Mercurial > hg > octave-nkf
view src/ov-range.h @ 14846:460a3c6d8bf1
maint: Use Octave coding convention for cuddled parenthis in function calls with empty argument lists.
Example: func() => func ()
* dynamic.txi, func.txi, oop.txi, var.txi, embedded.cc, fortdemo.cc,
funcdemo.cc, paramdemo.cc, stringdemo.cc, unwinddemo.cc, Array.cc, Array.h,
CColVector.cc, CDiagMatrix.h, CMatrix.cc, CNDArray.cc, CRowVector.cc,
CSparse.cc, CmplxGEPBAL.cc, EIG.cc, MSparse.cc, MatrixType.cc,
Sparse-op-defs.h, Sparse-perm-op-defs.h, Sparse.cc, Sparse.h,
SparseCmplxCHOL.cc, SparseCmplxCHOL.h, SparseCmplxLU.cc, SparseCmplxQR.cc,
SparseCmplxQR.h, SparseQR.cc, SparseQR.h, SparsedbleCHOL.cc, SparsedbleCHOL.h,
SparsedbleLU.cc, SparsedbleLU.h, base-lu.cc, cmd-hist.cc, dColVector.cc,
dDiagMatrix.h, dMatrix.cc, dNDArray.cc, dRowVector.cc, dSparse.cc, dbleCHOL.cc,
dbleGEPBAL.cc, dim-vector.cc, eigs-base.cc, f2c-main.c, fCColVector.cc,
fCDiagMatrix.h, fCMatrix.cc, fCNDArray.cc, fCRowVector.cc, fCmplxGEPBAL.cc,
fColVector.cc, fDiagMatrix.h, fEIG.cc, fMatrix.cc, fNDArray.cc, fRowVector.cc,
file-ops.cc, file-stat.cc, floatCHOL.cc, floatGEPBAL.cc, idx-vector.h,
lo-specfun.cc, lo-sysdep.cc, mx-inlines.cc, oct-binmap.h, oct-convn.cc,
oct-md5.cc, oct-mem.h, oct-rand.cc, oct-syscalls.cc, randgamma.c, randmtzig.c,
sparse-base-chol.cc, sparse-base-chol.h, sparse-base-lu.cc, sparse-dmsolve.cc,
tempname.c, curl.m, divergence.m, randi.m, dlmwrite.m, edit.m, getappdata.m,
what.m, getarchdir.m, install.m, installed_packages.m, repackage.m,
unload_packages.m, colorbar.m, figure.m, isosurface.m, legend.m, loglog.m,
plot.m, plot3.m, plotyy.m, polar.m, __errplot__.m, __ghostscript__.m,
__marching_cube__.m, __plt__.m, __scatter__.m, semilogx.m, semilogy.m,
trimesh.m, trisurf.m, demo.m, test.m, datetick.m, __delaunayn__.cc,
__dsearchn__.cc, __fltk_uigetfile__.cc, __glpk__.cc, __init_fltk__.cc,
__lin_interpn__.cc, __magick_read__.cc, __pchip_deriv__.cc, balance.cc,
bsxfun.cc, ccolamd.cc, cellfun.cc, chol.cc, daspk.cc, dasrt.cc, dassl.cc,
dmperm.cc, eig.cc, eigs.cc, fftw.cc, filter.cc, find.cc, kron.cc, lookup.cc,
lsode.cc, matrix_type.cc, md5sum.cc, mgorth.cc, qr.cc, quad.cc, rand.cc,
regexp.cc, symbfact.cc, tril.cc, urlwrite.cc, op-bm-bm.cc, op-cdm-cdm.cc,
op-cell.cc, op-chm.cc, op-cm-cm.cc, op-cm-scm.cc, op-cm-sm.cc, op-cs-scm.cc,
op-cs-sm.cc, op-dm-dm.cc, op-dm-scm.cc, op-dm-sm.cc, op-fcdm-fcdm.cc,
op-fcm-fcm.cc, op-fdm-fdm.cc, op-fm-fm.cc, op-int.h, op-m-m.cc, op-m-scm.cc,
op-m-sm.cc, op-pm-pm.cc, op-pm-scm.cc, op-pm-sm.cc, op-range.cc, op-s-scm.cc,
op-s-sm.cc, op-sbm-sbm.cc, op-scm-cm.cc, op-scm-cs.cc, op-scm-m.cc,
op-scm-s.cc, op-scm-scm.cc, op-scm-sm.cc, op-sm-cm.cc, op-sm-cs.cc, op-sm-m.cc,
op-sm-s.cc, op-sm-scm.cc, op-sm-sm.cc, op-str-str.cc, op-struct.cc, bitfcns.cc,
data.cc, debug.cc, dynamic-ld.cc, error.cc, gl-render.cc, graphics.cc,
graphics.in.h, load-path.cc, ls-hdf5.cc, ls-mat5.cc, ls-mat5.h,
ls-oct-ascii.cc, ls-oct-ascii.h, mex.cc, mk-errno-list, oct-map.cc, oct-obj.h,
oct-parse.yy, octave-config.in.cc, ov-base-int.cc, ov-base-mat.cc, ov-base.cc,
ov-bool-mat.cc, ov-bool-sparse.cc, ov-bool.cc, ov-cell.cc, ov-class.cc,
ov-class.h, ov-cx-mat.cc, ov-cx-sparse.cc, ov-fcn-handle.cc, ov-flt-cx-mat.cc,
ov-flt-re-mat.cc, ov-intx.h, ov-range.h, ov-re-mat.cc, ov-re-sparse.cc,
ov-str-mat.cc, ov-struct.cc, ov-usr-fcn.h, ov.h, pr-output.cc, pt-id.cc,
pt-id.h, pt-mat.cc, pt-select.cc, sparse.cc, symtab.cc, symtab.h, syscalls.cc,
toplev.cc, txt-eng-ft.cc, variables.cc, zfstream.cc, zfstream.h, Dork.m,
getStash.m, myStash.m, Gork.m, Pork.m, myStash.m, getStash.m, myStash.m,
getStash.m, myStash.m, fntests.m: Use Octave coding convention for
cuddled parenthis in function calls with empty argument lists.
