# Architecture ## 1. System boundary Trainlog separates capture, durable history, transport, and presentation. ```text Android capture client | | local SQLite | +-- automatic mobile snapshot | v Android shared storage Download/Trainlog | | direct MTP v shared desktop sync engine / \ / \ desktop SQLite directional PC artifacts | | v v desktop TUI Android ``` The desktop SQLite database is the canonical long-term history. Android local SQLite is a capture store, not a synchronization format. ## 2. Components ### Android application Responsibilities: - exercise catalog entry; - stable-ID exercise rename/editing; - canonical body-zone selection, display and descendant filtering; - workout-session recording; - performed set entry; - continuous-activity entry; - body measurement entry; - local history/detail; - automatic mobile snapshot generation; - PC catalog application; - synchronization request creation; - synchronization receipt display. Android is not responsible for canonical long-term analytics. ### Desktop core The C17 core owns: - desktop SQLite persistence; - exercise/catalog rules; - generated body-zone taxonomy and relation APIs; - profile-aware session data; - body data; - ID and time helpers; - USB discovery; - direct MTP operations; - the shared bidirectional synchronization engine. ### TUI The Notcurses layer owns interaction and rendering. It is confined to the desktop executable; persistence, synchronization, and core services have no terminal-library dependency. It consumes core services for: - session entry/editing; - history; - exercise performance; - exercise body-zone creation/edit/detail and filters; - body tracking; - graphs; - manual synchronization; - synchronization log/detail display. ### `trainlog-syncd` `trainlog-syncd` is a small user-session agent. It polls for a new Android request and invokes the same shared C synchronization engine used by the TUI. It does not implement a second synchronization algorithm. ## 3. Exercise model Trainlog is metadata-driven: ```text recording_mode = SETS | CONTINUOUS tracking_mode = REPS | DURATION data_fields = SPEED_KMH | DISTANCE_KM ``` Valid model-v1 combinations: ```text SETS + REPS SETS + DURATION CONTINUOUS + DURATION ``` Load mode is session-specific: ```text none external assistance ``` Continuous work is persisted separately from performed sets. Body-zone semantics are a second independent metadata axis: ```text exercise -> exercise_body_zones -> canonical body-zone manifest role = primary | secondary ``` The repository-level `catalog/body-zones-v1.json` is the sole taxonomy source. Android reads it as an asset and the desktop generates a bounded C representation at build time. Stable `zone_id` values cross persistence and synchronization boundaries; translated display names do not. `upper_body` and `lower_body` are hierarchy groups whose descendant membership is derived at query time, never persisted redundantly. `full_body` and `core` are autonomous. An unclassified exercise has no relation at all: a secondary-only state is invalid at repository, database and exchange boundaries rather than being silently rendered as unclassified. ## 4. Persistence ownership ### Desktop Desktop SQLite schema v11 is canonical long-term history. Its v9 -> v10 migration losslessly rebuilds only `performed_sets` so actual `weight_kg` may be finite `>= 0`; the column already existed and targets/max results retain their strictly-positive contracts. `session_exercises` stores a stable occurrence `entry_id`; a catalogue `exercise_id` can therefore occur more than once in one session without identity fusion. The additive v10 -> v11 migration creates direct exercise/body-zone relations and a private synchronization baseline, then seeds only stable-ID mappings whose decision evidence is recorded in the manifest. It never rewrites an exercise, occurrence or history row. Main tables: ```text exercises sessions session_exercises performed_sets continuous_activity max_results body_observations custom_equipment exercise_body_zones exercise_body_zone_sync ``` ### Android Android has an independent local SQLite schema, currently v11. Completed and draft MAX values use one-to-one `max_results` and `draft_max_results` rows; resuming a completed Test max records its stable source session in the one durable draft. Its v9 -> v10 migration adds equivalent exercise/body-zone relations and seeds the same manifest mappings. User creation and editing replace name/profile and zone relations in one repository transaction. It mirrors domain concepts needed for capture, but its schema version is not coupled to the desktop schema. Synchronization exchanges domain artifacts rather than database files. `TrainlogRepository` owns a singleton active-session draft, its ordered exercise and actual-value children, and raw form text. Compose sends meaningful mutations to that repository; lifecycle callbacks are not the sole persistence boundary. Normal navigation never deletes the draft. Home restores the resume affordance from SQLite after process recreation. Drafts use separate tables from completed sessions and are never export sources. Finalization inserts the completed session and deletes the draft in one transaction; failures retain the draft. Catalog row references preserve draft identity through existing PC-catalog reconciliation. Missing editing-selection recovery preserves the raw fields and added exercises with a specific warning. `TrainlogRepository.editExercise()` owns all Android exercise edits. It changes the display name and normalized form in the existing catalog row identified by `exercise_id`; foreign-key ownership consequently preserves completed history and active drafts. A profile edit is admitted only before that row is referenced by either completed or active-draft data. Same-ID reconciliation applies name metadata in place. A different-ID normalized-name collision may merge only for equal recording/tracking modes, compatible represented