Scanning Infrastructure with Nessus
Overview
Tenable Nessus is the industry-leading vulnerability scanner used to identify security weaknesses across network infrastructure including servers, workstations, network devices, and operating systems. This skill covers configuring scan policies, running authenticated and unauthenticated scans, interpreting results, and integrating Nessus into continuous vulnerability management workflows.
When to Use
- When conducting security assessments that involve scanning infrastructure with nessus
- When following incident response procedures for related security events
- When performing scheduled security testing or auditing activities
- When validating security controls through hands-on testing
Prerequisites
- Nessus Professional or Essentials license installed and activated
- Network access to target systems (firewall rules allowing scanner IP)
- Administrative credentials for authenticated scanning
- Understanding of TCP/IP networking and common services
- Written authorization for scanning target environments
Core Concepts
Nessus Architecture
Nessus operates as a client-server application where the Nessus scanner engine runs as a service (nessusd) on the host system. It uses a plugin-based architecture with over 200,000 plugins updated weekly by Tenable's research team. Each plugin tests for a specific vulnerability, misconfiguration, or compliance check.
Scan Types
- Host Discovery - Identifies live hosts using ICMP, TCP, UDP, and ARP
- Basic Network Scan - Default policy covering common vulnerabilities
- Advanced Scan - Custom policy with granular plugin selection
- Credentialed Patch Audit - Authenticated scan checking installed patches
- Web Application Tests - Scans for web-specific vulnerabilities
- Compliance Audit - Checks against CIS, DISA STIG, PCI DSS benchmarks
Plugin Families
Nessus organizes plugins into families including:
- Operating Systems: Windows, Linux, macOS, Solaris
- Network Devices: Cisco, Juniper, Palo Alto, Fortinet
- Web Servers: Apache, Nginx, IIS, Tomcat
- Databases: Oracle, MySQL, PostgreSQL, MSSQL
- Services: DNS, SMTP, FTP, SSH, SNMP
Workflow
Step 1: Initial Configuration
# Start Nessus service
sudo systemctl start nessusd
sudo systemctl enable nessusd
# CLI management with nessuscli
/opt/nessus/sbin/nessuscli update --all
/opt/nessus/sbin/nessuscli fix --list
# Verify plugin count
/opt/nessus/sbin/nessuscli update --plugins-only
Step 2: Create Scan Policy
Configure a custom scan policy through the Nessus web UI at https://localhost:8834:
- Navigate to Policies > New Policy > Advanced Scan
- Configure General settings: name, description, targets
- Set Discovery settings:
- Host Discovery: Ping methods (ICMP, TCP SYN on ports 22,80,443)
- Port Scanning: SYN scan on common ports or all 65535 ports
- Service Discovery: Probe all ports for services
- Configure Assessment settings:
- Accuracy: Override normal accuracy (reduce false positives)
- Web Applications: Enable if scanning web servers
- Select Plugin families relevant to target environment
Step 3: Configure Credentials
For authenticated scanning, configure credentials under the Credentials tab:
- SSH: Username/password or SSH key pair
- Windows: Domain credentials via SMB, WMI
- SNMP: Community strings (v1/v2c) or USM credentials (v3)
- Database: Oracle, MySQL, PostgreSQL connection strings
- VMware: vCenter or ESXi credentials
Step 4: Run the Scan
# Using Nessus REST API via curl
# Authenticate and get token
curl -k -X POST https://localhost:8834/session \
-d '{"username":"admin","password":"password"}' \
-H "Content-Type: application/json"
# Create scan
curl -k -X POST https://localhost:8834/scans \
-H "X-Cookie: token=<TOKEN>" \
-H "Content-Type: application/json" \
-d '{
"uuid": "<TEMPLATE_UUID>",
"settings": {
"name": "Infrastructure Scan Q1",
"text_targets": "192.168.1.0/24",
"enabled": true,
"launch": "ON_DEMAND"
}
}'
# Launch scan
curl -k -X POST https://localhost:8834/scans/<SCAN_ID>/launch \
-H "X-Cookie: token=<TOKEN>"
# Check scan status
curl -k -X GET https://localhost:8834/scans/<SCAN_ID> \
-H "X-Cookie: token=<TOKEN>"
Step 5: Analyze Results
Nessus categorizes findings by severity:
- Critical (CVSS 9.0-10.0): Immediate remediation required
- High (CVSS 7.0-8.9): Remediate within 7-14 days
- Medium (CVSS 4.0-6.9): Remediate within 30 days
