
ABUSE.MOM — 规矩点,否则你将被曝光
| 签名 | 描述 | 分数 | 严重性 |
|---|---|---|---|
| 404 ratio 40-60% | 大多数请求返回404——目录枚举 | +15 | |
| 404 ratio >= 60% | 大多数请求返回404——目录枚举 | +25 | |
| Burst 6/2s | 请求频率异常——自动扫描 | +35 | |
| Burst: 6 req / 2s | 请求频率异常——自动扫描 | +35 | |
| Danger strong hits: 1 | 高风险路径:Webshell、RCE、漏洞利用 | +25 | |
| 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 | |
| Probe 302→404 | 自动分析检测到行为异常 | +20 | |
| Probe pattern 302->404 same path | 自动分析检测到行为异常 | +20 |
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.
IP 137.184.53.60正在枚举目录。在10次以上404错误后配置fail2ban apache-404 jail。禁用目录列表。
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137.184.53.60。
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。
137.184.53.60 has been assigned a threat score of 80/100 (Critical). 凭借此评分,该IP属于严重威胁级别——是我们监控数据库中最危险的地址之一。
The following attack categories were identified:
我们的监控基础设施已将137.184.53.60(地理位置为North Bergen, United States,运营在DigitalOcean, LLC的网络中)识别为可疑网络活动的来源。 在60天的时间内,此IP产生了312次恶意请求,平均每天约5.2次请求。 被归类为托管IP,此地址可能运行在租用的服务器或云实例上。攻击者偏好数据中心IP因其高带宽和一次性特点。 识别出两种攻击模式(Path Enumeration和Request Flooding),表明这是一个针对多个漏洞的半自动化攻击活动。 我们的记录显示来自United States的128个恶意IP,使其成为全球威胁活动的重要贡献者。 威胁评分80/100将此IP置于高风险类别。建议在防火墙级别进行封锁。
This IP belongs to a hosting or data center provider. Malicious traffic from hosting infrastructure often originates from compromised VPS instances, rented servers used for scanning campaigns, or abused free-tier cloud accounts. Hosting providers typically respond to abuse reports within 24-72 hours.
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.
False positives erode trust in security systems and waste analyst resources. Effective management requires feedback loops, allowlisting mechanisms, contextual analysis, and regular tuning of detection rules based on operational experience.