Files
OmniRoute/tests/unit/proxySubscription.fetchGuard.test.ts
adevwithpurpose 71ab289b7a fix(proxy-subscriptions): unwrap IPv4-mapped IPv6 + full fe80::/10 range (#10416)
The #10158 SSRF guard left two gaps on the IPv6 side: an IPv4-mapped IPv6
literal (::ffff:a.b.c.d) skipped IPv4 range checking entirely, and the
link-local check only matched strings literally prefixed with "fe80"
instead of the full fe80::/10 range (fe80:: - febf:ffff::), so fe90::,
febf:ffff::, etc. were wrongly allowed through.

isIpv6Blocked() now unwraps mapped IPv4 addresses (both the dotted-quad
and WHATWG-normalized hex-group forms) and re-checks them against the
IPv4 rules, and link-local detection parses the first hex group's numeric
value against the 0xfe80-0xfebf range instead of a string prefix.
2026-08-17 22:35:16 -03:00

237 lines
9.5 KiB
TypeScript

import test from "node:test";
import assert from "node:assert/strict";
const mod = await import("../../src/lib/proxySubscription/fetchGuard.ts");
const {
isSubscriptionFetchUrlAllowed,
isIpv4Blocked,
isIpv6Blocked,
isIpLiteral,
isAnyResolvedAddressBlocked,
ALLOWED_FETCH_SCHEMES,
} = mod;
test("public http/https URLs are allowed", () => {
assert.equal(isSubscriptionFetchUrlAllowed("https://example.com/sub"), true);
assert.equal(isSubscriptionFetchUrlAllowed("http://subs.example.org:8080/a"), true);
assert.equal(isSubscriptionFetchUrlAllowed("https://1.2.3.4/sub"), true); // public IP
});
test("non-http(s) schemes are rejected", () => {
assert.equal(isSubscriptionFetchUrlAllowed("ftp://example.com/x"), false);
assert.equal(isSubscriptionFetchUrlAllowed("file:///etc/passwd"), false);
assert.equal(isSubscriptionFetchUrlAllowed("gopher://example.com"), false);
});
test("local-first (#10158): loopback/private IPv4 literals are ALLOWED by default", () => {
for (const ip of ["127.0.0.1", "10.0.0.5", "172.16.0.1", "192.168.1.1"]) {
assert.equal(isSubscriptionFetchUrlAllowed(`https://${ip}/x`), true, ip);
}
});
test("cloud-metadata / link-local / unspecified IPv4 literals are ALWAYS blocked", () => {
for (const ip of ["169.254.169.254", "169.254.1.1", "0.0.0.0"]) {
assert.equal(isSubscriptionFetchUrlAllowed(`https://${ip}/x`), false, ip);
}
});
test("strict mode (allowLocal: false) rejects loopback/private IPv4 literals", () => {
for (const ip of ["127.0.0.1", "10.0.0.5", "172.16.0.1", "192.168.1.1", "169.254.169.254", "0.0.0.0"]) {
assert.equal(
isSubscriptionFetchUrlAllowed(`https://${ip}/x`, { allowLocal: false }),
false,
ip
);
}
});
test("public IPv4 literals are allowed", () => {
assert.equal(isSubscriptionFetchUrlAllowed("https://8.8.8.8/x"), true);
assert.equal(isSubscriptionFetchUrlAllowed("http://1.1.1.1/"), true);
});
test("local-first (#10158): loopback/ULA IPv6 literals are ALLOWED by default", () => {
for (const ip of ["::1", "fc00::1", "fd12:3456::1"]) {
assert.equal(isSubscriptionFetchUrlAllowed(`https://[${ip}]/x`), true, ip);
}
});
test("unspecified / link-local IPv6 literals are ALWAYS blocked", () => {
for (const ip of ["::", "fe80::1"]) {
assert.equal(isSubscriptionFetchUrlAllowed(`https://[${ip}]/x`), false, ip);
}
});
test("strict mode (allowLocal: false) rejects loopback/ULA IPv6 literals", () => {
for (const ip of ["::1", "::", "fe80::1", "fc00::1", "fd12:3456::1"]) {
assert.equal(
isSubscriptionFetchUrlAllowed(`https://[${ip}]/x`, { allowLocal: false }),
false,
ip
);
}
});
test("malformed / empty-host URLs are rejected", () => {
assert.equal(isSubscriptionFetchUrlAllowed("not a url"), false);
