
ABUSE.MOM — 规矩点,否则你将被曝光
| 签名 | 描述 | 分数 | 严重性 |
|---|---|---|---|
| Burst: 5 req / 2s | 请求频率异常——自动扫描 | +35 | |
| Foreign referer | 来自无关外部域名的Referer | +10 | |
| Foreign referer seen | 来自无关外部域名的Referer | +10 | |
| Form spam: no_js_check | 请求内容中的垃圾/恶意关键词 | +0 |
从服务器访问日志重建的HTTP请求。出于安全考虑,目标域名已隐藏。
* Typical request patterns for detected signatures. Actual target domains are redacted.
在nginx中实施limit_req_zone。部署具有DDoS防护的CDN。配置SYN cookies和连接跟踪以限制31.133.32.102。
在所有公共表单上启用CAPTCHA。添加蜜罐字段。将每个IP的提交限制为每分钟3次。部署Akismet或CleanTalk。
来自Shodan的网络侦察数据。开放端口可能表示正在运行的服务、错误配置或潜在的攻击面。
| Port | Service | Risk | Description |
|---|---|---|---|
| 21 | FTP | Medium | File Transfer Protocol — often targeted for anonymous login attacks |
| 53 | DNS | Low | DNS server — potential for DNS amplification attacks |
| 500 | Unknown | Low | Service on port 500 |
| 1701 | Unknown | Low | Service on port 1701 |
| 3128 | Unknown | Low | Service on port 3128 |
| 4080 | Unknown | Low | Service on port 4080 |
| 4081 | Unknown | Low | Service on port 4081 |
| 9080 | Unknown | Low | Service on port 9080 |
⚠️ 在31.133.32.102上检测到1个高风险端口。 这些服务在没有严格防火墙规则的情况下不应公开访问。
数据来源:Shodan InternetDB。独立于abuse.mom进行扫描。
该IP已通过全球邮件服务器和防火墙使用的主要DNS黑名单进行检查。
已检查:Spamhaus、SpamCop、Barracuda、SORBS、CBL、UCEProtect。
31.133.32.102 has been assigned a threat score of 70/100 (High). 这将其归类为高严重性威胁。建议对敏感基础设施进行主动封锁。
The following attack categories were identified:
地址31.133.32.102来源于Rostov-on-Don, Russia,运营在S.U.E. DPR Republic Operator of Networks的网络中。它是通过对受监控端点的入站网络流量进行自动分析而被识别的。 我们的传感器在73天内捕获了来自此地址的230次恶意请求,反映出每天约3.2次的持续攻击节奏。 该地址被归类为住宅,意味着它可能属于终端用户ISP连接。来自住宅IP的恶意活动通常表明设备已被入侵或属于僵尸网络。 来自此IP的基于速率的攻击旨在通过大量请求洪水压垮服务器资源。 我们的记录显示来自Russia的101个恶意IP,使其成为全球威胁活动的重要贡献者。 评分70/100表明这是一个已确认的恶意行为者。网络级别封锁是适当的。
This IP is classified as residential, suggesting it may belong to a compromised home device, IoT botnet member, or an infected personal computer. Residential IPs involved in attacks often indicate malware infection without the owner's knowledge.
Digital forensics preserves and analyzes electronic evidence following attacks. Proper chain of custody, forensic imaging, timeline reconstruction, and artifact analysis are essential for understanding attack scope, attribution, and preventing recurrence.
Distributed denial of service attacks overwhelm infrastructure with traffic volume. Effective mitigation combines always-on traffic scrubbing, anycast network distribution, rate limiting, and the ability to quickly scale absorption capacity during attacks.