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authorJohannes Schauer <josch@debian.org>2015-07-07 11:12:00 +0200
committerJohannes Schauer <josch@debian.org>2015-07-07 11:12:00 +0200
commitd210b3addc8ffed7214afd8c7882e700fbcc38c5 (patch)
treeded15607f7f24f83d2d0d7c542265c0a97af577a
fuzzylite (5.1+dfsg-1) unstable; urgency=medium
* new upstream version (Closes: #777858) * removed debian/patches/20140705-minor-improvements-on-building-script as upstream integrated it. Adjust build options in d/rules accordingly. * delete debian/patches/20140714-building-from-objects-just-once and debian/patches/20141027-fix-some-spelling as they have been applied upstream * install usr/lib/*/pkgconfig/fuzzylite.pc in fuzzylite-dev * SONAME bump from 5.0 to 5.1, so renaming libfuzzylite5.0 to libfuzzylite5.1 * add debian/patches/pkgconfig_installdir to install pkgconfig file in correct location # imported from the archive
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-rw-r--r--fuzzylite/src/term/SigmoidProduct.cpp112
-rw-r--r--fuzzylite/src/term/Spike.cpp90
-rw-r--r--fuzzylite/src/term/Term.cpp74
-rw-r--r--fuzzylite/src/term/Trapezoid.cpp130
-rw-r--r--fuzzylite/src/term/Triangle.cpp115
-rw-r--r--fuzzylite/src/term/ZShape.cpp102
-rw-r--r--fuzzylite/src/variable/InputVariable.cpp54
-rw-r--r--fuzzylite/src/variable/OutputVariable.cpp195
-rw-r--r--fuzzylite/src/variable/Variable.cpp244
327 files changed, 46997 insertions, 0 deletions
diff --git a/.gitignore b/.gitignore
new file mode 100644
index 0000000..0def275
--- /dev/null
+++ b/.gitignore
@@ -0,0 +1,21 @@
+# Compiled Object files
+*.slo
+*.lo
+*.o
+*.obj
+
+# Compiled Dynamic libraries
+*.so
+*.dylib
+*.dll
+
+# Compiled Static libraries
+*.lai
+*.la
+*.a
+*.lib
+
+# Executables
+*.exe
+*.out
+*.app
diff --git a/.travis.yml b/.travis.yml
new file mode 100644
index 0000000..a22168d
--- /dev/null
+++ b/.travis.yml
@@ -0,0 +1,144 @@
+language: cpp
+
+os:
+ - linux
+ - osx
+
+before_install:
+
+ - if [ "$TRAVIS_OS_NAME" = "linux" ];
+ then
+ sudo add-apt-repository --yes ppa:ubuntu-toolchain-r/test;
+ sudo add-apt-repository --yes ppa:h-rayflood/llvm;
+ sudo add-apt-repository --yes ppa:andykimpe/cmake;
+ sudo apt-get update -qq;
+ sudo apt-get install -qq cmake;
+ sudo apt-get install -qq $SUPPORT;
+ sudo apt-get install -qq $PACKAGE;
+ fi
+
+ #setup compiler
+ - export CC=${REAL_CC} CXX=${REAL_CXX}
+
+script:
+ - cd fuzzylite
+ - mkdir -p $FL_CONF
+ - cd $FL_CONF
+ - cmake .. -G"Unix Makefiles" -DCMAKE_BUILD_TYPE=$FL_CONF -DFL_BACKTRACE=ON -DFL_USE_FLOAT=$FL_USE_FLOAT -DFL_CPP11=$FL_CPP11
+ - make
+
+env:
+ - ignore=this
+
+matrix:
+ exclude:
+ - env: ignore=this
+ include:
+#clang-3.2
+##Debug
+ - compiler: clang
+ env: REAL_CC=clang-3.2 REAL_CXX=clang++-3.2 PACKAGE=clang-3.2 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.2 REAL_CXX=clang++-3.2 PACKAGE=clang-3.2 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.2 REAL_CXX=clang++-3.2 PACKAGE=clang-3.2 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=clang-3.2 REAL_CXX=clang++-3.2 PACKAGE=clang-3.2 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=ON
+##Release
+ - compiler: clang
+ env: REAL_CC=clang-3.2 REAL_CXX=clang++-3.2 PACKAGE=clang-3.2 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.2 REAL_CXX=clang++-3.2 PACKAGE=clang-3.2 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.2 REAL_CXX=clang++-3.2 PACKAGE=clang-3.2 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=clang-3.2 REAL_CXX=clang++-3.2 PACKAGE=clang-3.2 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=ON
+
+#clang-3.3
+##Debug
+ - compiler: clang
+ env: REAL_CC=clang-3.3 REAL_CXX=clang++-3.3 PACKAGE=clang-3.3 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.3 REAL_CXX=clang++-3.3 PACKAGE=clang-3.3 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.3 REAL_CXX=clang++-3.3 PACKAGE=clang-3.3 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=clang-3.3 REAL_CXX=clang++-3.3 PACKAGE=clang-3.3 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=ON
+##Release
+ - compiler: clang
+ env: REAL_CC=clang-3.3 REAL_CXX=clang++-3.3 PACKAGE=clang-3.3 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.3 REAL_CXX=clang++-3.3 PACKAGE=clang-3.3 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.3 REAL_CXX=clang++-3.3 PACKAGE=clang-3.3 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=clang-3.3 REAL_CXX=clang++-3.3 PACKAGE=clang-3.3 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=ON
+
+#clang-3.4
+##Debug
+ - compiler: clang
+ env: REAL_CC=clang-3.4 REAL_CXX=clang++-3.4 PACKAGE=clang-3.4 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.4 REAL_CXX=clang++-3.4 PACKAGE=clang-3.4 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.4 REAL_CXX=clang++-3.4 PACKAGE=clang-3.4 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=clang-3.4 REAL_CXX=clang++-3.4 PACKAGE=clang-3.4 SUPPORT=g++-4.8 FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=ON
+##Release
+ - compiler: clang
+ env: REAL_CC=clang-3.4 REAL_CXX=clang++-3.4 PACKAGE=clang-3.4 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.4 REAL_CXX=clang++-3.4 PACKAGE=clang-3.4 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=clang-3.4 REAL_CXX=clang++-3.4 PACKAGE=clang-3.4 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=clang-3.4 REAL_CXX=clang++-3.4 PACKAGE=clang-3.4 SUPPORT=g++-4.8 FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=ON
+
+
+#gcc-4.7
+##Debug
+ - compiler: clang
+ env: REAL_CC=gcc-4.7 REAL_CXX=g++-4.7 PACKAGE=g++-4.7 SUPPORT= FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=gcc-4.7 REAL_CXX=g++-4.7 PACKAGE=g++-4.7 SUPPORT= FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=gcc-4.7 REAL_CXX=g++-4.7 PACKAGE=g++-4.7 SUPPORT= FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=gcc-4.7 REAL_CXX=g++-4.7 PACKAGE=g++-4.7 SUPPORT= FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=ON
+##Release
+ - compiler: clang
+ env: REAL_CC=gcc-4.7 REAL_CXX=g++-4.7 PACKAGE=g++-4.7 SUPPORT= FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=gcc-4.7 REAL_CXX=g++-4.7 PACKAGE=g++-4.7 SUPPORT= FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=gcc-4.7 REAL_CXX=g++-4.7 PACKAGE=g++-4.7 SUPPORT= FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=gcc-4.7 REAL_CXX=g++-4.7 PACKAGE=g++-4.7 SUPPORT= FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=ON
+
+#gcc-4.8
+##Debug
+ - compiler: clang
+ env: REAL_CC=gcc-4.8 REAL_CXX=g++-4.8 PACKAGE=g++-4.8 SUPPORT= FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=gcc-4.8 REAL_CXX=g++-4.8 PACKAGE=g++-4.8 SUPPORT= FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=gcc-4.8 REAL_CXX=g++-4.8 PACKAGE=g++-4.8 SUPPORT= FL_CONF=Debug FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=gcc-4.8 REAL_CXX=g++-4.8 PACKAGE=g++-4.8 SUPPORT= FL_CONF=Debug FL_USE_FLOAT=ON FL_CPP11=ON
+##Release
+ - compiler: clang
+ env: REAL_CC=gcc-4.8 REAL_CXX=g++-4.8 PACKAGE=g++-4.8 SUPPORT= FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=gcc-4.8 REAL_CXX=g++-4.8 PACKAGE=g++-4.8 SUPPORT= FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=OFF
+ - compiler: clang
+ env: REAL_CC=gcc-4.8 REAL_CXX=g++-4.8 PACKAGE=g++-4.8 SUPPORT= FL_CONF=Release FL_USE_FLOAT=OFF FL_CPP11=ON
+ - compiler: clang
+ env: REAL_CC=gcc-4.8 REAL_CXX=g++-4.8 PACKAGE=g++-4.8 SUPPORT= FL_CONF=Release FL_USE_FLOAT=ON FL_CPP11=ON
+
+
+notifications:
+ email:
+ recipients:
+ - jcrada@fuzzylite.com
+ on_success: change
+ on_failure: always
diff --git a/AUTHOR b/AUTHOR
new file mode 100644
index 0000000..eb752b0
--- /dev/null
+++ b/AUTHOR
@@ -0,0 +1,3 @@
+Juan Rada-Vilela, Ph.D.
+jcrada@fuzzylite.com
+http://www.fuzzylite.com/jcrada \ No newline at end of file
diff --git a/COPYING b/COPYING
new file mode 100644
index 0000000..94a9ed0
--- /dev/null
+++ b/COPYING
@@ -0,0 +1,674 @@
+ GNU GENERAL PUBLIC LICENSE
+ Version 3, 29 June 2007
+
+ Copyright (C) 2007 Free Software Foundation, Inc. <http://fsf.org/>
+ Everyone is permitted to copy and distribute verbatim copies
+ of this license document, but changing it is not allowed.
+
+ Preamble
+
+ The GNU General Public License is a free, copyleft license for
+software and other kinds of works.
+
+ The licenses for most software and other practical works are designed
+to take away your freedom to share and change the works. By contrast,
+the GNU General Public License is intended to guarantee your freedom to
+share and change all versions of a program--to make sure it remains free
+software for all its users. We, the Free Software Foundation, use the
+GNU General Public License for most of our software; it applies also to
+any other work released this way by its authors. You can apply it to
+your programs, too.
+
+ When we speak of free software, we are referring to freedom, not
+price. Our General Public Licenses are designed to make sure that you
+have the freedom to distribute copies of free software (and charge for
+them if you wish), that you receive source code or can get it if you
+want it, that you can change the software or use pieces of it in new
+free programs, and that you know you can do these things.
+
+ To protect your rights, we need to prevent others from denying you
+these rights or asking you to surrender the rights. Therefore, you have
+certain responsibilities if you distribute copies of the software, or if
+you modify it: responsibilities to respect the freedom of others.
+
+ For example, if you distribute copies of such a program, whether
+gratis or for a fee, you must pass on to the recipients the same
+freedoms that you received. You must make sure that they, too, receive
+or can get the source code. And you must show them these terms so they
+know their rights.
+
+ Developers that use the GNU GPL protect your rights with two steps:
+(1) assert copyright on the software, and (2) offer you this License
+giving you legal permission to copy, distribute and/or modify it.
+
+ For the developers' and authors' protection, the GPL clearly explains
+that there is no warranty for this free software. For both users' and
+authors' sake, the GPL requires that modified versions be marked as
+changed, so that their problems will not be attributed erroneously to
+authors of previous versions.
+
+ Some devices are designed to deny users access to install or run
+modified versions of the software inside them, although the manufacturer
+can do so. This is fundamentally incompatible with the aim of
+protecting users' freedom to change the software. The systematic
+pattern of such abuse occurs in the area of products for individuals to
+use, which is precisely where it is most unacceptable. Therefore, we
+have designed this version of the GPL to prohibit the practice for those
+products. If such problems arise substantially in other domains, we
+stand ready to extend this provision to those domains in future versions
+of the GPL, as needed to protect the freedom of users.
+
+ Finally, every program is threatened constantly by software patents.
+States should not allow patents to restrict development and use of
+software on general-purpose computers, but in those that do, we wish to
+avoid the special danger that patents applied to a free program could
+make it effectively proprietary. To prevent this, the GPL assures that
+patents cannot be used to render the program non-free.
+
+ The precise terms and conditions for copying, distribution and
+modification follow.
+
+ TERMS AND CONDITIONS
+
+ 0. Definitions.
+
+ "This License" refers to version 3 of the GNU General Public License.
+
+ "Copyright" also means copyright-like laws that apply to other kinds of
+works, such as semiconductor masks.
+
+ "The Program" refers to any copyrightable work licensed under this
+License. Each licensee is addressed as "you". "Licensees" and
+"recipients" may be individuals or organizations.
+
+ To "modify" a work means to copy from or adapt all or part of the work
+in a fashion requiring copyright permission, other than the making of an
+exact copy. The resulting work is called a "modified version" of the
+earlier work or a work "based on" the earlier work.
+
+ A "covered work" means either the unmodified Program or a work based
+on the Program.
+
+ To "propagate" a work means to do anything with it that, without
+permission, would make you directly or secondarily liable for
+infringement under applicable copyright law, except executing it on a
+computer or modifying a private copy. Propagation includes copying,
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+public, and in some countries other activities as well.
+
+ To "convey" a work means any kind of propagation that enables other
+parties to make or receive copies. Mere interaction with a user through
+a computer network, with no transfer of a copy, is not conveying.
+
+ An interactive user interface displays "Appropriate Legal Notices"
+to the extent that it includes a convenient and prominently visible
+feature that (1) displays an appropriate copyright notice, and (2)
+tells the user that there is no warranty for the work (except to the
+extent that warranties are provided), that licensees may convey the
+work under this License, and how to view a copy of this License. If
+the interface presents a list of user commands or options, such as a
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+ 1. Source Code.
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+ The "source code" for a work means the preferred form of the work
+for making modifications to it. "Object code" means any non-source
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+can regenerate automatically from other parts of the Corresponding
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+same work.
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+in force. You may convey covered works to others for the sole purpose
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+
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+ You may convey verbatim copies of the Program's source code as you
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+recipients a copy of this License along with the Program.
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+
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+
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diff --git a/COPYING.LESSER b/COPYING.LESSER
new file mode 100644
index 0000000..65c5ca8
--- /dev/null
+++ b/COPYING.LESSER
@@ -0,0 +1,165 @@
+ GNU LESSER GENERAL PUBLIC LICENSE
+ Version 3, 29 June 2007
+
+ Copyright (C) 2007 Free Software Foundation, Inc. <http://fsf.org/>
+ Everyone is permitted to copy and distribute verbatim copies
+ of this license document, but changing it is not allowed.
+
+
+ This version of the GNU Lesser General Public License incorporates
+the terms and conditions of version 3 of the GNU General Public
+License, supplemented by the additional permissions listed below.
+
+ 0. Additional Definitions.
+
+ As used herein, "this License" refers to version 3 of the GNU Lesser
+General Public License, and the "GNU GPL" refers to version 3 of the GNU
+General Public License.
+
+ "The Library" refers to a covered work governed by this License,
+other than an Application or a Combined Work as defined below.
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+ 1. Exception to Section 3 of the GNU GPL.
+
+ You may convey a covered work under sections 3 and 4 of this License
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+ 2. Conveying Modified Versions.
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+ If you modify a copy of the Library, and, in your modifications, a
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+ 4. Combined Works.
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+ You may convey a Combined Work under terms of your choice that,
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+the following:
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+ the Library is used in it and that the Library and its use are
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+ is a work based on the Library, and explaining where to find the
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+ 6. Revised Versions of the GNU Lesser General Public License.
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+versions will be similar in spirit to the present version, but may
+differ in detail to address new problems or concerns.
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+ Each version is given a distinguishing version number. If the
+Library as you received it specifies that a certain numbered version
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+ If the Library as you received it specifies that a proxy can decide
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+Library.
diff --git a/ChangeLog b/ChangeLog
new file mode 100644
index 0000000..012623e
--- /dev/null
+++ b/ChangeLog
@@ -0,0 +1,231 @@
+Version 5.1
+* Updated `JavaExporter` to remove boolean from exported `Function.create(String name, String formula, Engine engine, boolean)`
+* Improved CMakeLists to remove errors from warnings, and exclude library rt for benchmarks
+* Moved benchmarks in `Console.cpp` to FL_CPP11 in order to get rid of rt library
+* Made most constructors `explicit`
+* FL_WINDOWS, FL_APPLE and FL_UNIX are automatically defined in `fuzzylite.h`
+* Option to prefix namespace `fl::` in class `CppExporter`
+* New methods `FclExporter::toString([[Input|Output]Variable]|RuleBlock|Norm])`
+* New methods `FclExporter::toString(Norm)`
+* Identifier FL_IOVERRIDE in SNorm and TNorm
+* New private methods `CloningFactory::register[Operators|Functions]`
+* `FisExporter` merges all ruleblocks into one
+* New `Rule::clone()` method
+* Fixed `FclImporter` exception on malformed Term
+* Made sure this version builds successfully with g++5.1
+
+
+Version 5.0
+* Modified Function::Unary and Binary to take scalar instead of double
+* Fixed building using -DFL_USE_FLOAT=ON
+* Added deductive type of Engine with Engine::type()
+* Fixed minor memory leak at RuleBlock (conjunction, disjunction, activation)
+* Fixed minor memory leak at Accumulated (accumulation, thresholded terms)
+* Fixed minor memory leak at OutputVariable (defuzzifier)
+* Fixed minor memory leak at Function::Node
+* Fixed minor memory leak at FactoryManager
+* Improved handling of Exceptions
+* Modified FclExporter and FisExporter to provide backward compatibility with FCL and FIS formats
+* Updated the FIS and FCL examples for backward compatibility
+* Included the original example files
+* Updated FLD examples produced from the engines of the original examples
+* Fixed some original examples of takagi-sugeno to use AlgebraicProduct activation
+* FldExporter no longer restarts the engine
+* Fixed rethrowing of exceptions to provide proper information about errors!
+* Catching std::exceptions where possible to avoid unexpected exceptions
+* FldExporter exports from a custom input dataset
+* Console includes option to read custom input dataset from file
+* Console provides more information about its usage
+* Renamed methods FldExporter::toWriter() to FldExporter::write()
+* Removed variable and methods for property FldExporter::maximum
+* Accuracy improvements importing fis files with large number of decimals
+* Updated FLD examples to reflect accuracy
+* Changed operation for multiple hedges to operate from last to first
+* Fixed OutputVariable to store last valid output value regardless of locks
+* Renamed Op::isNan to Op::isNaN
+* New OutputVariable::(get|set)OutputValue to store value from defuzzification
+* Changed OutputVariable::defuzzify to store its output value
+* Changed return type of scalar OutputVariable::defuzzify to void OutputVariable::defuzzify
+* Renamed OutputVariable::(get|set)LastValidOutput to OutputVariable::(get|set)LastValidOutputValue
+* Removed OutputVariable::defuzzifyNoLocks
+* Removed const from Term* Accumulated::(get|set)Accumulation
+* Added InputVariable::fuzzyInputValue and OutputVariable::fuzzyOutputValue
+* Removed defaults in Engine::configure
+* Added Engine::configure without conjuntion and disjuntion
+* Added parameter string to Engine::type
+* Changed Engine::isReady
+* Correct handling of integral defuzzification with min|max=NaN|Inf
+* Added method Rule::isLoaded to determine whether a rule is to be activated
+* Added method Rule::unload to allow existence of invalid rules
+* Added methods Engine::set((Input|Output)Variables), Engine::setRuleBlocks
+* Added method RuleBlock::setRules
+* Changed visibility of Rule::setText to public
+* Added method Rule::load(const Engine*)
+* Renamed term Thresholded to Activated
+* Renamed Thresholded::(set|get)Threshold to Activated::(set|get)Degree
+* Removed variable Rule::FL_ASSIGNS="=" and method Rule::assignsKeyword()
+* Modified original takagi-sugeno examples to reflect proper activation and accumulation
+* Moved Engine::_hedges (and methods) to Rule::_hedges
+* Renamed Antecedent::(get|set)Root to Antecedent::(get|set)Expression
+* Added (Antecedent|Consequent)::(get|set)Text
+* Added (Antecedent|Consequent)::load|unload
+* Renamed typedef Factory::Creator to Factory::Constructor
+* Added an M-file to compare output values of fuzzylite engines with Matlab
+* Removed const from Norms in RuleBlock::(get|set)(Activation|Conjunction|Disjunction)
+* Deleted method Op::repeat
+* Added built-in functions gt,lt,ge,le,eq and operator !
+* Renamed Term::copy to Term::clone in every Term
+* Added copy constructors and assignment operators to (Input|Output)Variable
+* Added copy constructors and assignment operators to Accumulated
+* Merged Function::Operator and Function::BuiltInFunction into Function::Element
+* Created FunctionFactory for Function::Elements
+* IMPORTANT: Changed starting precedence of Function::Element::Operators to 10 (refer to FunctionFactory)
+* Setters of FactoryManager no longer delete previous factories
+* Renamed Factory<T>::(register|deregister)Class to Factory<T>::(register|deregister)Constructor
+* Renamed Factory<T> to ConstructionFactory<T>
+* Created CloningFactory<T>
+* Moved functions and operators of term Function to a FunctionFactory
+* Added clone methods to Defuzzifiers, Hedges, Norms, and Terms
+* Changed Exception::btCallStack(const int) to Exception::btCallStack(void)
+* Using std::auto_ptr to (T|S)Norms in RuleBlock, SNorm in Accumulated, and Defuzzifier in OutputVariable
+* Added methods Engine::set((Input|Output)Variable) and Engine::setRuleBlock()
+* Added method RuleBlock::reloadRules()
+* Changed Linear pointers to input variables for a pointer to Engine
+* Added support to compare infinity values with fl::Op::isEq and therefore other comparison operators
+* Parameters of all terms are set to fl::nan by default
+* Added methods Engine::(input|output)Variables() and ::ruleBlocks() to return mutable references
+* Added method Variable::terms() to return mutable reference
+* Added method RuleBlock::rules() to return mutable reference
+* Added methods Ramp::direction() and Sigmoid::direction() to represent direction of slope
+* Added method fl::Op::isFinite(x) to check x is not (nan or inf)
+* Changed fl::Op::isEq(a,b) to return true if a = b = NaN
+* Added method Accumulated::terms() to return mutable reference
+* Changed visibility of Linear::coefficients to protected
+* Added methods Linear::coefficients(), Linear::setCoefficients()
+* Removed public variables Discrete::x,y
+* Added in Discrete a typedef to std::pair<scalar, scalar> Pair, and changed signatures of methods and types of their parameters
+* Changed representation of Discrete::(x,y) from std::vector<scalar> to std::vector<Pair>
+* Added methods Discrete::setXY(), Discrete::xy(), ::xy(int) to set and get new representation
+* Added methods Discrete::toPairs(std::vector<scalar>) and Discrete::toVector(std::vector<Pair>)
+* Added method Discrete::formatXY() to get pairs (x,y) nicely formatted
+* Linear term no longer throws exception when inputVariables != |coefficients|
+* Changed visibility of Function::root to protected and renamed it to Function::_root
+* Added method Function::root() to return pointer to Function::_root
+* Added option to prefix the namespace in CppExporter, by default it does not prefix
+* Added method OutputVariable::clear() to restart the output variable
+* Renamed variable OutputVariable::_lastValidOutputValue to ::_previousOutputValue
+* Renamed method OutputVariable::(get|set)LastValidOutputValue to ::(get|set)PreviousOutputValue
+* Renamed variable OutputVariable::_lockOutputRange to ::_lockOutputValueInRange
+* Renamed method OutputVariable::setLockOutputRange() to ::setLockOutputValueInRange
+* Renamed method OutputVariable::isLockingOutputRange() to ::isLockedOutputValueInRange
+* Renamed variable OutputVariable::_lockValidOutput to ::_lockPreviousOutputValue
+* Renamed method OutputVariable::setLockValidOutput() to ::setLockPreviousOutputValue
+* Renamed method OutputVariable::isLockingValidOutput() to ::isLockedPreviousOutputValue
+* Renamed FLL property 'lock-valid' to 'lock-previous'
+* Renamed FIS property 'LockValid' to 'LockPrevious'
+* Renamed FCL property 'LOCK: VALID' to 'LOCK: PREVIOUS'
+* Added method Engine::variables() to retrieve both Input and OutputVariables
+* Added method Term::updateReference(Term*, Engine*) to ensure Linear and Function terms to update references of engines
+* Added method Engine::updateReferences() to update references to the engine in its terms.
+* Added in Discrete a typedef to std::pair<scalar, scalar> Pair, and changed signatures of methods and types of their parameters
+* Added terms: Concave, Cosine and Spike
+* Renamed methods Triangle::(set|get)(A|B|C) to (set|get)(Vertex(A|B|C))
+* Renamed methods Trapezoid::(set|get)(A|B|C|D) to (set|get)(Vertex(A|B|C|D))
+* Removed method fuzzylite::configuration()
+* Renamed MACRO FL_DEBUG to FL_DBG
+* Renamed MACRO (FL_BEGIN_DEBUG_BLOCK and FL_END_DEBUG_BLOCK) to (FL_DEBUG_BEGIN and FL_DEBUG_END)
+* Renamed methods in (Fis|Fcl)Importers::extract? to ::parse?
+* Made defaultResolution a static property of IntegralDefuzzifiers
+* Added method Engine::type(name, reason) to show type and reason why type
+* Added method Engine::clone()
+* Added support for Tsukamoto with Concave terms
+* Changed Accumulated to take Activated* terms instead of const Terms*
+* Deleted class Tsukamoto
+* Created class WeightedDefuzzifier from which Weighted(Average|Sum) derive with options: Automatic|TakagiSugeno|Tsukamoto
+* Added methods WeightedDefuzzifier::tsukamoto() and ::inferType()
+* Added benchmarks for fuzzylite in Linux
+* Created the FuzzyLite Interactive Console
+* Added basic rule chaining such that Output Variables can be utilized as antecedents
+* Added two examples for rule chaining: mamdani/Laundry.fll and mamdani/SimpleDimmerInverse.fll
+* Added Term::(get|set)Height and changed all terms accordingly
+* Renamed method Op::makeValidId to Op::validName, which now returns "unnamed" for empty strings.
+* Converted examples/original/*.fis to examples/original/*.fll
+* Removed Exception Specification from methods in Discrete, Linear and Function terms
+* Changed name of debug libraries to fuzzylited.dll and fuzzylite-staticd.lib
+* Removed method Operation::toScalar(std::string, bool, scalar)
+* Added method Operation::toScalar(std::string) [throws Exception], and ::toScalar(std::string, scalar alternative) throw()
+* Added method ImEx::(from|to)File to import and export engines using files
+* WeightedAverage and WeightedSum without Activation operators have default behaviour, i.e., AlgebraicProduct
+* FactoryManager utilizes smart pointers.
+* Rule utilizes smart pointers for Antecedent and Consequent
+* Exceptions are thrown when Conjunction, Disjunction, Activation and Accumulation operators are NULL when they are required
+* Exception is thrown when Defuzzifier is required and not set.
+* Added support for C++11 utilizing smart pointers, identifiers (override, noexcept), and delete identifiers to DISABLE_COPY(Class)
+* Macros for identifiers are FL_IOVERRIDE, FL_IFINAL, FL_IDEFAULT, FL_IDELETE, and FL_INOEXCEPT (fl/fuzzylite.h)
+* Added macro FL_unique_ptr to refer to std::auto_ptr (C++98) or std::unique_ptr (C++11), and its respective FL_move_ptr(x) to move a smart pointer.
+* Added constant fl::null to refer to 0L (C++98) or nullptr (C++11)
+* Added macros FL_DEFAULT_COPY(Class), FL_DEFAULT_MOVE(Class), and FL_DEFAULT_COPY_AND_MOVE(Class) for default copy and move constructors and operators
+* Added build.sh to build fuzzylite
+* Changed default to fuzzylite::_macheps = 1e-6;
+* Renamed macro FL_EXPORTS to FL_API
+* Added macro FL_SHARED_LIBRARY and FL_STATIC_LIBRARY to be defined when building shared and static libraries
+
+
+Version 4.0
+* FuzzyRule merged with Rule, and FuzzyRule deleted.
+* FuzzyAntecedent merged with Antecedent, and FuzzyAntecedent deleted
+* FuzzyConsequent merged with Consequent, and FuzzyConsequent deleted
+* FuzzyExpression renamed Expression
+* Renamed Rule::get/setUnparsedRule to get/setText
+* Renamed RuleBlock::get/set(Tnorm|Snorm) to get/set(Conjunction|Disjunction)
+* Renamed RuleBlock::fireRules to activate
+* Renamed Rule::fireStrength to activationDegree, fire to activate
+* Renamed Consequent::fire to modify
+* Created IntegralDefuzzifier to extract divisions from Defuzzifier
+* Renamed divisions from IntegralDefuzzifier to resolution, FL_DIVISIONS to FL_RESOLUTION
+* Deleted MaximumDefuzzifier
+* Centroid, Bisector, and Largest/Smallest/Mean Defuzzifiers inherit from IntegralDefuzzifier
+* Changed names of arithmetic operations in fl::Operation
+* Renamed Function::get/set(Infix) to get/set(Formula)
+* Renamed InputVariable::get/set(Input) to get/set(InputValue)
+* Renamed Antecedent::firingStrength to activationDegree
+* Renamed Antecedent::toString/(Prefix,Infix,Postfix) to to/(Prefix,Infix,Postfix)
+* Renamed Rule::FL_ASSIGN to Rule::FL_EQUALS
+* New method restart in Engine
+* New methods Engine::setInputValue(name, value), scalar Engine::getOutputValue(name)
+* Renamed Op::str(vector/varargs) to Op::join(vector/varargs)
+* Refactored associtativity, unary and binary properties in Element within Function
+* Removed unnecessary Hedges creation upon importing engines, now is automatic via Factories
+* Created the JavaExporter
+* Renamed methods within Fis/Fcl/CppExporter to toString(*);
+* Extracted TNorms and SNorms from TNorm.h/cpp and SNorm.h/cpp
+* Created proper Factories with registration of classes and constructors
+* Renamed method Factory::create to Factory::createInstance
+* Added static constructor method to every Defuzzifier, Hedge, TNorm, and SNorm
+* Removed FL_PRECISION, FL_DECIMALS as Macros, and created static variables in fuzzylite.h
+* Renamed FL_PRECISION to macheps, i.e., machine epsilon to differentiate real numbers
+* Removed FL_DEBUG and created a static variable in fuzzylite.h
+* Removed FL_NO_LOG as it is now controlled with fuzzylite::logging(), previously named logEnabled()
+* Libraries and Console application are both built in folder bin/ (previously libraries were at lib/)
+* Removed Engine::toStringFis/Fcl/Cpp to encourage use of Fcl/Fis/CppExporters instead
+* Renamed Op::logical_and to Op::logicalAnd, Op::logical_or to Op::logicalOr
+* Added support to Fis/FclImporters to treat comments (%,#,//,/*) in fis and fcl files
+* Created the Console application instead of previous demo
+* Added Variable::range() to return (maximum - minimum)
+* Removed Variable::isEmpty, use Variable::terms().empty()
+* Removed RuleBlock::isEmpty, use RuleBlock::rules().empty()
+* Created method Op::makeValidId to ensure names are valid
+* Engine, Variable and Term::toString return FllExport::toString
+* Created Term::parameters to return list of parameter values as string separated by spaces
+* Created Term::configure to configure from Term::parameters
+* FclImEx import and export terms using Term::parameters
+* Created the FuzzyLite Language in FllImporter and FllExporter
+* Created the FuzzyLite Dataset FldExporter
+* Added property Enable to Engine, Variable and RuleBlock
+* Extended FCL and FIS to consider Enabled properties
+* Changed Engine::defuzzify() to consider enabled variables
+* Changed Engine::process() to consider enabled rule blocks
+* Changed OutputVariable::output() to OutputVariable::fuzzyOutput()
+* Renamed Rectangle::minimum/maximum to Rectangle::start/end
+* Renamed fuzzylite::shortVersion to fuzzylite::version
+* Improved accuracy of Triangle and Trapezoid
diff --git a/INSTALL b/INSTALL
new file mode 100644
index 0000000..856303e
--- /dev/null
+++ b/INSTALL
@@ -0,0 +1,32 @@
+INSTALL
+=======
+
+(1) Make sure you uninstall previous versions of fuzzylite from your computer.
+
+(2) The following building script is available in folder `fuzzylite/fuzzylite/`:
+```
+#In Windows,
+> build.bat help
+Usage: build.bat [options]
+where [options] can be any of the following:
+ all builds fuzzylite in debug and release mode (default)
+ debug builds fuzzylite in debug mode
+ release builds fuzzylite in release mode
+ clean erases previous builds
+ help shows this information
+
+#In Unix, from fuzzylite/fuzzylite
+$ ./build.sh help
+Usage: [bash] ./build.sh [options]
+where [options] can be any of the following:
+ all builds fuzzylite in debug and release mode (default)
+ debug builds fuzzylite in debug mode
+ release builds fuzzylite in release mode
+ clean erases previous builds
+ help shows this information
+```
+
+(3) After executing the script, the binaries will be built and stored in sub-folders `release/bin` and `debug/bin`
+
+
+For more advanced building options, please check the contents of `fuzzylite/fuzzylite/build.[bat|sh]` and the contents of `fuzzylite/fuzzylite/CMakeLists.txt`.
diff --git a/LICENSE b/LICENSE
new file mode 100644
index 0000000..65c5ca8
--- /dev/null
+++ b/LICENSE
@@ -0,0 +1,165 @@
+ GNU LESSER GENERAL PUBLIC LICENSE
+ Version 3, 29 June 2007
+
+ Copyright (C) 2007 Free Software Foundation, Inc. <http://fsf.org/>
+ Everyone is permitted to copy and distribute verbatim copies
+ of this license document, but changing it is not allowed.
+
+
+ This version of the GNU Lesser General Public License incorporates
+the terms and conditions of version 3 of the GNU General Public
+License, supplemented by the additional permissions listed below.
+
+ 0. Additional Definitions.
+
+ As used herein, "this License" refers to version 3 of the GNU Lesser
+General Public License, and the "GNU GPL" refers to version 3 of the GNU
+General Public License.
+
+ "The Library" refers to a covered work governed by this License,
+other than an Application or a Combined Work as defined below.
+
+ An "Application" is any work that makes use of an interface provided
+by the Library, but which is not otherwise based on the Library.
+Defining a subclass of a class defined by the Library is deemed a mode
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+ The "Corresponding Application Code" for a Combined Work means the
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+ 1. Exception to Section 3 of the GNU GPL.
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+ You may convey a covered work under sections 3 and 4 of this License
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+ 2. Conveying Modified Versions.
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+ If you modify a copy of the Library, and, in your modifications, a
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+ 3. Object Code Incorporating Material from Library Header Files.
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+ The object code form of an Application may incorporate material from
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+
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+ is a work based on the Library, and explaining where to find the
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+
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+
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diff --git a/NEWS b/NEWS
new file mode 100644
index 0000000..daa131e
--- /dev/null
+++ b/NEWS
@@ -0,0 +1,317 @@
+Extracted from [README.md](/README.md)
+================================================
+
+
+### <a name="features">Features</a>
+
+**Controllers** *Types* (5) Mamdani, Takagi-Sugeno, Larsen, Tsukamoto, Inverse Tsukamoto
+
+**Linguistic terms** *Basic* (4) triangle, trapezoid, rectangle, discrete. *Extended* (9) bell, cosine, gaussian, gaussian product, pi-shape, sigmoid difference, sigmoid product, spike. *Edges* (4) concave, ramp, sigmoid, s-shape, z-shape. *Functions* (3) constant, linear, function.
+
+**Conjunction and Activation** *T-Norm* (7) minimum, algebraic product, bounded difference, drastic product, einstein product, hamacher product, nilpotent minimum.
+
+**Disjunction and Accumulation** *S-Norm* (8) maximum, algebraic sum, bounded sum, normalized sum, drastic sum, einstein sum, hamacher sum, nilpotent maximum.
+
+**Defuzzifiers** *Integral* (5) centroid, bisector, smallest of maximum, largest of maximum, mean of maximum, *Weighted* (2) weighted average, weighted sum.
+
+**Hedges** *Types* (6) any, not, extremely, seldom, somewhat, very.
+
+**Import** *Types* (3) FuzzyLite Language `fll`, Fuzzy Inference System `fis`, Fuzzy Control Language `fcl`.
+
+**Export** *Types* (6) `C++`, `Java`, FuzzyLite Language `fll`, FuzzyLite Dataset `fld`, Fuzzy Inference System `fis`, Fuzzy Control Language `fcl`.
+
+**Examples** (30+) of Mamdani, Takagi-Sugeno and Tsukamoto controllers from `fuzzylite`, Octave and Matlab, each included in the following formats: `C++`, `Java`, `fll`, `fld`, `fis`, and `fcl`.
+
+***
+
+### <a name="example">Example</a>
+
+```cpp
+#include "fl/Headers.h"
+
+int main(int argc, char* argv[]){
+ using namespace fl;
+ Engine* engine = new Engine("simple-dimmer");
+
+ InputVariable* ambient = new InputVariable;
+ ambient->setName("Ambient");
+ ambient->setRange(0.000, 1.000);
+ ambient->addTerm(new Triangle("DARK", 0.000, 0.500));
+ ambient->addTerm(new Triangle("MEDIUM", 0.250, 0.750));
+ ambient->addTerm(new Triangle("BRIGHT", 0.500, 1.000));
+ engine->addInputVariable(ambient);
+
+ OutputVariable* power = new OutputVariable;
+ power->setName("Power");
+ power->setRange(0.000, 2.000);
+ power->setDefaultValue(fl::nan);
+ power->addTerm(new Triangle("LOW", 0.000, 1.000));
+ power->addTerm(new Triangle("MEDIUM", 0.500, 1.500));
+ power->addTerm(new Triangle("HIGH", 1.000, 2.000));
+ engine->addOutputVariable(power);
+
+ RuleBlock* ruleblock = new RuleBlock;
+ ruleblock->addRule(Rule::parse("if Ambient is DARK then Power is HIGH", engine));
+ ruleblock->addRule(Rule::parse("if Ambient is MEDIUM then Power is MEDIUM", engine));
+ ruleblock->addRule(Rule::parse("if Ambient is BRIGHT then Power is LOW", engine));
+ engine->addRuleBlock(ruleblock);
+
+ engine->configure("", "", "Minimum", "Maximum", "Centroid");
+
+ std::string status;
+ if (not engine->isReady(&status))
+ throw Exception("Engine not ready. "
+ "The following errors were encountered:\n" + status, FL_AT);
+
+ for (int i = 0; i < 50; ++i){
+ scalar light = ambient->getMinimum() + i * (ambient->range() / 50);
+ ambient->setInputValue(light);
+ engine->process();
+ FL_LOG("Ambient.input = " << Op::str(light) << " -> " <<
+ "Power.output = " << Op::str(power->getOutputValue()));
+ }
+}
+```
+
+***
+
+### <a name="whatsnew">What's New?</a>
+The entire `fuzzylite` library has been thoroughly revised, refactored, validated, and significantly improved. The following sections detail the changes and enhancements of version 5.0. Users of previous versions are **strongly** encouraged to carefully read the list before migrating to version 5.0. Important changes and enhancements are marked as **(important)**, **(VERY important)** and **(EXTREMELY important)**.
+
+#### <a name="new-general">General</a>
++ **(important)** `fuzzylite v5.0` is dual-licensed under the [GNU LGPL v3.0](https://www.gnu.org/licenses/lgpl.html) and a paid commercial license.
++ Support for both `C++98` and `C++11` using the latest features.
++ Support for multiple compilers `g++`, `Clang`, `MSVC`.
++ Refactoring of many classes to improve design and performance.
++ **(important)** Performance improvements of Takagi-Sugeno controllers by over 55% with respect to v4.0 (estimate based on the average performance on the examples included).
++ Smart pointers in many classes take care of automatically deleting objects when setting new pointers (`Accumulated`, `FactoryManager`, `Function`, `OutputVariable`, `Rule`, and `RuleBlock`).
+* **(important)** Exceptions are thrown when any of the following `RuleBlock::[conjunction|disjunction|activation]`, `Accumulated::accumulation`, and `OutputVariable::defuzzifier` are required but set to `fl::null`, thereby replacing the operations that would lead to `[signal 11] Segmentation fault` to operations that throw a `fl::Exception` instead.
++ Automatic build script to build `fuzzylite` in `debug` and `release` mode.
++ Binaries of debug libraries are renamed to append the letter `d` (e.g.,`fuzzylited.dll`, `libfuzzylited.so`).
++ **(important)** New file [`fuzzylite/src/m/compare.m`](/fuzzylite/src/m/compare.m) <!---check link--> to compare the output values of your `fuzzylite` engines with the evaluation of the same engine in Octave/Matlab.
++ **(important)** There is practically no difference between the output values obtained with `fuzzylite` and those obtained with Octave/Matlab. Based on the examples, the average mean square error (MSE) between the output values is less than `7.3e-12` (or `0.0000000000073`) due to negligible differences in floating-point arithmetic. The results and comparison can be found in [`examples/examples.mat`](/examples/examples.mat) <!---check link-->.
++ **(important)** Source code of applications based on version 4.0 will most likely not compile with version 5.0.
++ Minor bugs and memory leaks fixed.
+
+####<a name="new-macros">Macros</a>
+* **(important)** Added support for `C++11` with smart pointers, method identifiers, move constructors and move operators as follows. For precise information, refer to file [`fuzzylite/fl/fuzzylite.h`](/fuzzylite/fl/fuzzylite.h). <!---check link-->
+* **(important)** Macros for identifiers are defined as `FL_IOVERRIDE override`, `FL_IFINAL final`, `FL_IDEFAULT = default`, `FL_IDELETE = delete`, `FL_INOEXCEPT noexcept`, `FL_DEFAULT_COPY(Class)`, `FL_DEFAULT_MOVE(Class)`, and `FL_DEFAULT_COPY_AND_MOVE(Class)`.
+* **(important)** Added macro `FL_unique_ptr` to refer to `std::auto_ptr` (`C++98`) or `std::unique_ptr` (`C++11`), and its respective `FL_move_ptr(x)` to move a smart pointer, albeit `FL_move_ptr(x)` is not used within the library as it is not needed.
