow *)GDALDatasetShadow_GetDriver(arg1); *(GDALDriverShadow **)&jresult = result; return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1GetRasterBand(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2) { jlong jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int arg2 ; GDALRasterBandShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; arg2 = (int)jarg2; result = (GDALRasterBandShadow *)GDALDatasetShadow_GetRasterBand(arg1,arg2); *(GDALRasterBandShadow **)&jresult = result; return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1GetProjection(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; result = (char *)GDALDatasetShadow_GetProjection(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1GetProjectionRef(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; result = (char *)GDALDatasetShadow_GetProjectionRef(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1SetProjection(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; char *arg2 = (char *) 0 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } result = (CPLErr)GDALDatasetShadow_SetProjection(arg1,(char const *)arg2); jresult = (jint)result; if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1GetGeoTransform(JNIEnv *jenv, jclass jcls, jlong jarg1, jdoubleArray jarg2) { GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; double *arg2 ; jdouble *jarr2 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; if (jarg2 && jenv->GetArrayLength(jarg2) != 6) { SWIG_JavaThrowException(jenv, SWIG_JavaIndexOutOfBoundsException, "incorrect array size"); return ; } if (!SWIG_JavaArrayInDouble(jenv, &jarr2, &arg2, jarg2)) return ; GDALDatasetShadow_GetGeoTransform(arg1,arg2); SWIG_JavaArrayArgoutDouble(jenv, jarr2, arg2, jarg2); delete [] arg2; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1SetGeoTransform(JNIEnv *jenv, jclass jcls, jlong jarg1, jdoubleArray jarg2) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; double *arg2 ; CPLErr result; jboolean isCopy2 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; { /* %typemap(in) (double argin[ANY]) */ arg2 = (double *)jenv->GetDoubleArrayElements(jarg2, &isCopy2); } result = (CPLErr)GDALDatasetShadow_SetGeoTransform(arg1,arg2); jresult = (jint)result; { /* %typemap(argout) (double argin[ANY]) */ } { /* %typemap(in) (double argin[ANY]) */ if(isCopy2 == JNI_TRUE) { jenv->ReleaseDoubleArrayElements(jarg2, (jdouble *)arg2, 0); } } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1BuildOverviews(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2, jintArray jarg3) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; char *arg2 = (char *) "NEAREST" ; int arg3 = (int) 0 ; int *arg4 = (int *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } { /* %typemap(in) (int nList, int* pList) */ /* check if is List */ arg3 = jenv->GetArrayLength(jarg3); arg4 = (int *)jenv->GetIntArrayElements(jarg3, NULL); } result = (int)GDALDatasetShadow_BuildOverviews(arg1,(char const *)arg2,arg3,arg4); jresult = (jint)result; { /* %typemap(argout) (int nList, int* pList) */ } if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); { /* %typemap(freearg) (int nList, int* pList) */ if (arg4) { free((void*) arg4); } } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1GetGCPCount(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; result = (int)GDALDatasetShadow_GetGCPCount(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1GetGCPProjection(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; result = (char *)GDALDatasetShadow_GetGCPProjection(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1GetGCPs(JNIEnv *jenv, jclass jcls, jlong jarg1, jobject jarg2) { GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int *arg2 = (int *) 0 ; GDAL_GCP **arg3 = (GDAL_GCP **) 0 ; int nGCPs2 = 0 ; GDAL_GCP *pGCPs2 = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; { /* %typemap(in,numinputs=1) (int *nGCPs2, GDAL_GCP const **pGCPs2 ) */ arg2 = &nGCPs2; arg3 = &pGCPs2; } GDALDatasetShadow_GetGCPs(arg1,arg2,(GDAL_GCP const **)arg3); { /* %typemap(argout) (int *nGCPs, GDAL_GCP const **pGCPs ) */ const jclass GCPClass = jenv->FindClass("org/gdal/gdal/GCP"); const jclass vectorClass = jenv->FindClass("java/util/Vector"); const jmethodID add = jenv->GetMethodID(vectorClass, "add", "(Ljava/lang/Object;)Z"); const jmethodID GCPcon = jenv->GetMethodID(GCPClass, "", "(DDDDDLjava/lang/String;Ljava/lang/String;)V"); for( int i = 0; i < *arg2; i++ ) { jobject GCPobj = jenv->NewObject(GCPClass, GCPcon, (*arg3)[i].dfGCPX, (*arg3)[i].dfGCPY, (*arg3)[i].dfGCPZ, (*arg3)[i].dfGCPPixel, (*arg3)[i].dfGCPLine, (*arg3)[i].pszInfo, (*arg3)[i].pszId ); jenv->CallBooleanMethod(jarg2, add, GCPobj); } //jresult = jarg2; } } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1SetGCPs(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jlong jarg3, jstring jarg4) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int arg2 ; GDAL_GCP *arg3 = (GDAL_GCP *) 0 ; char *arg4 = (char *) 0 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; arg2 = (int)jarg2; arg3 = *(GDAL_GCP **)&jarg3; arg4 = 0; if (jarg4) { arg4 = (char *)jenv->GetStringUTFChars(jarg4, 0); if (!arg4) return 0; } result = (CPLErr)GDALDatasetShadow_SetGCPs(arg1,arg2,(GDAL_GCP const *)arg3,(char const *)arg4); jresult = (jint)result; if (arg4) jenv->ReleaseStringUTFChars(jarg4, arg4); return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1FlushCache(JNIEnv *jenv, jclass jcls, jlong jarg1) { GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; GDALDatasetShadow_FlushCache(arg1); } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1AddBand(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jobject jarg3) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; GDALDataType arg2 = (GDALDataType) GDT_Byte ; char **arg3 = (char **) 0 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; arg2 = (GDALDataType)jarg2; { /* %typemap(in) char **options */ arg3 = NULL; if(jarg3 != 0) { const jclass vector = jenv->FindClass("java/util/Vector"); const jclass enumeration = jenv->FindClass("java/util/Enumeration"); const jmethodID elements = jenv->GetMethodID(vector, "elements", "()Ljava/util/Enumeration;"); const jmethodID hasMoreElements = jenv->GetMethodID(enumeration, "hasMoreElements", "()Z"); const jmethodID getNextElement = jenv->GetMethodID(enumeration, "nextElement", "()Ljava/lang/Object;"); if(vector == NULL || enumeration == NULL || elements == NULL || hasMoreElements == NULL || getNextElement == NULL) { fprintf(stderr, "Could not load (options **) jni types.\n"); return 0; } for (jobject keys = jenv->CallObjectMethod(jarg3, elements); jenv->CallBooleanMethod(keys, hasMoreElements) == JNI_TRUE;) { jstring value = (jstring)jenv->CallObjectMethod(keys, getNextElement); const char *valptr = jenv->GetStringUTFChars(value, 0); arg3 = CSLAddString(arg3, valptr); jenv->ReleaseStringUTFChars(value, valptr); } } } result = (CPLErr)GDALDatasetShadow_AddBand(arg1,arg2,arg3); jresult = (jint)result; { /* %typemap(freearg) char **options */ CSLDestroy( arg3 ); } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1WriteRaster(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jint jarg3, jint jarg4, jint jarg5, jcharArray jarg6, jintArray jarg8, jintArray jarg9, jintArray jarg10, jintArray jarg11) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int arg2 ; int arg3 ; int arg4 ; int arg5 ; int arg6 ; char *arg7 = (char *) 0 ; int *arg8 = (int *) 0 ; int *arg9 = (int *) 0 ; GDALDataType *arg10 = (GDALDataType *) 0 ; int arg11 = (int) 0 ; int *arg12 = (int *) 0 ; CPLErr result; jboolean isCopy6 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; arg2 = (int)jarg2; arg3 = (int)jarg3; arg4 = (int)jarg4; arg5 = (int)jarg5; { /* %typemap(in) (int nLen, char *pBuf ) */ arg6 = jenv->GetArrayLength(jarg6); arg7 = (char *)jenv->GetCharArrayElements(jarg6, &isCopy6); } { /* %typemap(in) (int *optional_##int) */ arg8 = (int *)jarg8; } { /* %typemap(in) (int *optional_##int) */ arg9 = (int *)jarg9; } { /* %typemap(in) (int *optional_##int) */ arg10 = (GDALDataType *)jarg10; } { /* %typemap(in) (int nList, int* pList) */ /* check if is List */ arg11 = jenv->GetArrayLength(jarg11); arg12 = (int *)jenv->GetIntArrayElements(jarg11, NULL); } result = (CPLErr)GDALDatasetShadow_WriteRaster(arg1,arg2,arg3,arg4,arg5,arg6,arg7,arg8,arg9,arg10,arg11,arg12); jresult = (jint)result; { /* %typemap(argout) (int nLen, char *pBuf ) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(argout) (int nList, int* pList) */ } { /* %typemap(freearg) (int nLen, char *pBuf ) */ /* This calls JNI_ABORT, so any modifications will not be passed back into the Java caller */ if(isCopy6 == JNI_TRUE) { jenv->ReleaseCharArrayElements(jarg6, (jchar *)arg7, 0); } } { /* %typemap(freearg) (int nList, int* pList) */ if (arg12) { free((void*) arg12); } } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Dataset_1ReadRaster(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jint jarg3, jint jarg4, jint jarg5, jobjectArray jarg6, jintArray jarg8, jintArray jarg9, jintArray jarg10, jintArray jarg11) { jint jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; int arg2 ; int arg3 ; int arg4 ; int arg5 ; int *arg6 = (int *) 0 ; char **arg7 = (char **) 0 ; int *arg8 = (int *) 0 ; int *arg9 = (int *) 0 ; GDALDataType *arg10 = (GDALDataType *) 0 ; int arg11 = (int) 0 ; int *arg12 = (int *) 0 ; CPLErr result; int nLen6 ; char *pBuf6 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; arg2 = (int)jarg2; arg3 = (int)jarg3; arg4 = (int)jarg4; arg5 = (int)jarg5; { /* %typemap(in) (int *nLen6, char **pBuf6 ) */ arg6 = &nLen6; arg7 = &pBuf6; } { /* %typemap(in) (int *optional_##int) */ arg8 = (int *)jarg8; } { /* %typemap(in) (int *optional_##int) */ arg9 = (int *)jarg9; } { /* %typemap(in) (int *optional_##int) */ arg10 = (GDALDataType *)jarg10; } { /* %typemap(in) (int nList, int* pList) */ /* check if is List */ arg11 = jenv->GetArrayLength(jarg11); arg12 = (int *)jenv->GetIntArrayElements(jarg11, NULL); } result = (CPLErr)GDALDatasetShadow_ReadRaster(arg1,arg2,arg3,arg4,arg5,arg6,arg7,arg8,arg9,arg10,arg11,arg12); jresult = (jint)result; { /* %typemap(argout) (int *nLen, char **pBuf ) */ /* make sure that the passed array is at lease length 1 */ if(jenv->GetArrayLength(jarg6) >= 1) { jcharArray charArray = jenv->NewCharArray(nLen6); jenv->SetCharArrayRegion(charArray, (jsize)0, (jsize)nLen6, (jchar*)pBuf6); jenv->SetObjectArrayElement(jarg6,0,charArray); } } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(argout) (int nList, int* pList) */ } { /* %typemap(freearg) (int *nLen, char **pBuf ) */ if( arg6 ) { free( *arg7 ); } } { /* %typemap(freearg) (int nList, int* pList) */ if (arg12) { free((void*) arg12); } } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1XSize_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; result = (int)GDALRasterBandShadow_XSize_get(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1YSize_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; result = (int)GDALRasterBandShadow_YSize_get(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1DataType_1get(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; GDALDataType result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; result = (GDALDataType)GDALRasterBandShadow_DataType_get(arg1); jresult = (jint)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetBlockSize(JNIEnv *jenv, jclass jcls, jlong jarg1, jintArray jarg2, jintArray jarg3) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int *arg2 = (int *) 0 ; int *arg3 = (int *) 0 ; int temp2 ; int temp3 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; { if (!jarg2) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "array null"); return ; } if (jenv->GetArrayLength(jarg2) == 0) { SWIG_JavaThrowException(jenv, SWIG_JavaIndexOutOfBoundsException, "Array must contain at least 1 element"); return ; } arg2 = &temp2; } { if (!jarg3) { SWIG_JavaThrowException(jenv, SWIG_JavaNullPointerException, "array null"); return ; } if (jenv->GetArrayLength(jarg3) == 0) { SWIG_JavaThrowException(jenv, SWIG_JavaIndexOutOfBoundsException, "Array must contain at least 1 element"); return ; } arg3 = &temp3; } GDALRasterBandShadow_GetBlockSize(arg1,arg2,arg3); { jint jvalue = (jint)temp2; jenv->SetIntArrayRegion(jarg2, 0, 1, &jvalue); } { jint jvalue = (jint)temp3; jenv->SetIntArrayRegion(jarg3, 0, 1, &jvalue); } } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetRasterColorInterpretation(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; GDALColorInterp result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; result = (GDALColorInterp)GDALRasterBandShadow_GetRasterColorInterpretation(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1SetRasterColorInterpretation(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; GDALColorInterp arg2 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (GDALColorInterp)jarg2; result = (CPLErr)GDALRasterBandShadow_SetRasterColorInterpretation(arg1,arg2); jresult = (jint)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetNoDataValue(JNIEnv *jenv, jclass jcls, jlong jarg1, jobjectArray jarg2) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double *arg2 = (double *) 0 ; int *arg3 = (int *) 0 ; double tmpval2 ; int tmphasval2 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; { /* %typemap(in,numinputs=0) (double *val, int*hasval) */ arg2 = &tmpval2; arg3 = &tmphasval2; if(jenv->GetArrayLength(jarg2) < 1) { return ; } } GDALRasterBandShadow_GetNoDataValue(arg1,arg2,arg3); { /* %typemap(argout) (double *val, int*hasval) */ const jclass Double = jenv->FindClass("java/lang/Double"); const jmethodID ctor = jenv->GetMethodID(Double, "", "(D)V"); if(*arg3) { jobject dbl = jenv->NewObject(Double, ctor, tmpval2); jenv->SetObjectArrayElement(jarg2, (jsize)0, dbl); } else { jenv->SetObjectArrayElement(jarg2, (jsize)0, 0); } } } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1SetNoDataValue(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double arg2 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (double)jarg2; result = (CPLErr)GDALRasterBandShadow_SetNoDataValue(arg1,arg2); jresult = (jint)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetMinimum(JNIEnv *jenv, jclass jcls, jlong jarg1, jobjectArray jarg2) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double *arg2 = (double *) 0 ; int *arg3 = (int *) 0 ; double tmpval2 ; int tmphasval2 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; { /* %typemap(in,numinputs=0) (double *val, int*hasval) */ arg2 = &tmpval2; arg3 = &tmphasval2; if(jenv->GetArrayLength(jarg2) < 1) { return ; } } GDALRasterBandShadow_GetMinimum(arg1,arg2,arg3); { /* %typemap(argout) (double *val, int*hasval) */ const jclass Double = jenv->FindClass("java/lang/Double"); const jmethodID ctor = jenv->GetMethodID(Double, "", "(D)V"); if(*arg3) { jobject dbl = jenv->NewObject(Double, ctor, tmpval2); jenv->SetObjectArrayElement(jarg2, (jsize)0, dbl); } else { jenv->SetObjectArrayElement(jarg2, (jsize)0, 0); } } } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetMaximum(JNIEnv *jenv, jclass jcls, jlong jarg1, jobjectArray jarg2) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double *arg2 = (double *) 0 ; int *arg3 = (int *) 0 ; double tmpval2 ; int tmphasval2 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; { /* %typemap(in,numinputs=0) (double *val, int*hasval) */ arg2 = &tmpval2; arg3 = &tmphasval2; if(jenv->GetArrayLength(jarg2) < 1) { return ; } } GDALRasterBandShadow_GetMaximum(arg1,arg2,arg3); { /* %typemap(argout) (double *val, int*hasval) */ const jclass Double = jenv->FindClass("java/lang/Double"); const jmethodID ctor = jenv->GetMethodID(Double, "", "(D)V"); if(*arg3) { jobject dbl = jenv->NewObject(Double, ctor, tmpval2); jenv->SetObjectArrayElement(jarg2, (jsize)0, dbl); } else { jenv->SetObjectArrayElement(jarg2, (jsize)0, 0); } } } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetOffset(JNIEnv *jenv, jclass jcls, jlong jarg1, jobjectArray jarg2) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double *arg2 = (double *) 0 ; int *arg3 = (int *) 0 ; double tmpval2 ; int tmphasval2 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; { /* %typemap(in,numinputs=0) (double *val, int*hasval) */ arg2 = &tmpval2; arg3 = &tmphasval2; if(jenv->GetArrayLength(jarg2) < 1) { return ; } } GDALRasterBandShadow_GetOffset(arg1,arg2,arg3); { /* %typemap(argout) (double *val, int*hasval) */ const jclass Double = jenv->FindClass("java/lang/Double"); const jmethodID ctor = jenv->GetMethodID(Double, "", "(D)V"); if(*arg3) { jobject dbl = jenv->NewObject(Double, ctor, tmpval2); jenv->SetObjectArrayElement(jarg2, (jsize)0, dbl); } else { jenv->SetObjectArrayElement(jarg2, (jsize)0, 0); } } } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetScale(JNIEnv *jenv, jclass jcls, jlong jarg1, jobjectArray jarg2) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double *arg2 = (double *) 0 ; int *arg3 = (int *) 0 ; double tmpval2 ; int tmphasval2 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; { /* %typemap(in,numinputs=0) (double *val, int*hasval) */ arg2 = &tmpval2; arg3 = &tmphasval2; if(jenv->GetArrayLength(jarg2) < 1) { return ; } } GDALRasterBandShadow_GetScale(arg1,arg2,arg3); { /* %typemap(argout) (double *val, int*hasval) */ const jclass Double = jenv->FindClass("java/lang/Double"); const jmethodID ctor = jenv->GetMethodID(Double, "", "(D)V"); if(*arg3) { jobject dbl = jenv->NewObject(Double, ctor, tmpval2); jenv->SetObjectArrayElement(jarg2, (jsize)0, dbl); } else { jenv->SetObjectArrayElement(jarg2, (jsize)0, 0); } } } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetStatistics(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jint jarg3, jlong jarg4, jlong jarg5, jlong jarg6, jlong jarg7) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int arg2 ; int arg3 ; double *arg4 = (double *) 0 ; double *arg5 = (double *) 0 ; double *arg6 = (double *) 0 ; double *arg7 = (double *) 0 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (int)jarg2; arg3 = (int)jarg3; arg4 = *(double **)&jarg4; arg5 = *(double **)&jarg5; arg6 = *(double **)&jarg6; arg7 = *(double **)&jarg7; result = (CPLErr)GDALRasterBandShadow_GetStatistics(arg1,arg2,arg3,arg4,arg5,arg6,arg7); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1SetStatistics(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2, jdouble jarg3, jdouble jarg4, jdouble jarg5) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double arg2 ; double arg3 ; double arg4 ; double arg5 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (double)jarg2; arg3 = (double)jarg3; arg4 = (double)jarg4; arg5 = (double)jarg5; result = (CPLErr)GDALRasterBandShadow_SetStatistics(arg1,arg2,arg3,arg4,arg5); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetOverviewCount(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; result = (int)GDALRasterBandShadow_GetOverviewCount(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetOverview(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2) { jlong jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int arg2 ; GDALRasterBandShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (int)jarg2; result = (GDALRasterBandShadow *)GDALRasterBandShadow_GetOverview(arg1,arg2); *(GDALRasterBandShadow **)&jresult = result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1Checksum(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jint jarg3, jintArray jarg4, jintArray jarg5) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int arg2 = (int) 0 ; int arg3 = (int) 0 ; int *arg4 = (int *) 0 ; int *arg5 = (int *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (int)jarg2; arg3 = (int)jarg3; { /* %typemap(in) (int *optional_##int) */ arg4 = (int *)jarg4; } { /* %typemap(in) (int *optional_##int) */ arg5 = (int *)jarg5; } result = (int)GDALRasterBandShadow_Checksum(arg1,arg2,arg3,arg4,arg5); jresult = (jint)result; { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1ComputeRasterMinMax(JNIEnv *jenv, jclass jcls, jlong jarg1, jdoubleArray jarg2, jint jarg3) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double *arg2 ; int arg3 = (int) 0 ; jdouble *jarr2 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; if (jarg2 && jenv->GetArrayLength(jarg2) != 2) { SWIG_JavaThrowException(jenv, SWIG_JavaIndexOutOfBoundsException, "incorrect array size"); return ; } if (!SWIG_JavaArrayInDouble(jenv, &jarr2, &arg2, jarg2)) return ; arg3 = (int)jarg3; GDALRasterBandShadow_ComputeRasterMinMax(arg1,arg2,arg3); SWIG_JavaArrayArgoutDouble(jenv, jarr2, arg2, jarg2); delete [] arg2; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1ComputeBandStats(JNIEnv *jenv, jclass jcls, jlong