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HomeDevelopment ToolsgitDoes Microsoft own Git or GitHub?

Microsoft does not own Git, but owns GitHub. 1. Git is a distributed version control system created by Linus Torvaz in 2005. 2. GitHub is an online code hosting platform based on Git. It was founded in 2008 and acquired by Microsoft in 2018.

Does Microsoft own Git or GitHub?

introduction

Microsoft doesn't own Git, but it does own GitHub. Let's dive into this topic in depth. Git is a distributed version control system originally created by Linus Torvalds in 2005 to better manage the development of the Linux kernel. GitHub, on the other hand, is a Git-based online code hosting platform founded in 2008 and Microsoft acquired it in 2018. This article will take you through the relationship between Git and GitHub and Microsoft's role in it. After reading, you will have a clearer understanding of the history and status of Git and GitHub.

Review of basic knowledge

Git is an open source distributed version control system designed to efficiently handle version management from small to large projects. It allows developers to track changes in files, collaborate on development, and go back to any historical version. GitHub is an online platform based on Git, providing functions such as code hosting, project management, and collaboration tools, so that developers can share and collaborate with code more conveniently.

Core concept or function analysis

Definition and function of Git and GitHub

Git is a version control system that helps developers manage changes in code. It allows you to create branches, merge code, go back to history and other operations. GitHub is an online platform based on Git, providing functions such as code hosting, project management, and collaboration tools, so that developers can share and collaborate with code more conveniently.

The advantage of Git is its distributed nature, and each developer has a complete copy of the code base, which makes it work efficiently even when the network connection is unstable. GitHub’s advantage lies in its sociality and collaboration capabilities, so developers can easily find open source projects, submit Pull Requests, participate in discussions, and more.

How it works

Git works based on snapshots rather than delta. Each time you commit, Git creates a commit object containing snapshots of all the project files, which makes backtracking history and branching operations very efficient. GitHub interacts with Git through API and web interface, providing code hosting, Issue tracking, Pull Request and other functions.

The implementation principle of Git involves technical details such as object storage, branch management, and merging algorithms. Its time complexity is O(1) in most operations, which makes it perform well when dealing with large projects. GitHub's backend needs to handle high concurrency and large-scale data storage, usually implemented using distributed systems and databases.

Example of usage

Basic usage

Let's look at a simple Git operation example:

 # Initialize a Git repository git init

# Add file to the temporary storage area git add.

# Submit changes git commit -m "Initial commit"

# Push to GitHub repository git remote add origin https://github.com/username/repository.git
git push -u origin master

This code shows how to initialize a Git repository, add files, commit changes, and push them to a GitHub repository. Each line of code has its own specific function to help you understand the basic operation process of Git.

Advanced Usage

Now let's look at a more complex example of Git operations that show how to use branching and merging:

 # Create a new branch git checkout -b feature-branch

# Make changes on the new branch and submit git add.
git commit -m "Add new feature"

# Switch back to the main branch git checkout master

# Merge branch git merge feature-branch

# Delete the branch git branch -d feature-branch

This code shows how to create a branch, make changes on a branch, merge branches, and delete branches. This operation is suitable for developers with some experience and helps you understand Git's branch management and merging functions.

Common Errors and Debugging Tips

Common errors when using Git and GitHub include:

  • Forgot to add files to the staging area: Use git status to view unadded files, and then use git add to add.
  • Merge conflicts: Use git status to view conflicting files, then manually edit the files to resolve conflicts, and then submit the solution using git add and git commit .
  • Push failed: Check whether you have permission to push to the remote repository to ensure that your local branch is synchronized with the remote branch.

Performance optimization and best practices

In practical applications, optimizing the use of Git and GitHub can significantly improve development efficiency. Here are some optimization suggestions:

  • Use git gc to clean Git repositories regularly to reduce storage space usage.
  • Use git rebase instead of git merge to keep commit history linear and improve readability.
  • Use Actions to automate workflows on GitHub to reduce manual operations and improve efficiency.

Programming habits and best practices, suggestion:

  • Keep the code submission information concise and clear, helping team members understand what changes are.
  • Regularly back up your Git repository to prevent data loss.
  • Use .gitignore files to ignore unnecessary files and keep the repository neat.

With these optimizations and best practices, you can better utilize Git and GitHub to improve development efficiency and code quality.

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