Security bounty hunter
Skill goharabbas321/zeoel-framework/.agents/skills/zeoel/skills/security-bounty-hunter
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.From its SKILL.md
npx -y skills add goharabbas321/zeoel-framework --skill security-bounty-hunterAssembled from the repository path, not quoted from the project. Check it against their README if it does not work.
2 things to look at
- no licenseNo license file was found in the repository. Code published without one is not open source by default, so using it at work is a question for whoever answers licensing questions where you are.
- 0 stars0 stars. Stars are a popularity signal and not a quality one, but at this level it is likely that nobody has read this closely except its author, and you would be relying on your own review.
SKILL.md
3.5 KB, 713 tokens by cl100k_base, as published. Nobody here has run it
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:
| Pattern | CWE | Typical impact |
|---|---|---|
| SSRF through user-controlled URLs | CWE-918 | internal network access, cloud metadata theft |
| Auth bypass in middleware or API guards | CWE-287 | unauthorized account or data access |
| Remote deserialization or upload-to-RCE paths | CWE-502 | code execution |
| SQL injection in reachable endpoints | CWE-89 | data exfiltration, auth bypass, data destruction |
| Command injection in request handlers | CWE-78 | code execution |
| Path traversal in file-serving paths | CWE-22 | arbitrary file read or write |
| Auto-triggered XSS | CWE-79 | session 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()orexec()in CLI-only toolingshell=Trueon 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
- Check scope first: program rules, SECURITY.md, disclosure channel, and exclusions.
- Find real entrypoints: HTTP handlers, uploads, background jobs, webhooks, parsers, and integration endpoints.
- Run static tooling where it helps, but treat it as triage input only.
- Read the real code path end to end.
- Prove user control reaches a meaningful sink.
- Confirm exploitability and impact with the smallest safe PoC possible.
- 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
What ships with it
Read from the repository
Just SKILL.md. No reference files, no scripts.
Gives 0 of the 12 instructions most security skills give in 713 tokens
Counted across 666 of the 889 authors here whose files we hold, read 2026-09-06
- Use parameterized queries for database accessin 82 of 666, across 79 files
- Hash passwords with BCryptin 55 of 666, across 39 files
- Implement rate limiting for public endpointsin 48 of 666, across 34 files
- Use environment variables for secretsin 35 of 666
- Scan dependencies for vulnerabilitiesin 35 of 666, across 24 files
- Validate and sanitize all user inputin 35 of 666, across 32 files
- Add security headers to all responsesin 34 of 666, across 20 files
- Validate all external input at the system boundaryin 26 of 666, across 25 files
- Use parameterized queries to prevent SQL injectionin 25 of 666, across 13 files
- Store secrets in Vault or environment variablesin 25 of 666, across 10 files
- Run containers as a non-root userin 21 of 666, across 18 files
- Validate all input using Bean Validationin 19 of 666, across 5 files
Grouped from the skills themselves: near-identical wordings counted once, and counted by distinct author, so one author publishing three of these counts once. Length counted with cl100k_base; the agent that loads this file may tokenize it differently.