prop/lib/microwaveprop_web/plugs/remote_ip.ex
Graham McIntire 10cbd8dd48
fix(remote_ip): log IPv6 in canonical hex via :inet.ntoa
IPv6 segments were being printed in decimal (e.g. 10772:1985:1024:45::1
for 2a14:7c1:400:2d::1), which made request_id logs unreadable.
2026-04-25 18:05:46 -05:00

184 lines
5.4 KiB
Elixir

defmodule MicrowavepropWeb.Plugs.RemoteIp do
@moduledoc """
Extracts the client IP from `Cf-Connecting-Ip` / `X-Forwarded-For` headers,
but only when the immediate peer (`conn.remote_ip`) is a trusted proxy.
Deployment: the app runs as pods in the k8s `prop` namespace behind the
cluster ingress, which itself sits behind Cloudflare. The only hosts that
should ever terminate TCP to a pod are ingress replicas on the cluster
pod network, so we only honour forwarded-IP headers when the raw socket
peer falls inside a configured CIDR list.
Trusted proxies are configured via `config :microwaveprop, :trusted_proxies`
(a list of CIDR strings). The default list covers loopback and the RFC1918
/ ULA ranges used by k8s cluster pod networks. `config/runtime.exs` reads
`TRUSTED_PROXY_CIDRS` (comma-separated) in production for tuning without
a rebuild.
Rationale: without this guard any client that reaches a pod directly
(cluster-internal, `kubectl port-forward`, a misconfigured Service) could
spoof `Cf-Connecting-Ip` to set `conn.remote_ip`, which flows into session
storage and logs.
"""
@behaviour Plug
import Bitwise
require Logger
@ip_headers ["cf-connecting-ip", "x-forwarded-for"]
# RFC1918 + CGNAT + loopback + link-local + IPv6 loopback + ULA.
# Matches typical k8s pod/service CIDRs and the ingress mesh.
@default_trusted_proxies [
"127.0.0.0/8",
"10.0.0.0/8",
"172.16.0.0/12",
"192.168.0.0/16",
"100.64.0.0/10",
"169.254.0.0/16",
"::1/128",
"fc00::/7",
"fe80::/10"
]
@impl true
def init(opts) do
cidrs =
Keyword.get_lazy(opts, :trusted_proxies, fn ->
Application.get_env(:microwaveprop, :trusted_proxies, @default_trusted_proxies)
end)
parsed =
cidrs
|> Enum.map(&parse_cidr/1)
|> Enum.reject(&is_nil/1)
%{trusted_proxies: parsed}
end
@impl true
def call(conn, %{trusted_proxies: trusted_proxies}) do
# Bandit's dual-stack listener serves IPv4 connections as IPv4-mapped
# IPv6 tuples (`::ffff:a.b.c.d`). Normalize those to plain IPv4 so
# the trust check matches our IPv4 CIDRs and downstream logs see
# consistent IPv4 tuples instead of `0:0:0:0:0:65535:...` forms.
conn = %{conn | remote_ip: normalize_ip(conn.remote_ip)}
conn =
if peer_trusted?(conn.remote_ip, trusted_proxies) do
case extract_forwarded_ip(conn) do
nil -> conn
ip -> %{conn | remote_ip: ip}
end
else
conn
end
Logger.metadata(
remote_ip: format_ip(conn.remote_ip),
method: conn.method,
request_path: conn.request_path
)
conn
end
# Collapse an IPv4-mapped IPv6 tuple (`::ffff:a.b.c.d`) to a plain IPv4
# tuple so the rest of the pipeline sees one canonical form.
defp normalize_ip({0, 0, 0, 0, 0, 0xFFFF, hi, lo}) do
{hi >>> 8, hi &&& 0xFF, lo >>> 8, lo &&& 0xFF}
end
defp normalize_ip(ip), do: ip
defp extract_forwarded_ip(conn) do
Enum.find_value(@ip_headers, fn header ->
case Plug.Conn.get_req_header(conn, header) do
[value | _] ->
value
|> String.split(",")
|> hd()
|> String.trim()
|> parse_ip()
_ ->
nil
end
end)
end
defp parse_ip(str) do
case :inet.parse_address(String.to_charlist(str)) do
{:ok, ip} -> ip
_ -> nil
end
end
# Parses "10.0.0.0/8" or "fc00::/7" into {ip_integer, mask_integer, bit_width}.
# Invalid entries are logged and dropped at init-time.
defp parse_cidr(cidr) when is_binary(cidr) do
case String.split(cidr, "/", parts: 2) do
[ip_str, prefix_str] ->
with {prefix, ""} <- Integer.parse(prefix_str),
{:ok, ip} <- :inet.parse_address(String.to_charlist(ip_str)),
bit_width = bit_width_for(ip),
true <- prefix >= 0 and prefix <= bit_width do
mask = cidr_mask(prefix, bit_width)
{ip_to_integer(ip), mask, bit_width}
else
_ ->
Logger.warning("RemoteIp: could not parse CIDR #{inspect(cidr)}")
nil
end
_ ->
Logger.warning("RemoteIp: CIDR missing /prefix: #{inspect(cidr)}")
nil
end
end
defp parse_cidr(_), do: nil
defp bit_width_for(ip) when tuple_size(ip) == 4, do: 32
defp bit_width_for(ip) when tuple_size(ip) == 8, do: 128
# Build a prefix-bit mask: e.g. prefix=24, bit_width=32 -> 0xFFFFFF00.
defp cidr_mask(0, _bit_width), do: 0
defp cidr_mask(prefix, bit_width) do
host_bits = bit_width - prefix
all_ones = (1 <<< bit_width) - 1
all_ones - ((1 <<< host_bits) - 1)
end
defp peer_trusted?(peer_ip, trusted) when tuple_size(peer_ip) in [4, 8] do
peer_width = bit_width_for(peer_ip)
peer_int = ip_to_integer(peer_ip)
Enum.any?(trusted, fn {cidr_int, mask, bit_width} ->
bit_width == peer_width and band(peer_int, mask) == band(cidr_int, mask)
end)
end
defp peer_trusted?(_, _), do: false
defp ip_to_integer({a, b, c, d}) do
(a <<< 24) + (b <<< 16) + (c <<< 8) + d
end
defp ip_to_integer({a, b, c, d, e, f, g, h}) do
(a <<< 112) + (b <<< 96) + (c <<< 80) + (d <<< 64) +
(e <<< 48) + (f <<< 32) + (g <<< 16) + h
end
defp format_ip(ip) when tuple_size(ip) in [4, 8] do
case :inet.ntoa(ip) do
{:error, _} -> "unknown"
charlist -> List.to_string(charlist)
end
end
defp format_ip(_), do: "unknown"
end