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installation-osx-0.9.9.html
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<!DOCTYPE html>
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<head>
<meta charset="utf-8">
<meta http-equiv="X-UA-Compatible" content="IE=edge">
<meta name="viewport" content="width=device-width, initial-scale=1">
<meta name="description" content="The Topology ToolKit">
<meta name="author" content="The Topology ToolKit">
<meta name="keywords" content="TTK, Topology ToolKit, Topological Data
Analysis, Visualization, Reeb graph, Reeb Space, Morse-Smale complex, contour
tree, persistence diagram, persistence curve, continuous scatterplot, fiber
surface, contour forests, jacobi set, mandatory critical points, topological
simplification, VTK, ParaView, Python" />
<title>TTK - the Topology ToolKit - Topological Data Analysis and
Visualization</title>
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<h1>Topology ToolKit</h1>
<hr class="small">
<span class="subheading">Installation</span>
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Please find below detailed instructions for the
installation of TTK under MacOS Catalina.
<p>
<h3>1. Downloading the packages</h3>
Please checkout and review our <a href="downloads.html" target="new">download page</a> and download the following packages:<br>
· <code>ttk-paraview.pkg</code><br>
· <code>ttk-0.9.9.pkg</code><br>
<p>
<h3>2. Installing dependencies with Homebrew</h3>
To install TTK's dependencies, we recommand to MacOS users to use the
<a href=https://brew.sh/" target="new">
Homebrew package manager</a>. Please checkout
<a href=https://docs.brew.sh/Installation target="new">
Homebrew's installation page</a> to download and install Homebrew.<br><br>
<!-- When installing Anaconda, please make sure -->
<!-- to perform a system wide installation (<code>All Users (requires admin privileges)</code>) and -->
<!--to check the box <code>Add Python to Environment variables</code> from the installation wizard. If you have already installed Anaconda previously and you do not remember if you checked that box, you will need to make sure to go through our section
<a href="#post-installation">Post-installation</a> at the bottom of this page.<br><br>
We will assume in the remainder that you installed Anaconda on your system successfully, under the directory <code>C:\ProgramData\Anaconda3</code>.
If you have already installed Anaconda previously and you do not remember in which directory you installed it,
you will need to make sure to go through our section
<a href="#post-installation">Post-installation</a> at the bottom of this page.
<br><br>-->
We will assume in the remainder that you installed Homebrew on your system successfully, under default directories.<br><br>
To install TTK's and ParaView's dependencies, open a terminal and enter
the following commands (omit the <code>$</code> character):<br><br>
<code>$ brew cask install xquartz </code><br>
<code>$ brew install wget libomp mesa glew qt</code><br>
<code>$ brew install boost graphviz embree</code><br><br>
Optionally, the following optional dependency can be installed with <code>pip</code> (if present on the system):<br>
<code>$ python -m pip install scikit-learn</code><br>
<p>
<h3>2. ParaView installation</h3>
To install TTK's version of ParaView, open a terminal and enter
the following command (omit the <code>$</code> character):<br><br>
<code>$ sudo installer -pkg ttk-paraview.pkg -target /</code><br>
<p>
<h3>3. TTK installation</h3>
To install TTK, open a terminal and enter
the following command (omit the <code>$</code> character):<br><br>
<code>$ sudo installer -pkg ttk.pkg -target /</code><br>
<p>
<h3>4. Setting up environment variables</h3>
At this point, for an optimal user experience, we recommend users to define the following environment variables (in particular, when using TTK with python).