- Low (CVSS 0.1-3.9): Remediate during next maintenance window
- Informational: No immediate action required
Step 6: Export and Report
# Export via REST API
curl -k -X POST "https://localhost:8834/scans/<SCAN_ID>/export" \
-H "X-Cookie: token=<TOKEN>" \
-H "Content-Type: application/json" \
-d '{"format":"nessus"}'
# Supported formats: nessus (XML), csv, html, pdf
Best Practices
- Schedule scans during maintenance windows to minimize production impact
- Use authenticated scanning for 45-60% more vulnerability detection
- Exclude fragile systems (medical devices, legacy SCADA) from aggressive scans
- Maintain separate scan policies for different network segments
- Update plugins before every scan to catch recently disclosed CVEs
- Validate critical findings manually before escalating to remediation teams
- Implement scan result trending to track remediation progress over time
- Store scan results in Tenable.sc or Tenable.io for centralized management
Common Pitfalls
- Running unauthenticated scans only (misses 45-60% of vulnerabilities)
- Scanning without written authorization (legal and ethical violations)
- Ignoring scan performance impact on production systems
- Failing to tune plugins leading to excessive false positives
- Not validating scanner network connectivity before launching scans
- Using default scan policies without customization for the environment
Related Skills
- performing-authenticated-vulnerability-scan
- prioritizing-vulnerabilities-with-cvss-scoring
- implementing-continuous-vulnerability-monitoring
- performing-network-vulnerability-assessment
Source: mukul975/Anthropic-Cybersecurity-Skills → skills/scanning-infrastructure-with-nessus/SKILL.md
1---2name: scanning-infrastructure-with-nessus3description: Tenable Nessus is the industry-leading vulnerability scanner used to identify security weaknesses across network infrastructure including servers, workstations, network devices, and operating systems.4---5
6# Scanning Infrastructure with Nessus
7
8## Overview
9Tenable Nessus is the industry-leading vulnerability scanner used to identify security weaknesses across network infrastructure including servers, workstations, network devices, and operating systems. This skill covers configuring scan policies, running authenticated and unauthenticated scans, interpreting results, and integrating Nessus into continuous vulnerability management workflows.
10
11
12## When to Use
13
14- When conducting security assessments that involve scanning infrastructure with nessus
15- When following incident response procedures for related security events
16- When performing scheduled security testing or auditing activities
17- When validating security controls through hands-on testing
18
19## Prerequisites
20- Nessus Professional or Essentials license installed and activated
21- Network access to target systems (firewall rules allowing scanner IP)
22- Administrative credentials for authenticated scanning
23- Understanding of TCP/IP networking and common services
24- Written authorization for scanning target environments
25
26## Core Concepts
27
28### Nessus Architecture
29Nessus operates as a client-server application where the Nessus scanner engine runs as a service (nessusd) on the host system. It uses a plugin-based architecture with over 200,000 plugins updated weekly by Tenable's research team. Each plugin tests for a specific vulnerability, misconfiguration, or compliance check.
30
31### Scan Types
321. **Host Discovery** - Identifies live hosts using ICMP, TCP, UDP, and ARP
332. **Basic Network Scan** - Default policy covering common vulnerabilities
343. **Advanced Scan** - Custom policy with granular plugin selection
354. **Credentialed Patch Audit** - Authenticated scan checking installed patches
365. **Web Application Tests** - Scans for web-specific vulnerabilities
376. **Compliance Audit** - Checks against CIS, DISA STIG, PCI DSS benchmarks
38
39### Plugin Families
40Nessus organizes plugins into families including:
41- **Operating Systems**: Windows, Linux, macOS, Solaris
42- **Network Devices**: Cisco, Juniper, Palo Alto, Fortinet
43- **Web Servers**: Apache, Nginx, IIS, Tomcat
44- **Databases**: Oracle, MySQL, PostgreSQL, MSSQL
45- **Services**: DNS, SMTP, FTP, SSH, SNMP
46
47## Workflow
48
49### Step 1: Initial Configuration
50```bash
51# Start Nessus service
