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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" />
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<h1>Topology ToolKit</h1>
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<span class="subheading">Windows Installation</span>
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Please find below detailed instructions for the installation of TTK
from sources, under Windows.<br><br>
TTK is also supported on other operating systems:<br>
·
<a href="installation-linux-sources.html">
Linux installation instructions</a> (default target platform);
<br>
·
<a href="installation-osx-sources.html">
MacOS installation instructions</a>.<br><br>
These specific notes describe the installation procedure for a Windows
10 operating system with Visual Studio 2019 (but the process should be
very similar for other versions).<br><br>
If you are an advanced user and you do not wish to install ParaView
(TTK's main user interface), you still have the possibility to install
TTK without ParaView and VTK support (although we highly recommend to
activate it).<br> In that case, simply download TTK as described in
section 1, install the dependencies as detailed in section 2 and
finally, directly jump to section 6 (<i>"Installing TTK"</i>). <br>
Examples showing how to use TTK libraries from your own C++ code can
be found
<a target="new"
href="https://github.com/topology-tool-kit/ttk/tree/dev/examples/c%2B%2B"
>on this page</a>.<br>
<br>
<b>Most users will want to activate TTK's ParaView support.</b>
<br><br>
The remainder of these notes describe the installation of the
<a href="downloads.html" target="new">
version 1.2.0 of
TTK</a> along with the
version 5.11.1 of ParaView. Other versions of either software packages
may require slight variations in the installation procedure.
For earlier versions of both software packages, you may want to check out
previous versions of our installation notes for Windows: <br>
·
<a href="installation-windows-sources-1.1.0.html">TTK 1.1.0 with ParaView 5.10.1</a>.<br>
·
<a href="installation-windows-sources-1.0.0.html">TTK 1.0.0 with ParaView 5.9.1</a>.<br>
·
<a href="installation-windows-sources-0.9.9.html">TTK 0.9.9 with ParaView 5.6.1</a>.<br>
<!--
·
<a href="installation-windows-0.9.7.html">TTK 0.9.7 with ParaView 5.6.0</a>.<br>-->
<!-- ·
<a href="installation-windows-0.9.6.html">TTK 0.9.6 with ParaView
5.5.2</a>.<br>-->
(...)
<br><br>
<p><h3>1. Installing the dependencies</h3>
<ul>
<li> <a href="https://cmake.org/download" target="new">CMake</a> (tested
with 3.10.0) </li>
<li> <a href="https://www.anaconda.com/products/individual"
target="new">Anaconda3</a></li>
<li> <a href="https://visualstudio.microsoft.com/fr/thank-you-downloading-visual-studio/?sku=Community&rel=16"
target="new">Visual Studio Community</a> (tested with the 2019
edition)</li>
</ul>
Note that Visual Studio Community must be installed with the Destop
Development in C/C++ Tools.
<br>
Please ensure that you have no other Python installation already in
your system and check the "Add Anaconda to the Windows PATH
Environment variable" box during the Anaconda installation
process. This will help TTK to find all its dependencies at build and
run-time.
<br>
Once all is installed, please open an Anaconda Prompt and type
<pre><code>
conda install -c anaconda "qt>=5.12" boost
</code></pre> to install the required Boost and Qt dependencies.
You'll need to add the <code>QT_PLUGIN_PATH</code> environment
variable: make it point to the <code>\Library\plugins</code>
subdirectory of your Anaconda installation. In a similar manner,
the <code>PYTHONPATH</code> environment variable must also point to
the <code>Lib</code> Anaconda installation subdirectory.
</p>
<h4>Optional dependencies</h4>
In order to enjoy the complete set of TTK features, we also recommend to
install the following, <i>optional</i> dependencies:<br>
·
<a target="new"
href="http://eigen.tuxfamily.org/">eigen</a> (for scalar field design, version 3.3.7 or later).<br>
·
<a target="new"
href="https://www.graphviz.org/">graphviz</a> (for graph
drawing features, version 2.40.1 or later). <br>
·
<a target="new"
href="https://scikit-learn.org/stable/index.html">scikit-learn</a> for Python3 (for data
reduction features, version 0.19.0 or later).<br>
·
<a href="https://github.com/yixuan/spectra/archive/v0.8.1.tar.gz" target="new">Spectra</a>
(for the computation of the eigenfunctions of the Laplace-Beltrami operator, version 0.8.1 or later).
