202 lines
6.2 KiB
Text
202 lines
6.2 KiB
Text
/*
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* C-type: int
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* Scilab type: double or int32
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*/
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%fragment(SWIG_AsVal_frag(int), "header", fragment="SWIG_SciDoubleOrInt32_AsInt", fragment="<limits.h>") {
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%#define SWIG_AsVal_int(scilabValue, valuePointer) SWIG_SciDoubleOrInt32_AsInt(pvApiCtx, scilabValue, valuePointer, SWIG_Scilab_GetFuncName())
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}
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%fragment("SWIG_SciDoubleOrInt32_AsInt", "header") {
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SWIGINTERN int
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SWIG_SciDoubleOrInt32_AsInt(void *pvApiCtx, SwigSciObject iVar, int *piValue, char *fname)
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{
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SciErr sciErr;
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int iType = 0;
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int iRows = 0;
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int iCols = 0;
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int *piAddrVar = NULL;
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sciErr = getVarAddressFromPosition(pvApiCtx, iVar, &piAddrVar);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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sciErr = getVarType(pvApiCtx, piAddrVar, &iType);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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if (iType == sci_ints) {
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if (piValue) {
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int iPrec = 0;
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int *piData = NULL;
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sciErr = getMatrixOfIntegerPrecision(pvApiCtx, piAddrVar, &iPrec);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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if (iPrec != SCI_INT32) {
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Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong type for input argument #%d: A 32-bit signed integer or a double expected.\n"), fname, iVar);
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return SWIG_TypeError;
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}
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sciErr = getMatrixOfInteger32(pvApiCtx, piAddrVar, &iRows, &iCols, &piData);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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if (iRows * iCols != 1) {
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Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong size for input argument #%d: A 32-bit signed integer or a double expected.\n"), fname, iVar);
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return SWIG_TypeError;
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}
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*piValue = *piData;
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}
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}
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else if (iType == sci_matrix) {
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if (piValue) {
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double *pdData = NULL;
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double dValue = 0.0f;
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sciErr = getMatrixOfDouble(pvApiCtx, piAddrVar, &iRows, &iCols, &pdData);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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if (iRows * iCols != 1) {
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Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong size for input argument #%d: A 32-bit signed integer or a double expected.\n"), fname, iVar);
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return SWIG_TypeError;
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}
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dValue = *pdData;
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if (dValue != floor(dValue)) {
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Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Incorrect value for input argument #%d: The double value cannot be converted to a 32-bit signed integer.\n"), fname, iVar);
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return SWIG_ValueError;
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}
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if ((dValue < INT_MIN) || (dValue > INT_MAX)) {
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Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Overflow error for input argument #%d: The double value cannot be converted to a 32-bit signed integer.\n"), fname, iVar);
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return SWIG_OverflowError;
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}
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*piValue = (int) dValue;
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}
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}
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else {
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Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong type for input argument #%d: A 32-bit signed integer or a double expected.\n"), fname, iVar);
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return SWIG_TypeError;
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}
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return SWIG_OK;
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}
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}
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%fragment(SWIG_From_frag(int), "header", fragment="SWIG_SciDouble_FromInt") {
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%#define SWIG_From_int(scilabValue) SWIG_SciDouble_FromInt(pvApiCtx, SWIG_Scilab_GetOutputPosition(), scilabValue, SWIG_Scilab_GetFuncName())
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}
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%fragment("SWIG_SciDouble_FromInt", "header") {
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SWIGINTERN int
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SWIG_SciDouble_FromInt(void *pvApiCtx, int iVarOut, int iValue, char *fname){
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if (createScalarDouble(pvApiCtx, SWIG_NbInputArgument(pvApiCtx)
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+ iVarOut, (double) iValue))
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return SWIG_ERROR;
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return SWIG_OK;
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}
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}
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/*
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* C-type: int[]
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* Scilab type: double or int32 matrix
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*/
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%fragment("SWIG_SciDoubleOrInt32_AsIntArrayAndSize", "header") {
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SWIGINTERN int
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SWIG_SciDoubleOrInt32_AsIntArrayAndSize(void *pvApiCtx, int iVar, int *iRows, int *iCols, int **piValue, char *fname) {
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SciErr sciErr;
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int iType = 0;
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int *piAddrVar = NULL;
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sciErr = getVarAddressFromPosition(pvApiCtx, iVar, &piAddrVar);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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sciErr = getVarType(pvApiCtx, piAddrVar, &iType);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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if (iType == sci_matrix) {
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double *pdData = NULL;
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int size = 0;
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int i;
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sciErr = getMatrixOfDouble(pvApiCtx, piAddrVar, iRows, iCols, &pdData);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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size = (*iRows) * (*iCols);
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*piValue = (int*) malloc(size * sizeof(int*));
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for (i = 0; i < size; i++)
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(*piValue)[i] = (int) pdData[i];
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}
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else if (iType == sci_ints) {
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int iPrec = 0;
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sciErr = getMatrixOfIntegerPrecision(pvApiCtx, piAddrVar, &iPrec);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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if (iPrec != SCI_INT32) {
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Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong type for input argument #%d: A 32-bit signed integer or a double matrix expected.\n"), fname, iVar);
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return SWIG_ERROR;
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}
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sciErr = getMatrixOfInteger32(pvApiCtx, piAddrVar, iRows, iCols, piValue);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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}
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else {
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Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong type for input argument #%d: A 32-bit signed integer or a double matrix expected.\n"), fname, iVar);
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return SWIG_ERROR;
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}
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return SWIG_OK;
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}
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}
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%fragment("SWIG_SciDouble_FromIntArrayAndSize", "header") {
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SWIGINTERN int
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SWIG_SciDouble_FromIntArrayAndSize(void *pvApiCtx, int iVarOut, int iRows, int iCols, const int *piData) {
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SciErr sciErr;
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double *pdValues = NULL;
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int i;
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pdValues = (double*) malloc(iRows * iCols * sizeof(double));
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for (i=0; i<iRows * iCols; i++)
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pdValues[i] = piData[i];
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sciErr = createMatrixOfDouble(pvApiCtx, SWIG_NbInputArgument(pvApiCtx) + iVarOut, iRows, iCols, pdValues);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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free(pdValues);
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return SWIG_ERROR;
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}
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free(pdValues);
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return SWIG_OK;
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}
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}
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%fragment(SWIG_CreateScilabVariable_frag(int), "wrapper") {
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SWIGINTERN int
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SWIG_CreateScilabVariable_dec(int)(void *pvApiCtx, const char* psVariableName, const int iVariableValue) {
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SciErr sciErr;
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sciErr = createNamedMatrixOfInteger32(pvApiCtx, psVariableName, 1, 1, &iVariableValue);
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if (sciErr.iErr) {
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printError(&sciErr, 0);
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return SWIG_ERROR;
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}
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return SWIG_OK;
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}
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}
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