first init
This commit is contained in:
+777
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"""
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Local HTTP proxy server.
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Intercepts the user's browser traffic and forwards everything through
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a domain-fronted connection to a CDN worker or Apps Script relay.
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Supports:
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- CONNECT method → WebSocket tunnel (modes 1-3) or MITM relay (apps_script)
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- GET / POST etc. → HTTP forwarding (modes 1-3) or JSON relay (apps_script)
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"""
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import asyncio
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import logging
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import re
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import ssl
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import time
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from domain_fronter import DomainFronter
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log = logging.getLogger("Proxy")
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class ResponseCache:
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"""Simple LRU response cache — avoids repeated relay calls."""
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def __init__(self, max_mb: int = 50):
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self._store: dict[str, tuple[bytes, float]] = {}
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self._size = 0
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self._max = max_mb * 1024 * 1024
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self.hits = 0
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self.misses = 0
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def get(self, url: str) -> bytes | None:
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entry = self._store.get(url)
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if not entry:
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self.misses += 1
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return None
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raw, expires = entry
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if time.time() > expires:
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self._size -= len(raw)
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del self._store[url]
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self.misses += 1
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return None
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self.hits += 1
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return raw
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def put(self, url: str, raw_response: bytes, ttl: int = 300):
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size = len(raw_response)
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if size > self._max // 4 or size == 0:
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return
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# Evict oldest to make room
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while self._size + size > self._max and self._store:
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oldest = next(iter(self._store))
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self._size -= len(self._store[oldest][0])
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del self._store[oldest]
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if url in self._store:
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self._size -= len(self._store[url][0])
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self._store[url] = (raw_response, time.time() + ttl)
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self._size += size
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@staticmethod
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def parse_ttl(raw_response: bytes, url: str) -> int:
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"""Determine cache TTL from response headers and URL."""
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hdr_end = raw_response.find(b"\r\n\r\n")
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if hdr_end < 0:
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return 0
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hdr = raw_response[:hdr_end].decode(errors="replace").lower()
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# Don't cache errors or non-200
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if b"HTTP/1.1 200" not in raw_response[:20]:
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return 0
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if "no-store" in hdr:
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return 0
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# Explicit max-age
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m = re.search(r"max-age=(\d+)", hdr)
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if m:
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return min(int(m.group(1)), 86400)
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# Heuristic by content type / extension
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path = url.split("?")[0].lower()
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static_exts = (
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".css", ".js", ".woff", ".woff2", ".ttf", ".eot",
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".png", ".jpg", ".jpeg", ".gif", ".webp", ".svg", ".ico",
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".mp3", ".mp4", ".wasm",
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)
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for ext in static_exts:
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if path.endswith(ext):
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return 3600 # 1 hour for static assets
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ct_m = re.search(r"content-type:\s*([^\r\n]+)", hdr)
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ct = ct_m.group(1) if ct_m else ""
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if "image/" in ct or "font/" in ct:
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return 3600
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if "text/css" in ct or "javascript" in ct:
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return 1800
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if "text/html" in ct or "application/json" in ct:
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return 0 # don't cache dynamic content by default
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return 0
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class ProxyServer:
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def __init__(self, config: dict):
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self.host = config.get("listen_host", "127.0.0.1")
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self.port = config.get("listen_port", 8080)
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self.mode = config.get("mode", "domain_fronting")
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self.fronter = DomainFronter(config)
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self.mitm = None
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self._cache = ResponseCache(max_mb=50)
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# Persistent HTTP tunnel cache for google_fronting mode
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# Key: "host:port" → (tunnel_reader, tunnel_writer, lock)
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self._http_tunnels: dict = {}
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self._tunnel_lock = asyncio.Lock()
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# hosts override — DNS fake-map: domain/suffix → IP
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# Checked before any real DNS lookup; supports exact and suffix matching.
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self._hosts: dict[str, str] = config.get("hosts", {})
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if self.mode == "apps_script":
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try:
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from mitm import MITMCertManager
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self.mitm = MITMCertManager()
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except ImportError:
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log.error("apps_script mode requires 'cryptography' package.")
