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Attack Patterns T1071.001 — Web Protocols
T1071.001

Web Protocols

Command & Control
TLP:CLEAR

Description

Adversaries may communicate using application layer protocols associated with web traffic to avoid detection/network filtering by blending in with existing traffic. Commands to the remote system, and often the results of those commands, will be embedded within the protocol traffic between the client and server. Protocols such as HTTP/S(Citation: CrowdStrike Putter Panda) and WebSocket(Citation: Brazking-Websockets) that carry web traffic may be very common in environments. HTTP/S packets have many fields and headers in which data can be concealed. An adversary may abuse these protocols to communicate with systems under their control within a victim network while also mimicking normal, expected traffic.

MITRE ATT&CK Detection Strategies
1

DET0027 Detection of Web Protocol-Based C2 Over HTTP, HTTPS, or WebSockets
AN0075 Windows

Detects unexpected or high-volume HTTP/S/WebSocket communication from suspicious processes (e.g., PowerShell, rundll32) using uncommon user agents or mimicking browser traffic to unusual domains or IPs.

NSM:Flow WinEventLog:Sysmon
AN0079 Network Devices

Detects Web protocol misuse such as encoded HTTP headers, WebSocket upgrade requests with abnormal payloads, or TLS handshake anomalies suggesting embedded C2 channels.

NSM:Flow
AN0078 ESXi

Detects HTTP or HTTPS communication initiated by shell-based scripts or management daemons, especially those reaching public IPs over ports 80/443 using embedded curl or wget.

NSM:Flow esxi:shell
+2 more analytics

MITRE ATT&CK Mitigations
2

M1031

Network Intrusion Prevention

Use intrusion detection signatures to block traffic at network boundaries.

M1037

Filter Network Traffic

Employ network appliances and endpoint software to filter ingress, egress, and lateral network traffic. This includes protocol-based filtering, enforcing firewall rules, and blocking or restricting traffic based on predefined conditions to limit adversary movement and data exfiltration. This mitigation can be implemented through the following measures: Ingress Traffic Filtering: - Use Case: Configure network firewalls to allow traffic only from authorized IP addresses to public-facing servers. - Implementation: Limit SSH (port 22) and RDP (port 3389) traffic to specific IP ranges. Egress Traffic Filtering: - Use Case: Use firewalls or endpoint security software to block unauthorized outbound traffic to prevent data exfiltration and command-and-control (C2) communications. - Implementation: Block outbound traffic to known malicious IPs or regions where communication is unexpected. Protocol-Based Filtering: - Use Case: Restrict the use of specific protocols that are commonly abused by adversaries, such as SMB, RPC, or Telnet, based on business needs. - Implementation: Disable SMBv1 on endpoints to prevent exploits like EternalBlue. Network Segmentation: - Use Case: Create network segments for critical systems and restrict communication between segments unless explicitly authorized. - Implementation: Implement VLANs to isolate IoT devices or guest networks from core business systems. Application Layer Filtering: - Use Case: Use proxy servers or Web Application Firewalls (WAFs) to inspect and block malicious HTTP/S traffic. - Implementation: Configure a WAF to block SQL injection attempts or other web application exploitation techniques.

Details

Platforms
Esxi
Linux
Macos
Network devices
Windows
Added
May 2, 2026
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