assert.equal(isSubscriptionFetchUrlAllowed(""), false);
assert.equal(isSubscriptionFetchUrlAllowed("http://?x"), false); // empty host
});
test("ip-range + literal helpers (local-first defaults)", () => {
assert.equal(isIpv4Blocked("127.0.0.1"), false); // allowed by default (local-first)
assert.equal(isIpv4Blocked("127.0.0.1", { allowLocal: false }), true);
assert.equal(isIpv4Blocked("169.254.169.254"), true); // always blocked
assert.equal(isIpv4Blocked("8.8.8.8"), false);
assert.equal(isIpv6Blocked("::1"), false); // allowed by default (local-first)
assert.equal(isIpv6Blocked("::1", { allowLocal: false }), true);
assert.equal(isIpv6Blocked("2606:4700::1111"), false);
assert.equal(isIpLiteral("127.0.0.1"), true);
assert.equal(isIpLiteral("::1"), true);
assert.equal(isIpLiteral("example.com"), false);
assert.deepEqual([...ALLOWED_FETCH_SCHEMES], ["http:", "https:"]);
});
test("multi-record DNS: blocks if ANY resolved address is metadata/link-local (local-first default)", () => {
// A private address alongside a public one is now ALLOWED by default
// (local-first) — only cloud-metadata/link-local addresses stay blocked.
assert.equal(
isAnyResolvedAddressBlocked([
{ address: "8.8.8.8", family: 4 },
{ address: "192.168.1.10", family: 4 },
]),
false
);
// A cloud-metadata address among public records → still blocked.
assert.equal(
isAnyResolvedAddressBlocked([
{ address: "8.8.8.8", family: 4 },
{ address: "169.254.169.254", family: 4 },
]),
true
);
// All public → allowed.
assert.equal(
isAnyResolvedAddressBlocked([
{ address: "8.8.8.8", family: 4 },
{ address: "1.1.1.1", family: 4 },
]),
false
);
// Strict mode (allowLocal: false): a private address is blocked again.
assert.equal(
isAnyResolvedAddressBlocked(
[
{ address: "8.8.8.8", family: 4 },
{ address: "192.168.1.10", family: 4 },
],
{ allowLocal: false }
),
true
);
// A single internal IPv6 among public records → blocked in strict mode.
assert.equal(
isAnyResolvedAddressBlocked(
[
{ address: "2606:4700::1111", family: 6 },
{ address: "fd00::1", family: 6 },
],
{ allowLocal: false }
),
true
);
// Empty result set → nothing blocked.
assert.equal(isAnyResolvedAddressBlocked([]), false);
});
// ─────────────────── Regression: #10158 local proxy subscription ───────────────────
// Promoted from the TDD probe (was RED on release/v3.8.50: local http subscription
// URLs were rejected by the strict SSRF guard even though the same feature already
// permits loopback for the routing half — coreEndpoint.ts's ALLOWED_LOCAL_CORE_HOSTS).
test("#10158: local (127.0.0.1) http subscription URL is allowed by default", () => {
assert.equal(
isSubscriptionFetchUrlAllowed("http://127.0.0.1:8080/list"),
true,
"an operator should be able to fetch a proxy list from a local HTTP server"
);
});
test("#10158: IMDS / cloud-metadata pivot stays blocked even with local-first default", () => {
assert.equal(isSubscriptionFetchUrlAllowed("http://169.254.169.254/latest/meta-data/"), false);
});
// ─────────────────── Regression: #10416 incomplete SSRF guard ───────────────────
// The #10158 fix left two gaps in the IPv6 side of the guard: (1) IPv4-mapped
// IPv6 literals (`::ffff:a.b.c.d`) were never unwrapped, so a mapped IMDS/
// loopback/private address skipped IPv4 range checking entirely; (2) the
// link-local check was a narrow `.startsWith("fe80")` string test instead of
// the full `fe80::/10` range (`fe80::` .. `febf:ffff::…`), so e.g. `fe90::1`
// or `febf:ffff::1` were WRONGLY ALLOWED even though they are link-local.
