spike(block2): de-risk web of trust — the last big unknown

Adds TrustTransport as the third interface on the shared NostrConnection,
completing the social-layer happy path in the spike:

- WebOfTrust: pure, Flutter-free Duniter membership rule (N certs from members +
  within distance D of bootstrap referents), iterated to a fixpoint. The
  commons_core-worthy piece; TDD'd (threshold, distance cutoff, transitive
  growth, expired/revoked/self exclusion).
- NostrTrustTransport: certifications as a custom addressable kind (30777,
  keyed by issuer+subject) — certify renews, revoke replaces, certs expire.
- Trust filters spam (network-trust §2): seeds certify Alice; Eve stays
  uncertified; Bob discovers both offers and annotates authors — Alice known,
  Eve unknown — all over ONE shared connection.

Findings updated: WoT risk High -> Medium (policy/bootstrap, not feasibility);
overall scope Medium-High -> Medium — all three transport contracts now proven.
30 tests green, analyzer clean, Block 1 untouched.
This commit is contained in:
vjrj 2026-07-10 02:17:35 +02:00
parent 2cafc7fc12
commit cc88f3d688
7 changed files with 522 additions and 27 deletions

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@ -22,8 +22,11 @@ The three open decisions from [open-decisions.md](open-decisions.md) §D.3 and
| 2 | Does an `OfferTransport` abstraction hold, without leaking inventory/location? | **Yes — and the "one connection, three interfaces" shape is now demonstrated in code.** |
| 3 | Does publish→discover-by-geohash actually work on Nostr NIP-99? | **Yes mechanically; NIP *maturity* is the real risk, not the flow.** |
| 3b | Does NIP-17 private, metadata-hiding messaging actually work? | **Yes — prototyped end to end. Risk drops from "unbuilt unknown" to "production hardening".** |
| 4 | Does a Duniter-style web of trust work over Nostr, and can it filter spam? | **Yes — certify/discover + threshold-and-distance membership + offer filtering all prototyped.** |
All of it runs with tests (20 passing). See "How to run" at the end.
All of it runs with tests (30 passing). All three transport contracts —
offers, messaging, trust — plus the pure trust-graph logic are exercised.
See "How to run" at the end.
---
@ -112,21 +115,22 @@ manageable**:
certifications behind `OfferTransport.publish/discover` would overload it.
- **Recommendation — now demonstrated in code, not just asserted:**
[`NostrConnection`](../../spike/block2_spike/lib/src/nostr_connection.dart) is
**one shared** socket + key + sign + REQ/EOSE lifecycle, and **two thin
interfaces already sit on top of the same instance** —
**one shared** socket + key + sign + REQ/EOSE lifecycle, and **all three thin
interfaces sit on top of the same instance** —
[`OfferTransport`](../../spike/block2_spike/lib/src/nostr_offer_transport.dart)
(NIP-99) and
(NIP-99),
[`MessageTransport`](../../spike/block2_spike/lib/src/nostr_message_transport.dart)
(NIP-17). A third, `TrustTransport` (WoT), would slot in the same way. This is
the shape to lift into `commons_core`: shared connection, per-concern
contract. Trying to make `OfferTransport` also carry DMs would have overloaded
it — the split is real.
(NIP-17) and
[`TrustTransport`](../../spike/block2_spike/lib/src/nostr_trust_transport.dart)
(custom WoT). The trust test even runs offer discovery and trust annotation
over one connection. This is the shape to lift into `commons_core`: shared
connection, per-concern contract. Trying to make `OfferTransport` also carry
DMs and certifications would have overloaded it — the split is real.
**Residual risk: medium → low-medium.** The abstraction is right *and* two of
the three contracts are now built. The remaining risk is **scope, not
feasibility**: "the social layer" is offers + messaging + trust + relays
together (§D.1 "indivisible"), and trust/WoT plus production hardening of
messaging (below) are still ahead.
**Residual risk: low.** The abstraction is right and all three contracts are
built. The remaining risk is **scope/hardening, not feasibility**: "the social
layer" is offers + messaging + trust + relays together (§D.1 "indivisible"), and
that whole happy path now runs — what's left is production hardening (below).
---
@ -209,6 +213,39 @@ coupling to Nostr. So the spike built it rather than hand-waving:
large" weight.
- **Spam/abuse** on DMs leans on the (unbuilt) web of trust.
