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What is this?

This is a tool to easily automate the verify process of your code library for competitive programming.

How to use

Set up the repository for the library

Please read this: https://online-judge-tools.github.io/verification-helper/installer.html

Running the program

Installation

$ pip3 install online-judge-verify-helper

Python 3.8 or above is required.

Automating the verification

First, specify the problem URL to be used to verify the library in the file including .test. in its path (e.g. for C++, write #define PROBLEM "https://judge.yosupo.jp/problem/unionfind" in a file like example.test.cpp; see the reference for other languages). Then, run the following command to check if the verification can be performed.

$ oj-verify run

Currently, problems on Library Checker and Aizu Online Judge are supported. For the details, see the reference.

Autoexpansion of #includes

The include statements in your files in the form of #include "foo.hpp" can be expanded, similar to the functionality provided by webpack for JavaScript. This is to solve the problems that most online judges do not support submitting multiple files. The function can be used by running the following command:

$ oj-bundle main.cpp

If your competitive programming library resides outside the current directory, please specify the flag in the form of -I path/to/your/library. I recommend making shell aliases like alias oj-bundle='\oj-bundle -I path/to/your/library'.

Include guards like #pragma once are partially supported. If you have files that will be included multiple times but you only want them to appear once in the generated code, add #pragma once to the first line of the files.

Generating Documentation

Run the following command to generate documentation in .verify-helper/markdown/. Example: https://online-judge-tools.github.io/verification-helper/ GitHub Pages

$ oj-verify docs

If documentation generators like Doxygen are found when generating documentation, they will be automatically used. TeX expressions like $(N \sum_i A_i)$ are also supported by the MathJax library. For the details, see the reference.

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