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3c610a83cd98c8cf4ccb529722df3ef9bf115b63
7
Commits
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ede6368296 |
NIP-13 proof-of-work for geohash channels: mine on send, relax rate limits for PoW senders (#1382)
* NIP-13 proof-of-work for geohash channels: mine on send, relax rate limits for PoW senders Outgoing kind-20000 geohash messages mine a NIP-13 nonce tag (8 leading zero bits, ~256 hashes, typically <1 ms) off the main actor before signing. Mining is hard-capped at 2 s and cancellable (newer send or channel switch): on cap/cancel the committed target steps down so the message still ships promptly with an honest commitment - sending is never blocked and nothing is dropped. The hot loop serializes the canonical event once and rewrites only the fixed-width nonce bytes. Inbound kind-20000 events are scored per NIP-13 commitment semantics (committed target counts; the ID must actually meet it, extra work earns nothing) and never hard-rejected: validated PoW >= 8 bits skips the per-sender rate-limit bucket while the per-content flood bucket still applies, so old non-mining clients keep working under today's strict limits while bulk spam gets expensive. Presence heartbeats (kind 20001), kind-1 notes, and DMs are unchanged; no UI beyond a pow= field in an existing sampled debug log. Reimplemented from scratch rather than cherry-picking the stale feature/pow-geohash-mining-ui branch (unbounded loop, hard receive filtering, mining UI, XCTest, force unwraps). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * Geohash: serialize PoW sends so order matches send order Two location-channel sends back-to-back only cancelled the previous mining task and started a new one. Cancellation merely *expedites* NIP-13 mining (the target is polled and steps down; it never aborts the send), so the cancelled task still appended + relayed once mining returned. Both tasks ran concurrently and the second (shorter to mine) could finish first, reordering messages in the timeline and on relays. Chain the mining tasks: each geohash send captures the previous send's task, cancels it (to expedite, so delays never stack), and awaits its completion before it echoes and relays. Order is now always send order. The >2s mining cap is preserved: cancellation expedites the awaited task, so a send is never blocked beyond NostrPoW.miningTimeCap. Test: two rapid sends where the first mines longer (larger content) still land in send order for both the local echo and the relayed events. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> --------- Co-authored-by: jack <jackjackbits@users.noreply.github.com> Co-authored-by: Claude Fable 5 <noreply@anthropic.com> |
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75da63c9d7 |
Fix favorites end-to-end: peer-list duplicates, Nostr sync, /fav key corruption (v1.5.4) (#1367)
* Friend-courier store-and-forward: mutual favorites carry sealed messages to offline peers When a private message has no reachable transport, the router now seals it to the recipient's Noise static key (new one-way Noise X pattern) and hands the envelope to up to three connected mutual favorites. Couriers store the opaque ciphertext under strict quotas (20 total, 5 per depositor, 16 KiB, 24 h) and hand it over when the recipient's announce matches a rotating HMAC recipient tag; the recipient opens it and the message flows through the normal private-message pipeline, so dedup and delivery acks just work. - CourierEnvelope TLV + courierEnvelope (0x04) message type in BitFoundation - Noise X one-way pattern reusing the existing handshake machinery, domain-separated by a courier prologue; sender identity authenticated via the ss DH (no forward secrecy - documented tradeoff) - CourierStore with eviction, file persistence, and panic-wipe integration - Rotating recipient tags (HMAC over epoch day) so carried envelopes don't correlate for observers who don't already know the recipient's key - New "carried" delivery status with figure.walk glyph; header indicator while carrying mail for others - Three-node end-to-end test ferrying packets through real BLEService instances, plus codec/crypto/store/router suites (986 tests green) Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * Fix courier handoff verification and directed sends * Authenticate courier deposits by ingress peer * Gate courier handover on direct announces and isolate store test Envelopes are removed from the courier store optimistically, so releasing them on a relayed (multi-hop) announce risks losing carried mail to a speculative flood that never reaches the recipient. Handover now also requires the announce to have arrived directly (full TTL), i.e. an actual encounter with a live link; regression test builds a relayed copy of a genuinely signed announce (TTL is excluded from announce signatures). Also make CourierStore's on-disk location injectable so the persistence test round-trips through a temp directory instead of wiping the real Application Support store, and reattach BLEAnnounceHandler's doc comment to the class it describes. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * Use Xcode-bundled Swift in CI instead of a standalone toolchain The unpinned setup-swift action installs Swift 6.1, which refuses the SDK on runner images that have rolled to Xcode 26.5 ("this SDK is not supported by the compiler"). Jobs passed or failed depending on which image they landed on. The Xcode-bundled toolchain always matches the image's SDK, and matches local development. Cache keys now include the toolchain version so artifacts from one compiler are never restored into builds with another. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * Drop couriered mail from blocked senders at envelope open The UI-layer block check (isPeerBlocked in the transport event coordinator) resolves a fingerprint from the live session or peer list, but a couriered message arrives precisely when its sender is absent — no session, no registry entry — so the check failed open and a blocked identity's mail was delivered anyway. Gate in openCourierEnvelope, where the sealed sender's full static key is in hand. End-to-end test ferries a full deposit→carry→handover round and verifies the envelope from a blocked sender never reaches the delegate (confirmed failing without the gate). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * Fix favorites end-to-end: peer-list dedup, Nostr sync, /fav key corruption - UnifiedPeerService: dedup offline favorites against mesh peers by noise key. Phase 2 compared a 64-hex noise-key PeerID against 16-hex mesh IDs (never equal), leaving only a nickname+isConnected heuristic — a mutual favorite that was reachable-but-not-connected or renamed rendered twice, and a same-nick stranger could suppress a favorite entirely. - Nostr inbound: intercept [FAVORITED]/[UNFAVORITED] markers in the live PM handler so they update theyFavoritedUs instead of rendering as chat text; mutual favorites can now form over Nostr. Delete the dead favorite-aware PM variant and ChatNostrCoordinator.handleFavoriteNotification (unwired, parsed a stale FAVORITE:TRUE|… format no sender emits). - NostrTransport.isPeerReachable: match short form regardless of incoming ID width — toggling an offline favorite (addressed by 64-hex noise key) was silently dropped with no reachable transport. - BLEService.sendPrivateMessage: normalize recipient to the short ID like sendFilePrivate, so a 64-hex target hits the existing Noise session instead of initiating a handshake with a 32-byte wire recipient ID. - /fav, /unfav: stop writing Data(hexString: peerID.id) — the 8-byte routing ID for mesh peers — into the favorites store as a "noise key", and stop double-sending the favorite notification; delegate to toggleFavorite with a proper state check. - FavoritesPersistenceService.updatePeerFavoritedUs: keep the stored nickname when the caller passes the "Unknown" placeholder. - Bump marketing version to 1.5.4. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * Route DMs to mutual favorites via Nostr when a mesh-keyed peer goes offline Field-tested on device: with a DM window opened while the peer was on mesh (conversation keyed by the short 16-hex ID), walking out of range and sending failed instantly with "peer not reachable" even though the header showed the peer as Nostr-reachable (mutual favorite, npub known). sendPrivateMessage derived the favorites key as Data(hexString: peerID.id) — for a short mesh ID that is the 8-byte routing ID, never the noise key — so the mutual-favorite/Nostr-key checks always came up empty and the send failed before reaching MessageRouter. Conversations keyed by the full 64-hex noise-key ID (opened from the offline favorite row) were unaffected, which is why later tests appeared to work. Resolve the noise key properly (peerID.noiseKey, then the unified peer row, then the favorites store by derived short ID) and add a regression test for the mesh-keyed-peer-goes-offline case. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * Label Nostr DMs from favorites with their stored nickname Field-tested: a DM delivered over the Nostr fallback rendered as "anon#678e" instead of the sender's name. The inbound handler named the sender via displayNameForNostrPubkey, which only knows geohash-scoped names — even though the pipeline had already resolved the sender's noise key (the conversation is keyed by it). When the conversation key carries a noise key, prefer the favorite's stored nickname; geohash DMs (nostr_ keys) keep the anon geo name. This also stops an inbound Nostr [FAVORITED] from overwriting the stored nickname with the anon fallback, since the same name feeds updatePeerFavoritedUs. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * Fix courier path for offline favorites addressed by noise-key IDs Two Codex review findings, both the same ID-width confusion this PR targets, in the courier flow: - CourierDirectory.favoritesBacked resolved recipients only via getFavoriteStatus(forPeerID:), which requires a short 16-hex ID — offline favorites are addressed by the full 64-hex noise-key ID, so attemptCourierDeposit silently bailed for exactly the peers couriers exist to serve. The 64-hex ID now yields its own key directly. - openCourierEnvelope emitted the derived short mesh ID even when the sender has no live mesh identity, landing couriered mail in an unresolvable short-ID thread labeled "Unknown". Absent senders now emit the full noise-key ID so the message joins the stable favorite conversation; present senders keep the live short-ID thread. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> --------- Co-authored-by: jack <jackjackbits@users.noreply.github.com> Co-authored-by: Claude Fable 5 <noreply@anthropic.com> |
