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  • W SLDA Toolkit API

W SLDA Toolkit API · Changes

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Update W SLDA Toolkit API authored May 20, 2021 by Gabriel Wlazłowski's avatar Gabriel Wlazłowski
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W-SLDA-Toolkit-API.md
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# Introduction
The main part of W-SLDA Toolkit is an engine for solving BdG-type equations. However, the solution of these equations does not solve a full problem, which typically requires further exploration of results. For this you can use VisIt, however, in many cases it is not sufficient. For this reason [extensions](https://gitlab.fizyka.pw.edu.pl/gabrielw/wslda/-/tree/public/extensions) were introduced.
The main part of W-SLDA Toolkit is an engine for solving BdG-type equations. However, the solution of these equations does not solve a full problem, which typically requires further exploration of results. For this you can use VisIt, however, in many cases it is not sufficient. For this reason [extensions](https://gitlab.fizyka.pw.edu.pl/wtools/wslda/-/tree/public/extensions) were introduced.
Extensions are small C codes that can be used to support the computation process and data analysis process. The toolkit is equipped with various templates for such codes and examples.
......@@ -21,4 +21,4 @@ gcc -std=gnu99 -I$WSLDA/hpc-engine -I$WSLDA/lib-wdata -L$WSLDA/lib-wdata -lwdata
```
where `YOUR_PROJECT_FOLDER` points to the folder where your `predefines.h` is located. It is recommended to copy and compile extension codes in the project folder, then `YOUR_PROJECT_FOLDER=.`.
The simplest way of learning how to use W-SLDA Toolkit API is just to explore provided templates and codes in [extensions](https://gitlab.fizyka.pw.edu.pl/gabrielw/wslda/-/tree/public/extensions).
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The simplest way of learning how to use W-SLDA Toolkit API is just to explore provided templates and codes in [extensions](https://gitlab.fizyka.pw.edu.pl/wtools/wslda/-/tree/public/extensions).
\ No newline at end of file
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  • API version
  • Automatic interpolations
  • Auxiliary tools
  • Browsing the code
  • Broyden algorithm
  • C and CUDA
  • Campaign of calculations
  • Checking correctness of settings
  • Chemical potentials control
  • Code & Results quality
  • Common failures of static codes
  • Common failures of time dependent codes
  • Computation domain
  • Configuring GPU machine
  • Constraining densities and potentials
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