Files
Flock_SCAN-fix/flock_tap.py
leetcrypt 20d30815a3 Fix FRP payload detection, byte accounting, and cloud-IP correlation in flock_tap
- Move the FRP auth-payload scan out of the SYN-only branch. SYN packets carry
  no payload, so payload-based FRP detection never fired; it now runs on every
  TCP segment where the frp/auth/proxy_type bytes actually appear.
- Remove the per-packet `bytes_up += 64` approximation in on_tcp_connect, which
  double-counted against real ip.len accounting and corrupted bandwidth stats.
- Correlate connections against known Flock cloud IPs (static seed list + IPs
  learned from DNS answers) so cameras that reach cloud IPs without their own
  DNS/SNI are classified CLOUD_CONNECTED.
- Match the Flock auth0 tenant in DNS detection, consistent with the SNI path.
- Install a SIGINT handler so the report is always produced on Ctrl+C.
- Drop unused scapy TLS imports (SNI is parsed manually).

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-07-19 22:25:40 -07:00

749 lines
31 KiB
Python

#!/usr/bin/env python3
"""
flock_tap.py — Passive Flock camera traffic monitor
Captures and analyzes network traffic from Flock Safety cameras to determine:
- Which domains they communicate with (DNS tracking)
- Whether they connect to Flock cloud or a local station
- FRP tunnel detection (ports 7000-7500)
- TLS SNI fingerprinting (HTTPs destinations without decryption)
- Per-camera traffic profiles and bandwidth usage
Modes:
--tap-interface eth0 Live capture from a network interface
--tap-pcap file.pcap Offline analysis of a PCAP file
--tap-pipe Read from tcpdump stdin pipe
"""
import re
import os
import sys
import json
import time
import signal
import threading
import subprocess
from datetime import datetime
from collections import defaultdict
# ── Flock-known infrastructure ──
FLOCK_CLOUD_DOMAINS = [
"api.flocksafety.com", "app.flocksafety.com",
"users.flocksafety.com", "login.flocksafety.com",
"websockets.flocksafety.com", "safelist.flocksafety.com",
"events.flocksafety.com", "docs.flocksafety.com",
"status.flocksafety.com",
"flock-hibiki-inbox.s3.us-east-1.amazonaws.com",
"prod-flock-cd-bymknkftygg5gmc0.edge.tenants.auth0.com",
]
FLOCK_CLOUD_IPS = [
"198.202.211.1", "52.72.49.79", "34.71.237.120",
"104.18.16.189", "104.18.17.189",
]
# Scapy availability
try:
from scapy.all import sniff, IP, TCP, UDP, DNS, DNSQR, Raw, conf
HAVE_SCAPY = True
except ImportError:
HAVE_SCAPY = False
# Colors (same as scanner.py)
class C:
H = '\033[95m'; BL = '\033[94m'; CY = '\033[96m'
G = '\033[92m'; Y = '\033[93m'; R = '\033[91m'
END = '\033[0m'; B = '\033[1m'
class FlockTrafficTap:
"""
Passive traffic monitor for Flock Safety cameras.
Matches the pseudocode interface:
tap = FlockTrafficTap(interface="eth0")
tap.start()
tap.report()
Callbacks (called on each packet):
on_dns_query(hostname, src_ip, resolved_ips, timestamp)
on_tcp_connect(src, dst, sport, dport, timestamp)
on_tls_sni(sni, src_ip, dst_ip, timestamp)
"""
def __init__(self, interface=None, pcap=None, pipe=False, verbose=False,
output_file=None, timeout=None, filter_expr=None):
self.interface = interface
self.pcap = pcap
self.pipe = pipe
self.verbose = verbose
self.output_file = output_file
self.timeout = timeout
self.filter_expr = filter_expr
# ── flow_stats: matches pseudocode structure ──
self.flow_stats = defaultdict(lambda: {
"cloud_dns": 0,
"frp_tunnel": False,
"auth_tls": 0,
"s3_uploads": 0,
"cloud_api": 0,
"bytes_up": 0,
"bytes_down": 0,
"connections": 0,
"first_seen": None,
"last_seen": None,
})
# ── Raw device-level data store ──
self.devices = defaultdict(lambda: {
"dns_queries": [],
"connections": [],
"frp_tunnels": [],
"tls_snis": [],
"http_requests": [],
"bytes_up": 0,
"bytes_down": 0,
"packets_seen": 0,
"first_seen": None,
"last_seen": None,
})
self.seen_domains = set()