jarg1, jdoubleArray jarg2, jint jarg3) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double *arg2 ; int arg3 = (int) 1 ; jdouble *jarr2 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; if (jarg2 && jenv->GetArrayLength(jarg2) != 2) { SWIG_JavaThrowException(jenv, SWIG_JavaIndexOutOfBoundsException, "incorrect array size"); return ; } if (!SWIG_JavaArrayInDouble(jenv, &jarr2, &arg2, jarg2)) return ; arg3 = (int)jarg3; GDALRasterBandShadow_ComputeBandStats(arg1,arg2,arg3); SWIG_JavaArrayArgoutDouble(jenv, jarr2, arg2, jarg2); delete [] arg2; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1Fill(JNIEnv *jenv, jclass jcls, jlong jarg1, jdouble jarg2, jdouble jarg3) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; double arg2 ; double arg3 = (double) 0.0 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (double)jarg2; arg3 = (double)jarg3; result = (CPLErr)GDALRasterBandShadow_Fill(arg1,arg2,arg3); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1ReadRaster(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jint jarg3, jint jarg4, jint jarg5, jobjectArray jarg6, jintArray jarg8, jintArray jarg9, jintArray jarg10) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int arg2 ; int arg3 ; int arg4 ; int arg5 ; int *arg6 = (int *) 0 ; char **arg7 = (char **) 0 ; int *arg8 = (int *) 0 ; int *arg9 = (int *) 0 ; int *arg10 = (int *) 0 ; CPLErr result; int nLen6 ; char *pBuf6 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (int)jarg2; arg3 = (int)jarg3; arg4 = (int)jarg4; arg5 = (int)jarg5; { /* %typemap(in) (int *nLen6, char **pBuf6 ) */ arg6 = &nLen6; arg7 = &pBuf6; } { /* %typemap(in) (int *optional_##int) */ arg8 = (int *)jarg8; } { /* %typemap(in) (int *optional_##int) */ arg9 = (int *)jarg9; } { /* %typemap(in) (int *optional_##int) */ arg10 = (int *)jarg10; } result = (CPLErr)GDALRasterBandShadow_ReadRaster(arg1,arg2,arg3,arg4,arg5,arg6,arg7,arg8,arg9,arg10); jresult = (jint)result; { /* %typemap(argout) (int *nLen, char **pBuf ) */ /* make sure that the passed array is at lease length 1 */ if(jenv->GetArrayLength(jarg6) >= 1) { jcharArray charArray = jenv->NewCharArray(nLen6); jenv->SetCharArrayRegion(charArray, (jsize)0, (jsize)nLen6, (jchar*)pBuf6); jenv->SetObjectArrayElement(jarg6,0,charArray); } } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(freearg) (int *nLen, char **pBuf ) */ if( arg6 ) { free( *arg7 ); } } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1WriteRaster(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jint jarg3, jint jarg4, jint jarg5, jcharArray jarg6, jintArray jarg8, jintArray jarg9, jintArray jarg10) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int arg2 ; int arg3 ; int arg4 ; int arg5 ; int arg6 ; char *arg7 = (char *) 0 ; int *arg8 = (int *) 0 ; int *arg9 = (int *) 0 ; int *arg10 = (int *) 0 ; CPLErr result; jboolean isCopy6 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (int)jarg2; arg3 = (int)jarg3; arg4 = (int)jarg4; arg5 = (int)jarg5; { /* %typemap(in) (int nLen, char *pBuf ) */ arg6 = jenv->GetArrayLength(jarg6); arg7 = (char *)jenv->GetCharArrayElements(jarg6, &isCopy6); } { /* %typemap(in) (int *optional_##int) */ arg8 = (int *)jarg8; } { /* %typemap(in) (int *optional_##int) */ arg9 = (int *)jarg9; } { /* %typemap(in) (int *optional_##int) */ arg10 = (int *)jarg10; } result = (CPLErr)GDALRasterBandShadow_WriteRaster(arg1,arg2,arg3,arg4,arg5,arg6,arg7,arg8,arg9,arg10); jresult = (jint)result; { /* %typemap(argout) (int nLen, char *pBuf ) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(in) (int *optional_##int) */ } { /* %typemap(freearg) (int nLen, char *pBuf ) */ /* This calls JNI_ABORT, so any modifications will not be passed back into the Java caller */ if(isCopy6 == JNI_TRUE) { jenv->ReleaseCharArrayElements(jarg6, (jchar *)arg7, 0); } } return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_Band_1FlushCache(JNIEnv *jenv, jclass jcls, jlong jarg1) { GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; GDALRasterBandShadow_FlushCache(arg1); } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_Band_1GetRasterColorTable(JNIEnv *jenv, jclass jcls, jlong jarg1) { jlong jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; GDALColorTable *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; result = (GDALColorTable *)GDALRasterBandShadow_GetRasterColorTable(arg1); *(GDALColorTable **)&jresult = result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1SetRasterColorTable(JNIEnv *jenv, jclass jcls, jlong jarg1, jlong jarg2) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; GDALColorTable *arg2 = (GDALColorTable *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = *(GDALColorTable **)&jarg2; result = (int)GDALRasterBandShadow_SetRasterColorTable(arg1,arg2); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1ReadRaster_1Direct(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jint jarg3, jint jarg4, jint jarg5, jint jarg6, jint jarg7, jint jarg8, jobject jarg9) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int arg2 ; int arg3 ; int arg4 ; int arg5 ; int arg6 ; int arg7 ; GDALDataType arg8 ; void *arg9 = (void *) 0 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (int)jarg2; arg3 = (int)jarg3; arg4 = (int)jarg4; arg5 = (int)jarg5; arg6 = (int)jarg6; arg7 = (int)jarg7; arg8 = (GDALDataType)jarg8; { /* %typemap(in) void * */ arg9 = jenv->GetDirectBufferAddress(jarg9); } result = (CPLErr)GDALRasterBandShadow_ReadRaster_Direct(arg1,arg2,arg3,arg4,arg5,arg6,arg7,arg8,arg9); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_Band_1WriteRaster_1Direct(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jint jarg3, jint jarg4, jint jarg5, jint jarg6, jint jarg7, jint jarg8, jobject jarg9) { jint jresult = 0 ; GDALRasterBandShadow *arg1 = (GDALRasterBandShadow *) 0 ; int arg2 ; int arg3 ; int arg4 ; int arg5 ; int arg6 ; int arg7 ; GDALDataType arg8 ; void *arg9 = (void *) 0 ; CPLErr result; (void)jenv; (void)jcls; arg1 = *(GDALRasterBandShadow **)&jarg1; arg2 = (int)jarg2; arg3 = (int)jarg3; arg4 = (int)jarg4; arg5 = (int)jarg5; arg6 = (int)jarg6; arg7 = (int)jarg7; arg8 = (GDALDataType)jarg8; { /* %typemap(in) void * */ arg9 = jenv->GetDirectBufferAddress(jarg9); } result = (CPLErr)GDALRasterBandShadow_WriteRaster_Direct(arg1,arg2,arg3,arg4,arg5,arg6,arg7,arg8,arg9); jresult = (jint)result; return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_new_1ColorTable(JNIEnv *jenv, jclass jcls, jint jarg1) { jlong jresult = 0 ; GDALPaletteInterp arg1 = (GDALPaletteInterp) GPI_RGB ; GDALColorTable *result = 0 ; (void)jenv; (void)jcls; arg1 = (GDALPaletteInterp)jarg1; result = (GDALColorTable *)new GDALColorTable(arg1); *(GDALColorTable **)&jresult = result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_delete_1ColorTable(JNIEnv *jenv, jclass jcls, jlong jarg1) { GDALColorTable *arg1 = (GDALColorTable *) 0 ; (void)jenv; (void)jcls; arg1 = *(GDALColorTable **)&jarg1; delete arg1; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_ColorTable_1Clone(JNIEnv *jenv, jclass jcls, jlong jarg1) { jlong jresult = 0 ; GDALColorTable *arg1 = (GDALColorTable *) 0 ; GDALColorTable *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALColorTable **)&jarg1; result = (GDALColorTable *)((GDALColorTable const *)arg1)->Clone(); *(GDALColorTable **)&jresult = result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_ColorTable_1GetPaletteInterpretation(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALColorTable *arg1 = (GDALColorTable *) 0 ; GDALPaletteInterp result; (void)jenv; (void)jcls; arg1 = *(GDALColorTable **)&jarg1; result = (GDALPaletteInterp)((GDALColorTable const *)arg1)->GetPaletteInterpretation(); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_ColorTable_1GetCount(JNIEnv *jenv, jclass jcls, jlong jarg1) { jint jresult = 0 ; GDALColorTable *arg1 = (GDALColorTable *) 0 ; int result; (void)jenv; (void)jcls; arg1 = *(GDALColorTable **)&jarg1; result = (int)((GDALColorTable const *)arg1)->GetColorEntryCount(); jresult = (jint)result; return jresult; } JNIEXPORT jobject JNICALL Java_org_gdal_gdal_gdalJNI_ColorTable_1GetColorEntry(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2) { jobject jresult = 0 ; GDALColorTable *arg1 = (GDALColorTable *) 0 ; int arg2 ; GDALColorEntry *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALColorTable **)&jarg1; arg2 = (int)jarg2; result = (GDALColorEntry *)(arg1)->GetColorEntry(arg2); { /* %typemap(out) (GDALColorEntry *) */ const jclass Color = jenv->FindClass("java/awt/Color"); const jmethodID ccon = jenv->GetMethodID(Color, "", "(IIII)V"); jresult = jenv->NewObject(Color, ccon, result->c1, result->c2, result->c3, result->c4); } return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_ColorTable_1GetColorEntryAsRGB(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jobject jarg3) { jint jresult = 0 ; GDALColorTable *arg1 = (GDALColorTable *) 0 ; int arg2 ; GDALColorEntry *arg3 = (GDALColorEntry *) 0 ; int result; GDALColorEntry tmp3 ; (void)jenv; (void)jcls; arg1 = *(GDALColorTable **)&jarg1; arg2 = (int)jarg2; { /* %typemap(in) (GDALColorEntry *) (GDALColorEntry tmp3) */ arg3 = NULL; float *colorptr = 0; const jclass Color = jenv->FindClass("java/awt/Color"); const jmethodID colors = jenv->GetMethodID(Color, "getRGBComponents", "([F)[F"); jfloatArray colorArr = jenv->NewFloatArray(4); colorArr = (jfloatArray)jenv->CallObjectMethod(jarg3, colors, colorArr); colorptr = (float *)jenv->GetFloatArrayElements(colorArr, 0); tmp3.c1 = (short)(colorptr[0] * 255); tmp3.c2 = (short)(colorptr[1] * 255); tmp3.c3 = (short)(colorptr[2] * 255); tmp3.c4 = (short)(colorptr[3] * 255); /*printf( " %d, %d, %d, %d\n", tmp3.c1, tmp3.c2, tmp3.c3, tmp3.c4 );*/ arg3 = &tmp3; } result = (int)((GDALColorTable const *)arg1)->GetColorEntryAsRGB(arg2,arg3); jresult = (jint)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_ColorTable_1SetColorEntry(JNIEnv *jenv, jclass jcls, jlong jarg1, jint jarg2, jobject jarg3) { GDALColorTable *arg1 = (GDALColorTable *) 0 ; int arg2 ; GDALColorEntry *arg3 = (GDALColorEntry *) 0 ; GDALColorEntry tmp3 ; (void)jenv; (void)jcls; arg1 = *(GDALColorTable **)&jarg1; arg2 = (int)jarg2; { /* %typemap(in) (GDALColorEntry *) (GDALColorEntry tmp3) */ arg3 = NULL; float *colorptr = 0; const jclass Color = jenv->FindClass("java/awt/Color"); const jmethodID colors = jenv->GetMethodID(Color, "getRGBComponents", "([F)[F"); jfloatArray colorArr = jenv->NewFloatArray(4); colorArr = (jfloatArray)jenv->CallObjectMethod(jarg3, colors, colorArr); colorptr = (float *)jenv->GetFloatArrayElements(colorArr, 0); tmp3.c1 = (short)(colorptr[0] * 255); tmp3.c2 = (short)(colorptr[1] * 255); tmp3.c3 = (short)(colorptr[2] * 255); tmp3.c4 = (short)(colorptr[3] * 255); /*printf( " %d, %d, %d, %d\n", tmp3.c1, tmp3.c2, tmp3.c3, tmp3.c4 );*/ arg3 = &tmp3; } (arg1)->SetColorEntry(arg2,(GDALColorEntry const *)arg3); } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_AllRegister(JNIEnv *jenv, jclass jcls) { (void)jenv; (void)jcls; GDALAllRegister(); } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_GetCacheMax(JNIEnv *jenv, jclass jcls) { jint jresult = 0 ; int result; (void)jenv; (void)jcls; result = (int)GDALGetCacheMax(); jresult = (jint)result; return jresult; } JNIEXPORT void JNICALL Java_org_gdal_gdal_gdalJNI_SetCacheMax(JNIEnv *jenv, jclass jcls, jint jarg1) { int arg1 ; (void)jenv; (void)jcls; arg1 = (int)jarg1; GDALSetCacheMax(arg1); } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_GetCacheUsed(JNIEnv *jenv, jclass jcls) { jint jresult = 0 ; int result; (void)jenv; (void)jcls; result = (int)GDALGetCacheUsed(); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_GetDataTypeSize(JNIEnv *jenv, jclass jcls, jint jarg1) { jint jresult = 0 ; GDALDataType arg1 ; int result; (void)jenv; (void)jcls; arg1 = (GDALDataType)jarg1; result = (int)GDALGetDataTypeSize(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_DataTypeIsComplex(JNIEnv *jenv, jclass jcls, jint jarg1) { jint jresult = 0 ; GDALDataType arg1 ; int result; (void)jenv; (void)jcls; arg1 = (GDALDataType)jarg1; result = (int)GDALDataTypeIsComplex(arg1); jresult = (jint)result; return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GetDataTypeName(JNIEnv *jenv, jclass jcls, jint jarg1) { jstring jresult = 0 ; GDALDataType arg1 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = (GDALDataType)jarg1; result = (char *)GDALGetDataTypeName(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_GetDataTypeByName(JNIEnv *jenv, jclass jcls, jstring jarg1) { jint jresult = 0 ; char *arg1 = (char *) 0 ; GDALDataType result; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } result = (GDALDataType)GDALGetDataTypeByName((char const *)arg1); jresult = (jint)result; if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GetColorInterpretationName(JNIEnv *jenv, jclass jcls, jint jarg1) { jstring jresult = 0 ; GDALColorInterp arg1 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = (GDALColorInterp)jarg1; result = (char *)GDALGetColorInterpretationName(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_GetPaletteInterpretationName(JNIEnv *jenv, jclass jcls, jint jarg1) { jstring jresult = 0 ; GDALPaletteInterp arg1 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = (GDALPaletteInterp)jarg1; result = (char *)GDALGetPaletteInterpretationName(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_DecToDMS(JNIEnv *jenv, jclass jcls, jdouble jarg1, jstring jarg2, jint jarg3) { jstring jresult = 0 ; double arg1 ; char *arg2 = (char *) 0 ; int arg3 = (int) 2 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = (double)jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } arg3 = (int)jarg3; result = (char *)GDALDecToDMS(arg1,(char const *)arg2,arg3); if(result) jresult = jenv->NewStringUTF(result); if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); return jresult; } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_PackedDMSToDec(JNIEnv *jenv, jclass jcls, jdouble jarg1) { jdouble jresult = 0 ; double arg1 ; double result; (void)jenv; (void)jcls; arg1 = (double)jarg1; result = (double)GDALPackedDMSToDec(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT jdouble JNICALL Java_org_gdal_gdal_gdalJNI_DecToPackedDMS(JNIEnv *jenv, jclass jcls, jdouble jarg1) { jdouble jresult = 0 ; double arg1 ; double result; (void)jenv; (void)jcls; arg1 = (double)jarg1; result = (double)GDALDecToPackedDMS(arg1); jresult = (jdouble)result; return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_ParseXMLString(JNIEnv *jenv, jclass jcls, jstring jarg1) { jlong jresult = 0 ; char *arg1 = (char *) 0 ; CPLXMLNode *result = 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } result = (CPLXMLNode *)CPLParseXMLString(arg1); *(CPLXMLNode **)&jresult = result; if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); return jresult; } JNIEXPORT jstring JNICALL Java_org_gdal_gdal_gdalJNI_SerializeXMLTree(JNIEnv *jenv, jclass jcls, jlong jarg1) { jstring jresult = 0 ; CPLXMLNode *arg1 = (CPLXMLNode *) 0 ; char *result = 0 ; (void)jenv; (void)jcls; arg1 = *(CPLXMLNode **)&jarg1; result = (char *)CPLSerializeXMLTree(arg1); if(result) jresult = jenv->NewStringUTF(result); return jresult; } JNIEXPORT jint JNICALL Java_org_gdal_gdal_gdalJNI_GetDriverCount(JNIEnv *jenv, jclass jcls) { jint jresult = 0 ; int result; (void)jenv; (void)jcls; result = (int)GetDriverCount(); jresult = (jint)result; return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_GetDriverByName(JNIEnv *jenv, jclass jcls, jstring jarg1) { jlong jresult = 0 ; char *arg1 = (char *) 0 ; GDALDriverShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } result = (GDALDriverShadow *)GetDriverByName((char const *)arg1); *(GDALDriverShadow **)&jresult = result; if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_GetDriver(JNIEnv *jenv, jclass jcls, jint jarg1) { jlong jresult = 0 ; int arg1 ; GDALDriverShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = (int)jarg1; result = (GDALDriverShadow *)GetDriver(arg1); *(GDALDriverShadow **)&jresult = result; return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_Open(JNIEnv *jenv, jclass jcls, jstring jarg1, jint jarg2) { jlong jresult = 0 ; char *arg1 = (char *) 0 ; GDALAccess arg2 = (GDALAccess) GA_ReadOnly ; GDALDatasetShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } arg2 = (GDALAccess)jarg2; result = (GDALDatasetShadow *)Open((char const *)arg1,arg2); *(GDALDatasetShadow **)&jresult = result; if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_OpenShared(JNIEnv *jenv, jclass jcls, jstring jarg1, jint jarg2) { jlong jresult = 0 ; char *arg1 = (char *) 0 ; GDALAccess arg2 = (GDALAccess) GA_ReadOnly ; GDALDatasetShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = 0; if (jarg1) { arg1 = (char *)jenv->GetStringUTFChars(jarg1, 0); if (!arg1) return 0; } arg2 = (GDALAccess)jarg2; result = (GDALDatasetShadow *)OpenShared((char const *)arg1,arg2); *(GDALDatasetShadow **)&jresult = result; if (arg1) jenv->ReleaseStringUTFChars(jarg1, arg1); return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_AutoCreateWarpedVRT(JNIEnv *jenv, jclass jcls, jlong jarg1, jstring jarg2, jstring jarg3, jint jarg4, jdouble jarg5) { jlong jresult = 0 ; GDALDatasetShadow *arg1 = (GDALDatasetShadow *) 0 ; char *arg2 = (char *) 0 ; char *arg3 = (char *) 0 ; GDALResampleAlg arg4 = (GDALResampleAlg) GRA_NearestNeighbour ; double arg5 = (double) 0.0 ; GDALDatasetShadow *result = 0 ; (void)jenv; (void)jcls; arg1 = *(GDALDatasetShadow **)&jarg1; arg2 = 0; if (jarg2) { arg2 = (char *)jenv->GetStringUTFChars(jarg2, 0); if (!arg2) return 0; } arg3 = 0; if (jarg3) { arg3 = (char *)jenv->GetStringUTFChars(jarg3, 0); if (!arg3) return 0; } arg4 = (GDALResampleAlg)jarg4; arg5 = (double)jarg5; result = (GDALDatasetShadow *)AutoCreateWarpedVRT(arg1,(char const *)arg2,(char const *)arg3,arg4,arg5); *(GDALDatasetShadow **)&jresult = result; if (arg2) jenv->ReleaseStringUTFChars(jarg2, arg2); if (arg3) jenv->ReleaseStringUTFChars(jarg3, arg3); return jresult; } JNIEXPORT jobject JNICALL Java_org_gdal_gdal_gdalJNI_GeneralCmdLineProcessor(JNIEnv *jenv, jclass jcls, jobject jarg1, jint jarg2) { jobject jresult = 0 ; char **arg1 = (char **) 0 ; int arg2 = (int) 0 ; char **result = 0 ; (void)jenv; (void)jcls; { /* %typemap(in) char **options */ arg1 = NULL; if(jarg1 != 0) { const jclass vector = jenv->FindClass("java/util/Vector"); const jclass enumeration = jenv->FindClass("java/util/Enumeration"); const jmethodID elements = jenv->GetMethodID(vector, "elements", "()Ljava/util/Enumeration;"); const jmethodID hasMoreElements = jenv->GetMethodID(enumeration, "hasMoreElements", "()Z"); const jmethodID getNextElement = jenv->GetMethodID(enumeration, "nextElement", "()Ljava/lang/Object;"); if(vector == NULL || enumeration == NULL || elements == NULL || hasMoreElements == NULL || getNextElement == NULL) { fprintf(stderr, "Could not load (options **) jni types.\n"); return 0; } for (jobject keys = jenv->CallObjectMethod(jarg1, elements); jenv->CallBooleanMethod(keys, hasMoreElements) == JNI_TRUE;) { jstring value = (jstring)jenv->CallObjectMethod(keys, getNextElement); const char *valptr = jenv->GetStringUTFChars(value, 0); arg1 = CSLAddString(arg1, valptr); jenv->ReleaseStringUTFChars(value, valptr); } } } arg2 = (int)jarg2; result = (char **)GeneralCmdLineProcessor(arg1,arg2); { /* %typemap(out) char ** -> ( string ) */ char **stringarray = result; const jclass vector = jenv->FindClass("java/util/Vector"); const jmethodID constructor = jenv->GetMethodID(vector, "", "()V"); const jmethodID add = jenv->GetMethodID(vector, "add", "(Ljava/lang/Object;)Z"); jresult = jenv->NewObject(vector, constructor); if ( stringarray != NULL ) { while(*stringarray != NULL) { /*printf("working on string %s\n", *stringarray);*/ jstring value = (jstring)jenv->NewStringUTF(*stringarray); jenv->CallBooleanMethod(jresult, add, value); stringarray++; } } } { /* %typemap(freearg) char **options */ CSLDestroy( arg1 ); } return jresult; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_SWIGDriverUpcast(JNIEnv *jenv, jclass jcls, jlong jarg1) { jlong baseptr = 0; (void)jenv; (void)jcls; *(GDALMajorObjectShadow **)&baseptr = *(GDALDriverShadow **)&jarg1; return baseptr; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_SWIGDatasetUpcast(JNIEnv *jenv, jclass jcls, jlong jarg1) { jlong baseptr = 0; (void)jenv; (void)jcls; *(GDALMajorObjectShadow **)&baseptr = *(GDALDatasetShadow **)&jarg1; return baseptr; } JNIEXPORT jlong JNICALL Java_org_gdal_gdal_gdalJNI_SWIGBandUpcast(JNIEnv *jenv, jclass jcls, jlong jarg1) { jlong baseptr = 0; (void)jenv; (void)jcls; *(GDALMajorObjectShadow **)&baseptr = *(GDALRasterBandShadow **)&jarg1; return baseptr; } #ifdef __cplusplus } #endif