GNU Octave 7.1.0
A high-level interpreted language, primarily intended for numerical computations, mostly compatible with Matlab
ov-scalar.cc
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4//
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24////////////////////////////////////////////////////////////////////////
25
26#if defined (HAVE_CONFIG_H)
27# include "config.h"
28#endif
29
30#include <istream>
31#include <ostream>
32
33#include "oct-inttypes-fwd.h"
34
35#include "data-conv.h"
36#include "mach-info.h"
37#include "lo-specfun.h"
38#include "lo-mappers.h"
39
40#include "defun.h"
41#include "errwarn.h"
42#include "mxarray.h"
43#include "ovl.h"
44#include "oct-hdf5.h"
45#include "oct-stream.h"
46#include "ov-scalar.h"
47#include "ov-float.h"
48#include "ov-base.h"
49#include "ov-base-scalar.h"
50#include "ov-base-scalar.cc"
51#include "ov-re-mat.h"
52#include "ov-typeinfo.h"
53#include "pr-output.h"
54#include "xdiv.h"
55#include "xpow.h"
56#include "ops.h"
57
58#include "ls-oct-text.h"
59#include "ls-hdf5.h"
60
61// Prevent implicit instantiations on some systems (Windows, others?)
62// that can lead to duplicate definitions of static data members.
63
64extern template class octave_base_scalar<float>;
65
66template class octave_base_scalar<double>;
67
69
70static octave_base_value *
72{
73 const octave_scalar& v = dynamic_cast<const octave_scalar&> (a);
74
75 return new octave_float_scalar (v.float_value ());
76}
77
80{
84}
85
88{
89 // FIXME: this doesn't solve the problem of
90 //
91 // a = 1; a([1,1], [1,1], [1,1])
92 //
93 // and similar constructions. Hmm...
94
95 // FIXME: using this constructor avoids narrowing the
96 // 1x1 matrix back to a scalar value. Need a better solution
97 // to this problem.
98
100
101 return tmp.index_op (idx, resize_ok);
102}
103
105octave_scalar::resize (const dim_vector& dv, bool fill) const
106{
107 if (fill)
108 {
109 NDArray retval (dv, 0);
110
111 if (dv.numel ())
112 retval(0) = scalar;
113
114 return retval;
115 }
116 else
117 {
118 NDArray retval (dv);
119
120 if (dv.numel ())
121 retval(0) = scalar;
122
123 return retval;
124 }
125}
126
129{
130 return scalar;
131}
132
135{
136 return static_cast<float> (scalar);
137}
138
141{
142 return octave_int8 (scalar);
143}
144
147{
148 return octave_int16 (scalar);
149}
150
153{
154 return octave_int32 (scalar);
155}
156
159{
160 return octave_int64 (scalar);
161}
162
165{
166 return octave_uint8 (scalar);
167}
168
171{
172 return octave_uint16 (scalar);
173}
174
177{
178 return octave_uint32 (scalar);
179}
180
183{
184 return octave_uint64 (scalar);
185}
186
189{
190 return DiagMatrix (Array<double> (dim_vector (1, 1), scalar), m, n);
191}
192
194octave_scalar::convert_to_str_internal (bool, bool, char type) const
195{
196 octave_value retval;
197
200
201 int ival = octave::math::nint (scalar);
202
203 if (ival < 0 || ival > std::numeric_limits<unsigned char>::max ())
204 {
205 // FIXME: is there something better we could do?