self.frp_ports = {7000, 7500, 7001, 7002}
# Known Flock cloud IPs: static seed list + IPs learned from DNS answers
# for Flock domains. Used to catch cameras that talk to cloud IPs without
# exposing an SNI or issuing their own DNS query.
self.known_flock_ips = set(FLOCK_CLOUD_IPS)
self.running = False
self.packet_count = 0
self.start_time = None
# ═══════════════════════════════════════════════════
# CALLBACKS — matches pseudocode interface
# ═══════════════════════════════════════════════════
def on_dns_query(self, hostname, src_ip, resolved_ips=None, timestamp=None):
"""Called for every DNS query. Updates flow_stats and learns Flock IPs."""
h = hostname.lower()
if "flocksafety" in h or "auth0.com" in h:
self.flow_stats[src_ip]["cloud_dns"] += 1
# Learn the resolved addresses so we can later flag cameras that
# connect straight to these IPs without their own DNS/SNI.
for rip in (resolved_ips or []):
self.known_flock_ips.add(rip)
def on_tcp_connect(self, src, dst, sport, dport, timestamp=None):
"""Called for every TCP packet. Updates flow_stats.
Byte accounting is handled from real ``ip.len`` in the packet handler;
this only tracks connection signals so it does not inflate bandwidth.
"""
fs = self.flow_stats[src]
fs["connections"] += 1
if dport in self.frp_ports:
fs["frp_tunnel"] = True
def on_tls_sni(self, sni, src_ip, dst_ip, timestamp=None):
"""Called for every TLS SNI. Categorizes and updates flow_stats."""
cat = self._categorize_sni(sni)
fs = self.flow_stats[src_ip]
if cat == "auth":
fs["auth_tls"] += 1
elif cat == "s3_upload":
fs["s3_uploads"] += 1
elif cat == "cloud_api":
fs["cloud_api"] += 1
def _categorize_sni(self, sni):
"""Classify a TLS SNI into a traffic category."""
s = sni.lower()
if "auth0" in s or "login" in s:
return "auth"
if "s3.amazonaws" in s or ("s3" in s and "amazon" in s):
return "s3_upload"
if "flocksafety" in s or "flock" in s:
return "cloud_api"
return None
# ═══════════════════════════════════════════════════
# CLASSIFICATION — matches pseudocode interface
# ═══════════════════════════════════════════════════
def classify_device(self, camera_ip):
"""Generate a full traffic profile for a camera (from pseudocode)."""
stats = self.flow_stats[camera_ip]
if stats.get("cloud_dns", 0) > 0 or stats.get("frp_tunnel"):
return "CLOUD_CONNECTED"
if stats.get("s3_uploads", 0) > 0 or stats.get("auth_tls", 0) > 0:
return "CLOUD_CONNECTED"
if stats.get("cloud_api", 0) > 0:
return "CLOUD_CONNECTED"
if stats.get("connections", 0) > 0:
return "LOCAL_STATION"
return "OFFLINE_OR_UNMONITORED"
def classify_camera(self, ip):
"""Return verdict for a single camera IP (raw data fallback)."""
verdict = self.classify_device(ip)
if verdict != "OFFLINE_OR_UNMONITORED":
return verdict
dev = self.devices.get(ip, {})
if not dev:
return "NO_DATA"
has_flock_sni = any(
"flock" in s.get("sni", "").lower() or "auth0" in s.get("sni", "").lower()
for s in dev.get("tls_snis", [])
)
has_frp = len(dev.get("frp_tunnels", [])) > 0
if has_flock_sni or has_frp:
return "CLOUD_CONNECTED"
if dev.get("connections"):
return "LOCAL_STATION"
return "UNKNOWN"
# ═══════════════════════════════════════════════════
# PACKET HANDLER — scapy
# ═══════════════════════════════════════════════════
def _handle_packet_scapy(self, pkt):
"""Process a packet — dispatches to callbacks."""