test("#10416: IPv4-mapped IPv6 IMDS literal stays blocked unconditionally", () => {
assert.equal(
isSubscriptionFetchUrlAllowed("http://[::ffff:169.254.169.254]/latest/meta-data/"),
false
);
assert.equal(
isSubscriptionFetchUrlAllowed("http://[::ffff:169.254.169.254]/latest/meta-data/", {
allowLocal: false,
}),
false
);
assert.equal(isIpv6Blocked("::ffff:169.254.169.254"), true);
});
test("#10416: IPv4-mapped IPv6 loopback/private literals follow IPv4 semantics", () => {
for (const mapped of ["::ffff:127.0.0.1", "::ffff:10.0.0.1", "::ffff:192.168.1.1"]) {
// local-first default: allowed, same as the bare IPv4 form.
assert.equal(isSubscriptionFetchUrlAllowed(`http://[${mapped}]/x`), true, mapped);
assert.equal(isIpv6Blocked(mapped), false, mapped);
// strict mode: blocked, same as the bare IPv4 form.
assert.equal(
isSubscriptionFetchUrlAllowed(`http://[${mapped}]/x`, { allowLocal: false }),
false,
mapped
);
assert.equal(isIpv6Blocked(mapped, { allowLocal: false }), true, mapped);
}
});
test("#10416: full fe80::/10 link-local range is blocked, not just the fe80 prefix", () => {
// fe80::/10 spans fe80:: through febf:ffff:…, i.e. the top 10 bits of the
// first hex group are 11111110 10xxxxxx (0xfe80-0xfebf). A narrow
// `.startsWith("fe80")` check misses fe90/fea0/febf entirely.
for (const ip of ["fe80::1", "fe90::1", "fea0::1", "febf:ffff::1"]) {
assert.equal(isSubscriptionFetchUrlAllowed(`http://[${ip}]/x`), false, ip);
assert.equal(
isSubscriptionFetchUrlAllowed(`http://[${ip}]/x`, { allowLocal: false }),
false,
ip
);
assert.equal(isIpv6Blocked(ip), true, ip);
}
// fec0:: is OUTSIDE fe80::/10 (it was the deprecated IPv6 site-local
// prefix, not link-local) — must NOT be misclassified as link-local.
assert.equal(isIpv6Blocked("fec0::1"), false);
});
test("#10416: IPv4-mapped IPv6 literal host is recognized by isIpLiteral", () => {
assert.equal(isIpLiteral("::ffff:169.254.169.254"), true);
assert.equal(isIpLiteral("::ffff:127.0.0.1"), true);
});
// The WHATWG `URL` parser normalizes a dotted-quad IPv4-mapped IPv6 literal
// into hex-group form (`::ffff:169.254.169.254` -> `::ffff:a9fe:a9fe`), so
// `isSubscriptionFetchUrlAllowed` (which parses via `new URL()`) only ever
// sees the hex-group form for a URL-supplied host — verify that form too.
test("#10416: URL-normalized (hex-group) IPv4-mapped IPv6 literals are handled", () => {
assert.equal(new URL("http://[::ffff:169.254.169.254]/x").hostname, "[::ffff:a9fe:a9fe]");
assert.equal(isSubscriptionFetchUrlAllowed("http://[::ffff:169.254.169.254]/x"), false);
assert.equal(isIpv6Blocked("::ffff:a9fe:a9fe"), true); // mapped IMDS
assert.equal(isSubscriptionFetchUrlAllowed("http://[::ffff:127.0.0.1]/x"), true);
assert.equal(isIpv6Blocked("::ffff:7f00:1"), false); // mapped loopback, local-first default
assert.equal(isIpv6Blocked("::ffff:7f00:1", { allowLocal: false }), true);
});