206
207 ival = 0;
208
209 ::warning ("range error for conversion to character value");
210 }
211
212 retval = octave_value (std::string (1, static_cast<char> (ival)), type);
213
214 return retval;
215}
216
217bool
219{
220 double d = double_value ();
221
222 octave::write_value<double> (os, d);
223
224 os << "\n";
225
226 return true;
227}
228
229bool
231{
232 scalar = octave::read_value<double> (is);
233
234 if (! is)
235 error ("load: failed to load scalar constant");
236
237 return true;
238}
239
240bool
241octave_scalar::save_binary (std::ostream& os, bool /* save_as_floats */)
242{
243 char tmp = LS_DOUBLE;
244 os.write (reinterpret_cast<char *> (&tmp), 1);
245 double dtmp = double_value ();
246 os.write (reinterpret_cast<char *> (&dtmp), 8);
247
248 return true;
249}
250
251bool
252octave_scalar::load_binary (std::istream& is, bool swap,
254{
255 char tmp;
256 if (! is.read (reinterpret_cast<char *> (&tmp), 1))
257 return false;
258
259 double dtmp;
260 read_doubles (is, &dtmp, static_cast<save_type> (tmp), 1, swap, fmt);
261
262 if (! is)
263 return false;
264
265 scalar = dtmp;
266 return true;
267}
268
269bool
271 bool /* save_as_floats */)
272{
273 bool retval = false;
274
275#if defined (HAVE_HDF5)
276
277 hsize_t dimens[3] = {0};
278 hid_t space_hid, data_hid;
279 space_hid = data_hid = -1;
280
281 space_hid = H5Screate_simple (0, dimens, nullptr);
282 if (space_hid < 0) return false;
283
284#if defined (HAVE_HDF5_18)
285 data_hid = H5Dcreate (loc_id, name, H5T_NATIVE_DOUBLE, space_hid,
287#else
288 data_hid = H5Dcreate (loc_id, name, H5T_NATIVE_DOUBLE, space_hid,
290#endif
291 if (data_hid < 0)
292 {
293 H5Sclose (space_hid);
294 return false;
295 }
296
297 double tmp = double_value ();
298 retval = H5Dwrite (data_hid, H5T_NATIVE_DOUBLE, octave_H5S_ALL, octave_H5S_ALL,
299 octave_H5P_DEFAULT, &tmp) >= 0;
300
301 H5Dclose (data_hid);
302 H5Sclose (space_hid);
303
304#else
305 octave_unused_parameter (loc_id);
306 octave_unused_parameter (name);
307
308 warn_save ("hdf5");
309#endif
310
311 return retval;
312}
313
314bool
316{
317#if defined (HAVE_HDF5)
318
319#if defined (HAVE_HDF5_18)
320 hid_t data_hid = H5Dopen (loc_id, name, octave_H5P_DEFAULT);
321#else
322 hid_t data_hid = H5Dopen (loc_id, name);
323#endif
324 hid_t space_id = H5Dget_space (data_hid);
325
326 hsize_t rank = H5Sget_simple_extent_ndims (space_id);
327
328 if (rank != 0)
329 {
330 H5Dclose (data_hid);
331 return false;
332 }
333
334 double dtmp;
335 if (H5Dread (data_hid, H5T_NATIVE_DOUBLE, octave_H5S_ALL, octave_H5S_ALL,
336 octave_H5P_DEFAULT, &dtmp) < 0)
337 {
338 H5Dclose (data_hid);
339 return false;
340 }
341
342 scalar = dtmp;
343
344 H5Dclose (data_hid);
345
346 return true;
347
348#else
349 octave_unused_parameter (loc_id);
350 octave_unused_parameter (name);
351
352 warn_load ("hdf5");
353
354 return false;
355#endif
356}
357
358mxArray *
359octave_scalar::as_mxArray (bool interleaved) const
360{
361 mxArray *retval = new mxArray (interleaved, mxDOUBLE_CLASS, 1, 1, mxREAL);
362
363 mxDouble *pd = static_cast<mxDouble *> (retval->get_data ());
364
365 pd[0] = scalar;
366
367 return retval;
368}
369
372{
373 switch (umap)
374 {
375 case umap_imag:
376 return 0.0;
377
378 case umap_real:
379 case umap_conj:
380 return scalar;
381
382#define SCALAR_MAPPER(UMAP, FCN) \
383 case umap_ ## UMAP: \
384 return octave_value (FCN (scalar))
385
386 SCALAR_MAPPER (abs, ::fabs);
389 SCALAR_MAPPER (angle, std::arg);
390 SCALAR_MAPPER (arg, std::arg);
406 SCALAR_MAPPER (cos, ::cos);
407 SCALAR_MAPPER (cosh, ::cosh);
408 SCALAR_MAPPER (exp, ::exp);
419 SCALAR_MAPPER (sin, ::sin);
420 SCALAR_MAPPER (sinh, ::sinh);
422 SCALAR_MAPPER (tan, ::tan);
423 SCALAR_MAPPER (tanh, ::tanh);
429
430 // Special cases for Matlab compatibility.
431 case umap_xtolower:
432 case umap_xtoupper:
433 return scalar;
434
435 case umap_xisalnum:
436 case umap_xisalpha:
437 case umap_xisascii:
438 case umap_xiscntrl:
439 case umap_xisdigit:
440 case umap_xisgraph:
441 case umap_xislower:
442 case umap_xisprint:
443 case umap_xispunct:
444 case umap_xisspace:
445 case umap_xisupper:
446 case umap_xisxdigit:
447 {
448 octave_value str_conv = convert_to_str (true, true);
449 return str_conv.map (umap);
450 }
451
452 default:
453 return octave_base_value::map (umap);
454 }
455}
456
457bool
459{
460
461 // Support inline real->complex conversion.