+* **(important)** Added global variables `const long fl::null = 0L` to refer to the null pointer in `C++98` and `const std::nullptr_t null = nullptr` to refer to the null pointer in `C++11`.
+* **(important)** Renamed macro `FL_DEBUG` to `FL_DBG`.
+* **(important)** Renamed macros `FL_BEGIN_DEBUG_BLOCK` and `FL_END_DEBUG_BLOCK` to `FL_DEBUG_BEGIN` and `FL_DEBUG_END`, respectively.
+* **(important)** Renamed macro `FL_EXPORT` to `FL_API`
+* **(EXTREMELY important)** Added macro definitions `FL_EXPORT_LIBRARY` and `FL_IMPORT_LIBRARY`. If you are building `fuzzylite` as a **shared library**, you need to define `FL_EXPORT_LIBRARY`. If you are building `fuzzylite` **executable** *and* it utilizes the `fuzzylite` **shared library**, you need to define `FL_IMPORT_LIBRARY`. If you are building `fuzzylite` as a **static library** and/or building `fuzzylite` **executable** using the `fuzzylite` **static library**, then you do not need to define either `FL_[IMPORT|EXPORT]_LIBRARY`. Note that the same conditions apply for your application. This is particularly important in Windows platforms, as `FL_IMPORT_LIBRARY` and `FL_EXPORT_LIBRARY` define `FL_API` to `__declspec(dllimport)` and `__declspec(dllexport)`, respectively. If in doubt, please check [`fuzzylite/CMakeLists.txt`](/fuzzylite/CMakeLists.txt)<!---check link-->
+
+#### <a name="new-operation">Operation</a>
+* **(important)** Added method `Operation::toScalar(std::string x, scalar alternative) FL_INOEXCEPT` which returns `alternative` if `x` is not a valid `scalar`, and never throws an exception.
+* **(important)** Added method `Operation::toScalar(std::string x)` that returns the scalar value of `x` or throws a `fl::Exception` if `x` is not a valid `scalar`.
+* **(VERY important)** Marked method (from v4.0) `Operation::toScalar(std::string, bool, scalar) FL_IDELETE;` and removed its implementation such that its usage is prevented at compile time in `C++11` and at linker time in `C++98`. Please, use the appropriate `Op::toScalar` methods mentioned above.
++ Renamed method `Op::isNan` to `Op::isNaN`.
+* Added method `fl::Op::isFinite(x)` which returns `not (isNaN(x) or isInf(x))`.
+* Changed `fl::Op::isEq(a,b)` to return `true` if `a == b == NaN`.
+* Changed `fl::Op::isEq(a,b)` to return `true` if `a == b == Inf`.
+* Changes to `fl::Op::isEq` affect other comparison methods `fl::Op::is[Lt|LEq|GEq|Gt]`.
+* Added shortcuts of comparisons `fl::Op::[gt,lt,ge,le,eq,neq](scalar a, scalar b)`, mostly to provide binary versions (without `macheps`) for term `Function`.
+* Deleted method `Op::repeat`.
+* Removed method `fuzzylite::configuration()`.
+* Changed default `fuzzylite::_macheps = 1e-6;`.
+* Renamed method `Op::makeValidId` to `Op::validName`, which now returns `"unnamed"` for empty strings.
+
+
+
+####<a name="new-engine">Engine</a>
+* **(VERY important)** Moved `Engine::hedges` (and relevant methods) to `Rule::hedges`.
+* Added enumeration for the type of engine: `enum Engine::Type{Mamdani, Larsen, TakagiSugeno, Tsukamoto, InverseTsukamoto, Hybrid, Unknown}`.
+* Added method `Type Engine::type(std::string* name, std::string* reason)` to infer the type of the engine based on its configuration, additionally provides the name of the type and the inference reasons for its type.
+* **(important)** Changed method `Engine::isReady(std::string)` to satisfy the default operation of controllers. The method `Engine::isReady(std::string)` was initially conceived to provide information before a potential `[signal 11] Segmentation fault` happened due to improper configuration. However, given the improved handling of signals and exceptions mentioned in Section [General](#new-general), using method `Engine::isReady(std::string)` is not necessary except for providing suggestions of what could potentially cause an error.
+* Added methods `Engine::set[Input|Output]Variables(std::vector)` and `Engine::setRuleBlocks(std::vector)`.
+* Added methods `Engine::[input|output]Variables()` and `Engine::ruleBlocks()` to return mutable references.
+* Added method `Engine::variables()` to retrieve a vector (copy) containing the `InputVariables` followed by the `OutputVariables`.
+* Added method `Engine::updateReferences()` to update the references to the engine in all the necessary linguistic terms (i.e., `Linear` and `Function`).
+* Added method `Engine::clone()`.
+* Added copy constructors, assignment operators, and default move constructor to `Engine`.
+
+
+
+####<a name="new-inoutvars">Input Variables and Output Variables</a>
+* **(important)** Added methods `OutputVariable::[get|set]OutputValue()` to [retrieve|store] value from defuzzification
+* **(important)** Changed return type of `scalar OutputVariable::defuzzify()` to `void OutputVariable::defuzzify()` because now it automatically stores the defuzzified output value, and also stores the previous *valid* output value regardless of locks. Like in version 4.0, if `OutputVariable::lockPreviousOutputValue=true`, and the defuzzified output value is not valid (i.e., `[NaN|Inf]`) or no rules were activated, then the defuzzified output value is replaced for the previous valid output value.
+* Removed method `OutputVariable::defuzzifyNoLocks()`.
+* Renamed variable `OutputVariable::lastValidOutputValue` to `OutputVariable::previousOutputValue`.
+* **(important)** Renamed method `OutputVariable::[get|set]LastValidOutput()` to `OutputVariable::[get|set]PreviousOutputValue()`.
+* Renamed variable `OutputVariable::lockValidOutput` to `OutputVariable::lockPreviousOutputValue`.
+* **(important)** Renamed method `OutputVariable::setLockValidOutput()` to `OutputVariable::setLockPreviousOutputValue()`.
+* **(important)** Renamed method `OutputVariable::isLockingValidOutput()` to `OutputVariable::isLockedPreviousOutputValue()`.
+* Renamed variable `OutputVariable::lockOutputRange` to `OutputVariable::lockOutputValueInRange`.
+* **(important)** Renamed method `OutputVariable::setLockOutputRange()` to `OutputVariable::setLockOutputValueInRange()`.
+* **(important)** Renamed method `OutputVariable::isLockingOutputRange()` to `OutputVariable::isLockedOutputValueInRange()`.
+* Added methods `std::string InputVariable::fuzzyInputValue()` and `std::string OutputVariable::fuzzyOutputValue()`.
+* Added method `OutputVariable::clear()` to clear the fuzzy output, and set `OutputVariable::previousOutputValue = fl::nan` and set `OutputVariable::outputValue = fl::nan`.
+* Added copy constructors, assignment operators, move constructors and move operators to [Input|Output]Variable.
+* Added method `Variable::terms()` to return mutable reference.
+* **(important)** Changed `OutputVariable::[defuzzifier|fuzzyOutput]` to smart pointers (`FL_unique_ptr`).
+
+
+#### <a name="new-terms">Linguistic Terms</a>
+* **(VERY important)** Added Term::[get|set]Height to define the height of *integral* terms, and multiply their respective membership functions accordingly.
+* Added copy constructors, assignment operators, move constructors and move operators to every `Term`.
+* **(VERY important)** Parameters of all terms are set by default to `fl::nan`.
+* **(important)** Renamed method `Term::copy()` to `Term::clone()` in every `Term`.
+* Added method `Term::updateReference(Term*, Engine*)` to ensure `Linear` and `Function` terms have updated pointers to the `Engine` (useful when cloning and copy-constructing).
++ **(important)** Added linguistic terms `Concave`, `Cosine` and `Spike`.
+* **(important)** Changed `Accumulated` to take `Activated*` terms instead of `const Terms*`.
+* Removed `const` from return type of method `SNorm* Accumulated::[get|set]Accumulation()`.
+* Changed `Accumulated::accumulation` to a smart pointer (`FL_unique_ptr`).
+* Added method `Accumulated::terms()` to return mutable reference.
+* **(important)** Renamed methods `Triangle::[set|get][A|B|C]` to `::[set|get]Vertex[A|B|C]`.
+* **(important)** Renamed methods `Trapezoid::[set|get][A|B|C|D]` to `::[set|get]Vertex[A|B|C|D]`.
+* **(important)** Renamed term `Thresholded` to `Activated`.
+* **(important)** Renamed methods `Thresholded::[set|get]Threshold()` to `Activated::[set|get]Degree()`.
+* Added enumeration `[Ramp|Sigmoid]::Direction{ NEGATIVE, ZERO, POSITIVE }` to refer to the slope.
+* Added methods `Ramp::direction()` and `Sigmoid::direction()` to retrieve direction of slope.
+* Removed Exception Specification from methods in `Discrete`, `Linear` and `Function` terms.
+
+#### <a name="new-linear-discrete">Linear and Discrete Terms</a>
+* **(important)** Changed `Linear` from having pointers to the input variables to having a pointer to the `Engine`.
+* Changed visibility of `Linear::coefficients` to `protected`.
+* **(important)** Added methods `Linear::coefficients()`, `Linear::setCoefficients()`.
+* `Linear` term no longer throws exception when `inputVariables != |coefficients|`.
+* **(important)** Removed public vector of variables `Discrete::[x|y]`.
+* **(important)** Added a `typedef std::pair<scalar, scalar> Discrete::Pair`.
+* **(important)** Changed representation of `Discrete::[x|y]` from `std::vector<scalar>` to `std::vector<Discrete::Pair>`.
+* Added methods `Discrete::setXY()` and `Discrete::xy()` to set and get the new representation of pairs.
+* Added methods `Discrete::xy(int index)` to retrieve `Discrete::Pair` at `index`.
+* **(important)** Added methods `Discrete::toPairs(std::vector<scalar>)` which throws an exception if the vector is missing a value (i.e., `std::vector<scalar>.size() % 2 != 0`), and `Discrete::toPairs(std::vector<scalar>, scalar missingValue)` which adds `missingValue` in case `std::vector<scalar>.size() %2 == 1`, hence never throwing an exception.
+* Added method `Discrete::toVector(std::vector<Discrete::Pair>)` to convert `std::vector<Discrete::Pair>` to a `std::vector<scalar>`.
+* Added method `Discrete::formatXY()` to get pairs `(x,y)` nicely formatted.
+
+####<a name="new-function">Function Term</a>
+* **(important)** Merged structs `Function::Operator` and `Function::BuiltInFunction` into a single `struct Function::Element`.
+* **(EXTREMELY important)** Changed the precedence of all built-in instances of `Function::Element` of type `Operator` starting from `100` and decreasing by `10`. The precedence of built-in operators is the following: `(100)` Logical not `[!]` and Negation `[~]`; `(90)` Power `[^]`; `(80)` Multiplication `[*]`, Division `[/]` and Modulo `[%]`; `(70)` Addition `[+]` and Subtraction `[-]`; `(60)` Logical AND `[and]` and Logical OR `[or]`. If you have registered your own operators, please adjust their precedence as required.
+* Added to `Function` built-in comparison functions `gt,lt,ge,le,eq` and operator logical not `!`.
+* Modified typedefs `Function::Unary` and `Function::Binary` to take `scalar` instead of `double`.
+* Changed `public Function::root` to `protected Function::_root` and it is now a smart pointer (`FL_unique_ptr`).
+* Added method `Function::root()` to return pointer to `Function::root`.
+* **(EXTREMELY important)** Moved built-in functions and operators from `Function` to a `FunctionFactory`.
+
+
+#### <a name="new-norms-hedges">[T|S]Norms and Hedges</a>
++ **(important)** Fixed operation when using multiple hedges to operate from right-most to left-most, e.g. `if Ambient is not very extremely bright`, now evaluates as follows `not(very(extremely(bright)))`.
++ Added `TNorm` nilpotent minimum and `SNorm` nilpotent maximum.
+* Added clone methods to every `Norm`.
+* Added clone methods to every `Hedge`.
+* **(VERY important)** Moved `Engine::hedges` to `Rule::hedges`.
+
+
+#### <a name="new-rules">Rules</a>
+* **(VERY important)** Moved `Engine::hedges` (and methods) to `Rule::hedges`.
+* Added method `Rule::isLoaded()` to determine whether a rule was properly parsed and thus can be activated.
+* Added method `Rule::unload()` to allow the existence of a rule in an inactive state (useful for invalid rules).
+* **(important)** Removed variable `Rule::FL_ASSIGNS` and method `Rule::assignsKeyword()`, for which the symbol `=` in rules is no longer valid.
+* Changed visibility of method `Rule::setText()` to `public`.
+* Added method `Rule::load(const Engine*)`.
+* Changed `Rule::[antecedent|consequent]` to smart pointers (`FL_unique_ptr`).
+* **(important)** Renamed method `Antecedent::[get|set]Root()` to `Antecedent::[get|set]Expression()`.
+* Added methods `[Antecedent|Consequent]::[get|set]Text()`.
+* **(important)** Added methods `[Antecedent|Consequent]::[load|unload]()`, with the same objective as `Rule::[load|unload]()`.
+
+#### <a name="new-ruleblocks">Rule Blocks</a>
+* Added method `RuleBlock::reloadRules()`.
+* Added method `RuleBlock::setRules(std::vector)`.
+* Added method `RuleBlock::rules()` to return mutable reference.
+* Removed `const` from `TNorm` and `SNorm` in `RuleBlock::[get|set][Conjunction|Disjunction|Activation]()`, respectively.
+* Changed `RuleBlock::[conjunction|disjunction|activation]` to smart pointers (`FL_unique_ptr`).
+* **(VERY important)** Added basic rule chaining such that an `OutputVariable` can be utilized in the `Antecedent` of a `Rule`. For example, considering the rule `if Power is high then InversePower is low`, where `Power` and `InversePower` are both output variables, the activation degree of the `Antecedent` will correspond to the accumulated activation degree of the term `high` in the fuzzy output of `Power`. If `Power::accumulation = none`, the accumulated activation degree of the term `high` will be computed as the regular sum of the activation degrees of term `high` in the fuzzy output of `Power`. Otherwise, the accumulated activation degree is computed utilizing the `Power::accumulation` operator.
+
+
+#### <a name="new-weighted">Weighted Defuzzifiers</a>
++ **(VERY important)** Performance improvements of Takagi-Sugeno controllers by over 55% (with respect to v4.0) based on the average performance on the examples included.
+* **(important)** Created class `WeightedDefuzzifier` from which classes `Weighted[Average|Sum]` are derived.
+* **(important)** Added enumeration `WeightedDefuzzifier::Type{Automatic, TakagiSugeno, Tsukamoto}` and respective methods `WeightedDefuzzifier::[get|set]Type()` and `WeightedDefuzzifer::getTypeName()`.
+* Added method `WeightedDefuzzifier::inferType(Term*)` to automatically determine the `WeightedDefuzzifier::Type` based on the class of `Term`.
+* **(important)** By default, `WeightedDefuzzifier::type = Automatic`, which automatically infers the type based on the `WeightedDefuzzifier::inferType()`.
+* **(important)** There is a small performance penalty when using `WeightedDefuzzifier::type = Automatic` because `WeightedDefuzzifier::inferType()` performs three `dynamic_cast<>`.
+* **(important)** Deleted class `Tsukamoto`. Its method `static tsukamoto()` was moved to `virtual WeightedDefuzzifier::tsukamoto()`, which allows overriding it
+* Added support for `Tsukamoto` with `Concave` terms.
++ **(EXTREMELY important)** In version 5.0, the traditional operation of Takagi-Sugeno and Tsukamoto controllers is achieved by setting `OutputVariable::accumulation = none`. Unlike version 4.0, the `RuleBlock::activation` will not have any effect on Takagi-Sugeno nor Tsukamoto controllers, for which `RuleBlock::activation` should also be set to `none`. More information about the roles of the `OutputVariable::accumulation` and `RuleBlock::activation` operators are detailed as follows. Refer to [sciweavers](http://www.sciweavers.org/free-online-latex-equation-editor) to convert LaTeX equations.
++ **(VERY important)** In version 5.0, the role of the `RuleBlock::activation` `TNorm` on the `Weighted[Average|Sum]` always performs a regular multiplication of the weights and the values (i.e., $w_i \times z_j$) regardless of the `TNorm` chosen. In other words, selecting any `RuleBlock::activation` for `Weighted[Average|Sum]` is irrelevant, and should be set to `none` as every `TNorm` will have the same multiplication effect. This operation is different from `fuzzylite` version 4.0, where the `RuleBlock::activation` operator was utilized to multiply the weights and values (i.e. $w_i \otimes z_j$), and therefore the traditional operation of the `Weighted[Average|Sum]` was achieved when `RuleBlock::activation = AlgebraicProduct;`.
++ **(VERY important)** In version 5.0, the role of the `OutputVariable::accumulation = none` on the `Weighted[Average|Sum]` results in a regular sum of the multiplied weights and values, i.e., $\dfrac{\sum_i^n w_i \times z_j}{\sum_i^n w_i}$. However, if the `OutputVariable::accumulation != none`, the role of the `SNorm` will be to accumulate the activation degrees of the *repeated* terms in the fuzzy output of the variable. For example, considering the rules `if Ambient is dark then Power is high` and `if Ambient is medium then Power is high`, for any input value of `Ambient` that activates both rules, the fuzzy output of `Power` will have the term `high` activated with the degree from `Rule 1`, and the term `high` activated with the degree from `Rule 2`. Since the term `high` appears twice in the fuzzy output, the role of the accumulation operator will be to accumulate the activation degree of `high` resulting in $\dfrac{(w_1 \oplus w_2) \times z_{high}}{(w_1 \oplus w_2)}$. If another term were activated, the result would be $\dfrac{(w_1 \oplus w_2) \times z_{high} + w_i \times z_j}{(w_1 \oplus w_2) + w_i}$. In version 4.0, the accumulation operator had no effect on the `Weighted[Average|Sum]`.
+
+
+
+#### <a name="new-integral">Integral Defuzzifiers</a>
+* **(important)** Proper handling of indefinite integral defuzzification, that is, returning `fl::nan` when `[minimum|maximum]=[NaN|Inf]`.
+* Default resolution of integration is defined as `static int IntegralDefuzzifier::defaultResolution=200`, and can be changed via `static IntegralDefuzzifier::setDefaultResolution()`.
++ **(important)** In `fuzzylite`, the accumulation operator has been for several versions associated with the output variables and **not** with the rule blocks, despite that the FCL format and other fuzzy logic control libraries associate the accumulation operator with the rule blocks. The argument for such a decision is that `fuzzylite` provides **coherent** support for multiple rule blocks operating on the same engine and on the same output variables. For example, if multiple rule blocks operate on the same output variables, it only makes sense to have a single accumulation operator associated with each output variable such that the defuzzifier can naturally operate over the accumulated fuzzy output. Differently, if the accumulation operator were associated with the rule block, the possibility of having different accumulation operators in different rule blocks questions (1) **the possibility of having multiple rule blocks operating over the same output variables**; and (2) **the usage of different accumulation operators over the accumulation and defuzzification processes**. Certainly, if (1) is not possible, i.e, different rule blocks only operate on different output variables, then (2) is not a problem because the accumulation process and defuzzification of each variable will only have a single accumulation operator. It is therefore that the association of the accumulation operator with the output variable in `fuzzylite` provides a **better design** and an additional feature that allows having multiple rule blocks operating over the same output variables.
+* Added copy constructors, assignment operators, move constructors and move operators.
+* Added method `Defuzzifier::clone()`.
+
+####<a name="new-imex">Importers and Exporters</a>
+* **(EXTREMELY important)** Since terms have a new `height` property, `[Fll|Fis|Fcl]Exporter` exports terms with an additional `scalar` at the end, which indicates the `height` of the term. However, if `height=1.0`, the additional scalar is not exported.
+* **(EXTREMELY important)** In `[Fll|Fis|Fcl]Importer`, when importing terms, if there is an additional `scalar` it will be assumed as the `height` of the term. For example, `term: high Gaussian 1.0 0.5 0.75` will create a `Gaussian` term with mean `1.0`, standard deviation `0.5` and height `0.75`. This is **extremely important** because there are some examples from Matlab in `fis` format that append a useless `0.0` to some terms.
+* **(EXTREMELY important)** In `FisExporter`, if the Takagi-Sugeno controller has no `activation` or `accumulation` operators (as it should generally be the case), Octave and Matlab will not be able to import the `fis` file. To overcome this issue, you will have to set `ImpMethod="min"` and `AggMethod="max"`, where `ImpMethod` and `AggMethod` are just dummy operators that can be set to any `TNorm` and `SNorm`, respectively.
++ **(important)** Improved compatibility of the exported code obtained with `[Fis|Fcl]Exporter` by exporting the additional features of `fuzzylite` only when these are different from the default operation. For example, the following features will not be exported given their values: `[Input|Output]Variable::enabled = true;`, `OutputVariable::lock-previous = false;`, `OutputVariable::lock-range = false;`, amongst others.
+* **(important)** Renamed FLL property `'lock-valid'` to `'lock-previous'`.
+* **(important)** Renamed FIS property `'LockValid'` to `'LockPrevious'`.
+* **(important)** Renamed FCL property `'LOCK: VALID'` to `'LOCK: PREVIOUS'`.
++ **(important)** Export your controllers to files using `[Fll|Fld|Fis|Fcl]Exporter::toFile()`.
++ **(important)** Import your controllers from files using `[Fll|Fis|Fcl]Importer::fromFile()`.
++ **(important)** `FldExporter` exports the FuzzyLite Dataset of an engine utilizing the input values of another FuzzyLite Dataset.
+* `FldExporter` no longer restarts the engine when exporting.
+* **(important)** Renamed method `FldExporter::toWriter()` to `FldExporter::write()`.
+* Removed variable and methods for property `int FldExporter::_maximum`.
+* Added option in `CppExporter` to prepend the namespace prefix `fl::` to the classes, and by default it does not prepend prefix.
+* Improvement accuracy of `FisImporter` when importing `fis` files whose scalar values have more than three decimal numbers.
+* Renamed methods in `[Fis|Fcl]Importer::extract*` to `[Fis|Fcl]Importer::parse*`.
+
+
+
+#### <a name="new-factories">Factories</a>
+* Created a generic `CloningFactory<T>` to create clones of objects.
+* **(important)** Created `FunctionFactory` based on `CloningFactory<Function::Element>` where function operators and methods are stored to be cloned as necessary by `Function`. Additional functions and operators can be easily registered.
+* **(VERY important)** Moved built-in functions and operators from `Function` to `FunctionFactory`.
+* Renamed methods `Factory<T>::[register|deregister]Class()` to `Factory<T>::[register|deregister]Constructor()`.
+* **(important)** Renamed `Factory<T>` to `ConstructionFactory<T>`.
+* Renamed `typedef Factory::Creator` to `typedef Factory::Constructor`.
+* Changed pointers of `FactoryManager` to smart pointers (`FL_unique_ptr`).
+
+
+
+#### <a name="new-examples">Examples</a>
+* **(important)** Added two examples for basic rule chaining: `mamdani/SimpleDimmerInverse.fll` and `mamdani/Laundry.fll`.
+* Included the `original` example files in `fis` format.
+* Added conversion of `examples/original/*.fis` to `examples/original/*.fll`.
+* Modified `original/takagi-sugeno` examples to reflect `activation: none; accumulation: none;`.
+* Updated FLD examples produced from the `original` examples.
++ **(important)** Added file [`fuzzylite/src/m/compare.m`](/fuzzylite/src/m/compare.m) <!---check link--> to compare the output values of your `fuzzylite` engines with the evaluation of the same engine in Octave/Matlab.
++ **(important)** Added file [`examples/examples.mat`](/examples/examples.mat) <!---check link--> containing the comparison of the output values between `fuzzylite` and Matlab's Fuzzy Logic Toolbox.
+* Added code to perform benchmarks in Linux.
+
+
+#### <a name="new-console">Console</a>
+* **(important)** Console includes option to import custom input dataset from file an export its respective output values.
+* **(important)** Created the FuzzyLite Interactive Console, which can be started by specifying an input file and the output format, e.g., `fuzzylite -i SimpleDimmer.fll -of fld`.
+* Console provides more information about its usage.
+
+
+
+####<a name="new-fixes"> Fixes Bugs and Leaks</a>
++ **(important)** Fixed operation when using multiple hedges to operate from right-most to left-most, e.g. `if Ambient is not very extremely bright` evaluates as follows `not(very(extremely(bright)))`.
+* **(important)** Fixed membership functions of specific cases of `Triangle` when `a=b` or `b=c`, and `Trapezoid` when `a=b` or `c=d`.
+* Fixed minor memory leak at `~RuleBlock::[conjunction|disjunction|activation]`.
+* Fixed minor memory leak at `~Accumulated::accumulation`.
+* Fixed minor memory leak at `~OutputVariable::defuzzifier`.
+* Fixed minor memory leak at `~Function::Node`.
+* Fixed minor memory leak at `~FactoryManager::[factories]`.
+* Fixed some rethrowing of exceptions to provide proper information about errors. Specifically, changed some rethrown exceptions from `throw ex;` to just `throw;`
+* Fixed building using `-DFL_USE_FLOAT=ON`
+
+
+***
+
+For more information, visit [www.fuzzylite.com](http://www.fuzzylite.com).
+
+fuzzylite&trade; is a trademark of FuzzyLite Limited.
+
+Copyright &#xa9; 2010-2014 FuzzyLite Limited. All rights reserved. \ No newline at end of file
diff --git a/README.md b/README.md
new file mode 100644
index 0000000..21c873a
--- /dev/null
+++ b/README.md
@@ -0,0 +1,455 @@
+fuzzylite &reg; [![Build Status](https://travis-ci.org/fuzzylite/fuzzylite.svg?branch=v5.x)](https://travis-ci.org/fuzzylite/fuzzylite) <img src="https://github.com/fuzzylite/fuzzylite/raw/v5.x/fuzzylite.png" align="right" alt="fuzzylite">
+===========
+
+A Fuzzy Logic Control Library in C++
+------------------------------------
+
+By: [Juan Rada-Vilela](http://www.fuzzylite.com/jcrada), Ph.D.
+
+
+
+***
+
+
+### Table of Contents
+[License](#license) &nbsp;
+[Introduction](#introduction) &nbsp;
+[Features](#features) &nbsp;
+[Example](#example) &nbsp;
+[Bulding from source](#building) &nbsp;
+[Binaries](#binaries) &nbsp;
+[What's next](#whatsnext) &nbsp;
+[What's new](#whatsnew) : [General](#new-general), [Macros](#new-macros), [Operation](#new-operation), [Engine](#new-engine), [Input Variables and Output Variables](#new-inoutvars), [Linguistic Terms](#new-terms), [Linear and Discrete Terms](#new-linear-discrete), [Function Term](#new-function), [[T|S]Norms and Hedges](#new-norms-hedges), [Rules](#new-rules), [Rule Blocks](#new-ruleblocks), [Weighted Defuzzifiers](#new-weighted), [Integral Defuzzifiers](#new-integral), [Importers and Exporters](#new-imex), [Examples](#new-examples), [Console](#new-console), [Fixed Bugs and Leaks](#new-fixes)
+
+
+### <a name="license">License</a>
+`fuzzylite` will **always** be free and open source. However, `fuzzylite` is **no** longer released under the Apache License. Since version 5.0, `fuzzylite` is **dual-licensed** under the [**GNU Lesser General Public License (LGPL) v3.0**](https://www.gnu.org/licenses/lgpl.html) and a **paid commercial license**.
+
+
+In brief, an important restriction the LGPL imposes on your closed-source application is that **you are no longer allowed to statically link** against `fuzzylite`. If your application requires static linking, **you will need to purchase a commercial license** from FuzzyLite Limited. Please, contact [sales@fuzzylite.com](mailto:sales@fuzzylite.com) for commercial licenses, and refer to the [GNU LGPL](https://www.gnu.org/licenses/lgpl.html) for further information on your rights.
+
+The change of license is an attempt to raise funds in order to be able to work part-time in the development of the `fuzzylite` family of products, namely `fuzzylite` (C++), `jfuzzylite` (Java), `pyfuzzylite` (Python), and `QtFuzzyLite` (Windows/Linux/Mac).
+
+**There are still many things to do!**
+
+Besides [donations](http://www.fuzzylite.com/donations/), you can significantly contribute by **purchasing a license** of the entirely new [`QtFuzzyLite`](http://www.fuzzylite.com/QtFuzzyLite/) commercial application. In addition, if you require (paid) private support, please contact [jcrada@fuzzylite.com](mailto:jcrada@fuzzylite.com).
+
+
+***
+
+
+
+
+### <a name="introduction">Introduction</a>
+`fuzzylite` is a free and open-source fuzzy logic control library programmed in C++ for multiple platforms (Windows, Linux, Mac, iOS). Its goal is to allow you to easily create fuzzy logic controllers in a few steps utilizing object-oriented programming without requiring any third-party libraries.
+
+#### Reference
+If you are using `fuzzylite`, please cite the following reference in your article:
+
+Juan Rada-Vilela. fuzzylite: a fuzzy logic control library, 2014. URL http://www.fuzzylite.com.
+
+```bibtex
+ @misc{fl::fuzzylite,
+ author={Juan Rada-Vilela},
+ title={fuzzylite: a fuzzy logic control library},
+ url={http://www.fuzzylite.com},
+ year={2014}}
+```
+
+***
+
+### <a name="features">Features</a>
+
+**Controllers** *Types* (5) Mamdani, Takagi-Sugeno, Larsen, Tsukamoto, Inverse Tsukamoto
+
+**Linguistic terms** *Basic* (4) triangle, trapezoid, rectangle, discrete. *Extended* (9) bell, cosine, gaussian, gaussian product, pi-shape, sigmoid difference, sigmoid product, spike. *Edges* (4) concave, ramp, sigmoid, s-shape, z-shape. *Functions* (3) constant, linear, function.
+
+**Conjunction and Activation** *T-Norm* (7) minimum, algebraic product, bounded difference, drastic product, einstein product, hamacher product, nilpotent minimum.
+
+**Disjunction and Accumulation** *S-Norm* (8) maximum, algebraic sum, bounded sum, normalized sum, drastic sum, einstein sum, hamacher sum, nilpotent maximum.
+
+**Defuzzifiers** *Integral* (5) centroid, bisector, smallest of maximum, largest of maximum, mean of maximum, *Weighted* (2) weighted average, weighted sum.
+
+**Hedges** *Types* (6) any, not, extremely, seldom, somewhat, very.
+
+**Import** *Types* (3) FuzzyLite Language `fll`, Fuzzy Inference System `fis`, Fuzzy Control Language `fcl`.
+
+**Export** *Types* (6) `C++`, `Java`, FuzzyLite Language `fll`, FuzzyLite Dataset `fld`, Fuzzy Inference System `fis`, Fuzzy Control Language `fcl`.
+
+**Examples** (30+) of Mamdani, Takagi-Sugeno and Tsukamoto controllers from `fuzzylite`, Octave and Matlab, each included in the following formats: `C++`, `Java`, `fll`, `fld`, `fis`, and `fcl`.
+
+***
+
+### <a name="example">Example</a>
+
+```cpp
+#include "fl/Headers.h"
+
+int main(int argc, char* argv[]){
+ using namespace fl;
+ Engine* engine = new Engine("simple-dimmer");
+
+ InputVariable* ambient = new InputVariable;
+ ambient->setName("Ambient");
+ ambient->setRange(0.000, 1.000);
+ ambient->addTerm(new Triangle("DARK", 0.000, 0.500));
+ ambient->addTerm(new Triangle("MEDIUM", 0.250, 0.750));
+ ambient->addTerm(new Triangle("BRIGHT", 0.500, 1.000));
+ engine->addInputVariable(ambient);
+
+ OutputVariable* power = new OutputVariable;
+ power->setName("Power");
+ power->setRange(0.000, 2.000);
+ power->setDefaultValue(fl::nan);
+ power->addTerm(new Triangle("LOW", 0.000, 1.000));
+ power->addTerm(new Triangle("MEDIUM", 0.500, 1.500));
+ power->addTerm(new Triangle("HIGH", 1.000, 2.000));
+ engine->addOutputVariable(power);
+
+ RuleBlock* ruleblock = new RuleBlock;
+ ruleblock->addRule(Rule::parse("if Ambient is DARK then Power is HIGH", engine));
+ ruleblock->addRule(Rule::parse("if Ambient is MEDIUM then Power is MEDIUM", engine));
+ ruleblock->addRule(Rule::parse("if Ambient is BRIGHT then Power is LOW", engine));
+ engine->addRuleBlock(ruleblock);
+
+ engine->configure("", "", "Minimum", "Maximum", "Centroid");
+
+ std::string status;
+ if (not engine->isReady(&status))
+ throw Exception("Engine not ready. "
+ "The following errors were encountered:\n" + status, FL_AT);
+
+ for (int i = 0; i < 50; ++i){
+ scalar light = ambient->getMinimum() + i * (ambient->range() / 50);
+ ambient->setInputValue(light);
+ engine->process();
+ FL_LOG("Ambient.input = " << Op::str(light) << " -> " <<
+ "Power.output = " << Op::str(power->getOutputValue()));
+ }
+}
+```
+
+***
+
+### <a name="whatsnext">What's Next?</a>
+
++ Source code documentation
++ Type-2 Fuzzy Logic Controllers
++ Adaptive Neuro-Fuzzy Inference System (ANFIS)
++ Fuzzy C-means data clustering
+
+***
+
+### <a name="building">Building from Source</a>
+Building from source requires you to have CMake installed.
+
+The files [`fuzzylite/build.bat`](/fuzzylite/build.bat) and [`fuzzylite/build.sh`](/fuzzylite/build.sh) are automatic build scripts for Windows and Unix platforms, respectively. The usage of these scripts is presented as follows.
+
+#### Windows
+```bash
+> build.bat help
+Usage: build.bat [options]
+where [options] can be any of the following:
+ all builds fuzzylite in debug and release mode (default)
+ debug builds fuzzylite in debug mode
+ release builds fuzzylite in release mode
+ clean erases previous builds
+ help shows this information
+```
+
+#### Unix
+```bash
+$ ./build.sh help
+Usage: [bash] ./build.sh [options]
+where [options] can be any of the following:
+ all builds fuzzylite in debug and release mode (default)
+ debug builds fuzzylite in debug mode
+ release builds fuzzylite in release mode
+ clean erases previous builds
+ help shows this information
+```
+
+**(important)** After executing the building script, the binaries will be built and stored in the sub-folders `release/bin` and `debug/bin`.
+
+#### Advanced Building Options
+For more advanced building options, please check the contents of [`fuzzylite/build.bat`](/fuzzylite/build.bat) or [`fuzzylite/build.sh`](/fuzzylite/build.sh), and the contents of [`fuzzylite/CMakeLists.txt`](/fuzzylite/CMakeLists.txt).
+
+The following building options are available:
+
+`-DFL_USE_FLOAT=ON` builds the binaries using `typedef float fl::scalar` instead of `typedef double fl::scalar` (default is OFF, i.e., double is used)
+
+`-DFL_BACKTRACE=OFF` disables the backtrace information in case of errors (default in Unix platforms is ON, and in Windows platforms is OFF). In Windows, the backtrace information requires the library `dbghelp`, which should be available in your system.
+
+`-DFL_CPP11=ON` builds `fuzzylite` utilizing `C++11` features (default is OFF, i.e., `C++98`)
+
+`-DCMAKE_BUILD_TYPE=[Debug|Release]` sets the mode of your build. You can only build one mode at a time with a single CMake script.
+
+***
+
+### <a name="binaries">Binaries</a>
+
+After building from source, the following are the relevant binaries that will be created in `release` mode. In `debug` mode, binaries will append a `d` at the end of the name (e.g., `fuzzylited.dll`).
+
+#### Windows
+
+- console application: `fuzzylite.exe`
+- shared library: `fuzzylite.dll`, `fuzzylite.lib`
+- static library: `fuzzylite-static.lib`
+
+#### Linux
+
+- console application: `fuzzylite`
+- shared library: `libfuzzylite.so`
+- static library: `libfuzzylite.a`
+
+#### Mac
+
+- console application: `fuzzylite`
+- shared library: `libfuzzylite.dylib`
+- static library: `libfuzzylite.a`
+
+
+The console application of `fuzzylite` allows you to import and export your controllers. Its usage can be obtained executing the console binary. In addition, the FuzzyLite Interactive Console is activated when exporting to `fld` without providing an output file. The interactive console allows you to evaluate any controller by manually providing the input the values.
+
+
+***
+
+### <a name="whatsnew">What's New?</a>
+The entire `fuzzylite` library has been thoroughly revised, refactored, validated, and significantly improved. The following sections detail the changes and enhancements of version 5.0. Users of previous versions are **strongly** encouraged to carefully read the list before migrating to version 5.0. Important changes and enhancements are marked as **(important)**, **(VERY important)** and **(EXTREMELY important)**.
+
+#### <a name="new-general">General</a>
++ **(important)** `fuzzylite v5.0` is dual-licensed under the [GNU LGPL v3.0](https://www.gnu.org/licenses/lgpl.html) and a paid commercial license.
++ Support for both `C++98` and `C++11` using the latest features.
++ Support for multiple compilers `g++`, `Clang`, `MSVC`.
++ Refactoring of many classes to improve design and performance.
++ **(important)** Performance improvements of Takagi-Sugeno controllers by over 55% with respect to v4.0 (estimate based on the average performance on the examples included).
++ Smart pointers in many classes take care of automatically deleting objects when setting new pointers (`Accumulated`, `FactoryManager`, `Function`, `OutputVariable`, `Rule`, and `RuleBlock`).
+* **(important)** Exceptions are thrown when any of the following `RuleBlock::[conjunction|disjunction|activation]`, `Accumulated::accumulation`, and `OutputVariable::defuzzifier` are required but set to `fl::null`, thereby replacing the operations that would lead to `[signal 11] Segmentation fault` to operations that throw a `fl::Exception` instead.
++ Automatic build script to build `fuzzylite` in `debug` and `release` mode.
++ Binaries of debug libraries are renamed to append the letter `d` (e.g.,`fuzzylited.dll`, `libfuzzylited.so`).
++ **(important)** New file [`fuzzylite/src/m/compare.m`](/fuzzylite/src/m/compare.m) <!---check link--> to compare the output values of your `fuzzylite` engines with the evaluation of the same engine in Octave/Matlab.
++ **(important)** There is practically no difference between the output values obtained with `fuzzylite` and those obtained with Octave/Matlab. Based on the examples, the average mean square error (MSE) between the output values is less than `7.3e-12` (or `0.0000000000073`) due to negligible differences in floating-point arithmetic. The results and comparison can be found in [`examples/examples.mat`](/examples/examples.mat) <!---check link-->.
++ **(important)** Source code of applications based on version 4.0 will most likely not compile with version 5.0.
++ Minor bugs and memory leaks fixed.
+
+####<a name="new-macros">Macros</a>
+* **(important)** Added support for `C++11` with smart pointers, method identifiers, move constructors and move operators as follows. For precise information, refer to file [`fuzzylite/fl/fuzzylite.h`](/fuzzylite/fl/fuzzylite.h). <!---check link-->
+* **(important)** Macros for identifiers are defined as `FL_IOVERRIDE override`, `FL_IFINAL final`, `FL_IDEFAULT = default`, `FL_IDELETE = delete`, `FL_INOEXCEPT noexcept`, `FL_DEFAULT_COPY(Class)`, `FL_DEFAULT_MOVE(Class)`, and `FL_DEFAULT_COPY_AND_MOVE(Class)`.
+* **(important)** Added macro `FL_unique_ptr` to refer to `std::auto_ptr` (`C++98`) or `std::unique_ptr` (`C++11`), and its respective `FL_move_ptr(x)` to move a smart pointer, albeit `FL_move_ptr(x)` is not used within the library as it is not needed.
+* **(important)** Added global variables `const long fl::null = 0L` to refer to the null pointer in `C++98` and `const std::nullptr_t null = nullptr` to refer to the null pointer in `C++11`.
+* **(important)** Renamed macro `FL_DEBUG` to `FL_DBG`.
+* **(important)** Renamed macros `FL_BEGIN_DEBUG_BLOCK` and `FL_END_DEBUG_BLOCK` to `FL_DEBUG_BEGIN` and `FL_DEBUG_END`, respectively.
+* **(important)** Renamed macro `FL_EXPORT` to `FL_API`
+* **(EXTREMELY important)** Added macro definitions `FL_EXPORT_LIBRARY` and `FL_IMPORT_LIBRARY`. If you are building `fuzzylite` as a **shared library**, you need to define `FL_EXPORT_LIBRARY`. If you are building `fuzzylite` **executable** *and* it utilizes the `fuzzylite` **shared library**, you need to define `FL_IMPORT_LIBRARY`. If you are building `fuzzylite` as a **static library** and/or building `fuzzylite` **executable** using the `fuzzylite` **static library**, then you do not need to define either `FL_[IMPORT|EXPORT]_LIBRARY`. Note that the same conditions apply for your application. This is particularly important in Windows platforms, as `FL_IMPORT_LIBRARY` and `FL_EXPORT_LIBRARY` define `FL_API` to `__declspec(dllimport)` and `__declspec(dllexport)`, respectively. If in doubt, please check [`fuzzylite/CMakeLists.txt`](/fuzzylite/CMakeLists.txt)<!---check link-->
+
+#### <a name="new-operation">Operation</a>
+* **(important)** Added method `Operation::toScalar(std::string x, scalar alternative) FL_INOEXCEPT` which returns `alternative` if `x` is not a valid `scalar`, and never throws an exception.
+* **(important)** Added method `Operation::toScalar(std::string x)` that returns the scalar value of `x` or throws a `fl::Exception` if `x` is not a valid `scalar`.
+* **(VERY important)** Marked method (from v4.0) `Operation::toScalar(std::string, bool, scalar) FL_IDELETE;` and removed its implementation such that its usage is prevented at compile time in `C++11` and at linker time in `C++98`. Please, use the appropriate `Op::toScalar` methods mentioned above.
