#!/usr/bin/env python3 """Record real UTAS traffic between FIFA 17 and the Python oracle. openfut-utas-observe.py record --listen 0.0.0.0:8199 --upstream 127.0.0.1:8099 \ --session captures/utas/session-001 openfut-utas-observe.py parse --session captures/utas/session-001 openfut-utas-observe.py snapshot --upstream 127.0.0.1:8099 --out before/state-manifest.json WHY THIS EXISTS --------------- Porting UTAS needs the exact bytes of real requests AND real responses. The oracle's own log truncates bodies at ~200 chars, and raising that cap would mean editing the behavioural specification to make it easier to copy -- which is exactly backwards. A proxy gets the same evidence and leaves the oracle alone. Standalone on purpose: NOT built into the Python container. The same tool can later sit in front of a Rust UTAS host, so the identical captured request can be replayed against both and diffed. THE DESIGN RULE: TEE, DO NOT REBUILD ------------------------------------ UTAS is plaintext HTTP/1.1 served by `ThreadingHTTPServer`, so keep-alive, pipelining and chunked transfer are all possible. A proxy that parses a request and re-emits it can corrupt the traffic it exists to observe -- and a subtle corruption here would look like a UTAS bug, sending the investigation in exactly the wrong direction. So this copies bytes VERBATIM in both directions and writes a second copy to disk. Transactions are reconstructed later, offline, from that copy. A bug in the parser therefore spoils the record and never the session. This is the same reasoning that keeps the oracle unmodified: do not let the measuring apparatus change what is being measured. TWO LAYERS, LIKE THE BLAZE CAPTURES ----------------------------------- raw/utas.ofcap exact bytes, mode 0600, gitignored | sanitizer | sanitized/transactions.jsonl repository-safe fixtures Raw captures are never normalised. Normalisation happens only when producing the committed fixture, and preserves exact bodies first, sanitises second. """ import argparse import base64 import hashlib import json import os import re import socket import sys import threading import time MAGIC = "OFCAP1" C2S = "c2s" S2C = "s2c" # ─────────────────────────────────────────────────────────── capture file ──── class Capture: """Append-only JSONL of raw byte chunks. One line per read(). JSONL with base64 rather than a packed binary format: this is a research artefact that people will grep and eyeball, and the size cost is irrelevant next to being able to inspect it without a decoder. Base64 is an encoding, not a normalisation -- the bytes round-trip exactly. """ def __init__(self, path): self.path = path os.makedirs(os.path.dirname(path), exist_ok=True) # 0600 before anything is written: captures carry session tokens. fd = os.open(path, os.O_CREAT | os.O_WRONLY | os.O_APPEND, 0o600) self.f = os.fdopen(fd, "w") self.lock = threading.Lock() self._write({"magic": MAGIC, "started_unix": time.time()}) def _write(self, obj): with self.lock: self.f.write(json.dumps(obj, sort_keys=True) + "\n") self.f.flush() def chunk(self, conn_id, direction, data, t0): self._write({ "conn": conn_id, "dir": direction, "t": round(time.monotonic() - t0, 6), "unix": time.time(), "len": len(data), "b64": base64.b64encode(data).decode(), }) def event(self, conn_id, kind, detail, t0): self._write({ "conn": conn_id, "event": kind, "detail": detail, "t": round(time.monotonic() - t0, 6), "unix": time.time(), }) def close(self): with self.lock: self.f.close() # ──────────────────────────────────────────────────────────────── record ──── def pump(src, dst, cap, conn_id, direction, t0, done): """Copy src->dst verbatim, teeing every chunk