52sudo systemctl start nessusd
53sudo systemctl enable nessusd
54
55# CLI management with nessuscli
56/opt/nessus/sbin/nessuscli update --all
57/opt/nessus/sbin/nessuscli fix --list
58
59# Verify plugin count
60/opt/nessus/sbin/nessuscli update --plugins-only
61```
62
63### Step 2: Create Scan Policy
64Configure a custom scan policy through the Nessus web UI at https://localhost:8834:
65
661. Navigate to Policies > New Policy > Advanced Scan
672. Configure General settings: name, description, targets
683. Set Discovery settings:
69 - Host Discovery: Ping methods (ICMP, TCP SYN on ports 22,80,443)
70 - Port Scanning: SYN scan on common ports or all 65535 ports
71 - Service Discovery: Probe all ports for services
724. Configure Assessment settings:
73 - Accuracy: Override normal accuracy (reduce false positives)
74 - Web Applications: Enable if scanning web servers
755. Select Plugin families relevant to target environment
76
77### Step 3: Configure Credentials
78For authenticated scanning, configure credentials under the Credentials tab:
79- **SSH**: Username/password or SSH key pair
80- **Windows**: Domain credentials via SMB, WMI
81- **SNMP**: Community strings (v1/v2c) or USM credentials (v3)
82- **Database**: Oracle, MySQL, PostgreSQL connection strings
83- **VMware**: vCenter or ESXi credentials
84
85### Step 4: Run the Scan
86```
87# Using Nessus REST API via curl
88# Authenticate and get token
89curl -k -X POST https://localhost:8834/session \
90 -d '{"username":"admin","password":"password"}' \
91 -H "Content-Type: application/json"
92
93# Create scan
94curl -k -X POST https://localhost:8834/scans \
95 -H "X-Cookie: token=<TOKEN>" \
96 -H "Content-Type: application/json" \
97 -d '{
98 "uuid": "<TEMPLATE_UUID>",
99 "settings": {
100 "name": "Infrastructure Scan Q1",
101 "text_targets": "192.168.1.0/24",
102 "enabled": true,
103 "launch": "ON_DEMAND"
104 }
105 }'
106
107# Launch scan
108curl -k -X POST https://localhost:8834/scans/<SCAN_ID>/launch \
109 -H "X-Cookie: token=<TOKEN>"
110
111# Check scan status
112curl -k -X GET https://localhost:8834/scans/<SCAN_ID> \
113 -H "X-Cookie: token=<TOKEN>"
114```
115
116### Step 5: Analyze Results
117Nessus categorizes findings by severity:
118- **Critical (CVSS 9.0-10.0)**: Immediate remediation required
119- **High (CVSS 7.0-8.9)**: Remediate within 7-14 days
120- **Medium (CVSS 4.0-6.9)**: Remediate within 30 days
121- **Low (CVSS 0.1-3.9)**: Remediate during next maintenance window
122- **Informational**: No immediate action required
123
124### Step 6: Export and Report
125```bash
126# Export via REST API
127curl -k -X POST "https://localhost:8834/scans/<SCAN_ID>/export" \
128 -H "X-Cookie: token=<TOKEN>" \
129 -H "Content-Type: application/json" \
130 -d '{"format":"nessus"}'
131
132# Supported formats: nessus (XML), csv, html, pdf
133```
134
135## Best Practices
1361. Schedule scans during maintenance windows to minimize production impact
1372. Use authenticated scanning for 45-60% more vulnerability detection
1383. Exclude fragile systems (medical devices, legacy SCADA) from aggressive scans
1394. Maintain separate scan policies for different network segments
1405. Update plugins before every scan to catch recently disclosed CVEs
1416. Validate critical findings manually before escalating to remediation teams
1427. Implement scan result trending to track remediation progress over time
1438. Store scan results in Tenable.sc or Tenable.io for centralized management
144
145## Common Pitfalls
146- Running unauthenticated scans only (misses 45-60% of vulnerabilities)
147- Scanning without written authorization (legal and ethical violations)
148- Ignoring scan performance impact on production systems
149- Failing to tune plugins leading to excessive false positives
150- Not validating scanner network connectivity before launching scans
151- Using default scan policies without customization for the environment
152
153## Related Skills
154- performing-authenticated-vulnerability-scan
155- prioritizing-vulnerabilities-with-cvss-scoring
156- implementing-continuous-vulnerability-monitoring
157- performing-network-vulnerability-assessment
158
159---
160
161**Source:** [`mukul975/Anthropic-Cybersecurity-Skills`](https://github.com/mukul975/Anthropic-Cybersecurity-Skills) → `skills/scanning-infrastructure-with-nessus/SKILL.md`