author | Rik <octave@nomad.inbox5.com> |
---|---|
date | Sun, 08 Jul 2012 11:28:50 -0700 |
parents | e8e86ae3abbc |
children |
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/* Copyright (C) 1996-2012 John W. Eaton This file is part of Octave. Octave is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 3 of the License, or (at your option) any later version. Octave is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Octave; see the file COPYING. If not, see <http://www.gnu.org/licenses/>. */ #if !defined (octave_range_h) #define octave_range_h 1 #include <cstdlib> #include <iosfwd> #include <string> #include "Range.h" #include "lo-mappers.h" #include "lo-utils.h" #include "mx-base.h" #include "oct-alloc.h" #include "str-vec.h" #include "error.h" #include "oct-stream.h" #include "ov-base.h" #include "ov-re-mat.h" #include "ov-typeinfo.h" class octave_value_list; class tree_walker; // Range values. class octave_range : public octave_base_value { public: octave_range (void) : octave_base_value (), range (), idx_cache () { } octave_range (double base, double limit, double inc) : octave_base_value (), range (base, limit, inc), idx_cache () { if (range.nelem () < 0) ::error ("invalid range"); } octave_range (const Range& r) : octave_base_value (), range (r), idx_cache () { if (range.nelem () < 0 && range.nelem () != -2) ::error ("invalid range"); } octave_range (const octave_range& r) : octave_base_value (), range (r.range), idx_cache (r.idx_cache ? new idx_vector (*r.idx_cache) : 0) { } octave_range (const Range& r, const idx_vector& cache) : octave_base_value (), range (r), idx_cache () { set_idx_cache (cache); } ~octave_range (void) { clear_cached_info (); } octave_base_value *clone (void) const { return new octave_range (*this); } // A range is really just a special kind of real matrix object. In // the places where we need to call empty_clone, it makes more sense // to create an empty matrix (0x0) instead of an empty range (1x0). octave_base_value *empty_clone (void) const { return new octave_matrix (); } type_conv_info numeric_conversion_function (void) const; octave_base_value *try_narrowing_conversion (void); octave_value subsref (const std::string& type, const std::list<octave_value_list>& idx); octave_value_list subsref (const std::string& type, const std::list<octave_value_list>& idx, int) { return subsref (type, idx); } octave_value do_index_op (const octave_value_list& idx, bool resize_ok = false); idx_vector index_vector (void) const; dim_vector dims (void) const { octave_idx_type n = range.nelem (); return dim_vector (n > 0, n); } octave_value resize (const dim_vector& dv, bool fill = false) const; size_t byte_size (void) const { return 3 * sizeof (double); } octave_value reshape (const dim_vector& new_dims) const { return NDArray (array_value ().reshape (new_dims)); } octave_value permute (const Array<int>& vec, bool inv = false) const { return NDArray (array_value ().permute (vec, inv)); } octave_value squeeze (void) const { return range; } octave_value full_value (void) const { return range.matrix_value (); } bool is_defined (void) const { return true; } bool is_constant (void) const { return true; } bool is_range (void) const { return true; } octave_value all (int dim = 0) const; octave_value any (int dim = 0) const; octave_value diag (octave_idx_type k = 0) const; octave_value diag (octave_idx_type m, octave_idx_type n) const; octave_value sort (octave_idx_type dim = 0, sortmode mode = ASCENDING) const { return range.sort (dim, mode); } octave_value sort (Array<octave_idx_type>& sidx, octave_idx_type dim = 0, sortmode mode = ASCENDING) const { return range.sort (sidx, dim, mode); } sortmode is_sorted (sortmode mode = UNSORTED) const { return range.is_sorted (mode); } Array<octave_idx_type> sort_rows_idx (sortmode) const { return Array<octave_idx_type> (dim_vector (1, 0)); } sortmode is_sorted_rows (sortmode mode = UNSORTED) const { return mode ? mode : ASCENDING; } builtin_type_t builtin_type (void) const { return btyp_double; } bool is_real_type (void) const { return true; } bool is_double_type (void) const { return true; } bool