PluginBench
Skill
Review
Audit score 70

security-bounty-hunter

affaan-m/ecc

Hunt for exploitable, bounty-worthy security vulnerabilities in repositories with minimal noise.

What is security-bounty-hunter?

Focuses on remotely reachable vulnerabilities suitable for responsible disclosure or bounty submission. Filters out local-only findings and patterns that bounty platforms typically reject, helping you identify high-signal security issues worth reporting.

  • Identifies remotely reachable attack paths in HTTP handlers, uploads, webhooks, and parsers
  • Prioritizes user-controlled inputs flowing to meaningful sinks (SSRF, auth bypass, RCE, SQLi, command injection, path traversal, XSS)
  • Filters out low-signal patterns like local-only deserialization, hardcoded commands, and self-XSS
  • Provides a triage workflow combining static analysis with manual code path verification
  • Generates minimal proof-of-concept validation before reporting

How to install security-bounty-hunter

npx skills add null --skill security-bounty-hunter
Claude Code
Cursor
Windsurf
Cline

How to use security-bounty-hunter

  1. 1.Review the target program's scope, SECURITY.md, disclosure channel, and exclusions
  2. 2.Identify real entrypoints: HTTP handlers, uploads, background jobs, webhooks, parsers, and integration endpoints
  3. 3.Run static tooling (e.g., semgrep) as triage input and filter out tests, demos, vendored code, and non-reachable paths
  4. 4.Manually trace the code path end-to-end to confirm user control reaches a meaningful sink
  5. 5.Create a minimal proof-of-concept to confirm exploitability and impact
  6. 6.Check for duplicates in existing advisories, CVEs, or open tickets before drafting a report
  7. 7.Submit using the provided report structure: description, vulnerable code, PoC, impact, and affected version

Use cases

Good for
  • Scanning a repository for exploitable vulnerabilities to submit to HackerOne or Huntr
  • Triaging security findings to determine which issues qualify for bounty programs
  • Preparing vulnerability reports with proof-of-concept and impact assessment
  • Identifying SSRF, auth bypass, RCE, and injection vulnerabilities in real entrypoints
  • Filtering static analysis results to focus on remotely exploitable issues
Who it's for
  • Security researchers and bounty hunters
  • Developers preparing vulnerability disclosures
  • Teams conducting targeted security assessments
  • Anyone evaluating whether a finding is worth reporting to a bounty program

security-bounty-hunter FAQ

What kinds of vulnerabilities should I focus on?

Remotely reachable issues with user-controlled inputs flowing to meaningful sinks: SSRF, auth bypass, deserialization-to-RCE, SQL injection, command injection, path traversal, and auto-triggered XSS. Skip local-only findings, hardcoded commands, missing headers, and self-XSS.

Should I run static analysis tools?

Yes, but treat them as triage input only. Use semgrep or similar to generate findings, then manually filter out tests, demos, vendored code, and non-reachable paths before investigating further.

How do I know if a finding is exploitable?

Trace the full code path from user input to the sink, confirm the input is genuinely user-controlled, and build a minimal proof-of-concept. If you can't prove exploitability with a working PoC, it's not ready to report.

What should I do before submitting a report?

Verify the code path is reachable from a network boundary, the input is user-controlled, the sink is meaningful, your PoC works, the issue is not already disclosed, and the target is in scope for the bounty program.

What report format should I use?

Include description, vulnerable code (file path and snippet), proof-of-concept, impact, and affected version. Keep it minimal and focused on exploitability.

Full instructions (SKILL.md)

Source of truth, from affaan-m/ecc.


name: security-bounty-hunter description: Hunt for exploitable, bounty-worthy security issues in repositories. Focuses on remotely reachable vulnerabilities that qualify for real reports instead of noisy local-only findings. metadata: origin: ECC direct-port adaptation version: "1.0.0"

Security Bounty Hunter

Use this when the goal is practical vulnerability discovery for responsible disclosure or bounty submission, not a broad best-practices review.

When to Use

  • Scanning a repository for exploitable vulnerabilities
  • Preparing a Huntr, HackerOne, or similar bounty submission
  • Triage where the question is "does this actually pay?" rather than "is this theoretically unsafe?"

How It Works

Bias toward remotely reachable, user-controlled attack paths and throw away patterns that platforms routinely reject as informative or out of scope.

In-Scope Patterns

These are the kinds of issues that consistently matter:

PatternCWETypical impact
SSRF through user-controlled URLsCWE-918internal network access, cloud metadata theft
Auth bypass in middleware or API guardsCWE-287unauthorized account or data access
Remote deserialization or upload-to-RCE pathsCWE-502code execution
SQL injection in reachable endpointsCWE-89data exfiltration, auth bypass, data destruction
Command injection in request handlersCWE-78code execution
Path traversal in file-serving pathsCWE-22arbitrary file read or write
Auto-triggered XSSCWE-79session theft, admin compromise

Skip These

These are usually low-signal or out of bounty scope unless the program says otherwise:

  • Local-only pickle.loads, torch.load, or equivalent with no remote path
  • eval() or exec() in CLI-only tooling
  • shell=True on fully hardcoded commands
  • Missing security headers by themselves
  • Generic rate-limiting complaints without exploit impact
  • Self-XSS requiring the victim to paste code manually
  • CI/CD injection that is not part of the target program scope
  • Demo, example, or test-only code

Workflow

  1. Check scope first: program rules, SECURITY.md, disclosure channel, and exclusions.
  2. Find real entrypoints: HTTP handlers, uploads, background jobs, webhooks, parsers, and integration endpoints.
  3. Run static tooling where it helps, but treat it as triage input only.
  4. Read the real code path end to end.
  5. Prove user control reaches a meaningful sink.
  6. Confirm exploitability and impact with the smallest safe PoC possible.
  7. Check for duplicates before drafting a report.

Example Triage Loop

semgrep --config=auto --severity=ERROR --severity=WARNING --json

Then manually filter:

  • drop tests, demos, fixtures, vendored code
  • drop local-only or non-reachable paths
  • keep only findings with a clear network or user-controlled route

Report Structure

## Description
[What the vulnerability is and why it matters]

## Vulnerable Code
[File path, line range, and a small snippet]

## Proof of Concept
[Minimal working request or script]

## Impact
[What the attacker can achieve]

## Affected Version
[Version, commit, or deployment target tested]

Quality Gate

Before submitting:

  • The code path is reachable from a real user or network boundary
  • The input is genuinely user-controlled
  • The sink is meaningful and exploitable
  • The PoC works
  • The issue is not already covered by an advisory, CVE, or open ticket
  • The target is actually in scope for the bounty program