## Q4 — Web of trust (the last big unknown)
**Result: a Duniter-style WoT maps cleanly onto Nostr, computes correctly from
discovered events, and filters spam. Built and tested.**
There is no settled NIP for a web of trust, so — exactly as
[g1-integration.md](g1-integration.md) §"WoT propia pero compatible"
anticipates — the spike models **its own WoT, Duniter-compatible**, over Nostr:
- **Certifications as events**
([`NostrTrustTransport`](../../spike/block2_spike/lib/src/nostr_trust_transport.dart)):
a custom addressable kind (30777) keyed by (issuer, `d`=subject), so one live
"A vouches for B" per pair; re-certifying renews, revoking replaces (tested).
Certifications expire (Ğ1 semantics) and are public (like the on-chain Ğ1 WoT).
- **The membership rule is pure and separately tested**
([`WebOfTrust`](../../spike/block2_spike/lib/src/web_of_trust.dart)) — the
`commons_core`-worthy piece: Duniter's two rules, **N certifications from
existing members** (sigQty) and **within distance D of the bootstrap
referents** (stepMax), iterated to a fixpoint (becoming a member can push
others over the line). Tests cover threshold, distance cut-off, transitive
growth, and exclusion of expired/revoked/self certs.
- **It filters spam (the payoff, network-trust.md §2):** in a test, three seed
members certify Alice; Eve stays uncertified. Bob discovers both their offers,
then annotates authors — **Alice is "known", Eve stays "unknown"** and gets
deprioritised. Trust and offers run **on the same shared connection**, closing
the loop between Q2's architecture and this filter.
**Residual risk: high → medium.** Feasibility is proven; what's left is *policy
and bootstrap*, not code: choosing sigQty/stepMax/expiry (network-trust.md §2
"a decidir"), the cold-start referent set (fairs, Ğ1 seed groups —
[g1-integration.md](g1-integration.md)), whether a collective can certify as an
entity, and optionally importing the on-chain Ğ1 WoT (level 3) as a trust source.
## Overall recommendation
1. **Q1 is done enough to lock.** Adopt seed→secp256k1 derivation as specified;
@ -217,17 +254,21 @@ coupling to Nostr. So the spike built it rather than hand-waving:
2. **Q2: adopt the "one `NostrConnection`, three interfaces" shape.** Don't try
to make `OfferTransport` also carry messaging and trust. Keep `Offer`
agnostic and the geohash-coarsening seam exactly as prototyped.
3. **Q3: Nostr-first is the right bet, and now two of three contracts are
proven.** Offers (NIP-99) and private messaging (NIP-17) both work on the
shared connection. The remaining unproven weight is **WoT/trust
(NIP-85/custom)** plus **production hardening of messaging** (interop-exact
NIP-44, offline delivery, multi-device) — that, not the happy-path flow,
should drive the Phase-3 estimate and the funding ask
([open-decisions.md](open-decisions.md) §D.1, §D.6).
4. **Do not start Block 2 from this spike.** Delete `spike/block2_spike/` once
these findings are absorbed. The next concrete de-risking target is the **web
of trust** (Duniter-style certifications mapped to Nostr events) — the last
large unknown — followed by hardening messaging for real-world delivery.
3. **Q3/Q4: Nostr-first is the right bet, and all three contracts are now
proven.** Offers (NIP-99), private messaging (NIP-17) and the web of trust
(custom, Duniter-compatible) all work on the **same shared connection** — the
happy path of the entire social layer runs end to end in this spike. What
remains is **not feasibility but hardening and policy**: interop-exact NIP-44,
offline/multi-device delivery, and the WoT parameters + cold-start
([open-decisions.md](open-decisions.md) §D.1, §D.6). That is what should drive
the Phase-3 estimate and the funding ask.
4. **Do not start Block 2 from this spike.** It is throwaway research code (not
vector-verified, no offline delivery, no persistence, single relay). Delete
`spike/block2_spike/` once these findings are absorbed. The funded social
round should **rebuild on vetted client libraries in `commons_core`**, using
the shapes proven here — one `NostrConnection`, three interfaces, the pure
`WebOfTrust` rule — and spend its risk budget on hardening and bootstrap, not
on re-proving the happy path.
