Top 100 Web Vulnerabilities Reference
⚠️ AUTHORIZED USE ONLY
This skill is for educational purposes or authorized security assessments only.
You must have explicit, written permission from the system owner before using this tool.
Misuse of this tool is illegal and strictly prohibited.
Purpose
Provide a comprehensive, structured reference for the 100 most critical web application vulnerabilities organized by category. This skill enables systematic vulnerability identification, impact assessment, and remediation guidance across the full spectrum of web security threats. Content organized into 15 major vulnerability categories aligned with industry standards and real-world attack patterns.
Prerequisites
- Basic understanding of web application architecture (client-server model, HTTP protocol)
- Familiarity with common web technologies (HTML, JavaScript, SQL, XML, APIs)
- Understanding of authentication and authorization concepts
- Access to web application security testing tools (Burp Suite, OWASP ZAP)
- Knowledge of secure coding principles recommended
Outputs and Deliverables
- Complete vulnerability catalog with definitions, root causes, impacts, and mitigations
- Category-based vulnerability groupings for systematic assessment
- Quick reference for security testing and remediation
- Foundation for vulnerability assessment checklists and security policies
Core Workflow
Phase 1: Injection Vulnerabilities Assessment
Evaluate injection attack vectors targeting data processing components:
SQL Injection (1)
- Definition: Malicious SQL code inserted into input fields to manipulate database queries
- Root Cause: Lack of input validation, improper use of parameterized queries
- Impact: Unauthorized data access, data manipulation, database compromise
- Mitigation: Use parameterized queries/prepared statements, input validation, least privilege database accounts
Cross-Site Scripting - XSS (2)
- Definition: Injection of malicious scripts into web pages viewed by other users
- Root Cause: Insufficient output encoding, lack of input sanitization
- Impact: Session hijacking, credential theft, website defacement
- Mitigation: Output encoding, Content Security Policy (CSP), input sanitization
Command Injection (5, 11)
- Definition: Execution of arbitrary system commands through vulnerable applications
- Root Cause: Unsanitized user input passed to system shells
- Impact: Full system compromise, data exfiltration, lateral movement
- Mitigation: Avoid shell execution, whitelist valid commands, strict input validation
XML Injection (6), LDAP Injection (7), XPath Injection (8)
- Definition: Manipulation of XML/LDAP/XPath queries through malicious input
- Root Cause: Improper input handling in query construction
- Impact: Data exposure, authentication bypass, information disclosure
- Mitigation: Input validation, parameterized queries, escape special characters
Server-Side Template Injection - SSTI (13)
- Definition: Injection of malicious code into template engines
- Root Cause: User input embedded directly in template expressions
- Impact: Remote code execution, server compromise
- Mitigation: Sandbox template engines, avoid user input in templates, strict input validation
Phase 2: Authentication and Session Security
Assess authentication mechanism weaknesses:
Session Fixation (14)
- Definition: Attacker sets victim's session ID before authentication
- Root Cause: Session ID not regenerated after login
- Impact: Session hijacking, unauthorized account access
- Mitigation: Regenerate session ID on authentication, use secure session management
Brute Force Attack (15)
- Definition: Systematic password guessing using automated tools
- Root Cause: Lack of account lockout, rate limiting, or CAPTCHA
- Impact: Unauthorized access, credential compromise
- Mitigation: Account lockout policies, rate limiting, MFA, CAPTCHA
Session Hijacking (16)
- Definition: Attacker steals or predicts valid session tokens
- Root Cause: Weak session token generation, insecure transmission
- Impact: Account takeover, unauthorized access
- Mitigation: Secure random token generation, HTTPS, HttpOnly/Secure cookie flags
Credential Stuffing and Reuse (22)
- Definition: Using leaked credentials to access accounts across services
- Root Cause: Users reusing passwords, no breach detection
- Impact: Mass account compromise, data breaches
- Mitigation: MFA, breach password checks, unique credential requirements
Insecure "Remember Me" Functionality (85)
- Definition: Weak persistent authentication token implementation
- Root Cause: Predictable tokens, inadequate expiration controls
- Impact: Unauthorized persistent access, session compromise
- Mitigation: Strong token generation, proper expiration, secure storage
CAPTCHA Bypass (86)
- Definition: Circumventing bot detection mechanisms
- Root Cause: Weak CAPTCHA algorithms, improper validation
- Impact: Automated attacks, credential stuffing, spam
- Mitigation: reCAPTCHA v3, layered bot detection, rate limiting
Phase 3: Sensitive Data Exposure
Identify data protection failures:
IDOR - Insecure Direct Object References (23, 42)
- Definition: Direct access to internal objects via user-supplied references
- Root Cause: Missing authorization checks on object access
- Impact: Unauthorized data access, privacy breaches
- Mitigation: Access control validation, indirect reference maps, authorization checks
Data Leakage (24)
- Definition: Inadvertent disclosure of sensitive information
- Root Cause: Inadequate data protection, weak access controls
- Impact: Privacy breaches, regulatory penalties, reputation damage
- Mitigation: DLP solutions, encryption, access controls, security training
Unencrypted Data Storage (25)
- Definition: Storing sensitive data without encryption
- Root Cause: Failure to implement encryption at rest
- Impact: Data breaches if storage compromised
