Token导航 LogoToken导航TokenDH.com
研究检索操作浏览器github未标认证来源可访问许可证需确认审计提醒

conducting-external-reconnaissance-with-osint使用 osint 进行外部侦察

Agent Skill

conducting-external-reconnaissance-with-osint 用于查找、检索和筛选相关信息,适合在 Codex、Claude、Cursor、Gemini CLI 中需要根据关键词、任务场景或来源线索快速定位候选结果时使用。可结合来源仓库、安装命令和原始 README 继续核验具体用法。安装前建议确认权限范围、维护状态,以及是否会触发联网、命令执行或文件读写。

总安装

1,236

周安装

51

GitHub Stars

5,933

下载量

404
CodexClaudeCursorGemini CLI

安装说明

本站只整理中文说明和来源信息,不托管安装包,也不代用户安装。

GitHub

来源数

2

许可证

unknown

最后核验

2026-05-01

来源状态

来源可访问

安装方式

通过对话安装

复制提示词发给支持本地命令或 Skills 的 AI 助手,先确认命令和权限,再让它执行。

请帮我安装这个 Agent Skill:conducting-external-reconnaissance-with-osint(使用 osint 进行外部侦察)
来源仓库:https://github.com/mukul975/anthropic-cybersecurity-skills
仓库路径:skills/conducting-external-reconnaissance-with-osint
安装命令:
npx skills add https://github.com/mukul975/anthropic-cybersecurity-skills --skill conducting-external-reconnaissance-with-osint
安装前请先检查当前环境是否支持对应 CLI,并向我确认将要执行的命令、安装目录、联网范围和文件读写权限;确认后再执行。

命令行安装

复制命令到本机终端执行。该命令会通过 npx skills 从第三方来源获取 Skill;本站只展示命令,不托管安装包,也不自动执行。

skills.shnpx skills
npx skills add https://github.com/mukul975/anthropic-cybersecurity-skills --skill conducting-external-reconnaissance-with-osint

简介

执行渗透测试的初始侦察阶段,收集组织外部情报。

  • 映射外部攻击面,识别未知或影子 IT 资产。
  • 收集员工信息和公开泄露数据进行威胁分析。
  • 安装前需确认权限范围和维护状态,注意是否涉及联网、命令执行或文件读写操作。
  • conducting-external-reconnaissance-with-osint 属于研究检索类 Skill,可作为该场景下的辅助能力补充。

SKILL.md

Conducting External Reconnaissance with OSINT

When to Use

  • Performing the initial reconnaissance phase of a penetration test to gather intelligence before active scanning
  • Mapping an organization's external attack surface to identify unknown or shadow IT assets
  • Collecting employee information, email formats, and organizational structure for social engineering campaigns
  • Identifying exposed credentials, leaked data, or sensitive documents published on the internet
  • Scoping the breadth of an organization's digital footprint prior to a red team engagement

Do not use for stalking, harassment, or unauthorized surveillance of individuals. OSINT gathering must be conducted within the scope of an authorized engagement and comply with applicable privacy laws (GDPR, CCPA).

Prerequisites

  • Written authorization to perform reconnaissance against the target organization
  • Dedicated research workstation with a VPN or Tor for anonymized queries when required
  • OSINT framework tools installed: Amass, theHarvester, Shodan CLI, Recon-ng, SpiderFoot
  • API keys for Shodan, Censys, SecurityTrails, Hunter.io, VirusTotal, and GitHub for enhanced results
  • Disposable email accounts for accessing services that require registration during research

Workflow

Step 1: Domain and DNS Enumeration

Enumerate all domains, subdomains, and DNS records associated with the target:

  • Root domain identification: Start with the primary domain and identify all related domains through reverse WHOIS lookups on registrant name, email, and organization using whoxy.com or domaintools.com
  • Subdomain enumeration: Run multiple tools for comprehensive coverage:

- amass enum -passive -d target.com -o amass_subs.txt for passive subdomain discovery from 40+ data sources - subfinder -d target.com -all -o subfinder_subs.txt for fast passive enumeration - crt.sh certificate transparency log queries: curl -s "https://crt.sh/?q=%25.target.com&output=json" | jq -r '.[].name_value' | sort -u

  • DNS record analysis: Query for all record types: dig target.com ANY, check for SPF, DKIM, DMARC records that reveal email infrastructure, and enumerate MX records to identify email providers
  • Zone transfer attempt: dig axfr @ns1.target.com target.com to check for misconfigured DNS servers
  • Consolidate results: Merge, deduplicate, and resolve all discovered subdomains to IP addresses. Map IP addresses to ASN and hosting providers.