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log.error("Run: pip install cryptography")
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raise SystemExit(1)
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async def start(self):
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srv = await asyncio.start_server(self._on_client, self.host, self.port)
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log.info(
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"Listening on %s:%d — configure your browser HTTP proxy to this address",
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self.host, self.port,
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)
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async with srv:
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await srv.serve_forever()
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# ── client handler ────────────────────────────────────────────
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async def _on_client(self, reader: asyncio.StreamReader, writer: asyncio.StreamWriter):
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addr = writer.get_extra_info("peername")
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try:
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first_line = await asyncio.wait_for(reader.readline(), timeout=30)
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if not first_line:
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return
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# Read remaining headers
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header_block = first_line
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while True:
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line = await asyncio.wait_for(reader.readline(), timeout=10)
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header_block += line
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if line in (b"\r\n", b"\n", b""):
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break
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request_line = first_line.decode(errors="replace").strip()
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parts = request_line.split(" ", 2)
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if len(parts) < 2:
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return
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method = parts[0].upper()
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if method == "CONNECT":
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await self._do_connect(parts[1], reader, writer)
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else:
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await self._do_http(header_block, reader, writer)
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except asyncio.TimeoutError:
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log.debug("Timeout: %s", addr)
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except Exception as e:
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log.error("Error (%s): %s", addr, e)
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finally:
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try:
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writer.close()
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await writer.wait_closed()
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except Exception:
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pass
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# ── CONNECT (HTTPS tunnelling) ────────────────────────────────
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async def _do_connect(self, target: str, reader, writer):
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host, _, port = target.rpartition(":")
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port = int(port) if port else 443
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if not host:
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host, port = target, 443
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log.info("CONNECT → %s:%d", host, port)
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writer.write(b"HTTP/1.1 200 Connection Established\r\n\r\n")
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await writer.drain()
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if self.mode == "apps_script":
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override_ip = self._sni_rewrite_ip(host)
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if override_ip:
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# SNI-blocked domain: MITM-decrypt from browser, then
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# re-connect to the override IP with SNI=front_domain so
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# the ISP never sees the blocked hostname in the TLS handshake.
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log.info("SNI-rewrite tunnel → %s via %s (SNI: %s)",
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host, override_ip, self.fronter.sni_host)
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await self._do_sni_rewrite_tunnel(host, port, reader, writer,
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connect_ip=override_ip)
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elif self._is_google_domain(host):
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log.info("Direct tunnel → %s (Google domain, skipping relay)", host)
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await self._do_direct_tunnel(host, port, reader, writer)
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else:
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await self._do_mitm_connect(host, port, reader, writer)
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else:
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await self.fronter.tunnel(host, port, reader, writer)
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# ── Hosts override (fake DNS) ─────────────────────────────────
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# Built-in list of domains that must be reached via Google's frontend IP
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# with SNI rewritten to `front_domain` (default: www.google.com).
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# These are Google-owned services whose real SNI is DPI-blocked in some
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# countries, but that Google serves from the same edge IP as www.google.com.
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# Users don't need to configure anything — any host matching one of these
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# suffixes is transparently SNI-rewritten to the configured `google_ip`.
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# Config's "hosts" map still takes precedence (for custom overrides).
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_SNI_REWRITE_SUFFIXES = (
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"youtube.com",
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"youtu.be",
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"youtube-nocookie.com",
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"ytimg.com",
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"ggpht.com",
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"gvt1.com",
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"gvt2.com",
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"doubleclick.net",
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"googlesyndication.com",
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"googleadservices.com",
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"google-analytics.com",
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"googletagmanager.com",
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"googletagservices.com",
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"fonts.googleapis.com",
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)
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def _sni_rewrite_ip(self, host: str) -> str | None:
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"""Return the IP to SNI-rewrite `host` through, or None.
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Order of precedence:
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1. Explicit entry in config `hosts` map (exact or suffix match).
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2. Built-in `_SNI_REWRITE_SUFFIXES` → mapped to config `google_ip`.
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"""
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ip = self._hosts_ip(host)
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if ip:
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return ip
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h = host.lower().rstrip(".")
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for suffix in self._SNI_REWRITE_SUFFIXES:
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if h == suffix or h.endswith("." + suffix):
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return self.fronter.connect_host # configured google_ip
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return None
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def _hosts_ip(self, host: str) -> str | None:
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"""Return override IP for host if defined in config 'hosts', else None.
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Supports exact match and suffix match (e.g. 'youtube.com' matches
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'www.youtube.com', 'm.youtube.com', etc.).
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"""
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h = host.lower().rstrip(".")