++ Renamed method `Op::isNan` to `Op::isNaN`.
+* Added method `fl::Op::isFinite(x)` which returns `not (isNaN(x) or isInf(x))`.
+* Changed `fl::Op::isEq(a,b)` to return `true` if `a == b == NaN`.
+* Changed `fl::Op::isEq(a,b)` to return `true` if `a == b == Inf`.
+* Changes to `fl::Op::isEq` affect other comparison methods `fl::Op::is[Lt|LEq|GEq|Gt]`.
+* Added shortcuts of comparisons `fl::Op::[gt,lt,ge,le,eq,neq](scalar a, scalar b)`, mostly to provide binary versions (without `macheps`) for term `Function`.
+* Deleted method `Op::repeat`.
+* Removed method `fuzzylite::configuration()`.
+* Changed default `fuzzylite::_macheps = 1e-6;`.
+* Renamed method `Op::makeValidId` to `Op::validName`, which now returns `"unnamed"` for empty strings.
+
+
+
+####<a name="new-engine">Engine</a>
+* **(VERY important)** Moved `Engine::hedges` (and relevant methods) to `Rule::hedges`.
+* Added enumeration for the type of engine: `enum Engine::Type{Mamdani, Larsen, TakagiSugeno, Tsukamoto, InverseTsukamoto, Hybrid, Unknown}`.
+* Added method `Type Engine::type(std::string* name, std::string* reason)` to infer the type of the engine based on its configuration, additionally provides the name of the type and the inference reasons for its type.
+* **(important)** Changed method `Engine::isReady(std::string)` to satisfy the default operation of controllers. The method `Engine::isReady(std::string)` was initially conceived to provide information before a potential `[signal 11] Segmentation fault` happened due to improper configuration. However, given the improved handling of signals and exceptions mentioned in Section [General](#new-general), using method `Engine::isReady(std::string)` is not necessary except for providing suggestions of what could potentially cause an error.
+* Added methods `Engine::set[Input|Output]Variables(std::vector)` and `Engine::setRuleBlocks(std::vector)`.
+* Added methods `Engine::[input|output]Variables()` and `Engine::ruleBlocks()` to return mutable references.
+* Added method `Engine::variables()` to retrieve a vector (copy) containing the `InputVariables` followed by the `OutputVariables`.
+* Added method `Engine::updateReferences()` to update the references to the engine in all the necessary linguistic terms (i.e., `Linear` and `Function`).
+* Added method `Engine::clone()`.
+* Added copy constructors, assignment operators, and default move constructor to `Engine`.
+
+
+
+####<a name="new-inoutvars">Input Variables and Output Variables</a>
+* **(important)** Added methods `OutputVariable::[get|set]OutputValue()` to [retrieve|store] value from defuzzification
+* **(important)** Changed return type of `scalar OutputVariable::defuzzify()` to `void OutputVariable::defuzzify()` because now it automatically stores the defuzzified output value, and also stores the previous *valid* output value regardless of locks. Like in version 4.0, if `OutputVariable::lockPreviousOutputValue=true`, and the defuzzified output value is not valid (i.e., `[NaN|Inf]`) or no rules were activated, then the defuzzified output value is replaced for the previous valid output value.
+* Removed method `OutputVariable::defuzzifyNoLocks()`.
+* Renamed variable `OutputVariable::lastValidOutputValue` to `OutputVariable::previousOutputValue`.
+* **(important)** Renamed method `OutputVariable::[get|set]LastValidOutput()` to `OutputVariable::[get|set]PreviousOutputValue()`.
+* Renamed variable `OutputVariable::lockValidOutput` to `OutputVariable::lockPreviousOutputValue`.
+* **(important)** Renamed method `OutputVariable::setLockValidOutput()` to `OutputVariable::setLockPreviousOutputValue()`.
+* **(important)** Renamed method `OutputVariable::isLockingValidOutput()` to `OutputVariable::isLockedPreviousOutputValue()`.
+* Renamed variable `OutputVariable::lockOutputRange` to `OutputVariable::lockOutputValueInRange`.
+* **(important)** Renamed method `OutputVariable::setLockOutputRange()` to `OutputVariable::setLockOutputValueInRange()`.
+* **(important)** Renamed method `OutputVariable::isLockingOutputRange()` to `OutputVariable::isLockedOutputValueInRange()`.
+* Added methods `std::string InputVariable::fuzzyInputValue()` and `std::string OutputVariable::fuzzyOutputValue()`.
+* Added method `OutputVariable::clear()` to clear the fuzzy output, and set `OutputVariable::previousOutputValue = fl::nan` and set `OutputVariable::outputValue = fl::nan`.
+* Added copy constructors, assignment operators, move constructors and move operators to [Input|Output]Variable.
+* Added method `Variable::terms()` to return mutable reference.
+* **(important)** Changed `OutputVariable::[defuzzifier|fuzzyOutput]` to smart pointers (`FL_unique_ptr`).
+
+
+#### <a name="new-terms">Linguistic Terms</a>
+* **(VERY important)** Added Term::[get|set]Height to define the height of *integral* terms, and multiply their respective membership functions accordingly.
+* Added copy constructors, assignment operators, move constructors and move operators to every `Term`.
+* **(VERY important)** Parameters of all terms are set by default to `fl::nan`.
+* **(important)** Renamed method `Term::copy()` to `Term::clone()` in every `Term`.
+* Added method `Term::updateReference(Term*, Engine*)` to ensure `Linear` and `Function` terms have updated pointers to the `Engine` (useful when cloning and copy-constructing).
++ **(important)** Added linguistic terms `Concave`, `Cosine` and `Spike`.
+* **(important)** Changed `Accumulated` to take `Activated*` terms instead of `const Terms*`.
+* Removed `const` from return type of method `SNorm* Accumulated::[get|set]Accumulation()`.
+* Changed `Accumulated::accumulation` to a smart pointer (`FL_unique_ptr`).
+* Added method `Accumulated::terms()` to return mutable reference.
+* **(important)** Renamed methods `Triangle::[set|get][A|B|C]` to `::[set|get]Vertex[A|B|C]`.
+* **(important)** Renamed methods `Trapezoid::[set|get][A|B|C|D]` to `::[set|get]Vertex[A|B|C|D]`.
+* **(important)** Renamed term `Thresholded` to `Activated`.
+* **(important)** Renamed methods `Thresholded::[set|get]Threshold()` to `Activated::[set|get]Degree()`.
+* Added enumeration `[Ramp|Sigmoid]::Direction{ NEGATIVE, ZERO, POSITIVE }` to refer to the slope.
+* Added methods `Ramp::direction()` and `Sigmoid::direction()` to retrieve direction of slope.
+* Removed Exception Specification from methods in `Discrete`, `Linear` and `Function` terms.
+
+#### <a name="new-linear-discrete">Linear and Discrete Terms</a>
+* **(important)** Changed `Linear` from having pointers to the input variables to having a pointer to the `Engine`.
+* Changed visibility of `Linear::coefficients` to `protected`.
+* **(important)** Added methods `Linear::coefficients()`, `Linear::setCoefficients()`.
+* `Linear` term no longer throws exception when `inputVariables != |coefficients|`.
+* **(important)** Removed public vector of variables `Discrete::[x|y]`.
+* **(important)** Added a `typedef std::pair<scalar, scalar> Discrete::Pair`.
+* **(important)** Changed representation of `Discrete::[x|y]` from `std::vector<scalar>` to `std::vector<Discrete::Pair>`.
+* Added methods `Discrete::setXY()` and `Discrete::xy()` to set and get the new representation of pairs.
+* Added methods `Discrete::xy(int index)` to retrieve `Discrete::Pair` at `index`.
+* **(important)** Added methods `Discrete::toPairs(std::vector<scalar>)` which throws an exception if the vector is missing a value (i.e., `std::vector<scalar>.size() % 2 != 0`), and `Discrete::toPairs(std::vector<scalar>, scalar missingValue)` which adds `missingValue` in case `std::vector<scalar>.size() %2 == 1`, hence never throwing an exception.
+* Added method `Discrete::toVector(std::vector<Discrete::Pair>)` to convert `std::vector<Discrete::Pair>` to a `std::vector<scalar>`.
+* Added method `Discrete::formatXY()` to get pairs `(x,y)` nicely formatted.
+
+####<a name="new-function">Function Term</a>
+* **(important)** Merged structs `Function::Operator` and `Function::BuiltInFunction` into a single `struct Function::Element`.
+* **(EXTREMELY important)** Changed the precedence of all built-in instances of `Function::Element` of type `Operator` starting from `100` and decreasing by `10`. The precedence of built-in operators is the following: `(100)` Logical not `[!]` and Negation `[~]`; `(90)` Power `[^]`; `(80)` Multiplication `[*]`, Division `[/]` and Modulo `[%]`; `(70)` Addition `[+]` and Subtraction `[-]`; `(60)` Logical AND `[and]` and Logical OR `[or]`. If you have registered your own operators, please adjust their precedence as required.
+* Added to `Function` built-in comparison functions `gt,lt,ge,le,eq` and operator logical not `!`.
+* Modified typedefs `Function::Unary` and `Function::Binary` to take `scalar` instead of `double`.
+* Changed `public Function::root` to `protected Function::_root` and it is now a smart pointer (`FL_unique_ptr`).
+* Added method `Function::root()` to return pointer to `Function::root`.
+* **(EXTREMELY important)** Moved built-in functions and operators from `Function` to a `FunctionFactory`.
+
+
+#### <a name="new-norms-hedges">[T|S]Norms and Hedges</a>
++ **(important)** Fixed operation when using multiple hedges to operate from right-most to left-most, e.g. `if Ambient is not very extremely bright`, now evaluates as follows `not(very(extremely(bright)))`.
++ Added `TNorm` nilpotent minimum and `SNorm` nilpotent maximum.
+* Added clone methods to every `Norm`.
+* Added clone methods to every `Hedge`.
+* **(VERY important)** Moved `Engine::hedges` to `Rule::hedges`.
+
+
+#### <a name="new-rules">Rules</a>
+* **(VERY important)** Moved `Engine::hedges` (and methods) to `Rule::hedges`.
+* Added method `Rule::isLoaded()` to determine whether a rule was properly parsed and thus can be activated.
+* Added method `Rule::unload()` to allow the existence of a rule in an inactive state (useful for invalid rules).
+* **(important)** Removed variable `Rule::FL_ASSIGNS` and method `Rule::assignsKeyword()`, for which the symbol `=` in rules is no longer valid.
+* Changed visibility of method `Rule::setText()` to `public`.
+* Added method `Rule::load(const Engine*)`.
+* Changed `Rule::[antecedent|consequent]` to smart pointers (`FL_unique_ptr`).
+* **(important)** Renamed method `Antecedent::[get|set]Root()` to `Antecedent::[get|set]Expression()`.
+* Added methods `[Antecedent|Consequent]::[get|set]Text()`.
+* **(important)** Added methods `[Antecedent|Consequent]::[load|unload]()`, with the same objective as `Rule::[load|unload]()`.
+
+#### <a name="new-ruleblocks">Rule Blocks</a>
+* Added method `RuleBlock::reloadRules()`.
+* Added method `RuleBlock::setRules(std::vector)`.
+* Added method `RuleBlock::rules()` to return mutable reference.
+* Removed `const` from `TNorm` and `SNorm` in `RuleBlock::[get|set][Conjunction|Disjunction|Activation]()`, respectively.
+* Changed `RuleBlock::[conjunction|disjunction|activation]` to smart pointers (`FL_unique_ptr`).
+* **(VERY important)** Added basic rule chaining such that an `OutputVariable` can be utilized in the `Antecedent` of a `Rule`. For example, considering the rule `if Power is high then InversePower is low`, where `Power` and `InversePower` are both output variables, the activation degree of the `Antecedent` will correspond to the accumulated activation degree of the term `high` in the fuzzy output of `Power`. If `Power::accumulation = none`, the accumulated activation degree of the term `high` will be computed as the regular sum of the activation degrees of term `high` in the fuzzy output of `Power`. Otherwise, the accumulated activation degree is computed utilizing the `Power::accumulation` operator.
+
+
+#### <a name="new-weighted">Weighted Defuzzifiers</a>
++ **(VERY important)** Performance improvements of Takagi-Sugeno controllers by over 55% (with respect to v4.0) based on the average performance on the examples included.
+* **(important)** Created class `WeightedDefuzzifier` from which classes `Weighted[Average|Sum]` are derived.
+* **(important)** Added enumeration `WeightedDefuzzifier::Type{Automatic, TakagiSugeno, Tsukamoto}` and respective methods `WeightedDefuzzifier::[get|set]Type()` and `WeightedDefuzzifer::getTypeName()`.
+* Added method `WeightedDefuzzifier::inferType(Term*)` to automatically determine the `WeightedDefuzzifier::Type` based on the class of `Term`.
+* **(important)** By default, `WeightedDefuzzifier::type = Automatic`, which automatically infers the type based on the `WeightedDefuzzifier::inferType()`.
+* **(important)** There is a small performance penalty when using `WeightedDefuzzifier::type = Automatic` because `WeightedDefuzzifier::inferType()` performs three `dynamic_cast<>`.
+* **(important)** Deleted class `Tsukamoto`. Its method `static tsukamoto()` was moved to `virtual WeightedDefuzzifier::tsukamoto()`, which allows overriding it
+* Added support for `Tsukamoto` with `Concave` terms.
++ **(EXTREMELY important)** In version 5.0, the traditional operation of Takagi-Sugeno and Tsukamoto controllers is achieved by setting `OutputVariable::accumulation = none`. Unlike version 4.0, the `RuleBlock::activation` will not have any effect on Takagi-Sugeno nor Tsukamoto controllers, for which `RuleBlock::activation` should also be set to `none`. More information about the roles of the `OutputVariable::accumulation` and `RuleBlock::activation` operators are detailed as follows. Refer to [sciweavers](http://www.sciweavers.org/free-online-latex-equation-editor) to convert LaTeX equations.
++ **(VERY important)** In version 5.0, the role of the `RuleBlock::activation` `TNorm` on the `Weighted[Average|Sum]` always performs a regular multiplication of the weights and the values (i.e., $w_i \times z_j$) regardless of the `TNorm` chosen. In other words, selecting any `RuleBlock::activation` for `Weighted[Average|Sum]` is irrelevant, and should be set to `none` as every `TNorm` will have the same multiplication effect. This operation is different from `fuzzylite` version 4.0, where the `RuleBlock::activation` operator was utilized to multiply the weights and values (i.e. $w_i \otimes z_j$), and therefore the traditional operation of the `Weighted[Average|Sum]` was achieved when `RuleBlock::activation = AlgebraicProduct;`.
++ **(VERY important)** In version 5.0, the role of the `OutputVariable::accumulation = none` on the `Weighted[Average|Sum]` results in a regular sum of the multiplied weights and values, i.e., $\dfrac{\sum_i^n w_i \times z_j}{\sum_i^n w_i}$. However, if the `OutputVariable::accumulation != none`, the role of the `SNorm` will be to accumulate the activation degrees of the *repeated* terms in the fuzzy output of the variable. For example, considering the rules `if Ambient is dark then Power is high` and `if Ambient is medium then Power is high`, for any input value of `Ambient` that activates both rules, the fuzzy output of `Power` will have the term `high` activated with the degree from `Rule 1`, and the term `high` activated with the degree from `Rule 2`. Since the term `high` appears twice in the fuzzy output, the role of the accumulation operator will be to accumulate the activation degree of `high` resulting in $\dfrac{(w_1 \oplus w_2) \times z_{high}}{(w_1 \oplus w_2)}$. If another term were activated, the result would be $\dfrac{(w_1 \oplus w_2) \times z_{high} + w_i \times z_j}{(w_1 \oplus w_2) + w_i}$. In version 4.0, the accumulation operator had no effect on the `Weighted[Average|Sum]`.
+
+
+
+#### <a name="new-integral">Integral Defuzzifiers</a>
+* **(important)** Proper handling of indefinite integral defuzzification, that is, returning `fl::nan` when `[minimum|maximum]=[NaN|Inf]`.
+* Default resolution of integration is defined as `static int IntegralDefuzzifier::defaultResolution=200`, and can be changed via `static IntegralDefuzzifier::setDefaultResolution()`.
++ **(important)** In `fuzzylite`, the accumulation operator has been for several versions associated with the output variables and **not** with the rule blocks, despite that the FCL format and other fuzzy logic control libraries associate the accumulation operator with the rule blocks. The argument for such a decision is that `fuzzylite` provides **coherent** support for multiple rule blocks operating on the same engine and on the same output variables. For example, if multiple rule blocks operate on the same output variables, it only makes sense to have a single accumulation operator associated with each output variable such that the defuzzifier can naturally operate over the accumulated fuzzy output. Differently, if the accumulation operator were associated with the rule block, the possibility of having different accumulation operators in different rule blocks questions (1) **the possibility of having multiple rule blocks operating over the same output variables**; and (2) **the usage of different accumulation operators over the accumulation and defuzzification processes**. Certainly, if (1) is not possible, i.e, different rule blocks only operate on different output variables, then (2) is not a problem because the accumulation process and defuzzification of each variable will only have a single accumulation operator. It is therefore that the association of the accumulation operator with the output variable in `fuzzylite` provides a **better design** and an additional feature that allows having multiple rule blocks operating over the same output variables.
+* Added copy constructors, assignment operators, move constructors and move operators.
+* Added method `Defuzzifier::clone()`.
+
+####<a name="new-imex">Importers and Exporters</a>
+* **(EXTREMELY important)** Since terms have a new `height` property, `[Fll|Fis|Fcl]Exporter` exports terms with an additional `scalar` at the end, which indicates the `height` of the term. However, if `height=1.0`, the additional scalar is not exported.
+* **(EXTREMELY important)** In `[Fll|Fis|Fcl]Importer`, when importing terms, if there is an additional `scalar` it will be assumed as the `height` of the term. For example, `term: high Gaussian 1.0 0.5 0.75` will create a `Gaussian` term with mean `1.0`, standard deviation `0.5` and height `0.75`. This is **extremely important** because there are some examples from Matlab in `fis` format that append a useless `0.0` to some terms.
+* **(EXTREMELY important)** In `FisExporter`, if the Takagi-Sugeno controller has no `activation` or `accumulation` operators (as it should generally be the case), Octave and Matlab will not be able to import the `fis` file. To overcome this issue, you will have to set `ImpMethod="min"` and `AggMethod="max"`, where `ImpMethod` and `AggMethod` are just dummy operators that can be set to any `TNorm` and `SNorm`, respectively.
++ **(important)** Improved compatibility of the exported code obtained with `[Fis|Fcl]Exporter` by exporting the additional features of `fuzzylite` only when these are different from the default operation. For example, the following features will not be exported given their values: `[Input|Output]Variable::enabled = true;`, `OutputVariable::lock-previous = false;`, `OutputVariable::lock-range = false;`, amongst others.
+* **(important)** Renamed FLL property `'lock-valid'` to `'lock-previous'`.
+* **(important)** Renamed FIS property `'LockValid'` to `'LockPrevious'`.
+* **(important)** Renamed FCL property `'LOCK: VALID'` to `'LOCK: PREVIOUS'`.
++ **(important)** Export your controllers to files using `[Fll|Fld|Fis|Fcl]Exporter::toFile()`.
++ **(important)** Import your controllers from files using `[Fll|Fis|Fcl]Importer::fromFile()`.
++ **(important)** `FldExporter` exports the FuzzyLite Dataset of an engine utilizing the input values of another FuzzyLite Dataset.
+* `FldExporter` no longer restarts the engine when exporting.
+* **(important)** Renamed method `FldExporter::toWriter()` to `FldExporter::write()`.
+* Removed variable and methods for property `int FldExporter::_maximum`.
+* Added option in `CppExporter` to prepend the namespace prefix `fl::` to the classes, and by default it does not prepend prefix.
+* Improvement accuracy of `FisImporter` when importing `fis` files whose scalar values have more than three decimal numbers.
+* Renamed methods in `[Fis|Fcl]Importer::extract*` to `[Fis|Fcl]Importer::parse*`.
+
+
+
+#### <a name="new-factories">Factories</a>
+* Created a generic `CloningFactory<T>` to create clones of objects.
+* **(important)** Created `FunctionFactory` based on `CloningFactory<Function::Element>` where function operators and methods are stored to be cloned as necessary by `Function`. Additional functions and operators can be easily registered.
+* **(VERY important)** Moved built-in functions and operators from `Function` to `FunctionFactory`.
+* Renamed methods `Factory<T>::[register|deregister]Class()` to `Factory<T>::[register|deregister]Constructor()`.
+* **(important)** Renamed `Factory<T>` to `ConstructionFactory<T>`.
+* Renamed `typedef Factory::Creator` to `typedef Factory::Constructor`.
+* Changed pointers of `FactoryManager` to smart pointers (`FL_unique_ptr`).
+
+
+
+#### <a name="new-examples">Examples</a>
+* **(important)** Added two examples for basic rule chaining: `mamdani/SimpleDimmerInverse.fll` and `mamdani/Laundry.fll`.
+* Included the `original` example files in `fis` format.
+* Added conversion of `examples/original/*.fis` to `examples/original/*.fll`.
+* Modified `original/takagi-sugeno` examples to reflect `activation: none; accumulation: none;`.
+* Updated FLD examples produced from the `original` examples.
++ **(important)** Added file [`fuzzylite/src/m/compare.m`](/fuzzylite/src/m/compare.m) <!---check link--> to compare the output values of your `fuzzylite` engines with the evaluation of the same engine in Octave/Matlab.
++ **(important)** Added file [`examples/examples.mat`](/examples/examples.mat) <!---check link--> containing the comparison of the output values between `fuzzylite` and Matlab's Fuzzy Logic Toolbox.
+* Added code to perform benchmarks in Linux.
+
+
+#### <a name="new-console">Console</a>
+* **(important)** Console includes option to import custom input dataset from file an export its respective output values.
+* **(important)** Created the FuzzyLite Interactive Console, which can be started by specifying an input file and the output format, e.g., `fuzzylite -i SimpleDimmer.fll -of fld`.
+* Console provides more information about its usage.
+
+
+
+####<a name="new-fixes"> Fixes Bugs and Leaks</a>
++ **(important)** Fixed operation when using multiple hedges to operate from right-most to left-most, e.g. `if Ambient is not very extremely bright` evaluates as follows `not(very(extremely(bright)))`.
+* **(important)** Fixed membership functions of specific cases of `Triangle` when `a=b` or `b=c`, and `Trapezoid` when `a=b` or `c=d`.
+* Fixed minor memory leak at `~RuleBlock::[conjunction|disjunction|activation]`.
+* Fixed minor memory leak at `~Accumulated::accumulation`.
+* Fixed minor memory leak at `~OutputVariable::defuzzifier`.
+* Fixed minor memory leak at `~Function::Node`.
+* Fixed minor memory leak at `~FactoryManager::[factories]`.
+* Fixed some rethrowing of exceptions to provide proper information about errors. Specifically, changed some rethrown exceptions from `throw ex;` to just `throw;`
+* Fixed building using `-DFL_USE_FLOAT=ON`
+
+***
+
+For more information, visit [www.fuzzylite.com](http://www.fuzzylite.com).
+
+fuzzylite&reg; is a registered trademark of FuzzyLite Limited.
+
+Copyright &#xa9; 2010-2015 FuzzyLite Limited. All rights reserved.
diff --git a/debian/changelog b/debian/changelog
new file mode 100644
index 0000000..b291f55
--- /dev/null
+++ b/debian/changelog
@@ -0,0 +1,40 @@
+fuzzylite (5.1+dfsg-1) unstable; urgency=medium
+
+ * new upstream version (Closes: #777858)
+ * removed debian/patches/20140705-minor-improvements-on-building-script as
+ upstream integrated it. Adjust build options in d/rules accordingly.
+ * delete debian/patches/20140714-building-from-objects-just-once and
+ debian/patches/20141027-fix-some-spelling as they have been applied
+ upstream
+ * install usr/lib/*/pkgconfig/fuzzylite.pc in fuzzylite-dev
+ * SONAME bump from 5.0 to 5.1, so renaming libfuzzylite5.0 to
+ libfuzzylite5.1
+ * add debian/patches/pkgconfig_installdir to install pkgconfig file in
+ correct location
+
+ -- Johannes Schauer <josch@debian.org> Tue, 07 Jul 2015 11:12:00 +0200
+
+fuzzylite (5.0+dfsg-3) unstable; urgency=medium
+
+ * change my email in Uploaders field to josch@debian.org
+ * add Vcs-Browser and Vcs-Git fields
+ * d/watch: use repacksuffix and use dversionmangle instead of uversionmangle
+ * d/rules: add get-orig-source target
+ * change priority from extra to optional because it has no conflicts and is
+ not a debug package
+
+ -- Johannes Schauer <josch@debian.org> Wed, 04 Feb 2015 14:14:39 +0100
+
+fuzzylite (5.0+dfsg-2) unstable; urgency=medium
+
+ * add patch 20141027-fix-some-spelling to fix some spelling mistakes until
+ the next upstream release
+ * bump Standards-Version to 3.9.6. No changes needed.
+
+ -- Johannes Schauer <j.schauer@email.de> Sun, 16 Nov 2014 22:14:30 +0100
+
+fuzzylite (5.0+dfsg-1) unstable; urgency=low
+
+ * Initial release. (Closes: #761075)
+
+ -- Johannes Schauer <j.schauer@email.de> Mon, 01 Sep 2014 21:25:35 +0200
diff --git a/debian/compat b/debian/compat
new file mode 100644
index 0000000..ec63514
--- /dev/null
+++ b/debian/compat
@@ -0,0 +1 @@
+9
diff --git a/debian/control b/debian/control
new file mode 100644
index 0000000..bd0a336
--- /dev/null
+++ b/debian/control
@@ -0,0 +1,68 @@
+Source: fuzzylite
+Section: misc
+Priority: optional
+Maintainer: Johannes Schauer <josch@debian.org>
+Standards-Version: 3.9.6
+Homepage: http://www.fuzzylite.com/cpp/
+Build-Depends: debhelper (>= 9), cmake
+Vcs-Browser: http://anonscm.debian.org/cgit/collab-maint/fuzzylite.git/
+Vcs-Git: git://anonscm.debian.org/collab-maint/fuzzylite.git
+
+Package: fuzzylite
+Architecture: any
+Depends: ${misc:Depends}, ${shlibs:Depends}
+Description: fuzzy logic control binary
+ fuzzylite is a fuzzy logic control library which allows one to easily
+ create fuzzy logic controllers in a few steps utilizing object-oriented
+ programming. It supports five controller types (Mamdani, Takagi-Sugeno,
+ Larsen, Tsukamoto, Inverse Tsukamoto), 20 linguistic terms, five
+ integral and two weighted defuzzifiers, six hedge types, three import
+ types (FuzzyLite Language, Fuzzy Inference System and Fuzzy Control
+ Language) and six export types (C++, Java, FuzzyLite Language, FuzzyLite
+ Dataset, Fuzzy Inference System, Fuzzy Control Language). It comes
+ bundled with more than thirty examples for Mamdani, Takagi-Sugeno and
+ Tsukamoto controllers from fuzzylite, octave and matlab, each in all
+ supported export formats.
+ .
+ This package contains the runtime binary
+
+
+Package: libfuzzylite5.1
+Architecture: any
+Multi-Arch: same
+Depends: ${misc:Depends}, ${shlibs:Depends}
+Pre-Depends: ${misc:Pre-Depends}
+Description: fuzzy logic control shared library
+ fuzzylite is a fuzzy logic control library which allows one to easily
+ create fuzzy logic controllers in a few steps utilizing object-oriented
+ programming. It supports five controller types (Mamdani, Takagi-Sugeno,
+ Larsen, Tsukamoto, Inverse Tsukamoto), 20 linguistic terms, five
+ integral and two weighted defuzzifiers, six hedge types, three import
+ types (FuzzyLite Language, Fuzzy Inference System and Fuzzy Control
+ Language) and six export types (C++, Java, FuzzyLite Language, FuzzyLite
+ Dataset, Fuzzy Inference System, Fuzzy Control Language). It comes
+ bundled with more than thirty examples for Mamdani, Takagi-Sugeno and
+ Tsukamoto controllers from fuzzylite, octave and matlab, each in all
+ supported export formats.
+ .
+ This package contains the shared library
+
+Package: libfuzzylite-dev
+Architecture: any
+Multi-Arch: same
+Depends: ${misc:Depends}, libfuzzylite5.1 (= ${binary:Version})
+Section: libdevel
+Description: fuzzy logic control development headers
+ fuzzylite is a fuzzy logic control library which allows one to easily
+ create fuzzy logic controllers in a few steps utilizing object-oriented
+ programming. It supports five controller types (Mamdani, Takagi-Sugeno,
+ Larsen, Tsukamoto, Inverse Tsukamoto), 20 linguistic terms, five
+ integral and two weighted defuzzifiers, six hedge types, three import
+ types (FuzzyLite Language, Fuzzy Inference System and Fuzzy Control
+ Language) and six export types (C++, Java, FuzzyLite Language, FuzzyLite
+ Dataset, Fuzzy Inference System, Fuzzy Control Language). It comes
+ bundled with more than thirty examples for Mamdani, Takagi-Sugeno and
+ Tsukamoto controllers from fuzzylite, octave and matlab, each in all
+ supported export formats.
+ .
+ This package contains the development headers
diff --git a/debian/copyright b/debian/copyright
new file mode 100644
index 0000000..d911f27
--- /dev/null
+++ b/debian/copyright
@@ -0,0 +1,62 @@
+Format: http://www.debian.org/doc/packaging-manuals/copyright-format/1.0/
+Upstream-Name: fuzzylite
+Upstream-Contact: Juan Rada-Vilela <jcrada@fuzzylite.com>
+Source: http://www.fuzzylite.com/cpp/
+Files-Excluded:
+ examples/mamdani/matlab
+ examples/takagi-sugeno/matlab
+ examples/original/mamdani/matlab
+ examples/original/takagi-sugeno/matlab
+
+Files: *
+Copyright: 2010-2014 FuzzyLite Limited
+License: LGPL-3+
+ This file is part of fuzzylite.
+ .
+ fuzzylite is free software: you can redistribute it and/or modify it under
+ the terms of the GNU Lesser General Public License as published by the Free
+ Software Foundation, either version 3 of the License, or (at your option)
+ any later version.
+ .
+ fuzzylite 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 Lesser General Public License
+ for more details.
+ .
+ On Debian and systems the full text of the GNU Lesser General Public License
+ version 3 can be found in the file /usr/share/common-licenses/LGPL-3
+
+Files:
+ examples/original/takagi-sugeno/octave/*.fis
+ examples/original/mamdani/octave/*.fis
+Copyright:
+ 2011-2012 L. Markowsky <lmarkov@users.sourceforge.net>
+License: GPL-3+
+ This file is part of the fuzzy-logic-toolkit.
+ .
+ The fuzzy-logic-toolkit 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.
+ .
+ The fuzzy-logic-toolkit 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.
+ .
+ On Debian and systems the full text of the GNU General Public License
+ version 3 can be found in the file /usr/share/common-licenses/GPL-3
+
+Files: debian/*
+Copyright: 2014 Johannes Schauer <j.schauer@email.de>
+License: Expat
+ Permission is hereby granted, free of charge, to any person obtaining
+ a copy of this software and associated documentation files (the
+ "Software"), to deal in the Software without restriction, including
+ without limitation the rights to use, copy, modify, merge, publish,
+ distribute, sublicense, and/or sell copies of the Software, and to
+ permit persons to whom the Software is furnished to do so, subject to
+ the following conditions:
+ .
+ The above copyright notice and this permission notice shall be included
+ in all copies or substantial portions of the Software.
diff --git a/debian/fuzzylite.1 b/debian/fuzzylite.1
new file mode 100644
index 0000000..22d08d0
--- /dev/null
+++ b/debian/fuzzylite.1
@@ -0,0 +1,39 @@
+.TH fuzzylite 1 "October 26, 2014" "version 5.0" "USER COMMANDS"
+.SH NAME
+fuzzylite \- a fuzzy logic control library
+.SH SYNOPSIS
+.B fuzzylite
+[\-i inputfile] [\-if format] [\-o outputfile] [\-of format] [\-example letter] [\-decimals number] [\-d datafile] [\-dmaximum number] [\-dheader boolean] [\-dinputs boolean]
+.SH OPTIONS
+.TP
+\-i inputfile
+file to import your engine from
+.TP
+\-if format
+format of the file to import (fll | fis | fcl)
+.TP
+\-o outputfile
+file to export your engine to
+.TP
+\-of format
+format of the file to export (fll | fld | cpp | java | fis | fcl)
+.TP
+\-example letter
+if not inputfile, built\-in example to use as engine: (m)amdani or (t)akagi\-sugeno
+.TP
+\-decimals number
+number of decimals to write floating\-poing values
+.TP
+\-d datafile
+if exporting to fld, file of input values to evaluate your engine on
+.TP
+\-dmaximum number
+if exporting to fld without datafile, maximum number of results to export
+.TP
+\-dheader boolean
+if true and exporting to fld, include headers
+.TP
+\-dinputs boolean
+if true and exporting to fld, include input values
+.SH AUTHOR
+Juan Rada\-Vilela
diff --git a/debian/fuzzylite.install b/debian/fuzzylite.install
new file mode 100644
index 0000000..6b42168
--- /dev/null
+++ b/debian/fuzzylite.install
@@ -0,0 +1 @@
+usr/bin/fuzzylite
diff --git a/debian/fuzzylite.manpages b/debian/fuzzylite.manpages
new file mode 100644
index 0000000..95928c0
--- /dev/null
+++ b/debian/fuzzylite.manpages
@@ -0,0 +1 @@
+debian/fuzzylite.1
diff --git a/debian/libfuzzylite-dev.install b/debian/libfuzzylite-dev.install
new file mode 100644
index 0000000..f527373
--- /dev/null
+++ b/debian/libfuzzylite-dev.install
@@ -0,0 +1,4 @@
+usr/include
+usr/lib/*/libfuzzylite-static.a
+usr/lib/*/libfuzzylite.so
+usr/lib/*/pkgconfig/fuzzylite.pc
diff --git a/debian/libfuzzylite5.1.install b/debian/libfuzzylite5.1.install
new file mode 100644
index 0000000..4512146
--- /dev/null
+++ b/debian/libfuzzylite5.1.install
@@ -0,0 +1 @@
+usr/lib/*/libfuzzylite.so.*
diff --git a/debian/libfuzzylite5.1.lintian-overrides b/debian/libfuzzylite5.1.lintian-overrides
new file mode 100644
index 0000000..ed9cc6f
--- /dev/null
+++ b/debian/libfuzzylite5.1.lintian-overrides
@@ -0,0 +1,10 @@
+# In the words of the author of fuzzylite, Juan Rada-Vilela:
+#
+# The calls to exit() happen on static methods signalHandler and terminate, both
+# of which are optionally configured by the program, not the library. The library
+# will not use either of these methods unless a program explicitly asks these
+# methods to be used. These are just handy/example methods. I would expect
+# programs to provide their own handling of signals instead.
