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00023 #if !defined (octave_float_h)
00024 #define octave_float_h 1
00025
00026 #include <cstdlib>
00027
00028 #include <iosfwd>
00029 #include <string>
00030
00031 #include "lo-ieee.h"
00032 #include "lo-mappers.h"
00033 #include "lo-utils.h"
00034 #include "mx-base.h"
00035 #include "oct-alloc.h"
00036 #include "str-vec.h"
00037
00038 #include "gripes.h"
00039 #include "ov-base.h"
00040 #include "ov-re-mat.h"
00041 #include "ov-flt-re-mat.h"
00042 #include "ov-base-scalar.h"
00043 #include "ov-typeinfo.h"
00044
00045 class octave_value_list;
00046
00047 class tree_walker;
00048
00049
00050
00051 class
00052 OCTINTERP_API
00053 octave_float_scalar : public octave_base_scalar<float>
00054 {
00055 public:
00056
00057 octave_float_scalar (void)
00058 : octave_base_scalar<float> (0.0) { }
00059
00060 octave_float_scalar (float d)
00061 : octave_base_scalar<float> (d) { }
00062
00063 octave_float_scalar (const octave_float_scalar& s)
00064 : octave_base_scalar<float> (s) { }
00065
00066 ~octave_float_scalar (void) { }
00067
00068 octave_base_value *clone (void) const { return new octave_float_scalar (*this); }
00069
00070
00071
00072
00073 octave_base_value *empty_clone (void) const { return new octave_float_matrix (); }
00074
00075 octave_value do_index_op (const octave_value_list& idx,
00076 bool resize_ok = false);
00077
00078 idx_vector index_vector (void) const { return idx_vector (scalar); }
00079
00080 octave_value any (int = 0) const
00081 { return (scalar != 0 && ! lo_ieee_isnan (scalar)); }
00082
00083 builtin_type_t builtin_type (void) const { return btyp_float; }
00084
00085 bool is_real_scalar (void) const { return true; }
00086
00087 bool is_real_type (void) const { return true; }
00088
00089 bool is_single_type (void) const { return true; }
00090
00091 bool is_float_type (void) const { return true; }
00092
00093 int8NDArray
00094 int8_array_value (void) const
00095 { return int8NDArray (dim_vector (1, 1), scalar); }
00096
00097 int16NDArray
00098 int16_array_value (void) const
00099 { return int16NDArray (dim_vector (1, 1), scalar); }
00100
00101 int32NDArray
00102 int32_array_value (void) const
00103 { return int32NDArray (dim_vector (1, 1), scalar); }
00104
00105 int64NDArray
00106 int64_array_value (void) const
00107 { return int64NDArray (dim_vector (1, 1), scalar); }
00108
00109 uint8NDArray
00110 uint8_array_value (void) const
00111 { return uint8NDArray (dim_vector (1, 1), scalar); }
00112
00113 uint16NDArray
00114 uint16_array_value (void) const
00115 { return uint16NDArray (dim_vector (1, 1), scalar); }
00116
00117 uint32NDArray
00118 uint32_array_value (void) const
00119 { return uint32NDArray (dim_vector (1, 1), scalar); }
00120
00121 uint64NDArray
00122 uint64_array_value (void) const
00123 { return uint64NDArray (dim_vector (1, 1), scalar); }
00124
00125 #define DEFINE_INT_SCALAR_VALUE(TYPE) \
00126 octave_ ## TYPE \
00127 TYPE ## _scalar_value (void) const \
00128 { return octave_ ## TYPE (scalar); }
00129
00130 DEFINE_INT_SCALAR_VALUE (int8)
00131 DEFINE_INT_SCALAR_VALUE (int16)
00132 DEFINE_INT_SCALAR_VALUE (int32)
00133 DEFINE_INT_SCALAR_VALUE (int64)
00134 DEFINE_INT_SCALAR_VALUE (uint8)
00135 DEFINE_INT_SCALAR_VALUE (uint16)
00136 DEFINE_INT_SCALAR_VALUE (uint32)
00137 DEFINE_INT_SCALAR_VALUE (uint64)
00138
00139 #undef DEFINE_INT_SCALAR_VALUE
00140
00141 double double_value (bool = false) const { return static_cast<double> (scalar); }
00142
00143 float float_value (bool = false) const { return scalar; }
00144
00145 double scalar_value (bool = false) const { return static_cast<double> (scalar); }