- Mitigation: Full-disk encryption, database encryption, secure key management
Information Disclosure (33)
- Definition: Exposure of system details through error messages or responses
- Root Cause: Verbose error handling, debug information in production
- Impact: Reconnaissance for further attacks, credential exposure
- Mitigation: Generic error messages, disable debug mode, secure logging
Phase 4: Security Misconfiguration
Assess configuration weaknesses:
Missing Security Headers (26)
- Definition: Absence of protective HTTP headers (CSP, X-Frame-Options, HSTS)
- Root Cause: Inadequate server configuration
- Impact: XSS attacks, clickjacking, protocol downgrade
- Mitigation: Implement CSP, X-Content-Type-Options, X-Frame-Options, HSTS
Default Passwords (28)
- Definition: Unchanged default credentials on systems/applications
- Root Cause: Failure to change vendor defaults
- Impact: Unauthorized access, system compromise
- Mitigation: Mandatory password changes, strong password policies
Directory Listing (29)
- Definition: Web server exposes directory contents
- Root Cause: Improper server configuration
- Impact: Information disclosure, sensitive file exposure
- Mitigation: Disable directory indexing, use default index files
Unprotected API Endpoints (30)
- Definition: APIs lacking authentication or authorization
- Root Cause: Missing security controls on API routes
- Impact: Unauthorized data access, API abuse
- Mitigation: OAuth/API keys, access controls, rate limiting
Open Ports and Services (31)
- Definition: Unnecessary network services exposed
- Root Cause: Failure to minimize attack surface
- Impact: Exploitation of vulnerable services
- Mitigation: Port scanning audits, firewall rules, service minimization
Misconfigured CORS (35)
- Definition: Overly permissive Cross-Origin Resource Sharing policies
- Root Cause: Wildcard origins, improper CORS configuration
- Impact: Cross-site request attacks, data theft
- Mitigation: Whitelist trusted origins, validate CORS headers
Unpatched Software (34)
- Definition: Systems running outdated vulnerable software
- Root Cause: Neglected patch management
- Impact: Exploitation of known vulnerabilities
- Mitigation: Patch management program, vulnerability scanning, automated updates
Phase 5: XML-Related Vulnerabilities
Evaluate XML processing security:
XXE - XML External Entity Injection (37)
- Definition: Exploitation of XML parsers to access files or internal systems
- Root Cause: External entity processing enabled
- Impact: File disclosure, SSRF, denial of service
- Mitigation: Disable external entities, use safe XML parsers
XEE - XML Entity Expansion (38)
- Definition: Excessive entity expansion causing resource exhaustion
- Root Cause: Unlimited entity expansion allowed
- Impact: Denial of service, parser crashes
- Mitigation: Limit entity expansion, configure parser restrictions
XML Bomb (Billion Laughs) (39)
- Definition: Crafted XML with nested entities consuming resources
- Root Cause: Recursive entity definitions
- Impact: Memory exhaustion, denial of service
- Mitigation: Entity expansion limits, input size restrictions
XML Denial of Service (65)
- Definition: Specially crafted XML causing excessive processing
- Root Cause: Complex document structures without limits
- Impact: CPU/memory exhaustion, service unavailability
- Mitigation: Schema validation, size limits, processing timeouts
Phase 6: Broken Access Control
Assess authorization enforcement:
Inadequate Authorization (40)
- Definition: Failure to properly enforce access controls
- Root Cause: Weak authorization policies, missing checks
- Impact: Unauthorized access to sensitive resources
- Mitigation: RBAC, centralized IAM, regular access reviews
Privilege Escalation (41)
- Definition: Gaining elevated access beyond intended permissions
- Root Cause: Misconfigured permissions, system vulnerabilities
- Impact: Full system compromise, data manipulation
- Mitigation: Least privilege, regular patching, privilege monitoring
Forceful Browsing (43)
- Definition: Direct URL manipulation to access restricted resources
- Root Cause: Weak access controls, predictable URLs
- Impact: Unauthorized file/directory access
- Mitigation: Server-side access controls, unpredictable resource paths
Missing Function-Level Access Control (44)
- Definition: Unprotected administrative or privileged functions
- Root Cause: Authorization only at UI level
- Impact: Unauthorized function execution
- Mitigation: Server-side authorization for all functions, RBAC
Phase 7: Insecure Deserialization
Evaluate object serialization security:
Remote Code Execution via Deserialization (45)
- Definition: Arbitrary code execution through malicious serialized objects
- Root Cause: Untrusted data deserialized without validation
- Impact: Complete system compromise, code execution
- Mitigation: Avoid deserializing untrusted data, integrity checks, type validation
Data Tampering (46)
- Definition: Unauthorized modification of serialized data
- Root Cause: Missing integrity verification
- Impact: Data corruption, privilege manipulation
- Mitigation: Digital signatures, HMAC validation, encryption
Object Injection (47)
- Definition: Malicious object instantiation during deserialization
- Root Cause: Unsafe deserialization practices
- Impact: Code execution, unauthorized access
- Mitigation: Type restrictions, class whitelisting, secure libraries
Phase 8: API Security Assessment
Evaluate API-specific vulnerabilities:
Insecure API Endpoints (48)
- Definition: APIs without proper security controls
- Root Cause: Poor API design, missing authentication
- Impact: Data breaches, unauthorized access
- Mitigation: OAuth/JWT, HTTPS, input validation, rate limiting
API Key Exposure (49)
- Definition: Leaked or exposed API credentials
- Root Cause: Hardcoded keys, insecure storage
- Impact: Unauthorized API access, abuse