+#
+# See: https://github.com/fuzzylite/fuzzylite/issues/4
+libfuzzylite5.0 binary: shlib-calls-exit
diff --git a/debian/libfuzzylite5.1.symbols b/debian/libfuzzylite5.1.symbols
new file mode 100644
index 0000000..9fa2a55
--- /dev/null
+++ b/debian/libfuzzylite5.1.symbols
@@ -0,0 +1,1682 @@
+libfuzzylite.so.5.1 libfuzzylite5.1 #MINVER#
+ (c++)"fl::Antecedent::load(fl::Rule*, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Antecedent::load(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Rule*, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Antecedent::unload()@Base" 5.1
+ (c++)"fl::Antecedent::setText(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Antecedent::Antecedent()@Base" 5.1
+ (c++)"fl::Antecedent::Antecedent()@Base" 5.1
+ (c++)"fl::Antecedent::~Antecedent()@Base" 5.1
+ (c++)"fl::Antecedent::~Antecedent()@Base" 5.1
+ (c++)"fl::Antecedent::~Antecedent()@Base" 5.1
+ (c++)"fl::BoundedSum::constructor()@Base" 5.1
+ (c++)"fl::BoundedSum::~BoundedSum()@Base" 5.1
+ (c++)"fl::BoundedSum::~BoundedSum()@Base" 5.1
+ (c++)"fl::BoundedSum::~BoundedSum()@Base" 5.1
+ (c++)"fl::Consequent::load(fl::Rule*, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Consequent::load(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Rule*, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Consequent::modify(double, fl::TNorm const*)@Base" 5.1
+ (c++)"fl::Consequent::unload()@Base" 5.1
+ (c++)"fl::Consequent::setText(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Consequent::isLoaded()@Base" 5.1
+ (c++)"fl::Consequent::Consequent()@Base" 5.1
+ (c++)"fl::Consequent::Consequent()@Base" 5.1
+ (c++)"fl::Consequent::~Consequent()@Base" 5.1
+ (c++)"fl::Consequent::~Consequent()@Base" 5.1
+ (c++)"fl::Consequent::~Consequent()@Base" 5.1
+ (c++)"fl::DrasticSum::constructor()@Base" 5.1
+ (c++)"fl::DrasticSum::~DrasticSum()@Base" 5.1
+ (c++)"fl::DrasticSum::~DrasticSum()@Base" 5.1
+ (c++)"fl::DrasticSum::~DrasticSum()@Base" 5.1
+ (c++)"fl::Expression::Expression()@Base" 5.1
+ (c++)"fl::Expression::Expression()@Base" 5.1
+ (c++)"fl::Expression::~Expression()@Base" 5.1
+ (c++)"fl::Expression::~Expression()@Base" 5.1
+ (c++)"fl::Expression::~Expression()@Base" 5.1
+ (c++)"fl::Accumulated::removeTerm(int)@Base" 5.1
+ (c++)"fl::Accumulated::setMaximum(double)@Base" 5.1
+ (c++)"fl::Accumulated::setMinimum(double)@Base" 5.1
+ (c++)"fl::Accumulated::setAccumulation(fl::SNorm*)@Base" 5.1
+ (c++)"fl::Accumulated::clear()@Base" 5.1
+ (c++)"fl::Accumulated::terms()@Base" 5.1
+ (c++)"fl::Accumulated::addTerm(fl::Term const*, double, fl::TNorm const*)@Base" 5.1
+ (c++)"fl::Accumulated::addTerm(fl::Activated*)@Base" 5.1
+ (c++)"fl::Accumulated::copyFrom(fl::Accumulated const&)@Base" 5.1
+ (c++)"fl::Accumulated::setRange(double, double)@Base" 5.1
+ (c++)"fl::Accumulated::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Accumulated::Accumulated(fl::Accumulated const&)@Base" 5.1
+ (c++)"fl::Accumulated::Accumulated(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, fl::SNorm*)@Base" 5.1
+ (c++)"fl::Accumulated::Accumulated(fl::Accumulated const&)@Base" 5.1
+ (c++)"fl::Accumulated::Accumulated(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, fl::SNorm*)@Base" 5.1
+ (c++)"fl::Accumulated::~Accumulated()@Base" 5.1
+ (c++)"fl::Accumulated::~Accumulated()@Base" 5.1
+ (c++)"fl::Accumulated::~Accumulated()@Base" 5.1
+ (c++)"fl::Accumulated::operator=(fl::Accumulated const&)@Base" 5.1
+ (c++)"fl::CppExporter::CppExporter(bool)@Base" 5.1
+ (c++)"fl::CppExporter::CppExporter(bool)@Base" 5.1
+ (c++)"fl::CppExporter::~CppExporter()@Base" 5.1
+ (c++)"fl::CppExporter::~CppExporter()@Base" 5.1
+ (c++)"fl::CppExporter::~CppExporter()@Base" 5.1
+ (c++)"fl::EinsteinSum::constructor()@Base" 5.1
+ (c++)"fl::EinsteinSum::~EinsteinSum()@Base" 5.1
+ (c++)"fl::EinsteinSum::~EinsteinSum()@Base" 5.1
+ (c++)"fl::EinsteinSum::~EinsteinSum()@Base" 5.1
+ (c++)"fl::FclExporter::setIndent(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FclExporter::FclExporter(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FclExporter::FclExporter(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FclExporter::~FclExporter()@Base" 5.1
+ (c++)"fl::FclExporter::~FclExporter()@Base" 5.1
+ (c++)"fl::FclExporter::~FclExporter()@Base" 5.1
+ (c++)"fl::FclImporter::FclImporter()@Base" 5.1
+ (c++)"fl::FclImporter::FclImporter()@Base" 5.1
+ (c++)"fl::FclImporter::~FclImporter()@Base" 5.1
+ (c++)"fl::FclImporter::~FclImporter()@Base" 5.1
+ (c++)"fl::FclImporter::~FclImporter()@Base" 5.1
+ (c++)"fl::FisExporter::FisExporter()@Base" 5.1
+ (c++)"fl::FisExporter::FisExporter()@Base" 5.1
+ (c++)"fl::FisExporter::~FisExporter()@Base" 5.1
+ (c++)"fl::FisExporter::~FisExporter()@Base" 5.1
+ (c++)"fl::FisExporter::~FisExporter()@Base" 5.1
+ (c++)"fl::FisImporter::FisImporter()@Base" 5.1
+ (c++)"fl::FisImporter::FisImporter()@Base" 5.1
+ (c++)"fl::FisImporter::~FisImporter()@Base" 5.1
+ (c++)"fl::FisImporter::~FisImporter()@Base" 5.1
+ (c++)"fl::FisImporter::~FisImporter()@Base" 5.1
+ (c++)"fl::FldExporter::setSeparator(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FldExporter::setExportHeader(bool)@Base" 5.1
+ (c++)"fl::FldExporter::setExportInputValues(bool)@Base" 5.1
+ (c++)"fl::FldExporter::setExportOutputValues(bool)@Base" 5.1
+ (c++)"fl::FldExporter::FldExporter(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FldExporter::FldExporter(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FldExporter::~FldExporter()@Base" 5.1
+ (c++)"fl::FldExporter::~FldExporter()@Base" 5.1
+ (c++)"fl::FldExporter::~FldExporter()@Base" 5.1
+ (c++)"fl::FllExporter::setSeparator(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FllExporter::setIndent(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FllExporter::FllExporter(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FllExporter::FllExporter(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FllExporter::~FllExporter()@Base" 5.1
+ (c++)"fl::FllExporter::~FllExporter()@Base" 5.1
+ (c++)"fl::FllExporter::~FllExporter()@Base" 5.1
+ (c++)"fl::FllImporter::setSeparator(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FllImporter::FllImporter(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FllImporter::FllImporter(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::FllImporter::~FllImporter()@Base" 5.1
+ (c++)"fl::FllImporter::~FllImporter()@Base" 5.1
+ (c++)"fl::FllImporter::~FllImporter()@Base" 5.1
+ (c++)"fl::HamacherSum::constructor()@Base" 5.1
+ (c++)"fl::HamacherSum::~HamacherSum()@Base" 5.1
+ (c++)"fl::HamacherSum::~HamacherSum()@Base" 5.1
+ (c++)"fl::HamacherSum::~HamacherSum()@Base" 5.1
+ (c++)"fl::Proposition::Proposition()@Base" 5.1
+ (c++)"fl::Proposition::Proposition()@Base" 5.1
+ (c++)"fl::Proposition::~Proposition()@Base" 5.1
+ (c++)"fl::Proposition::~Proposition()@Base" 5.1
+ (c++)"fl::Proposition::~Proposition()@Base" 5.1
+ (c++)"fl::TermFactory::TermFactory()@Base" 5.1
+ (c++)"fl::TermFactory::TermFactory()@Base" 5.1
+ (c++)"fl::TermFactory::~TermFactory()@Base" 5.1
+ (c++)"fl::TermFactory::~TermFactory()@Base" 5.1
+ (c++)"fl::TermFactory::~TermFactory()@Base" 5.1
+ (c++)"fl::WeightedSum::constructor()@Base" 5.1
+ (c++)"fl::WeightedSum::WeightedSum(fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::WeightedSum::WeightedSum(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::WeightedSum::WeightedSum(fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::WeightedSum::WeightedSum(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::WeightedSum::~WeightedSum()@Base" 5.1
+ (c++)"fl::WeightedSum::~WeightedSum()@Base" 5.1
+ (c++)"fl::WeightedSum::~WeightedSum()@Base" 5.1
+ (c++)"fl::AlgebraicSum::constructor()@Base" 5.1
+ (c++)"fl::AlgebraicSum::~AlgebraicSum()@Base" 5.1
+ (c++)"fl::AlgebraicSum::~AlgebraicSum()@Base" 5.1
+ (c++)"fl::AlgebraicSum::~AlgebraicSum()@Base" 5.1
+ (c++)"fl::HedgeFactory::HedgeFactory()@Base" 5.1
+ (c++)"fl::HedgeFactory::HedgeFactory()@Base" 5.1
+ (c++)"fl::HedgeFactory::~HedgeFactory()@Base" 5.1
+ (c++)"fl::HedgeFactory::~HedgeFactory()@Base" 5.1
+ (c++)"fl::HedgeFactory::~HedgeFactory()@Base" 5.1
+ (c++)"fl::JavaExporter::JavaExporter()@Base" 5.1
+ (c++)"fl::JavaExporter::JavaExporter()@Base" 5.1
+ (c++)"fl::JavaExporter::~JavaExporter()@Base" 5.1
+ (c++)"fl::JavaExporter::~JavaExporter()@Base" 5.1
+ (c++)"fl::JavaExporter::~JavaExporter()@Base" 5.1
+ (c++)"fl::SNormFactory::SNormFactory()@Base" 5.1
+ (c++)"fl::SNormFactory::SNormFactory()@Base" 5.1
+ (c++)"fl::SNormFactory::~SNormFactory()@Base" 5.1
+ (c++)"fl::SNormFactory::~SNormFactory()@Base" 5.1
+ (c++)"fl::SNormFactory::~SNormFactory()@Base" 5.1
+ (c++)"fl::TNormFactory::TNormFactory()@Base" 5.1
+ (c++)"fl::TNormFactory::TNormFactory()@Base" 5.1
+ (c++)"fl::TNormFactory::~TNormFactory()@Base" 5.1
+ (c++)"fl::TNormFactory::~TNormFactory()@Base" 5.1
+ (c++)"fl::TNormFactory::~TNormFactory()@Base" 5.1
+ (c++)"fl::InputVariable::setInputValue(double)@Base" 5.1
+ (c++)"fl::InputVariable::InputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double)@Base" 5.1
+ (c++)"fl::InputVariable::InputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double)@Base" 5.1
+ (c++)"fl::InputVariable::~InputVariable()@Base" 5.1
+ (c++)"fl::InputVariable::~InputVariable()@Base" 5.1
+ (c++)"fl::InputVariable::~InputVariable()@Base" 5.1
+ (c++)"fl::MeanOfMaximum::constructor()@Base" 5.1
+ (c++)"fl::MeanOfMaximum::MeanOfMaximum(int)@Base" 5.1
+ (c++)"fl::MeanOfMaximum::MeanOfMaximum(int)@Base" 5.1
+ (c++)"fl::MeanOfMaximum::~MeanOfMaximum()@Base" 5.1
+ (c++)"fl::MeanOfMaximum::~MeanOfMaximum()@Base" 5.1
+ (c++)"fl::MeanOfMaximum::~MeanOfMaximum()@Base" 5.1
+ (c++)"fl::NormalizedSum::constructor()@Base" 5.1
+ (c++)"fl::NormalizedSum::~NormalizedSum()@Base" 5.1
+ (c++)"fl::NormalizedSum::~NormalizedSum()@Base" 5.1
+ (c++)"fl::NormalizedSum::~NormalizedSum()@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::registerObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Function::Element*)@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::deregisterObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::CloningFactory(fl::CloningFactory<fl::Function::Element*> const&)@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::CloningFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::CloningFactory(fl::CloningFactory<fl::Function::Element*> const&)@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::CloningFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::~CloningFactory()@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::~CloningFactory()@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::~CloningFactory()@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::operator=(fl::CloningFactory<fl::Function::Element*> const&)@Base" 5.1
+ (c++)"fl::DrasticProduct::constructor()@Base" 5.1
+ (c++)"fl::DrasticProduct::~DrasticProduct()@Base" 5.1
+ (c++)"fl::DrasticProduct::~DrasticProduct()@Base" 5.1
+ (c++)"fl::DrasticProduct::~DrasticProduct()@Base" 5.1
+ (c++)"fl::FactoryManager::setFunction(fl::FunctionFactory*)@Base" 5.1
+ (c++)"fl::FactoryManager::setDefuzzifier(fl::DefuzzifierFactory*)@Base" 5.1
+ (c++)"fl::FactoryManager::setTerm(fl::TermFactory*)@Base" 5.1
+ (c++)"fl::FactoryManager::instance()@Base" 5.1
+ (c++)"fl::FactoryManager::setHedge(fl::HedgeFactory*)@Base" 5.1
+ (c++)"fl::FactoryManager::setSnorm(fl::SNormFactory*)@Base" 5.1
+ (c++)"fl::FactoryManager::setTnorm(fl::TNormFactory*)@Base" 5.1
+ (c++)"fl::FactoryManager::_instance@Base" 5.1
+ (c++)"fl::FactoryManager::FactoryManager(fl::TNormFactory*, fl::SNormFactory*, fl::DefuzzifierFactory*, fl::TermFactory*, fl::HedgeFactory*, fl::FunctionFactory*)@Base" 5.1
+ (c++)"fl::FactoryManager::FactoryManager(fl::FactoryManager const&)@Base" 5.1
+ (c++)"fl::FactoryManager::FactoryManager()@Base" 5.1
+ (c++)"fl::FactoryManager::FactoryManager(fl::TNormFactory*, fl::SNormFactory*, fl::DefuzzifierFactory*, fl::TermFactory*, fl::HedgeFactory*, fl::FunctionFactory*)@Base" 5.1
+ (c++)"fl::FactoryManager::FactoryManager(fl::FactoryManager const&)@Base" 5.1
+ (c++)"fl::FactoryManager::FactoryManager()@Base" 5.1
+ (c++)"fl::FactoryManager::~FactoryManager()@Base" 5.1
+ (c++)"fl::FactoryManager::~FactoryManager()@Base" 5.1
+ (c++)"fl::FactoryManager::~FactoryManager()@Base" 5.1
+ (c++)"fl::FactoryManager::operator=(fl::FactoryManager const&)@Base" 5.1
+ (c++)"fl::OutputVariable::setMaximum(double)@Base" 5.1
+ (c++)"fl::OutputVariable::setMinimum(double)@Base" 5.1
+ (c++)"fl::OutputVariable::setDefuzzifier(fl::Defuzzifier*)@Base" 5.1
+ (c++)"fl::OutputVariable::setOutputValue(double)@Base" 5.1
+ (c++)"fl::OutputVariable::setDefaultValue(double)@Base" 5.1
+ (c++)"fl::OutputVariable::setPreviousOutputValue(double)@Base" 5.1
+ (c++)"fl::OutputVariable::setLockOutputValueInRange(bool)@Base" 5.1
+ (c++)"fl::OutputVariable::setLockPreviousOutputValue(bool)@Base" 5.1
+ (c++)"fl::OutputVariable::clear()@Base" 5.1
+ (c++)"fl::OutputVariable::setName(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::OutputVariable::copyFrom(fl::OutputVariable const&)@Base" 5.1
+ (c++)"fl::OutputVariable::defuzzify()@Base" 5.1
+ (c++)"fl::OutputVariable::OutputVariable(fl::OutputVariable const&)@Base" 5.1
+ (c++)"fl::OutputVariable::OutputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double)@Base" 5.1
+ (c++)"fl::OutputVariable::OutputVariable(fl::OutputVariable const&)@Base" 5.1
+ (c++)"fl::OutputVariable::OutputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double)@Base" 5.1
+ (c++)"fl::OutputVariable::~OutputVariable()@Base" 5.1
+ (c++)"fl::OutputVariable::~OutputVariable()@Base" 5.1
+ (c++)"fl::OutputVariable::~OutputVariable()@Base" 5.1
+ (c++)"fl::OutputVariable::operator=(fl::OutputVariable const&)@Base" 5.1
+ (c++)"fl::SigmoidProduct::setFalling(double)@Base" 5.1
+ (c++)"fl::SigmoidProduct::constructor()@Base" 5.1
+ (c++)"fl::SigmoidProduct::setLeft(double)@Base" 5.1
+ (c++)"fl::SigmoidProduct::setRight(double)@Base" 5.1
+ (c++)"fl::SigmoidProduct::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::SigmoidProduct::setRising(double)@Base" 5.1
+ (c++)"fl::SigmoidProduct::SigmoidProduct(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::SigmoidProduct::SigmoidProduct(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::SigmoidProduct::~SigmoidProduct()@Base" 5.1
+ (c++)"fl::SigmoidProduct::~SigmoidProduct()@Base" 5.1
+ (c++)"fl::SigmoidProduct::~SigmoidProduct()@Base" 5.1
+ (c++)"fl::EinsteinProduct::constructor()@Base" 5.1
+ (c++)"fl::EinsteinProduct::~EinsteinProduct()@Base" 5.1
+ (c++)"fl::EinsteinProduct::~EinsteinProduct()@Base" 5.1
+ (c++)"fl::EinsteinProduct::~EinsteinProduct()@Base" 5.1
+ (c++)"fl::FunctionFactory::FunctionFactory()@Base" 5.1
+ (c++)"fl::FunctionFactory::FunctionFactory()@Base" 5.1
+ (c++)"fl::FunctionFactory::~FunctionFactory()@Base" 5.1
+ (c++)"fl::FunctionFactory::~FunctionFactory()@Base" 5.1
+ (c++)"fl::FunctionFactory::~FunctionFactory()@Base" 5.1
+ (c++)"fl::GaussianProduct::constructor()@Base" 5.1
+ (c++)"fl::GaussianProduct::setStandardDeviationA(double)@Base" 5.1
+ (c++)"fl::GaussianProduct::setStandardDeviationB(double)@Base" 5.1
+ (c++)"fl::GaussianProduct::setMeanA(double)@Base" 5.1
+ (c++)"fl::GaussianProduct::setMeanB(double)@Base" 5.1
+ (c++)"fl::GaussianProduct::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::GaussianProduct::GaussianProduct(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::GaussianProduct::GaussianProduct(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::GaussianProduct::~GaussianProduct()@Base" 5.1
+ (c++)"fl::GaussianProduct::~GaussianProduct()@Base" 5.1
+ (c++)"fl::GaussianProduct::~GaussianProduct()@Base" 5.1
+ (c++)"fl::HamacherProduct::constructor()@Base" 5.1
+ (c++)"fl::HamacherProduct::~HamacherProduct()@Base" 5.1
+ (c++)"fl::HamacherProduct::~HamacherProduct()@Base" 5.1
+ (c++)"fl::HamacherProduct::~HamacherProduct()@Base" 5.1
+ (c++)"fl::WeightedAverage::constructor()@Base" 5.1
+ (c++)"fl::WeightedAverage::WeightedAverage(fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::WeightedAverage::WeightedAverage(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::WeightedAverage::WeightedAverage(fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::WeightedAverage::WeightedAverage(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::WeightedAverage::~WeightedAverage()@Base" 5.1
+ (c++)"fl::WeightedAverage::~WeightedAverage()@Base" 5.1
+ (c++)"fl::WeightedAverage::~WeightedAverage()@Base" 5.1
+ (c++)"fl::AlgebraicProduct::constructor()@Base" 5.1
+ (c++)"fl::AlgebraicProduct::~AlgebraicProduct()@Base" 5.1
+ (c++)"fl::AlgebraicProduct::~AlgebraicProduct()@Base" 5.1
+ (c++)"fl::AlgebraicProduct::~AlgebraicProduct()@Base" 5.1
+ (c++)"fl::LargestOfMaximum::constructor()@Base" 5.1
+ (c++)"fl::LargestOfMaximum::LargestOfMaximum(int)@Base" 5.1
+ (c++)"fl::LargestOfMaximum::LargestOfMaximum(int)@Base" 5.1
+ (c++)"fl::LargestOfMaximum::~LargestOfMaximum()@Base" 5.1
+ (c++)"fl::LargestOfMaximum::~LargestOfMaximum()@Base" 5.1
+ (c++)"fl::LargestOfMaximum::~LargestOfMaximum()@Base" 5.1
+ (c++)"fl::NilpotentMaximum::constructor()@Base" 5.1
+ (c++)"fl::NilpotentMaximum::~NilpotentMaximum()@Base" 5.1
+ (c++)"fl::NilpotentMaximum::~NilpotentMaximum()@Base" 5.1
+ (c++)"fl::NilpotentMaximum::~NilpotentMaximum()@Base" 5.1
+ (c++)"fl::NilpotentMinimum::constructor()@Base" 5.1
+ (c++)"fl::NilpotentMinimum::~NilpotentMinimum()@Base" 5.1
+ (c++)"fl::NilpotentMinimum::~NilpotentMinimum()@Base" 5.1
+ (c++)"fl::NilpotentMinimum::~NilpotentMinimum()@Base" 5.1
+ (c++)"fl::BoundedDifference::constructor()@Base" 5.1
+ (c++)"fl::BoundedDifference::~BoundedDifference()@Base" 5.1
+ (c++)"fl::BoundedDifference::~BoundedDifference()@Base" 5.1
+ (c++)"fl::BoundedDifference::~BoundedDifference()@Base" 5.1
+ (c++)"fl::SigmoidDifference::setFalling(double)@Base" 5.1
+ (c++)"fl::SigmoidDifference::constructor()@Base" 5.1
+ (c++)"fl::SigmoidDifference::setLeft(double)@Base" 5.1
+ (c++)"fl::SigmoidDifference::setRight(double)@Base" 5.1
+ (c++)"fl::SigmoidDifference::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::SigmoidDifference::setRising(double)@Base" 5.1
+ (c++)"fl::SigmoidDifference::SigmoidDifference(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::SigmoidDifference::SigmoidDifference(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::SigmoidDifference::~SigmoidDifference()@Base" 5.1
+ (c++)"fl::SigmoidDifference::~SigmoidDifference()@Base" 5.1
+ (c++)"fl::SigmoidDifference::~SigmoidDifference()@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::constructor()@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::SmallestOfMaximum(int)@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::SmallestOfMaximum(int)@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::~SmallestOfMaximum()@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::~SmallestOfMaximum()@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::~SmallestOfMaximum()@Base" 5.1
+ (c++)"fl::DefuzzifierFactory::constructDefuzzifier(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::DefuzzifierFactory::DefuzzifierFactory()@Base" 5.1
+ (c++)"fl::DefuzzifierFactory::DefuzzifierFactory()@Base" 5.1
+ (c++)"fl::DefuzzifierFactory::~DefuzzifierFactory()@Base" 5.1
+ (c++)"fl::DefuzzifierFactory::~DefuzzifierFactory()@Base" 5.1
+ (c++)"fl::DefuzzifierFactory::~DefuzzifierFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::registerConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Defuzzifier* (*)())@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::deregisterConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::registerConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Term* (*)())@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::deregisterConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::registerConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Hedge* (*)())@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::deregisterConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::registerConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::SNorm* (*)())@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::deregisterConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::registerConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::TNorm* (*)())@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::deregisterConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::ConstructionFactory(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::~ConstructionFactory()@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::setResolution(int)@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::defaultResolution()@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::_defaultResolution@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::setDefaultResolution(int)@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::IntegralDefuzzifier(int)@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::IntegralDefuzzifier(int)@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::~IntegralDefuzzifier()@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::~IntegralDefuzzifier()@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::~IntegralDefuzzifier()@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::setType(fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::typeName(fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::WeightedDefuzzifier(fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::WeightedDefuzzifier(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::WeightedDefuzzifier(fl::WeightedDefuzzifier::Type)@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::WeightedDefuzzifier(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::~WeightedDefuzzifier()@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::~WeightedDefuzzifier()@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::~WeightedDefuzzifier()@Base" 5.1
+ (c++)"fl::Any::constructor()@Base" 5.1
+ (c++)"fl::Any::Any()@Base" 5.1
+ (c++)"fl::Any::Any()@Base" 5.1
+ (c++)"fl::Any::~Any()@Base" 5.1
+ (c++)"fl::Any::~Any()@Base" 5.1
+ (c++)"fl::Any::~Any()@Base" 5.1
+ (c++)"fl::Not::constructor()@Base" 5.1
+ (c++)"fl::Not::~Not()@Base" 5.1
+ (c++)"fl::Not::~Not()@Base" 5.1
+ (c++)"fl::Not::~Not()@Base" 5.1
+ (c++)"fl::Bell::constructor()@Base" 5.1
+ (c++)"fl::Bell::setSlope(double)@Base" 5.1
+ (c++)"fl::Bell::setWidth(double)@Base" 5.1
+ (c++)"fl::Bell::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Bell::setCenter(double)@Base" 5.1
+ (c++)"fl::Bell::Bell(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double)@Base" 5.1
+ (c++)"fl::Bell::Bell(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double)@Base" 5.1
+ (c++)"fl::Bell::~Bell()@Base" 5.1
+ (c++)"fl::Bell::~Bell()@Base" 5.1
+ (c++)"fl::Bell::~Bell()@Base" 5.1
+ (c++)"fl::Ramp::constructor()@Base" 5.1
+ (c++)"fl::Ramp::setEnd(double)@Base" 5.1
+ (c++)"fl::Ramp::setStart(double)@Base" 5.1
+ (c++)"fl::Ramp::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Ramp::Ramp(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Ramp::Ramp(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Ramp::~Ramp()@Base" 5.1
+ (c++)"fl::Ramp::~Ramp()@Base" 5.1
+ (c++)"fl::Ramp::~Ramp()@Base" 5.1
+ (c++)"fl::Rule::removeHedge(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Rule::setAntecedent(fl::Antecedent*)@Base" 5.1
+ (c++)"fl::Rule::setConsequent(fl::Consequent*)@Base" 5.1
+ (c++)"fl::Rule::load(fl::Engine const*)@Base" 5.1
+ (c++)"fl::Rule::load(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Rule::parse(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Rule::hedges()@Base" 5.1
+ (c++)"fl::Rule::unload()@Base" 5.1
+ (c++)"fl::Rule::setText(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Rule::addHedge(fl::Hedge*)@Base" 5.1
+ (c++)"fl::Rule::setHedges(std::map<std::basic_string<char, std::char_traits<char>, std::allocator<char> >, fl::Hedge*, std::less<std::basic_string<char, std::char_traits<char>, std::allocator<char> > >, std::allocator<std::pair<std::basic_string<char, std::char_traits<char>, std::allocator<char> > const, fl::Hedge*> > > const&)@Base" 5.1
+ (c++)"fl::Rule::setWeight(double)@Base" 5.1
+ (c++)"fl::Rule::Rule(fl::Rule const&)@Base" 5.1
+ (c++)"fl::Rule::Rule(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double)@Base" 5.1
+ (c++)"fl::Rule::Rule(fl::Rule const&)@Base" 5.1
+ (c++)"fl::Rule::Rule(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double)@Base" 5.1
+ (c++)"fl::Rule::~Rule()@Base" 5.1
+ (c++)"fl::Rule::~Rule()@Base" 5.1
+ (c++)"fl::Rule::~Rule()@Base" 5.1
+ (c++)"fl::Rule::operator=(fl::Rule const&)@Base" 5.1
+ (c++)"fl::Term::updateReference(fl::Term*, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Term::setName(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Term::setHeight(double)@Base" 5.1
+ (c++)"fl::Term::Term(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double)@Base" 5.1
+ (c++)"fl::Term::Term(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double)@Base" 5.1
+ (c++)"fl::Term::~Term()@Base" 5.1
+ (c++)"fl::Term::~Term()@Base" 5.1
+ (c++)"fl::Term::~Term()@Base" 5.1
+ (c++)"fl::Very::constructor()@Base" 5.1
+ (c++)"fl::Very::~Very()@Base" 5.1
+ (c++)"fl::Very::~Very()@Base" 5.1
+ (c++)"fl::Very::~Very()@Base" 5.1
+ (c++)"fl::Spike::constructor()@Base" 5.1
+ (c++)"fl::Spike::setWidth(double)@Base" 5.1
+ (c++)"fl::Spike::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Spike::setCenter(double)@Base" 5.1
+ (c++)"fl::Spike::Spike(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Spike::Spike(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Spike::~Spike()@Base" 5.1
+ (c++)"fl::Spike::~Spike()@Base" 5.1
+ (c++)"fl::Spike::~Spike()@Base" 5.1
+ (c++)"fl::Cosine::constructor()@Base" 5.1
+ (c++)"fl::Cosine::setWidth(double)@Base" 5.1
+ (c++)"fl::Cosine::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Cosine::setCenter(double)@Base" 5.1
+ (c++)"fl::Cosine::Cosine(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Cosine::Cosine(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Cosine::~Cosine()@Base" 5.1
+ (c++)"fl::Cosine::~Cosine()@Base" 5.1
+ (c++)"fl::Cosine::~Cosine()@Base" 5.1
+ (c++)"fl::Engine::ruleBlocks()@Base" 5.1
+ (c++)"fl::Engine::addRuleBlock(fl::RuleBlock*)@Base" 5.1
+ (c++)"fl::Engine::setRuleBlock(fl::RuleBlock*, int)@Base" 5.1
+ (c++)"fl::Engine::setInputValue(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double)@Base" 5.1
+ (c++)"fl::Engine::setRuleBlocks(std::vector<fl::RuleBlock*, std::allocator<fl::RuleBlock*> > const&)@Base" 5.1
+ (c++)"fl::Engine::getOutputValue(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Engine::inputVariables()@Base" 5.1
+ (c++)"fl::Engine::insertRuleBlock(fl::RuleBlock*, int)@Base" 5.1
+ (c++)"fl::Engine::outputVariables()@Base" 5.1
+ (c++)"fl::Engine::removeRuleBlock(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Engine::removeRuleBlock(int)@Base" 5.1
+ (c++)"fl::Engine::addInputVariable(fl::InputVariable*)@Base" 5.1
+ (c++)"fl::Engine::setInputVariable(fl::InputVariable*, int)@Base" 5.1
+ (c++)"fl::Engine::addOutputVariable(fl::OutputVariable*)@Base" 5.1
+ (c++)"fl::Engine::setInputVariables(std::vector<fl::InputVariable*, std::allocator<fl::InputVariable*> > const&)@Base" 5.1
+ (c++)"fl::Engine::setOutputVariable(fl::OutputVariable*, int)@Base" 5.1
+ (c++)"fl::Engine::setOutputVariables(std::vector<fl::OutputVariable*, std::allocator<fl::OutputVariable*> > const&)@Base" 5.1
+ (c++)"fl::Engine::insertInputVariable(fl::InputVariable*, int)@Base" 5.1
+ (c++)"fl::Engine::removeInputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Engine::removeInputVariable(int)@Base" 5.1
+ (c++)"fl::Engine::insertOutputVariable(fl::OutputVariable*, int)@Base" 5.1
+ (c++)"fl::Engine::removeOutputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Engine::removeOutputVariable(int)@Base" 5.1
+ (c++)"fl::Engine::process()@Base" 5.1
+ (c++)"fl::Engine::restart()@Base" 5.1
+ (c++)"fl::Engine::setName(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Engine::copyFrom(fl::Engine const&)@Base" 5.1
+ (c++)"fl::Engine::configure(fl::TNorm*, fl::SNorm*, fl::TNorm*, fl::SNorm*, fl::Defuzzifier*)@Base" 5.1
+ (c++)"fl::Engine::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int)@Base" 5.1
+ (c++)"fl::Engine::Engine(fl::Engine const&)@Base" 5.1
+ (c++)"fl::Engine::Engine(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Engine::Engine(fl::Engine const&)@Base" 5.1
+ (c++)"fl::Engine::Engine(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Engine::~Engine()@Base" 5.1
+ (c++)"fl::Engine::~Engine()@Base" 5.1
+ (c++)"fl::Engine::~Engine()@Base" 5.1
+ (c++)"fl::Engine::operator=(fl::Engine const&)@Base" 5.1
+ (c++)"fl::Linear::constructor()@Base" 5.1
+ (c++)"fl::Linear::coefficients()@Base" 5.1
+ (c++)"fl::Linear::setCoefficients(std::vector<double, std::allocator<double> > const&)@Base" 5.1
+ (c++)"fl::Linear::set(std::vector<double, std::allocator<double> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Linear* fl::Linear::create<double>(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*, double, ...)@Base" 5.1
+ (c++)"fl::Linear* fl::Linear::create<int>(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*, int, ...)@Base" 5.1
+ (c++)"fl::Linear::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Linear::setEngine(fl::Engine const*)@Base" 5.1
+ (c++)"fl::Linear::Linear(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Linear::Linear(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<double, std::allocator<double> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Linear::~Linear()@Base" 5.1
+ (c++)"fl::Linear::~Linear()@Base" 5.1
+ (c++)"fl::Linear::~Linear()@Base" 5.1
+ (c++)"fl::SShape::constructor()@Base" 5.1
+ (c++)"fl::SShape::setEnd(double)@Base" 5.1
+ (c++)"fl::SShape::setStart(double)@Base" 5.1
+ (c++)"fl::SShape::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::SShape::SShape(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::SShape::SShape(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::SShape::~SShape()@Base" 5.1
+ (c++)"fl::SShape::~SShape()@Base" 5.1
+ (c++)"fl::SShape::~SShape()@Base" 5.1
+ (c++)"fl::Seldom::constructor()@Base" 5.1
+ (c++)"fl::Seldom::~Seldom()@Base" 5.1
+ (c++)"fl::Seldom::~Seldom()@Base" 5.1
+ (c++)"fl::Seldom::~Seldom()@Base" 5.1
+ (c++)"fl::ZShape::constructor()@Base" 5.1
+ (c++)"fl::ZShape::setEnd(double)@Base" 5.1
+ (c++)"fl::ZShape::setStart(double)@Base" 5.1
+ (c++)"fl::ZShape::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::ZShape::ZShape(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::ZShape::ZShape(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::ZShape::~ZShape()@Base" 5.1
+ (c++)"fl::ZShape::~ZShape()@Base" 5.1
+ (c++)"fl::ZShape::~ZShape()@Base" 5.1
+ (c++)"fl::Concave::constructor()@Base" 5.1
+ (c++)"fl::Concave::setInflection(double)@Base" 5.1
+ (c++)"fl::Concave::setEnd(double)@Base" 5.1
+ (c++)"fl::Concave::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Concave::Concave(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Concave::Concave(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Concave::~Concave()@Base" 5.1
+ (c++)"fl::Concave::~Concave()@Base" 5.1
+ (c++)"fl::Concave::~Concave()@Base" 5.1
+ (c++)"fl::Console::KW_EXAMPLE@Base" 5.1
+ (c++)"fl::Console::KW_DECIMALS@Base" 5.1
+ (c++)"fl::Console::interactive(std::basic_ostream<char, std::char_traits<char> >&, fl::Engine*)@Base" 5.1
+ (c++)"fl::Console::takagiSugeno()@Base" 5.1
+ (c++)"fl::Console::KW_DATA_INPUT@Base" 5.1
+ (c++)"fl::Console::KW_INPUT_FILE@Base" 5.1
+ (c++)"fl::Console::readCharacter()@Base" 5.1
+ (c++)"fl::Console::KW_OUTPUT_FILE@Base" 5.1
+ (c++)"fl::Console::KW_DATA_MAXIMUM@Base" 5.1
+ (c++)"fl::Console::KW_INPUT_FORMAT@Base" 5.1
+ (c++)"fl::Console::interactiveHelp()@Base" 5.1
+ (c++)"fl::Console::KW_OUTPUT_FORMAT@Base" 5.1
+ (c++)"fl::Console::availableOptions()@Base" 5.1
+ (c++)"fl::Console::exportAllExamples(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Console::KW_DATA_EXPORT_HEADER@Base" 5.1
+ (c++)"fl::Console::KW_DATA_EXPORT_INPUTS@Base" 5.1
+ (c++)"fl::Console::main(int, char**)@Base" 5.1
+ (c++)"fl::Console::parse(int, char**)@Base" 5.1
+ (c++)"fl::Console::usage()@Base" 5.1
+ (c++)"fl::Console::Option::~Option()@Base" 5.1
+ (c++)"fl::Console::Option::~Option()@Base" 5.1
+ (c++)"fl::Console::mamdani()@Base" 5.1
+ (c++)"fl::Console::process(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_ostream<char, std::char_traits<char> >&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::map<std::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::less<std::basic_string<char, std::char_traits<char>, std::allocator<char> > >, std::allocator<std::pair<std::basic_string<char, std::char_traits<char>, std::allocator<char> > const, std::basic_string<char, std::char_traits<char>, std::allocator<char> > > > > const&)@Base" 5.1
+ (c++)"fl::Console::process(std::map<std::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::less<std::basic_string<char, std::char_traits<char>, std::allocator<char> > >, std::allocator<std::pair<std::basic_string<char, std::char_traits<char>, std::allocator<char> > const, std::basic_string<char, std::char_traits<char>, std::allocator<char> > > > > const&)@Base" 5.1
+ (c++)"fl::Maximum::constructor()@Base" 5.1
+ (c++)"fl::Maximum::~Maximum()@Base" 5.1
+ (c++)"fl::Maximum::~Maximum()@Base" 5.1
+ (c++)"fl::Maximum::~Maximum()@Base" 5.1
+ (c++)"fl::Minimum::constructor()@Base" 5.1
+ (c++)"fl::Minimum::~Minimum()@Base" 5.1
+ (c++)"fl::Minimum::~Minimum()@Base" 5.1
+ (c++)"fl::Minimum::~Minimum()@Base" 5.1
+ (c++)"fl::PiShape::setTopLeft(double)@Base" 5.1
+ (c++)"fl::PiShape::constructor()@Base" 5.1
+ (c++)"fl::PiShape::setTopRight(double)@Base" 5.1
+ (c++)"fl::PiShape::setBottomLeft(double)@Base" 5.1
+ (c++)"fl::PiShape::setBottomRight(double)@Base" 5.1
+ (c++)"fl::PiShape::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::PiShape::PiShape(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::PiShape::PiShape(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::PiShape::~PiShape()@Base" 5.1
+ (c++)"fl::PiShape::~PiShape()@Base" 5.1
+ (c++)"fl::PiShape::~PiShape()@Base" 5.1
+ (c++)"fl::Sigmoid::constructor()@Base" 5.1
+ (c++)"fl::Sigmoid::setInflection(double)@Base" 5.1
+ (c++)"fl::Sigmoid::setSlope(double)@Base" 5.1
+ (c++)"fl::Sigmoid::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Sigmoid::Sigmoid(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Sigmoid::Sigmoid(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Sigmoid::~Sigmoid()@Base" 5.1
+ (c++)"fl::Sigmoid::~Sigmoid()@Base" 5.1
+ (c++)"fl::Sigmoid::~Sigmoid()@Base" 5.1
+ (c++)"fl::Bisector::constructor()@Base" 5.1
+ (c++)"fl::Bisector::Bisector(int)@Base" 5.1
+ (c++)"fl::Bisector::Bisector(int)@Base" 5.1
+ (c++)"fl::Bisector::~Bisector()@Base" 5.1
+ (c++)"fl::Bisector::~Bisector()@Base" 5.1
+ (c++)"fl::Bisector::~Bisector()@Base" 5.1
+ (c++)"fl::Centroid::constructor()@Base" 5.1
+ (c++)"fl::Centroid::Centroid(int)@Base" 5.1
+ (c++)"fl::Centroid::Centroid(int)@Base" 5.1
+ (c++)"fl::Centroid::~Centroid()@Base" 5.1
+ (c++)"fl::Centroid::~Centroid()@Base" 5.1