## Risk summary
@ -237,15 +278,15 @@ coupling to Nostr. So the spike built it rather than hand-waving:
| Offer transport + privacy seam | **Low** | Abstraction holds; leak-proofing is structural and tested. |
| Offer publish/discover (NIP-99) | **Low** | Mechanically proven; mature-ish NIP with real ecosystem. |
| Messaging (NIP-17) | **Medium** | Flow + metadata-privacy prototyped & tested. Left: interop-exact NIP-44, offline delivery, multi-device. |
| Web of trust (NIP-85/custom) | **High** | No settled standard; genuine design work. The last big unknown. |
| Overall scope (§D.1) | **Medium-High** | Social layer is indivisible & large; 2 of 3 transport contracts now proven, WoT + hardening remain. |
| Web of trust (custom, Ğ1-compatible) | **Medium** | Feasibility proven (certs + membership rule + spam filter tested). Left: parameters (sigQty/stepMax/expiry) + cold-start, not code. |
| Overall scope (§D.1) | **Medium** | Social layer is indivisible & large, but the whole happy path now runs end to end; what remains is hardening + policy, not unknowns. |
## How to run
```sh
cd spike/block2_spike
dart pub get
dart test # derivation · privacy · roundtrip · messaging (20 tests)
dart test # derivation · privacy · roundtrip · messaging · trust · web_of_trust (30 tests)
```
Nothing here is wired into `app_seeds` or `commons_core`'s production graph; the

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@ -12,5 +12,8 @@ export 'src/nostr_event.dart';
export 'src/nostr_key.dart';
export 'src/nostr_message_transport.dart';
export 'src/nostr_offer_transport.dart';
export 'src/nostr_trust_transport.dart';
export 'src/offer.dart';
export 'src/offer_transport.dart';
export 'src/trust_transport.dart';
export 'src/web_of_trust.dart';

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@ -0,0 +1,97 @@
import 'nostr_connection.dart';
import 'nostr_event.dart';
import 'trust_transport.dart';
import 'web_of_trust.dart';
/// Duniter-style certifications carried as Nostr events, on the shared
/// [NostrConnection]. There is no settled NIP for a web of trust (NIP-85 is
/// unsettled), so the spike uses a **custom addressable kind** mapped to the
/// Duniter model exactly the "own WoT, Duniter-compatible" path
/// g1-integration.md §"WoT propia pero compatible" anticipates.
///
/// Addressable by (kind, issuer, `d`=subject): one live certification per
/// (certifier, subject), so re-certifying renews and revoking replaces the
/// relay keeps only the latest, like Ğ1 keeps one active cert per pair.
class NostrTrustTransport implements TrustTransport {
NostrTrustTransport(this._conn);
final NostrConnection _conn;
/// Custom Tanemaki certification kind (addressable range).
static const kindCertification = 30777;
int get _now => DateTime.now().millisecondsSinceEpoch ~/ 1000;
@override
Future<void> certify({
required String subjectPubkey,
Duration validity = const Duration(days: 365),
String note = '',
}) =>
_publishCert(subjectPubkey, note: note, validity: validity, revoked: false);
@override
Future<void> revoke({required String subjectPubkey}) =>
_publishCert(subjectPubkey, note: '', validity: Duration.zero, revoked: true);
Future<void> _publishCert(
String subject, {
required String note,
required Duration validity,
required bool revoked,
}) async {
final event = NostrEvent(
pubkey: _conn.publicKeyHex,
createdAt: _now,
kind: kindCertification,
tags: [
['p', subject],
['d', subject], // one addressable cert per (issuer, subject)
['status', revoked ? 'revoked' : 'valid'],
if (!revoked) ['expiration', '${_now + validity.inSeconds}'],
],
content: note,
)..signWith(_conn.privateKeyHex);
final r = await _conn.publish(event);
if (!r.accepted) throw StateError('relay rejected cert: ${r.message}');
}
@override
Future<List<Certification>> allCertifications() async {
final events = await _conn.reqOnce({
'kinds': [kindCertification],
});
return events.map(_toCertification).toList();
}
@override
Future<Set<String>> certifiersOf(String subjectPubkey) async {
final events = await _conn.reqOnce({
'kinds': [kindCertification],
'#p': [subjectPubkey],
});
final now = DateTime.now();
return events
.map(_toCertification)
.where((c) => c.subject == subjectPubkey && c.isValidAt(now))
.map((c) => c.issuer)
.toSet();
}
Certification _toCertification(NostrEvent e) {
final exp = e.tag('expiration');
return Certification(
issuer: e.pubkey,
subject: e.tag('p') ?? e.tag('d') ?? '',
issuedAt: DateTime.fromMillisecondsSinceEpoch(e.createdAt * 1000),
expiresAt: exp == null
? null
: DateTime.fromMillisecondsSinceEpoch(int.parse(exp) * 1000),
revoked: e.tag('status') == 'revoked',
note: e.content,
);
}
@override
Future<void> close() => _conn.close();
}

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@ -0,0 +1,28 @@
import 'web_of_trust.dart';
/// The third interface over the shared `NostrConnection` (Q2): the web of trust.