462 if (btyp == btyp_double)
463 {
464 *(reinterpret_cast<double *>(where)) = scalar;
465 return true;
466 }
467 else if (btyp == btyp_complex)
468 {
469 *(reinterpret_cast<Complex *>(where)) = scalar;
470 return true;
471 }
472 else
473 return false;
474}
charNDArray max(char d, const charNDArray &m)
Definition: chNDArray.cc:230
Vector representing the dimensions (size) of an Array.
Definition: dim-vector.h:94
octave_idx_type numel(int n=0) const
Number of elements that a matrix with this dimensions would have.
Definition: dim-vector.h:335
void * get_data(void) const
Definition: mxarray.h:497
virtual octave_value map(unary_mapper_t) const
Definition: ov-base.cc:1176
virtual octave_value convert_to_str(bool pad=false, bool force=false, char type='\'') const
Definition: ov-base.cc:377
OCTINTERP_API void warn_load(const char *type) const
Definition: ov-base.cc:1152
friend class octave_value
Definition: ov-base.h:256
OCTINTERP_API void warn_save(const char *type) const
Definition: ov-base.cc:1161
static int static_type_id(void)
Definition: ov-float.h:278
octave_value map(unary_mapper_t umap) const
Definition: ov-scalar.cc:371
bool fast_elem_insert_self(void *where, builtin_type_t btyp) const
Definition: ov-scalar.cc:458
octave_value as_uint32(void) const
Definition: ov-scalar.cc:176
bool load_hdf5(octave_hdf5_id loc_id, const char *name)
Definition: ov-scalar.cc:315
bool load_ascii(std::istream &is)
Definition: ov-scalar.cc:230
type_conv_info numeric_demotion_function(void) const
Definition: ov-scalar.cc:79
octave_value as_uint8(void) const
Definition: ov-scalar.cc:164
octave_value do_index_op(const octave_value_list &idx, bool resize_ok=false)
Definition: ov-scalar.cc:87
octave_value convert_to_str_internal(bool pad, bool force, char type) const
Definition: ov-scalar.cc:194
double double_value(bool=false) const
Definition: ov-scalar.h:147
octave_value as_int64(void) const
Definition: ov-scalar.cc:158
bool save_hdf5(octave_hdf5_id loc_id, const char *name, bool save_as_floats)
Definition: ov-scalar.cc:270
bool save_ascii(std::ostream &os)
Definition: ov-scalar.cc:218
octave_value as_uint64(void) const
Definition: ov-scalar.cc:182
octave_value as_single(void) const
Definition: ov-scalar.cc:134
octave_value diag(octave_idx_type m, octave_idx_type n) const
Definition: ov-scalar.cc:188
octave_value as_double(void) const
Definition: ov-scalar.cc:128
float float_value(bool=false) const
Definition: ov-scalar.h:149
Matrix matrix_value(bool=false) const
Definition: ov-scalar.h:157
octave_value as_int16(void) const
Definition: ov-scalar.cc:146
bool save_binary(std::ostream &os, bool save_as_floats)
Definition: ov-scalar.cc:241
octave_value as_int8(void) const
Definition: ov-scalar.cc:140
bool load_binary(std::istream &is, bool swap, octave::mach_info::float_format fmt)
Definition: ov-scalar.cc:252
mxArray * as_mxArray(bool interleaved) const
Definition: ov-scalar.cc:359
octave_value resize(const dim_vector &dv, bool fill=false) const
Definition: ov-scalar.cc:105
octave_value as_uint16(void) const
Definition: ov-scalar.cc:170
octave_value as_int32(void) const
Definition: ov-scalar.cc:152
octave_value index_op(const octave_value_list &idx, bool resize_ok=false)
Definition: ov.h:550
octave_value map(octave_base_value::unary_mapper_t umap) const
Definition: ov.h:1634
const octave_hdf5_id octave_H5P_DEFAULT
const octave_hdf5_id octave_H5S_ALL
void read_doubles(std::istream &is, double *data, save_type type, octave_idx_type len, bool swap, octave::mach_info::float_format fmt)
Definition: data-conv.cc:776
save_type
Definition: data-conv.h:87
@ LS_DOUBLE
Definition: data-conv.h:95
void warning(const char *fmt,...)