Step 2: Infrastructure and Service Discovery

Identify internet-facing infrastructure without directly scanning target systems:

  • Shodan: shodan search "ssl.cert.subject.cn:target.com" to find all internet-facing services with TLS certificates for the target domain. Also search by organization name and IP ranges.
  • Censys: Search for target's IP ranges and TLS certificates to identify services, technologies, and potential vulnerabilities indexed from internet-wide scanning
  • Cloud asset discovery: Check for S3 buckets (target-com, target-backup, target-dev), Azure Blob storage (target.blob.core.windows.net), and GCP storage using tools like cloud_enum
  • WAF and CDN identification: Use wafw00f target.com to identify web application firewalls and CDN providers that may mask the origin server IP
  • Historical data: Use Wayback Machine (web.archive.org) to find removed pages, old application versions, and forgotten endpoints

Step 3: Email and Personnel Intelligence

Gather employee information and email addresses for social engineering preparation:

  • Email harvesting: theHarvester -d target.com -b all -f harvest_results.html to collect emails from search engines, LinkedIn, and data sources
  • Email format identification: Use hunter.io to determine the email format (first.last, flast, firstl) and verify deliverability
  • LinkedIn reconnaissance: Identify employees by department, particularly IT administrators, security team members, and executives. Note technologies mentioned in job postings and employee profiles.
  • Organizational chart: Build an org chart from LinkedIn data to understand reporting structures, identify key personnel, and map departments
  • Social media analysis: Review employee social media profiles for information about internal tools, technologies, office locations, badge photos, and security practices
  • Job postings: Analyze current and historical job postings on the company career page and job boards for technology stack details, tools, and infrastructure information

Step 4: Credential and Data Leak Analysis

Search for exposed credentials and sensitive data:

  • Breach databases: Check haveibeenpwned.com API for breached email addresses associated with the target domain
  • Paste sites: Search Pastebin, GitHub Gists, and similar paste sites for leaked credentials, configuration files, or internal documents
  • Code repositories: Search GitHub, GitLab, and Bitbucket for:

- org:target "password", org:target "api_key", org:target "secret" - Use trufflehog or gitleaks for automated secret scanning across the target's public repositories

  • Document metadata: Download publicly available documents (PDF, DOCX, XLSX) from the target website and extract metadata using exiftool to reveal internal usernames, software versions, printer names, and file paths
  • Google dorking: Use targeted search operators:

- site:target.com filetype:pdf for public documents - site:target.com inurl:admin for admin panels - site:target.com "index of /" for directory listings - site:pastebin.com "target.com" for paste site mentions

Step 5: Technology Stack Profiling

Identify the technologies, frameworks, and services used by the target:

  • Web technology fingerprinting: Use whatweb target.com or Wappalyzer browser extension to identify CMS, frameworks, JavaScript libraries, analytics, and server software
  • SSL/TLS analysis: sslyze target.com or testssl.sh target.com to identify cipher suites, protocol versions, certificate details, and cryptographic weaknesses
  • JavaScript analysis: Download and review JavaScript files for framework identifiers, API endpoints, internal hostnames, and version strings
  • DNS-based service identification: Review TXT records for service providers (e.g., v=spf1 include:_spf.google.com indicates Google Workspace, MS=msXXXXXX indicates Microsoft 365)
  • Mobile app analysis: Download the target's mobile applications from app stores and analyze with apktool (Android) or frida for hardcoded URLs, API endpoints, and embedded credentials

Key Concepts

TermDefinition
OSINTOpen Source Intelligence; intelligence collected from publicly available sources including websites, social media, public records, and government data
Passive ReconnaissanceInformation gathering without directly interacting with target systems, leaving no footprint in target logs
Active ReconnaissanceInformation gathering that involves direct interaction with target systems (scanning, probing) and may be logged
Certificate TransparencyPublic logs of TLS certificates issued by certificate authorities, queryable to discover subdomains and infrastructure
Attack SurfaceThe sum of all points where an unauthorized user can attempt to enter or extract data from an environment
Google DorkingUsing advanced Google search operators to find sensitive information indexed by search engines that was not intended to be public
Shadow ITTechnology systems and services deployed by employees or departments without the knowledge or approval of the IT department

Tools & Systems

  • Amass (OWASP): Comprehensive subdomain enumeration tool that combines passive sources, DNS brute-forcing, and certificate transparency log analysis
  • Shodan: Internet-wide scanning database that indexes services, banners, and metadata for internet-connected devices, searchable by IP, domain, or organization
  • theHarvester: OSINT tool for gathering emails, subdomains, hosts, employee names, and open ports from public sources
  • SpiderFoot: Automated OSINT collection platform that queries 200+ data sources and correlates findings into a unified graph
  • Recon-ng: Modular web reconnaissance framework with a database backend for organizing and cross-referencing discovered intelligence

Common Scenarios

Scenario: Pre-Engagement Reconnaissance for a Red Team Exercise

Context: A technology company has contracted a red team assessment. Before active testing begins, the team conducts passive OSINT to map the attack surface and identify potential entry points. The target is a SaaS company with 500 employees and a primary domain of techcorp.io.