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if h in self._hosts:
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return self._hosts[h]
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# suffix match: check every parent label
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parts = h.split(".")
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for i in range(1, len(parts)):
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parent = ".".join(parts[i:])
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if parent in self._hosts:
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return self._hosts[parent]
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return None
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# ── Google domain detection ───────────────────────────────────
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# Only domains whose SNI the ISP does NOT block — direct tunnel is safe.
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# YouTube/googlevideo SNIs are blocked; they go through _do_sni_rewrite_tunnel
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# via the hosts map instead.
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_GOOGLE_SUFFIXES = (
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".google.com", ".google.co",
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".googleapis.com", ".gstatic.com",
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".googleusercontent.com",
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)
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_GOOGLE_EXACT = {
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"google.com", "gstatic.com", "googleapis.com",
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}
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def _is_google_domain(self, host: str) -> bool:
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"""Return True if host is a Google-owned domain."""
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h = host.lower().rstrip(".")
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if h in self._GOOGLE_EXACT:
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return True
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for suffix in self._GOOGLE_SUFFIXES:
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if h.endswith(suffix):
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return True
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return False
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# ── Direct tunnel (no MITM) ───────────────────────────────────
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async def _do_direct_tunnel(self, host: str, port: int,
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reader: asyncio.StreamReader,
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writer: asyncio.StreamWriter,
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connect_ip: str | None = None):
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"""Pipe raw TLS bytes directly to the target server.
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connect_ip overrides DNS: the TCP connection goes to that IP
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while the browser's TLS (SNI=host) is piped through unchanged.
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Defaults to the configured google_ip for Google-category domains.
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"""
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target_ip = connect_ip or self.fronter.connect_host
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try:
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r_remote, w_remote = await asyncio.wait_for(
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asyncio.open_connection(target_ip, port), timeout=10
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)
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except Exception as e:
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log.error("Direct tunnel connect failed (%s via %s): %s",
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host, target_ip, e)
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return
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async def pipe(src, dst, label):
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try:
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while True:
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data = await src.read(65536)
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if not data:
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break
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dst.write(data)
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await dst.drain()
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except (ConnectionError, asyncio.CancelledError):
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pass
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except Exception as e:
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log.debug("Pipe %s ended: %s", label, e)
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finally:
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try:
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dst.close()
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except Exception:
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pass
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await asyncio.gather(
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pipe(reader, w_remote, f"client→{host}"),
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pipe(r_remote, writer, f"{host}→client"),
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)
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# ── SNI-rewrite tunnel ────────────────────────────────────────
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async def _do_sni_rewrite_tunnel(self, host: str, port: int, reader, writer,
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connect_ip: str | None = None):
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"""MITM-decrypt TLS from browser, then re-encrypt toward connect_ip
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using SNI=front_domain (e.g. www.google.com).
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The ISP only ever sees SNI=www.google.com in the outgoing handshake,
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hiding the blocked hostname (e.g. www.youtube.com).
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"""
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target_ip = connect_ip or self.fronter.connect_host
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sni_out = self.fronter.sni_host # e.g. "www.google.com"
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# Step 1: MITM — accept TLS from the browser
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ssl_ctx_server = self.mitm.get_server_context(host)
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loop = asyncio.get_event_loop()
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transport = writer.transport
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protocol = transport.get_protocol()
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try:
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new_transport = await loop.start_tls(
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transport, protocol, ssl_ctx_server, server_side=True,
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)
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except Exception as e:
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log.debug("SNI-rewrite TLS accept failed (%s): %s", host, e)
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return
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writer._transport = new_transport
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# Step 2: open outgoing TLS to target IP with the safe SNI
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ssl_ctx_client = ssl.create_default_context()
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if not self.fronter.verify_ssl:
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ssl_ctx_client.check_hostname = False
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ssl_ctx_client.verify_mode = ssl.CERT_NONE
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try:
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r_out, w_out = await asyncio.wait_for(
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asyncio.open_connection(
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target_ip, port,
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ssl=ssl_ctx_client,
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server_hostname=sni_out,
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),
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timeout=10,
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)
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except Exception as e:
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log.error("SNI-rewrite outbound connect failed (%s via %s): %s",
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host, target_ip, e)
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return
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# Step 3: pipe application-layer bytes between the two TLS sessions
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async def pipe(src, dst, label):
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try:
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while True:
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data = await src.read(65536)
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if not data:
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break
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dst.write(data)
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await dst.drain()
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except (ConnectionError, asyncio.CancelledError):
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||||
pass
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||||
except Exception as exc:
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log.debug("Pipe %s ended: %s", label, exc)
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finally:
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try:
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dst.close()
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except Exception:
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pass
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||||
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await asyncio.gather(
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pipe(reader, w_out, f"client→{host}"),
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pipe(r_out, writer, f"{host}→client"),
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)
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# ── MITM CONNECT (apps_script mode) ───────────────────────────
|
||||
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async def _do_mitm_connect(self, host: str, port: int, reader, writer):
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"""Intercept TLS, decrypt HTTP, and relay through Apps Script."""
