436 lines
16 KiB
Markdown
436 lines
16 KiB
Markdown
---
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type: howto, reference
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---
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# GitLab and SSH keys
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Git is a distributed version control system, which means you can work locally.
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In addition, you can also share or "push" your changes to other servers.
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GitLab supports secure communication between Git and its servers using SSH keys.
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The SSH protocol provides this security and allows you to authenticate to the
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GitLab remote server without supplying your username or password each time.
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This page can help you configure secure SSH keys which you can use to help secure
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connections to GitLab repositories.
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- If you need information on creating SSH keys, start with our [options for SSH keys](#options-for-ssh-keys).
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- If you have SSH keys dedicated for your GitLab account, you may be interested in [Working with non-default SSH key pair paths](#working-with-non-default-ssh-key-pair-paths).
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- If you already have an SSH key pair, you can go to how you can [add an SSH key to your GitLab account](#adding-an-ssh-key-to-your-gitlab-account).
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## Requirements
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To support SSH, GitLab requires the installation of the OpenSSH client, which
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comes pre-installed on GNU/Linux and macOS, but not on Windows.
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Make sure that your system includes SSH version 6.5 or newer, as that excludes
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the now insecure MD5 signature scheme. The following command returns the version of
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SSH installed on your system:
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```shell
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ssh -V
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```
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While GitLab does [not support installation on Microsoft Windows](../install/requirements.md#microsoft-windows),
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you can set up SSH keys to set up Windows [as a client](#options-for-microsoft-windows).
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## Options for SSH keys
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GitLab supports the use of RSA, DSA, ECDSA, and ED25519 keys.
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- GitLab has [deprecated](https://about.gitlab.com/releases/2018/06/22/gitlab-11-0-released/#support-for-dsa-ssh-keys) DSA keys in GitLab 11.0.
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- As noted in [Practical Cryptography With Go](https://leanpub.com/gocrypto/read#leanpub-auto-ecdsa), the security issues related to DSA also apply to ECDSA.
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TIP: **Tip:**
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Available documentation suggests that ED25519 is more secure. If you use an RSA key, the US National Institute of Science and Technology in [Publication 800-57 Part 3 (PDF)](https://nvlpubs.nist.gov/nistpubs/SpecialPublications/NIST.SP.800-57Pt3r1.pdf) recommends a key size of at least 2048 bits.
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Therefore, our documentation focuses on the use of ED25519 and RSA keys.
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Administrators can [restrict which keys should be permitted and their minimum lengths](../security/ssh_keys_restrictions.md).
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## Review existing SSH keys
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If you have existing SSH keys, you may be able to use them to help secure connections with GitLab
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repositories. By default, SSH keys on Linux and macOS systems are stored in the user's home directory,
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in the `.ssh/` subdirectory. The following table includes default filenames for each SSH key algorithm:
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| Algorithm | Public key | Private key |
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| --------- | ---------- | ----------- |
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| ED25519 (preferred) | `id_ed25519.pub` | `id_ed25519` |
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| RSA (at least 2048-bit key size) | `id_rsa.pub` | `id_rsa` |
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| DSA (deprecated) | `id_dsa.pub` | `id_dsa` |
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| ECDSA | `id_ecdsa.pub` | `id_ecdsa` |
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For recommendations, see [options for SSH keys](#options-for-ssh-keys).
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## Generating a new SSH key pair
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If you want to create:
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- An ED25519 key, read [ED25519 SSH keys](#ed25519-ssh-keys).
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- An RSA key, read [RSA SSH keys](#rsa-ssh-keys).
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### ED25519 SSH keys
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The book [Practical Cryptography With Go](https://leanpub.com/gocrypto/read#leanpub-auto-chapter-5-digital-signatures)
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suggests that [ED25519](https://ed25519.cr.yp.to/) keys are more secure and performant than RSA keys.
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As OpenSSH 6.5 introduced ED25519 SSH keys in 2014, they should be available on any current
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operating system.
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You can create and configure an ED25519 key with the following command:
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```shell
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ssh-keygen -t ed25519 -C "<comment>"
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```
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The `-C` flag, with a quoted comment such as an email address, is an optional way to label your SSH keys.
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You'll see a response similar to:
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```plaintext
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Generating public/private ed25519 key pair.