+ (c++)"fl::Centroid::~Centroid()@Base" 5.1
+ (c++)"fl::Constant::constructor()@Base" 5.1
+ (c++)"fl::Constant::setValue(double)@Base" 5.1
+ (c++)"fl::Constant::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Constant::Constant(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double)@Base" 5.1
+ (c++)"fl::Constant::Constant(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double)@Base" 5.1
+ (c++)"fl::Constant::~Constant()@Base" 5.1
+ (c++)"fl::Constant::~Constant()@Base" 5.1
+ (c++)"fl::Constant::~Constant()@Base" 5.1
+ (c++)"fl::Discrete::constructor()@Base" 5.1
+ (c++)"fl::Discrete::xy(int)@Base" 5.1
+ (c++)"fl::Discrete::xy()@Base" 5.1
+ (c++)"fl::Discrete::setXY(std::vector<std::pair<double, double>, std::allocator<std::pair<double, double> > > const&)@Base" 5.1
+ (c++)"fl::Discrete* fl::Discrete::create<double>(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, double, double, ...)@Base" 5.1
+ (c++)"fl::Discrete* fl::Discrete::create<int>(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, int, int, ...)@Base" 5.1
+ (c++)"fl::Discrete::toPairs(std::vector<double, std::allocator<double> > const&)@Base" 5.1
+ (c++)"fl::Discrete::toPairs(std::vector<double, std::allocator<double> > const&, double)@Base" 5.1
+ (c++)"fl::Discrete::formatXY(std::vector<std::pair<double, double>, std::allocator<std::pair<double, double> > > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Discrete::toVector(std::vector<std::pair<double, double>, std::allocator<std::pair<double, double> > > const&)@Base" 5.1
+ (c++)"fl::Discrete::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Discrete::Discrete(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::pair<double, double>, std::allocator<std::pair<double, double> > > const&, double)@Base" 5.1
+ (c++)"fl::Discrete::Discrete(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::pair<double, double>, std::allocator<std::pair<double, double> > > const&, double)@Base" 5.1
+ (c++)"fl::Discrete::~Discrete()@Base" 5.1
+ (c++)"fl::Discrete::~Discrete()@Base" 5.1
+ (c++)"fl::Discrete::~Discrete()@Base" 5.1
+ (c++)"fl::Exporter::Exporter()@Base" 5.1
+ (c++)"fl::Exporter::Exporter()@Base" 5.1
+ (c++)"fl::Exporter::~Exporter()@Base" 5.1
+ (c++)"fl::Exporter::~Exporter()@Base" 5.1
+ (c++)"fl::Exporter::~Exporter()@Base" 5.1
+ (c++)"fl::Function::setFormula(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Function::constructor()@Base" 5.1
+ (c++)"fl::Function::Node::copyFrom(fl::Function::Node const&)@Base" 5.1
+ (c++)"fl::Function::Node::Node(fl::Function::Element*, fl::Function::Node*, fl::Function::Node*)@Base" 5.1
+ (c++)"fl::Function::Node::Node(fl::Function::Node const&)@Base" 5.1
+ (c++)"fl::Function::Node::Node(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Function::Node::Node(double)@Base" 5.1
+ (c++)"fl::Function::Node::Node(fl::Function::Element*, fl::Function::Node*, fl::Function::Node*)@Base" 5.1
+ (c++)"fl::Function::Node::Node(fl::Function::Node const&)@Base" 5.1
+ (c++)"fl::Function::Node::Node(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Function::Node::Node(double)@Base" 5.1
+ (c++)"fl::Function::Node::~Node()@Base" 5.1
+ (c++)"fl::Function::Node::~Node()@Base" 5.1
+ (c++)"fl::Function::Node::~Node()@Base" 5.1
+ (c++)"fl::Function::Node::operator=(fl::Function::Node const&)@Base" 5.1
+ (c++)"fl::Function::load(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Function::load(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Function::load()@Base" 5.1
+ (c++)"fl::Function::main()@Base" 5.1
+ (c++)"fl::Function::parse(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Function::create(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Function::unload()@Base" 5.1
+ (c++)"fl::Function::Element::Element(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Function::Element::Type)@Base" 5.1
+ (c++)"fl::Function::Element::Element(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Function::Element::Type, double (*)(double), int, int)@Base" 5.1
+ (c++)"fl::Function::Element::Element(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Function::Element::Type, double (*)(double, double), int, int)@Base" 5.1
+ (c++)"fl::Function::Element::Element(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Function::Element::Type)@Base" 5.1
+ (c++)"fl::Function::Element::Element(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Function::Element::Type, double (*)(double), int, int)@Base" 5.1
+ (c++)"fl::Function::Element::Element(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Function::Element::Type, double (*)(double, double), int, int)@Base" 5.1
+ (c++)"fl::Function::Element::~Element()@Base" 5.1
+ (c++)"fl::Function::Element::~Element()@Base" 5.1
+ (c++)"fl::Function::Element::~Element()@Base" 5.1
+ (c++)"fl::Function::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Function::setEngine(fl::Engine const*)@Base" 5.1
+ (c++)"fl::Function::Function(fl::Function const&)@Base" 5.1
+ (c++)"fl::Function::Function(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Function::Function(fl::Function const&)@Base" 5.1
+ (c++)"fl::Function::Function(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*)@Base" 5.1
+ (c++)"fl::Function::~Function()@Base" 5.1
+ (c++)"fl::Function::~Function()@Base" 5.1
+ (c++)"fl::Function::~Function()@Base" 5.1
+ (c++)"fl::Function::operator=(fl::Function const&)@Base" 5.1
+ (c++)"fl::Gaussian::constructor()@Base" 5.1
+ (c++)"fl::Gaussian::setStandardDeviation(double)@Base" 5.1
+ (c++)"fl::Gaussian::setMean(double)@Base" 5.1
+ (c++)"fl::Gaussian::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Gaussian::Gaussian(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Gaussian::Gaussian(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Gaussian::~Gaussian()@Base" 5.1
+ (c++)"fl::Gaussian::~Gaussian()@Base" 5.1
+ (c++)"fl::Gaussian::~Gaussian()@Base" 5.1
+ (c++)"fl::Importer::Importer()@Base" 5.1
+ (c++)"fl::Importer::Importer()@Base" 5.1
+ (c++)"fl::Importer::~Importer()@Base" 5.1
+ (c++)"fl::Importer::~Importer()@Base" 5.1
+ (c++)"fl::Importer::~Importer()@Base" 5.1
+ (c++)"fl::Operator::Operator()@Base" 5.1
+ (c++)"fl::Operator::Operator()@Base" 5.1
+ (c++)"fl::Operator::~Operator()@Base" 5.1
+ (c++)"fl::Operator::~Operator()@Base" 5.1
+ (c++)"fl::Operator::~Operator()@Base" 5.1
+ (c++)"fl::Somewhat::constructor()@Base" 5.1
+ (c++)"fl::Somewhat::~Somewhat()@Base" 5.1
+ (c++)"fl::Somewhat::~Somewhat()@Base" 5.1
+ (c++)"fl::Somewhat::~Somewhat()@Base" 5.1
+ (c++)"fl::Triangle::setVertexA(double)@Base" 5.1
+ (c++)"fl::Triangle::setVertexB(double)@Base" 5.1
+ (c++)"fl::Triangle::setVertexC(double)@Base" 5.1
+ (c++)"fl::Triangle::constructor()@Base" 5.1
+ (c++)"fl::Triangle::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Triangle::Triangle(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double)@Base" 5.1
+ (c++)"fl::Triangle::Triangle(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double)@Base" 5.1
+ (c++)"fl::Triangle::~Triangle()@Base" 5.1
+ (c++)"fl::Triangle::~Triangle()@Base" 5.1
+ (c++)"fl::Triangle::~Triangle()@Base" 5.1
+ (c++)"fl::Variable::insertTerm(fl::Term*, int)@Base" 5.1
+ (c++)"fl::Variable::removeTerm(int)@Base" 5.1
+ (c++)"fl::Variable::setEnabled(bool)@Base" 5.1
+ (c++)"fl::Variable::setMaximum(double)@Base" 5.1
+ (c++)"fl::Variable::setMinimum(double)@Base" 5.1
+ (c++)"fl::Variable::sort()@Base" 5.1
+ (c++)"fl::Variable::terms()@Base" 5.1
+ (c++)"fl::Variable::addTerm(fl::Term*)@Base" 5.1
+ (c++)"fl::Variable::setName(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Variable::copyFrom(fl::Variable const&)@Base" 5.1
+ (c++)"fl::Variable::setRange(double, double)@Base" 5.1
+ (c++)"fl::Variable::setTerms(std::vector<fl::Term*, std::allocator<fl::Term*> > const&)@Base" 5.1
+ (c++)"fl::Variable::Variable(fl::Variable const&)@Base" 5.1
+ (c++)"fl::Variable::Variable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double)@Base" 5.1
+ (c++)"fl::Variable::Variable(fl::Variable const&)@Base" 5.1
+ (c++)"fl::Variable::Variable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double)@Base" 5.1
+ (c++)"fl::Variable::~Variable()@Base" 5.1
+ (c++)"fl::Variable::~Variable()@Base" 5.1
+ (c++)"fl::Variable::~Variable()@Base" 5.1
+ (c++)"fl::Variable::operator=(fl::Variable const&)@Base" 5.1
+ (c++)"fl::Activated::setActivation(fl::TNorm const*)@Base" 5.1
+ (c++)"fl::Activated::setTerm(fl::Term const*)@Base" 5.1
+ (c++)"fl::Activated::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Activated::setDegree(double)@Base" 5.1
+ (c++)"fl::Activated::Activated(fl::Term const*, double, fl::TNorm const*)@Base" 5.1
+ (c++)"fl::Activated::Activated(fl::Term const*, double, fl::TNorm const*)@Base" 5.1
+ (c++)"fl::Activated::~Activated()@Base" 5.1
+ (c++)"fl::Activated::~Activated()@Base" 5.1
+ (c++)"fl::Activated::~Activated()@Base" 5.1
+ (c++)"fl::Exception::btCallStack()@Base" 5.1
+ (c++)"fl::Exception::signalHandler(int)@Base" 5.1
+ (c++)"fl::Exception::catchException(std::exception const&)@Base" 5.1
+ (c++)"fl::Exception::convertToException(int)@Base" 5.1
+ (c++)"fl::Exception::append(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Exception::append(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Exception::append(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Exception::setWhat(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Exception::terminate()@Base" 5.1
+ (c++)"fl::Exception::Exception(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Exception::Exception(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Exception::Exception(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Exception::Exception(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Exception::~Exception()@Base" 5.1
+ (c++)"fl::Exception::~Exception()@Base" 5.1
+ (c++)"fl::Exception::~Exception()@Base" 5.1
+ (c++)"fl::Extremely::constructor()@Base" 5.1
+ (c++)"fl::Extremely::~Extremely()@Base" 5.1
+ (c++)"fl::Extremely::~Extremely()@Base" 5.1
+ (c++)"fl::Extremely::~Extremely()@Base" 5.1
+ (c++)"fl::Operation::logicalAnd(double, double)@Base" 5.1
+ (c++)"fl::Operation::logicalNot(double)@Base" 5.1
+ (c++)"fl::Operation::findReplace(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)@Base" 5.1
+ (c++)"fl::Operation::isValidForName(int)@Base" 5.1
+ (c++)"fl::Operation::standardDeviation(std::vector<double, std::allocator<double> > const&)@Base" 5.1
+ (c++)"fl::Operation::standardDeviation(std::vector<double, std::allocator<double> > const&, double)@Base" 5.1
+ (c++)"fl::Operation::eq(double, double)@Base" 5.1
+ (c++)"fl::Operation::ge(double, double)@Base" 5.1
+ (c++)"fl::Operation::gt(double, double)@Base" 5.1
+ (c++)"bool fl::Operation::in<double>(double, double, double, bool, bool)@Base" 5.1
+ (c++)"bool fl::Operation::in<int>(int, int, int, bool, bool)@Base" 5.1
+ (c++)"fl::Operation::le(double, double)@Base" 5.1
+ (c++)"fl::Operation::lt(double, double)@Base" 5.1
+ (c++)"fl::Operation::add(double, double)@Base" 5.1
+ (c++)"double fl::Operation::max<double>(double, double)@Base" 5.1
+ (c++)"int fl::Operation::max<int>(int, int)@Base" 5.1
+ (c++)"double fl::Operation::min<double>(double, double)@Base" 5.1
+ (c++)"int fl::Operation::min<int>(int, int)@Base" 5.1
+ (c++)"fl::Operation::neq(double, double)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::str<std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&>(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::str<double>(double, int)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::str<float>(float, int)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::str<int>(int, int)@Base" 5.1
+ (c++)"fl::Operation::isEq(double, double, double)@Base" 5.1
+ (c++)"fl::Operation::isGE(double, double, double)@Base" 5.1
+ (c++)"fl::Operation::isGt(double, double, double)@Base" 5.1
+ (c++)"fl::Operation::isLE(double, double, double)@Base" 5.1
+ (c++)"fl::Operation::isLt(double, double, double)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::join<char const*>(int, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, char const*, ...)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::join<std::basic_string<char, std::char_traits<char>, std::allocator<char> > >(std::vector<std::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::join<double>(std::vector<double, std::allocator<double> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::join<double>(int, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, ...)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::join<float>(int, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, float, ...)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::join<int>(std::vector<int, std::allocator<int> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"std::basic_string<char, std::char_traits<char>, std::allocator<char> > fl::Operation::join<int>(int, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, ...)@Base" 5.1
+ (c++)"fl::Operation::mean(std::vector<double, std::allocator<double> > const&)@Base" 5.1
+ (c++)"fl::Operation::trim(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"double fl::Operation::bound<double>(double, double, double)@Base" 5.1
+ (c++)"int fl::Operation::bound<int>(int, int, int)@Base" 5.1
+ (c++)"bool fl::Operation::isInf<double>(double)@Base" 5.1
+ (c++)"bool fl::Operation::isInf<int>(int)@Base" 5.1
+ (c++)"bool fl::Operation::isNaN<double>(double)@Base" 5.1
+ (c++)"bool fl::Operation::isNaN<int>(int)@Base" 5.1
+ (c++)"fl::Operation::round(double)@Base" 5.1
+ (c++)"fl::Operation::scale(double, double, double, double, double, bool)@Base" 5.1
+ (c++)"fl::Operation::split(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, bool)@Base" 5.1
+ (c++)"fl::Operation::divide(double, double)@Base" 5.1
+ (c++)"fl::Operation::format(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int (*)(int), std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Operation::modulo(double, double)@Base" 5.1
+ (c++)"fl::Operation::negate(double)@Base" 5.1
+ (c++)"bool fl::Operation::isFinite<double>(double)@Base" 5.1
+ (c++)"bool fl::Operation::isFinite<int>(int)@Base" 5.1
+ (c++)"fl::Operation::multiply(double, double)@Base" 5.1
+ (c++)"fl::Operation::subtract(double, double)@Base" 5.1
+ (c++)"fl::Operation::toScalar(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Operation::toScalar(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double)@Base" 5.1
+ (c++)"fl::Operation::variance(std::vector<double, std::allocator<double> > const&)@Base" 5.1
+ (c++)"fl::Operation::variance(std::vector<double, std::allocator<double> > const&, double)@Base" 5.1
+ (c++)"fl::Operation::increment(std::vector<int, std::allocator<int> >&, std::vector<int, std::allocator<int> >&, std::vector<int, std::allocator<int> >&)@Base" 5.1
+ (c++)"fl::Operation::increment(std::vector<int, std::allocator<int> >&, int, std::vector<int, std::allocator<int> >&, std::vector<int, std::allocator<int> >&)@Base" 5.1
+ (c++)"fl::Operation::isNumeric(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Operation::logicalOr(double, double)@Base" 5.1
+ (c++)"fl::Operation::validName(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Rectangle::constructor()@Base" 5.1
+ (c++)"fl::Rectangle::setEnd(double)@Base" 5.1
+ (c++)"fl::Rectangle::setStart(double)@Base" 5.1
+ (c++)"fl::Rectangle::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Rectangle::Rectangle(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Rectangle::Rectangle(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double)@Base" 5.1
+ (c++)"fl::Rectangle::~Rectangle()@Base" 5.1
+ (c++)"fl::Rectangle::~Rectangle()@Base" 5.1
+ (c++)"fl::Rectangle::~Rectangle()@Base" 5.1
+ (c++)"fl::RuleBlock::insertRule(fl::Rule*, int)@Base" 5.1
+ (c++)"fl::RuleBlock::removeRule(int)@Base" 5.1
+ (c++)"fl::RuleBlock::setEnabled(bool)@Base" 5.1
+ (c++)"fl::RuleBlock::reloadRules(fl::Engine const*)@Base" 5.1
+ (c++)"fl::RuleBlock::setActivation(fl::TNorm*)@Base" 5.1
+ (c++)"fl::RuleBlock::setConjunction(fl::TNorm*)@Base" 5.1
+ (c++)"fl::RuleBlock::setDisjunction(fl::SNorm*)@Base" 5.1
+ (c++)"fl::RuleBlock::rules()@Base" 5.1
+ (c++)"fl::RuleBlock::addRule(fl::Rule*)@Base" 5.1
+ (c++)"fl::RuleBlock::setName(std::basic_string<char, std::char_traits<char>, std::allocator<char> >)@Base" 5.1
+ (c++)"fl::RuleBlock::activate()@Base" 5.1
+ (c++)"fl::RuleBlock::copyFrom(fl::RuleBlock const&)@Base" 5.1
+ (c++)"fl::RuleBlock::setRules(std::vector<fl::Rule*, std::allocator<fl::Rule*> > const&)@Base" 5.1
+ (c++)"fl::RuleBlock::loadRules(fl::Engine const*)@Base" 5.1
+ (c++)"fl::RuleBlock::RuleBlock(fl::RuleBlock const&)@Base" 5.1
+ (c++)"fl::RuleBlock::RuleBlock(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::RuleBlock::RuleBlock(fl::RuleBlock const&)@Base" 5.1
+ (c++)"fl::RuleBlock::RuleBlock(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::RuleBlock::~RuleBlock()@Base" 5.1
+ (c++)"fl::RuleBlock::~RuleBlock()@Base" 5.1
+ (c++)"fl::RuleBlock::~RuleBlock()@Base" 5.1
+ (c++)"fl::RuleBlock::operator=(fl::RuleBlock const&)@Base" 5.1
+ (c++)"fl::Trapezoid::setVertexA(double)@Base" 5.1
+ (c++)"fl::Trapezoid::setVertexB(double)@Base" 5.1
+ (c++)"fl::Trapezoid::setVertexC(double)@Base" 5.1
+ (c++)"fl::Trapezoid::setVertexD(double)@Base" 5.1
+ (c++)"fl::Trapezoid::constructor()@Base" 5.1
+ (c++)"fl::Trapezoid::configure(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::Trapezoid::Trapezoid(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::Trapezoid::Trapezoid(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, double, double, double, double, double)@Base" 5.1
+ (c++)"fl::Trapezoid::~Trapezoid()@Base" 5.1
+ (c++)"fl::Trapezoid::~Trapezoid()@Base" 5.1
+ (c++)"fl::Trapezoid::~Trapezoid()@Base" 5.1
+ (c++)"fl::fuzzylite::setLogging(bool)@Base" 5.1
+ (c++)"fl::fuzzylite::setMachEps(double)@Base" 5.1
+ (c++)"fl::fuzzylite::longVersion()@Base" 5.1
+ (c++)"fl::fuzzylite::setDecimals(int)@Base" 5.1
+ (c++)"fl::fuzzylite::floatingPoint()@Base" 5.1
+ (c++)"fl::fuzzylite::date()@Base" 5.1
+ (c++)"fl::fuzzylite::name()@Base" 5.1
+ (c++)"fl::fuzzylite::debug()@Base" 5.1
+ (c++)"fl::fuzzylite::_debug@Base" 5.1
+ (c++)"fl::fuzzylite::author()@Base" 5.1
+ (c++)"fl::fuzzylite::company()@Base" 5.1
+ (c++)"fl::fuzzylite::license()@Base" 5.1
+ (c++)"fl::fuzzylite::logging()@Base" 5.1
+ (c++)"fl::fuzzylite::macheps()@Base" 5.1
+ (c++)"fl::fuzzylite::version()@Base" 5.1
+ (c++)"fl::fuzzylite::website()@Base" 5.1
+ (c++)"fl::fuzzylite::_logging@Base" 5.1
+ (c++)"fl::fuzzylite::_macheps@Base" 5.1
+ (c++)"fl::fuzzylite::decimals()@Base" 5.1
+ (c++)"fl::fuzzylite::fullname()@Base" 5.1
+ (c++)"fl::fuzzylite::platform()@Base" 5.1
+ (c++)"fl::fuzzylite::setDebug(bool)@Base" 5.1
+ (c++)"fl::fuzzylite::_decimals@Base" 5.1
+ (c++)"fl::Antecedent::getExpression() const@Base" 5.1
+ (c++)"fl::Antecedent::activationDegree(fl::TNorm const*, fl::SNorm const*) const@Base" 5.1
+ (c++)"fl::Antecedent::activationDegree(fl::TNorm const*, fl::SNorm const*, fl::Expression const*) const@Base" 5.1
+ (c++)"fl::Antecedent::getText() const@Base" 5.1
+ (c++)"fl::Antecedent::toInfix(fl::Expression const*) const@Base" 5.1
+ (c++)"fl::Antecedent::isLoaded() const@Base" 5.1
+ (c++)"fl::Antecedent::toPrefix(fl::Expression const*) const@Base" 5.1
+ (c++)"fl::Antecedent::toString() const@Base" 5.1
+ (c++)"fl::Antecedent::toPostfix(fl::Expression const*) const@Base" 5.1
+ (c++)"fl::BoundedSum::clone() const@Base" 5.1
+ (c++)"fl::BoundedSum::compute(double, double) const@Base" 5.1
+ (c++)"fl::BoundedSum::className() const@Base" 5.1
+ (c++)"fl::Consequent::conclusions() const@Base" 5.1
+ (c++)"fl::Consequent::getText() const@Base" 5.1
+ (c++)"fl::Consequent::toString() const@Base" 5.1
+ (c++)"fl::DrasticSum::clone() const@Base" 5.1
+ (c++)"fl::DrasticSum::compute(double, double) const@Base" 5.1
+ (c++)"fl::DrasticSum::className() const@Base" 5.1
+ (c++)"fl::Accumulated::getMaximum() const@Base" 5.1
+ (c++)"fl::Accumulated::getMinimum() const@Base" 5.1
+ (c++)"fl::Accumulated::membership(double) const@Base" 5.1
+ (c++)"fl::Accumulated::parameters() const@Base" 5.1
+ (c++)"fl::Accumulated::numberOfTerms() const@Base" 5.1
+ (c++)"fl::Accumulated::getAccumulation() const@Base" 5.1
+ (c++)"fl::Accumulated::activationDegree(fl::Term const*) const@Base" 5.1
+ (c++)"fl::Accumulated::clone() const@Base" 5.1
+ (c++)"fl::Accumulated::range() const@Base" 5.1
+ (c++)"fl::Accumulated::terms() const@Base" 5.1
+ (c++)"fl::Accumulated::getTerm(int) const@Base" 5.1
+ (c++)"fl::Accumulated::isEmpty() const@Base" 5.1
+ (c++)"fl::Accumulated::toString() const@Base" 5.1
+ (c++)"fl::Accumulated::className() const@Base" 5.1
+ (c++)"fl::CppExporter::fl(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::CppExporter::name() const@Base" 5.1
+ (c++)"fl::CppExporter::clone() const@Base" 5.1
+ (c++)"fl::CppExporter::toString(fl::Defuzzifier const*) const@Base" 5.1
+ (c++)"fl::CppExporter::toString(fl::InputVariable const*, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::CppExporter::toString(fl::OutputVariable const*, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::CppExporter::toString(fl::Norm const*) const@Base" 5.1
+ (c++)"fl::CppExporter::toString(fl::Term const*) const@Base" 5.1
+ (c++)"fl::CppExporter::toString(fl::Hedge const*) const@Base" 5.1
+ (c++)"fl::CppExporter::toString(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::CppExporter::toString(fl::RuleBlock const*, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::CppExporter::toString(double) const@Base" 5.1
+ (c++)"fl::EinsteinSum::clone() const@Base" 5.1
+ (c++)"fl::EinsteinSum::compute(double, double) const@Base" 5.1
+ (c++)"fl::EinsteinSum::className() const@Base" 5.1
+ (c++)"fl::FclExporter::name() const@Base" 5.1
+ (c++)"fl::FclExporter::clone() const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::Defuzzifier const*) const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::Term const*) const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::SNorm const*) const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::TNorm const*) const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FclExporter::getIndent() const@Base" 5.1
+ (c++)"fl::FclImporter::fromString(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FclImporter::parseLocks(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FclImporter::parseRange(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FclImporter::parseSNorm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FclImporter::parseTNorm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FclImporter::processVar(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FclImporter::parseEnabled(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FclImporter::processBlock(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FclImporter::processFuzzify(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FclImporter::parseDefuzzifier(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FclImporter::processDefuzzify(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FclImporter::processRuleBlock(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FclImporter::parseDefaultValue(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FclImporter::name() const@Base" 5.1
+ (c++)"fl::FclImporter::clone() const@Base" 5.1
+ (c++)"fl::FclImporter::parseTerm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FisExporter::exportRule(fl::Rule const*, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FisExporter::exportRules(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FisExporter::exportInputs(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FisExporter::exportSystem(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FisExporter::exportOutputs(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FisExporter::name() const@Base" 5.1
+ (c++)"fl::FisExporter::clone() const@Base" 5.1
+ (c++)"fl::FisExporter::toString(fl::Defuzzifier const*) const@Base" 5.1
+ (c++)"fl::FisExporter::toString(fl::Term const*) const@Base" 5.1
+ (c++)"fl::FisExporter::toString(fl::SNorm const*) const@Base" 5.1
+ (c++)"fl::FisExporter::toString(fl::TNorm const*) const@Base" 5.1
+ (c++)"fl::FisExporter::toString(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FisExporter::translate(std::vector<fl::Proposition*, std::allocator<fl::Proposition*> > const&, std::vector<fl::Variable*, std::allocator<fl::Variable*> >) const@Base" 5.1
+ (c++)"fl::FisImporter::fromString(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FisImporter::importInput(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FisImporter::importRules(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FisImporter::extractSNorm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FisImporter::extractTNorm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FisImporter::importOutput(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FisImporter::importSystem(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*, std::basic_string<char, std::char_traits<char>, std::allocator<char> >&, std::basic_string<char, std::char_traits<char>, std::allocator<char> >&, std::basic_string<char, std::char_traits<char>, std::allocator<char> >&, std::basic_string<char, std::char_traits<char>, std::allocator<char> >&, std::basic_string<char, std::char_traits<char>, std::allocator<char> >&) const@Base" 5.1
+ (c++)"fl::FisImporter::createInstance(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::vector<std::basic_string<char, std::char_traits<char>, std::allocator<char> >, std::allocator<std::basic_string<char, std::char_traits<char>, std::allocator<char> > > > const&, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FisImporter::extractDefuzzifier(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FisImporter::translateProposition(double, fl::Variable*) const@Base" 5.1
+ (c++)"fl::FisImporter::name() const@Base" 5.1
+ (c++)"fl::FisImporter::clone() const@Base" 5.1
+ (c++)"fl::FisImporter::range(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FisImporter::parseTerm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FldExporter::getSeparator() const@Base" 5.1
+ (c++)"fl::FldExporter::exportsHeader() const@Base" 5.1
+ (c++)"fl::FldExporter::exportsInputValues() const@Base" 5.1
+ (c++)"fl::FldExporter::exportsOutputValues() const@Base" 5.1
+ (c++)"fl::FldExporter::name() const@Base" 5.1
+ (c++)"fl::FldExporter::clone() const@Base" 5.1
+ (c++)"fl::FldExporter::parse(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FldExporter::write(fl::Engine*, std::basic_ostream<char, std::char_traits<char> >&, std::vector<double, std::allocator<double> > const&) const@Base" 5.1
+ (c++)"fl::FldExporter::write(fl::Engine*, std::basic_ostream<char, std::char_traits<char> >&, std::basic_istream<char, std::char_traits<char> >&) const@Base" 5.1
+ (c++)"fl::FldExporter::write(fl::Engine*, std::basic_ostream<char, std::char_traits<char> >&, int) const@Base" 5.1
+ (c++)"fl::FldExporter::header(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FldExporter::toFile(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FldExporter::toFile(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*, int) const@Base" 5.1
+ (c++)"fl::FldExporter::toString(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FldExporter::toString(fl::Engine*, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FldExporter::toString(fl::Engine*, int) const@Base" 5.1
+ (c++)"fl::FllExporter::getSeparator() const@Base" 5.1
+ (c++)"fl::FllExporter::name() const@Base" 5.1
+ (c++)"fl::FllExporter::clone() const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::Defuzzifier const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::InputVariable const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::OutputVariable const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::Norm const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::Rule const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::Term const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::Variable const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(fl::RuleBlock const*) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(std::vector<fl::InputVariable*, std::allocator<fl::InputVariable*> > const&) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(std::vector<fl::OutputVariable*, std::allocator<fl::OutputVariable*> > const&) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(std::vector<fl::Variable*, std::allocator<fl::Variable*> > const&) const@Base" 5.1
+ (c++)"fl::FllExporter::toString(std::vector<fl::RuleBlock*, std::allocator<fl::RuleBlock*> > const&) const@Base" 5.1
+ (c++)"fl::FllExporter::getIndent() const@Base" 5.1
+ (c++)"fl::FllImporter::fromString(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FllImporter::parseRange(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FllImporter::parseSNorm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FllImporter::parseTNorm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FllImporter::getSeparator() const@Base" 5.1
+ (c++)"fl::FllImporter::parseBoolean(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FllImporter::parseKeyValue(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, char) const@Base" 5.1
+ (c++)"fl::FllImporter::parseDefuzzifier(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FllImporter::processRuleBlock(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FllImporter::processInputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FllImporter::processOutputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FllImporter::name() const@Base" 5.1
+ (c++)"fl::FllImporter::clean(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::FllImporter::clone() const@Base" 5.1
+ (c++)"fl::FllImporter::process(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::FllImporter::parseTerm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine*) const@Base" 5.1
+ (c++)"fl::HamacherSum::clone() const@Base" 5.1
+ (c++)"fl::HamacherSum::compute(double, double) const@Base" 5.1
+ (c++)"fl::HamacherSum::className() const@Base" 5.1
+ (c++)"fl::Proposition::toString() const@Base" 5.1
+ (c++)"fl::WeightedSum::clone() const@Base" 5.1
+ (c++)"fl::WeightedSum::className() const@Base" 5.1
+ (c++)"fl::WeightedSum::defuzzify(fl::Term const*, double, double) const@Base" 5.1
+ (c++)"fl::AlgebraicSum::clone() const@Base" 5.1
+ (c++)"fl::AlgebraicSum::compute(double, double) const@Base" 5.1
+ (c++)"fl::AlgebraicSum::className() const@Base" 5.1
+ (c++)"fl::JavaExporter::name() const@Base" 5.1
+ (c++)"fl::JavaExporter::clone() const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::Defuzzifier const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::InputVariable const*, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::OutputVariable const*, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::Term const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::SNorm const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::TNorm const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::Engine const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::RuleBlock const*, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(double) const@Base" 5.1
+ (c++)"fl::InputVariable::getInputValue() const@Base" 5.1
+ (c++)"fl::InputVariable::fuzzyInputValue() const@Base" 5.1
+ (c++)"fl::InputVariable::toString() const@Base" 5.1
+ (c++)"fl::MeanOfMaximum::clone() const@Base" 5.1
+ (c++)"fl::MeanOfMaximum::className() const@Base" 5.1
+ (c++)"fl::MeanOfMaximum::defuzzify(fl::Term const*, double, double) const@Base" 5.1
+ (c++)"fl::NormalizedSum::clone() const@Base" 5.1
+ (c++)"fl::NormalizedSum::compute(double, double) const@Base" 5.1
+ (c++)"fl::NormalizedSum::className() const@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::cloneObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::name() const@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::available() const@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::getObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::CloningFactory<fl::Function::Element*>::hasObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::DrasticProduct::clone() const@Base" 5.1
+ (c++)"fl::DrasticProduct::compute(double, double) const@Base" 5.1
+ (c++)"fl::DrasticProduct::className() const@Base" 5.1
+ (c++)"fl::FactoryManager::defuzzifier() const@Base" 5.1
+ (c++)"fl::FactoryManager::term() const@Base" 5.1
+ (c++)"fl::FactoryManager::hedge() const@Base" 5.1
+ (c++)"fl::FactoryManager::snorm() const@Base" 5.1
+ (c++)"fl::FactoryManager::tnorm() const@Base" 5.1
+ (c++)"fl::FactoryManager::function() const@Base" 5.1
+ (c++)"fl::OutputVariable::fuzzyOutput() const@Base" 5.1
+ (c++)"fl::OutputVariable::getDefuzzifier() const@Base" 5.1
+ (c++)"fl::OutputVariable::getOutputValue() const@Base" 5.1
+ (c++)"fl::OutputVariable::getDefaultValue() const@Base" 5.1
+ (c++)"fl::OutputVariable::fuzzyOutputValue() const@Base" 5.1
+ (c++)"fl::OutputVariable::getPreviousOutputValue() const@Base" 5.1
+ (c++)"fl::OutputVariable::isLockedOutputValueInRange() const@Base" 5.1
+ (c++)"fl::OutputVariable::isLockedPreviousOutputValue() const@Base" 5.1
+ (c++)"fl::OutputVariable::toString() const@Base" 5.1
+ (c++)"fl::SigmoidProduct::getFalling() const@Base" 5.1
+ (c++)"fl::SigmoidProduct::membership(double) const@Base" 5.1
+ (c++)"fl::SigmoidProduct::parameters() const@Base" 5.1
+ (c++)"fl::SigmoidProduct::clone() const@Base" 5.1
+ (c++)"fl::SigmoidProduct::getLeft() const@Base" 5.1
+ (c++)"fl::SigmoidProduct::getRight() const@Base" 5.1
+ (c++)"fl::SigmoidProduct::className() const@Base" 5.1
+ (c++)"fl::SigmoidProduct::getRising() const@Base" 5.1
+ (c++)"fl::EinsteinProduct::clone() const@Base" 5.1
+ (c++)"fl::EinsteinProduct::compute(double, double) const@Base" 5.1
+ (c++)"fl::EinsteinProduct::className() const@Base" 5.1
+ (c++)"fl::FunctionFactory::availableFunctions() const@Base" 5.1
+ (c++)"fl::FunctionFactory::availableOperators() const@Base" 5.1
+ (c++)"fl::GaussianProduct::membership(double) const@Base" 5.1
+ (c++)"fl::GaussianProduct::parameters() const@Base" 5.1
+ (c++)"fl::GaussianProduct::getStandardDeviationA() const@Base" 5.1
+ (c++)"fl::GaussianProduct::getStandardDeviationB() const@Base" 5.1
+ (c++)"fl::GaussianProduct::clone() const@Base" 5.1
+ (c++)"fl::GaussianProduct::getMeanA() const@Base" 5.1
+ (c++)"fl::GaussianProduct::getMeanB() const@Base" 5.1
+ (c++)"fl::GaussianProduct::className() const@Base" 5.1
+ (c++)"fl::HamacherProduct::clone() const@Base" 5.1
+ (c++)"fl::HamacherProduct::compute(double, double) const@Base" 5.1
+ (c++)"fl::HamacherProduct::className() const@Base" 5.1
+ (c++)"fl::WeightedAverage::clone() const@Base" 5.1
+ (c++)"fl::WeightedAverage::className() const@Base" 5.1
+ (c++)"fl::WeightedAverage::defuzzify(fl::Term const*, double, double) const@Base" 5.1
+ (c++)"fl::AlgebraicProduct::clone() const@Base" 5.1
+ (c++)"fl::AlgebraicProduct::compute(double, double) const@Base" 5.1
+ (c++)"fl::AlgebraicProduct::className() const@Base" 5.1
+ (c++)"fl::LargestOfMaximum::clone() const@Base" 5.1
+ (c++)"fl::LargestOfMaximum::className() const@Base" 5.1