invariants, and `data_fields` masks comparable by inclusion. Desktop ownership wins on both sides; the richer mask is retained and every occurrence/draft reference moves transactionally. Otherwise synchronization reports a conflict. Compose presentation has one `TrainlogScreen` header component for every page. It uses the TUI's compact accent `◆ TRAINLOG ◆` plaque and muted context line; screen navigation and data ownership remain independent from the header. ## 5. Compatibility boundaries ### Session generator V1 `SESSION_GENERATOR_V1=PASS`. `catalog/session-generation-policy-v1.json` is its sole authored policy source; generated C data and Android asset loading consume that same policy. The generator composes read-only runtime/knowledge context, complete history, deterministic selection and explicit uncertainty into an in-memory proposal. Preview writes nothing. Android acceptance creates the normal singleton draft atomically; TUI acceptance enters the normal editor. There is no generated-session persistence silo. Exposure counts actual positive-repetition completed SETS+REPS rows only. The exclusive thresholds are primary/secondary 1/3 at 24 hours and 6/12 at 72 hours; primary produces `warning`, secondary-only produces `notice`, and `none` is available only after successful analysis. Invalid stored time fails analysis; these signals do not estimate recovery. Selection is bounded to six exercises, uses requested-zone/group coverage, diversity, compatible equipment, exclusions, preferences, recency and deterministic ID ties, and returns shortages rather than invented candidates. Numeric weight is only an unchanged minimum observed qualifying actual external-load dose for the exact exercise/equipment within 28 days; MAX, assistance and unknown context do not prescribe a number. ### Frozen Trainlog JSON v1 `TRAINLOG_FORMAT_V1` is frozen and remains a compatibility boundary for its existing set-based session contract. ### Synchronization artifacts Synchronization uses separate formats: ```text trainlog-mobile-export v1 trainlog-mobile-export v2 trainlog-mobile-export v3 trainlog-pc-catalog v1 trainlog-equipment-associations v2 trainlog-equipment-definitions v1 trainlog-exercise-body-zones v1 trainlog-sync-request v1 trainlog-sync-receipt v1 ``` A new domain requirement must not be forced into frozen v1 by using notes, synthetic sets, or data loss. The active occurrence-aware session exchange is `trainlog-mobile-export` v3. V2 remains a readable historical artifact. The separate directional `trainlog-equipment-definitions` v1 artifacts carry user-created equipment definitions: `trainlog-mobile-equipment-definitions-v1.json` travels from Android to PC and `trainlog-pc-equipment-definitions-v1.json` travels from PC to Android. The filename identifies direction; the JSON format and version do not change. V1 historical artifacts remain readable under their frozen contracts. `trainlog-exercise-body-zones-v1.json` is the one direction-neutral zone companion in both directions. It carries only `exercise_id`, a nullable `primary_zone_id` and `secondary_zone_ids`; taxonomy definitions stay in the canonical manifest. ## 6. Direct MTP transport Linux transport: ```text physical Android USB device | v libudev discovery | | bus + device number v libmtp exact raw-device access | v Android internal storage ``` No GVFS/FUSE mount is required. Canonical exchange directory: ```text Download/Trainlog ``` ## 7. Shared synchronization engine Both user-trigger paths call: ```text trainlog_sync_run() ``` Manual path: ```text TUI -> trainlog_sync_run() ``` Android-triggered path: ```text Android request -> trainlog-syncd -> trainlog_sync_run() -> receipt ``` The same engine owns all supported directions. Its explicit modes are: ```text a = Android -> PC only p = PC -> Android only b = Android -> PC, then PC -> Android ``` The Android-to-PC direction receives the mobile equipment-definitions v1 artifact, mobile-export v3, and equipment-associations v2. The PC-to-Android direction publishes PC equipment-definitions v1 before dependent artifacts, then publishes the PC catalog v1, PC mobile-export v3 (including completed sessions and body observations), and equipment-associations v2. Both directions also transfer the same body-zone companion after exercise definitions are established and before completion of the direction. The engine performs the applicable direction steps: ```text 1. direct-MTP device/storage discovery 2. exchange-folder resolution 3. definition artifact transfer and reconciliation before dependent V2 data 4. strict transactional Android -> PC import and body-zone reconciliation when selected 5. PC catalog, body-zone, mobile/body, and association export when selected 6. direct-MTP publication of the selected PC -> Android artifacts 7. optional request receipt publication 8. structured run-history recording ``` Synchronization is additive and reconciliatory: artifact absence never implies deletion of local content. Equal same-ID definitions are idempotent; divergent same-ID definitions, unknown references, and association conflicts are reported explicitly. The affected persisted content is preserved on conflict; the engine does not silently overwrite it. There is no exercise, session, body-observation, body-zone-relation, or equipment-definition tombstone in the current formats. Omitting one of those objects from a later snapshot is not a deletion request. The only explicit removal signal is equipment-association V2 `state: cleared`, scoped to one `(session_id, entry_id)` occurrence. ## 8. Synchronization concurrency The shared engine serializes synchronization with: ```text $XDG_DATA_HOME/trainlog/sync.lock ``` The TUI waits for an active transaction. Daemon polling uses non-blocking acquisition and retries later. A request ID already successfully consumed is not processed as a new request. ## 9. Synchronization history Every actual run gets a stable: ```text sy_ ``` Structured history is stored under: ```text $XDG_DATA_HOME/trainlog/sync_runs/ ``` The TUI exposes list/detail semantics comparable to: ```text git log git show ``` ## 10. Error philosophy Trainlog prefers explicit failure over silent corruption. Hard validation or persistence failure aborts the relevant transaction. The synchronization layer records useful failure detail rather than masking known errors with generic placeholders. ## 11. Layering rule ```text Notcurses / Compose rendering | v application workflow | +-- domain model +-- synchronization +-- validation | v persistence / MTP transport ``` Rendering does not own persistence rules. Persistence and MTP code do not depend on Notcurses rendering. ## 12. Body analytics boundary Body analytics belong to the desktop analysis layer. ```text Android real measurements only | v desktop body_observations | v pure derived analytics | v TUI display ``` The analytics layer does not modify canonical observations. A desktop-only configuration file stores the estimation profile: ```text $XDG_CONFIG_HOME/trainlog/body_analytics.conf ``` with `~/.config` fallback. This profile is not synchronized to Android and does not require a SQLite schema change. ## 13. Audited evolution constraints Each mutating importer has strict validation and a SQLite transaction. The V2 association companion is a strict corroboration of the equipment already carried by the mobile snapshot and does not rewrite divergent state. However, one definitions/mobile/body-zones/associations publication has no common generation manifest and is not one cross-artifact database transaction. A late association conflict can therefore follow a successfully committed definitions or mobile import; replay remains idempotent and existing conflicting content is not overwritten. A future batch protocol must be separately versioned rather than retrofitted into frozen formats. Body-zone concurrency uses an internal canonical-state baseline. Equal states are idempotent; the sole changed side wins; if both local and incoming states diverge from the baseline, the companion reports a conflict and rolls back. Secondary lists are never merged by union. A safe exercise-identity merge may carry the only non-empty zone state, but rejects two different non-empty states and clears the baseline because identity reconciliation is not acknowledgement. After a companion has actually been published, the publisher records that exact snapshot as its own baseline too; a failed file/MTP publication never acknowledges data that the peer could not have observed. Android and desktop also have different stored name-normalization behavior: Android removes diacritics, while the frozen desktop/Python rule preserves them through NFC plus Unicode case folding. Correcting existing Android keys requires an explicit migration and collision policy. Finally, Android retains supplied exercise/equipment relationship tables, but its current picker searches the complete definition catalog; applying those relations as recommendations is future gym-catalog behavior. Custom-equipment reconciliation is deliberately ID-based. Different custom IDs are not merged by equal or similar display names because their load semantics and existing occurrence references may differ. The current PC catalog V1 Android reader also validates its required semantic fields without the exact-key rejection used by newer V2/companion readers; stricter V1 parsing needs an explicit compatibility review. The desktop model/API currently permits bounded supplemental field masks on a `SETS` profile, while Android creation and V2 inbox validation require those masks to be zero for `SETS`. The shipped catalog uses supplemental speed and distance only with `CONTINUOUS`; defining cross-platform behavior for a future set-based supplemental field is a model-contract decision, not part of this reconciliation. ## 14. Training knowledge V1 boundary `TRAINING_KNOWLEDGE_V1` is a read-only composition layer. Six versioned JSON catalogs under `catalog/` are the only authored scientific source; generated C data and Android asset loading derive from them. They contain cited anatomy, movement, exercise and equipment knowledge, not user history. The generated knowledge audit is evidence output, not an editable source. The desktop `training_knowledge.h` API exposes immutable catalog records and stable-ID queries. `training_context.h` combines one exact persisted exercise with its stored BODY ZONE relations, optional science, compatible equipment, latest explicit maximum, and bounded occurrence/set history under one read snapshot. Android provides the corresponding catalog and repository context. This composition neither writes SQLite nor seeds catalog mappings. An unknown runtime ID and a missing scientific record remain valid states. Scientific BODY ZONE projections and persisted BODY ZONE relations have different ownership and are never substituted for one another. Labels and generic equipment descriptions are not runtime identities; an equipment capability does not create an `ex_` exercise or historical association. The feature is `TRAINING_KNOWLEDGE_V1=PASS`. The temporal contract has independent PASS evidence: the readers parse the admitted source forms into exact instants, compare exact fractions, then use bytewise session and entry ID ties; emitted exclusive cursors preserve the original timestamp text and IDs. Selection and hydration share a read snapshot, while separate page calls retain current-data semantics. Malformed caller cursors and malformed matching stored timestamps fail explicitly; a selected timestamp beyond C's 40-character output field also fails explicitly. The initial full-tranche audit's stale temporal-documentation, Android loader, Meson input, and C role-only query findings were resolved by one bounded repair chain and independently verified. Its full contract, uncertainty boundary and future-only planning architecture are in [Training knowledge system V1](domain/knowledge_system.md).