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Enter file in which to save the key (/home/user/.ssh/id_ed25519):
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```
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For guidance, proceed to the [common steps](#common-steps-for-generating-an-ssh-key-pair).
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### RSA SSH keys
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If you use RSA keys for SSH, the US National Institute of Standards and Technology recommends
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that you use a key size of [at least 2048 bits](https://nvlpubs.nist.gov/nistpubs/SpecialPublications/NIST.SP.800-57Pt3r1.pdf).
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By default, the `ssh-keygen` command creates an 1024-bit RSA key.
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You can create and configure an RSA key with the following command, substituting if desired for the minimum recommended key size of `2048`:
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```shell
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ssh-keygen -t rsa -b 2048 -C "email@example.com"
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```
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The `-C` flag, with a quoted comment such as an email address, is an optional way to label your SSH keys.
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You'll see a response similar to:
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```plaintext
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Generating public/private rsa key pair.
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Enter file in which to save the key (/home/user/.ssh/id_rsa):
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```
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For guidance, proceed to the [common steps](#common-steps-for-generating-an-ssh-key-pair).
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NOTE: **Note:**
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If you have OpenSSH version 7.8 or below, consider the problems associated
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with [encoding](#rsa-keys-and-openssh-from-versions-65-to-78).
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### Common steps for generating an SSH key pair
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Whether you're creating a [ED25519](#ed25519-ssh-keys) or an [RSA](#rsa-ssh-keys) key, you've started with the `ssh-keygen` command.
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At this point, you'll see the following message in the command line (for ED25519 keys):
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```plaintext
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Generating public/private ed25519 key pair.
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Enter file in which to save the key (/home/user/.ssh/id_rsa):
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```
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If you don't already have an SSH key pair and are not generating a [deploy key](#deploy-keys),
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accept the suggested file and directory. Your SSH client will use
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the resulting SSH key pair with no additional configuration.
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Alternatively, you can save the new SSH key pair in a different location.
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You can assign the directory and file name of your choice.
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You can also dedicate that SSH key pair to a [specific host](#working-with-non-default-ssh-key-pair-paths).
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After assigning a file to save your SSH key, you'll get a chance to set up
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a [passphrase](https://www.ssh.com/ssh/passphrase/) for your SSH key:
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```plaintext
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Enter passphrase (empty for no passphrase):
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Enter same passphrase again:
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```
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If successful, you'll see confirmation of where the `ssh-keygen` command
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saved your identification and private key.
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When needed, you can update the passphrase with the following command:
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```shell
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ssh-keygen -p -f /path/to/ssh_key
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```
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### RSA keys and OpenSSH from versions 6.5 to 7.8
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Before OpenSSH 7.8, the default public key fingerprint for RSA keys was based on MD5,
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and is therefore insecure.
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If your version of OpenSSH lies between version 6.5 to version 7.8 (inclusive),
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run `ssh-keygen` with the `-o` option to save your private SSH keys in the more secure
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OpenSSH format.
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If you already have an RSA SSH key pair to use with GitLab, consider upgrading it
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to use the more secure password encryption format. You can do so with the following command:
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```shell
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ssh-keygen -o -f ~/.ssh/id_rsa
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```
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Alternatively, you can generate a new RSA key with the more secure encryption format with
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the following command:
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```shell
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ssh-keygen -o -t rsa -b 4096 -C "email@example.com"
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```
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NOTE: **Note:**
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As noted in the `ssh-keygen` man page, ED25519 already encrypts keys to the more secure
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OpenSSH format.
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## Adding an SSH key to your GitLab account
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Now you can copy the SSH key you created to your GitLab account. To do so, follow these steps:
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1. Copy your **public** SSH key to a location that saves information in text format.
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The following options saves information for ED25519 keys to the clipboard
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for the noted operating system:
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**macOS:**
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```shell
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pbcopy < ~/.ssh/id_ed25519.pub
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```
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**Linux (requires the xclip package):**
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```shell
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xclip -sel clip < ~/.ssh/id_ed25519.pub
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```
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**Git Bash on Windows:**
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```shell
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cat ~/.ssh/id_ed25519.pub | clip
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```
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If you're using an RSA key, substitute accordingly.
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1. Navigate to `http://gitlab.com` and sign in.
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1. Select your avatar in the upper right corner, and click **Settings**
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1. Click **SSH Keys**.
