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To protect against data mining, Kona Site Defender providing content filtering must prevent SQL injection attacks launched against data storage objects, including, at a minimum, databases, database records, and database fields.


Overview

Finding ID Version Rule ID IA Controls Severity
V-76407 AKSD-WF-000011 SV-91103r1_rule Medium
Description
Data mining is the analysis of large quantities of data to discover patterns and is used in intelligence gathering. Failure to prevent attacks launched against organizational information from unauthorized data mining may result in the compromise of information. SQL injection attacks are the most prevalent attacks against web applications and databases. These attacks inject SQL commands that can read, modify, or compromise the meaning of the original SQL query. An attacker can spoof identity; expose, tamper, destroy, or make existing data unavailable; or gain unauthorized privileges on the database server. Compliance requires the ALG to have the capability to prevent SQL code injections. Examples include a web application firewalls (WAFs) or database application gateways.
STIG Date
Akamai KSD Service Impact Level 2 ALG Security Technical Implementation Guide 2017-09-15

Details

Check Text ( C-76063r1_chk )
Confirm Kona Site Defender is configured to block traffic for organizationally defined HTTP protocol violations, HTTP policy violations, SQL injection, remote file inclusion, cross-site scripting, command injection attacks, and any applicable custom rules:

1. Log in to the Akamai Luna Portal (https://control.akamai.com).
2. Click the "Configure" tab.
3. Under the "Security" section, select "Security Configuration".
4. If prompted for which product to use, select "Site Defender" and then "Continue".
5. Under the "Security Configurations" section, click on the most recent version under the "Production" column for the security configuration being reviewed.
6. The detailed "Security Configuration" page will load listing the protected host names and applicable policies.
7. Select the policy being reviewed.
8. Verify the "Application Layer Controls" checkbox is enabled.
9. Verify the following "KRS Rule Set" rules are set to "Deny".
- SQL Injection
- Cross Site Scripting (XSS)
- Command Injection
- Invalid HTTP
- Remote File Inclusion
- PHP Injection (when PHP is used)
- Trojan
- Total Request Scor4e (Inbound)
- Total Response Score (Outbound)
- DDOS
10. Verify the "Enabled Slow POST Protection" section appears.

If the application layer controls are not set to "Deny" mode or slow POST protection does not appear, this is a finding.
Fix Text (F-83083r1_fix)
Configure the Kona Site Defender to block traffic for organizationally defined HTTP protocol violations, HTTP policy violations, SQL injection, remote file inclusion, cross-site scripting, command injection attacks, and any applicable custom rules.

The Akamai Professional Services team should be consulted to implement this Fix content due to the complexities involved. In most cases, this should be included in the SLA.

1. Log in to the Akamai Luna Portal (https://control.akamai.com).
2. Click the "Configure" tab.
3. Under the "Security" section, select "Security Configuration".
4. If prompted for which product to use, select "Site Defender" and then "Continue".
5. Under the "Security Configurations" section, click on the most recent version under the "Production" column for the security configuration being reviewed.
6. The detailed "Security Configuration" page will load listing the protected host names and applicable policies.
7. Select the policy being reviewed and click the "Edit" button.
8. Enable the "Application Layer Controls" box and the "Slow POST Protection" box.
9. Click the "Next" button and set each of the following "KRS Rule Set" rules to "Deny".
- SQL Injection
- Cross Site Scripting (XSS)
- Command Injection
- Invalid HTTP
- Remote File Inclusion
- PHP Injection (when PHP is used)
- Trojan
- Total Request Score (Inbound)
- Total Response Score (Outbound)
- DDOS
10. Click the "Next" button and follow the prompts to complete the process.