- Mitigation: Secure key storage, rotation, environment variables
Lack of Rate Limiting (50)
- Definition: No controls on API request frequency
- Root Cause: Missing throttling mechanisms
- Impact: DoS, API abuse, resource exhaustion
- Mitigation: Rate limits per user/IP, throttling, DDoS protection
Inadequate Input Validation (51)
- Definition: APIs accepting unvalidated user input
- Root Cause: Missing server-side validation
- Impact: Injection attacks, data corruption
- Mitigation: Strict validation, parameterized queries, WAF
API Abuse (75)
- Definition: Exploiting API functionality for malicious purposes
- Root Cause: Excessive trust in client input
- Impact: Data theft, account takeover, service abuse
- Mitigation: Strong authentication, behavior analysis, anomaly detection
Phase 9: Communication Security
Assess transport layer protections:
Man-in-the-Middle Attack (52)
- Definition: Interception of communication between parties
- Root Cause: Unencrypted channels, compromised networks
- Impact: Data theft, session hijacking, impersonation
- Mitigation: TLS/SSL, certificate pinning, mutual authentication
Insufficient Transport Layer Security (53)
- Definition: Weak or outdated encryption for data in transit
- Root Cause: Outdated protocols (SSLv2/3), weak ciphers
- Impact: Traffic interception, credential theft
- Mitigation: TLS 1.2+, strong cipher suites, HSTS
Insecure SSL/TLS Configuration (54)
- Definition: Improperly configured encryption settings
- Root Cause: Weak ciphers, missing forward secrecy
- Impact: Traffic decryption, MITM attacks
- Mitigation: Modern cipher suites, PFS, certificate validation
Insecure Communication Protocols (55)
- Definition: Use of unencrypted protocols (HTTP, Telnet, FTP)
- Root Cause: Legacy systems, security unawareness
- Impact: Traffic sniffing, credential exposure
- Mitigation: HTTPS, SSH, SFTP, VPN tunnels
Phase 10: Client-Side Vulnerabilities
Evaluate browser-side security:
DOM-based XSS (56)
- Definition: XSS through client-side JavaScript manipulation
- Root Cause: Unsafe DOM manipulation with user input
- Impact: Session theft, credential harvesting
- Mitigation: Safe DOM APIs, CSP, input sanitization
Insecure Cross-Origin Communication (57)
- Definition: Improper handling of cross-origin requests
- Root Cause: Relaxed CORS/SOP policies
- Impact: Data leakage, CSRF attacks
- Mitigation: Strict CORS, CSRF tokens, origin validation
Browser Cache Poisoning (58)
- Definition: Manipulation of cached content
- Root Cause: Weak cache validation
- Impact: Malicious content delivery
- Mitigation: Cache-Control headers, HTTPS, integrity checks
Clickjacking (59, 71)
- Definition: UI redress attack tricking users into clicking hidden elements
- Root Cause: Missing frame protection
- Impact: Unintended actions, credential theft
- Mitigation: X-Frame-Options, CSP frame-ancestors, frame-busting
HTML5 Security Issues (60)
- Definition: Vulnerabilities in HTML5 APIs (WebSockets, Storage, Geolocation)
- Root Cause: Improper API usage, insufficient validation
- Impact: Data leakage, XSS, privacy violations
- Mitigation: Secure API usage, input validation, sandboxing
Phase 11: Denial of Service Assessment
Evaluate availability threats:
DDoS - Distributed Denial of Service (61)
- Definition: Overwhelming systems with traffic from multiple sources
- Root Cause: Botnets, amplification attacks
- Impact: Service unavailability, revenue loss
- Mitigation: DDoS protection services, rate limiting, CDN
Application Layer DoS (62)
- Definition: Targeting application logic to exhaust resources
- Root Cause: Inefficient code, resource-intensive operations
- Impact: Application unavailability, degraded performance
- Mitigation: Rate limiting, caching, WAF, code optimization
Resource Exhaustion (63)
- Definition: Depleting CPU, memory, disk, or network resources
- Root Cause: Inefficient resource management
- Impact: System crashes, service degradation
- Mitigation: Resource quotas, monitoring, load balancing
Slowloris Attack (64)
- Definition: Keeping connections open with partial HTTP requests
- Root Cause: No connection timeouts
- Impact: Web server resource exhaustion
- Mitigation: Connection timeouts, request limits, reverse proxy
Phase 12: Server-Side Request Forgery
Assess SSRF vulnerabilities:
SSRF - Server-Side Request Forgery (66)
- Definition: Manipulating server to make requests to internal resources
- Root Cause: Unvalidated user-controlled URLs
- Impact: Internal network access, data theft, cloud metadata access
- Mitigation: URL whitelisting, network segmentation, egress filtering
Blind SSRF (87)
- Definition: SSRF without direct response visibility
- Root Cause: Similar to SSRF, harder to detect
- Impact: Data exfiltration, internal reconnaissance
- Mitigation: Allowlists, WAF, network restrictions
Time-Based Blind SSRF (88)
- Definition: Inferring SSRF success through response timing
- Root Cause: Processing delays indicating request outcomes
- Impact: Prolonged exploitation, detection evasion
- Mitigation: Request timeouts, anomaly detection, timing monitoring
Phase 13: Additional Web Vulnerabilities
| # |
Vulnerability |
Root Cause |
Impact |
Mitigation |
| 67 |
HTTP Parameter Pollution |
Inconsistent parsing |
Injection, ACL bypass |
Strict parsing, validation |
| 68 |
Insecure Redirects |
Unvalidated targets |
Phishing, malware |
Whitelist destinations |
| 69 |
File Inclusion (LFI/RFI) |
Unvalidated paths |
Code exec, disclosure |
Whitelist files, disable RFI |
| 70 |
Security Header Bypass |
Misconfigured headers |
XSS, clickjacking |
Proper headers, audits |
| 72 |
Inadequate Session Timeout |
Excessive timeouts |
Session hijacking |
Idle termination, timeouts |
| 73 |
Insufficient Logging |
Missing infrastructure |
Detection gaps |
SIEM, alerting |
| 74 |
Business Logic Flaws |
Insecure design |
Fraud, unauthorized ops |