self.packet_count += 1
if not pkt.haslayer(IP):
return
ip = pkt[IP]
src, dst = ip.src, ip.dst
ts = time.time()
dev = self.devices[src]
if dev["first_seen"] is None:
dev["first_seen"] = ts
dev["last_seen"] = ts
dev["packets_seen"] += 1
dev["bytes_up"] += ip.len
dev_dst = self.devices[dst]
dev_dst["bytes_down"] += ip.len
if dev_dst["first_seen"] is None:
dev_dst["first_seen"] = ts
dev_dst["last_seen"] = ts
dev_dst["packets_seen"] += 1
# ── DNS ──
if pkt.haslayer(DNS) and pkt.haslayer(DNSQR):
try:
qname = pkt[DNSQR].qname.decode().rstrip(".")
resolved_ips = []
if pkt[DNS].ancount > 0:
for i in range(pkt[DNS].ancount):
try:
rr = pkt[DNS].an[i]
if hasattr(rr, "rdata"):
resolved_ips.append(str(rr.rdata))
except Exception:
pass
self.on_dns_query(qname, src, resolved_ips, ts)
dev["dns_queries"].append({
"timestamp": ts, "src": src,
"query": qname, "resolved_ips": resolved_ips,
})
self.seen_domains.add(qname)
if self.verbose:
is_flock = "flock" in qname.lower()
tag = f" {C.R}Flock{C.END}" if is_flock else ""
rips = f" -> {resolved_ips}" if resolved_ips else ""
c = C.R if is_flock else C.CY
print(f" DNS {c}{src:<16} {qname:<50}{rips}{C.END}{tag}")
except Exception:
pass
# ── TCP connections (FRP detection) ──
if pkt.haslayer(TCP):
tcp = pkt[TCP]
sport, dport = tcp.sport, tcp.dport
self.on_tcp_connect(src, dst, sport, dport, ts)
# ── Connection to a known Flock cloud IP (no SNI/DNS needed) ──
if dst in self.known_flock_ips:
self.flow_stats[src]["cloud_api"] += 1
if tcp.flags & 0x02: # SYN
dev["connections"].append({
"timestamp": ts, "src": src, "sport": sport,
"dst": dst, "dport": dport, "bytes": ip.len,
})
# ── FRP Tunnel Detection ──
# FRP handshake pattern:
# 1. Camera connects to port 7000-7500 on a remote server
# 2. Sends auth + proxy configuration JSON
# 3. Server opens reverse tunnel
#
# Detection signature (Zeek-equivalent):
# signature frp-tunnel {
# ip-proto == tcp
# dst-port in [7000, 7500, 7001, 7002]
# payload /frp|auth|proxy_type/
# event "FRP TUNNEL DETECTED"
# }
# Port-based signal is evaluated per-packet (fires on the SYN too).
if dport in self.frp_ports:
self.flow_stats[src]["frp_tunnel"] = True
dev["frp_tunnels"].append({
"timestamp": ts, "src": src, "dst": dst,
"port": dport, "type": "frp_tunnel",
})
if self.verbose:
print(f" {C.R}FRP {src:<16} -> {dst}:{dport} [FRP TUNNEL]{C.END}")