This can be done by entering the following commands (omit the <code>$</code> character):<br><br>
<code>$ echo "export CMAKE_PREFIX_PATH=${CMAKE_PREFIX_PATH}:$(brew --prefix qt)/lib/cmake:/Applications/lib/cmake/" >> ~/.zshrc</code><br>
<code>$ echo "export DYLD_LIBRARY_PATH=${DYLD_LIBRARY_PATH}:/Applications/lib/" >> ~/.zshrc</code><br>
<code>$ echo "export PATH=${PATH}:/Applications/bin/" >> ~/.zshrc</code><br>
<code>$ echo "export PV_PLUGIN_PATH=${PV_PLUGIN_PATH}:/Applications/bin/plugins/"
>> ~/.zshrc</code><br>
<code>$ echo "export PYTHONPATH=${PYTHONPATH}:/Applications/lib/python3.8/site-packages/" >> ~/.zshrc</code><br>
<code>$ source ~/.zshrc</code><br><br>
<!-- Note that if you decided to change the default installation path of ParaView and TTK, you will need in the above commands to replace <code>/usr/local</code> by your custom installation path. -->
</p>
<!--<p>
<h3><a name="post-installation"></a>4. Post-installation custom paths</h3>
If you have installed Anaconda, ParaView and TTK into their default directories, you can jump directly to the next section.<br><br>
If you have not installed Anaconda, ParaView or TTK into their default directories, you will need to edit a few environment variables (<code>Control Panel</code>, <code>Edit environment variables for your account</code>).
First, add the following environment variables:
<br>
<code> · CONDA_DIR=[Anaconda custom installation directory]</code><br>
<code> · PV_DIR=[ParaView custom installation directory]</code><br>
<code> · TTK_DIR=[TTK custom installation directory]</code><br><br>
Next, append the following strings to the content of the following environment variables:
<br>
· Add <code>%TTK_DIR%\lib\cmake;%PV_DIR%\lib\cmake</code> to the variable <code>CMAKE_PREFIX_PATH</code><br>
· Add <code>%TTK_DIR%\bin;%PV_DIR%\bin</code> to the variable <code>PATH</code><br>
· Add <code>%TTK_DIR%\bin\plugins</code> to the variable <code>PV_PLUGIN_PATH</code><br>
· Add <code>%CONDA_DIR%\Lib;%TTK_DIR%\bin\Lib\site-packages;%PV_DIR%\bin\Lib\site-packages</code> to the variable <code>PYTHONPATH</code><br>
· Add <code>%CONDA_DIR%\Library\plugins</code> to the variable <code>QT_PLUGIN_PATH</code><br>
-->
<p>
<h3>5. Checking your TTK installation</h3>
If you applied all the above steps successfully, you can now open a terminal
and type
the following command to load your
TTK-patched ParaView:<br><br>
<code>$ paraview</code><br><br>
<!--MacOS users will need to launch the built ParaView
binary from the ParaView source tree and load all the TTK plugins with the
<a href="http://www.paraview.org/Wiki/ParaView/Plugin_HowTo#Using_Plugins"
target="new">ParaView Plugin Manager</a> before continuing.<br>-->
At this point, you should see the following TTK startup screen:<br> <br>
<a href="img/ttkStartup.jpg" target="new">
<img align='center'width="95%" src="img/ttkStartup.jpg">
</a>
<br><br>
On this screen, clicking on the "Example Visualizations" link should bring you
to the TTK built-in example screen:
<br> <br>
<a href="img/ttkExamples.jpg" target="new">
<img align='center'width="95%" src="img/ttkExamples.jpg">
</a>
<br><br>
From there, clicking on one of the three buttons should generate one of the
following three visualizations:<br><br>
<a href="img/gallery/builtinExample1.jpg" target="new">
<img align='center'width="95%" src="img/gallery/builtinExample1.jpg" >
</a>
<br><br>
<a href="img/gallery/builtinExample2.jpg" target="new">
<img align='center'width="95%" src="img/gallery/builtinExample2.jpg" >
</a>
<br><br>
<a href="img/gallery/builtinExample3.jpg" target="new">
<img align='center'width="95%" src="img/gallery/builtinExample3.jpg" >
</a>
<br><br>
If this is the case, congratulations!<br> You have just successfully installed
TTK on your system!</p>
<p>
Now, please visit our <a href="tutorials.html">tutorial</a> page to watch video
tutorials showing how to use TTK with ParaView with concrete examples and how to
use it from your own Python or C++ code or how to extend TTK by writing up your
own module!
</p>
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Updated on December 17, 2020.</p>
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