+ (c++)"fl::LargestOfMaximum::defuzzify(fl::Term const*, double, double) const@Base" 5.1
+ (c++)"fl::NilpotentMaximum::clone() const@Base" 5.1
+ (c++)"fl::NilpotentMaximum::compute(double, double) const@Base" 5.1
+ (c++)"fl::NilpotentMaximum::className() const@Base" 5.1
+ (c++)"fl::NilpotentMinimum::clone() const@Base" 5.1
+ (c++)"fl::NilpotentMinimum::compute(double, double) const@Base" 5.1
+ (c++)"fl::NilpotentMinimum::className() const@Base" 5.1
+ (c++)"fl::BoundedDifference::clone() const@Base" 5.1
+ (c++)"fl::BoundedDifference::compute(double, double) const@Base" 5.1
+ (c++)"fl::BoundedDifference::className() const@Base" 5.1
+ (c++)"fl::SigmoidDifference::getFalling() const@Base" 5.1
+ (c++)"fl::SigmoidDifference::membership(double) const@Base" 5.1
+ (c++)"fl::SigmoidDifference::parameters() const@Base" 5.1
+ (c++)"fl::SigmoidDifference::clone() const@Base" 5.1
+ (c++)"fl::SigmoidDifference::getLeft() const@Base" 5.1
+ (c++)"fl::SigmoidDifference::getRight() const@Base" 5.1
+ (c++)"fl::SigmoidDifference::className() const@Base" 5.1
+ (c++)"fl::SigmoidDifference::getRising() const@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::clone() const@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::className() const@Base" 5.1
+ (c++)"fl::SmallestOfMaximum::defuzzify(fl::Term const*, double, double) const@Base" 5.1
+ (c++)"fl::DefuzzifierFactory::constructDefuzzifier(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int) const@Base" 5.1
+ (c++)"fl::DefuzzifierFactory::constructDefuzzifier(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, int, fl::WeightedDefuzzifier::Type) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::getConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::hasConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::constructObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::name() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Defuzzifier*>::available() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::getConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::hasConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::constructObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::name() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Term*>::available() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::getConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::hasConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::constructObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::name() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::Hedge*>::available() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::getConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::hasConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::constructObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::name() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::SNorm*>::available() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::getConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::hasConstructor(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::constructObject(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::name() const@Base" 5.1
+ (c++)"fl::ConstructionFactory<fl::TNorm*>::available() const@Base" 5.1
+ (c++)"fl::IntegralDefuzzifier::getResolution() const@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::getTypeName() const@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::isMonotonic(fl::Term const*) const@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::getType() const@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::inferType(fl::Term const*) const@Base" 5.1
+ (c++)"fl::WeightedDefuzzifier::tsukamoto(fl::Term const*, double, double, double) const@Base" 5.1
+ (c++)"fl::Any::name() const@Base" 5.1
+ (c++)"fl::Any::clone() const@Base" 5.1
+ (c++)"fl::Any::hedge(double) const@Base" 5.1
+ (c++)"fl::Not::name() const@Base" 5.1
+ (c++)"fl::Not::clone() const@Base" 5.1
+ (c++)"fl::Not::hedge(double) const@Base" 5.1
+ (c++)"fl::Bell::membership(double) const@Base" 5.1
+ (c++)"fl::Bell::parameters() const@Base" 5.1
+ (c++)"fl::Bell::clone() const@Base" 5.1
+ (c++)"fl::Bell::getSlope() const@Base" 5.1
+ (c++)"fl::Bell::getWidth() const@Base" 5.1
+ (c++)"fl::Bell::className() const@Base" 5.1
+ (c++)"fl::Bell::getCenter() const@Base" 5.1
+ (c++)"fl::Ramp::membership(double) const@Base" 5.1
+ (c++)"fl::Ramp::parameters() const@Base" 5.1
+ (c++)"fl::Ramp::clone() const@Base" 5.1
+ (c++)"fl::Ramp::getEnd() const@Base" 5.1
+ (c++)"fl::Ramp::getStart() const@Base" 5.1
+ (c++)"fl::Ramp::className() const@Base" 5.1
+ (c++)"fl::Ramp::direction() const@Base" 5.1
+ (c++)"fl::Rule::getAntecedent() const@Base" 5.1
+ (c++)"fl::Rule::getConsequent() const@Base" 5.1
+ (c++)"fl::Rule::numberOfHedges() const@Base" 5.1
+ (c++)"fl::Rule::activationDegree(fl::TNorm const*, fl::SNorm const*) const@Base" 5.1
+ (c++)"fl::Rule::hedges() const@Base" 5.1
+ (c++)"fl::Rule::getText() const@Base" 5.1
+ (c++)"fl::Rule::activate(double, fl::TNorm const*) const@Base" 5.1
+ (c++)"fl::Rule::getHedge(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Rule::hasHedge(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Rule::isLoaded() const@Base" 5.1
+ (c++)"fl::Rule::toString() const@Base" 5.1
+ (c++)"fl::Rule::getWeight() const@Base" 5.1
+ (c++)"fl::Term::getName() const@Base" 5.1
+ (c++)"fl::Term::toString() const@Base" 5.1
+ (c++)"fl::Term::getHeight() const@Base" 5.1
+ (c++)"fl::Very::name() const@Base" 5.1
+ (c++)"fl::Very::clone() const@Base" 5.1
+ (c++)"fl::Very::hedge(double) const@Base" 5.1
+ (c++)"fl::Spike::membership(double) const@Base" 5.1
+ (c++)"fl::Spike::parameters() const@Base" 5.1
+ (c++)"fl::Spike::clone() const@Base" 5.1
+ (c++)"fl::Spike::getWidth() const@Base" 5.1
+ (c++)"fl::Spike::className() const@Base" 5.1
+ (c++)"fl::Spike::getCenter() const@Base" 5.1
+ (c++)"fl::Cosine::membership(double) const@Base" 5.1
+ (c++)"fl::Cosine::parameters() const@Base" 5.1
+ (c++)"fl::Cosine::clone() const@Base" 5.1
+ (c++)"fl::Cosine::getWidth() const@Base" 5.1
+ (c++)"fl::Cosine::className() const@Base" 5.1
+ (c++)"fl::Cosine::getCenter() const@Base" 5.1
+ (c++)"fl::Engine::ruleBlocks() const@Base" 5.1
+ (c++)"fl::Engine::getRuleBlock(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Engine::getRuleBlock(int) const@Base" 5.1
+ (c++)"fl::Engine::hasRuleBlock(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Engine::inputVariables() const@Base" 5.1
+ (c++)"fl::Engine::outputVariables() const@Base" 5.1
+ (c++)"fl::Engine::getInputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Engine::getInputVariable(int) const@Base" 5.1
+ (c++)"fl::Engine::hasInputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Engine::updateReferences() const@Base" 5.1
+ (c++)"fl::Engine::getOutputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Engine::getOutputVariable(int) const@Base" 5.1
+ (c++)"fl::Engine::hasOutputVariable(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Engine::numberOfRuleBlocks() const@Base" 5.1
+ (c++)"fl::Engine::numberOfInputVariables() const@Base" 5.1
+ (c++)"fl::Engine::numberOfOutputVariables() const@Base" 5.1
+ (c++)"fl::Engine::type(std::basic_string<char, std::char_traits<char>, std::allocator<char> >*, std::basic_string<char, std::char_traits<char>, std::allocator<char> >*) const@Base" 5.1
+ (c++)"fl::Engine::clone() const@Base" 5.1
+ (c++)"fl::Engine::getName() const@Base" 5.1
+ (c++)"fl::Engine::isReady(std::basic_string<char, std::char_traits<char>, std::allocator<char> >*) const@Base" 5.1
+ (c++)"fl::Engine::toString() const@Base" 5.1
+ (c++)"fl::Engine::variables() const@Base" 5.1
+ (c++)"fl::Linear::membership(double) const@Base" 5.1
+ (c++)"fl::Linear::parameters() const@Base" 5.1
+ (c++)"fl::Linear::coefficients() const@Base" 5.1
+ (c++)"fl::Linear::clone() const@Base" 5.1
+ (c++)"fl::Linear::className() const@Base" 5.1
+ (c++)"fl::Linear::getEngine() const@Base" 5.1
+ (c++)"fl::SShape::membership(double) const@Base" 5.1
+ (c++)"fl::SShape::parameters() const@Base" 5.1
+ (c++)"fl::SShape::clone() const@Base" 5.1
+ (c++)"fl::SShape::getEnd() const@Base" 5.1
+ (c++)"fl::SShape::getStart() const@Base" 5.1
+ (c++)"fl::SShape::className() const@Base" 5.1
+ (c++)"fl::Seldom::name() const@Base" 5.1
+ (c++)"fl::Seldom::clone() const@Base" 5.1
+ (c++)"fl::Seldom::hedge(double) const@Base" 5.1
+ (c++)"fl::ZShape::membership(double) const@Base" 5.1
+ (c++)"fl::ZShape::parameters() const@Base" 5.1
+ (c++)"fl::ZShape::clone() const@Base" 5.1
+ (c++)"fl::ZShape::getEnd() const@Base" 5.1
+ (c++)"fl::ZShape::getStart() const@Base" 5.1
+ (c++)"fl::ZShape::className() const@Base" 5.1
+ (c++)"fl::Concave::membership(double) const@Base" 5.1
+ (c++)"fl::Concave::parameters() const@Base" 5.1
+ (c++)"fl::Concave::getInflection() const@Base" 5.1
+ (c++)"fl::Concave::clone() const@Base" 5.1
+ (c++)"fl::Concave::getEnd() const@Base" 5.1
+ (c++)"fl::Concave::className() const@Base" 5.1
+ (c++)"fl::Maximum::clone() const@Base" 5.1
+ (c++)"fl::Maximum::compute(double, double) const@Base" 5.1
+ (c++)"fl::Maximum::className() const@Base" 5.1
+ (c++)"fl::Minimum::clone() const@Base" 5.1
+ (c++)"fl::Minimum::compute(double, double) const@Base" 5.1
+ (c++)"fl::Minimum::className() const@Base" 5.1
+ (c++)"fl::PiShape::getTopLeft() const@Base" 5.1
+ (c++)"fl::PiShape::membership(double) const@Base" 5.1
+ (c++)"fl::PiShape::parameters() const@Base" 5.1
+ (c++)"fl::PiShape::getTopRight() const@Base" 5.1
+ (c++)"fl::PiShape::getBottomLeft() const@Base" 5.1
+ (c++)"fl::PiShape::getBottomRight() const@Base" 5.1
+ (c++)"fl::PiShape::clone() const@Base" 5.1
+ (c++)"fl::PiShape::className() const@Base" 5.1
+ (c++)"fl::Sigmoid::membership(double) const@Base" 5.1
+ (c++)"fl::Sigmoid::parameters() const@Base" 5.1
+ (c++)"fl::Sigmoid::getInflection() const@Base" 5.1
+ (c++)"fl::Sigmoid::clone() const@Base" 5.1
+ (c++)"fl::Sigmoid::getSlope() const@Base" 5.1
+ (c++)"fl::Sigmoid::className() const@Base" 5.1
+ (c++)"fl::Sigmoid::direction() const@Base" 5.1
+ (c++)"fl::Bisector::clone() const@Base" 5.1
+ (c++)"fl::Bisector::className() const@Base" 5.1
+ (c++)"fl::Bisector::defuzzify(fl::Term const*, double, double) const@Base" 5.1
+ (c++)"fl::Centroid::clone() const@Base" 5.1
+ (c++)"fl::Centroid::className() const@Base" 5.1
+ (c++)"fl::Centroid::defuzzify(fl::Term const*, double, double) const@Base" 5.1
+ (c++)"fl::Constant::membership(double) const@Base" 5.1
+ (c++)"fl::Constant::parameters() const@Base" 5.1
+ (c++)"fl::Constant::clone() const@Base" 5.1
+ (c++)"fl::Constant::getValue() const@Base" 5.1
+ (c++)"fl::Constant::className() const@Base" 5.1
+ (c++)"fl::Discrete::membership(double) const@Base" 5.1
+ (c++)"fl::Discrete::parameters() const@Base" 5.1
+ (c++)"fl::Discrete::xy(int) const@Base" 5.1
+ (c++)"fl::Discrete::xy() const@Base" 5.1
+ (c++)"fl::Discrete::clone() const@Base" 5.1
+ (c++)"fl::Discrete::className() const@Base" 5.1
+ (c++)"fl::Exporter::toFile(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, fl::Engine const*) const@Base" 5.1
+ (c++)"fl::Function::getFormula() const@Base" 5.1
+ (c++)"fl::Function::membership(double) const@Base" 5.1
+ (c++)"fl::Function::parameters() const@Base" 5.1
+ (c++)"fl::Function::Node::clone() const@Base" 5.1
+ (c++)"fl::Function::Node::toInfix(fl::Function::Node const*) const@Base" 5.1
+ (c++)"fl::Function::Node::evaluate(std::map<std::basic_string<char, std::char_traits<char>, std::allocator<char> >, double, std::less<std::basic_string<char, std::char_traits<char>, std::allocator<char> > >, std::allocator<std::pair<std::basic_string<char, std::char_traits<char>, std::allocator<char> > const, double> > > const*) const@Base" 5.1
+ (c++)"fl::Function::Node::toPrefix(fl::Function::Node const*) const@Base" 5.1
+ (c++)"fl::Function::Node::toString() const@Base" 5.1
+ (c++)"fl::Function::Node::toPostfix(fl::Function::Node const*) const@Base" 5.1
+ (c++)"fl::Function::root() const@Base" 5.1
+ (c++)"fl::Function::clone() const@Base" 5.1
+ (c++)"fl::Function::space(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Function::Element::isFunction() const@Base" 5.1
+ (c++)"fl::Function::Element::isOperator() const@Base" 5.1
+ (c++)"fl::Function::Element::clone() const@Base" 5.1
+ (c++)"fl::Function::Element::toString() const@Base" 5.1
+ (c++)"fl::Function::evaluate(std::map<std::basic_string<char, std::char_traits<char>, std::allocator<char> >, double, std::less<std::basic_string<char, std::char_traits<char>, std::allocator<char> > >, std::allocator<std::pair<std::basic_string<char, std::char_traits<char>, std::allocator<char> > const, double> > > const*) const@Base" 5.1
+ (c++)"fl::Function::isLoaded() const@Base" 5.1
+ (c++)"fl::Function::className() const@Base" 5.1
+ (c++)"fl::Function::getEngine() const@Base" 5.1
+ (c++)"fl::Function::toPostfix(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Gaussian::membership(double) const@Base" 5.1
+ (c++)"fl::Gaussian::parameters() const@Base" 5.1
+ (c++)"fl::Gaussian::getStandardDeviation() const@Base" 5.1
+ (c++)"fl::Gaussian::clone() const@Base" 5.1
+ (c++)"fl::Gaussian::getMean() const@Base" 5.1
+ (c++)"fl::Gaussian::className() const@Base" 5.1
+ (c++)"fl::Importer::fromFile(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Operator::toString() const@Base" 5.1
+ (c++)"fl::Somewhat::name() const@Base" 5.1
+ (c++)"fl::Somewhat::clone() const@Base" 5.1
+ (c++)"fl::Somewhat::hedge(double) const@Base" 5.1
+ (c++)"fl::Triangle::getVertexA() const@Base" 5.1
+ (c++)"fl::Triangle::getVertexB() const@Base" 5.1
+ (c++)"fl::Triangle::getVertexC() const@Base" 5.1
+ (c++)"fl::Triangle::membership(double) const@Base" 5.1
+ (c++)"fl::Triangle::parameters() const@Base" 5.1
+ (c++)"fl::Triangle::clone() const@Base" 5.1
+ (c++)"fl::Triangle::className() const@Base" 5.1
+ (c++)"fl::Variable::getMaximum() const@Base" 5.1
+ (c++)"fl::Variable::getMinimum() const@Base" 5.1
+ (c++)"fl::Variable::numberOfTerms() const@Base" 5.1
+ (c++)"fl::Variable::highestMembership(double, double*) const@Base" 5.1
+ (c++)"fl::Variable::range() const@Base" 5.1
+ (c++)"fl::Variable::terms() const@Base" 5.1
+ (c++)"fl::Variable::fuzzify(double) const@Base" 5.1
+ (c++)"fl::Variable::getName() const@Base" 5.1
+ (c++)"fl::Variable::getTerm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Variable::getTerm(int) const@Base" 5.1
+ (c++)"fl::Variable::hasTerm(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&) const@Base" 5.1
+ (c++)"fl::Variable::toString() const@Base" 5.1
+ (c++)"fl::Variable::isEnabled() const@Base" 5.1
+ (c++)"fl::Activated::membership(double) const@Base" 5.1
+ (c++)"fl::Activated::parameters() const@Base" 5.1
+ (c++)"fl::Activated::getActivation() const@Base" 5.1
+ (c++)"fl::Activated::clone() const@Base" 5.1
+ (c++)"fl::Activated::getTerm() const@Base" 5.1
+ (c++)"fl::Activated::toString() const@Base" 5.1
+ (c++)"fl::Activated::className() const@Base" 5.1
+ (c++)"fl::Activated::getDegree() const@Base" 5.1
+ (c++)"fl::Exception::what() const@Base" 5.1
+ (c++)"fl::Exception::getWhat() const@Base" 5.1
+ (c++)"fl::Extremely::name() const@Base" 5.1
+ (c++)"fl::Extremely::clone() const@Base" 5.1
+ (c++)"fl::Extremely::hedge(double) const@Base" 5.1
+ (c++)"fl::Rectangle::membership(double) const@Base" 5.1
+ (c++)"fl::Rectangle::parameters() const@Base" 5.1
+ (c++)"fl::Rectangle::clone() const@Base" 5.1
+ (c++)"fl::Rectangle::getEnd() const@Base" 5.1
+ (c++)"fl::Rectangle::getStart() const@Base" 5.1
+ (c++)"fl::Rectangle::className() const@Base" 5.1
+ (c++)"fl::RuleBlock::unloadRules() const@Base" 5.1
+ (c++)"fl::RuleBlock::getActivation() const@Base" 5.1
+ (c++)"fl::RuleBlock::numberOfRules() const@Base" 5.1
+ (c++)"fl::RuleBlock::getConjunction() const@Base" 5.1
+ (c++)"fl::RuleBlock::getDisjunction() const@Base" 5.1
+ (c++)"fl::RuleBlock::rules() const@Base" 5.1
+ (c++)"fl::RuleBlock::getName() const@Base" 5.1
+ (c++)"fl::RuleBlock::getRule(int) const@Base" 5.1
+ (c++)"fl::RuleBlock::toString() const@Base" 5.1
+ (c++)"fl::RuleBlock::isEnabled() const@Base" 5.1
+ (c++)"fl::Trapezoid::getVertexA() const@Base" 5.1
+ (c++)"fl::Trapezoid::getVertexB() const@Base" 5.1
+ (c++)"fl::Trapezoid::getVertexC() const@Base" 5.1
+ (c++)"fl::Trapezoid::getVertexD() const@Base" 5.1
+ (c++)"fl::Trapezoid::membership(double) const@Base" 5.1
+ (c++)"fl::Trapezoid::parameters() const@Base" 5.1
+ (c++)"fl::Trapezoid::clone() const@Base" 5.1
+ (c++)"fl::Trapezoid::className() const@Base" 5.1
+ (c++|regex)"^(void )?std::.*@Base$" 5.1
+ (c++)"fl::CppExporter::setPrefixNamespace(bool)@Base" 5.1
+ (c++)"fl::FunctionFactory::registerFunctions()@Base" 5.1
+ (c++)"fl::FunctionFactory::registerOperators()@Base" 5.1
+ (c++)"fl::Console::exportAllExamples(std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&, std::basic_string<char, std::char_traits<char>, std::allocator<char> > const&)@Base" 5.1
+ (c++)"fl::CppExporter::isPrefixNamespace() const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::InputVariable const*) const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::OutputVariable const*) const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::Norm const*) const@Base" 5.1
+ (c++)"fl::FclExporter::toString(fl::RuleBlock const*) const@Base" 5.1
+ (c++)"fl::FisExporter::toString(fl::Norm const*) const@Base" 5.1
+ (c++)"fl::JavaExporter::toString(fl::Norm const*) const@Base" 5.1
+ (c++)"fl::Rule::clone() const@Base" 5.1
+ _ZNSs12_S_constructIPcEES0_T_S1_RKSaIcESt20forward_iterator_tag@Base 5.1
+ _ZSt9__find_ifIN9__gnu_cxx17__normal_iteratorIPKcSsEENS0_5__ops17_Iter_equals_iterIS4_EEET_S8_S8_T0_St26random_access_iterator_tag@Base 5.1
+ _ZSteqIcEN9__gnu_cxx11__enable_ifIXsrSt9__is_charIT_E7__valueEbE6__typeERKSbIS3_St11char_traitsIS3_ESaIS3_EESC_@Base 5.1
+ (c++)"typeinfo for fl::Antecedent@Base" 5.1
+ (c++)"typeinfo for fl::BoundedSum@Base" 5.1
+ (c++)"typeinfo for fl::Consequent@Base" 5.1
+ (c++)"typeinfo for fl::DrasticSum@Base" 5.1
+ (c++)"typeinfo for fl::Expression@Base" 5.1
+ (c++)"typeinfo for fl::Accumulated@Base" 5.1
+ (c++)"typeinfo for fl::CppExporter@Base" 5.1
+ (c++)"typeinfo for fl::Defuzzifier@Base" 5.1
+ (c++)"typeinfo for fl::EinsteinSum@Base" 5.1
+ (c++)"typeinfo for fl::FclExporter@Base" 5.1
+ (c++)"typeinfo for fl::FclImporter@Base" 5.1
+ (c++)"typeinfo for fl::FisExporter@Base" 5.1
+ (c++)"typeinfo for fl::FisImporter@Base" 5.1
+ (c++)"typeinfo for fl::FldExporter@Base" 5.1
+ (c++)"typeinfo for fl::FllExporter@Base" 5.1
+ (c++)"typeinfo for fl::FllImporter@Base" 5.1
+ (c++)"typeinfo for fl::HamacherSum@Base" 5.1
+ (c++)"typeinfo for fl::Proposition@Base" 5.1
+ (c++)"typeinfo for fl::TermFactory@Base" 5.1
+ (c++)"typeinfo for fl::WeightedSum@Base" 5.1
+ (c++)"typeinfo for fl::AlgebraicSum@Base" 5.1
+ (c++)"typeinfo for fl::HedgeFactory@Base" 5.1
+ (c++)"typeinfo for fl::JavaExporter@Base" 5.1
+ (c++)"typeinfo for fl::SNormFactory@Base" 5.1
+ (c++)"typeinfo for fl::TNormFactory@Base" 5.1
+ (c++)"typeinfo for fl::InputVariable@Base" 5.1
+ (c++)"typeinfo for fl::MeanOfMaximum@Base" 5.1
+ (c++)"typeinfo for fl::NormalizedSum@Base" 5.1
+ (c++)"typeinfo for fl::CloningFactory<fl::Function::Element*>@Base" 5.1
+ (c++)"typeinfo for fl::DrasticProduct@Base" 5.1
+ (c++)"typeinfo for fl::FactoryManager@Base" 5.1
+ (c++)"typeinfo for fl::OutputVariable@Base" 5.1
+ (c++)"typeinfo for fl::SigmoidProduct@Base" 5.1
+ (c++)"typeinfo for fl::EinsteinProduct@Base" 5.1
+ (c++)"typeinfo for fl::FunctionFactory@Base" 5.1
+ (c++)"typeinfo for fl::GaussianProduct@Base" 5.1
+ (c++)"typeinfo for fl::HamacherProduct@Base" 5.1
+ (c++)"typeinfo for fl::WeightedAverage@Base" 5.1
+ (c++)"typeinfo for fl::AlgebraicProduct@Base" 5.1
+ (c++)"typeinfo for fl::LargestOfMaximum@Base" 5.1
+ (c++)"typeinfo for fl::NilpotentMaximum@Base" 5.1
+ (c++)"typeinfo for fl::NilpotentMinimum@Base" 5.1
+ (c++)"typeinfo for fl::BoundedDifference@Base" 5.1
+ (c++)"typeinfo for fl::SigmoidDifference@Base" 5.1
+ (c++)"typeinfo for fl::SmallestOfMaximum@Base" 5.1
+ (c++)"typeinfo for fl::DefuzzifierFactory@Base" 5.1
+ (c++)"typeinfo for fl::ConstructionFactory<fl::Defuzzifier*>@Base" 5.1
+ (c++)"typeinfo for fl::ConstructionFactory<fl::Term*>@Base" 5.1
+ (c++)"typeinfo for fl::ConstructionFactory<fl::Hedge*>@Base" 5.1
+ (c++)"typeinfo for fl::ConstructionFactory<fl::SNorm*>@Base" 5.1
+ (c++)"typeinfo for fl::ConstructionFactory<fl::TNorm*>@Base" 5.1
+ (c++)"typeinfo for fl::IntegralDefuzzifier@Base" 5.1
+ (c++)"typeinfo for fl::WeightedDefuzzifier@Base" 5.1
+ (c++)"typeinfo for fl::Any@Base" 5.1
+ (c++)"typeinfo for fl::Not@Base" 5.1
+ (c++)"typeinfo for fl::Bell@Base" 5.1
+ (c++)"typeinfo for fl::Norm@Base" 5.1
+ (c++)"typeinfo for fl::Ramp@Base" 5.1
+ (c++)"typeinfo for fl::Rule@Base" 5.1
+ (c++)"typeinfo for fl::Term@Base" 5.1
+ (c++)"typeinfo for fl::Very@Base" 5.1
+ (c++)"typeinfo for fl::Hedge@Base" 5.1
+ (c++)"typeinfo for fl::SNorm@Base" 5.1
+ (c++)"typeinfo for fl::Spike@Base" 5.1
+ (c++)"typeinfo for fl::TNorm@Base" 5.1
+ (c++)"typeinfo for fl::Cosine@Base" 5.1
+ (c++)"typeinfo for fl::Engine@Base" 5.1
+ (c++)"typeinfo for fl::Linear@Base" 5.1
+ (c++)"typeinfo for fl::SShape@Base" 5.1
+ (c++)"typeinfo for fl::Seldom@Base" 5.1
+ (c++)"typeinfo for fl::ZShape@Base" 5.1
+ (c++)"typeinfo for fl::Concave@Base" 5.1
+ (c++)"typeinfo for fl::Maximum@Base" 5.1
+ (c++)"typeinfo for fl::Minimum@Base" 5.1
+ (c++)"typeinfo for fl::PiShape@Base" 5.1
+ (c++)"typeinfo for fl::Sigmoid@Base" 5.1
+ (c++)"typeinfo for fl::Bisector@Base" 5.1
+ (c++)"typeinfo for fl::Centroid@Base" 5.1
+ (c++)"typeinfo for fl::Constant@Base" 5.1
+ (c++)"typeinfo for fl::Discrete@Base" 5.1
+ (c++)"typeinfo for fl::Exporter@Base" 5.1
+ (c++)"typeinfo for fl::Function::Node@Base" 5.1
+ (c++)"typeinfo for fl::Function::Element@Base" 5.1
+ (c++)"typeinfo for fl::Function@Base" 5.1
+ (c++)"typeinfo for fl::Gaussian@Base" 5.1
+ (c++)"typeinfo for fl::Importer@Base" 5.1
+ (c++)"typeinfo for fl::Operator@Base" 5.1
+ (c++)"typeinfo for fl::Somewhat@Base" 5.1
+ (c++)"typeinfo for fl::Triangle@Base" 5.1
+ (c++)"typeinfo for fl::Variable@Base" 5.1
+ (c++)"typeinfo for fl::Activated@Base" 5.1
+ (c++)"typeinfo for fl::Exception@Base" 5.1
+ (c++)"typeinfo for fl::Extremely@Base" 5.1
+ (c++)"typeinfo for fl::Rectangle@Base" 5.1
+ (c++)"typeinfo for fl::RuleBlock@Base" 5.1
+ (c++)"typeinfo for fl::Trapezoid@Base" 5.1
+ (c++)"typeinfo name for fl::Antecedent@Base" 5.1
+ (c++)"typeinfo name for fl::BoundedSum@Base" 5.1
+ (c++)"typeinfo name for fl::Consequent@Base" 5.1
+ (c++)"typeinfo name for fl::DrasticSum@Base" 5.1
+ (c++)"typeinfo name for fl::Expression@Base" 5.1
+ (c++)"typeinfo name for fl::Accumulated@Base" 5.1
+ (c++)"typeinfo name for fl::CppExporter@Base" 5.1
+ (c++)"typeinfo name for fl::Defuzzifier@Base" 5.1
+ (c++)"typeinfo name for fl::EinsteinSum@Base" 5.1
+ (c++)"typeinfo name for fl::FclExporter@Base" 5.1
+ (c++)"typeinfo name for fl::FclImporter@Base" 5.1
+ (c++)"typeinfo name for fl::FisExporter@Base" 5.1
+ (c++)"typeinfo name for fl::FisImporter@Base" 5.1
+ (c++)"typeinfo name for fl::FldExporter@Base" 5.1
+ (c++)"typeinfo name for fl::FllExporter@Base" 5.1
+ (c++)"typeinfo name for fl::FllImporter@Base" 5.1
+ (c++)"typeinfo name for fl::HamacherSum@Base" 5.1
+ (c++)"typeinfo name for fl::Proposition@Base" 5.1
+ (c++)"typeinfo name for fl::TermFactory@Base" 5.1
+ (c++)"typeinfo name for fl::WeightedSum@Base" 5.1
+ (c++)"typeinfo name for fl::AlgebraicSum@Base" 5.1
+ (c++)"typeinfo name for fl::HedgeFactory@Base" 5.1
+ (c++)"typeinfo name for fl::JavaExporter@Base" 5.1
+ (c++)"typeinfo name for fl::SNormFactory@Base" 5.1
+ (c++)"typeinfo name for fl::TNormFactory@Base" 5.1
+ (c++)"typeinfo name for fl::InputVariable@Base" 5.1
+ (c++)"typeinfo name for fl::MeanOfMaximum@Base" 5.1
+ (c++)"typeinfo name for fl::NormalizedSum@Base" 5.1
+ (c++)"typeinfo name for fl::CloningFactory<fl::Function::Element*>@Base" 5.1
+ (c++)"typeinfo name for fl::DrasticProduct@Base" 5.1
+ (c++)"typeinfo name for fl::FactoryManager@Base" 5.1
+ (c++)"typeinfo name for fl::OutputVariable@Base" 5.1
+ (c++)"typeinfo name for fl::SigmoidProduct@Base" 5.1
+ (c++)"typeinfo name for fl::EinsteinProduct@Base" 5.1
+ (c++)"typeinfo name for fl::FunctionFactory@Base" 5.1
+ (c++)"typeinfo name for fl::GaussianProduct@Base" 5.1
+ (c++)"typeinfo name for fl::HamacherProduct@Base" 5.1
+ (c++)"typeinfo name for fl::WeightedAverage@Base" 5.1
+ (c++)"typeinfo name for fl::AlgebraicProduct@Base" 5.1
+ (c++)"typeinfo name for fl::LargestOfMaximum@Base" 5.1
+ (c++)"typeinfo name for fl::NilpotentMaximum@Base" 5.1
+ (c++)"typeinfo name for fl::NilpotentMinimum@Base" 5.1
+ (c++)"typeinfo name for fl::BoundedDifference@Base" 5.1
+ (c++)"typeinfo name for fl::SigmoidDifference@Base" 5.1
+ (c++)"typeinfo name for fl::SmallestOfMaximum@Base" 5.1
+ (c++)"typeinfo name for fl::DefuzzifierFactory@Base" 5.1
+ (c++)"typeinfo name for fl::ConstructionFactory<fl::Defuzzifier*>@Base" 5.1
+ (c++)"typeinfo name for fl::ConstructionFactory<fl::Term*>@Base" 5.1
+ (c++)"typeinfo name for fl::ConstructionFactory<fl::Hedge*>@Base" 5.1
+ (c++)"typeinfo name for fl::ConstructionFactory<fl::SNorm*>@Base" 5.1
+ (c++)"typeinfo name for fl::ConstructionFactory<fl::TNorm*>@Base" 5.1
+ (c++)"typeinfo name for fl::IntegralDefuzzifier@Base" 5.1
+ (c++)"typeinfo name for fl::WeightedDefuzzifier@Base" 5.1
+ (c++)"typeinfo name for fl::Any@Base" 5.1
+ (c++)"typeinfo name for fl::Not@Base" 5.1
+ (c++)"typeinfo name for fl::Bell@Base" 5.1
+ (c++)"typeinfo name for fl::Norm@Base" 5.1
+ (c++)"typeinfo name for fl::Ramp@Base" 5.1
+ (c++)"typeinfo name for fl::Rule@Base" 5.1
+ (c++)"typeinfo name for fl::Term@Base" 5.1
+ (c++)"typeinfo name for fl::Very@Base" 5.1
+ (c++)"typeinfo name for fl::Hedge@Base" 5.1
+ (c++)"typeinfo name for fl::SNorm@Base" 5.1
+ (c++)"typeinfo name for fl::Spike@Base" 5.1
+ (c++)"typeinfo name for fl::TNorm@Base" 5.1
+ (c++)"typeinfo name for fl::Cosine@Base" 5.1
+ (c++)"typeinfo name for fl::Engine@Base" 5.1
+ (c++)"typeinfo name for fl::Linear@Base" 5.1
+ (c++)"typeinfo name for fl::SShape@Base" 5.1
+ (c++)"typeinfo name for fl::Seldom@Base" 5.1
+ (c++)"typeinfo name for fl::ZShape@Base" 5.1
+ (c++)"typeinfo name for fl::Concave@Base" 5.1
+ (c++)"typeinfo name for fl::Maximum@Base" 5.1
+ (c++)"typeinfo name for fl::Minimum@Base" 5.1
+ (c++)"typeinfo name for fl::PiShape@Base" 5.1
+ (c++)"typeinfo name for fl::Sigmoid@Base" 5.1
+ (c++)"typeinfo name for fl::Bisector@Base" 5.1
+ (c++)"typeinfo name for fl::Centroid@Base" 5.1
+ (c++)"typeinfo name for fl::Constant@Base" 5.1
+ (c++)"typeinfo name for fl::Discrete@Base" 5.1
+ (c++)"typeinfo name for fl::Exporter@Base" 5.1
+ (c++)"typeinfo name for fl::Function::Node@Base" 5.1
+ (c++)"typeinfo name for fl::Function::Element@Base" 5.1
+ (c++)"typeinfo name for fl::Function@Base" 5.1
+ (c++)"typeinfo name for fl::Gaussian@Base" 5.1
+ (c++)"typeinfo name for fl::Importer@Base" 5.1
+ (c++)"typeinfo name for fl::Operator@Base" 5.1
+ (c++)"typeinfo name for fl::Somewhat@Base" 5.1
+ (c++)"typeinfo name for fl::Triangle@Base" 5.1
+ (c++)"typeinfo name for fl::Variable@Base" 5.1
+ (c++)"typeinfo name for fl::Activated@Base" 5.1
+ (c++)"typeinfo name for fl::Exception@Base" 5.1
+ (c++)"typeinfo name for fl::Extremely@Base" 5.1
+ (c++)"typeinfo name for fl::Rectangle@Base" 5.1
+ (c++)"typeinfo name for fl::RuleBlock@Base" 5.1
+ (c++)"typeinfo name for fl::Trapezoid@Base" 5.1
+ (c++)"vtable for fl::Antecedent@Base" 5.1
+ (c++)"vtable for fl::BoundedSum@Base" 5.1
+ (c++)"vtable for fl::Consequent@Base" 5.1
+ (c++)"vtable for fl::DrasticSum@Base" 5.1
+ (c++)"vtable for fl::Expression@Base" 5.1
+ (c++)"vtable for fl::Accumulated@Base" 5.1
+ (c++)"vtable for fl::CppExporter@Base" 5.1
+ (c++|optional)"vtable for fl::Defuzzifier@Base" 5.1
+ (c++)"vtable for fl::EinsteinSum@Base" 5.1
+ (c++)"vtable for fl::FclExporter@Base" 5.1
+ (c++)"vtable for fl::FclImporter@Base" 5.1
+ (c++)"vtable for fl::FisExporter@Base" 5.1
+ (c++)"vtable for fl::FisImporter@Base" 5.1
+ (c++)"vtable for fl::FldExporter@Base" 5.1
+ (c++)"vtable for fl::FllExporter@Base" 5.1
+ (c++)"vtable for fl::FllImporter@Base" 5.1
+ (c++)"vtable for fl::HamacherSum@Base" 5.1
+ (c++)"vtable for fl::Proposition@Base" 5.1
+ (c++)"vtable for fl::TermFactory@Base" 5.1
+ (c++)"vtable for fl::WeightedSum@Base" 5.1
+ (c++)"vtable for fl::AlgebraicSum@Base" 5.1
+ (c++)"vtable for fl::HedgeFactory@Base" 5.1
+ (c++)"vtable for fl::JavaExporter@Base" 5.1
+ (c++)"vtable for fl::SNormFactory@Base" 5.1
+ (c++)"vtable for fl::TNormFactory@Base" 5.1
+ (c++)"vtable for fl::InputVariable@Base" 5.1
+ (c++)"vtable for fl::MeanOfMaximum@Base" 5.1
+ (c++)"vtable for fl::NormalizedSum@Base" 5.1
+ (c++)"vtable for fl::CloningFactory<fl::Function::Element*>@Base" 5.1
+ (c++)"vtable for fl::DrasticProduct@Base" 5.1
+ (c++)"vtable for fl::FactoryManager@Base" 5.1
+ (c++)"vtable for fl::OutputVariable@Base" 5.1
+ (c++)"vtable for fl::SigmoidProduct@Base" 5.1
+ (c++)"vtable for fl::EinsteinProduct@Base" 5.1
+ (c++)"vtable for fl::FunctionFactory@Base" 5.1
+ (c++)"vtable for fl::GaussianProduct@Base" 5.1
+ (c++)"vtable for fl::HamacherProduct@Base" 5.1
+ (c++)"vtable for fl::WeightedAverage@Base" 5.1
+ (c++)"vtable for fl::AlgebraicProduct@Base" 5.1
+ (c++)"vtable for fl::LargestOfMaximum@Base" 5.1
+ (c++)"vtable for fl::NilpotentMaximum@Base" 5.1
+ (c++)"vtable for fl::NilpotentMinimum@Base" 5.1
+ (c++)"vtable for fl::BoundedDifference@Base" 5.1
+ (c++)"vtable for fl::SigmoidDifference@Base" 5.1
+ (c++)"vtable for fl::SmallestOfMaximum@Base" 5.1
+ (c++)"vtable for fl::DefuzzifierFactory@Base" 5.1
+ (c++)"vtable for fl::ConstructionFactory<fl::Defuzzifier*>@Base" 5.1
+ (c++)"vtable for fl::ConstructionFactory<fl::Term*>@Base" 5.1
+ (c++)"vtable for fl::ConstructionFactory<fl::Hedge*>@Base" 5.1
+ (c++)"vtable for fl::ConstructionFactory<fl::SNorm*>@Base" 5.1
+ (c++)"vtable for fl::ConstructionFactory<fl::TNorm*>@Base" 5.1
+ (c++)"vtable for fl::IntegralDefuzzifier@Base" 5.1
+ (c++)"vtable for fl::WeightedDefuzzifier@Base" 5.1
+ (c++)"vtable for fl::Any@Base" 5.1
+ (c++)"vtable for fl::Not@Base" 5.1
+ (c++)"vtable for fl::Bell@Base" 5.1
+ (c++|optional)"vtable for fl::Norm@Base" 5.1
+ (c++)"vtable for fl::Ramp@Base" 5.1
+ (c++)"vtable for fl::Rule@Base" 5.1
+ (c++)"vtable for fl::Term@Base" 5.1
+ (c++)"vtable for fl::Very@Base" 5.1
+ (c++|optional)"vtable for fl::Hedge@Base" 5.1
+ (c++|optional)"vtable for fl::SNorm@Base" 5.1
+ (c++)"vtable for fl::Spike@Base" 5.1
+ (c++|optional)"vtable for fl::TNorm@Base" 5.1
+ (c++)"vtable for fl::Cosine@Base" 5.1
+ (c++)"vtable for fl::Engine@Base" 5.1
+ (c++)"vtable for fl::Linear@Base" 5.1
+ (c++)"vtable for fl::SShape@Base" 5.1
+ (c++)"vtable for fl::Seldom@Base" 5.1
+ (c++)"vtable for fl::ZShape@Base" 5.1
+ (c++)"vtable for fl::Concave@Base" 5.1
+ (c++)"vtable for fl::Maximum@Base" 5.1
+ (c++)"vtable for fl::Minimum@Base" 5.1
+ (c++)"vtable for fl::PiShape@Base" 5.1
+ (c++)"vtable for fl::Sigmoid@Base" 5.1
+ (c++)"vtable for fl::Bisector@Base" 5.1
+ (c++)"vtable for fl::Centroid@Base" 5.1
+ (c++)"vtable for fl::Constant@Base" 5.1
+ (c++)"vtable for fl::Discrete@Base" 5.1
+ (c++)"vtable for fl::Exporter@Base" 5.1
+ (c++)"vtable for fl::Function::Node@Base" 5.1
+ (c++)"vtable for fl::Function::Element@Base" 5.1
+ (c++)"vtable for fl::Function@Base" 5.1
+ (c++)"vtable for fl::Gaussian@Base" 5.1
+ (c++)"vtable for fl::Importer@Base" 5.1
+ (c++)"vtable for fl::Operator@Base" 5.1
+ (c++)"vtable for fl::Somewhat@Base" 5.1
+ (c++)"vtable for fl::Triangle@Base" 5.1
+ (c++)"vtable for fl::Variable@Base" 5.1
+ (c++)"vtable for fl::Activated@Base" 5.1
+ (c++)"vtable for fl::Exception@Base" 5.1
+ (c++)"vtable for fl::Extremely@Base" 5.1
+ (c++)"vtable for fl::Rectangle@Base" 5.1
+ (c++)"vtable for fl::RuleBlock@Base" 5.1
+ (c++)"vtable for fl::Trapezoid@Base" 5.1
+ main@Base 5.1
diff --git a/debian/patches/pkgconfig_installdir b/debian/patches/pkgconfig_installdir
new file mode 100644
index 0000000..0a3f28f
--- /dev/null
+++ b/debian/patches/pkgconfig_installdir
@@ -0,0 +1,11 @@
+--- a/fuzzylite/CMakeLists.txt
++++ b/fuzzylite/CMakeLists.txt
+@@ -183,7 +183,7 @@ install(DIRECTORY fl/ DESTINATION includ
+
+ #pkg-config
+ configure_file(${CMAKE_SOURCE_DIR}/fuzzylite.pc.in ${CMAKE_BINARY_DIR}/fuzzylite.pc @ONLY)
+-install(FILES ${CMAKE_BINARY_DIR}/fuzzylite.pc DESTINATION lib/pkgconfig)
++install(FILES ${CMAKE_BINARY_DIR}/fuzzylite.pc DESTINATION ${FL_INSTALL_LIBDIR}/pkgconfig)
+
+ message("=====================================")
+ message("fuzzylite v.${FL_VERSION}b${FL_DATE}\n")
diff --git a/debian/patches/series b/debian/patches/series
new file mode 100644
index 0000000..4269972
--- /dev/null
+++ b/debian/patches/series
@@ -0,0 +1 @@
+pkgconfig_installdir
diff --git a/debian/rules b/debian/rules
new file mode 100755
index 0000000..11f8e56
--- /dev/null
+++ b/debian/rules
@@ -0,0 +1,15 @@
+#!/usr/bin/make -f
+
+DEB_HOST_MULTIARCH ?= $(shell dpkg-architecture -qDEB_HOST_MULTIARCH)
+
+%:
+ dh $@ --sourcedirectory=fuzzylite --parallel
+
+override_dh_auto_configure:
+ dh_auto_configure -- -DCMAKE_INSTALL_LIBDIR=lib/$(DEB_HOST_MULTIARCH) -DCMAKE_VERBOSE_MAKEFILE=true
+
+override_dh_install:
+ dh_install --fail-missing
+
+get-orig-source:
+ uscan --noconf --verbose --rename --destdir=$(CURDIR) --check-dirname-level=0 --force-download --repack --compression=xz --download-current-version
diff --git a/debian/source/format b/debian/source/format
new file mode 100644
index 0000000..163aaf8
--- /dev/null
+++ b/debian/source/format
@@ -0,0 +1 @@
+3.0 (quilt)
diff --git a/debian/watch b/debian/watch
new file mode 100644
index 0000000..a38ab7f
--- /dev/null
+++ b/debian/watch
@@ -0,0 +1,3 @@
+version=3
+opts="repacksuffix=+dfsg,dversionmangle=s/\+dfsg$//" \
+ https://github.com/fuzzylite/fuzzylite/releases .*/v(\d[\d\.]*)\.tar\.gz
diff --git a/examples/README.md b/examples/README.md
new file mode 100644
index 0000000..6525a9a
--- /dev/null
+++ b/examples/README.md
@@ -0,0 +1,13 @@
+Disclaimer
+==========
+
+The following folders contain examples from Matlab and Octave distributions. The examples are presented in the following formats: fuzzylite v5.0 `.cpp`, jfuzzylite v5.0 `.java`, FuzzyLite Language `.fll`, FuzzyLite Dataset `.fld`, Fuzzy Inference System `.fis`, and Fuzzy Controller Language `.fcl`. The formats were created automatically utilizing the `[Cpp|Java|Fll|Fld|Fis|Fcl]Exporter`.
+
+The original files from Matlab and Octave distributions are contained within the folder `original`, although the following files from Matlab were modified to remove the fourth parameter of the term `gbellmf`, which is not required for its configuration.
+
++ [`examples/original/mamdani/matlab/mam21.fis`](/examples/original/mamdani/matlab/mam21.fis)
+
++ [`examples/original/mamdani/matlab/mam22.fis`](/examples/original/mamdani/matlab/mam22.fis)
+
+In addition to the original examples, the examples are presented in the FuzzyLite Language to include scalar values with at least the same number of decimal places, and a proper configuration in the cases of Takagi-Sugeno controllers (i.e., `RuleBlock::activation = none` and `OutputVariable::accumulation = none`) to satisfy the regular operation of the controllers in `fuzzylite` v5.0.