# Raw payload scan for FRP auth. The auth/proxy JSON is sent in a
# data segment *after* the handshake, so this must run on every TCP
# packet — not only on the SYN (SYN packets carry no payload).
if tcp.haslayer(Raw):
raw = tcp[Raw].load
if b"frp" in raw.lower() or b"auth" in raw.lower() or b"proxy_type" in raw.lower():
self.flow_stats[src]["frp_tunnel"] = True
dev["frp_tunnels"].append({
"timestamp": ts, "src": src, "dst": dst,
"port": dport, "type": "frp_auth_payload",
"payload_preview": raw[:64].decode(errors="replace"),
})
if self.verbose:
self.log(f"{C.R}FRP_AUTH {src} -> {dst}:{dport} - auth payload{C.END}")
# ── TLS SNI ──
if pkt.haslayer(TCP) and pkt.haslayer(Raw):
tcp = pkt[TCP]
dport = tcp.dport
raw = tcp[Raw].load
if dport == 443 and len(raw) > 50 and raw[0] == 0x16 and raw[1] in (0x03,):
sni = self._extract_sni(raw)
if sni:
self.on_tls_sni(sni, src, dst, ts)
dev["tls_snis"].append({"timestamp": ts, "src": src, "dst": dst, "sni": sni})
if self.verbose:
cat = self._categorize_sni(sni)
c = C.R if cat else C.CY
tag = f" [{cat}]" if cat else ""
print(f" TLS {c}{src:<16} -> {dst:<16} {sni:<50}{C.END}{tag}")
def _extract_sni(self, data):
"""Extract TLS SNI from raw ClientHello bytes."""
try:
offset = 5 + 4 + 32
if offset + 1 > len(data):
return None
sid_len = data[offset]
offset += 1 + sid_len
if offset + 2 > len(data):
return None
cs_len = (data[offset] << 8) | data[offset + 1]
offset += 2 + cs_len
if offset + 1 > len(data):
return None
cm_len = data[offset]
offset += 1 + cm_len
if offset + 2 > len(data):
return None
ext_len = (data[offset] << 8) | data[offset + 1]
offset += 2
ext_end = offset + ext_len
while offset + 4 <= ext_end:
ext_type = (data[offset] << 8) | data[offset + 1]
ext_data_len = (data[offset + 2] << 8) | data[offset + 3]
offset += 4
if ext_type == 0:
if offset + 2 <= ext_end:
list_len = (data[offset] << 8) | data[offset + 1]
offset += 2
if offset + 1 <= ext_end:
name_type = data[offset]
offset += 1
if name_type == 0:
if offset + 2 <= ext_end:
name_len = (data[offset] << 8) | data[offset + 1]
offset += 2
if offset + name_len <= ext_end:
return data[offset:offset + name_len].decode(errors="replace")
offset += ext_data_len
except Exception:
pass
return None
# ═══════════════════════════════════════════════════
# TCPDUMP PIPE FALLBACK
# ═══════════════════════════════════════════════════
def _parse_tcpdump_line(self, line):
"""Parse a line from tcpdump -l -nn output."""
try:
parts = line.split()
if len(parts) < 5:
return None
src_part = parts[2].rstrip(":")
dst_part = parts[4].rstrip(":")
src_ip, src_port = src_part.rsplit(".", 1)
dst_ip, dst_port = dst_part.rsplit(".", 1)
if dst_port == "53" or src_port == "53":
result = {"type": "dns", "src": src_ip, "sport": src_port,
"dst": dst_ip, "dport": int(dst_port), "raw": line}
# Try to extract the actual DNS query name
# Format: "... 12345+ A? hostname.domain.tld. (len)"
qm = re.search(r'\?\s+([a-zA-Z0-9.-]+)\.?\s', line)
if qm:
result["query"] = qm.group(1).rstrip(".")
return result
if "Flags [S]" in line:
return {"type": "syn", "src": src_ip, "sport": int(src_port),
"dst": dst_ip, "dport": int(dst_port), "raw": line}
return {"type": "other", "src": src_ip, "sport": src_port,
"dst": dst_ip, "dport": dst_port, "raw": line}
except Exception:
return None
# ═══════════════════════════════════════════════════
# PUBLIC API
# ═══════════════════════════════════════════════════
def log(self, msg):
ts = datetime.now().strftime("%H:%M:%S")
print(f"{C.CY}[{ts}]{C.END} {msg}")
def _install_sigint(self):
"""Stop capture cleanly on Ctrl+C so the report is always produced."""