<br>
·
<a href="https://www.sqlite.org/" target="new">sqlite</a> (for cinema query
features, version 3.24.0 or later);<br>
·
<a href="https://github.com/LLNL/zfp" target="new">ZFP</a>
(for advanced compression support, version 0.5.4 or later).<br>
·
<a href="https://zlib.net/" target="new">
zlib</a> (for further compression support, version 1.2.11 or later)<br>
<br>
All these dependencies (except for graphviz) can be easily installed
with Anaconda. Open an Anaconda Prompt and use this command:
<pre><code>
conda install -c conda-forge eigen spectralib zfp scikit-learn openmp graphviz websocketpp
</code></pre>
<p><h3>2. Download TTK</h3>
Download TTK's source code archive <code>ttk-1.2.0.zip</code> from the
<a target="new" href="downloads.html">download page</a> and decompress
it.
</p>
<p><h3>3. Download ParaView</h3>
Download ParaView's source code archive <code>ttk-paraview-5.11.1.zip</code> from
<a target="new"
href="https://github.com/topology-tool-kit/ttk-paraview/archive/v5.11.1.zip">GitHub</a>
and decompress it.
</p>
<p><h3>4. Installing ParaView</h3>
Open a "x64 Native Tools Command Prompt for VS 2019" in the Windows
Startup menu and run the following commands to configure ParaView with
CMake:
<br>
<pre><code>
cd ttk-paraview-5.11.1
mkdir build
cd build
cmake-gui ..
</code></pre>
Click on the "Configure" button and select the appropriate generator
(in these notes, "Visual Studio 16 2019 Win64" for x64-bit
applications). Click on the "Generate" button. Next, click on the
"Open project" button.
<br>
Under Visual Studio, make sure to select the target named
<code>ALL_BUILD</code> and change the global configuration from
"Debug" to "Release".
<br>
Build it and close Visual Studio. Re-open it with administrator rights
and select the <code>INSTALL</code> target to install the binaries.
<br><br>
Change the <code>PATH</code> environment variable to
include:
<code>C:\Program Files (x86)\ParaView\bin</code>,
<br>
<code>CMAKE_PREFIX_PATH</code> to include
<code>C:\Program Files (x86)\ParaView\lib\cmake</code>,
<br>
and <code>PYTHONPATH</code> to include
<code>C:\Program Files (x86)\ParaView\bin\Lib\site-packages</code>,
</p>
<p><h3>5. Installing TTK</h3>
Open a new "x64 Native Tools Command Prompt for VS 2019" in the
Windows Startup menu and run the following commands to configure TTK
with CMake:
<br><br>
Run the following commands to configure TTK with CMake:
<br>
<pre><code>
cd ttk-1.2.0
mkdir build
cd build
cmake-gui ..
</code></pre>
<br>
Click on the "Configure" button and select the appropriate generator
(in these notes, "Visual Studio 16 2019 Win64" for x64-bit applications).
If you are an advanced user and you do not wish to activate TTK's ParaView
support, set the CMake variable <code>TTK_BUILD_PARAVIEW_PLUGINS</code> to
<code>OFF</code>.
Examples showing how to use TTK libraries from your
own VTK code can be found
<a target="new"
href="https://github.com/topology-tool-kit/ttk/tree/dev/examples/vtk-c%2B%2B"
>on this page</a>.<br><br>
If you are an advanced user and you do not even wish to activate TTK's VTK
support, set the CMake variables
<!-- NOT NEEDED AFTER RELEASE 1.2.0 -->
<code>TTK_BUILD_STANDALONE_APPS</code> and
<!-- END OF NOT NEEDED -->
<code>TTK_BUILD_VTK_WRAPPERS</code> to <code>OFF</code>.
Examples showing how to use TTK libraries from your own
C++ code can be found
<a target="new"
href="https://github.com/topology-tool-kit/ttk/tree/dev/examples/c%2B%2B"
>on this page</a>.<br><br>
Click on the "Generate" button. Next, click on the "Open project"
button.
<br>
Under Visual Studio, make sure to select the target named
<code>ALL_BUILD</code>and change the global configuration from "Debug"
to "Release".
<br>
Build it and close Visual Studio. Re-open it with administrator rights
and select the <code>INSTALL</code> target to install the binaries.
<br>
<br>
Change the <code>PATH</code> environment variable to
include <code>C:\Program Files (x86)\ttk\bin</code>,
<br>
<code>CMAKE_PREFIX_PATH</code> to include
<code>C:\Program Files (x86)\ttk\lib\cmake</code>,
<br>
<code>PV_PLUGIN_PATH</code> to include
<code>C:\Program Files (x86)\ttk\bin\plugins</code>,
<br>
and <code>PYTHONPATH</code> to include
<code>C:\Program Files (x86)\ttk\bin\Lib\site-packages</code>,
<br>
<br>
If you got to this point without (too many) errors, then
congratulations!<br> You have just successfully installed TTK on your
Windows system!
<br>
The simplest way to test it is to open ParaView with
a <code>cmd.exe</code> command-line prompt and
type <code>paraview</code> in it.
</p>
<p>
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 Jul. 11, 2023.</p>
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