scidouble.swg 3.2 KB

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  1. /*
  2. * DOUBLE SCALAR
  3. */
  4. %fragment(SWIG_AsVal_frag(double), "header", fragment="SWIG_SciDouble_AsDouble") {
  5. %#define SWIG_AsVal_double(scilabValue, valuePointer) SWIG_SciDouble_AsDouble(pvApiCtx, scilabValue, valuePointer, SWIG_Scilab_GetFuncName())
  6. }
  7. %fragment("SWIG_SciDouble_AsDouble", "header") {
  8. SWIGINTERN int
  9. SWIG_SciDouble_AsDouble(void *pvApiCtx, SwigSciObject iVar, double *pdblValue, char *fname) {
  10. SciErr sciErr;
  11. int iRet = 0;
  12. int *piAddrVar = NULL;
  13. sciErr = getVarAddressFromPosition(pvApiCtx, iVar, &piAddrVar);
  14. if (sciErr.iErr) {
  15. printError(&sciErr, 0);
  16. return SWIG_ERROR;
  17. }
  18. if (!isDoubleType(pvApiCtx, piAddrVar) || isVarComplex(pvApiCtx, piAddrVar)) {
  19. Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong type for input argument #%d: A real expected.\n"), fname, iVar);
  20. return SWIG_ERROR;
  21. }
  22. if (!isScalar(pvApiCtx, piAddrVar)) {
  23. Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong size for input argument #%d: A real expected.\n"), fname, iVar);
  24. return SWIG_ERROR;
  25. }
  26. iRet = getScalarDouble(pvApiCtx, piAddrVar, pdblValue);
  27. if (iRet) {
  28. return SWIG_ERROR;
  29. }
  30. return SWIG_OK;
  31. }
  32. }
  33. %fragment(SWIG_From_frag(double), "header", fragment="SWIG_SciDouble_FromDouble") {
  34. %#define SWIG_From_double(scilabValue) SWIG_SciDouble_FromDouble(pvApiCtx, SWIG_Scilab_GetOutputPosition(), scilabValue, SWIG_Scilab_GetFuncName())
  35. }
  36. %fragment("SWIG_SciDouble_FromDouble", "header") {
  37. SWIGINTERN int
  38. SWIG_SciDouble_FromDouble(void *pvApiCtx, int iVarOut, double dblValue, char *fname) {
  39. if (createScalarDouble(pvApiCtx, SWIG_NbInputArgument(pvApiCtx) + iVarOut, dblValue))
  40. return SWIG_ERROR;
  41. return SWIG_OK;
  42. }
  43. }
  44. /*
  45. * DOUBLE ARRAY
  46. */
  47. %fragment("SWIG_SciDouble_AsDoubleArrayAndSize", "header") {
  48. SWIGINTERN int
  49. SWIG_SciDouble_AsDoubleArrayAndSize(void *pvApiCtx, int iVar, int *iRows, int *iCols, double **pdValue, char *fname) {
  50. SciErr sciErr;
  51. int *piAddrVar = NULL;
  52. sciErr = getVarAddressFromPosition(pvApiCtx, iVar, &piAddrVar);
  53. if (sciErr.iErr) {
  54. printError(&sciErr, 0);
  55. return SWIG_ERROR;
  56. }
  57. if (isDoubleType(pvApiCtx, piAddrVar) && !isVarComplex(pvApiCtx, piAddrVar)) {
  58. sciErr = getMatrixOfDouble(pvApiCtx, piAddrVar, iRows, iCols, pdValue);
  59. if (sciErr.iErr) {
  60. printError(&sciErr, 0);
  61. return SWIG_ERROR;
  62. }
  63. }
  64. else {
  65. Scierror(SCILAB_API_ARGUMENT_ERROR, _("%s: Wrong type for input argument #%d: A real matrix expected.\n"), fname, iVar);
  66. return SWIG_ERROR;
  67. }
  68. return SWIG_OK;
  69. }
  70. }
  71. %fragment("SWIG_SciDouble_FromDoubleArrayAndSize", "header") {
  72. SWIGINTERN int
  73. SWIG_SciDouble_FromDoubleArrayAndSize(void *pvApiCtx, int iVarOut, int iRows, int iCols, double *pdblValue) {
  74. SciErr sciErr;
  75. sciErr = createMatrixOfDouble(pvApiCtx, SWIG_NbInputArgument(pvApiCtx) + iVarOut, iRows, iCols, pdblValue);
  76. if (sciErr.iErr) {
  77. printError(&sciErr, 0);
  78. return SWIG_ERROR;
  79. }
  80. return SWIG_OK;
  81. }
  82. }
  83. %fragment(SWIG_CreateScilabVariable_frag(double), "wrapper") {
  84. SWIGINTERN int
  85. SWIG_CreateScilabVariable_dec(double)(void *pvApiCtx, const char* psVariableName, const double dVariableValue) {
  86. SciErr sciErr;
  87. sciErr = createNamedMatrixOfDouble(pvApiCtx, psVariableName, 1, 1, &dVariableValue);
  88. if (sciErr.iErr) {
  89. printError(&sciErr, 0);
  90. return SWIG_ERROR;
  91. }
  92. return SWIG_OK;
  93. }
  94. }