Threat modeling, testing |
Phase 14: Mobile and IoT Security
| # |
Vulnerability |
Root Cause |
Impact |
Mitigation |
| 76 |
Insecure Mobile Storage |
Plain text, weak crypto |
Data theft |
Keychain/Keystore, encrypt |
| 77 |
Insecure Mobile Transmission |
HTTP, cert failures |
Traffic interception |
TLS, cert pinning |
| 78 |
Insecure Mobile APIs |
Missing auth/validation |
Data exposure |
OAuth/JWT, validation |
| 79 |
App Reverse Engineering |
Hardcoded creds |
Credential theft |
Obfuscation, RASP |
| 80 |
IoT Management Issues |
Weak auth, no TLS |
Device takeover |
Strong auth, TLS |
| 81 |
Weak IoT Authentication |
Default passwords |
Unauthorized access |
Unique creds, MFA |
| 82 |
IoT Vulnerabilities |
Design flaws, old firmware |
Botnet recruitment |
Updates, segmentation |
| 83 |
Smart Home Access |
Insecure defaults |
Privacy invasion |
MFA, segmentation |
| 84 |
IoT Privacy Issues |
Excessive collection |
Surveillance |
Data minimization |
Phase 15: Advanced and Zero-Day Threats
| # |
Vulnerability |
Root Cause |
Impact |
Mitigation |
| 89 |
MIME Sniffing |
Missing headers |
XSS, spoofing |
X-Content-Type-Options |
| 91 |
CSP Bypass |
Weak config |
XSS despite CSP |
Strict CSP, nonces |
| 92 |
Inconsistent Validation |
Decentralized logic |
Control bypass |
Centralized validation |
| 93 |
Race Conditions |
Missing sync |
Privilege escalation |
Proper locking |
| 94-95 |
Business Logic Flaws |
Missing validation |
Financial fraud |
Server-side validation |
| 96 |
Account Enumeration |
Different responses |
Targeted attacks |
Uniform responses |
| 98-99 |
Unpatched Vulnerabilities |
Patch delays |
Zero-day exploitation |
Patch management |
| 100 |
Zero-Day Exploits |
Unknown vulns |
Unmitigated attacks |
Defense in depth |
Quick Reference
Vulnerability Categories Summary
| Category |
Vulnerability Numbers |
Key Controls |
| Injection |
1-13 |
Parameterized queries, input validation, output encoding |
| Authentication |
14-23, 85-86 |
MFA, session management, account lockout |
| Data Exposure |
24-27 |
Encryption at rest/transit, access controls, DLP |
| Misconfiguration |
28-36 |
Secure defaults, hardening, patching |
| XML |
37-39, 65 |
Disable external entities, limit expansion |
| Access Control |
40-44 |
RBAC, least privilege, authorization checks |
| Deserialization |
45-47 |
Avoid untrusted data, integrity validation |
| API Security |
48-51, 75 |
OAuth, rate limiting, input validation |
| Communication |
52-55 |
TLS 1.2+, certificate validation, HTTPS |
| Client-Side |
56-60 |
CSP, X-Frame-Options, safe DOM |
| DoS |
61-65 |
Rate limiting, DDoS protection, resource limits |
| SSRF |
66, 87-88 |
URL whitelisting, egress filtering |
| Mobile/IoT |
76-84 |
Encryption, authentication, secure storage |
| Business Logic |
74, 92-97 |
Threat modeling, logic testing |
| Zero-Day |
98-100 |
Defense in depth, threat intelligence |
Critical Security Headers
Content-Security-Policy: default-src 'self'; script-src 'self'
X-Content-Type-Options: nosniff
X-Frame-Options: DENY
X-XSS-Protection: 1; mode=block
Strict-Transport-Security: max-age=31536000; includeSubDomains
Referrer-Policy: strict-origin-when-cross-origin
Permissions-Policy: geolocation=(), microphone=()
OWASP Top 10 Mapping
| OWASP 2021 |
Related Vulnerabilities |
| A01: Broken Access Control |
40-44, 23, 74 |
| A02: Cryptographic Failures |
24-25, 53-55 |
| A03: Injection |
1-13, 37-39 |
| A04: Insecure Design |
74, 92-97 |
| A05: Security Misconfiguration |
26-36 |
| A06: Vulnerable Components |
34, 98-100 |
| A07: Auth Failures |
14-23, 85-86 |
| A08: Data Integrity |
45-47 |
| A09: Logging Failures |
73 |
| A10: SSRF |
66, 87-88 |
Constraints and Limitations
- Vulnerability definitions represent common patterns; specific implementations vary
- Mitigations must be adapted to technology stack and architecture
- New vulnerabilities emerge continuously; reference should be updated
- Some vulnerabilities overlap across categories (e.g., IDOR appears in multiple contexts)
- Effectiveness of mitigations depends on proper implementation
- Automated scanners cannot detect all vulnerability types (especially business logic)
Troubleshooting
Common Assessment Challenges
| Challenge |
Solution |
| False positives in scanning |
Manual verification, contextual analysis |
| Business logic flaws missed |
Manual testing, threat modeling, abuse case analysis |
| Encrypted traffic analysis |
Proxy configuration, certificate installation |
| WAF blocking tests |
Rate adjustment, IP rotation, payload encoding |
| Session handling issues |
Cookie management, authentication state tracking |
| API discovery |
Swagger/OpenAPI enumeration, traffic analysis |
Vulnerability Verification Techniques
| Vulnerability Type |
Verification Approach |
| Injection |
Payload testing with encoded variants |
| XSS |
Alert boxes, cookie access, DOM inspection |
| CSRF |
Cross-origin form submission testing |
| SSRF |
Out-of-band DNS/HTTP callbacks |
| XXE |
External entity with controlled server |
| Access Control |
Horizontal/vertical privilege testing |
| Authentication |
Credential rotation, session analysis |
References
- OWASP Top 10 Web Application Security Risks
- CWE/SANS Top 25 Most Dangerous Software Errors
- OWASP Testing Guide
- OWASP Application Security Verification Standard (ASVS)
- NIST Cybersecurity Framework
- Source: Kumar MS - Top 100 Web Vulnerabilities
When to Use
This skill should be used when the user asks to "identify web application vulnerabilities", "explain common security flaws", "understand vulnerability categories", "learn about injection attacks", "review access control weaknesses", "analyze API security issues", "assess security misconfiguration.
Covers: Top 100 Web Vulnerabilities Reference, Outputs and Deliverables, Injection Vulnerabilities Assessment, Authentication and Session Security, Sensitive Data Exposure.