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ssl_ctx = self.mitm.get_server_context(host)
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# Upgrade the existing connection to TLS (we are the server)
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loop = asyncio.get_event_loop()
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transport = writer.transport
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protocol = transport.get_protocol()
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||||
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try:
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new_transport = await loop.start_tls(
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transport, protocol, ssl_ctx, server_side=True,
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||||
)
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||||
except Exception as e:
|
||||
# Non-HTTPS traffic (e.g. MTProto, plain HTTP on port 80/443)
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||||
# routed through the proxy will always fail TLS — log at DEBUG
|
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# to avoid alarming noise.
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||||
if port != 443:
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log.debug("TLS handshake skipped for %s:%d (non-HTTPS): %s", host, port, e)
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else:
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log.debug("TLS handshake failed for %s: %s", host, e)
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return
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||||
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||||
# Update writer to use the new TLS transport
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||||
writer._transport = new_transport
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||||
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||||
# Read and relay HTTP requests from the browser (now decrypted)
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||||
while True:
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try:
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first_line = await asyncio.wait_for(reader.readline(), timeout=120)
|
||||
if not first_line:
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break
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||||
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||||
header_block = first_line
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||||
while True:
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||||
line = await asyncio.wait_for(reader.readline(), timeout=10)
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||||
header_block += line
|
||||
if line in (b"\r\n", b"\n", b""):
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break
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||||
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||||
# Read body
|
||||
body = b""
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||||
for raw_line in header_block.split(b"\r\n"):
|
||||
if raw_line.lower().startswith(b"content-length:"):
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||||
length = int(raw_line.split(b":", 1)[1].strip())
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||||
body = await reader.readexactly(length)
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||||
break
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||||
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||||
# Parse the request
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||||
request_line = first_line.decode(errors="replace").strip()
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||||
parts = request_line.split(" ", 2)
|
||||
if len(parts) < 2:
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||||
break
|
||||
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||||
method = parts[0]
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||||
path = parts[1]
|
||||
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||||
# Parse headers
|
||||
headers = {}
|
||||
for raw_line in header_block.split(b"\r\n")[1:]:
|
||||
if b":" in raw_line:
|
||||
k, v = raw_line.decode(errors="replace").split(":", 1)
|
||||
headers[k.strip()] = v.strip()
|
||||
|
||||
# Build full URL (browser sends just the path in CONNECT)
|
||||
if port == 443:
|
||||
url = f"https://{host}{path}"
|
||||
else:
|
||||
url = f"https://{host}:{port}{path}"
|
||||
|
||||
log.info("MITM → %s %s", method, url)
|
||||
|
||||
# ── CORS: extract relevant request headers ────────────────────
|
||||
origin = next(
|
||||
(v for k, v in headers.items() if k.lower() == "origin"), ""
|
||||
)
|
||||
acr_method = next(
|
||||
(v for k, v in headers.items()
|
||||
if k.lower() == "access-control-request-method"), ""
|
||||
)
|
||||
acr_headers = next(
|
||||
(v for k, v in headers.items()
|
||||
if k.lower() == "access-control-request-headers"), ""
|
||||
)