def _handler(signum, frame):
self.running = False
raise KeyboardInterrupt
try:
signal.signal(signal.SIGINT, _handler)
except (ValueError, RuntimeError):
# Not on the main thread — fall back to scapy's own handling.
pass
def start(self):
"""Start capture in the foreground."""
self.start_time = time.time()
self.running = True
self._install_sigint()
if self.pcap:
self._run_pcap()
elif self.pipe:
self._run_pipe()
elif self.interface:
self._run_live()
else:
print(f"{C.R}Error: specify --tap-interface, --tap-pcap, or --tap-pipe{C.END}")
sys.exit(1)
def _run_live(self):
if HAVE_SCAPY:
self.log(f"Live capture on {C.B}{self.interface}{C.END} (PID {os.getpid()})")
self.log("Ctrl+C to stop and report")
print()
try:
sniff(iface=self.interface, filter=self.filter_expr or "ip",
prn=self._handle_packet_scapy, store=0, timeout=self.timeout)
except KeyboardInterrupt:
pass
self.running = False
else:
self.log(f"{C.Y}scapy not installed — falling back to tcpdump pipe{C.END}")
self._run_pipe()
def _run_pcap(self):
if not HAVE_SCAPY:
print(f"{C.R}Error: scapy required for pcap. pip install scapy{C.END}")
sys.exit(1)
self.log(f"Analyzing pcap: {C.B}{self.pcap}{C.END}\n")
try:
sniff(offline=self.pcap, prn=self._handle_packet_scapy, store=0,
timeout=self.timeout)
except Exception as e:
print(f"{C.R}Error: {e}{C.END}")
sys.exit(1)
self.running = False
def _run_pipe(self):
self.log("Reading from pipe (stdin). Send traffic or Ctrl+C to stop.\n")
try:
for line in sys.stdin:
if not self.running:
break
line = line.strip()
if not line:
continue
parsed = self._parse_tcpdump_line(line)
if parsed:
self.packet_count += 1
src = parsed["src"]
dst = parsed.get("dst", "?")
dport = parsed.get("dport", 0)
dev = self.devices[src]
if dev["first_seen"] is None:
dev["first_seen"] = time.time()
dev["last_seen"] = time.time()
dev["packets_seen"] += 1
if parsed["type"] == "dns":
query = parsed.get("query", "")
if query:
dev["dns_queries"].append({
"timestamp": time.time(),
"src": src,
"query": query,
"resolved_ips": [],
})
self.seen_domains.add(query)
if "flock" in query.lower():
self.flow_stats[src]["cloud_dns"] += 1
if self.verbose:
self.log(f"{C.R}Flock DNS {src} -> {query}{C.END}")
elif self.verbose:
self.log(f"{C.CY}DNS {src} -> {query}{C.END}")
if parsed["type"] == "syn" and dport in self.frp_ports:
self.flow_stats[src]["frp_tunnel"] = True
dev["frp_tunnels"].append({
"timestamp": time.time(), "src": src,
"dst": dst, "port": dport, "type": "frp_tunnel",
})
if self.verbose:
self.log(f"{C.R}FRP {src} -> {dst}:{dport}{C.END}")
except KeyboardInterrupt:
pass
self.running = False
# ═══════════════════════════════════════════════════
# REPORT
# ═══════════════════════════════════════════════════
def generate_report(self):
"""Build structured JSON report."""