00146
00147 float float_scalar_value (bool = false) const { return scalar; }
00148
00149 Matrix matrix_value (bool = false) const
00150 { return Matrix (1, 1, scalar); }
00151
00152 FloatMatrix float_matrix_value (bool = false) const
00153 { return FloatMatrix (1, 1, scalar); }
00154
00155 NDArray array_value (bool = false) const
00156 { return NDArray (dim_vector (1, 1), scalar); }
00157
00158 FloatNDArray float_array_value (bool = false) const
00159 { return FloatNDArray (dim_vector (1, 1), scalar); }
00160
00161 SparseMatrix sparse_matrix_value (bool = false) const
00162 { return SparseMatrix (Matrix (1, 1, scalar)); }
00163
00164
00165 SparseComplexMatrix sparse_complex_matrix_value (bool = false) const
00166 { return SparseComplexMatrix (sparse_matrix_value ()); }
00167
00168 octave_value resize (const dim_vector& dv, bool fill = false) const;
00169
00170 Complex complex_value (bool = false) const { return scalar; }
00171
00172 FloatComplex float_complex_value (bool = false) const { return scalar; }
00173
00174 ComplexMatrix complex_matrix_value (bool = false) const
00175 { return ComplexMatrix (1, 1, Complex (scalar)); }
00176
00177 FloatComplexMatrix float_complex_matrix_value (bool = false) const
00178 { return FloatComplexMatrix (1, 1, FloatComplex (scalar)); }
00179
00180 ComplexNDArray complex_array_value (bool = false) const
00181 { return ComplexNDArray (dim_vector (1, 1), Complex (scalar)); }
00182
00183 FloatComplexNDArray float_complex_array_value (bool = false) const
00184 { return FloatComplexNDArray (dim_vector (1, 1), FloatComplex (scalar)); }
00185
00186 charNDArray
00187 char_array_value (bool = false) const
00188 {
00189 charNDArray retval (dim_vector (1, 1));
00190 retval(0) = static_cast<char> (scalar);
00191 return retval;
00192 }
00193
00194 bool bool_value (bool warn = false) const
00195 {
00196 if (xisnan (scalar))
00197 gripe_nan_to_logical_conversion ();
00198 else if (warn && scalar != 0 && scalar != 1)
00199 gripe_logical_conversion ();
00200
00201 return scalar;
00202 }
00203
00204 boolNDArray bool_array_value (bool warn = false) const
00205 {
00206 if (xisnan (scalar))
00207 gripe_nan_to_logical_conversion ();
00208 else if (warn && scalar != 0 && scalar != 1)
00209 gripe_logical_conversion ();
00210
00211 return boolNDArray (dim_vector (1, 1), scalar);
00212 }
00213
00214 octave_value convert_to_str_internal (bool pad, bool force, char type) const;
00215
00216 void increment (void) { ++scalar; }
00217
00218 void decrement (void) { --scalar; }
00219
00220 bool save_ascii (std::ostream& os);
00221
00222 bool load_ascii (std::istream& is);
00223
00224 bool save_binary (std::ostream& os, bool& save_as_floats);
00225
00226 bool load_binary (std::istream& is, bool swap,
00227 oct_mach_info::float_format fmt);
00228
00229 #if defined (HAVE_HDF5)
00230 bool save_hdf5 (hid_t loc_id, const char *name, bool save_as_floats);
00231
00232 bool load_hdf5 (hid_t loc_id, const char *name);
00233 #endif
00234
00235 int write (octave_stream& os, int block_size,
00236 oct_data_conv::data_type output_type, int skip,
00237 oct_mach_info::float_format flt_fmt) const
00238 {
00239 return os.write (array_value (), block_size, output_type,
00240 skip, flt_fmt);
00241 }
00242
00243 mxArray *as_mxArray (void) const;
00244
00245 octave_value map (unary_mapper_t umap) const;
00246
00247 bool fast_elem_insert_self (void *where, builtin_type_t btyp) const;
00248
00249 private:
00250
00251 DECLARE_OCTAVE_ALLOCATOR
00252
00253 DECLARE_OV_TYPEID_FUNCTIONS_AND_DATA
00254 };
00255
00256 #endif