Definition: error.cc:1055
void error(const char *fmt,...)
Definition: error.cc:980
function gamma(X)
Definition: gamma.f:3
QString name
F77_RET_T const F77_DBLE const F77_DBLE F77_DBLE * d
void mxArray
Definition: mex.h:58
class OCTAVE_API DiagMatrix
Definition: mx-fwd.h:59
std::complex< double > erfi(std::complex< double > z, double relerr=0)
std::complex< double > erfc(std::complex< double > z, double relerr=0)
std::complex< double > erfcx(std::complex< double > z, double relerr=0)
std::complex< double > erf(std::complex< double > z, double relerr=0)
double fix(double x)
Definition: lo-mappers.h:118
Complex atan(const Complex &x)
Definition: lo-mappers.h:71
double signum(double x)
Definition: lo-mappers.h:229
double asinh(double x)
Definition: lo-specfun.h:58
double gamma(double x)
Definition: lo-specfun.cc:1912
bool isna(double x)
Definition: lo-mappers.cc:47
Complex rc_acos(double x)
Definition: lo-mappers.cc:236
double signbit(double x)
Definition: lo-mappers.h:54
double atanh(double x)
Definition: lo-specfun.h:63
bool isfinite(double x)
Definition: lo-mappers.h:192
int nint(double x)
Definition: lo-mappers.cc:212
double roundb(double x)
Definition: lo-mappers.h:147
bool isnan(bool)
Definition: lo-mappers.h:178
Complex log1p(const Complex &x)
Definition: lo-specfun.cc:1958
bool isinf(double x)
Definition: lo-mappers.h:203
Complex acos(const Complex &x)
Definition: lo-mappers.cc:85
double round(double x)
Definition: lo-mappers.h:136
Complex asin(const Complex &x)
Definition: lo-mappers.cc:107
double erfcx(double x)
Definition: lo-specfun.cc:1755
Complex rc_log2(double x)
Definition: lo-mappers.cc:300
Complex rc_log(double x)
Definition: lo-mappers.cc:287
Complex erfc(const Complex &x)
Definition: lo-specfun.cc:1652
double acosh(double x)
Definition: lo-specfun.h:40
Complex rc_sqrt(double x)
Definition: lo-mappers.cc:330
double erfcinv(double x)
Definition: lo-specfun.cc:1744
Complex rc_atanh(double x)
Definition: lo-mappers.cc:274
Complex rc_acosh(double x)
Definition: lo-mappers.cc:249
double erfi(double x)
Definition: lo-specfun.cc:1774
Complex rc_log1p(double x)
Definition: lo-specfun.cc:2247
double lgamma(double x)
Definition: lo-specfun.h:336
double erfinv(double x)
Definition: lo-specfun.cc:1863
Complex rc_log10(double x)
Definition: lo-mappers.cc:315
Complex rc_lgamma(double x)
Definition: lo-specfun.cc:2210
std::complex< T > ceil(const std::complex< T > &x)
Definition: lo-mappers.h:103
std::complex< T > floor(const std::complex< T > &x)
Definition: lo-mappers.h:130
double dawson(double x)
Definition: lo-specfun.cc:1517
double cbrt(double x)
Definition: lo-specfun.h:289
Complex rc_asin(double x)
Definition: lo-mappers.cc:261
Complex log2(const Complex &x)
Definition: lo-mappers.cc:139
Complex erf(const Complex &x)
Definition: lo-specfun.cc:1637
Complex expm1(const Complex &x)
Definition: lo-specfun.cc:1874
void err_nan_to_character_conversion(void)
std::complex< double > Complex
Definition: oct-cmplx.h:33
int64_t octave_hdf5_id
octave_int< uint32_t > octave_uint32
octave_int< int32_t > octave_int32
octave_int< int16_t > octave_int16
octave_int< int8_t > octave_int8
octave_int< int64_t > octave_int64
octave_int< uint64_t > octave_uint64
octave_int< uint16_t > octave_uint16
octave_int< uint8_t > octave_uint8
#define DEFINE_OV_TYPEID_FUNCTIONS_AND_DATA(t, n, c)
Definition: ov-base.h:222
builtin_type_t
Definition: ov-base.h:75
@ btyp_double
Definition: ov-base.h:76
@ btyp_complex
Definition: ov-base.h:78
static octave_base_value * default_numeric_demotion_function(const octave_base_value &a)
Definition: ov-scalar.cc:71
#define SCALAR_MAPPER(UMAP, FCN)
static T abs(T x)
Definition: pr-output.cc:1678