view doc/interpreter/set.txi @ 18840:4a4edf0f2077 nkf-ready

fix LLVM 3.4 build (bug #41061) * configure.ac: Call new functions OCTAVE_LLVM_RAW_FD_OSTREAM_API and OCTAVE_LLVM_LEGACY_PASSMANAGER_API, check for Verifier.h header file * m4/acinclude.m4 (OCTAVE_LLVM_RAW_FD_OSTREAM_API): New function to detect correct raw_fd_ostream API * m4/acinclude.m4 (OCTAVE_LLVM_LEGACY_PASSMANAGER_API): New function to detect legacy passmanager API * libinterp/corefcn/jit-util.h: Use legacy passmanager namespace if necessary * libinterp/corefcn/pt-jit.h (class tree_jit): Use legacy passmanager class if necessary * libinterp/corefcn/pt-jit.cc: Include appropriate header files * libinterp/corefcn/pt-jit.cc (tree_jit::initialize): Use legacy passmanager if necessary * libinterp/corefcn/pt-jit.cc (tree_jit::optimize): Use correct API * libinterp/corefcn/jit-typeinfo.cc: Include appropriate header file
author Stefan Mahr <dac922@gmx.de>
date Sun, 11 May 2014 02:28:33 +0200
parents d63878346099
children d00f6b09258f 446c46af4b42
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@c Copyright (C) 1996-2013 John W. Eaton
@c
@c This file is part of Octave.
@c
@c Octave is free software; you can redistribute it and/or modify it
@c under the terms of the GNU General Public License as published by the
@c Free Software Foundation; either version 3 of the License, or (at
@c your option) any later version.
@c 
@c Octave is distributed in the hope that it will be useful, but WITHOUT
@c ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
@c FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
@c for more details.
@c 
@c You should have received a copy of the GNU General Public License
@c along with Octave; see the file COPYING.  If not, see
@c <http://www.gnu.org/licenses/>.

@node Sets
@chapter Sets

Octave has a limited number of functions for managing sets of data, where a
set is defined as a collection of unique elements.  In Octave a set is
represented as a vector of numbers.

@DOCSTRING(unique)

@menu
* Set Operations::
@end menu

@node Set Operations
@section Set Operations

Octave supports the basic set operations.  That is, Octave can compute
the union, intersection, and difference of two sets.
Octave also supports the @emph{Exclusive Or} set operation, and
membership determination.  The functions for set operations all work in
pretty much the same way.  As an example, assume that @code{x} and
@code{y} contains two sets, then

@example
union (x, y)
@end example

@noindent
computes the union of the two sets.

@DOCSTRING(ismember)

@DOCSTRING(union)

@DOCSTRING(intersect)

@DOCSTRING(setdiff)

@DOCSTRING(setxor)

@DOCSTRING(powerset)