224 lines
6.8 KiB
TypeScript
224 lines
6.8 KiB
TypeScript
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import { describe, expect, test } from 'bun:test';
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import { SubtleCryptoProvider } from '@shade/crypto-web';
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import {
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KTLogManager,
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LightWitness,
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MemoryKTLogStore,
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computeBundleHash,
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computeLogId,
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signSth,
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sthToWire,
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} from '../src/index.js';
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import {
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KTLogIdMismatchError,
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KTSplitViewError,
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KTStaleSTHError,
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KTVerificationError,
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} from '../src/errors.js';
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import { toBase64, fromBase64 } from '../src/util.js';
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const crypto = new SubtleCryptoProvider();
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async function setup() {
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const kp = await crypto.generateEd25519KeyPair();
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const store = new MemoryKTLogStore();
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const mgr = await KTLogManager.create({
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crypto,
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store,
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signingPrivateKey: kp.privateKey,
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signingPublicKey: kp.publicKey,
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});
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return { kp, mgr };
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}
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function fakeBundle(seed: number) {
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return {
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identitySigningKey: new Uint8Array(32).fill(seed),
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identityDHKey: new Uint8Array(32).fill(seed + 1),
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signedPreKey: {
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keyId: 1,
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publicKey: new Uint8Array(32).fill(seed + 2),
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signature: new Uint8Array(64).fill(seed + 3),
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},
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};
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}
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describe('LightWitness', () => {
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test('observes valid STH and stores it', async () => {
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const { kp, mgr } = await setup();
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await mgr.recordRegister('alice', computeBundleHash(fakeBundle(0x10)));
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const sth = await mgr.publishSTH();
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const witness = new LightWitness({
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crypto,
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logPublicKey: kp.publicKey,
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fetcher: {
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async fetchLatestSTH() {
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return sthToWire(sth, toBase64);
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},
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async fetchConsistencyProof() {
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return { proof: [] };
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},
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},
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});
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const polled = await witness.pollOnce();
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expect(polled.treeSize).toBe(1);
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expect(witness.compare(sth)).toBe('agree');
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});
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test('rejects STH whose log_id does not match pinned key', async () => {
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const { mgr } = await setup();
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const wrong = await crypto.generateEd25519KeyPair();
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await mgr.recordRegister('alice', computeBundleHash(fakeBundle(0x10)));
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const sth = await mgr.publishSTH();
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const witness = new LightWitness({
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crypto,
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logPublicKey: wrong.publicKey, // pinned to wrong key
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fetcher: {
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async fetchLatestSTH() {
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return sthToWire(sth, toBase64);
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},
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async fetchConsistencyProof() {
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return { proof: [] };
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},
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},
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});
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await expect(witness.pollOnce()).rejects.toBeInstanceOf(KTLogIdMismatchError);
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});
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test('rejects STH older than maxStaleMs', async () => {
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const { kp, mgr } = await setup();
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await mgr.recordRegister('alice', computeBundleHash(fakeBundle(0x10)));
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const sth = await mgr.publishSTH(1000); // far in the past
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const witness = new LightWitness({
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crypto,
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logPublicKey: kp.publicKey,
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fetcher: {
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async fetchLatestSTH() {
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return sthToWire(sth, toBase64);
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},
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async fetchConsistencyProof() {
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return { proof: [] };
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},
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},
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maxStaleMs: 1000,
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now: () => 10_000_000,
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});
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await expect(witness.pollOnce()).rejects.toBeInstanceOf(KTStaleSTHError);
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});
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test('detects split-view at same tree_size', async () => {
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const { kp, mgr } = await setup();
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await mgr.recordRegister('alice', computeBundleHash(fakeBundle(0x10)));
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const sth1 = await mgr.publishSTH();
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// Forge another signed STH with same tree_size but different rootHash
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const tamperedRoot = new Uint8Array(sth1.rootHash);
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tamperedRoot[0] ^= 0xff;
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const sth2 = await signSth(crypto, kp.privateKey, {
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treeSize: sth1.treeSize,
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timestampMs: sth1.timestampMs,
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rootHash: tamperedRoot,
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indexRoot: sth1.indexRoot,
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logId: computeLogId(kp.publicKey),
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});
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const witness = new LightWitness({
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crypto,
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logPublicKey: kp.publicKey,
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fetcher: {
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async fetchLatestSTH() {
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return sthToWire(sth1, toBase64);
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},
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async fetchConsistencyProof() {
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return { proof: [] };
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},
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},
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});
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await witness.observe(sth1);
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await expect(witness.observe(sth2)).rejects.toBeInstanceOf(KTSplitViewError);
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});
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test('verifies consistency between two successive STHs', async () => {
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const { kp, mgr } = await setup();
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await mgr.recordRegister('alice', computeBundleHash(fakeBundle(0x10)));
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const sth1 = await mgr.publishSTH();
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await mgr.recordRegister('bob', computeBundleHash(fakeBundle(0x20)));
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const sth2 = await mgr.publishSTH();
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const consistency = await mgr.buildConsistencyProof(sth1.treeSize);
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const witness = new LightWitness({
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crypto,
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logPublicKey: kp.publicKey,
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fetcher: {
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async fetchLatestSTH() {
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return sthToWire(sth2, toBase64);
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},
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async fetchConsistencyProof() {
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return { proof: consistency.proof.map(toBase64) };
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},
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},
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});
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await witness.observe(sth1);
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await witness.observe(sth2);
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expect(witness.compare(sth2)).toBe('agree');
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});
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test('rejects STH where log re-wrote history (consistency proof fails)', async () => {
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const { kp, mgr } = await setup();
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await mgr.recordRegister('alice', computeBundleHash(fakeBundle(0x10)));
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const sth1 = await mgr.publishSTH();
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// Build a forked log where leaf 0 is different.
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const forkStore = new MemoryKTLogStore();
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const forkMgr = await KTLogManager.create({
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crypto,
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store: forkStore,
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signingPrivateKey: kp.privateKey,
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signingPublicKey: kp.publicKey,
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});
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await forkMgr.recordRegister('mallory', computeBundleHash(fakeBundle(0xee)));
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await forkMgr.recordRegister('bob', computeBundleHash(fakeBundle(0x20)));
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const forkedSth2 = await forkMgr.publishSTH();
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const forkedConsistency = await forkMgr.buildConsistencyProof(sth1.treeSize);
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const witness = new LightWitness({
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crypto,
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logPublicKey: kp.publicKey,
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fetcher: {
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async fetchLatestSTH() {
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return sthToWire(forkedSth2, toBase64);
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},
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async fetchConsistencyProof() {
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return { proof: forkedConsistency.proof.map(toBase64) };
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},
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},
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});
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await witness.observe(sth1);
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await expect(witness.observe(forkedSth2)).rejects.toBeInstanceOf(KTVerificationError);
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});
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test('compare returns "unknown" for tree_size we have not seen', async () => {
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const { kp, mgr } = await setup();
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await mgr.recordRegister('alice', computeBundleHash(fakeBundle(0x10)));
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const sth = await mgr.publishSTH();
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const witness = new LightWitness({
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crypto,
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logPublicKey: kp.publicKey,
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fetcher: {
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async fetchLatestSTH() {
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return sthToWire(sth, toBase64);
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},
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async fetchConsistencyProof() {
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return { proof: [] };
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},
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},
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});
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expect(witness.compare(sth)).toBe('unknown');
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});
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});
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// Make TS happy about unused fromBase64
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void fromBase64;
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