Daily Threat Report
Top Attacker IPs
- ๐ 121.229.40.225 BGPโ
- ๐ 109.205.211.94 BGPโ
- ๐ 37.247.230.82 BGPโ
- ๐ 194.180.48.54 BGPโ
- ๐ 181.78.0.82 BGPโ
Top Passwords Tried
- b03ddf3ca2e714a6
- e3b0c44298fc1c14
- 8c6976e5b5410415
๐ WEB HONEYPOT โ HoneyAI HTTP
AI-generated fake HTTP responses served to 135 scanner requests from 29 unique IPs (local, offline).
Top Paths Probed
- /
- /login
- /goform/set_LimitClient_cfg
- /SDK/webLanguage
- /.git/logs/HEAD
Top User-Agents
- Go-http-client/1.1
- git/2.39.0
- Mozilla/5.0 (compatible; Googlebot/2.1; +http://www.google.com/bot.html)
- Mozilla/5.0 (Windows NT 10.0; Win64; x64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/90.0.4430.85 Safari/537.36 Edg/90.0.818.46
- Mozilla/5.0 (Macintosh; Intel Mac OS X 14.4; rv:125.0) Gecko/20100101 Firefox/125.0
๐ฅ OPERATION SPINE โ Reverse Port Scanning
Active defense back-profiling: HoneyAI executed **13** reverse port-scans against active attacker IPs. Out of these, **13** hosts were found with open services.
Discovered Open Ports on Attackers
# Automatic multi-platform threat intel reporting $ honeypot-report.sh --since 24h โ 166 IPs โ AbuseIPDB (community confidence scores updated) โ 166 IPs โ AlienVault OTX (pulse indicators added) โ 166 IPs โ Blocklist.de (auto-ban list updated) โ 166 IPs โ DShield/SANS (global threat feed updated)
๐คฃ ATTACKER COMEDY CORNER
Real attempts. No actors were harmed in the making of this honeypot.
๐ Hall of Shame โ Passwords
b03ddf3ca2e714a6 e3b0c44298fc1c14 8c6976e5b5410415 ๐ป Commands They Tried
export PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin:$PATH uname=$(uname -s -v -n -m 2>/dev/null || /bin/uname -s -v -n -m 2>/dev/null || /usr/bin/uname -s -v -n -m 2>/dev/null || busybox uname -s -v -n -m 2>/dev/null || ( [ -f /proc/version ] && head -1 /proc/version | cut -d' ' -f1 ) || ( [ -f /etc/os-release ] && grep '^ID=' /etc/os-release | cut -d= -f2 | tr -d '$_dq' ) || echo $_dq$_dq) arch=$(uname -m 2>/dev/null || /bin/uname -m 2>/dev/null || /usr/bin/uname -m 2>/dev/null || busybox uname -m 2>/dev/null || ( [ -f /proc/cpuinfo ] && grep -q $_dqlm$_dq /proc/cpuinfo && echo x86_64 ) || ( [ -f /proc/cpuinfo ] && grep -q $_dqCPU architecture: 8$_dq /proc/cpuinfo && echo aarch64 ) || ( [ -f /proc/cpuinfo ] && grep -q $_dqCPU architecture: 7$_dq /proc/cpuinfo && echo armv7l ) || echo $_dq$_dq) uptime=$(cat /proc/uptime 2>/dev/null || busybox cat /proc/uptime 2>/dev/null) cpus=$(nproc 2>/dev/null || /usr/bin/nproc 2>/dev/null || busybox nproc 2>/dev/null || grep -c $_dq^processor$_dq /proc/cpuinfo 2>/dev/null) cpu_model=$( { lscpu 2>/dev/null | awk -F: '/Model name/ {print $2}'; grep -m1 -E $_dq^model name$_dq /proc/cpuinfo 2>/dev/null | cut -d: -f2-; grep -m1 -E $_dq^Hardware$_dq /proc/cpuinfo 2>/dev/null | cut -d: -f2-; cat /proc/device-tree/model 2>/dev/null; } | sed '/^$/d; /unknown/d; s/^[[:space:]]*//; s/[[:space:]]*$//; s/ AArch64 Processor$//; s/ Processor$//; s/ CPU$//' | head -1 ) gpu_info=$( (lspci 2>/dev/null | grep -i vga; lspci 2>/dev/null | grep -i nvidia; busybox lspci 2>/dev/null | grep -i vga; busybox lspci 2>/dev/null | grep -i nvidia) 2>/dev/null ) last_output=$(last 2>/dev/null) filter_output=$( ( export LANG=C LC_ALL=C; echo '===SHELL_BEHAVIOR==='; printf 'path_err='; ( ./xxxxxx 2>&1 || true ) | ( head -c 250 2>/dev/null || busybox head -c 250 2>/dev/null || dd bs=250 count=1 2>/dev/null ) | ( tr -d '\n' 2>/dev/null || busybox tr -d '\n' 2>/dev/null || cat ); printf '\n'; printf 'cmd_err='; ( xxxxxx 2>&1 || true ) | ( head -c 250 2>/dev/null || busybox head -c 250 2>/dev/null || dd bs=250 count=1 2>/dev/null ) | ( tr -d '\n' 2>/dev/null || busybox tr -d '\n' 2>/dev/null || cat ); printf '\n'; printf 'execute_err='; out=$(bash -c 'printf $_dq#!/bin/bash\necho \$_dqxxxxxx\$_dq\n$_dq > filter && chmod +x filter && ./filter && rm -rf filter' 2>&1); case $_dq$out$_dq in *xxxxxx*) ;; *) out=$(/bin/bash -c 'printf $_dq#!/bin/bash\necho \$_dqxxxxxx\$_dq\n$_dq > filter && chmod +x filter && ./filter && rm -rf filter' 2>&1); case $_dq$out$_dq in *xxxxxx*) ;; *) out=$(/usr/bin/bash -c 'printf $_dq#!/bin/bash\necho \$_dqxxxxxx\$_dq\n$_dq > filter && chmod +x filter && ./filter && rm -rf filter' 2>&1); case $_dq$out$_dq in *xxxxxx*) ;; *) out=$(busybox sh -c 'printf $_dq#!/bin/sh\necho \$_dqxxxxxx\$_dq\n$_dq > filter && chmod +x filter && ./filter && rm -rf filter' 2>&1 || sh -c 'printf $_dq#!/bin/sh\necho \$_dqxxxxxx\$_dq\n$_dq > filter && chmod +x filter && ./filter && rm -rf filter' 2>&1); esac; esac; esac; printf '%s' $_dq$out$_dq | ( head -c 250 2>/dev/null || busybox head -c 250 2>/dev/null || dd bs=250 count=1 2>/dev/null ) | ( tr -d '\n' 2>/dev/null || busybox tr -d '\n' 2>/dev/null || cat ); printf '\n'; echo '===DONE===' ) 2>&1 ) echo $_dqUNAME:$uname$_dq echo $_dqARCH:$arch$_dq echo $_dqUPTIME:$uptime$_dq echo $_dqCPUS:$cpus$_dq echo $_dqCPU_MODEL:$cpu_model$_dq echo $_dqGPU:$gpu_info$_dq echo $_dqLAST:$last_output$_dq echo $_dqFILTER:$filter_output$_dq export PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin:$PATH uname=$(uname -s -v -n -m 2>/dev/null || /bin/uname -s -v -n -m 2>/dev/null || /usr/bin/uname -s -v -n -m 2>/dev/null || busybox uname -s -v -n -m 2>/dev/null || ( [ -f /proc/version ] && head -1 /proc/version | cut -d' ' -f1 ) || ( [ -f /etc/os-release ] && grep '^ID=' /etc/os-release | cut -d= -f2 | tr -d '$_dq' ) || echo $_dq$_dq) arch=$(uname -m 2>/dev/null || /bin/uname -m 2>/dev/null || /usr/bin/uname -m 2>/dev/null || busybox uname -m 2>/dev/null || ( [ -f /proc/cpuinfo ] && grep -q $_dqlm$_dq /proc/cpuinfo && echo x86_64 ) || ( [ -f /proc/cpuinfo ] && grep -q $_dqCPU architecture: 8$_dq /proc/cpuinfo && echo aarch64 ) || ( [ -f /proc/cpuinfo ] && grep -q $_dqCPU architecture: 7$_dq /proc/cpuinfo && echo armv7l ) || echo $_dq$_dq) uptime=$(cat /proc/uptime 2>/dev/null || busybox cat /proc/uptime 2>/dev/null) cpus=$(nproc 2>/dev/null || /usr/bin/nproc 2>/dev/null || busybox nproc 2>/dev/null || grep -c $_dq^processor$_dq /proc/cpuinfo 2>/dev/null) cpu_model=$( { grep -m1 -E $_dqmodel name|Hardware$_dq /proc/cpuinfo 2>/dev/null; lscpu 2>/dev/null | grep $_dqModel name$_dq; dmidecode -s processor-version 2>/dev/null; uname -p 2>/dev/null; busybox uname -p 2>/dev/null; } ) gpu_info=$( (lspci 2>/dev/null | grep -i vga; lspci 2>/dev/null | grep -i nvidia; busybox lspci 2>/dev/null | grep -i vga; busybox lspci 2>/dev/null | grep -i nvidia) 2>/dev/null ) last_output=$(last 2>/dev/null) echo $_dqUNAME:$uname$_dq echo $_dqARCH:$arch$_dq echo $_dqUPTIME:$uptime$_dq echo $_dqCPUS:$cpus$_dq echo $_dqGPU:$gpu_info$_dq nvidia-smi --query-gpu=name --format=csv,noheader 2>/dev/null | head -1 cat /etc/centos-release 2>/dev/null | head -1 cat /etc/debian_version 2>/dev/null | head -1 These are real credentials and commands attempted by automated scanners and script kiddies. Logged, reported, and immortalized.
Automated report for 2 de agosto de 2026. Recorded 1250 SSH connections and 11874 multi-protocol decoy events on HoneyAI, from 167 unique IPs. 166 IPs were automatically reported to the AbuseIPDB community database.
SSH Activity (HoneyAI)
The SSH service received 658 login attempts from 27 unique IPs. Attackers executed 584 commands after gaining simulated system access.
Multi-Protocol Decoys (HoneyAI)
Detected 11874 events across services including FTP, Telnet, SMTP, MySQL, Redis, Git, VNC, and RDP from 140 distinct IPs. All events are access attempts against simulated production services.
HTTP Web Service (HoneyAI)
The web service received 135 HTTP requests from real scanners across 29 unique IPs. Each attacker received a fake response generated in real time by the local AI engine (Ollama, no internet connection required).
MCP Agent Trap
The MCP decoy server received 3 requests from 3 unique IPs. Attackers attempted to call internal tools including credential extraction and system command execution.
MSSQL / SNMP Honeypots
The MSSQL decoy received 0 authentication events from 0 IPs. The SNMP trap received 41 queries from 12 IPs probing community strings and OIDs.
Portscan Detection
Detected 0 incoming port scan events from 0 unique IPs.
AI Defense Stats
Blocked 0 prompt injection attempts and 0 identity leak attempts.
Active Defense (Operation Spine)
HoneyAI performed 13 reverse port scans back to active attacker IPs. Out of these, 13 hosts were found running open public services, allowing backfire profiling.
Network IDS (Suricata)
The network intrusion detection system generated 11255 alerts from 638 unique source IPs. Suricata monitors all traffic on the primary network interface using Emerging Threats + AlienVault OTX rulesets.