/// Its verbs certify / revoke / read certifications are again distinct from
/// offers and messaging, confirming the three-contract split. Certifications are
/// public signed events (like the on-chain Ğ1 WoT), so this transport publishes
/// and discovers rather than encrypts.
abstract interface class TrustTransport {
/// Publishes a signed "I vouch for [subjectPubkey]" certification, valid for
/// [validity] (Duniter certifications expire and must be renewed).
Future<void> certify({
required String subjectPubkey,
Duration validity = const Duration(days: 365),
String note = '',
});
/// Revokes this identity's certification of [subjectPubkey] (replaces the
/// addressable event with a revoked one).
Future<void> revoke({required String subjectPubkey});
/// All certifications currently visible on the relay (to build a [WebOfTrust]).
Future<List<Certification>> allCertifications();
/// Distinct, currently-valid certifiers of [subjectPubkey].
Future<Set<String>> certifiersOf(String subjectPubkey);
Future<void> close();
}

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@ -0,0 +1,119 @@
/// One "A vouches for B" certification (Duniter/Ğ1 style). Public by design
/// like the on-chain Ğ1 WoT and signed by the issuer.
class Certification {
const Certification({
required this.issuer,
required this.subject,
required this.issuedAt,
this.expiresAt,
this.revoked = false,
this.note = '',
});
final String issuer; // certifier pubkey
final String subject; // certified pubkey
final DateTime issuedAt;
final DateTime? expiresAt;
final bool revoked;
final String note;
bool isValidAt(DateTime now) =>
!revoked && (expiresAt == null || expiresAt!.isAfter(now));
}
/// Pure, Flutter-free web-of-trust computation. This is the piece that would
/// live in `commons_core` (identity/trust is generic). It answers "who counts
/// as a known member" from a set of certification edges, using Duniter's two
/// rules: **N certifications from existing members** and **within distance D of
/// the bootstrap referents**. TDD target no I/O, deterministic.
class WebOfTrust {
WebOfTrust();
final Map<String, Set<String>> _out = {}; // issuer -> subjects
final Map<String, Set<String>> _in = {}; // subject -> issuers
/// Builds a graph from valid certifications as of [now] (drops expired /
/// revoked, ignores self-certifications).
factory WebOfTrust.fromCertifications(
Iterable<Certification> certs, {
required DateTime now,
}) {
final wot = WebOfTrust();
for (final c in certs) {
if (c.issuer == c.subject) continue;
if (!c.isValidAt(now)) continue;
wot.addEdge(c.issuer, c.subject);
}
return wot;
}
void addEdge(String issuer, String subject) {
(_out[issuer] ??= {}).add(subject);
(_in[subject] ??= {}).add(issuer);
}
/// Distinct certifiers of [subject].
Set<String> certifiersOf(String subject) => _in[subject] ?? const {};
int certifierCount(String subject) => certifiersOf(subject).length;
/// The set of known members: [seeds] (bootstrap referents, certified face to
/// face at a fair) plus everyone reachable by the rules. Iterated to a
/// fixpoint, because becoming a member can let you push others over the
/// threshold.
///
/// - [threshold]: min certifications **from current members** (Duniter sigQty,
/// ~5).
/// - [maxDistance]: max certification hops from any seed (Duniter stepMax, ~5).
Set<String> members({
required Set<String> seeds,
required int threshold,
required int maxDistance,
}) {
final members = {...seeds};
final distance = _distancesFromSeeds(seeds);
var changed = true;
while (changed) {
changed = false;
for (final subject in _in.keys) {
if (members.contains(subject)) continue;
final d = distance[subject];
if (d == null || d > maxDistance) continue;
final memberCertifiers =
certifiersOf(subject).where(members.contains).length;
if (memberCertifiers >= threshold) {
members.add(subject);
changed = true;
}
}
}
return members;
}
bool isMember(
String pubkey, {
required Set<String> seeds,
required int threshold,
required int maxDistance,
}) =>
members(seeds: seeds, threshold: threshold, maxDistance: maxDistance)
.contains(pubkey);
/// BFS hop-distance from the nearest seed over certification edges.