+
diff --git a/examples/examples.mat b/examples/examples.mat
new file mode 100755
index 0000000..5955fbd
--- /dev/null
+++ b/examples/examples.mat
Binary files differ
diff --git a/examples/mamdani/AllTerms.cpp b/examples/mamdani/AllTerms.cpp
new file mode 100644
index 0000000..7bb1f31
--- /dev/null
+++ b/examples/mamdani/AllTerms.cpp
@@ -0,0 +1,95 @@
+#include <fl/Headers.h>
+
+int main(int argc, char** argv){
+using namespace fl;
+
+Engine* engine = new Engine;
+engine->setName("qtfuzzylite");
+
+InputVariable* inputVariable = new InputVariable;
+inputVariable->setEnabled(true);
+inputVariable->setName("AllInputTerms");
+inputVariable->setRange(0.000, 6.500);
+inputVariable->addTerm(new Sigmoid("A", 0.500, -20.000));
+inputVariable->addTerm(new ZShape("B", 0.000, 1.000));
+inputVariable->addTerm(new Ramp("C", 1.000, 0.000));
+inputVariable->addTerm(new Triangle("D", 0.500, 1.000, 1.500));
+inputVariable->addTerm(new Trapezoid("E", 1.000, 1.250, 1.750, 2.000));
+inputVariable->addTerm(new Concave("F", 0.850, 0.250));
+inputVariable->addTerm(new Rectangle("G", 1.750, 2.250));
+inputVariable->addTerm(Discrete::create("H", 10, 2.000, 0.000, 2.250, 1.000, 2.500, 0.500, 2.750, 1.000, 3.000, 0.000));
+inputVariable->addTerm(new Gaussian("I", 3.000, 0.200));
+inputVariable->addTerm(new Cosine("J", 3.250, 0.650));
+inputVariable->addTerm(new GaussianProduct("K", 3.500, 0.100, 3.300, 0.300));
+inputVariable->addTerm(new Spike("L", 3.640, 1.040));
+inputVariable->addTerm(new Bell("M", 4.000, 0.250, 3.000));
+inputVariable->addTerm(new PiShape("N", 4.000, 4.500, 4.500, 5.000));
+inputVariable->addTerm(new Concave("O", 5.650, 6.250));
+inputVariable->addTerm(new SigmoidDifference("P", 4.750, 10.000, 30.000, 5.250));
+inputVariable->addTerm(new SigmoidProduct("Q", 5.250, 20.000, -10.000, 5.750));
+inputVariable->addTerm(new Ramp("R", 5.500, 6.500));
+inputVariable->addTerm(new SShape("S", 5.500, 6.500));
+inputVariable->addTerm(new Sigmoid("T", 6.000, 20.000));
+engine->addInputVariable(inputVariable);
+
+OutputVariable* outputVariable = new OutputVariable;
+outputVariable->setEnabled(true);
+outputVariable->setName("AllOutputTerms");
+outputVariable->setRange(0.000, 6.500);
+outputVariable->fuzzyOutput()->setAccumulation(new Maximum);
+outputVariable->setDefuzzifier(new Centroid(200));
+outputVariable->setDefaultValue(fl::nan);
+outputVariable->setLockPreviousOutputValue(false);
+outputVariable->setLockOutputValueInRange(false);
+outputVariable->addTerm(new Sigmoid("A", 0.500, -20.000));
+outputVariable->addTerm(new ZShape("B", 0.000, 1.000));
+outputVariable->addTerm(new Ramp("C", 1.000, 0.000));
+outputVariable->addTerm(new Triangle("D", 0.500, 1.000, 1.500));
+outputVariable->addTerm(new Trapezoid("E", 1.000, 1.250, 1.750, 2.000));
+outputVariable->addTerm(new Concave("F", 0.850, 0.250));
+outputVariable->addTerm(new Rectangle("G", 1.750, 2.250));
+outputVariable->addTerm(Discrete::create("H", 10, 2.000, 0.000, 2.250, 1.000, 2.500, 0.500, 2.750, 1.000, 3.000, 0.000));
+outputVariable->addTerm(new Gaussian("I", 3.000, 0.200));
+outputVariable->addTerm(new Cosine("J", 3.250, 0.650));
+outputVariable->addTerm(new GaussianProduct("K", 3.500, 0.100, 3.300, 0.300));
+outputVariable->addTerm(new Spike("L", 3.640, 1.040));
+outputVariable->addTerm(new Bell("M", 4.000, 0.250, 3.000));
+outputVariable->addTerm(new PiShape("N", 4.000, 4.500, 4.500, 5.000));
+outputVariable->addTerm(new Concave("O", 5.650, 6.250));
+outputVariable->addTerm(new SigmoidDifference("P", 4.750, 10.000, 30.000, 5.250));
+outputVariable->addTerm(new SigmoidProduct("Q", 5.250, 20.000, -10.000, 5.750));
+outputVariable->addTerm(new Ramp("R", 5.500, 6.500));
+outputVariable->addTerm(new SShape("S", 5.500, 6.500));
+outputVariable->addTerm(new Sigmoid("T", 6.000, 20.000));
+engine->addOutputVariable(outputVariable);
+
+RuleBlock* ruleBlock = new RuleBlock;
+ruleBlock->setEnabled(true);
+ruleBlock->setName("");
+ruleBlock->setConjunction(new Minimum);
+ruleBlock->setDisjunction(new Maximum);
+ruleBlock->setActivation(new Minimum);
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is A then AllOutputTerms is T", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is B then AllOutputTerms is S", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is C then AllOutputTerms is R", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is D then AllOutputTerms is Q", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is E then AllOutputTerms is P", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is F then AllOutputTerms is O", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is G then AllOutputTerms is N", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is H then AllOutputTerms is M", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is I then AllOutputTerms is L", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is J then AllOutputTerms is K", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is K then AllOutputTerms is J", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is L then AllOutputTerms is I", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is M then AllOutputTerms is H", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is N then AllOutputTerms is G", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is O then AllOutputTerms is F", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is P then AllOutputTerms is E", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is Q then AllOutputTerms is D", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is R then AllOutputTerms is C", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is S then AllOutputTerms is B", engine));
+ruleBlock->addRule(fl::Rule::parse("if AllInputTerms is T then AllOutputTerms is A", engine));
+engine->addRuleBlock(ruleBlock);
+
+
+}
diff --git a/examples/mamdani/AllTerms.fcl b/examples/mamdani/AllTerms.fcl
new file mode 100644
index 0000000..ef08722
--- /dev/null
+++ b/examples/mamdani/AllTerms.fcl
@@ -0,0 +1,88 @@
+FUNCTION_BLOCK qtfuzzylite
+
+VAR_INPUT
+ AllInputTerms: REAL;
+END_VAR
+
+VAR_OUTPUT
+ AllOutputTerms: REAL;
+END_VAR
+
+FUZZIFY AllInputTerms
+ RANGE := (0.000 .. 6.500);
+ TERM A := Sigmoid 0.500 -20.000;
+ TERM B := ZShape 0.000 1.000;
+ TERM C := Ramp 1.000 0.000;
+ TERM D := Triangle 0.500 1.000 1.500;
+ TERM E := Trapezoid 1.000 1.250 1.750 2.000;
+ TERM F := Concave 0.850 0.250;
+ TERM G := Rectangle 1.750 2.250;
+ TERM H := (2.000, 0.000) (2.250, 1.000) (2.500, 0.500) (2.750, 1.000) (3.000, 0.000);
+ TERM I := Gaussian 3.000 0.200;
+ TERM J := Cosine 3.250 0.650;
+ TERM K := GaussianProduct 3.500 0.100 3.300 0.300;
+ TERM L := Spike 3.640 1.040;
+ TERM M := Bell 4.000 0.250 3.000;
+ TERM N := PiShape 4.000 4.500 4.500 5.000;
+ TERM O := Concave 5.650 6.250;
+ TERM P := SigmoidDifference 4.750 10.000 30.000 5.250;
+ TERM Q := SigmoidProduct 5.250 20.000 -10.000 5.750;
+ TERM R := Ramp 5.500 6.500;
+ TERM S := SShape 5.500 6.500;
+ TERM T := Sigmoid 6.000 20.000;
+END_FUZZIFY
+
+DEFUZZIFY AllOutputTerms
+ RANGE := (0.000 .. 6.500);
+ TERM A := Sigmoid 0.500 -20.000;
+ TERM B := ZShape 0.000 1.000;
+ TERM C := Ramp 1.000 0.000;
+ TERM D := Triangle 0.500 1.000 1.500;
+ TERM E := Trapezoid 1.000 1.250 1.750 2.000;
+ TERM F := Concave 0.850 0.250;
+ TERM G := Rectangle 1.750 2.250;
+ TERM H := (2.000, 0.000) (2.250, 1.000) (2.500, 0.500) (2.750, 1.000) (3.000, 0.000);
+ TERM I := Gaussian 3.000 0.200;
+ TERM J := Cosine 3.250 0.650;
+ TERM K := GaussianProduct 3.500 0.100 3.300 0.300;
+ TERM L := Spike 3.640 1.040;
+ TERM M := Bell 4.000 0.250 3.000;
+ TERM N := PiShape 4.000 4.500 4.500 5.000;
+ TERM O := Concave 5.650 6.250;
+ TERM P := SigmoidDifference 4.750 10.000 30.000 5.250;
+ TERM Q := SigmoidProduct 5.250 20.000 -10.000 5.750;
+ TERM R := Ramp 5.500 6.500;
+ TERM S := SShape 5.500 6.500;
+ TERM T := Sigmoid 6.000 20.000;
+ METHOD : COG;
+ ACCU : MAX;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+RULEBLOCK
+ AND : MIN;
+ OR : MAX;
+ ACT : MIN;
+ RULE 1 : if AllInputTerms is A then AllOutputTerms is T
+ RULE 2 : if AllInputTerms is B then AllOutputTerms is S
+ RULE 3 : if AllInputTerms is C then AllOutputTerms is R
+ RULE 4 : if AllInputTerms is D then AllOutputTerms is Q
+ RULE 5 : if AllInputTerms is E then AllOutputTerms is P
+ RULE 6 : if AllInputTerms is F then AllOutputTerms is O
+ RULE 7 : if AllInputTerms is G then AllOutputTerms is N
+ RULE 8 : if AllInputTerms is H then AllOutputTerms is M
+ RULE 9 : if AllInputTerms is I then AllOutputTerms is L
+ RULE 10 : if AllInputTerms is J then AllOutputTerms is K
+ RULE 11 : if AllInputTerms is K then AllOutputTerms is J
+ RULE 12 : if AllInputTerms is L then AllOutputTerms is I
+ RULE 13 : if AllInputTerms is M then AllOutputTerms is H
+ RULE 14 : if AllInputTerms is N then AllOutputTerms is G
+ RULE 15 : if AllInputTerms is O then AllOutputTerms is F
+ RULE 16 : if AllInputTerms is P then AllOutputTerms is E
+ RULE 17 : if AllInputTerms is Q then AllOutputTerms is D
+ RULE 18 : if AllInputTerms is R then AllOutputTerms is C
+ RULE 19 : if AllInputTerms is S then AllOutputTerms is B
+ RULE 20 : if AllInputTerms is T then AllOutputTerms is A
+END_RULEBLOCK
+
+END_FUNCTION_BLOCK
diff --git a/examples/mamdani/AllTerms.fis b/examples/mamdani/AllTerms.fis
new file mode 100644
index 0000000..61a6d18
--- /dev/null
+++ b/examples/mamdani/AllTerms.fis
@@ -0,0 +1,83 @@
+[System]
+Name='qtfuzzylite'
+Type='mamdani'
+NumInputs=1
+NumOutputs=1
+NumRules=20
+AndMethod='min'
+OrMethod='max'
+ImpMethod='min'
+AggMethod='max'
+DefuzzMethod='centroid'
+
+[Input1]
+Name='AllInputTerms'
+Range=[0.000 6.500]
+NumMFs=20
+MF1='A':'sigmf',[-20.000 0.500]
+MF2='B':'zmf',[0.000 1.000]
+MF3='C':'rampmf',[1.000 0.000]
+MF4='D':'trimf',[0.500 1.000 1.500]
+MF5='E':'trapmf',[1.000 1.250 1.750 2.000]
+MF6='F':'concavemf',[0.850 0.250]
+MF7='G':'rectmf',[1.750 2.250]
+MF8='H':'discretemf',[2.000 0.000 2.250 1.000 2.500 0.500 2.750 1.000 3.000 0.000]
+MF9='I':'gaussmf',[0.200 3.000]
+MF10='J':'cosinemf',[3.250 0.650]
+MF11='K':'gauss2mf',[0.100 3.500 0.300 3.300]
+MF12='L':'spikemf',[3.640 1.040]
+MF13='M':'gbellmf',[0.250 3.000 4.000]
+MF14='N':'pimf',[4.000 4.500 4.500 5.000]
+MF15='O':'concavemf',[5.650 6.250]
+MF16='P':'dsigmf',[10.000 4.750 30.000 5.250]
+MF17='Q':'psigmf',[20.000 5.250 -10.000 5.750]
+MF18='R':'rampmf',[5.500 6.500]
+MF19='S':'smf',[5.500 6.500]
+MF20='T':'sigmf',[20.000 6.000]
+
+[Output1]
+Name='AllOutputTerms'
+Range=[0.000 6.500]
+NumMFs=20
+MF1='A':'sigmf',[-20.000 0.500]
+MF2='B':'zmf',[0.000 1.000]
+MF3='C':'rampmf',[1.000 0.000]
+MF4='D':'trimf',[0.500 1.000 1.500]
+MF5='E':'trapmf',[1.000 1.250 1.750 2.000]
+MF6='F':'concavemf',[0.850 0.250]
+MF7='G':'rectmf',[1.750 2.250]
+MF8='H':'discretemf',[2.000 0.000 2.250 1.000 2.500 0.500 2.750 1.000 3.000 0.000]
+MF9='I':'gaussmf',[0.200 3.000]
+MF10='J':'cosinemf',[3.250 0.650]
+MF11='K':'gauss2mf',[0.100 3.500 0.300 3.300]
+MF12='L':'spikemf',[3.640 1.040]
+MF13='M':'gbellmf',[0.250 3.000 4.000]
+MF14='N':'pimf',[4.000 4.500 4.500 5.000]
+MF15='O':'concavemf',[5.650 6.250]
+MF16='P':'dsigmf',[10.000 4.750 30.000 5.250]
+MF17='Q':'psigmf',[20.000 5.250 -10.000 5.750]
+MF18='R':'rampmf',[5.500 6.500]
+MF19='S':'smf',[5.500 6.500]
+MF20='T':'sigmf',[20.000 6.000]
+
+[Rules]
+1.000 , 20.000 (1.000) : 1
+2.000 , 19.000 (1.000) : 1
+3.000 , 18.000 (1.000) : 1
+4.000 , 17.000 (1.000) : 1
+5.000 , 16.000 (1.000) : 1
+6.000 , 15.000 (1.000) : 1
+7.000 , 14.000 (1.000) : 1
+8.000 , 13.000 (1.000) : 1
+9.000 , 12.000 (1.000) : 1
+10.000 , 11.000 (1.000) : 1
+11.000 , 10.000 (1.000) : 1
+12.000 , 9.000 (1.000) : 1
+13.000 , 8.000 (1.000) : 1
+14.000 , 7.000 (1.000) : 1
+15.000 , 6.000 (1.000) : 1
+16.000 , 5.000 (1.000) : 1
+17.000 , 4.000 (1.000) : 1
+18.000 , 3.000 (1.000) : 1
+19.000 , 2.000 (1.000) : 1
+20.000 , 1.000 (1.000) : 1
diff --git a/examples/mamdani/AllTerms.fld b/examples/mamdani/AllTerms.fld
new file mode 100644
index 0000000..95116fa
--- /dev/null
+++ b/examples/mamdani/AllTerms.fld
@@ -0,0 +1,1026 @@
+#@Engine: qtfuzzylite;
+#@InputVariable: AllInputTerms; @OutputVariable: AllOutputTerms;
+0.00000000 4.59989528
+0.00635386 4.59989528
+0.01270772 4.59989528
+0.01906158 4.59989215
+0.02541544 4.59988508
+0.03176931 4.59987800
+0.03812317 4.59987091
+0.04447703 4.59986380
+0.05083089 4.59985436
+0.05718475 4.59984014
+0.06353861 4.59982589
+0.06989247 4.59981161
+0.07624633 4.59979731
+0.08260020 4.59978148
+0.08895406 4.59976002
+0.09530792 4.59973853
+0.10166178 4.59971699
+0.10801564 4.59969542
+0.11436950 4.59967311
+0.12072336 4.59964434
+0.12707722 4.59961551
+0.13343109 4.59958663
+0.13978495 4.59955769
+0.14613881 4.59952871
+0.15249267 4.59949265
+0.15884653 4.59945641
+0.16520039 4.59942010
+0.17155425 4.59938372
+0.17790811 4.59934727
+0.18426197 4.59930456
+0.19061584 4.59926081
+0.19696970 4.59921698
+0.20332356 4.59917307
+0.20967742 4.59912907
+0.21603128 4.59907961
+0.22238514 4.59902827
+0.22873900 4.59897684
+0.23509286 4.59892531
+0.24144673 4.59887368
+0.24780059 4.59881738
+0.25415445 4.59691917
+0.26050831 4.59649344
+0.26686217 4.59613763
+0.27321603 4.59574220
+0.27956989 4.59527472
+0.28592375 4.59472722
+0.29227761 4.59411601
+0.29863148 4.59343292
+0.30498534 4.59266881
+0.31133920 4.59177691
+0.31769306 4.59072170
+0.32404692 4.58953931
+0.33040078 4.58821415
+0.33675464 4.58672898
+0.34310850 4.58501913
+0.34946237 4.58298678
+0.35581623 4.58071110
+0.36217009 4.57816482
+0.36852395 4.57531844
+0.37487781 4.57209253
+0.38123167 4.56826124
+0.38758553 4.56399478
+0.39393939 4.55925255
+0.40029326 4.55399273
+0.40664712 4.54814499
+0.41300098 4.54124963
+0.41935484 4.53365966
+0.42570870 4.52533306
+0.43206256 4.51623220
+0.43841642 4.50632570
+0.44477028 4.49679479
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diff --git a/examples/mamdani/AllTerms.fll b/examples/mamdani/AllTerms.fll
new file mode 100644
index 0000000..58d5705
--- /dev/null
+++ b/examples/mamdani/AllTerms.fll
@@ -0,0 +1,77 @@
+Engine: qtfuzzylite
+InputVariable: AllInputTerms
+ enabled: true
+ range: 0.000 6.500
+ term: A Sigmoid 0.500 -20.000
+ term: B ZShape 0.000 1.000
+ term: C Ramp 1.000 0.000
+ term: D Triangle 0.500 1.000 1.500
+ term: E Trapezoid 1.000 1.250 1.750 2.000
+ term: F Concave 0.850 0.250
+ term: G Rectangle 1.750 2.250
+ term: H Discrete 2.000 0.000 2.250 1.000 2.500 0.500 2.750 1.000 3.000 0.000
+ term: I Gaussian 3.000 0.200
+ term: J Cosine 3.250 0.650
+ term: K GaussianProduct 3.500 0.100 3.300 0.300
+ term: L Spike 3.640 1.040
+ term: M Bell 4.000 0.250 3.000
+ term: N PiShape 4.000 4.500 4.500 5.000
+ term: O Concave 5.650 6.250
+ term: P SigmoidDifference 4.750 10.000 30.000 5.250
+ term: Q SigmoidProduct 5.250 20.000 -10.000 5.750
+ term: R Ramp 5.500 6.500
+ term: S SShape 5.500 6.500
+ term: T Sigmoid 6.000 20.000
+OutputVariable: AllOutputTerms
+ enabled: true
+ range: 0.000 6.500
+ accumulation: Maximum
+ defuzzifier: Centroid 200
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: A Sigmoid 0.500 -20.000
+ term: B ZShape 0.000 1.000
+ term: C Ramp 1.000 0.000
+ term: D Triangle 0.500 1.000 1.500
+ term: E Trapezoid 1.000 1.250 1.750 2.000
+ term: F Concave 0.850 0.250
+ term: G Rectangle 1.750 2.250
+ term: H Discrete 2.000 0.000 2.250 1.000 2.500 0.500 2.750 1.000 3.000 0.000
+ term: I Gaussian 3.000 0.200
+ term: J Cosine 3.250 0.650
+ term: K GaussianProduct 3.500 0.100 3.300 0.300
+ term: L Spike 3.640 1.040
+ term: M Bell 4.000 0.250 3.000
+ term: N PiShape 4.000 4.500 4.500 5.000
+ term: O Concave 5.650 6.250
+ term: P SigmoidDifference 4.750 10.000 30.000 5.250
+ term: Q SigmoidProduct 5.250 20.000 -10.000 5.750
+ term: R Ramp 5.500 6.500
+ term: S SShape 5.500 6.500
+ term: T Sigmoid 6.000 20.000
+RuleBlock:
+ enabled: true
+ conjunction: Minimum
+ disjunction: Maximum
+ activation: Minimum
+ rule: if AllInputTerms is A then AllOutputTerms is T
+ rule: if AllInputTerms is B then AllOutputTerms is S
+ rule: if AllInputTerms is C then AllOutputTerms is R
+ rule: if AllInputTerms is D then AllOutputTerms is Q
+ rule: if AllInputTerms is E then AllOutputTerms is P
+ rule: if AllInputTerms is F then AllOutputTerms is O
+ rule: if AllInputTerms is G then AllOutputTerms is N
+ rule: if AllInputTerms is H then AllOutputTerms is M
+ rule: if AllInputTerms is I then AllOutputTerms is L
+ rule: if AllInputTerms is J then AllOutputTerms is K
+ rule: if AllInputTerms is K then AllOutputTerms is J
+ rule: if AllInputTerms is L then AllOutputTerms is I
+ rule: if AllInputTerms is M then AllOutputTerms is H
+ rule: if AllInputTerms is N then AllOutputTerms is G
+ rule: if AllInputTerms is O then AllOutputTerms is F
+ rule: if AllInputTerms is P then AllOutputTerms is E
+ rule: if AllInputTerms is Q then AllOutputTerms is D
+ rule: if AllInputTerms is R then AllOutputTerms is C
+ rule: if AllInputTerms is S then AllOutputTerms is B
+ rule: if AllInputTerms is T then AllOutputTerms is A \ No newline at end of file
diff --git a/examples/mamdani/AllTerms.java b/examples/mamdani/AllTerms.java
new file mode 100644
index 0000000..c59f9a1
--- /dev/null
+++ b/examples/mamdani/AllTerms.java
@@ -0,0 +1,105 @@
+import com.fuzzylite.*;
+import com.fuzzylite.defuzzifier.*;
+import com.fuzzylite.factory.*;
+import com.fuzzylite.hedge.*;
+import com.fuzzylite.imex.*;
+import com.fuzzylite.norm.*;
+import com.fuzzylite.norm.s.*;
+import com.fuzzylite.norm.t.*;
+import com.fuzzylite.rule.*;
+import com.fuzzylite.term.*;
+import com.fuzzylite.variable.*;
+
+public class AllTerms{
+public static void main(String[] args){
+Engine engine = new Engine();
+engine.setName("qtfuzzylite");
+
+InputVariable inputVariable = new InputVariable();
+inputVariable.setEnabled(true);
+inputVariable.setName("AllInputTerms");
+inputVariable.setRange(0.000, 6.500);
+inputVariable.addTerm(new Sigmoid("A", 0.500, -20.000));
+inputVariable.addTerm(new ZShape("B", 0.000, 1.000));
+inputVariable.addTerm(new Ramp("C", 1.000, 0.000));
+inputVariable.addTerm(new Triangle("D", 0.500, 1.000, 1.500));
+inputVariable.addTerm(new Trapezoid("E", 1.000, 1.250, 1.750, 2.000));
+inputVariable.addTerm(new Concave("F", 0.850, 0.250));
+inputVariable.addTerm(new Rectangle("G", 1.750, 2.250));
+inputVariable.addTerm(Discrete.create("H", 2.000, 0.000, 2.250, 1.000, 2.500, 0.500, 2.750, 1.000, 3.000, 0.000));
+inputVariable.addTerm(new Gaussian("I", 3.000, 0.200));
+inputVariable.addTerm(new Cosine("J", 3.250, 0.650));
+inputVariable.addTerm(new GaussianProduct("K", 3.500, 0.100, 3.300, 0.300));
+inputVariable.addTerm(new Spike("L", 3.640, 1.040));
+inputVariable.addTerm(new Bell("M", 4.000, 0.250, 3.000));
+inputVariable.addTerm(new PiShape("N", 4.000, 4.500, 4.500, 5.000));
+inputVariable.addTerm(new Concave("O", 5.650, 6.250));
+inputVariable.addTerm(new SigmoidDifference("P", 4.750, 10.000, 30.000, 5.250));
+inputVariable.addTerm(new SigmoidProduct("Q", 5.250, 20.000, -10.000, 5.750));
+inputVariable.addTerm(new Ramp("R", 5.500, 6.500));
+inputVariable.addTerm(new SShape("S", 5.500, 6.500));
+inputVariable.addTerm(new Sigmoid("T", 6.000, 20.000));
+engine.addInputVariable(inputVariable);
+
+OutputVariable outputVariable = new OutputVariable();
+outputVariable.setEnabled(true);
+outputVariable.setName("AllOutputTerms");
+outputVariable.setRange(0.000, 6.500);
+outputVariable.fuzzyOutput().setAccumulation(new Maximum());
+outputVariable.setDefuzzifier(new Centroid(200));
+outputVariable.setDefaultValue(Double.NaN);
+outputVariable.setLockPreviousOutputValue(false);
+outputVariable.setLockOutputValueInRange(false);
+outputVariable.addTerm(new Sigmoid("A", 0.500, -20.000));
+outputVariable.addTerm(new ZShape("B", 0.000, 1.000));
+outputVariable.addTerm(new Ramp("C", 1.000, 0.000));
+outputVariable.addTerm(new Triangle("D", 0.500, 1.000, 1.500));
+outputVariable.addTerm(new Trapezoid("E", 1.000, 1.250, 1.750, 2.000));
+outputVariable.addTerm(new Concave("F", 0.850, 0.250));
+outputVariable.addTerm(new Rectangle("G", 1.750, 2.250));
+outputVariable.addTerm(Discrete.create("H", 2.000, 0.000, 2.250, 1.000, 2.500, 0.500, 2.750, 1.000, 3.000, 0.000));
+outputVariable.addTerm(new Gaussian("I", 3.000, 0.200));
+outputVariable.addTerm(new Cosine("J", 3.250, 0.650));
+outputVariable.addTerm(new GaussianProduct("K", 3.500, 0.100, 3.300, 0.300));
+outputVariable.addTerm(new Spike("L", 3.640, 1.040));
+outputVariable.addTerm(new Bell("M", 4.000, 0.250, 3.000));
+outputVariable.addTerm(new PiShape("N", 4.000, 4.500, 4.500, 5.000));
+outputVariable.addTerm(new Concave("O", 5.650, 6.250));
+outputVariable.addTerm(new SigmoidDifference("P", 4.750, 10.000, 30.000, 5.250));
+outputVariable.addTerm(new SigmoidProduct("Q", 5.250, 20.000, -10.000, 5.750));
+outputVariable.addTerm(new Ramp("R", 5.500, 6.500));
+outputVariable.addTerm(new SShape("S", 5.500, 6.500));
+outputVariable.addTerm(new Sigmoid("T", 6.000, 20.000));
+engine.addOutputVariable(outputVariable);
+
+RuleBlock ruleBlock = new RuleBlock();
+ruleBlock.setEnabled(true);
+ruleBlock.setName("");
+ruleBlock.setConjunction(new Minimum());
+ruleBlock.setDisjunction(new Maximum());
+ruleBlock.setActivation(new Minimum());
+ruleBlock.addRule(Rule.parse("if AllInputTerms is A then AllOutputTerms is T", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is B then AllOutputTerms is S", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is C then AllOutputTerms is R", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is D then AllOutputTerms is Q", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is E then AllOutputTerms is P", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is F then AllOutputTerms is O", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is G then AllOutputTerms is N", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is H then AllOutputTerms is M", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is I then AllOutputTerms is L", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is J then AllOutputTerms is K", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is K then AllOutputTerms is J", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is L then AllOutputTerms is I", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is M then AllOutputTerms is H", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is N then AllOutputTerms is G", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is O then AllOutputTerms is F", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is P then AllOutputTerms is E", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is Q then AllOutputTerms is D", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is R then AllOutputTerms is C", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is S then AllOutputTerms is B", engine));
+ruleBlock.addRule(Rule.parse("if AllInputTerms is T then AllOutputTerms is A", engine));
+engine.addRuleBlock(ruleBlock);
+
+
+}
+}
diff --git a/examples/mamdani/Laundry.cpp b/examples/mamdani/Laundry.cpp
new file mode 100644
index 0000000..7fbcb11
--- /dev/null
+++ b/examples/mamdani/Laundry.cpp
@@ -0,0 +1,67 @@
+#include <fl/Headers.h>
+
+int main(int argc, char** argv){
+using namespace fl;
+
+Engine* engine = new Engine;
+engine->setName("Laundry");
+
+InputVariable* inputVariable1 = new InputVariable;
+inputVariable1->setEnabled(true);
+inputVariable1->setName("Load");
+inputVariable1->setRange(0.000, 6.000);
+inputVariable1->addTerm(Discrete::create("small", 8, 0.000, 1.000, 1.000, 1.000, 2.000, 0.800, 5.000, 0.000));
+inputVariable1->addTerm(Discrete::create("normal", 6, 3.000, 0.000, 4.000, 1.000, 6.000, 0.000));
+engine->addInputVariable(inputVariable1);
+
+InputVariable* inputVariable2 = new InputVariable;
+inputVariable2->setEnabled(true);
+inputVariable2->setName("Dirt");
+inputVariable2->setRange(0.000, 6.000);
+inputVariable2->addTerm(Discrete::create("low", 6, 0.000, 1.000, 2.000, 0.800, 5.000, 0.000));
+inputVariable2->addTerm(Discrete::create("high", 8, 1.000, 0.000, 2.000, 0.200, 4.000, 0.800, 6.000, 1.000));
+engine->addInputVariable(inputVariable2);
+
+OutputVariable* outputVariable1 = new OutputVariable;
+outputVariable1->setEnabled(true);
+outputVariable1->setName("Detergent");
+outputVariable1->setRange(0.000, 80.000);
+outputVariable1->fuzzyOutput()->setAccumulation(new Maximum);
+outputVariable1->setDefuzzifier(new MeanOfMaximum(500));
+outputVariable1->setDefaultValue(fl::nan);
+outputVariable1->setLockPreviousOutputValue(false);
+outputVariable1->setLockOutputValueInRange(false);
+outputVariable1->addTerm(Discrete::create("less", 6, 10.000, 0.000, 40.000, 1.000, 50.000, 0.000));
+outputVariable1->addTerm(Discrete::create("normal", 8, 40.000, 0.000, 50.000, 1.000, 60.000, 1.000, 80.000, 0.000));
+outputVariable1->addTerm(Discrete::create("more", 4, 50.000, 0.000, 80.000, 1.000));
+engine->addOutputVariable(outputVariable1);
+
+OutputVariable* outputVariable2 = new OutputVariable;
+outputVariable2->setEnabled(true);
+outputVariable2->setName("Cycle");
+outputVariable2->setRange(0.000, 20.000);
+outputVariable2->fuzzyOutput()->setAccumulation(new Maximum);
+outputVariable2->setDefuzzifier(new MeanOfMaximum(500));
+outputVariable2->setDefaultValue(fl::nan);
+outputVariable2->setLockPreviousOutputValue(false);
+outputVariable2->setLockOutputValueInRange(false);
+outputVariable2->addTerm(Discrete::create("short", 6, 0.000, 1.000, 10.000, 1.000, 20.000, 0.000));
+outputVariable2->addTerm(Discrete::create("long", 4, 10.000, 0.000, 20.000, 1.000));
+engine->addOutputVariable(outputVariable2);
+
+RuleBlock* ruleBlock = new RuleBlock;
+ruleBlock->setEnabled(true);
+ruleBlock->setName("");
+ruleBlock->setConjunction(new Minimum);
+ruleBlock->setDisjunction(new Maximum);
+ruleBlock->setActivation(new Minimum);
+ruleBlock->addRule(fl::Rule::parse("if Load is small and Dirt is not high then Detergent is less", engine));
+ruleBlock->addRule(fl::Rule::parse("if Load is small and Dirt is high then Detergent is normal", engine));
+ruleBlock->addRule(fl::Rule::parse("if Load is normal and Dirt is low then Detergent is less", engine));
+ruleBlock->addRule(fl::Rule::parse("if Load is normal and Dirt is high then Detergent is more", engine));
+ruleBlock->addRule(fl::Rule::parse("if Detergent is normal or Detergent is less then Cycle is short", engine));
+ruleBlock->addRule(fl::Rule::parse("if Detergent is more then Cycle is long", engine));
+engine->addRuleBlock(ruleBlock);
+
+
+}
diff --git a/examples/mamdani/Laundry.fcl b/examples/mamdani/Laundry.fcl
new file mode 100644
index 0000000..a5d5380
--- /dev/null
+++ b/examples/mamdani/Laundry.fcl
@@ -0,0 +1,56 @@
+FUNCTION_BLOCK Laundry
+
+VAR_INPUT
+ Load: REAL;
+ Dirt: REAL;
+END_VAR
+
+VAR_OUTPUT
+ Detergent: REAL;
+ Cycle: REAL;
+END_VAR
+
+FUZZIFY Load
+ RANGE := (0.000 .. 6.000);
+ TERM small := (0.000, 1.000) (1.000, 1.000) (2.000, 0.800) (5.000, 0.000);
+ TERM normal := (3.000, 0.000) (4.000, 1.000) (6.000, 0.000);
+END_FUZZIFY
+
+FUZZIFY Dirt
+ RANGE := (0.000 .. 6.000);
+ TERM low := (0.000, 1.000) (2.000, 0.800) (5.000, 0.000);
+ TERM high := (1.000, 0.000) (2.000, 0.200) (4.000, 0.800) (6.000, 1.000);
+END_FUZZIFY
+
+DEFUZZIFY Detergent
+ RANGE := (0.000 .. 80.000);
+ TERM less := (10.000, 0.000) (40.000, 1.000) (50.000, 0.000);
+ TERM normal := (40.000, 0.000) (50.000, 1.000) (60.000, 1.000) (80.000, 0.000);
+ TERM more := (50.000, 0.000) (80.000, 1.000);
+ METHOD : MM;
+ ACCU : MAX;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+DEFUZZIFY Cycle
+ RANGE := (0.000 .. 20.000);
+ TERM short := (0.000, 1.000) (10.000, 1.000) (20.000, 0.000);
+ TERM long := (10.000, 0.000) (20.000, 1.000);
+ METHOD : MM;
+ ACCU : MAX;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+RULEBLOCK
+ AND : MIN;
+ OR : MAX;
+ ACT : MIN;
+ RULE 1 : if Load is small and Dirt is not high then Detergent is less
+ RULE 2 : if Load is small and Dirt is high then Detergent is normal
+ RULE 3 : if Load is normal and Dirt is low then Detergent is less
+ RULE 4 : if Load is normal and Dirt is high then Detergent is more
+ RULE 5 : if Detergent is normal or Detergent is less then Cycle is short
+ RULE 6 : if Detergent is more then Cycle is long
+END_RULEBLOCK
+
+END_FUNCTION_BLOCK
diff --git a/examples/mamdani/Laundry.fld b/examples/mamdani/Laundry.fld
new file mode 100644
index 0000000..f72dfb6
--- /dev/null
+++ b/examples/mamdani/Laundry.fld
@@ -0,0 +1,1026 @@
+#@Engine: Laundry;
+#@InputVariable: Load; @InputVariable: Dirt; @OutputVariable: Detergent; @OutputVariable: Cycle;
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+6.00000000 4.45161290 nan nan
+6.00000000 4.64516129 nan nan
+6.00000000 4.83870968 nan nan
+6.00000000 5.03225806 nan nan
+6.00000000 5.22580645 nan nan
+6.00000000 5.41935484 nan nan
+6.00000000 5.61290323 nan nan
+6.00000000 5.80645161 nan nan
+6.00000000 6.00000000 nan nan
diff --git a/examples/mamdani/Laundry.fll b/examples/mamdani/Laundry.fll
new file mode 100644
index 0000000..ef6fd44
--- /dev/null
+++ b/examples/mamdani/Laundry.fll
@@ -0,0 +1,43 @@
+Engine: Laundry
+InputVariable: Load
+ enabled: true
+ range: 0.000 6.000
+ term: small Discrete 0.000 1.000 1.000 1.000 2.000 0.800 5.000 0.000
+ term: normal Discrete 3.000 0.000 4.000 1.000 6.000 0.000
+InputVariable: Dirt
+ enabled: true
+ range: 0.000 6.000
+ term: low Discrete 0.000 1.000 2.000 0.800 5.000 0.000
+ term: high Discrete 1.000 0.000 2.000 0.200 4.000 0.800 6.000 1.000
+OutputVariable: Detergent
+ enabled: true
+ range: 0.000 80.000
+ accumulation: Maximum
+ defuzzifier: MeanOfMaximum 500
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: less Discrete 10.000 0.000 40.000 1.000 50.000 0.000
+ term: normal Discrete 40.000 0.000 50.000 1.000 60.000 1.000 80.000 0.000
+ term: more Discrete 50.000 0.000 80.000 1.000
+OutputVariable: Cycle
+ enabled: true
+ range: 0.000 20.000
+ accumulation: Maximum
+ defuzzifier: MeanOfMaximum 500
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: short Discrete 0.000 1.000 10.000 1.000 20.000 0.000
+ term: long Discrete 10.000 0.000 20.000 1.000
+RuleBlock:
+ enabled: true
+ conjunction: Minimum
+ disjunction: Maximum
+ activation: Minimum
+ rule: if Load is small and Dirt is not high then Detergent is less
+ rule: if Load is small and Dirt is high then Detergent is normal
+ rule: if Load is normal and Dirt is low then Detergent is less
+ rule: if Load is normal and Dirt is high then Detergent is more
+ rule: if Detergent is normal or Detergent is less then Cycle is short
+ rule: if Detergent is more then Cycle is long \ No newline at end of file
diff --git a/examples/mamdani/Laundry.java b/examples/mamdani/Laundry.java
new file mode 100644
index 0000000..d45e77e
--- /dev/null
+++ b/examples/mamdani/Laundry.java
@@ -0,0 +1,77 @@
+import com.fuzzylite.*;
+import com.fuzzylite.defuzzifier.*;
+import com.fuzzylite.factory.*;
+import com.fuzzylite.hedge.*;
+import com.fuzzylite.imex.*;
+import com.fuzzylite.norm.*;
+import com.fuzzylite.norm.s.*;
+import com.fuzzylite.norm.t.*;
+import com.fuzzylite.rule.*;
+import com.fuzzylite.term.*;
+import com.fuzzylite.variable.*;
+
+public class Laundry{
+public static void main(String[] args){
+Engine engine = new Engine();
+engine.setName("Laundry");
+
+InputVariable inputVariable1 = new InputVariable();
+inputVariable1.setEnabled(true);
+inputVariable1.setName("Load");
+inputVariable1.setRange(0.000, 6.000);
+inputVariable1.addTerm(Discrete.create("small", 0.000, 1.000, 1.000, 1.000, 2.000, 0.800, 5.000, 0.000));
+inputVariable1.addTerm(Discrete.create("normal", 3.000, 0.000, 4.000, 1.000, 6.000, 0.000));
+engine.addInputVariable(inputVariable1);
+
+InputVariable inputVariable2 = new InputVariable();
+inputVariable2.setEnabled(true);
+inputVariable2.setName("Dirt");
+inputVariable2.setRange(0.000, 6.000);
+inputVariable2.addTerm(Discrete.create("low", 0.000, 1.000, 2.000, 0.800, 5.000, 0.000));
+inputVariable2.addTerm(Discrete.create("high", 1.000, 0.000, 2.000, 0.200, 4.000, 0.800, 6.000, 1.000));
+engine.addInputVariable(inputVariable2);
+
+OutputVariable outputVariable1 = new OutputVariable();
+outputVariable1.setEnabled(true);
+outputVariable1.setName("Detergent");
+outputVariable1.setRange(0.000, 80.000);
+outputVariable1.fuzzyOutput().setAccumulation(new Maximum());
+outputVariable1.setDefuzzifier(new MeanOfMaximum(500));
+outputVariable1.setDefaultValue(Double.NaN);
+outputVariable1.setLockPreviousOutputValue(false);
+outputVariable1.setLockOutputValueInRange(false);
+outputVariable1.addTerm(Discrete.create("less", 10.000, 0.000, 40.000, 1.000, 50.000, 0.000));
+outputVariable1.addTerm(Discrete.create("normal", 40.000, 0.000, 50.000, 1.000, 60.000, 1.000, 80.000, 0.000));
+outputVariable1.addTerm(Discrete.create("more", 50.000, 0.000, 80.000, 1.000));
+engine.addOutputVariable(outputVariable1);
+
+OutputVariable outputVariable2 = new OutputVariable();
+outputVariable2.setEnabled(true);
+outputVariable2.setName("Cycle");
+outputVariable2.setRange(0.000, 20.000);
+outputVariable2.fuzzyOutput().setAccumulation(new Maximum());
+outputVariable2.setDefuzzifier(new MeanOfMaximum(500));
+outputVariable2.setDefaultValue(Double.NaN);
+outputVariable2.setLockPreviousOutputValue(false);
+outputVariable2.setLockOutputValueInRange(false);
+outputVariable2.addTerm(Discrete.create("short", 0.000, 1.000, 10.000, 1.000, 20.000, 0.000));
+outputVariable2.addTerm(Discrete.create("long", 10.000, 0.000, 20.000, 1.000));
+engine.addOutputVariable(outputVariable2);
+
+RuleBlock ruleBlock = new RuleBlock();
+ruleBlock.setEnabled(true);
+ruleBlock.setName("");
+ruleBlock.setConjunction(new Minimum());
+ruleBlock.setDisjunction(new Maximum());
+ruleBlock.setActivation(new Minimum());
+ruleBlock.addRule(Rule.parse("if Load is small and Dirt is not high then Detergent is less", engine));
+ruleBlock.addRule(Rule.parse("if Load is small and Dirt is high then Detergent is normal", engine));
+ruleBlock.addRule(Rule.parse("if Load is normal and Dirt is low then Detergent is less", engine));
+ruleBlock.addRule(Rule.parse("if Load is normal and Dirt is high then Detergent is more", engine));
+ruleBlock.addRule(Rule.parse("if Detergent is normal or Detergent is less then Cycle is short", engine));
+ruleBlock.addRule(Rule.parse("if Detergent is more then Cycle is long", engine));
+engine.addRuleBlock(ruleBlock);
+
+
+}
+}
diff --git a/examples/mamdani/SimpleDimmer.cpp b/examples/mamdani/SimpleDimmer.cpp
new file mode 100644
index 0000000..b4c6897
--- /dev/null
+++ b/examples/mamdani/SimpleDimmer.cpp
@@ -0,0 +1,44 @@
+#include <fl/Headers.h>
+
+int main(int argc, char** argv){
+using namespace fl;
+
+Engine* engine = new Engine;
+engine->setName("simple-dimmer");
+
+InputVariable* inputVariable = new InputVariable;
+inputVariable->setEnabled(true);
+inputVariable->setName("Ambient");
+inputVariable->setRange(0.000, 1.000);
+inputVariable->addTerm(new Triangle("DARK", 0.000, 0.250, 0.500));
+inputVariable->addTerm(new Triangle("MEDIUM", 0.250, 0.500, 0.750));
+inputVariable->addTerm(new Triangle("BRIGHT", 0.500, 0.750, 1.000));
+engine->addInputVariable(inputVariable);
+
+OutputVariable* outputVariable = new OutputVariable;
+outputVariable->setEnabled(true);
+outputVariable->setName("Power");
+outputVariable->setRange(0.000, 1.000);
+outputVariable->fuzzyOutput()->setAccumulation(new Maximum);
+outputVariable->setDefuzzifier(new Centroid(200));
+outputVariable->setDefaultValue(fl::nan);
+outputVariable->setLockPreviousOutputValue(false);
+outputVariable->setLockOutputValueInRange(false);
+outputVariable->addTerm(new Triangle("LOW", 0.000, 0.250, 0.500));
+outputVariable->addTerm(new Triangle("MEDIUM", 0.250, 0.500, 0.750));
+outputVariable->addTerm(new Triangle("HIGH", 0.500, 0.750, 1.000));
+engine->addOutputVariable(outputVariable);
+
+RuleBlock* ruleBlock = new RuleBlock;
+ruleBlock->setEnabled(true);
+ruleBlock->setName("");
+ruleBlock->setConjunction(fl::null);
+ruleBlock->setDisjunction(fl::null);
+ruleBlock->setActivation(new Minimum);
+ruleBlock->addRule(fl::Rule::parse("if Ambient is DARK then Power is HIGH", engine));
+ruleBlock->addRule(fl::Rule::parse("if Ambient is MEDIUM then Power is MEDIUM", engine));
+ruleBlock->addRule(fl::Rule::parse("if Ambient is BRIGHT then Power is LOW", engine));
+engine->addRuleBlock(ruleBlock);
+
+
+}
diff --git a/examples/mamdani/SimpleDimmer.fcl b/examples/mamdani/SimpleDimmer.fcl
new file mode 100644
index 0000000..a9b9552
--- /dev/null
+++ b/examples/mamdani/SimpleDimmer.fcl
@@ -0,0 +1,35 @@
+FUNCTION_BLOCK simple-dimmer
+
+VAR_INPUT
+ Ambient: REAL;
+END_VAR
+
+VAR_OUTPUT
+ Power: REAL;
+END_VAR
+
+FUZZIFY Ambient
+ RANGE := (0.000 .. 1.000);
+ TERM DARK := Triangle 0.000 0.250 0.500;
+ TERM MEDIUM := Triangle 0.250 0.500 0.750;
+ TERM BRIGHT := Triangle 0.500 0.750 1.000;
+END_FUZZIFY
+
+DEFUZZIFY Power
+ RANGE := (0.000 .. 1.000);
+ TERM LOW := Triangle 0.000 0.250 0.500;
+ TERM MEDIUM := Triangle 0.250 0.500 0.750;
+ TERM HIGH := Triangle 0.500 0.750 1.000;
+ METHOD : COG;
+ ACCU : MAX;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+RULEBLOCK
+ ACT : MIN;
+ RULE 1 : if Ambient is DARK then Power is HIGH
+ RULE 2 : if Ambient is MEDIUM then Power is MEDIUM
+ RULE 3 : if Ambient is BRIGHT then Power is LOW
+END_RULEBLOCK
+
+END_FUNCTION_BLOCK
diff --git a/examples/mamdani/SimpleDimmer.fis b/examples/mamdani/SimpleDimmer.fis
new file mode 100644
index 0000000..40ac849
--- /dev/null
+++ b/examples/mamdani/SimpleDimmer.fis
@@ -0,0 +1,32 @@
+[System]
+Name='simple-dimmer'
+Type='mamdani'
+NumInputs=1
+NumOutputs=1
+NumRules=3
+AndMethod=''
+OrMethod=''
+ImpMethod='min'
+AggMethod='max'
+DefuzzMethod='centroid'
+
+[Input1]
+Name='Ambient'
+Range=[0.000 1.000]
+NumMFs=3
+MF1='DARK':'trimf',[0.000 0.250 0.500]
+MF2='MEDIUM':'trimf',[0.250 0.500 0.750]
+MF3='BRIGHT':'trimf',[0.500 0.750 1.000]
+
+[Output1]
+Name='Power'
+Range=[0.000 1.000]
+NumMFs=3
+MF1='LOW':'trimf',[0.000 0.250 0.500]
+MF2='MEDIUM':'trimf',[0.250 0.500 0.750]
+MF3='HIGH':'trimf',[0.500 0.750 1.000]
+
+[Rules]
+1.000 , 3.000 (1.000) : 1
+2.000 , 2.000 (1.000) : 1
+3.000 , 1.000 (1.000) : 1
diff --git a/examples/mamdani/SimpleDimmer.fld b/examples/mamdani/SimpleDimmer.fld
new file mode 100644
index 0000000..4d9a671
--- /dev/null
+++ b/examples/mamdani/SimpleDimmer.fld
@@ -0,0 +1,1026 @@
+#@Engine: simple-dimmer;
+#@InputVariable: Ambient; @OutputVariable: Power;
+0.00000000 nan
+0.00097752 0.75000000
+0.00195503 0.75000000
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diff --git a/examples/mamdani/SimpleDimmer.fll b/examples/mamdani/SimpleDimmer.fll
new file mode 100644
index 0000000..3a4f8f9
--- /dev/null