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1. Paste the public key that you copied into the **Key** text box.
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1. Make sure your key includes a descriptive name in the **Title** text box, such as _Work Laptop_ or
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_Home Workstation_.
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1. Include an (optional) expiry date for the key under "Expires at" section. (Introduced in [GitLab 12.9](https://gitlab.com/gitlab-org/gitlab/-/issues/36243).)
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1. Click the **Add key** button.
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SSH keys that have "expired" using this procedure will still be valid in GitLab workflows.
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As the GitLab-configured expiration date is not included in the SSH key itself,
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you can still export public SSH keys as needed.
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NOTE: **Note:**
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If you manually copied your public SSH key make sure you copied the entire
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key starting with `ssh-ed25519` (or `ssh-rsa`) and ending with your email address.
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## Testing that everything is set up correctly
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To test whether your SSH key was added correctly, run the following command in
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your terminal (replacing `gitlab.com` with your GitLab's instance domain):
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```shell
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ssh -T git@gitlab.com
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```
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The first time you connect to GitLab via SSH, you will be asked to verify the
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authenticity of the GitLab host that you're connecting to.
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For example, when connecting to GitLab.com, answer `yes` to add GitLab.com to
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the list of trusted hosts:
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```plaintext
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The authenticity of host 'gitlab.com (35.231.145.151)' can't be established.
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ECDSA key fingerprint is SHA256:HbW3g8zUjNSksFbqTiUWPWg2Bq1x8xdGUrliXFzSnUw.
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Are you sure you want to continue connecting (yes/no)? yes
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Warning: Permanently added 'gitlab.com' (ECDSA) to the list of known hosts.
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```
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NOTE: **Note:**
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For GitLab.com, consult the
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[SSH host keys fingerprints](../user/gitlab_com/index.md#ssh-host-keys-fingerprints),
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section to make sure you're connecting to the correct server. For example, you'll see
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the ECDSA key fingerprint shown above in the linked section.
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Once added to the list of known hosts, you won't be asked to validate the
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authenticity of GitLab's host again. Run the above command once more, and
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you should only receive a _Welcome to GitLab, `@username`!_ message.
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If the welcome message doesn't appear, you can troubleshoot the problem by running `ssh`
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in verbose mode with the following command:
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```shell
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ssh -Tvvv git@gitlab.com
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```
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## Working with non-default SSH key pair paths
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If you used a non-default file path for your GitLab SSH key pair,
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configure your SSH client to point to your GitLab private SSH key.
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To make these changes, run the following commands:
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```shell
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eval $(ssh-agent -s)
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ssh-add <path to private SSH key>
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```
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Now save these settings to the `~/.ssh/config` file. Two examples
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for SSH keys dedicated to GitLab are shown here:
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```conf
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# GitLab.com
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Host gitlab.com
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Preferredauthentications publickey
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IdentityFile ~/.ssh/gitlab_com_rsa
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# Private GitLab instance
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Host gitlab.company.com
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Preferredauthentications publickey
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IdentityFile ~/.ssh/example_com_rsa
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```
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Public SSH keys need to be unique to GitLab, as they will bind to your account.
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Your SSH key is the only identifier you'll have when pushing code via SSH,
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that's why it needs to uniquely map to a single user.
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## Per-repository SSH keys
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If you want to use different keys depending on the repository you are working
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on, you can issue the following command while inside your repository:
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```shell
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git config core.sshCommand "ssh -o IdentitiesOnly=yes -i ~/.ssh/private-key-filename-for-this-repository -F /dev/null"
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```
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This will not use the SSH Agent and requires at least Git 2.10.
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## Multiple accounts on a single GitLab instance
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The [per-repository](#per-repository-ssh-keys) method also works for using
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multiple accounts within a single GitLab instance.
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Alternatively, it is possible to directly assign aliases to hosts in
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`~.ssh/config`. SSH and, by extension, Git will fail to log in if there is
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an `IdentityFile` set outside of a `Host` block in `.ssh/config`. This is
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due to how SSH assembles `IdentityFile` entries and is not changed by
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setting `IdentitiesOnly` to `yes`. `IdentityFile` entries should point to
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the private key of an SSH key pair.