|
||||
|
||||
# CORS preflight — respond directly; UrlFetchApp doesn't
|
||||
# support OPTIONS so forwarding it would always fail.
|
||||
if method.upper() == "OPTIONS" and acr_method:
|
||||
log.debug("CORS preflight → %s (responding locally)", url[:60])
|
||||
writer.write(self._cors_preflight_response(origin, acr_method, acr_headers))
|
||||
await writer.drain()
|
||||
continue
|
||||
|
||||
# Check local cache first (GET only)
|
||||
response = None
|
||||
if method == "GET" and not body:
|
||||
response = self._cache.get(url)
|
||||
if response:
|
||||
log.debug("Cache HIT: %s", url[:60])
|
||||
|
||||
if response is None:
|
||||
# Relay through Apps Script
|
||||
try:
|
||||
response = await self._relay_smart(method, url, headers, body)
|
||||
except Exception as e:
|
||||
log.error("Relay error (%s): %s", url[:60], e)
|
||||
err_body = f"Relay error: {e}".encode()
|
||||
response = (
|
||||
b"HTTP/1.1 502 Bad Gateway\r\n"
|
||||
b"Content-Type: text/plain\r\n"
|
||||
b"Content-Length: " + str(len(err_body)).encode() + b"\r\n"
|
||||
b"\r\n" + err_body
|
||||
)
|
||||
|
||||
# Cache successful GET responses
|
||||
if method == "GET" and not body and response:
|
||||
ttl = ResponseCache.parse_ttl(response, url)
|
||||
if ttl > 0:
|
||||
self._cache.put(url, response, ttl)
|
||||
log.debug("Cached (%ds): %s", ttl, url[:60])
|
||||
|
||||
# Inject permissive CORS headers whenever the browser
|
||||
# sent an Origin (cross-origin XHR / fetch).
|
||||
if origin and response:
|
||||
response = self._inject_cors_headers(response, origin)
|
||||
|
||||
writer.write(response)
|
||||
await writer.drain()
|
||||
|
||||
except asyncio.TimeoutError:
|
||||
break
|
||||
except asyncio.IncompleteReadError:
|
||||
break
|
||||
except ConnectionError:
|
||||
break
|
||||
except Exception as e:
|
||||
log.error("MITM handler error (%s): %s", host, e)
|
||||
break
|
||||
|
||||
# ── CORS helpers ──────────────────────────────────────────────────────────
|
||||
|
||||
@staticmethod
|
||||
def _cors_preflight_response(origin: str, acr_method: str, acr_headers: str) -> bytes:
|
||||
"""Return a 204 No Content response that satisfies a CORS preflight."""
|
||||
allow_origin = origin or "*"
|
||||
allow_methods = (
|
||||
f"{acr_method}, GET, POST, PUT, DELETE, PATCH, OPTIONS"
|
||||
if acr_method else
|
||||
"GET, POST, PUT, DELETE, PATCH, OPTIONS"
|
||||
)
|
||||
allow_headers = acr_headers or "*"
|
||||
return (
|
||||
"HTTP/1.1 204 No Content\r\n"
|
||||
f"Access-Control-Allow-Origin: {allow_origin}\r\n"
|
||||
f"Access-Control-Allow-Methods: {allow_methods}\r\n"
|
||||
f"Access-Control-Allow-Headers: {allow_headers}\r\n"
|
||||
"Access-Control-Allow-Credentials: true\r\n"
|
||||
"Access-Control-Max-Age: 86400\r\n"
|
||||
"Vary: Origin\r\n"
|
||||
"Content-Length: 0\r\n"
|
||||
"\r\n"
|
||||
).encode()
|
||||
|
||||
@staticmethod
|
||||
def _inject_cors_headers(response: bytes, origin: str) -> bytes:
|
||||
"""Inject CORS headers only if the upstream response lacks them.
|
||||
|
||||
We must NOT overwrite the origin server's CORS headers: sites like
|
||||
x.com return carefully-scoped Access-Control-Allow-Headers that list
|
||||
specific custom headers (e.g. x-csrf-token). Replacing them with
|
||||
wildcards together with Allow-Credentials: true makes browsers
|
||||
reject the response (per the Fetch spec, "*" is literal when
|
||||
credentials are included), which the site then blames on privacy
|
||||
extensions. So we only fill in what the server omitted.