into the capture. Forward FIRST, record second: the client must never wait on our disk. """ try: while True: data = src.recv(65536) if not data: break try: dst.sendall(data) except OSError as e: cap.event(conn_id, "forward_failed", "%s %s" % (direction, e), t0) break cap.chunk(conn_id, direction, data, t0) except OSError as e: cap.event(conn_id, "read_failed", "%s %s" % (direction, e), t0) finally: # Half-close so the peer sees EOF in the same direction the original # did. Connection semantics are part of what is being captured. try: dst.shutdown(socket.SHUT_WR) except OSError: pass cap.event(conn_id, "eof", direction, t0) done.set() def handle(client, addr, upstream_addr, cap, conn_id, t0): cap.event(conn_id, "open", "%s:%d" % addr, t0) try: up = socket.create_connection(upstream_addr, timeout=30) except OSError as e: cap.event(conn_id, "upstream_failed", str(e), t0) client.close() return client.settimeout(None) up.settimeout(None) a, b = threading.Event(), threading.Event() t1 = threading.Thread(target=pump, args=(client, up, cap, conn_id, C2S, t0, a), daemon=True) t2 = threading.Thread(target=pump, args=(up, client, cap, conn_id, S2C, t0, b), daemon=True) t1.start(); t2.start() t1.join(); t2.join() for s in (client, up): try: s.close() except OSError: pass cap.event(conn_id, "close", "", t0) def cmd_record(args): lh, lp = args.listen.rsplit(":", 1) uh, up = args.upstream.rsplit(":", 1) session = os.path.abspath(args.session) cap = Capture(os.path.join(session, "raw", "utas.ofcap")) srv = socket.socket(socket.AF_INET, socket.SOCK_STREAM) srv.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1) srv.bind((lh, int(lp))) srv.listen(64) t0 = time.monotonic() print("recording %s -> %s:%s into %s" % (args.listen, uh, up, cap.path), flush=True) print(" raw capture is mode 0600 and must stay out of git", flush=True) n = 0 try: while True: client, addr = srv.accept() n += 1 threading.Thread( target=handle, args=(client, addr, (uh, int(up)), cap, n, t0), daemon=True, ).start() except KeyboardInterrupt: print("\nstopped after %d connection(s)" % n, flush=True) finally: cap.close() # ─────────────────────────────────────────────────────────────── parsing ──── def read_capture(path): conns = {} with open(path) as f: for line in f: r = json.loads(line) if "magic" in r: continue c = conns.setdefault(r["conn"], {"c2s": bytearray(), "s2c": bytearray(), "events": [], "marks": {"c2s": [], "s2c": []}}) if "b64" in r: data = base64.b64decode(r["b64"]) c["marks"][r["dir"]].append((len(c[r["dir"]]), r["t"], r["unix"])) c[r["dir"]].extend(data) else: c["events"].append(r) return conns def split_messages(buf, is_response): """Split an HTTP/1.1 byte stream into messages. Returns list of (head, body, end). Framing follows RFC 7230: Transfer-Encoding: chunked wins over Content-Length. A stream that cannot be framed stops the walk rather than guessing -- a wrong split would silently mis-attribute bodies. """ out, i = [], 0 while True: sep = buf.find(b"\r\n\r\n", i) if sep < 0: break head = bytes(buf[i:sep]) hs = head.decode("latin1") start = sep + 4 te = re.search(r"(?im)^transfer-encoding:\s*(.+)$", hs) cl = re.search(r"(?im)^content-length:\s*(\d+)\s*$", hs) if te and "chunked" in te.group(1).lower(): j, body = start, bytearray() while True: nl = buf.find(b"\r\n", j) if nl < 0: return out try: size = int(bytes(buf[j:nl]).split(b";")[0], 16) except ValueError: return out j = nl + 2 if size == 0: j = buf.find(b"\r\n", j) j = (j + 2) if j >= 0 else len(buf) break body.extend(buf[j:j + size]) j += size + 2 out.append((head, bytes(body), j)); i = j elif cl: n = int(cl.group(1)) end = start + n if end > len(buf): break out.append((head, bytes(buf[start:end]), end)); i = end else: status_no_body = is_response and re.match(r"HTTP/\d\.