report = {
"type": "FLOCK_TAP_REPORT",
"capture_info": {
"interface": self.interface,
"pcap": self.pcap,
"start_time": self.start_time,
"duration": time.time() - self.start_time if self.start_time else 0,
"total_packets": self.packet_count,
},
"flow_stats": {},
"devices": {},
"summary": {},
}
cloud_count = 0
local_count = 0
unknown_count = 0
for ip in sorted(set(list(self.devices.keys()) + list(self.flow_stats.keys()))):
verdict = self.classify_camera(ip)
if verdict == "CLOUD_CONNECTED":
cloud_count += 1
elif verdict == "LOCAL_STATION":
local_count += 1
else:
unknown_count += 1
# Always include flow_stats
report["flow_stats"][ip] = dict(self.flow_stats[ip])
dev = self.devices.get(ip, {})
if dev.get("packets_seen", 0) < 5:
continue
snis = list(set(s["sni"] for s in dev.get("tls_snis", [])))
dns_list = list(set(q["query"] for q in dev.get("dns_queries", [])))
report["devices"][ip] = {
"verdict": verdict,
"packets_seen": dev["packets_seen"],
"bytes_up": dev["bytes_up"],
"bytes_down": dev["bytes_down"],
"first_seen": dev["first_seen"],
"last_seen": dev["last_seen"],
"dns_queries_count": len(dev["dns_queries"]),
"tls_snis_count": len(dev.get("tls_snis", [])),
"frp_tunnels_count": len(dev.get("frp_tunnels", [])),
"connections_count": len(dev.get("connections", [])),
"flow_stats": dict(self.flow_stats[ip]),
"tls_snis": snis,
"frp_tunnels": dev.get("frp_tunnels", []),
"dns_domains": dns_list,
}
report["summary"] = {
"total_ips_tracked": len(self.devices),
"cloud_connected": cloud_count,
"local_station": local_count,
"unknown": unknown_count,
"flock_domains_resolved": sorted(
d for d in self.seen_domains if "flock" in d.lower()
),
"total_flock_queries": sum(
1 for dev in self.devices.values()
for q in dev.get("dns_queries", [])
if "flock" in q.get("query", "").lower()
),
"total_frp_tunnels": sum(
len(dev.get("frp_tunnels", [])) for dev in self.devices.values()
),
}
return report
def _extract_s3_from_collected(self):
"""Scan collected traffic data for S3/image URLs."""
from modules.s3_url_catcher import scan_traffic_for_s3, format_s3_findings_terminal
# Build payload list from DNS queries (some domains look like S3)
pcap_bodies = []
for dev_ip, dev in self.devices.items():
for dns in dev.get("dns_queries", []):
q = dns.get("query", "")
if "s3" in q.lower() or "amazonaws" in q.lower() or "flock-hibiki" in q.lower():
pcap_bodies.append(q)
for sni in dev.get("tls_snis", []):
s = sni.get("sni", "")
if "s3" in s.lower() or "amazonaws" in s.lower():
pcap_bodies.append(s)
for conn in dev.get("connections", []):
# HTTP payloads sometimes appear in connection data
raw = conn.get("payload", "")
if raw and ("s3" in raw.lower() or "flock-hibiki" in raw.lower()):
pcap_bodies.append(raw)
return scan_traffic_for_s3(pcap_payloads=pcap_bodies)
def report(self):
"""Print and optionally save the report."""
print(f"\n{C.B}{'='*70}{C.END}")
print(f"{C.B} FLOCK TRAFFIC TAP REPORT{C.END}")
print(f"{C.B}{'='*70}{C.END}")
elapsed = time.time() - self.start_time if self.start_time else 0
print(f"\n{C.CY}Capture:{C.END}")
if self.interface:
print(f" Interface: {self.interface}")
if self.pcap:
print(f" PCAP: {self.pcap}")
print(f" Duration: {elapsed:.1f}s")
print(f" Packets: {self.packet_count:,}")
cloud_cams = []
for ip in sorted(self.devices):
if self.classify_camera(ip) == "CLOUD_CONNECTED":
cloud_cams.append(ip)
print(f"\n{C.CY}Classification:{C.END}")
print(f" Cloud-connected: {len(cloud_cams)}")
print(f" Local station: {sum(1 for ip in self.devices if self.classify_camera(ip) == 'LOCAL_STATION')}")