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99d1d1dccd |
Cut public message path over to ConversationStore; delete PublicTimelineStore
Mesh and geohash timelines are now store conversations. All public mutation sites flow through store intents; PublicMessagePipeline keeps its 80ms UI batching but commits batches via store appends with each buffered entry carrying its destination conversation (a mid-batch channel switch now flushes instead of dropping the buffer). ChatViewModel.messages becomes a cached get-only view of the active conversation, invalidated through the change subject. The mesh late-insert threshold is consciously removed: it only ever ordered the non-rendered messages copy, so strict timestamp insertion makes the working set agree with rendered order. PublicTimelineStore and the per-message full-array legacy sync are deleted; the coalescing bridge mirrors public conversations for the remaining legacy readers. pipeline.publicIngest: 6.6k -> 9.5k msg/s (+45%); private steady; store.append 237k/s. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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cc76086615 |
Inject notification/favorites singletons through coordinator contexts
NotificationService.shared and FavoritesPersistenceService.shared accesses across nine coordinators/components consolidate into ChatViewModel witnesses behind intent-named context members (notifyPrivateMessage, notifyMention, favoriteRelationship(forNoiseKey:), allFavoriteRelationships, postLocalNotification, ...). Singleton reach from coordinators is now zero; nine new tests cover previously untestable notification/favorites flows. Also root-causes the long-flaky gift-wrap dedup test: parallel tests share LocationChannelManager.shared, so channel-switch tests trigger clearProcessedNostrEvents() on every live ChatViewModel, wiping the dedup record mid-test. The invariant (forged-signature copies never poison dedup) now lives as a deterministic NostrInboundPipeline mock-context test; two Schnorr concurrency probes added along the way stay as regression guards for the P256K shared-context assumptions. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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638f3f5005 |
Split ChatNostrCoordinator into owned components along domain boundaries
The 1,109-line coordinator becomes a 187-line facade wiring three components, each with its own narrow context protocol: GeohashSubscriptionManager (384 lines - subscription IDs + relay lifecycle, the only NostrRelayManager toucher), NostrInboundPipeline (490 lines - the hot event path, dedup-before-verify ordering preserved verbatim), and GeoPresenceTracker (192 lines - teleport detection, sampling LRU, notification cooldowns, now directly tested). Perf baselines confirm the hot path is unchanged: fresh events 2,131 -> 2,138/sec, duplicates ~1.41M/sec. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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707b22878d |
Convert shared coordinator state to owner-side intent operations
nostrKeyMapping, sentGeoDeliveryAcks/sentReadReceipts dedupe, isBatchingPublic, geo subscription lifecycle, and private-chat selection hand-off now mutate through single intent operations on ChatViewModel, with backing storage locked down via private(set) so the single-writer property is compiler-enforced. Context protocols downgrade to read-only access where reads remain. 8 new contract tests. Known remaining writers outside the protocols: sentReadReceipts is passed inout to PrivateChatManager.syncReadReceiptsForSentMessages and un-marked by ChatTransportEventCoordinator on disconnect. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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3a995e20b6 |
Extract BLE packet handlers and migrate coordinators to narrow contexts
BLEService's per-packet-type orchestration moves into owned, tested components (BLEAnnounceHandler, BLEPublicMessageHandler, BLENoisePacketHandler, BLEFileTransferHandler, BLEFragmentHandler), each taking an environment struct of closures so every queue hop stays in BLEService and the handlers are synchronously testable. Behavior is preserved verbatim, including Noise session recovery on decrypt failure and single-block UI event ordering. handleLeave/handleRequestSync stay in place as already-thin delegations. BLEService drops to 3393 lines. Four coordinators (delivery, private conversation, Nostr, public conversation) drop their unowned/weak ChatViewModel back-references for narrow @MainActor context protocols, with ChatViewModel conformances as single shared witnesses for overlapping members. Their true coupling is now an explicit, reviewable surface, and each gains a mock-context test suite covering flows previously testable only through the full view model. Delivery/read acks now also clear the router's retained-send outbox via the delivery context. New LargeTopologyTests exercise production-shaped meshes with the in-memory harness: an 8-peer relay chain with per-hop TTL decay, a 14-peer cyclic mesh with exactly-once delivery, partition/heal, and topology churn. App-layer runtime/model files updated alongside. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |