Verify secretstream TAG_FINAL and write downloads atomically (closes #1) #20
@@ -12,11 +12,20 @@ export const STREAM_CHUNK_OVERHEAD = 17;
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// marks the last chunk of a stream. Exported so callers (the download layer)
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// marks the last chunk of a stream. Exported so callers (the download layer)
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// can detect truncation without importing sodium themselves.
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// can detect truncation without importing sodium themselves.
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//
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//
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// This is a function rather than a constant because libsodium attaches its
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// This is a function rather than a constant, and that is load-bearing:
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// constants to the module object only once `sodium.ready` has resolved, which
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// libsodium attaches its constants to the module object inside
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// is long after this module is evaluated — a module-level read would bind
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// `ready.then(...)`, which resolves long after this module is evaluated. A
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// `undefined`. Reading it at call time returns the library's own value, so
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// module-level read would bind `undefined`, every downstream comparison
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// there is no second copy of a protocol constant to keep in sync.
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// against it would then be false, and every valid download would be rejected
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// as truncated. Reading at call time returns the library's own value, so
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// there is also no second copy of a protocol constant to keep in sync.
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//
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// Under vitest sodium is already initialised in the worker before this module
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// is evaluated, so an eager read would pick up a real value there and the
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// ordinary tests could not tell the difference. The regression guard is
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// "streamTagFinal() reads the constant at call time, not at import time" in
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// test/crypto/stream.test.ts, which reproduces the plain-Node ESM ordering
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// against a stand-in sodium module; it goes red if this becomes eager.
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export const streamTagFinal = (): number =>
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export const streamTagFinal = (): number =>
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sodium.crypto_secretstream_xchacha20poly1305_TAG_FINAL;
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sodium.crypto_secretstream_xchacha20poly1305_TAG_FINAL;
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@@ -18,6 +18,9 @@
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* - The chunk-size constants match Ente's expectations, and the
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* - The chunk-size constants match Ente's expectations, and the
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* re-exported `streamTagFinal()` matches the tag a real final chunk
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* re-exported `streamTagFinal()` matches the tag a real final chunk
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* carries.
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* carries.
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* - `streamTagFinal()` reads libsodium's constant at call time rather than
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* at import time, which it must, because the constant does not exist yet
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* when this library's modules are evaluated.
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* - The pull state can decrypt a multi-chunk stream produced by
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* - The pull state can decrypt a multi-chunk stream produced by
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* sodium.crypto_secretstream_xchacha20poly1305_push, in order.
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* sodium.crypto_secretstream_xchacha20poly1305_push, in order.
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* - The tag byte is propagated to the caller.
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* - The tag byte is propagated to the caller.
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@@ -25,7 +28,7 @@
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*/
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*/
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import sodium from "libsodium-wrappers-sumo";
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import sodium from "libsodium-wrappers-sumo";
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import { beforeAll, describe, expect, it } from "vitest";
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import { beforeAll, describe, expect, it, vi } from "vitest";
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import {
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import {
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init,
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init,
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initStreamPull,
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initStreamPull,
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@@ -60,9 +63,9 @@ describe("crypto stream constants", () => {
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* evaluated. Reading the value at call time yields libsodium's number;
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* evaluated. Reading the value at call time yields libsodium's number;
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* reading it at module scope would yield `undefined`, and every
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* reading it at module scope would yield `undefined`, and every
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* truncation check downstream would then compare against `undefined` and
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* truncation check downstream would then compare against `undefined` and
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* reject good downloads. This test pins the behaviour end to end — it
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* reject good downloads. The eagerness itself is guarded by the next test;
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* compares against the tag observed on a real final chunk pulled back off
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* this one pins the value, comparing it against the tag observed on a real
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* the wire format, so it fails if the accessor is ever made eager.
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* final chunk pulled back off the wire format.
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*/
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*/
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it("streamTagFinal() is the tag carried by a real final chunk", async () => {
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it("streamTagFinal() is the tag carried by a real final chunk", async () => {
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await init();
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await init();
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@@ -81,6 +84,52 @@ describe("crypto stream constants", () => {
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const state = initStreamPull(push.header, key);
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const state = initStreamPull(push.header, key);
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expect(pullStreamChunk(state, ciphertext).tag).toBe(streamTagFinal());
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expect(pullStreamChunk(state, ciphertext).tag).toBe(streamTagFinal());
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});
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});
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/**
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* The regression guard for the eagerness property described above.
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*
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* Under vitest, sodium is already initialised in the worker process by
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* the time any source module is evaluated, so an eager module-level read
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* would happen to pick up a real value and no ordinary test could tell
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* the difference. This test recreates the ordering that a plain Node ESM
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* consumer sees: a stand-in sodium module whose `TAG_FINAL` property does
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* not exist yet when `src/crypto/stream.ts` is evaluated and only appears
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* afterwards, exactly as libsodium attaches its constants inside
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* `ready.then(...)`.
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*
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* A call-time read observes the value that appeared after evaluation; a
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* module-level read binds `undefined` and this test fails. The stand-in
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* uses a sentinel rather than the real tag number so that a read which
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* somehow reached the real libsodium would fail too.
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*/
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it("streamTagFinal() reads the constant at call time, not at import time", async () => {
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const SENTINEL = 42;
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const late: { tagFinal: number | undefined } = { tagFinal: undefined };
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vi.resetModules();
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vi.doMock("libsodium-wrappers-sumo", () => ({
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default: {
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ready: Promise.resolve(),
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get crypto_secretstream_xchacha20poly1305_TAG_FINAL() {
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return late.tagFinal;
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},
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},
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}));
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try {
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// Evaluated while the constant is still absent, as it is before
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// `sodium.ready` resolves.
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const fresh = await import("../../src/crypto/stream.js");
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expect(late.tagFinal).toBeUndefined();
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// libsodium attaches its constants; a lazy accessor sees them.
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late.tagFinal = SENTINEL;
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expect(fresh.streamTagFinal()).toBe(SENTINEL);
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} finally {
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vi.doUnmock("libsodium-wrappers-sumo");
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vi.resetModules();
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}
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});
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});
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});
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describe("crypto.initStreamPull / pullStreamChunk", () => {
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describe("crypto.initStreamPull / pullStreamChunk", () => {
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