Difference between revisions of "SHA password hashes"

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[[Category:Security]]
 
[[Category:Security]]
{{note|1= With {{pkg|shadow}} 4.1.4.3-3 ''sha512'' is the default for new passwords (see [https://bugs.archlinux.org/task/13591#comment85993 bug 13591] and corresponding [https://projects.archlinux.org/svntogit/packages.git/commit/trunk?h=packages/shadow&id=98001501a8306ef5a0df55d1cffc048851894940 commit]).}}
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{{note|1= With {{pkg|shadow}} 4.1.4.3-3 ''sha512'' is the default for new passwords (see [https://bugs.archlinux.org/task/13591#comment85993 bug 13591].}}
  
 
If your current password was created with {{pkg|shadow}} version prior to 4.1.4.3-3 (2011-11-26) you are using MD5. To start using a SHA-512 hash you just need to change your password with ''passwd''.
 
If your current password was created with {{pkg|shadow}} version prior to 4.1.4.3-3 (2011-11-26) you are using MD5. To start using a SHA-512 hash you just need to change your password with ''passwd''.

Revision as of 04:02, 30 June 2013

Note: With shadow 4.1.4.3-3 sha512 is the default for new passwords (see bug 13591.

If your current password was created with shadow version prior to 4.1.4.3-3 (2011-11-26) you are using MD5. To start using a SHA-512 hash you just need to change your password with passwd.

Benefits of SHA-2 over MD5

In Linux distributions login passwords are commonly hashed and stored in the /etc/shadow file using the MD5 algorithm. The security of the MD5 hash function has been severely compromised by collision vulnerabilities. This does not mean MD5 is insecure for password hashing but in the interest of decreasing vulnerabilities a more secure and robust algorithm that has no known weaknesses (e.g. SHA-512) is recommended.

The following tutorial uses the SHA-512 hash function, which has been recommended by the United States' National Security Agency (NSA) for Red Hat Enterprise Linux 5. Alternatively, SHA-2 consists of four additional hash functions with digests that are 224, 256, 384, and 512 bits.

Increasing Security

Note: You must have root privileges to edit this file.

The rounds=N option helps to improve key strengthening. The number of rounds has a larger impact on security than the selection of a hash function. For example, rounds=65536 means that an attacker has to compute 65536 hashes for each password he tests against the hash in your /etc/shadow. Therefore the attacker will be delayed by a factor of 65536. This also means that your computer must compute 65536 hashes every time you log in, but even on slow computers that takes less than 1 second. If you do not use the rounds option, then glibc will default to 5000 rounds for SHA-512. Additionally, the default value for the rounds option can be found in sha512-crypt.c.

Open /etc/pam.d/passwd with a text editor and add the rounds option at the end of of the uncommented line. After applying this change the line should look like this:

password	required	pam_unix.so sha512 shadow nullok rounds=65536
Note: For a more detailed explanation of the /etc/pam.d/passwd password options check the PAM man page.

Re-Hash the Passwords

Even though you have changed the encryption settings, your passwords are not automatically re-hashed. To fix this, you must reset all user passwords so that they can be re-hashed.

As root issue the following the command,

# passwd <username>

where <username> is the name of the user whose password you are changing. Then re-enter their current password, and it will be re-hashed using the SHA-2 function.

To verify that your passwords have been re-hashed, check the /etc/shadow file as root. Passwords hashed with SHA-256 should begin with a $5 and passwords hashed with SHA-512 will begin with $6.

Known Problems

fgetty

Arch Linux is using SHA-512 password hashing by default (since 2011-11-26). The very minimal terminal manager fgetty does not support SHA-512 password hashing by default. Enabling SHA-512 with the default fgetty will cause you to be locked out. A patched version of fgetty is in the AUR named fgetty-pamAUR which adds SHA-512 support.