|
||||
"""
|
||||
sep = b"\r\n\r\n"
|
||||
if sep not in response:
|
||||
return response
|
||||
header_section, body = response.split(sep, 1)
|
||||
lines = header_section.decode(errors="replace").split("\r\n")
|
||||
|
||||
existing = {ln.split(":", 1)[0].strip().lower()
|
||||
for ln in lines if ":" in ln}
|
||||
|
||||
# If the upstream already handled CORS, leave it completely alone.
|
||||
if "access-control-allow-origin" in existing:
|
||||
return response
|
||||
|
||||
# Otherwise inject a minimal, credential-safe set (no wildcards,
|
||||
# since wildcards combined with credentials are invalid).
|
||||
allow_origin = origin or "*"
|
||||
additions = [f"Access-Control-Allow-Origin: {allow_origin}"]
|
||||
if allow_origin != "*":
|
||||
additions.append("Access-Control-Allow-Credentials: true")
|
||||
additions.append("Vary: Origin")
|
||||
return ("\r\n".join(lines + additions) + "\r\n\r\n").encode() + body
|
||||
|
||||
async def _relay_smart(self, method, url, headers, body):
|
||||
"""Choose optimal relay strategy based on request type.
|
||||
|
||||
- GET requests for likely-large downloads use parallel-range.
|
||||
- All other requests (API calls, HTML, JSON, XHR) go through the
|
||||
single-request relay. This avoids injecting a synthetic Range
|
||||
header on normal traffic, which some origins honor by returning
|
||||
206 — breaking fetch()/XHR on sites like x.com or Cloudflare
|
||||
challenge pages.
|
||||
"""
|
||||
if method == "GET" and not body:
|
||||
# Respect client's own Range header verbatim.
|
||||
if headers:
|
||||
for k in headers:
|
||||
if k.lower() == "range":
|
||||
return await self.fronter.relay(
|
||||
method, url, headers, body
|
||||
)
|
||||
# Only probe with Range when the URL looks like a big file.
|
||||
if self._is_likely_download(url, headers):
|
||||
return await self.fronter.relay_parallel(
|
||||
method, url, headers, body
|
||||
)
|
||||
return await self.fronter.relay(method, url, headers, body)
|
||||
|
||||
def _is_likely_download(self, url: str, headers: dict) -> bool:
|
||||
"""Heuristic: is this URL likely a large file download?"""
|
||||
# Check file extension
|
||||
path = url.split("?")[0].lower()
|
||||
large_exts = {
|
||||
".zip", ".tar", ".gz", ".bz2", ".xz", ".7z", ".rar",
|
||||
".exe", ".msi", ".dmg", ".deb", ".rpm", ".apk",
|
||||
".iso", ".img",
|
||||
".mp4", ".mkv", ".avi", ".mov", ".webm",
|
||||
".mp3", ".flac", ".wav", ".aac",
|
||||
".pdf", ".doc", ".docx", ".ppt", ".pptx",
|
||||
".wasm",
|
||||
}
|
||||
for ext in large_exts:
|
||||
if path.endswith(ext):
|
||||
return True
|
||||
return False
|
||||
|
||||
# ── Plain HTTP forwarding ─────────────────────────────────────
|
||||
|
||||
async def _do_http(self, header_block: bytes, reader, writer):
|
||||
body = b""
|
||||
for raw_line in header_block.split(b"\r\n"):
|
||||
if raw_line.lower().startswith(b"content-length:"):
|
||||
length = int(raw_line.split(b":", 1)[1].strip())
|
||||
body = await reader.readexactly(length)
|
||||
break
|
||||
|
||||
first_line = header_block.split(b"\r\n")[0].decode(errors="replace")
|
||||
log.info("HTTP → %s", first_line)
|
||||
|
||||
if self.mode == "apps_script":
|
||||
# Parse request and relay through Apps Script
|
||||
parts = first_line.strip().split(" ", 2)
|
||||
method = parts[0] if parts else "GET"
|
||||
url = parts[1] if len(parts) > 1 else "/"
|
||||
|
||||
headers = {}
|
||||
for raw_line in header_block.split(b"\r\n")[1:]:
|
||||
if b":" in raw_line:
|
||||
k, v = raw_line.decode(errors="replace").split(":", 1)
|
||||
headers[k.strip()] = v.strip()
|
||||
|
||||
# ── CORS preflight over plain HTTP ────────────────────────────
|
||||
origin = next(
|
||||
(v for k, v in headers.items() if k.lower() == "origin"), ""
|
||||
)
|
||||
acr_method = next(