\d (1\d\d|204|304)", hs) if is_response and not status_no_body: # No framing header: the body runs to end-of-stream. out.append((head, bytes(buf[start:]), len(buf))); i = len(buf) break out.append((head, b"", start)); i = start return out def time_at(marks, offset): """Wall/relative time of the chunk containing byte `offset`.""" last = (0.0, 0.0) for pos, t, unix in marks: if pos > offset: break last = (t, unix) return last def cmd_parse(args): session = os.path.abspath(args.session) raw = os.path.join(session, "raw", "utas.ofcap") conns = read_capture(raw) out_dir = os.path.join(session, "sanitized") os.makedirs(out_dir, exist_ok=True) out_path = os.path.join(out_dir, "transactions.jsonl") total, skipped = 0, 0 with open(out_path, "w") as out: for conn_id in sorted(conns): c = conns[conn_id] reqs = split_messages(c["c2s"], is_response=False) resps = split_messages(c["s2c"], is_response=True) if len(reqs) != len(resps): # Reported, never silently trimmed: an unmatched count means the # framing is not understood, and a quiet truncation would look # like the client simply asked for less. print(" conn %d: %d requests but %d responses -- pairing the common prefix" % (conn_id, len(reqs), len(resps)), file=sys.stderr) skipped += abs(len(reqs) - len(resps)) keepalive = None for seq, ((rh, rb, rend), (sh, sb, send)) in enumerate(zip(reqs, resps), 1): rl = rh.split(b"\r\n")[0].decode("latin1") sl = sh.split(b"\r\n")[0].decode("latin1") m = re.match(r"(\S+)\s+(\S+)\s+(HTTP/\d\.\d)", rl) method, target, ver = (m.group(1), m.group(2), m.group(3)) if m else ("?", rl, "?") path, _, query = target.partition("?") st = re.match(r"HTTP/\d\.\d\s+(\d+)", sl) req_t, req_unix = time_at(c["marks"]["c2s"], rend - 1) res_t, res_unix = time_at(c["marks"]["s2c"], max(send - 1, 0)) keepalive = len(reqs) > 1 rec = { "conn": conn_id, "seq": seq, "t_request": req_t, "t_response": res_t, "elapsed_ms": round((res_t - req_t) * 1000, 3), "unix_request": req_unix, "request": { "method": method, "path": path, "query": query, "version": ver, "headers": header_list(rh), "body_b64": base64.b64encode(rb).decode(), "body_len": len(rb), }, "response": { "status": int(st.group(1)) if st else None, "status_line": sl, "headers": header_list(sh), "body_b64": base64.b64encode(sb).decode(), "body_len": len(sb), }, "connection": { "requests_on_this_connection": len(reqs), "keepalive_observed": keepalive, }, } rec = sanitize(rec) if getattr(args, "max_body", 0): for side in ("request", "response"): raw = base64.b64decode(rec[side]["body_b64"]) if len(raw) > args.max_body: rec[side]["body_b64"] = base64.b64encode( raw[: args.max_body] ).decode() rec[side]["body_truncated"] = True rec[side]["body_full_len"] = len(raw) rec[side]["body_full_sha256"] = hashlib.sha256(raw).hexdigest() out.write(json.dumps(rec, sort_keys=True) + "\n") total += 1 os.chmod(out_path, 0o644) print("wrote %s (%d transactions across %d connections%s)" % (out_path, total, len(conns), "; %d unpaired messages reported above" % skipped if skipped else "")) return 0 def header_list(head): """Headers in RECEIVED ORDER, as a list of pairs. Order can be protocol- relevant and a dict would silently discard duplicates.""" lines = head.decode("latin1").split("\r\n")[1:] out = [] for l in lines: if not l: continue k, _, v = l.partition(":") out.append([k, v.strip()]) return out SECRET_HEADERS = {"authorization", "cookie", "set-cookie", "x-ut-sid", "easw-session-data-nucleus-id"} # Substring-matched against lowercased JSON keys. Extended after auditing the # first real corpus: session tokens were