1---2name: top-web-vulnerabilities3description: This skill should be used when the user asks to "identify web application vulnerabilities", "explain common security flaws", "understand vulnerability categories", "learn about injection attacks", "review access control weaknesses", "analyze API security issues", "assess security misconfiguration...4license: MIT5---6# Top 100 Web Vulnerabilities Reference78> **⚠️ AUTHORIZED USE ONLY**9> This skill is for educational purposes or authorized security assessments only.10> You must have explicit, written permission from the system owner before using this tool.11> Misuse of this tool is illegal and strictly prohibited.1213## Purpose1415Provide a comprehensive, structured reference for the 100 most critical web application vulnerabilities organized by category. This skill enables systematic vulnerability identification, impact assessment, and remediation guidance across the full spectrum of web security threats. Content organized into 15 major vulnerability categories aligned with industry standards and real-world attack patterns.1617## Prerequisites1819- Basic understanding of web application architecture (client-server model, HTTP protocol)20- Familiarity with common web technologies (HTML, JavaScript, SQL, XML, APIs)21- Understanding of authentication and authorization concepts22- Access to web application security testing tools (Burp Suite, OWASP ZAP)23- Knowledge of secure coding principles recommended2425## Outputs and Deliverables2627- Complete vulnerability catalog with definitions, root causes, impacts, and mitigations28- Category-based vulnerability groupings for systematic assessment29- Quick reference for security testing and remediation30- Foundation for vulnerability assessment checklists and security policies3132---3334## Core Workflow3536### Phase 1: Injection Vulnerabilities Assessment3738Evaluate injection attack vectors targeting data processing components:3940**SQL Injection (1)**41- Definition: Malicious SQL code inserted into input fields to manipulate database queries42- Root Cause: Lack of input validation, improper use of parameterized queries43- Impact: Unauthorized data access, data manipulation, database compromise44- Mitigation: Use parameterized queries/prepared statements, input validation, least privilege database accounts4546**Cross-Site Scripting - XSS (2)**47- Definition: Injection of malicious scripts into web pages viewed by other users48- Root Cause: Insufficient output encoding, lack of input sanitization49- Impact: Session hijacking, credential theft, website defacement50- Mitigation: Output encoding, Content Security Policy (CSP), input sanitization5152**Command Injection (5, 11)**53- Definition: Execution of arbitrary system commands through vulnerable applications54- Root Cause: Unsanitized user input passed to system shells55- Impact: Full system compromise, data exfiltration, lateral movement56- Mitigation: Avoid shell execution, whitelist valid commands, strict input validation5758**XML Injection (6), LDAP Injection (7), XPath Injection (8)**59- Definition: Manipulation of XML/LDAP/XPath queries through malicious input60- Root Cause: Improper input handling in query construction61- Impact: Data exposure, authentication bypass, information disclosure62- Mitigation: Input validation, parameterized queries, escape special characters6364**Server-Side Template Injection - SSTI (13)**65- Definition: Injection of malicious code into template engines66- Root Cause: User input embedded directly in template expressions67- Impact: Remote code execution, server compromise68- Mitigation: Sandbox template engines, avoid user input in templates, strict input validation6970### Phase 2: Authentication and Session Security7172Assess authentication mechanism weaknesses:7374**Session Fixation (14)**75- Definition: Attacker sets victim's session ID before authentication76- Root Cause: Session ID not regenerated after login77- Impact: Session hijacking, unauthorized account access78- Mitigation: Regenerate session ID on authentication, use secure session management7980**Brute Force Attack (15)**81- Definition: Systematic password guessing using automated tools82- Root Cause: Lack of account lockout, rate limiting, or CAPTCHA83- Impact: Unauthorized access, credential compromise84- Mitigation: Account lockout policies, rate limiting, MFA, CAPTCHA8586**Session Hijacking (16)**87- Definition: Attacker steals or predicts valid session tokens88- Root Cause: Weak session token generation, insecure transmission89- Impact: Account takeover, unauthorized access90- Mitigation: Secure random token generation, HTTPS, HttpOnly/Secure cookie flags9192**Credential Stuffing and Reuse (22)**93- Definition: Using leaked credentials to access accounts across services94- Root Cause: Users reusing passwords, no breach detection95- Impact: Mass account compromise, data breaches96- Mitigation: MFA, breach password checks, unique credential requirements9798**Insecure "Remember Me" Functionality (85)**99- Definition: Weak persistent authentication token implementation100- Root Cause: Predictable tokens, inadequate expiration controls101- Impact: Unauthorized persistent access, session compromise102- Mitigation: Strong token generation, proper expiration, secure storage103104**CAPTCHA Bypass (86)**105- Definition: Circumventing bot detection mechanisms106- Root Cause: Weak CAPTCHA algorithms, improper validation107- Impact: Automated attacks, credential stuffing, spam108- Mitigation: reCAPTCHA v3, layered bot detection, rate limiting109110### Phase 3: Sensitive Data Exposure111112Identify data protection failures:113114**IDOR - Insecure Direct Object References (23, 42)**115- Definition: Direct access to internal objects via user-supplied references116- Root Cause: Missing authorization checks on object access117- Impact: Unauthorized data access, privacy breaches118- Mitigation: Access control validation, indirect reference maps, authorization checks119120**Data Leakage (24)**121- Definition: Inadvertent disclosure of sensitive information122- Root Cause: Inadequate data protection, weak access controls123- Impact: Privacy breaches, regulatory penalties, reputation damage124- Mitigation: DLP solutions, encryption, access controls, security training125126**Unencrypted Data Storage (25)**127- Definition: Storing sensitive data without encryption128- Root Cause: Failure to implement encryption at rest129- Impact: Data breaches if storage compromised130- Mitigation: Full-disk encryption, database encryption, secure key management131132**Information Disclosure (33)**133- Definition: Exposure of system details through error messages or responses134- Root Cause: Verbose error handling, debug information in production135- Impact: Reconnaissance for further attacks, credential exposure136- Mitigation: Generic error messages, disable debug mode, secure logging137138### Phase 4: Security Misconfiguration139140Assess configuration weaknesses:141142**Missing Security Headers (26)**143- Definition: Absence of protective HTTP headers (CSP, X-Frame-Options, HSTS)144- Root Cause: Inadequate server configuration145- Impact: XSS attacks, clickjacking, protocol downgrade146- Mitigation: Implement CSP, X-Content-Type-Options, X-Frame-Options, HSTS147148**Default Passwords (28)**149- Definition: Unchanged default credentials on systems/applications150- Root Cause: Failure to change vendor defaults151- Impact: Unauthorized access, system compromise152- Mitigation: Mandatory password changes, strong password policies153154**Directory Listing (29)**155- Definition: Web server exposes directory contents156- Root Cause: Improper server configuration157- Impact: Information disclosure, sensitive file exposure158- Mitigation: Disable directory indexing, use default index files159160**Unprotected API Endpoints (30)**161- Definition: APIs lacking authentication or authorization162- Root Cause: Missing security controls on API routes163- Impact: Unauthorized data access, API abuse164- Mitigation: OAuth/API keys, access controls, rate limiting165166**Open Ports and Services (31)**167- Definition: Unnecessary network services exposed168- Root Cause: Failure to minimize attack surface169- Impact: Exploitation of vulnerable services170- Mitigation: Port scanning audits, firewall rules, service minimization171172**Misconfigured CORS (35)**173- Definition: Overly permissive Cross-Origin Resource Sharing policies174- Root Cause: Wildcard origins, improper CORS configuration175- Impact: Cross-site request attacks, data theft176- Mitigation: Whitelist trusted origins, validate CORS headers177178**Unpatched Software (34)**179- Definition: Systems running outdated vulnerable software180- Root Cause: Neglected patch management181- Impact: Exploitation of known vulnerabilities182- Mitigation: Patch management program, vulnerability scanning, automated updates183184### Phase 5: XML-Related Vulnerabilities185186Evaluate XML processing security:187188**XXE - XML External Entity Injection (37)**189- Definition: Exploitation of XML parsers to access files or internal systems190- Root Cause: External entity processing enabled191- Impact: File disclosure, SSRF, denial of service192- Mitigation: Disable external entities, use safe XML parsers193194**XEE - XML Entity Expansion (38)**195- Definition: Excessive entity expansion causing resource exhaustion196- Root Cause: Unlimited entity expansion allowed197- Impact: Denial of service, parser crashes198- Mitigation: Limit entity expansion, configure parser restrictions199200**XML Bomb (Billion Laughs) (39)**201- Definition: Crafted XML with nested entities consuming resources202- Root Cause: Recursive entity definitions203- Impact: Memory exhaustion, denial of service204- Mitigation: Entity expansion limits, input size restrictions205206**XML Denial of Service (65)**207- Definition: Specially crafted XML causing excessive processing208- Root Cause: Complex document structures without limits209- Impact: CPU/memory exhaustion, service unavailability210- Mitigation: Schema validation, size limits, processing timeouts211212### Phase 6: Broken Access Control213214Assess authorization enforcement:215216**Inadequate Authorization (40)**217- Definition: Failure to properly enforce access controls218- Root Cause: Weak authorization policies, missing checks219- Impact: Unauthorized access to sensitive resources220- Mitigation: RBAC, centralized IAM, regular access reviews221222**Privilege Escalation (41)**223- Definition: Gaining elevated access beyond intended permissions224- Root Cause: Misconfigured permissions, system vulnerabilities225- Impact: Full system compromise, data manipulation226- Mitigation: Least privilege, regular patching, privilege monitoring227228**Forceful Browsing (43)**229- Definition: Direct URL manipulation to access restricted resources230- Root Cause: Weak access controls, predictable URLs231- Impact: Unauthorized file/directory access232- Mitigation: Server-side access controls, unpredictable resource paths233234**Missing Function-Level Access Control (44)**235- Definition: Unprotected administrative or privileged functions236- Root Cause: Authorization only at UI level237- Impact: Unauthorized function execution238- Mitigation: Server-side authorization for all functions, RBAC239240### Phase 7: Insecure Deserialization241242Evaluate object serialization security:243244**Remote Code Execution via Deserialization (45)**245- Definition: Arbitrary code execution through malicious serialized objects246- Root Cause: Untrusted data deserialized without validation247- Impact: Complete system compromise, code execution248- Mitigation: Avoid deserializing untrusted data, integrity checks, type validation249250**Data Tampering (46)**251- Definition: Unauthorized modification of serialized data252- Root Cause: Missing integrity verification253- Impact: Data corruption, privilege manipulation254- Mitigation: Digital signatures, HMAC validation, encryption255256**Object Injection (47)**257- Definition: Malicious object instantiation during deserialization258- Root Cause: Unsafe deserialization practices259- Impact: Code execution, unauthorized access260- Mitigation: Type restrictions, class whitelisting, secure libraries261262### Phase 8: API Security Assessment263264Evaluate API-specific vulnerabilities:265266**Insecure API Endpoints (48)**267- Definition: APIs without proper security controls268- Root Cause: Poor API design, missing authentication269- Impact: Data breaches, unauthorized access270- Mitigation: OAuth/JWT, HTTPS, input validation, rate limiting271272**API Key Exposure (49)**273- Definition: Leaked or exposed API credentials274- Root Cause: Hardcoded keys, insecure storage275- Impact: Unauthorized API access, abuse276- Mitigation: Secure key storage, rotation, environment variables277278**Lack of Rate Limiting (50)**279- Definition: No controls on API request frequency280- Root Cause: Missing throttling mechanisms281- Impact: DoS, API abuse, resource exhaustion282- Mitigation: Rate limits per user/IP, throttling, DDoS protection283284**Inadequate Input Validation (51)**285- Definition: APIs accepting unvalidated user input286- Root Cause: Missing server-side validation287- Impact: Injection attacks, data corruption288- Mitigation: Strict validation, parameterized queries, WAF289290**API Abuse (75)**291- Definition: Exploiting API functionality for malicious purposes292- Root Cause: Excessive trust in client input293- Impact: Data theft, account takeover, service abuse294- Mitigation: Strong authentication, behavior analysis, anomaly detection295296### Phase 9: Communication Security297298Assess transport layer protections:299300**Man-in-the-Middle Attack (52)**301- Definition: Interception of communication between parties302- Root Cause: Unencrypted channels, compromised networks303- Impact: Data theft, session hijacking, impersonation304- Mitigation: TLS/SSL, certificate pinning, mutual authentication305306**Insufficient Transport Layer Security (53)**307- Definition: Weak or outdated encryption for data in transit308- Root Cause: Outdated protocols (SSLv2/3), weak ciphers309- Impact: Traffic interception, credential theft310- Mitigation: TLS 1.2+, strong cipher suites, HSTS311312**Insecure SSL/TLS Configuration (54)**313- Definition: Improperly configured encryption settings314- Root Cause: Weak ciphers, missing forward secrecy315- Impact: Traffic decryption, MITM attacks316- Mitigation: Modern cipher suites, PFS, certificate validation317318**Insecure Communication Protocols (55)**319- Definition: Use of unencrypted protocols (HTTP, Telnet, FTP)320- Root Cause: Legacy systems, security unawareness321- Impact: Traffic sniffing, credential exposure322- Mitigation: HTTPS, SSH, SFTP, VPN tunnels323324### Phase 10: Client-Side Vulnerabilities325326Evaluate browser-side security:327328**DOM-based XSS (56)**329- Definition: XSS through client-side JavaScript manipulation330- Root Cause: Unsafe DOM manipulation with user input331- Impact: Session theft, credential harvesting332- Mitigation: Safe DOM APIs, CSP, input sanitization333334**Insecure Cross-Origin Communication (57)**335- Definition: Improper handling of cross-origin requests336- Root Cause: Relaxed CORS/SOP policies337- Impact: Data leakage, CSRF attacks338- Mitigation: Strict CORS, CSRF tokens, origin validation339340**Browser Cache Poisoning (58)**341- Definition: Manipulation of cached content342- Root Cause: Weak cache validation343- Impact: Malicious content delivery344- Mitigation: Cache-Control headers, HTTPS, integrity checks345346**Clickjacking (59, 71)**347- Definition: UI redress attack tricking users into clicking hidden elements348- Root Cause: Missing frame protection349- Impact: Unintended actions, credential theft350- Mitigation: X-Frame-Options, CSP frame-ancestors, frame-busting351352**HTML5 Security Issues (60)**353- Definition: Vulnerabilities in HTML5 APIs (WebSockets, Storage, Geolocation)354- Root Cause: Improper API usage, insufficient validation355- Impact: Data leakage, XSS, privacy violations356- Mitigation: Secure API usage, input validation, sandboxing357358### Phase 11: Denial of Service Assessment359360Evaluate availability threats:361362**DDoS - Distributed Denial of Service (61)**363- Definition: Overwhelming systems with traffic from multiple sources364- Root Cause: Botnets, amplification attacks365- Impact: Service unavailability, revenue loss366- Mitigation: DDoS protection services, rate limiting, CDN367368**Application Layer DoS (62)**369- Definition: Targeting application logic to exhaust resources370- Root Cause: Inefficient code, resource-intensive operations371- Impact: Application unavailability, degraded performance372- Mitigation: Rate limiting, caching, WAF, code optimization373374**Resource Exhaustion (63)**375- Definition: Depleting CPU, memory, disk, or network resources376- Root Cause: Inefficient resource management377- Impact: System crashes, service degradation378- Mitigation: Resource quotas, monitoring, load balancing379380**Slowloris Attack (64)**381- Definition: Keeping connections open with partial HTTP requests382- Root Cause: No connection timeouts383- Impact: Web server resource exhaustion384- Mitigation: Connection timeouts, request limits, reverse proxy385386### Phase 12: Server-Side Request Forgery387388Assess SSRF vulnerabilities:389390**SSRF - Server-Side Request Forgery (66)**391- Definition: Manipulating server to make requests to internal resources392- Root Cause: Unvalidated user-controlled URLs393- Impact: Internal network access, data theft, cloud metadata access394- Mitigation: URL whitelisting, network segmentation, egress filtering395396**Blind SSRF (87)**397- Definition: SSRF without direct response visibility398- Root Cause: Similar to SSRF, harder to detect399- Impact: Data exfiltration, internal reconnaissance400- Mitigation: Allowlists, WAF, network restrictions401402**Time-Based Blind SSRF (88)**403- Definition: Inferring SSRF success through response timing404- Root Cause: Processing delays indicating request outcomes405- Impact: Prolonged exploitation, detection evasion406- Mitigation: Request timeouts, anomaly detection, timing monitoring407408### Phase 13: Additional Web Vulnerabilities409410| # | Vulnerability | Root Cause | Impact | Mitigation |411|---|--------------|-----------|--------|------------|412| 67 | HTTP Parameter Pollution | Inconsistent parsing | Injection, ACL bypass | Strict parsing, validation |413| 68 | Insecure Redirects | Unvalidated targets | Phishing, malware | Whitelist destinations |414| 69 | File Inclusion (LFI/RFI) | Unvalidated paths | Code exec, disclosure | Whitelist files, disable RFI |415| 70 | Security Header Bypass | Misconfigured headers | XSS, clickjacking | Proper headers, audits |416| 72 | Inadequate Session Timeout | Excessive timeouts | Session hijacking | Idle termination, timeouts |417| 73 | Insufficient Logging | Missing infrastructure | Detection gaps | SIEM, alerting |418| 74 | Business Logic Flaws | Insecure design | Fraud, unauthorized ops | Threat modeling, testing |419420### Phase 14: Mobile and IoT Security421422| # | Vulnerability | Root