Map<String, int> _distancesFromSeeds(Set<String> seeds) {
final dist = <String, int>{for (final s in seeds) s: 0};
final queue = [...seeds];
var head = 0;
while (head < queue.length) {
final node = queue[head++];
final d = dist[node]!;
for (final next in _out[node] ?? const <String>{}) {
if (!dist.containsKey(next)) {
dist[next] = d + 1;
queue.add(next);
}
}
}
return dist;
}
}

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@ -0,0 +1,115 @@
import 'dart:typed_data';
import 'package:block2_spike/block2_spike.dart';
import 'package:test/test.dart';
/// Q4 (last big unknown) Duniter-style web of trust over Nostr, on the SAME
/// shared connection as offers and messaging. Proves certifications publish &
/// discover, the membership rule computes from discovered events, and trust can
/// filter offers (the network-trust §2 spam defence).
void main() {
NostrKey keyFor(int fill) =>
NostrKey.deriveFromSeed(Uint8List(32)..fillRange(0, 32, fill));
late MiniRelay relay;
setUp(() async => relay = await MiniRelay.start());
tearDown(() async => relay.stop());
Future<NostrConnection> connFor(NostrKey k) => NostrConnection.connect(
relay.url,
privateKeyHex: k.privateKeyHex,
publicKeyHex: k.publicKeyHex,
);
test('certifications publish, discover, and make a newcomer known', () async {
final seeds = [for (var i = 1; i <= 3; i++) keyFor(i)];
final newcomer = keyFor(50);
// Three seed members each certify the newcomer.
for (final s in seeds) {
final t = NostrTrustTransport(await connFor(s));
await t.certify(subjectPubkey: newcomer.publicKeyHex);
await t.close();
}
// Anyone can read the certs and compute membership.
final reader = NostrTrustTransport(await connFor(keyFor(99)));
final certifiers = await reader.certifiersOf(newcomer.publicKeyHex);
expect(certifiers, hasLength(3));
final wot = WebOfTrust.fromCertifications(
await reader.allCertifications(),
now: DateTime.now(),
);
final seedSet = seeds.map((s) => s.publicKeyHex).toSet();
expect(
wot.isMember(newcomer.publicKeyHex,
seeds: seedSet, threshold: 3, maxDistance: 5),
isTrue,
);
await reader.close();
});
test('revoking a certification drops the certifier (addressable replace)',
() async {
final alice = keyFor(1);
final bob = keyFor(2);
final aliceTrust = NostrTrustTransport(await connFor(alice));
await aliceTrust.certify(subjectPubkey: bob.publicKeyHex);
var certs = await aliceTrust.certifiersOf(bob.publicKeyHex);
expect(certs, contains(alice.publicKeyHex));
await aliceTrust.revoke(subjectPubkey: bob.publicKeyHex);
certs = await aliceTrust.certifiersOf(bob.publicKeyHex);
expect(certs, isNot(contains(alice.publicKeyHex)),
reason: 'revoked cert replaces the valid one and is filtered out');
await aliceTrust.close();
});
test('trust filters offers: a known author ranks; an unknown one is flagged',
() async {
// Bootstrap: 3 seeds certify Alice. Eve is uncertified (a stranger/spammer).
final seeds = [for (var i = 1; i <= 3; i++) keyFor(i)];
final alice = keyFor(20);
final eve = keyFor(66);
for (final s in seeds) {
final t = NostrTrustTransport(await connFor(s));
await t.certify(subjectPubkey: alice.publicKeyHex);
await t.close();
}
// Both Alice and Eve publish offers in the same area.
for (final who in [alice, eve]) {
final offers = NostrOfferTransport(await connFor(who));
await offers.publish(Offer(
id: 'o-${who.publicKeyHex.substring(0, 6)}',
authorPubkeyHex: who.publicKeyHex,
summary: 'Semilla',
type: OfferType.gift,
approxGeohash: 'sp3e9',
));
await offers.close();
}
// Bob discovers offers, then annotates each author with trust over the
// SAME shared connection (one socket, offers + trust both on top of it).
