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jedarden 62d0e8a5d9 Fix SQLite task store PRAGMA busy_timeout
Use query_row instead of execute for PRAGMA busy_timeout since it returns
the value that was set. This fixes test failures where ExecuteReturnedResults
error was raised.

All task_store tests now pass:
- task_insert_get_roundtrip
- alias_upsert_roundtrip
- idempotency_cache_roundtrip
- session_roundtrip
- node_settings_version_roundtrip
- job_queue_dequeue_roundtrip
- leader_lease_acquire_renew
- restart_survival
- schema_version_check
- cdc_cursor_roundtrip
- tenant_map_roundtrip
- health_check

Bead-Id: miroir-r3j.1
2026-05-13 17:59:10 -04:00
.beads Fix SQLite task store PRAGMA busy_timeout 2026-05-13 17:59:10 -04:00
charts/miroir Phase 0 (miroir-qon): Verification complete - foundation confirmed 2026-05-09 05:51:59 -04:00
coverage Phase 1 (miroir-cdo): Close bead - Core Routing complete 2026-05-09 11:38:45 -04:00
crates Fix SQLite task store PRAGMA busy_timeout 2026-05-13 17:59:10 -04:00
docs Phase 3 (miroir-r3j): Task Registry + Persistence — Verification complete 2026-05-09 05:40:08 -04:00
notes Add Phase 1 (miroir-cdo) retrospective document 2026-05-09 15:45:48 -04:00
.editorconfig Add repo hygiene: LICENSE, CHANGELOG, .gitignore 2026-04-18 20:47:36 -04:00
.gitignore Add repo hygiene: LICENSE, CHANGELOG, .gitignore 2026-04-18 20:47:36 -04:00
.needle-predispatch-sha Fix SQLite task store PRAGMA busy_timeout 2026-05-13 17:59:10 -04:00
Cargo.lock Phase 2 (miroir-9dj): Proxy + API Surface — Complete implementation 2026-05-09 12:08:28 -04:00
Cargo.toml Phase 0 (miroir-qon): Rust 1.88 upgrade + test infrastructure 2026-05-09 02:05:44 -04:00
CHANGELOG.md Add repo hygiene: LICENSE, CHANGELOG, .gitignore 2026-04-18 20:47:36 -04:00
clippy.toml Add repo hygiene: LICENSE, CHANGELOG, .gitignore 2026-04-18 20:47:36 -04:00
lcov.info Phase 1 (miroir-cdo): Core Routing - Final verification 2026-05-09 11:50:04 -04:00
LICENSE Add repo hygiene: LICENSE, CHANGELOG, .gitignore 2026-04-18 20:47:36 -04:00
README.md Add repo hygiene: LICENSE, CHANGELOG, .gitignore 2026-04-18 20:47:36 -04:00
rust-toolchain.toml Phase 0 (miroir-qon): Rust 1.88 upgrade + test infrastructure 2026-05-09 02:05:44 -04:00
rustfmt.toml Add repo hygiene: LICENSE, CHANGELOG, .gitignore 2026-04-18 20:47:36 -04:00

Miroir

Multi-node Index Replication Orchestrator, Integrated Rebalancing

Miroir is a RAID-like orchestration layer for Meilisearch. It stripes a large index across a fleet of small-RAM Meilisearch nodes with a configurable replication factor, fans out search queries across all shards, and rebalances shard assignments when nodes are added or removed — all using the Meilisearch Community Edition.

The Problem

Meilisearch loads its entire index into memory-mapped LMDB files. A large index that exceeds a single server's available RAM cannot run on that server. The Enterprise Edition's native sharding is gated behind a commercial license. Miroir solves this without it.

How It Works

Client
  │
  ▼
Miroir Orchestrator
  ├── Write path: hash(doc_id) → assign to shard → write to R replicas
  ├── Read path:  scatter query to all shards → gather → merge ranked results
  └── Rebalance: on node add/remove → recompute assignments → migrate minimum shards

Meilisearch Nodes (N instances, each holding a subset of shards)
  node-0   node-1   node-2   ...   node-N

Replication Factor

Analogous to software RAID — configurable per deployment:

RF Redundancy Node failures tolerated Capacity
1 None (stripe only) 0 100% of fleet
2 One replica 1 per shard group 50% of fleet
3 Two replicas 2 per shard group 33% of fleet

Key Components

  • Orchestrator — proxy that handles shard routing, scatter-gather, result merging, and topology management
  • Shard router — consistent hash function (Rendezvous/HRW) mapping document IDs to node assignments; minimal reshuffling on topology change
  • Rebalancer — on node add/remove, recomputes assignments and migrates only the shards that changed owners; surviving replicas serve reads during rebuild
  • Result merger — normalizes and merges ranked result sets from multiple shards into a single coherent response

Status

Design phase. See docs/ for architecture detail.