being redacted correctly, but the # client also sends hardware and device identifiers in `POST /ut/auth`, and a # committed fixture is a published fixture. Audit the output before publishing, # every time -- "the sanitiser handles it" is a belief until it is checked. SECRET_BODY_KEYS = ( "sid", "token", "password", "answer", "secret", "macaddress", "deviceid", "authcode", ) def sanitize(rec): """Repository-safe form. Bodies are preserved EXACTLY; only credentials go. THREE input surfaces carry identifiers, not two. The first version handled headers and JSON bodies and was still about to publish a device id, because `GET /ut/game/fifa17/phishing/trusteddevice?deviceId=...` puts it in the QUERY STRING. Caught by auditing the output rather than by trusting the sanitiser -- which is the only reason it is a comment and not a leak. Exact bodies first, sanitise second: the corpus is worthless if response payloads are reshaped, so nothing here touches structure -- it replaces known-secret header values and known-secret JSON keys, and records that it did so. """ redacted = [] # Query string: same key rules as bodies. q = rec["request"].get("query") or "" if q: parts, hit = [], False for kv in q.split("&"): k, eq, v = kv.partition("=") if eq and any(x in k.lower() for x in SECRET_BODY_KEYS): parts.append(k + "=") redacted.append("request.query." + k) hit = True else: parts.append(kv) if hit: rec["request"]["query"] = "&".join(parts) for side in ("request", "response"): hs = rec[side]["headers"] for pair in hs: if pair[0].lower() in SECRET_HEADERS: redacted.append("%s.%s" % (side, pair[0])) pair[1] = "" body = base64.b64decode(rec[side]["body_b64"]) new, hit = redact_json(body) if hit: redacted.extend("%s.body.%s" % (side, h) for h in hit) rec[side]["body_b64"] = base64.b64encode(new).decode() rec[side]["body_len_original"] = len(body) if redacted: rec["redacted"] = sorted(set(redacted)) return rec def redact_json(body): if not body[:1] in (b"{", b"["): return body, [] try: doc = json.loads(body) except Exception: return body, [] hits = [] def walk(o): if isinstance(o, dict): for k in list(o): if any(s in k.lower() for s in SECRET_BODY_KEYS) and isinstance(o[k], str): o[k] = "" hits.append(k) else: walk(o[k]) elif isinstance(o, list): for v in o: walk(v) walk(doc) if not hits: return body, [] return json.dumps(doc, sort_keys=True).encode(), hits # ────────────────────────────────────────────────────────────── snapshot ──── # Read-only GETs only. `/openfut/account/sync` is deliberately NOT here: it is a # POST that selects and writes an account, so using it as a snapshot would # mutate the state the snapshot exists to observe. # # All six were confirmed to answer 200 without a session token. SNAPSHOT_ROUTES = [ ("credits", "/ut/game/fifa17/user/credits"), ("userMassInfo", "/ut/game/fifa17/userMassInfo"), ("unassigned", "/ut/game/fifa17/purchased/items"), ("activeSquad", "/ut/game/fifa17/squad/active"), ("tradePile", "/ut/game/fifa17/tradePile"), ("accountInfo", "/ut/game/fifa17/user/accountinfo"), ] def http_get(host, port, path): s = socket.create_connection((host, int(port)), timeout=10) s.sendall(("GET %s HTTP/1.1\r\nHost: %s:%s\r\nConnection: close\r\n\r\n" % (path, host, port)).encode()) buf = b"" while True: d = s.recv(65536) if not d: break buf += d s.close() head, _, body = buf.partition(b"\r\n\r\n") line = head.split(b"\r\n")[0].decode("latin1") status = int(line.split()[1]) if len(line.split()) > 1 else None return status, body def cmd_snapshot(args): """A state manifest for pairing before/after around a capture session. A summary plus a hash, not a database dump. The named fields are what a human reads; the