Cause | Impact | Mitigation |423|---|--------------|-----------|--------|------------|424| 76 | Insecure Mobile Storage | Plain text, weak crypto | Data theft | Keychain/Keystore, encrypt |425| 77 | Insecure Mobile Transmission | HTTP, cert failures | Traffic interception | TLS, cert pinning |426| 78 | Insecure Mobile APIs | Missing auth/validation | Data exposure | OAuth/JWT, validation |427| 79 | App Reverse Engineering | Hardcoded creds | Credential theft | Obfuscation, RASP |428| 80 | IoT Management Issues | Weak auth, no TLS | Device takeover | Strong auth, TLS |429| 81 | Weak IoT Authentication | Default passwords | Unauthorized access | Unique creds, MFA |430| 82 | IoT Vulnerabilities | Design flaws, old firmware | Botnet recruitment | Updates, segmentation |431| 83 | Smart Home Access | Insecure defaults | Privacy invasion | MFA, segmentation |432| 84 | IoT Privacy Issues | Excessive collection | Surveillance | Data minimization |433434### Phase 15: Advanced and Zero-Day Threats435436| # | Vulnerability | Root Cause | Impact | Mitigation |437|---|--------------|-----------|--------|------------|438| 89 | MIME Sniffing | Missing headers | XSS, spoofing | X-Content-Type-Options |439| 91 | CSP Bypass | Weak config | XSS despite CSP | Strict CSP, nonces |440| 92 | Inconsistent Validation | Decentralized logic | Control bypass | Centralized validation |441| 93 | Race Conditions | Missing sync | Privilege escalation | Proper locking |442| 94-95 | Business Logic Flaws | Missing validation | Financial fraud | Server-side validation |443| 96 | Account Enumeration | Different responses | Targeted attacks | Uniform responses |444| 98-99 | Unpatched Vulnerabilities | Patch delays | Zero-day exploitation | Patch management |445| 100 | Zero-Day Exploits | Unknown vulns | Unmitigated attacks | Defense in depth |446447---448449## Quick Reference450451### Vulnerability Categories Summary452453| Category | Vulnerability Numbers | Key Controls |454|----------|----------------------|--------------|455| Injection | 1-13 | Parameterized queries, input validation, output encoding |456| Authentication | 14-23, 85-86 | MFA, session management, account lockout |457| Data Exposure | 24-27 | Encryption at rest/transit, access controls, DLP |458| Misconfiguration | 28-36 | Secure defaults, hardening, patching |459| XML | 37-39, 65 | Disable external entities, limit expansion |460| Access Control | 40-44 | RBAC, least privilege, authorization checks |461| Deserialization | 45-47 | Avoid untrusted data, integrity validation |462| API Security | 48-51, 75 | OAuth, rate limiting, input validation |463| Communication | 52-55 | TLS 1.2+, certificate validation, HTTPS |464| Client-Side | 56-60 | CSP, X-Frame-Options, safe DOM |465| DoS | 61-65 | Rate limiting, DDoS protection, resource limits |466| SSRF | 66, 87-88 | URL whitelisting, egress filtering |467| Mobile/IoT | 76-84 | Encryption, authentication, secure storage |468| Business Logic | 74, 92-97 | Threat modeling, logic testing |469| Zero-Day | 98-100 | Defense in depth, threat intelligence |470471### Critical Security Headers472473```474Content-Security-Policy: default-src 'self'; script-src 'self'475X-Content-Type-Options: nosniff476X-Frame-Options: DENY477X-XSS-Protection: 1; mode=block478Strict-Transport-Security: max-age=31536000; includeSubDomains479Referrer-Policy: strict-origin-when-cross-origin480Permissions-Policy: geolocation=(), microphone=()481```482483### OWASP Top 10 Mapping484485| OWASP 2021 | Related Vulnerabilities |486|------------|------------------------|487| A01: Broken Access Control | 40-44, 23, 74 |488| A02: Cryptographic Failures | 24-25, 53-55 |489| A03: Injection | 1-13, 37-39 |490| A04: Insecure Design | 74, 92-97 |491| A05: Security Misconfiguration | 26-36 |492| A06: Vulnerable Components | 34, 98-100 |493| A07: Auth Failures | 14-23, 85-86 |494| A08: Data Integrity | 45-47 |495| A09: Logging Failures | 73 |496| A10: SSRF | 66, 87-88 |497498---499500## Constraints and Limitations501502- Vulnerability definitions represent common patterns; specific implementations vary503- Mitigations must be adapted to technology stack and architecture504- New vulnerabilities emerge continuously; reference should be updated505- Some vulnerabilities overlap across categories (e.g., IDOR appears in multiple contexts)506- Effectiveness of mitigations depends on proper implementation507- Automated scanners cannot detect all vulnerability types (especially business logic)508509---510511## Troubleshooting512513### Common Assessment Challenges514515| Challenge | Solution |516|-----------|----------|517| False positives in scanning | Manual verification, contextual analysis |518| Business logic flaws missed | Manual testing, threat modeling, abuse case analysis |519| Encrypted traffic analysis | Proxy configuration, certificate installation |520| WAF blocking tests | Rate adjustment, IP rotation, payload encoding |521| Session handling issues | Cookie management, authentication state tracking |522| API discovery | Swagger/OpenAPI enumeration, traffic analysis |523524### Vulnerability Verification Techniques525526| Vulnerability Type | Verification Approach |527|-------------------|----------------------|528| Injection | Payload testing with encoded variants |529| XSS | Alert boxes, cookie access, DOM inspection |530| CSRF | Cross-origin form submission testing |531| SSRF | Out-of-band DNS/HTTP callbacks |532| XXE | External entity with controlled server |533| Access Control | Horizontal/vertical privilege testing |534| Authentication | Credential rotation, session analysis |535536---537538## References539540- OWASP Top 10 Web Application Security Risks541- CWE/SANS Top 25 Most Dangerous Software Errors542- OWASP Testing Guide543- OWASP Application Security Verification Standard (ASVS)544- NIST Cybersecurity Framework545- Source: Kumar MS - Top 100 Web Vulnerabilities546547## When to Use548549This skill should be used when the user asks to "identify web application vulnerabilities", "explain common security flaws", "understand vulnerability categories", "learn about injection attacks", "review access control weaknesses", "analyze API security issues", "assess security misconfiguration.550551Covers: Top 100 Web Vulnerabilities Reference, Outputs and Deliverables, Injection Vulnerabilities Assessment, Authentication and Session Security, Sensitive Data Exposure.