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NOTE: **Note:**
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Private and public keys should be readable by the user only. Accomplish this
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on Linux and macOS by running: `chmod 0400 ~/.ssh/<example_ssh_key>` and
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`chmod 0400 ~/.ssh/<example_sh_key.pub>`.
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```conf
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# User1 Account Identity
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Host <user_1.gitlab.com>
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Hostname gitlab.com
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PreferredAuthentications publickey
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IdentityFile ~/.ssh/<example_ssh_key1>
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# User2 Account Identity
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Host <user_2.gitlab.com>
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Hostname gitlab.com
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PreferredAuthentications publickey
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IdentityFile ~/.ssh/<example_ssh_key2>
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```
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NOTE: **Note:**
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The example `Host` aliases are defined as `user_1.gitlab.com` and
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`user_2.gitlab.com` for efficiency and transparency. Advanced configurations
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are more difficult to maintain; using this type of alias makes it easier to
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understand when using other tools such as `git remote` sub-commands. SSH
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would understand any string as a `Host` alias thus `Tanuki1` and `Tanuki2`,
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despite giving very little context as to where they point, would also work.
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Cloning the `gitlab` repository normally looks like this:
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```shell
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git clone git@gitlab.com:gitlab-org/gitlab.git
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```
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To clone it for `user_1`, replace `gitlab.com` with the SSH alias `user_1.gitlab.com`:
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```shell
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git clone git@<user_1.gitlab.com>:gitlab-org/gitlab.git
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```
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Fix a previously cloned repository using the `git remote` command.
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The example below assumes the remote repository is aliased as `origin`.
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```shell
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git remote set-url origin git@<user_1.gitlab.com>:gitlab-org/gitlab.git
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```
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## Deploy keys
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Read the [documentation on Deploy Keys](../user/project/deploy_keys/index.md).
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## Applications
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### Eclipse
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If you are using [EGit](https://www.eclipse.org/egit/), you can [add your SSH key to Eclipse](https://wiki.eclipse.org/EGit/User_Guide#Eclipse_SSH_Configuration).
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## SSH on the GitLab server
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GitLab integrates with the system-installed SSH daemon, designating a user
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(typically named `git`) through which all access requests are handled. Users
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connecting to the GitLab server over SSH are identified by their SSH key instead
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of their username.
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SSH *client* operations performed on the GitLab server will be executed as this
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user. Although it is possible to modify the SSH configuration for this user to,
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e.g., provide a private SSH key to authenticate these requests by, this practice
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is **not supported** and is strongly discouraged as it presents significant
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security risks.
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The GitLab check process includes a check for this condition, and will direct you
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to this section if your server is configured like this, e.g.:
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```shell
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$ gitlab-rake gitlab:check
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Git user has default SSH configuration? ... no
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Try fixing it:
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mkdir ~/gitlab-check-backup-1504540051
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sudo mv /var/lib/git/.ssh/id_rsa ~/gitlab-check-backup-1504540051
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sudo mv /var/lib/git/.ssh/id_rsa.pub ~/gitlab-check-backup-1504540051
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For more information see:
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doc/ssh/README.md in section "SSH on the GitLab server"
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Please fix the error above and rerun the checks.
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```
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Remove the custom configuration as soon as you're able to. These customizations
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are *explicitly not supported* and may stop working at any time.
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### Options for Microsoft Windows
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If you're running Windows 10, the [Windows Subsystem for Linux (WSL)](https://docs.microsoft.com/en-us/windows/wsl/install-win10), and its latest [WSL 2](https://docs.microsoft.com/en-us/windows/wsl/install-win10#update-to-wsl-2) version,
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support the installation of different Linux distributions, which include the Git and SSH clients.
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For current versions of Windows, you can also install the Git and SSH clients with
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[Git for Windows](https://gitforwindows.org).
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Alternative tools include:
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- [Cygwin](https://www.cygwin.com)
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- [PuttyGen](https://www.chiark.greenend.org.uk/~sgtatham/putty/latest.html)
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## Troubleshooting
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If on Git clone you are prompted for a password like `git@gitlab.com's password:`
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something is wrong with your SSH setup.
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- Ensure that you generated your SSH key pair correctly and added the public SSH
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key to your GitLab profile
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- Try manually registering your private SSH key using `ssh-agent` as documented
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earlier in this document
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- Try to debug the connection by running `ssh -Tv git@example.com`
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(replacing `example.com` with your GitLab domain)
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