sha256 of each full body is the safety net, because a summary can only report changes in fields somebody thought to list. If the hash moves and no field does, the summary is incomplete -- and that is itself a finding rather than a silent miss. Raw bodies are written alongside at mode 0600 so a real diff is possible later without re-running the session. """ import hashlib uh, up = args.upstream.rsplit(":", 1) out_path = os.path.abspath(args.out) raw_dir = os.path.join(os.path.dirname(out_path), "bodies") os.makedirs(raw_dir, exist_ok=True) man = {"unix": time.time(), "upstream": args.upstream, "routes": {}} for name, path in SNAPSHOT_ROUTES: try: status, body = http_get(uh, up, path) except Exception as e: # Recorded as an error, never omitted: a missing section must not # be mistakable for an empty one. man["routes"][name] = {"error": str(e)} continue bp = os.path.join(raw_dir, name + ".json") fd = os.open(bp, os.O_CREAT | os.O_WRONLY | os.O_TRUNC, 0o600) with os.fdopen(fd, "wb") as f: f.write(body) man["routes"][name] = { "status": status, "body_len": len(body), "sha256": hashlib.sha256(body).hexdigest(), "fields": extract(name, body), } os.makedirs(os.path.dirname(out_path), exist_ok=True) with open(out_path, "w") as f: json.dump(man, f, indent=2, sort_keys=True) f.write("\n") print("wrote %s" % out_path) for k, v in man["routes"].items(): print(" %-13s %s" % (k, v.get("fields", v))) return 0 def extract(name, body): """Named fields per route. Unknown shapes report what they can rather than raising -- the hash still covers everything.""" try: d = json.loads(body) except Exception: return {"unparsed_len": len(body)} f = {} if name == "credits": f["credits"] = d.get("credits") elif name == "userMassInfo": ui = d.get("userInfo", {}) for k in ("personaId", "clubName", "clubAbbr", "trophies"): if k in ui: f[k] = ui[k] for k, v in d.items(): if isinstance(v, list): f[k + ".count"] = len(v) elif name == "unassigned": f["itemData.count"] = len(d.get("itemData", [])) elif name == "activeSquad": f["id"] = d.get("id") f["formation"] = d.get("formation") players = d.get("players", []) f["players.count"] = len(players) # Slot -> item id, so a two-player swap is visible in the diff. f["slots"] = { str(p.get("index", i)): (p.get("itemData") or {}).get("id") for i, p in enumerate(players) } elif name == "tradePile": f["auctionInfo.count"] = len(d.get("auctionInfo", [])) elif name == "accountInfo": f["keys"] = sorted(d.keys()) if isinstance(d, dict) else None return f def main(): ap = argparse.ArgumentParser(description=__doc__, formatter_class=argparse.RawDescriptionHelpFormatter) sub = ap.add_subparsers(dest="cmd", required=True) r = sub.add_parser("record") r.add_argument("--listen", required=True) r.add_argument("--upstream", required=True) r.add_argument("--session", required=True) r.set_defaults(fn=cmd_record) p = sub.add_parser("parse") p.add_argument("--session", required=True) # Repository-safe size. The raw .ofcap keeps every byte privately; a # committed fixture that repeats an identical 1.1MB response 25 times is # 13MB of git history proving something its own sha256 already proves. # Bodies over the limit are replaced by a bounded head sample, and the # omission is RECORDED per transaction so nobody mistakes a truncated # fixture for the whole response. p.add_argument("--max-body", type=int, default=0, help="bytes; 0 = keep every body in full") p.set_defaults(fn=cmd_parse) s = sub.add_parser("snapshot") s.add_argument("--upstream", required=True) s.add_argument("--out", required=True) s.set_defaults(fn=cmd_snapshot) args = ap.parse_args() return args.fn(args) or 0 if __name__ == "__main__": sys.exit(main())