+++ b/examples/mamdani/SimpleDimmer.fll
@@ -0,0 +1,26 @@
+Engine: simple-dimmer
+InputVariable: Ambient
+ enabled: true
+ range: 0.000 1.000
+ term: DARK Triangle 0.000 0.250 0.500
+ term: MEDIUM Triangle 0.250 0.500 0.750
+ term: BRIGHT Triangle 0.500 0.750 1.000
+OutputVariable: Power
+ enabled: true
+ range: 0.000 1.000
+ accumulation: Maximum
+ defuzzifier: Centroid 200
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: LOW Triangle 0.000 0.250 0.500
+ term: MEDIUM Triangle 0.250 0.500 0.750
+ term: HIGH Triangle 0.500 0.750 1.000
+RuleBlock:
+ enabled: true
+ conjunction: none
+ disjunction: none
+ activation: Minimum
+ rule: if Ambient is DARK then Power is HIGH
+ rule: if Ambient is MEDIUM then Power is MEDIUM
+ rule: if Ambient is BRIGHT then Power is LOW \ No newline at end of file
diff --git a/examples/mamdani/SimpleDimmer.java b/examples/mamdani/SimpleDimmer.java
new file mode 100644
index 0000000..1846722
--- /dev/null
+++ b/examples/mamdani/SimpleDimmer.java
@@ -0,0 +1,54 @@
+import com.fuzzylite.*;
+import com.fuzzylite.defuzzifier.*;
+import com.fuzzylite.factory.*;
+import com.fuzzylite.hedge.*;
+import com.fuzzylite.imex.*;
+import com.fuzzylite.norm.*;
+import com.fuzzylite.norm.s.*;
+import com.fuzzylite.norm.t.*;
+import com.fuzzylite.rule.*;
+import com.fuzzylite.term.*;
+import com.fuzzylite.variable.*;
+
+public class SimpleDimmer{
+public static void main(String[] args){
+Engine engine = new Engine();
+engine.setName("simple-dimmer");
+
+InputVariable inputVariable = new InputVariable();
+inputVariable.setEnabled(true);
+inputVariable.setName("Ambient");
+inputVariable.setRange(0.000, 1.000);
+inputVariable.addTerm(new Triangle("DARK", 0.000, 0.250, 0.500));
+inputVariable.addTerm(new Triangle("MEDIUM", 0.250, 0.500, 0.750));
+inputVariable.addTerm(new Triangle("BRIGHT", 0.500, 0.750, 1.000));
+engine.addInputVariable(inputVariable);
+
+OutputVariable outputVariable = new OutputVariable();
+outputVariable.setEnabled(true);
+outputVariable.setName("Power");
+outputVariable.setRange(0.000, 1.000);
+outputVariable.fuzzyOutput().setAccumulation(new Maximum());
+outputVariable.setDefuzzifier(new Centroid(200));
+outputVariable.setDefaultValue(Double.NaN);
+outputVariable.setLockPreviousOutputValue(false);
+outputVariable.setLockOutputValueInRange(false);
+outputVariable.addTerm(new Triangle("LOW", 0.000, 0.250, 0.500));
+outputVariable.addTerm(new Triangle("MEDIUM", 0.250, 0.500, 0.750));
+outputVariable.addTerm(new Triangle("HIGH", 0.500, 0.750, 1.000));
+engine.addOutputVariable(outputVariable);
+
+RuleBlock ruleBlock = new RuleBlock();
+ruleBlock.setEnabled(true);
+ruleBlock.setName("");
+ruleBlock.setConjunction(null);
+ruleBlock.setDisjunction(null);
+ruleBlock.setActivation(new Minimum());
+ruleBlock.addRule(Rule.parse("if Ambient is DARK then Power is HIGH", engine));
+ruleBlock.addRule(Rule.parse("if Ambient is MEDIUM then Power is MEDIUM", engine));
+ruleBlock.addRule(Rule.parse("if Ambient is BRIGHT then Power is LOW", engine));
+engine.addRuleBlock(ruleBlock);
+
+
+}
+}
diff --git a/examples/mamdani/SimpleDimmerChained.fll b/examples/mamdani/SimpleDimmerChained.fll
new file mode 100644
index 0000000..fd6b945
--- /dev/null
+++ b/examples/mamdani/SimpleDimmerChained.fll
@@ -0,0 +1,40 @@
+Engine: simple-dimmer
+InputVariable: Ambient
+ enabled: true
+ range: 0.000 1.000
+ term: DARK Triangle 0.000 0.250 0.500
+ term: MEDIUM Triangle 0.250 0.500 0.750
+ term: BRIGHT Triangle 0.500 0.750 1.000
+OutputVariable: Power
+ enabled: true
+ range: 0.000 1.000
+ accumulation: Maximum
+ defuzzifier: Centroid 200
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: LOW Triangle 0.000 0.250 0.500
+ term: MEDIUM Triangle 0.250 0.500 0.750
+ term: HIGH Triangle 0.500 0.750 1.000
+OutputVariable: InversePower
+ enabled: true
+ range: 0.000 1.000
+ accumulation: Maximum
+ defuzzifier: Centroid 500
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: LOW Cosine 0.200 0.500
+ term: MEDIUM Cosine 0.500 0.500
+ term: HIGH Cosine 0.800 0.500
+RuleBlock:
+ enabled: true
+ conjunction: none
+ disjunction: none
+ activation: Minimum
+ rule: if Ambient is DARK then Power is HIGH
+ rule: if Ambient is MEDIUM then Power is MEDIUM
+ rule: if Ambient is BRIGHT then Power is LOW
+ rule: if Power is LOW then InversePower is HIGH
+ rule: if Power is MEDIUM then InversePower is MEDIUM
+ rule: if Power is HIGH then InversePower is LOW \ No newline at end of file
diff --git a/examples/mamdani/SimpleDimmerInverse.cpp b/examples/mamdani/SimpleDimmerInverse.cpp
new file mode 100644
index 0000000..cad1100
--- /dev/null
+++ b/examples/mamdani/SimpleDimmerInverse.cpp
@@ -0,0 +1,61 @@
+#include <fl/Headers.h>
+
+int main(int argc, char** argv){
+using namespace fl;
+
+Engine* engine = new Engine;
+engine->setName("simple-dimmer");
+
+InputVariable* inputVariable = new InputVariable;
+inputVariable->setEnabled(true);
+inputVariable->setName("Ambient");
+inputVariable->setRange(0.000, 1.000);
+inputVariable->addTerm(new Triangle("DARK", 0.000, 0.250, 0.500));
+inputVariable->addTerm(new Triangle("MEDIUM", 0.250, 0.500, 0.750));
+inputVariable->addTerm(new Triangle("BRIGHT", 0.500, 0.750, 1.000));
+engine->addInputVariable(inputVariable);
+
+OutputVariable* outputVariable1 = new OutputVariable;
+outputVariable1->setEnabled(true);
+outputVariable1->setName("Power");
+outputVariable1->setRange(0.000, 1.000);
+outputVariable1->fuzzyOutput()->setAccumulation(new Maximum);
+outputVariable1->setDefuzzifier(new Centroid(200));
+outputVariable1->setDefaultValue(fl::nan);
+outputVariable1->setLockPreviousOutputValue(false);
+outputVariable1->setLockOutputValueInRange(false);
+outputVariable1->addTerm(new Triangle("LOW", 0.000, 0.250, 0.500));
+outputVariable1->addTerm(new Triangle("MEDIUM", 0.250, 0.500, 0.750));
+outputVariable1->addTerm(new Triangle("HIGH", 0.500, 0.750, 1.000));
+engine->addOutputVariable(outputVariable1);
+
+OutputVariable* outputVariable2 = new OutputVariable;
+outputVariable2->setEnabled(true);
+outputVariable2->setName("InversePower");
+outputVariable2->setRange(0.000, 1.000);
+outputVariable2->fuzzyOutput()->setAccumulation(new Maximum);
+outputVariable2->setDefuzzifier(new Centroid(500));
+outputVariable2->setDefaultValue(fl::nan);
+outputVariable2->setLockPreviousOutputValue(false);
+outputVariable2->setLockOutputValueInRange(false);
+outputVariable2->addTerm(new Cosine("LOW", 0.200, 0.500));
+outputVariable2->addTerm(new Cosine("MEDIUM", 0.500, 0.500));
+outputVariable2->addTerm(new Cosine("HIGH", 0.800, 0.500));
+engine->addOutputVariable(outputVariable2);
+
+RuleBlock* ruleBlock = new RuleBlock;
+ruleBlock->setEnabled(true);
+ruleBlock->setName("");
+ruleBlock->setConjunction(NULL);
+ruleBlock->setDisjunction(NULL);
+ruleBlock->setActivation(new Minimum);
+ruleBlock->addRule(fl::Rule::parse("if Ambient is DARK then Power is HIGH", engine));
+ruleBlock->addRule(fl::Rule::parse("if Ambient is MEDIUM then Power is MEDIUM", engine));
+ruleBlock->addRule(fl::Rule::parse("if Ambient is BRIGHT then Power is LOW", engine));
+ruleBlock->addRule(fl::Rule::parse("if Power is LOW then InversePower is HIGH", engine));
+ruleBlock->addRule(fl::Rule::parse("if Power is MEDIUM then InversePower is MEDIUM", engine));
+ruleBlock->addRule(fl::Rule::parse("if Power is HIGH then InversePower is LOW", engine));
+engine->addRuleBlock(ruleBlock);
+
+
+}
diff --git a/examples/mamdani/SimpleDimmerInverse.fcl b/examples/mamdani/SimpleDimmerInverse.fcl
new file mode 100644
index 0000000..337bc2b
--- /dev/null
+++ b/examples/mamdani/SimpleDimmerInverse.fcl
@@ -0,0 +1,49 @@
+FUNCTION_BLOCK simple-dimmer
+
+VAR_INPUT
+ Ambient: REAL;
+END_VAR
+
+VAR_OUTPUT
+ Power: REAL;
+ InversePower: REAL;
+END_VAR
+
+FUZZIFY Ambient
+ RANGE := (0.000 .. 1.000);
+ TERM DARK := Triangle 0.000 0.250 0.500;
+ TERM MEDIUM := Triangle 0.250 0.500 0.750;
+ TERM BRIGHT := Triangle 0.500 0.750 1.000;
+END_FUZZIFY
+
+DEFUZZIFY Power
+ RANGE := (0.000 .. 1.000);
+ TERM LOW := Triangle 0.000 0.250 0.500;
+ TERM MEDIUM := Triangle 0.250 0.500 0.750;
+ TERM HIGH := Triangle 0.500 0.750 1.000;
+ METHOD : COG;
+ ACCU : MAX;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+DEFUZZIFY InversePower
+ RANGE := (0.000 .. 1.000);
+ TERM LOW := Cosine 0.200 0.500;
+ TERM MEDIUM := Cosine 0.500 0.500;
+ TERM HIGH := Cosine 0.800 0.500;
+ METHOD : COG;
+ ACCU : MAX;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+RULEBLOCK
+ ACT : MIN;
+ RULE 1 : if Ambient is DARK then Power is HIGH
+ RULE 2 : if Ambient is MEDIUM then Power is MEDIUM
+ RULE 3 : if Ambient is BRIGHT then Power is LOW
+ RULE 4 : if Power is LOW then InversePower is HIGH
+ RULE 5 : if Power is MEDIUM then InversePower is MEDIUM
+ RULE 6 : if Power is HIGH then InversePower is LOW
+END_RULEBLOCK
+
+END_FUNCTION_BLOCK
diff --git a/examples/mamdani/SimpleDimmerInverse.fld b/examples/mamdani/SimpleDimmerInverse.fld
new file mode 100644
index 0000000..45373fa
--- /dev/null
+++ b/examples/mamdani/SimpleDimmerInverse.fld
@@ -0,0 +1,1026 @@
+#@Engine: simple-dimmer;
+#@InputVariable: Ambient; @OutputVariable: Power; @OutputVariable: InversePower;
+0.00000000 nan nan
+0.00097752 0.75000000 0.22167150
+0.00195503 0.75000000 0.22030661
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diff --git a/examples/mamdani/SimpleDimmerInverse.fll b/examples/mamdani/SimpleDimmerInverse.fll
new file mode 100644
index 0000000..fd6b945
--- /dev/null
+++ b/examples/mamdani/SimpleDimmerInverse.fll
@@ -0,0 +1,40 @@
+Engine: simple-dimmer
+InputVariable: Ambient
+ enabled: true
+ range: 0.000 1.000
+ term: DARK Triangle 0.000 0.250 0.500
+ term: MEDIUM Triangle 0.250 0.500 0.750
+ term: BRIGHT Triangle 0.500 0.750 1.000
+OutputVariable: Power
+ enabled: true
+ range: 0.000 1.000
+ accumulation: Maximum
+ defuzzifier: Centroid 200
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: LOW Triangle 0.000 0.250 0.500
+ term: MEDIUM Triangle 0.250 0.500 0.750
+ term: HIGH Triangle 0.500 0.750 1.000
+OutputVariable: InversePower
+ enabled: true
+ range: 0.000 1.000
+ accumulation: Maximum
+ defuzzifier: Centroid 500
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: LOW Cosine 0.200 0.500
+ term: MEDIUM Cosine 0.500 0.500
+ term: HIGH Cosine 0.800 0.500
+RuleBlock:
+ enabled: true
+ conjunction: none
+ disjunction: none
+ activation: Minimum
+ rule: if Ambient is DARK then Power is HIGH
+ rule: if Ambient is MEDIUM then Power is MEDIUM
+ rule: if Ambient is BRIGHT then Power is LOW
+ rule: if Power is LOW then InversePower is HIGH
+ rule: if Power is MEDIUM then InversePower is MEDIUM
+ rule: if Power is HIGH then InversePower is LOW \ No newline at end of file
diff --git a/examples/mamdani/SimpleDimmerInverse.java b/examples/mamdani/SimpleDimmerInverse.java
new file mode 100644
index 0000000..0bdde89
--- /dev/null
+++ b/examples/mamdani/SimpleDimmerInverse.java
@@ -0,0 +1,71 @@
+import com.fuzzylite.*;
+import com.fuzzylite.defuzzifier.*;
+import com.fuzzylite.factory.*;
+import com.fuzzylite.hedge.*;
+import com.fuzzylite.imex.*;
+import com.fuzzylite.norm.*;
+import com.fuzzylite.norm.s.*;
+import com.fuzzylite.norm.t.*;
+import com.fuzzylite.rule.*;
+import com.fuzzylite.term.*;
+import com.fuzzylite.variable.*;
+
+public class SimpleDimmerInverse{
+public static void main(String[] args){
+Engine engine = new Engine();
+engine.setName("simple-dimmer");
+
+InputVariable inputVariable = new InputVariable();
+inputVariable.setEnabled(true);
+inputVariable.setName("Ambient");
+inputVariable.setRange(0.000, 1.000);
+inputVariable.addTerm(new Triangle("DARK", 0.000, 0.250, 0.500));
+inputVariable.addTerm(new Triangle("MEDIUM", 0.250, 0.500, 0.750));
+inputVariable.addTerm(new Triangle("BRIGHT", 0.500, 0.750, 1.000));
+engine.addInputVariable(inputVariable);
+
+OutputVariable outputVariable1 = new OutputVariable();
+outputVariable1.setEnabled(true);
+outputVariable1.setName("Power");
+outputVariable1.setRange(0.000, 1.000);
+outputVariable1.fuzzyOutput().setAccumulation(new Maximum());
+outputVariable1.setDefuzzifier(new Centroid(200));
+outputVariable1.setDefaultValue(Double.NaN);
+outputVariable1.setLockPreviousOutputValue(false);
+outputVariable1.setLockOutputValueInRange(false);
+outputVariable1.addTerm(new Triangle("LOW", 0.000, 0.250, 0.500));
+outputVariable1.addTerm(new Triangle("MEDIUM", 0.250, 0.500, 0.750));
+outputVariable1.addTerm(new Triangle("HIGH", 0.500, 0.750, 1.000));
+engine.addOutputVariable(outputVariable1);
+
+OutputVariable outputVariable2 = new OutputVariable();
+outputVariable2.setEnabled(true);
+outputVariable2.setName("InversePower");
+outputVariable2.setRange(0.000, 1.000);
+outputVariable2.fuzzyOutput().setAccumulation(new Maximum());
+outputVariable2.setDefuzzifier(new Centroid(500));
+outputVariable2.setDefaultValue(Double.NaN);
+outputVariable2.setLockPreviousOutputValue(false);
+outputVariable2.setLockOutputValueInRange(false);
+outputVariable2.addTerm(new Cosine("LOW", 0.200, 0.500));
+outputVariable2.addTerm(new Cosine("MEDIUM", 0.500, 0.500));
+outputVariable2.addTerm(new Cosine("HIGH", 0.800, 0.500));
+engine.addOutputVariable(outputVariable2);
+
+RuleBlock ruleBlock = new RuleBlock();
+ruleBlock.setEnabled(true);
+ruleBlock.setName("");
+ruleBlock.setConjunction(null);
+ruleBlock.setDisjunction(null);
+ruleBlock.setActivation(new Minimum());
+ruleBlock.addRule(Rule.parse("if Ambient is DARK then Power is HIGH", engine));
+ruleBlock.addRule(Rule.parse("if Ambient is MEDIUM then Power is MEDIUM", engine));
+ruleBlock.addRule(Rule.parse("if Ambient is BRIGHT then Power is LOW", engine));
+ruleBlock.addRule(Rule.parse("if Power is LOW then InversePower is HIGH", engine));
+ruleBlock.addRule(Rule.parse("if Power is MEDIUM then InversePower is MEDIUM", engine));
+ruleBlock.addRule(Rule.parse("if Power is HIGH then InversePower is LOW", engine));
+engine.addRuleBlock(ruleBlock);
+
+
+}
+}
diff --git a/examples/mamdani/octave/COPYING b/examples/mamdani/octave/COPYING
new file mode 100644
index 0000000..94a9ed0
--- /dev/null
+++ b/examples/mamdani/octave/COPYING
@@ -0,0 +1,674 @@
+ GNU GENERAL PUBLIC LICENSE
+ Version 3, 29 June 2007
+
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+to collect a royalty for further conveying from those to whom you convey
+the Program, the only way you could satisfy both those terms and this
+License would be to refrain entirely from conveying the Program.
+
+ 13. Use with the GNU Affero General Public License.
+
+ Notwithstanding any other provision of this License, you have
+permission to link or combine any covered work with a work licensed
+under version 3 of the GNU Affero General Public License into a single
+combined work, and to convey the resulting work. The terms of this
+License will continue to apply to the part which is the covered work,
+but the special requirements of the GNU Affero General Public License,
+section 13, concerning interaction through a network will apply to the
+combination as such.
+
+ 14. Revised Versions of this License.
+
+ The Free Software Foundation may publish revised and/or new versions of
+the GNU General Public License from time to time. Such new versions will
+be similar in spirit to the present version, but may differ in detail to
+address new problems or concerns.
+
+ Each version is given a distinguishing version number. If the
+Program specifies that a certain numbered version of the GNU General
+Public License "or any later version" applies to it, you have the
+option of following the terms and conditions either of that numbered
+version or of any later version published by the Free Software
+Foundation. If the Program does not specify a version number of the
+GNU General Public License, you may choose any version ever published
+by the Free Software Foundation.
+
+ If the Program specifies that a proxy can decide which future
+versions of the GNU General Public License can be used, that proxy's
+public statement of acceptance of a version permanently authorizes you
+to choose that version for the Program.
+
+ Later license versions may give you additional or different
+permissions. However, no additional obligations are imposed on any
+author or copyright holder as a result of your choosing to follow a
+later version.
+
+ 15. Disclaimer of Warranty.
+
+ THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
+APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
+HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
+OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
+THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
+IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
+ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
+
+ 16. Limitation of Liability.
+
+ IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
+WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
+THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
+GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
+USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
+DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
+PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
+EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
+SUCH DAMAGES.
+
+ 17. Interpretation of Sections 15 and 16.
+
+ If the disclaimer of warranty and limitation of liability provided
+above cannot be given local legal effect according to their terms,
+reviewing courts shall apply local law that most closely approximates
+an absolute waiver of all civil liability in connection with the
+Program, unless a warranty or assumption of liability accompanies a
+copy of the Program in return for a fee.
+
+ END OF TERMS AND CONDITIONS
+
+ How to Apply These Terms to Your New Programs
+
+ If you develop a new program, and you want it to be of the greatest
+possible use to the public, the best way to achieve this is to make it
+free software which everyone can redistribute and change under these terms.
+
+ To do so, attach the following notices to the program. It is safest
+to attach them to the start of each source file to most effectively
+state the exclusion of warranty; and each file should have at least
+the "copyright" line and a pointer to where the full notice is found.
+
+ <one line to give the program's name and a brief idea of what it does.>
+ Copyright (C) <year> <name of author>
+
+ This program 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.
+
+ This program 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 this program. If not, see <http://www.gnu.org/licenses/>.
+
+Also add information on how to contact you by electronic and paper mail.
+
+ If the program does terminal interaction, make it output a short
+notice like this when it starts in an interactive mode:
+
+ <program> Copyright (C) <year> <name of author>
+ This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
+ This is free software, and you are welcome to redistribute it
+ under certain conditions; type `show c' for details.
+
+The hypothetical commands `show w' and `show c' should show the appropriate
+parts of the General Public License. Of course, your program's commands
+might be different; for a GUI interface, you would use an "about box".
+
+ You should also get your employer (if you work as a programmer) or school,
+if any, to sign a "copyright disclaimer" for the program, if necessary.
+For more information on this, and how to apply and follow the GNU GPL, see
+<http://www.gnu.org/licenses/>.
+
+ The GNU General Public License does not permit incorporating your program
+into proprietary programs. If your program is a subroutine library, you
+may consider it more useful to permit linking proprietary applications with
+the library. If this is what you want to do, use the GNU Lesser General
+Public License instead of this License. But first, please read
+<http://www.gnu.org/philosophy/why-not-lgpl.html>.
diff --git a/examples/mamdani/octave/DESCRIPTION b/examples/mamdani/octave/DESCRIPTION
new file mode 100644
index 0000000..35df57d
--- /dev/null
+++ b/examples/mamdani/octave/DESCRIPTION
@@ -0,0 +1,12 @@
+Name: fuzzy-logic-toolkit
+Version: 0.4.2
+Date: 2012-10-02
+Author: L. Markowsky <lmarkov@users.sourceforge.net>
+Maintainer: L. Markowsky <lmarkov@users.sourceforge.net>
+Title: Octave Fuzzy Logic Toolkit
+Description: A mostly MATLAB-compatible fuzzy logic toolkit for Octave.
+Depends: octave (>= 3.2.4)
+Autoload: no
+License: GPLv3+
+Url: http://octave.sf.net
+ http://sf.net/projects/octave-fuzzy
diff --git a/examples/mamdani/octave/investment_portfolio.cpp b/examples/mamdani/octave/investment_portfolio.cpp
new file mode 100644
index 0000000..9ccadc9
--- /dev/null
+++ b/examples/mamdani/octave/investment_portfolio.cpp
@@ -0,0 +1,52 @@
+#include <fl/Headers.h>
+
+int main(int argc, char** argv){
+using namespace fl;
+
+Engine* engine = new Engine;
+engine->setName("Investment-Portfolio");
+
+InputVariable* inputVariable1 = new InputVariable;
+inputVariable1->setEnabled(true);
+inputVariable1->setName("Age");
+inputVariable1->setRange(20.000, 100.000);
+inputVariable1->addTerm(new ZShape("Young", 30.000, 90.000));
+inputVariable1->addTerm(new SShape("Old", 30.000, 90.000));
+engine->addInputVariable(inputVariable1);
+
+InputVariable* inputVariable2 = new InputVariable;
+inputVariable2->setEnabled(true);
+inputVariable2->setName("RiskTolerance");
+inputVariable2->setRange(0.000, 10.000);
+inputVariable2->addTerm(new ZShape("Low", 2.000, 8.000));
+inputVariable2->addTerm(new SShape("High", 2.000, 8.000));
+engine->addInputVariable(inputVariable2);
+
+OutputVariable* outputVariable = new OutputVariable;
+outputVariable->setEnabled(true);
+outputVariable->setName("PercentageInStocks");
+outputVariable->setRange(0.000, 100.000);
+outputVariable->fuzzyOutput()->setAccumulation(new EinsteinSum);
+outputVariable->setDefuzzifier(new Centroid(200));
+outputVariable->setDefaultValue(fl::nan);
+outputVariable->setLockPreviousOutputValue(false);
+outputVariable->setLockOutputValueInRange(false);
+outputVariable->addTerm(new Gaussian("AboutFifteen", 15.000, 10.000));
+outputVariable->addTerm(new Gaussian("AboutFifty", 50.000, 10.000));
+outputVariable->addTerm(new Gaussian("AboutEightyFive", 85.000, 10.000));
+engine->addOutputVariable(outputVariable);
+
+RuleBlock* ruleBlock = new RuleBlock;
+ruleBlock->setEnabled(true);
+ruleBlock->setName("");
+ruleBlock->setConjunction(new EinsteinProduct);
+ruleBlock->setDisjunction(new EinsteinSum);
+ruleBlock->setActivation(new EinsteinProduct);
+ruleBlock->addRule(fl::Rule::parse("if Age is Young or RiskTolerance is High then PercentageInStocks is AboutEightyFive", engine));
+ruleBlock->addRule(fl::Rule::parse("if Age is Old or RiskTolerance is Low then PercentageInStocks is AboutFifteen", engine));
+ruleBlock->addRule(fl::Rule::parse("if Age is not extremely Old and RiskTolerance is not extremely Low then PercentageInStocks is AboutFifty with 0.500", engine));
+ruleBlock->addRule(fl::Rule::parse("if Age is not extremely Young and RiskTolerance is not extremely High then PercentageInStocks is AboutFifty with 0.500", engine));
+engine->addRuleBlock(ruleBlock);
+
+
+}
diff --git a/examples/mamdani/octave/investment_portfolio.fcl b/examples/mamdani/octave/investment_portfolio.fcl
new file mode 100644
index 0000000..590ab3b
--- /dev/null
+++ b/examples/mamdani/octave/investment_portfolio.fcl
@@ -0,0 +1,44 @@
+FUNCTION_BLOCK Investment-Portfolio
+
+VAR_INPUT
+ Age: REAL;
+ RiskTolerance: REAL;
+END_VAR
+
+VAR_OUTPUT
+ PercentageInStocks: REAL;
+END_VAR
+
+FUZZIFY Age
+ RANGE := (20.000 .. 100.000);
+ TERM Young := ZShape 30.000 90.000;
+ TERM Old := SShape 30.000 90.000;
+END_FUZZIFY
+
+FUZZIFY RiskTolerance
+ RANGE := (0.000 .. 10.000);
+ TERM Low := ZShape 2.000 8.000;
+ TERM High := SShape 2.000 8.000;
+END_FUZZIFY
+
+DEFUZZIFY PercentageInStocks
+ RANGE := (0.000 .. 100.000);
+ TERM AboutFifteen := Gaussian 15.000 10.000;
+ TERM AboutFifty := Gaussian 50.000 10.000;
+ TERM AboutEightyFive := Gaussian 85.000 10.000;
+ METHOD : COG;
+ ACCU : ESUM;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+RULEBLOCK
+ AND : EPROD;
+ OR : ESUM;
+ ACT : EPROD;
+ RULE 1 : if Age is Young or RiskTolerance is High then PercentageInStocks is AboutEightyFive
+ RULE 2 : if Age is Old or RiskTolerance is Low then PercentageInStocks is AboutFifteen
+ RULE 3 : if Age is not extremely Old and RiskTolerance is not extremely Low then PercentageInStocks is AboutFifty with 0.500
+ RULE 4 : if Age is not extremely Young and RiskTolerance is not extremely High then PercentageInStocks is AboutFifty with 0.500
+END_RULEBLOCK
+
+END_FUNCTION_BLOCK
diff --git a/examples/mamdani/octave/investment_portfolio.fis b/examples/mamdani/octave/investment_portfolio.fis
new file mode 100644
index 0000000..311e728
--- /dev/null
+++ b/examples/mamdani/octave/investment_portfolio.fis
@@ -0,0 +1,39 @@
+[System]
+Name='Investment-Portfolio'
+Type='mamdani'
+NumInputs=2
+NumOutputs=1
+NumRules=4
+AndMethod='einstein_product'
+OrMethod='einstein_sum'
+ImpMethod='einstein_product'
+AggMethod='einstein_sum'
+DefuzzMethod='centroid'
+
+[Input1]
+Name='Age'
+Range=[20.000 100.000]
+NumMFs=2
+MF1='Young':'zmf',[30.000 90.000]
+MF2='Old':'smf',[30.000 90.000]
+
+[Input2]
+Name='RiskTolerance'
+Range=[0.000 10.000]
+NumMFs=2
+MF1='Low':'zmf',[2.000 8.000]
+MF2='High':'smf',[2.000 8.000]
+
+[Output1]
+Name='PercentageInStocks'
+Range=[0.000 100.000]
+NumMFs=3
+MF1='AboutFifteen':'gaussmf',[10.000 15.000]
+MF2='AboutFifty':'gaussmf',[10.000 50.000]
+MF3='AboutEightyFive':'gaussmf',[10.000 85.000]
+
+[Rules]
+1.000 2.000 , 3.000 (1.000) : 2
+2.000 1.000 , 1.000 (1.000) : 2
+-2.300 -1.300 , 2.000 (0.500) : 1
+-1.300 -2.300 , 2.000 (0.500) : 1
diff --git a/examples/mamdani/octave/investment_portfolio.fld b/examples/mamdani/octave/investment_portfolio.fld
new file mode 100644
index 0000000..648b0be
--- /dev/null
+++ b/examples/mamdani/octave/investment_portfolio.fld
@@ -0,0 +1,1026 @@
+#@Engine: Investment-Portfolio;
+#@InputVariable: Age; @InputVariable: RiskTolerance; @OutputVariable: PercentageInStocks;
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diff --git a/examples/mamdani/octave/investment_portfolio.fll b/examples/mamdani/octave/investment_portfolio.fll
new file mode 100644
index 0000000..4bb14e1
--- /dev/null
+++ b/examples/mamdani/octave/investment_portfolio.fll
@@ -0,0 +1,31 @@
+Engine: Investment-Portfolio
+InputVariable: Age
+ enabled: true
+ range: 20.000 100.000
+ term: Young ZShape 30.000 90.000
+ term: Old SShape 30.000 90.000
+InputVariable: RiskTolerance
+ enabled: true
+ range: 0.000 10.000
+ term: Low ZShape 2.000 8.000
+ term: High SShape 2.000 8.000
+OutputVariable: PercentageInStocks
+ enabled: true
+ range: 0.000 100.000
+ accumulation: EinsteinSum
+ defuzzifier: Centroid 200
+ default: nan
+ lock-previous: false
+ lock-range: false
+ term: AboutFifteen Gaussian 15.000 10.000
+ term: AboutFifty Gaussian 50.000 10.000
+ term: AboutEightyFive Gaussian 85.000 10.000
+RuleBlock:
+ enabled: true
+ conjunction: EinsteinProduct
+ disjunction: EinsteinSum
+ activation: EinsteinProduct
+ rule: if Age is Young or RiskTolerance is High then PercentageInStocks is AboutEightyFive
+ rule: if Age is Old or RiskTolerance is Low then PercentageInStocks is AboutFifteen
+ rule: if Age is not extremely Old and RiskTolerance is not extremely Low then PercentageInStocks is AboutFifty with 0.500
+ rule: if Age is not extremely Young and RiskTolerance is not extremely High then PercentageInStocks is AboutFifty with 0.500 \ No newline at end of file
diff --git a/examples/mamdani/octave/investment_portfolio.java b/examples/mamdani/octave/investment_portfolio.java
new file mode 100644
index 0000000..09084f1
--- /dev/null
+++ b/examples/mamdani/octave/investment_portfolio.java
@@ -0,0 +1,62 @@
+import com.fuzzylite.*;
+import com.fuzzylite.defuzzifier.*;
+import com.fuzzylite.factory.*;
+import com.fuzzylite.hedge.*;
+import com.fuzzylite.imex.*;
+import com.fuzzylite.norm.*;
+import com.fuzzylite.norm.s.*;
+import com.fuzzylite.norm.t.*;
+import com.fuzzylite.rule.*;
+import com.fuzzylite.term.*;
+import com.fuzzylite.variable.*;
+
+public class investment_portfolio{
+public static void main(String[] args){
+Engine engine = new Engine();
+engine.setName("Investment-Portfolio");
+
+InputVariable inputVariable1 = new InputVariable();
+inputVariable1.setEnabled(true);
+inputVariable1.setName("Age");
+inputVariable1.setRange(20.000, 100.000);
+inputVariable1.addTerm(new ZShape("Young", 30.000, 90.000));
+inputVariable1.addTerm(new SShape("Old", 30.000, 90.000));
+engine.addInputVariable(inputVariable1);
+
+InputVariable inputVariable2 = new InputVariable();
+inputVariable2.setEnabled(true);
+inputVariable2.setName("RiskTolerance");
+inputVariable2.setRange(0.000, 10.000);
+inputVariable2.addTerm(new ZShape("Low", 2.000, 8.000));
+inputVariable2.addTerm(new SShape("High", 2.000, 8.000));
+engine.addInputVariable(inputVariable2);
+
+OutputVariable outputVariable = new OutputVariable();
+outputVariable.setEnabled(true);
+outputVariable.setName("PercentageInStocks");
+outputVariable.setRange(0.000, 100.000);
+outputVariable.fuzzyOutput().setAccumulation(new EinsteinSum());
+outputVariable.setDefuzzifier(new Centroid(200));
+outputVariable.setDefaultValue(Double.NaN);
+outputVariable.setLockPreviousOutputValue(false);
+outputVariable.setLockOutputValueInRange(false);
+outputVariable.addTerm(new Gaussian("AboutFifteen", 15.000, 10.000));
+outputVariable.addTerm(new Gaussian("AboutFifty", 50.000, 10.000));
+outputVariable.addTerm(new Gaussian("AboutEightyFive", 85.000, 10.000));
+engine.addOutputVariable(outputVariable);
+
+RuleBlock ruleBlock = new RuleBlock();
+ruleBlock.setEnabled(true);
+ruleBlock.setName("");
+ruleBlock.setConjunction(new EinsteinProduct());
+ruleBlock.setDisjunction(new EinsteinSum());
+ruleBlock.setActivation(new EinsteinProduct());
+ruleBlock.addRule(Rule.parse("if Age is Young or RiskTolerance is High then PercentageInStocks is AboutEightyFive", engine));
+ruleBlock.addRule(Rule.parse("if Age is Old or RiskTolerance is Low then PercentageInStocks is AboutFifteen", engine));
+ruleBlock.addRule(Rule.parse("if Age is not extremely Old and RiskTolerance is not extremely Low then PercentageInStocks is AboutFifty with 0.500", engine));
+ruleBlock.addRule(Rule.parse("if Age is not extremely Young and RiskTolerance is not extremely High then PercentageInStocks is AboutFifty with 0.500", engine));
+engine.addRuleBlock(ruleBlock);
+
+
+}
+}
diff --git a/examples/mamdani/octave/mamdani_tip_calculator.cpp b/examples/mamdani/octave/mamdani_tip_calculator.cpp
new file mode 100644
index 0000000..cd57bf7
--- /dev/null
+++ b/examples/mamdani/octave/mamdani_tip_calculator.cpp
@@ -0,0 +1,66 @@
+#include <fl/Headers.h>
+
+int main(int argc, char** argv){
+using namespace fl;
+
+Engine* engine = new Engine;
+engine->setName("Mamdani-Tip-Calculator");
+
+InputVariable* inputVariable1 = new InputVariable;
+inputVariable1->setEnabled(true);
+inputVariable1->setName("FoodQuality");
+inputVariable1->setRange(1.000, 10.000);
+inputVariable1->addTerm(new Trapezoid("Bad", 0.000, 1.000, 3.000, 7.000));
+inputVariable1->addTerm(new Trapezoid("Good", 3.000, 7.000, 10.000, 11.000));
+engine->addInputVariable(inputVariable1);
+
+InputVariable* inputVariable2 = new InputVariable;
+inputVariable2->setEnabled(true);
+inputVariable2->setName("Service");
+inputVariable2->setRange(1.000, 10.000);
+inputVariable2->addTerm(new Trapezoid("Bad", 0.000, 1.000, 3.000, 7.000));
+inputVariable2->addTerm(new Trapezoid("Good", 3.000, 7.000, 10.000, 11.000));
+engine->addInputVariable(inputVariable2);
+
+OutputVariable* outputVariable1 = new OutputVariable;
+outputVariable1->setEnabled(true);
+outputVariable1->setName("Tip");
+outputVariable1->setRange(0.000, 30.000);
+outputVariable1->fuzzyOutput()->setAccumulation(new AlgebraicSum);
+outputVariable1->setDefuzzifier(new Centroid(200));
+outputVariable1->setDefaultValue(fl::nan);
+outputVariable1->setLockPreviousOutputValue(false);
+outputVariable1->setLockOutputValueInRange(false);
+outputVariable1->addTerm(new Gaussian("AboutTenPercent", 10.000, 2.000));
+outputVariable1->addTerm(new Gaussian("AboutFifteenPercent", 15.000, 2.000));
+outputVariable1->addTerm(new Gaussian("AboutTwentyPercent", 20.000, 2.000));
+engine->addOutputVariable(outputVariable1);
+
+OutputVariable* outputVariable2 = new OutputVariable;
+outputVariable2->setEnabled(true);
+outputVariable2->setName("CheckPlusTip");
+outputVariable2->setRange(1.000, 1.300);
+outputVariable2->fuzzyOutput()->setAccumulation(new AlgebraicSum);
+outputVariable2->setDefuzzifier(new Centroid(200));
+outputVariable2->setDefaultValue(fl::nan);
+outputVariable2->setLockPreviousOutputValue(false);
+outputVariable2->setLockOutputValueInRange(false);
+outputVariable2->addTerm(new Gaussian("PlusAboutTenPercent", 1.100, 0.020));
+outputVariable2->addTerm(new Gaussian("PlusAboutFifteenPercent", 1.150, 0.020));
+outputVariable2->addTerm(new Gaussian("PlusAboutTwentyPercent", 1.200, 0.020));
+engine->addOutputVariable(outputVariable2);
+
+RuleBlock* ruleBlock = new RuleBlock;
+ruleBlock->setEnabled(true);
+ruleBlock->setName("");
+ruleBlock->setConjunction(new AlgebraicProduct);
+ruleBlock->setDisjunction(new Maximum);
+ruleBlock->setActivation(new Minimum);
+ruleBlock->addRule(fl::Rule::parse("if FoodQuality is Bad and Service is Bad then Tip is AboutTenPercent and CheckPlusTip is PlusAboutTenPercent", engine));
+ruleBlock->addRule(fl::Rule::parse("if FoodQuality is Bad and Service is Good then Tip is AboutFifteenPercent and CheckPlusTip is PlusAboutFifteenPercent", engine));
+ruleBlock->addRule(fl::Rule::parse("if FoodQuality is Good and Service is Bad then Tip is AboutFifteenPercent and CheckPlusTip is PlusAboutFifteenPercent", engine));
+ruleBlock->addRule(fl::Rule::parse("if FoodQuality is Good and Service is Good then Tip is AboutTwentyPercent and CheckPlusTip is PlusAboutTwentyPercent", engine));
+engine->addRuleBlock(ruleBlock);
+
+
+}
diff --git a/examples/mamdani/octave/mamdani_tip_calculator.fcl b/examples/mamdani/octave/mamdani_tip_calculator.fcl
new file mode 100644
index 0000000..3ea903a
--- /dev/null
+++ b/examples/mamdani/octave/mamdani_tip_calculator.fcl
@@ -0,0 +1,55 @@
+FUNCTION_BLOCK Mamdani-Tip-Calculator
+
+VAR_INPUT
+ FoodQuality: REAL;
+ Service: REAL;
+END_VAR
+
+VAR_OUTPUT
+ Tip: REAL;
+ CheckPlusTip: REAL;
+END_VAR
+
+FUZZIFY FoodQuality
+ RANGE := (1.000 .. 10.000);
+ TERM Bad := Trapezoid 0.000 1.000 3.000 7.000;
+ TERM Good := Trapezoid 3.000 7.000 10.000 11.000;
+END_FUZZIFY
+
+FUZZIFY Service
+ RANGE := (1.000 .. 10.000);
+ TERM Bad := Trapezoid 0.000 1.000 3.000 7.000;
+ TERM Good := Trapezoid 3.000 7.000 10.000 11.000;
+END_FUZZIFY
+
+DEFUZZIFY Tip
+ RANGE := (0.000 .. 30.000);
+ TERM AboutTenPercent := Gaussian 10.000 2.000;
+ TERM AboutFifteenPercent := Gaussian 15.000 2.000;
+ TERM AboutTwentyPercent := Gaussian 20.000 2.000;
+ METHOD : COG;
+ ACCU : ASUM;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+DEFUZZIFY CheckPlusTip
+ RANGE := (1.000 .. 1.300);
+ TERM PlusAboutTenPercent := Gaussian 1.100 0.020;
+ TERM PlusAboutFifteenPercent := Gaussian 1.150 0.020;
+ TERM PlusAboutTwentyPercent := Gaussian 1.200 0.020;
+ METHOD : COG;
+ ACCU : ASUM;
+ DEFAULT := nan;
+END_DEFUZZIFY
+
+RULEBLOCK
+ AND : PROD;
+ OR : MAX;
+ ACT : MIN;
+ RULE 1 : if FoodQuality is Bad and Service is Bad then Tip is AboutTenPercent and CheckPlusTip is PlusAboutTenPercent
+ RULE 2 : if FoodQuality is Bad and Service is Good then Tip is AboutFifteenPercent and CheckPlusTip is PlusAboutFifteenPercent
+ RULE 3 : if FoodQuality is Good and Service is Bad then Tip is AboutFifteenPercent and CheckPlusTip is PlusAboutFifteenPercent
+ RULE 4 : if FoodQuality is Good and Service is Good then Tip is AboutTwentyPercent and CheckPlusTip is PlusAboutTwentyPercent
+END_RULEBLOCK
+
+END_FUNCTION_BLOCK
diff --git a/examples/mamdani/octave/mamdani_tip_calculator.fis b/examples/mamdani/octave/mamdani_tip_calculator.fis
new file mode 100644
index 0000000..42cf1df
--- /dev/null
+++ b/examples/mamdani/octave/mamdani_tip_calculator.fis
@@ -0,0 +1,47 @@
+[System]
+Name='Mamdani-Tip-Calculator'
+Type='mamdani'
+NumInputs=2
+NumOutputs=2
+NumRules=4
+AndMethod='prod'
+OrMethod='max'
+ImpMethod='min'
+AggMethod='sum'
+DefuzzMethod='centroid'
+
+[Input1]
+Name='FoodQuality'
+Range=[1.000 10.000]
+NumMFs=2
+MF1='Bad':'trapmf',[0.000 1.000 3.000 7.000]
+MF2='Good':'trapmf',[3.000 7.000 10.000 11.000]
+
+[Input2]
+Name='Service'
+Range=[1.000 10.000]
+NumMFs=2
+MF1='Bad':'trapmf',[0.000 1.000 3.000 7.000]
+MF2='Good':'trapmf',[3.000 7.000 10.000 11.000]
+
+[Output1]
+Name='Tip'
+Range=[0.000 30.000]
+NumMFs=3
+MF1='AboutTenPercent':'gaussmf',[2.000 10.000]
+MF2='AboutFifteenPercent':'gaussmf',[2.000 15.000]
+MF3='AboutTwentyPercent':'gaussmf',[2.000 20.000]
+
+[Output2]
+Name='CheckPlusTip'
+Range=[1.000 1.300]
+NumMFs=3
+MF1='PlusAboutTenPercent':'gaussmf',[0.020 1.100]
+MF2='PlusAboutFifteenPercent':'gaussmf',[0.020 1.150]
+MF3='PlusAboutTwentyPercent':'gaussmf',[0.020 1.200]
+
+[Rules]
+1.000 1.000 , 1.000 1.000 (1.000) : 1
+1.000 2.000 , 2.000 2.000 (1.000) : 1
+2.000 1.000 , 2.000 2.000 (1.000) : 1
+2.000 2.000 , 3.000 3.000 (1.000) : 1
diff --git a/examples/mamdani/octave/mamdani_tip_calculator.fld b/examples/mamdani/octave/mamdani_tip_calculator.fld
new file mode 100644
index 0000000..9d54109
--- /dev/null
+++ b/examples/mamdani/octave/mamdani_tip_calculator.fld
@@ -0,0 +1,1026 @@
+#@Engine: Mamdani-Tip-Calculator;
+#@InputVariable: FoodQuality; @InputVariable: Service; @OutputVariable: Tip; @OutputVariable: CheckPlusTip;
+1.00000000 1.00000000 10.00000296 1.10000003
+1.00000000 1.29032258 10.00000296 1.10000003
+1.00000000 1.58064516 10.00000296 1.10000003
+1.00000000 1.87096774 10.00000296 1.10000003
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+1.00000000 2.74193548 10.00000296 1.10000003
+1.00000000 3.03225806 10.10361204 1.10103612
+1.00000000 3.32258065 10.70846739 1.10708467
+1.00000000 3.61290323 11.13394556 1.11133946
+1.00000000 3.90322581 11.47924881 1.11479249
+1.00000000 4.19354839 11.77837052 1.11778371
+1.00000000 4.48387097 12.05010492 1.12050105
+1.00000000 4.77419355 12.30576276 1.12305763
+1.00000000 5.06451613 12.55517544 1.12555175
+1.00000000 5.35483871 12.80665986 1.12806660
+1.00000000 5.64516129 13.06809323 1.13068093
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+1.00000000 6.22580645 13.66657067 1.13666571
+1.00000000 6.51612903 14.04212491 1.14042125
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