is_float_type (void) const { return true; } bool is_numeric_type (void) const { return true; } bool is_true (void) const; double double_value (bool = false) const; float float_value (bool = false) const; double scalar_value (bool frc_str_conv = false) const { return double_value (frc_str_conv); } float float_scalar_value (bool frc_str_conv = false) const { return float_value (frc_str_conv); } Matrix matrix_value (bool = false) const { return range.matrix_value (); } FloatMatrix float_matrix_value (bool = false) const { return range.matrix_value (); } NDArray array_value (bool = false) const { return range.matrix_value (); } FloatNDArray float_array_value (bool = false) const { return FloatMatrix (range.matrix_value ()); } charNDArray char_array_value (bool = false) const; // FIXME -- it would be better to have Range::intXNDArray_value // functions to avoid the intermediate conversion to a matrix // object. int8NDArray int8_array_value (void) const { return int8NDArray (array_value ()); } int16NDArray int16_array_value (void) const { return int16NDArray (array_value ()); } int32NDArray int32_array_value (void) const { return int32NDArray (array_value ()); } int64NDArray int64_array_value (void) const { return int64NDArray (array_value ()); } uint8NDArray uint8_array_value (void) const { return uint8NDArray (array_value ()); } uint16NDArray uint16_array_value (void) const { return uint16NDArray (array_value ()); } uint32NDArray uint32_array_value (void) const { return uint32NDArray (array_value ()); } uint64NDArray uint64_array_value (void) const { return uint64NDArray (array_value ()); } SparseMatrix sparse_matrix_value (bool = false) const { return SparseMatrix (range.matrix_value ()); } SparseComplexMatrix sparse_complex_matrix_value (bool = false) const { return SparseComplexMatrix (sparse_matrix_value ()); } Complex complex_value (bool = false) const; FloatComplex float_complex_value (bool = false) const; boolNDArray bool_array_value (bool warn = false) const; ComplexMatrix complex_matrix_value (bool = false) const { return ComplexMatrix (range.matrix_value ()); } FloatComplexMatrix float_complex_matrix_value (bool = false) const { return FloatComplexMatrix (range.matrix_value ()); } ComplexNDArray complex_array_value (bool = false) const { return ComplexMatrix (range.matrix_value ()); } FloatComplexNDArray float_complex_array_value (bool = false) const { return FloatComplexMatrix (range.matrix_value ()); } Range range_value (void) const { return range; } octave_value convert_to_str_internal (bool pad, bool force, char type) const; void print (std::ostream& os, bool pr_as_read_syntax = false) const; void print_raw (std::ostream& os, bool pr_as_read_syntax = false) const; bool print_name_tag (std::ostream& os, const std::string& name) const; bool save_ascii (std::ostream& os); bool load_ascii (std::istream& is); bool save_binary (std::ostream& os, bool& save_as_floats); bool load_binary (std::istream& is, bool swap, oct_mach_info::float_format fmt); #if defined (HAVE_HDF5) bool save_hdf5 (hid_t loc_id, const char *name, bool save_as_floats); bool load_hdf5 (hid_t loc_id, const char *name); #endif int write (octave_stream& os, int block_size, oct_data_conv::data_type output_type, int skip, oct_mach_info::float_format flt_fmt) const { // FIXME -- could be more memory efficient by having a // special case of the octave_stream::write method for ranges. return os.write (matrix_value (), block_size, output_type, skip, flt_fmt); } mxArray *as_mxArray (void) const; octave_value map (unary_mapper_t umap) const { octave_matrix m (matrix_value ()); return m.map (umap); } private: Range range; idx_vector set_idx_cache (const idx_vector& idx) const { delete idx_cache; idx_cache = idx ? new idx_vector (idx) : 0; return idx; } void clear_cached_info (void) const { delete idx_cache; idx_cache = 0; } mutable idx_vector *idx_cache; // No assignment. octave_range& operator = (const octave_range&); DECLARE_OCTAVE_ALLOCATOR DECLARE_OV_TYPEID_FUNCTIONS_AND_DATA }; // If TRUE, allow ranges with non-integer elements as array indices. extern bool Vallow_noninteger_range_as_index; #endif