|
||||
(v for k, v in headers.items()
|
||||
if k.lower() == "access-control-request-method"), ""
|
||||
)
|
||||
acr_headers_val = next(
|
||||
(v for k, v in headers.items()
|
||||
if k.lower() == "access-control-request-headers"), ""
|
||||
)
|
||||
if method.upper() == "OPTIONS" and acr_method:
|
||||
log.debug("CORS preflight (HTTP) → %s (responding locally)", url[:60])
|
||||
writer.write(self._cors_preflight_response(origin, acr_method, acr_headers_val))
|
||||
await writer.drain()
|
||||
return
|
||||
|
||||
# Cache check for GET
|
||||
response = None
|
||||
if method == "GET" and not body:
|
||||
response = self._cache.get(url)
|
||||
if response:
|
||||
log.debug("Cache HIT (HTTP): %s", url[:60])
|
||||
|
||||
if response is None:
|
||||
response = await self._relay_smart(method, url, headers, body)
|
||||
# Cache successful GET
|
||||
if method == "GET" and not body and response:
|
||||
ttl = ResponseCache.parse_ttl(response, url)
|
||||
if ttl > 0:
|
||||
self._cache.put(url, response, ttl)
|
||||
|
||||
# Inject CORS headers for cross-origin requests
|
||||
if origin and response:
|
||||
response = self._inject_cors_headers(response, origin)
|
||||
elif self.mode in ("google_fronting", "custom_domain", "domain_fronting"):
|
||||
# Use WebSocket tunnel for ALL traffic (much faster than forward())
|
||||
response = await self._tunnel_http(header_block, body)
|
||||
else:
|
||||
response = await self.fronter.forward(header_block + body)
|
||||
|
||||
writer.write(response)
|
||||
await writer.drain()
|
||||
|
||||
async def _tunnel_http(self, header_block: bytes, body: bytes) -> bytes:
|
||||
"""Forward plain HTTP via a persistent WebSocket tunnel.
|
||||
|
||||
Instead of opening a new TLS+HTTP connection for each request
|
||||
(the old forward() path), this keeps a WebSocket tunnel open
|
||||
to the target host and pipes raw HTTP through it.
|
||||
Much faster for rapid-fire requests (e.g., Telegram API).
|
||||
"""
|
||||
import re as _re
|
||||
|
||||
# Parse target host:port from the raw HTTP request
|
||||
host = ""
|
||||
port = 80
|
||||
for line in header_block.split(b"\r\n")[1:]:
|
||||
if not line:
|
||||
break
|
||||
if line.lower().startswith(b"host:"):
|
||||
host_val = line.split(b":", 1)[1].strip().decode(errors="replace")
|
||||
if ":" in host_val:
|
||||
h, p = host_val.rsplit(":", 1)
|
||||
try:
|
||||
host, port = h, int(p)
|
||||
except ValueError:
|
||||
host = host_val
|
||||
else:
|
||||
host = host_val
|
||||
break
|
||||
|
||||
if not host:
|
||||
return b"HTTP/1.1 400 Bad Request\r\n\r\nNo Host header\r\n"
|
||||
|
||||
# Rewrite the request line: browser sends absolute URL
|
||||
# (e.g., "GET http://host/path HTTP/1.1") but the target
|
||||
# server expects a relative path ("GET /path HTTP/1.1")
|
||||
first_line = header_block.split(b"\r\n")[0]
|
||||
first_str = first_line.decode(errors="replace")
|
||||
parts = first_str.split(" ", 2)
|
||||
if len(parts) >= 2 and parts[1].startswith("http://"):
|
||||
from urllib.parse import urlparse
|
||||
parsed = urlparse(parts[1])
|
||||
rel_path = parsed.path or "/"
|
||||
if parsed.query:
|
||||
rel_path += "?" + parsed.query
|
||||
new_first = f"{parts[0]} {rel_path}"
|
||||
if len(parts) == 3:
|
||||
new_first += f" {parts[2]}"
|
||||
header_block = new_first.encode() + b"\r\n" + b"\r\n".join(header_block.split(b"\r\n")[1:])
|
||||
|
||||
raw_request = header_block + body
|
||||
|
||||
# Send through tunnel
|
||||
try:
|
||||
return await asyncio.wait_for(
|
||||
self.fronter.forward(raw_request), timeout=30
|
||||
)
|
||||
except Exception as e:
|
||||
log.error("Tunnel HTTP failed (%s:%d): %s", host, port, e)
|
||||
return b"HTTP/1.1 502 Bad Gateway\r\n\r\nTunnel forward failed\r\n"
|
||||
Reference in New Issue
Block a user