print(f" Unknown: {sum(1 for ip in self.devices if self.classify_camera(ip) == 'UNKNOWN')}")
if cloud_cams:
print(f"\n{C.R}Cloud-Connected Cameras:{C.END}")
for ip in cloud_cams:
dev = self.devices[ip]
evidence = []
dns_list = list(set(q["query"] for q in dev.get("dns_queries", [])
if "flock" in q["query"].lower()))
snis = list(set(s["sni"] for s in dev.get("tls_snis", [])
if "flock" in s["sni"].lower() or "auth0" in s["sni"].lower()))
frps = dev.get("frp_tunnels", [])
if dns_list:
evidence.append(f"DNS({', '.join(dns_list[:3])})")
if snis:
evidence.append(f"SNI({', '.join(snis[:3])})")
if frps:
evidence.append(f"FRP({len(frps)} tunnels)")
print(f" {C.R}[!] {ip:<16}{C.END} {' | '.join(evidence[:3])}")
# All Flock domains seen
flock_domains = sorted(
d for d in self.seen_domains
if "flock" in d.lower() or "auth0" in d.lower()
)
if flock_domains:
print(f"\n{C.CY}Flock Domains Resolved:{C.END}")
for d in flock_domains:
print(f" ﹒ {d}")
# FRP tunnels
total_frp = sum(len(dev.get("frp_tunnels", [])) for dev in self.devices.values())
if total_frp > 0:
print(f"\n{C.R}FRP Tunnels: {total_frp}{C.END}")
for ip, dev in sorted(self.devices.items()):
for frp in dev.get("frp_tunnels", []):
print(f" {C.R}[!] {ip} -> {frp['dst']}:{frp['port']} [{frp.get('type','')}]{C.END}")
# SNI Categorization summary
auth_count = sum(fs["auth_tls"] for fs in self.flow_stats.values())
s3_count = sum(fs["s3_uploads"] for fs in self.flow_stats.values())
api_count = sum(fs["cloud_api"] for fs in self.flow_stats.values())
if auth_count or s3_count or api_count:
print(f"\n{C.CY}TLS Traffic Categories:{C.END}")
if auth_count:
print(f" auth: {auth_count} connections")
if s3_count:
print(f" s3_upload: {s3_count} connections")
if api_count:
print(f" cloud_api: {api_count} connections")
# S3 URLs from captured traffic
try:
s3_urls = self._extract_s3_from_collected()
if s3_urls:
from modules.s3_url_catcher import format_s3_findings_terminal
print(f"\n{C.Y}S3/Image URLs Captured:{C.END}")
print(format_s3_findings_terminal(s3_urls))
except Exception:
pass
# Save
if self.output_file:
report_data = self.generate_report()
# Add S3 URLs to saved report
try:
s3_urls = self._extract_s3_from_collected()
if s3_urls:
report_data["s3_image_urls"] = s3_urls
except Exception:
pass
with open(self.output_file, "w") as f:
json.dump(report_data, f, indent=2)
print(f"\n{C.G}Report saved to {self.output_file}{C.END}")
print(f"\n{C.B}{'='*70}{C.END}\n")
def main():
import argparse
parser = argparse.ArgumentParser(description="Flock Traffic Tap — Passive Camera Monitor")
parser.add_argument("--tap-interface", help="Network interface for live capture")
parser.add_argument("--tap-pcap", help="PCAP file to analyze")
parser.add_argument("--tap-pipe", action="store_true", help="Read from stdin pipe")
parser.add_argument("--tap-output", help="Save report to JSON file")
parser.add_argument("--tap-verbose", "-v", action="store_true", help="Verbose output")
parser.add_argument("--tap-timeout", type=int, default=None, help="Capture duration (seconds)")
parser.add_argument("--tap-filter", default=None, help="BPF filter expression")
args = parser.parse_args()
tap = FlockTrafficTap(
interface=args.tap_interface, pcap=args.tap_pcap, pipe=args.tap_pipe,
verbose=args.tap_verbose, output_file=args.tap_output, timeout=args.tap_timeout,
filter_expr=args.tap_filter,
)
if not args.tap_interface and not args.tap_pcap and not args.tap_pipe:
parser.print_help()
print(f"\n{C.Y}Specify --tap-interface, --tap-pcap, or --tap-pipe{C.END}")
return
tap.start()
tap.report()
if __name__ == "__main__":
main()