Mercurial > hg > octave-nkf
view libinterp/corefcn/ls-utils.cc @ 20804:3af34e1ef330
Preliminary inclusion of uixx objects properties in the manual (bug #46076)
* doc/interpreter/genpropdoc.m: add uixx objects to the list of supported graphics objects
* doc/interpreter/genpropdoc.m (get_doc): add uixx objects and their specific properties (currently empty documentation)
* doc/interpreter/plot.txi("Interacting with Plots"): add a note and a reference about ui* family of functions.
* doc/interpreter/plot.txi("Interacting with Plots"): for consistency, remove "uimenu" reference. All the other uixx are already in the gui section
* doc/interpreter/plot.txi("graphics data structure"): add uixx objects
* doc/interpreter/gui.txi("UI Elements"): add "uimenu" function reference
* doc/module.mk: add rules to build uixx properties texi files.
* graphics.in.h: make uixx "__object__" property (Octave internal) hidden so that it does not appear in the documentation.
author | Pantxo Diribarne <pantxo.diribarne@gmail.com> |
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date | Fri, 09 Oct 2015 16:25:27 +0200 |
parents | 4197fc428c7d |
children |
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/* Copyright (C) 2003-2015 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/>. */ #ifdef HAVE_CONFIG_H #include <config.h> #endif #include "data-conv.h" #include "ls-utils.h" // MAX_VAL and MIN_VAL are assumed to have integral values even though // they are stored in doubles. save_type get_save_type (double /* max_val */, double /* min_val */) { save_type st = LS_DOUBLE; // Matlab doesn't seem to load the UINT32 type correctly, so let's // avoid it (and the other unsigned types, even though they may not // have the same problem. And apparently, there are problems with // other smaller types as well. If we avoid them all, then maybe we // will avoid problems. Unfortunately, we won't be able to save // space... // if (max_val < 256 && min_val > -1) // st = LS_U_CHAR; // else if (max_val < 65536 && min_val > -1) // st = LS_U_SHORT; // else if (max_val < 4294967295UL && min_val > -1) // st = LS_U_INT; // else if (max_val < 128 && min_val >= -128) // st = LS_CHAR; // else if (max_val < 32768 && min_val >= -32768) // st = LS_SHORT; // else if (max_val <= 2147483647L && min_val >= -2147483647L) // st = LS_INT; return st; } save_type get_save_type (float /* max_val */, float /* min_val */) { save_type st = LS_FLOAT; // Matlab doesn't seem to load the UINT32 type correctly, so let's // avoid it (and the other unsigned types, even though they may not // have the same problem. And apparently, there are problems with // other smaller types as well. If we avoid them all, then maybe we // will avoid problems. Unfortunately, we won't be able to save // space... // if (max_val < 256 && min_val > -1) // st = LS_U_CHAR; // else if (max_val < 65536 && min_val > -1) // st = LS_U_SHORT; // else if (max_val < 4294967295UL && min_val > -1) // st = LS_U_INT; // else if (max_val < 128 && min_val >= -128) // st = LS_CHAR; // else if (max_val < 32768 && min_val >= -32768) // st = LS_SHORT; // else if (max_val <= 2147483647L && min_val >= -2147483647L) // st = LS_INT; return st; }