Chasseur de primes de sécurité

VérifiéPrudence

Chasse aux vulnérabilités exploitables et éligibles aux programmes de bug bounty, en se concentrant sur les vecteurs accessibles à distance.

Spar Skills Guide Bot
SecuriteIntermédiaire
1029/08/2026
Claude CodeCursorWindsurfCopilotCodex
#security#bounty-hunting#vulnerability-discovery#code-audit#penetration-testing

Recommandé pour

Notre avis

Ce skill guide les chercheurs en sécurité dans la chasse aux vulnérabilités exploitables et rapportables dans un dépôt, en filtrant les faux positifs et en préparant des soumissions de bug bounty.

Points forts

  • Se concentre sur les vulnérabilités accessibles à distance et contrôlées par l'utilisateur.
  • Fournit un workflow clair de triage et une structure de rapport complète.
  • Évite les motifs de faible signal souvent rejetés par les plateformes de bug bounty.

Limites

  • Nécessite une solide expertise en sécurité pour interpréter les résultats.
  • Ne remplace pas une vérification manuelle approfondie de chaque code path.
  • Ne couvre pas tous les types de vulnérabilités possibles, seulement les modèles listés.
Quand l'utiliser

Utilisez ce skill lorsque vous analysez un dépôt pour des failles exploitables en vue d'une soumission bug bounty ou d'une divulgation responsable.

Quand l'éviter

Ne l'utilisez pas pour une revue générale de qualité de code ou de bonnes pratiques de sécurité.

Analyse de sécurité

Prudence
Score qualité88/100

The skill guides vulnerability discovery and includes a bash command to run semgrep, a static analysis tool. It does not instruct destructive or exfiltrating actions, but because it involves command execution and potential remote interaction for PoC verification, it is rated caution.

Points d'attention
  • The skill instructs running semgrep via bash and crafting proof-of-concept requests, which involves executing commands and potentially interacting with remote systems; this is legitimate for bounty research but requires cautious handling.

Exemples

Hunt SSRF in a web app
Scan this repository for SSRF vulnerabilities. Focus on HTTP handlers that accept URLs from user input and trace the sink. Ignore local-only code paths and give me a ranked list of candidate vulnerabilities with code locations.
Triage semgrep output for bounty-worthiness
Run semgrep on this repo and then triage the results. Drop tests, demos, fixtures, and vendored code. Keep only findings with a clear network or user-controlled route, and summarize the top exploit candidates.
Draft a bounty report
I found a command injection vulnerability in the file upload handler at src/upload.php line 45. The user-controlled filename is passed to shell_exec without sanitization. Write a complete bounty report with description, vulnerable code snippet, PoC, impact, and affected version.

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. Use when hunting reportable, remotely reachable vulnerabilities in a repository. metadata: version: "1.0.0" origin: ECC direct-port adaptation

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() 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
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