Approach:

  1. Enumerate 147 subdomains via Amass and crt.sh, including staging.techcorp.io, jenkins.techcorp.io, and vpn.techcorp.io
  2. Shodan reveals a forgotten Elasticsearch instance on port 9200 with no authentication exposed to the internet
  3. theHarvester collects 89 employee email addresses, revealing the format first.last@techcorp.io
  4. GitHub search discovers a former developer's public repository containing a .env file with AWS access keys
  5. LinkedIn analysis reveals the company uses Okta for SSO, Jira for project management, and AWS for hosting
  6. Google dorking finds a directory listing on docs.techcorp.io exposing internal architecture diagrams
  7. Compile all intelligence into a reconnaissance report that feeds directly into the threat modeling and attack planning phases

Pitfalls:

  • Relying on a single subdomain enumeration tool and missing assets found by other tools using different data sources
  • Failing to check cloud storage services (S3, Azure Blob, GCP) for publicly accessible buckets
  • Not searching for credentials in public code repositories, which frequently yield immediate access
  • Conducting active scanning (port scans, vulnerability scans) during what should be a passive-only phase

Output Format

## External Reconnaissance Report - TechCorp.io

### Attack Surface Summary
- **Domains discovered**: 3 (techcorp.io, techcorp.com, techcorpapp.com)
- **Subdomains enumerated**: 147 unique subdomains across all domains
- **Unique IP addresses**: 34 IPs mapped across AWS us-east-1 and us-west-2
- **Email addresses collected**: 89 valid corporate email addresses
- **Exposed services**: 12 internet-facing services identified via Shodan/Censys

### Critical Findings

**1. Unauthenticated Elasticsearch Instance**
- Host: 52.xx.xx.xx:9200 (elastic.techcorp.io)
- Indexed data: Application logs containing user session tokens and PII
- Source: Shodan search "ssl.cert.subject.cn:techcorp.io"

**2. AWS Credentials in Public GitHub Repository**
- Repository: github.com/former-dev/techcorp-scripts
- File: .env containing AWS_ACCESS_KEY_ID and AWS_SECRET_ACCESS_KEY
- Status: Keys appear active (not tested - out of scope for passive recon)

**3. Directory Listing Exposing Internal Documents**
- URL: https://docs.techcorp.io/internal/
- Contents: Architecture diagrams, network topology, runbooks
- Source: Google dork "site:techcorp.io intitle:index.of"

### Recommendations
1. Immediately rotate the exposed AWS credentials and audit CloudTrail logs
2. Restrict Elasticsearch access to internal networks or add authentication
3. Disable directory listings on docs.techcorp.io and audit all web servers
4. Implement GitHub secret scanning across all organization repositories

适合场景

01

用户想查找某类 Agent Skill 时

02

需要根据任务场景推荐可安装能力包时

03

需要对比不同来源的安装命令和来源信息时

能力概览

能力 1

按任务关键词查找相关 Skills

能力 2

展示可复制的安装命令

能力 3

保留来源站点、仓库和原始说明,方便继续核验

能力 4

展示第三方安全扫描或审计结果

安装后应在对应宿主中按原始 README 的触发条件使用;具体调用方式请以来源页面和 README 为准。

平台分布

Codex

35.68%
按下载量换算144

Claude

28.41%
按下载量换算115

Cursor

18.21%
按下载量换算74

Gemini CLI

8.52%
按下载量换算34

安全审计

Gen Agent Trust Hub

通过

Socket

通过

Snyk

可疑

权限和风险

操作浏览器

该 Skill 可能涉及浏览器控制能力,使用时可能读取或操作网页内容,需要在受控环境中确认权限边界。

安装前确认

本站仅展示第三方公开信息,不托管安装包,不提供自动安装或运行环境。安装前应自行审查源码、依赖和命令行为。来源安全扫描存在 warning/failed 结果,不能写成本站确认安全。当前只有一个来源,正式发布前建议补源仓库或其他目录站核验。

来源信息

继续浏览同类 Skills