final bobConn = await connFor(keyFor(7));
final found = await NostrOfferTransport(bobConn)
.discoverUntilEose(const DiscoveryQuery(geohashPrefix: 'sp3e9'));
final trust = NostrTrustTransport(bobConn);
final wot = WebOfTrust.fromCertifications(
await trust.allCertifications(),
now: DateTime.now(),
);
final seedSet = seeds.map((s) => s.publicKeyHex).toSet();
bool known(String pk) =>
wot.isMember(pk, seeds: seedSet, threshold: 3, maxDistance: 5);
expect(found, hasLength(2));
expect(known(alice.publicKeyHex), isTrue);
expect(known(eve.publicKeyHex), isFalse,
reason: 'uncertified author stays "unknown" and is deprioritised');
await trust.close();
});
}

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@ -0,0 +1,92 @@
import 'package:block2_spike/block2_spike.dart';
import 'package:test/test.dart';
/// Pure web-of-trust rules (Duniter: N certs from members + within distance D).
/// This is the `commons_core`-worthy piece: deterministic, no I/O.
void main() {
final now = DateTime(2026, 7, 10);
Certification cert(String a, String b, {DateTime? expires, bool revoked = false}) =>
Certification(
issuer: a,
subject: b,
issuedAt: DateTime(2026),
expiresAt: expires,
revoked: revoked,
);
test('seeds are always members', () {
final wot = WebOfTrust.fromCertifications([], now: now);
expect(
wot.members(seeds: {'s1'}, threshold: 5, maxDistance: 5),
contains('s1'),
);
});
test('reaches the threshold from member certifiers → becomes known', () {
final seeds = {'s1', 's2', 's3', 's4', 's5'};
final certs = [for (final s in seeds) cert(s, 'newcomer')];
final wot = WebOfTrust.fromCertifications(certs, now: now);
final members = wot.members(seeds: seeds, threshold: 5, maxDistance: 5);
expect(members, contains('newcomer'));
});
test('below the threshold stays unknown', () {
final seeds = {'s1', 's2', 's3', 's4', 's5'};
final certs = [cert('s1', 'x'), cert('s2', 'x')]; // only 2 of 5
final wot = WebOfTrust.fromCertifications(certs, now: now);
expect(
wot.members(seeds: seeds, threshold: 5, maxDistance: 5),
isNot(contains('x')),
);
});
test('membership is transitive via a fixpoint (needs a to count for b)', () {
final seeds = {'s1', 's2'};
final certs = [
cert('s1', 'a'), cert('s2', 'a'), // a: 2 member certs member
cert('a', 'b'), cert('s2', 'b'), // b: certified by a (now member) + s2
];
final wot = WebOfTrust.fromCertifications(certs, now: now);
final members = wot.members(seeds: seeds, threshold: 2, maxDistance: 5);
expect(members, containsAll(['a', 'b']));
});
test('distance rule cuts off far-away nodes even if well-certified', () {
// s a b c d e chain; only s is a seed; threshold 1.
final seeds = {'s'};
final certs = [
cert('s', 'a'),
cert('a', 'b'),
cert('b', 'c'),
cert('c', 'd'),
cert('d', 'e'),
];
final wot = WebOfTrust.fromCertifications(certs, now: now);
final members = wot.members(seeds: seeds, threshold: 1, maxDistance: 2);
expect(members, containsAll(['a', 'b'])); // dist 1 and 2
expect(members, isNot(contains('c'))); // dist 3 > maxDistance
expect(members, isNot(contains('e')));
});
test('expired and revoked certifications do not count', () {
final seeds = {'s1', 's2', 's3', 's4', 's5'};
final certs = [
cert('s1', 'x'),
cert('s2', 'x'),
cert('s3', 'x'),
cert('s4', 'x', expires: DateTime(2020)), // expired
cert('s5', 'x', revoked: true), // revoked
];
final wot = WebOfTrust.fromCertifications(certs, now: now);
expect(wot.certifierCount('x'), 3, reason: 'expired+revoked dropped');
expect(
wot.members(seeds: seeds, threshold: 5, maxDistance: 5),
isNot(contains('x')),
);
});
test('self-certification is ignored', () {
final wot = WebOfTrust.fromCertifications([cert('a', 'a')], now: now);
expect(wot.certifierCount('a'), 0);
});
}