# TUI ## 1. Purpose The Trainlog TUI is the primary local history, analysis, and visualization application. It is implemented in C17 with `ncursesw`. ## 2. Primary screens Initial screen plan: - Dashboard; - Sessions; - New session; - Exercises; - Body; - Import. ## 3. Color The TUI is intentionally colorful. Color reinforces meaning but is never the sole indicator. Conceptual roles: - accent: titles and current selection; - success: completed target; - warning: partial target or attention state; - error: invalid input or failed operation; - muted: secondary information; - graph series: consistent distinguishable colors. All color pairs must be centralized in a dedicated theme module. Raw screen code must not scatter `COLOR_*` decisions. ## 4. Monochrome fallback Meaningful states also use text or symbols. Examples: ```text ✓ completed ! warning x failed > selected ``` ## 5. UTF-8 and exercise-name normalization The TUI uses wide-character ncurses support and initializes locale before ncurses. Trainlog v1 duplicate-name validation requires Unicode NFC normalization, whitespace normalization, and Unicode case folding. The C implementation must use a tested Unicode library or equivalent implementation that reproduces the v1 contract exactly. A likely implementation dependency is `utf8proc`; the final dependency choice is frozen before the relevant C module is implemented. ## 6. Exercise catalog Each exercise stores: - stable `exercise_id`; - mutable display name; - stable `tracking_mode` (`reps` or `duration`). The TUI uses this metadata to select the correct data-entry control. A session import may introduce a previously unknown exercise. If an existing ID arrives with a different display name, the session may import but the TUI must surface a metadata warning and must not silently rename the canonical local exercise. ## 7. New session The TUI can record a workout directly using the same logical exercise model as Android. Per exercise: - exercise; - load mode; - target sets; - target repetitions or duration; - target load when applicable; - planned rest; - actual sets; - optional note. ## 8. Load semantics The TUI must distinguish: - no separate load; - external resistance; - assistance. Analytics must not rank assistance as though more assistance represented more strength. Machine-displayed kilograms are stored faithfully but must not be presented as exact cross-machine mechanical equivalence. ## 9. Dashboard The dashboard should eventually show: - current body weight; - recent weight change; - sessions in a selected period; - total training duration; - recent performance highlights; - compact terminal graphs. ## 10. Body tracking The TUI database may store standalone body observations independently from workout imports. The session exchange format can also attach weight and measurements to one session timestamp. Body-trend graphs operate on the canonical database representation, not directly on raw JSON files. ## 11. Graphs Terminal-native graph targets include: - body-weight trend; - measurement trend; - external-load trend; - measured or estimated maximum trend; - training-volume trend. Assistance exercises require direction-aware analytics. ## 12. Minimum terminal size A minimum supported terminal size will be defined during the first TUI milestone. Below that size, Trainlog displays a clear fallback message rather than a corrupted layout. ## 13. Input safety Numeric input is validated before persistent state is committed. Invalid input must never partially mutate a saved session. Imports use full validation before the database transaction commits. ## 14. Catalog reconciliation during import Before creating any exercise or session rows, the TUI classifies incoming exercise metadata against the canonical local catalog. Rules: ```text same ID + same mode + same normalized name -> reuse same ID + same mode + different name -> reuse + metadata warning same ID + different mode -> reject entire import different ID + same normalized name -> reject entire import new ID + unique normalized name -> create inside import transaction ``` The TUI must never silently merge different exercise IDs merely because names match. The TUI must never create two identities with equivalent normalized display names. Any hard catalog conflict aborts the complete session import transaction. ## 15. Generated identifiers When the TUI creates a new exercise directly, it generates: ```text ex_ ``` When the TUI creates a new session directly, it generates: ```text se_ ``` The database stores these identifiers as opaque stable text. ## 16. Current usable TUI checkpoint The first usable ncurses interface is implemented. Current daily-use flow: ```text Dashboard -> New session -> History -> Exercises -> Body ``` Implemented interaction: - colored centralized theme; - bordered screens; - arrow-key navigation; - `Enter` activation; - `F1` new session; - `F2` history; - `F3` exercises; - `F4` body; - `q` quit; - minimum terminal fallback at `72x20`. The dashboard shows: - session count; - exercise count; - latest body weight; - recorded weight delta; - terminal-native body-weight graph. A flat weight history with only one distinct value renders one centered axis value instead of repeating the same minimum and maximum label. ## 17. Session history and detail History is navigable with the keyboard. Selecting a workout and pressing `Enter` opens its detail view. For every exercise the detail view exposes: - exercise name; - repetition or duration tracking mode; - load mode; - planned rest; - planned number of sets; - planned repetitions or duration; - target load when applicable; - actual set count; - ordered performed sets and their actual loads. Example: ```text Presse à cuisses Mode : répétitions Charge : externe Repos : 1 min Cible : 4 séries × 5 reps Charge cible : 80.0 kg Réalisé: 5@80.0 / 5@80.0 / 5@80.0 / 3@80.0 ``` Inside one workout, left/right or up/down changes the selected exercise. `e` opens the persisted session editor without replacing the parent session identity or timestamps. Assistance remains direction-aware: more assistance kilograms mean more help, not greater strength. ## 18. Duration input and display — implemented Persistent duration and rest units remain **seconds**. No SQLite schema or Trainlog JSON v1 change is required. The TUI parser will accept these equivalent forms: ```text 90 90s 1:30 1m30 1m30s ``` All represent 90 seconds. Additional examples: ```text 2m -> 120 seconds 45s -> 45 seconds 2:05 -> 125 seconds ``` A bare integer remains seconds for fast backward-compatible entry. Canonical display formatting: ```text 45 seconds -> 45 s 60 seconds -> 1 min 90 seconds -> 1 min 30 s 120 seconds -> 2 min 125 seconds -> 2 min 5 s ``` The same parser and formatter are reused for: - timed exercise targets; - timed actual sets; - planned rest. Invalid malformed forms are rejected before persistence. ## 19. Body screen and measurement history — implemented `F4 Corps` is record-oriented. The primary body screen shows: - the weight evolution graph; - recorded body observations newest first; - a compact summary per observation; - a visual scrollbar when the history is longer than the visible area. Controls: ```text ↑↓ / PgUp / PgDn select a recorded observation Enter open observation detail e edit the selected observation a add an observation g open the normalized global overlay b / Esc return ``` Each observation detail is split into two framed pages: ```text GENERAL MEMBRES ``` Left/right changes page and `e` edits the observation. Editing preserves the observation identity, timestamp, and optional session link. Enter keeps the existing value, `-` clears a metric, and Escape cancels the complete edit without persistence. Canonical persisted metrics remain: ```text body_weight_kg neck_cm shoulders_cm chest_cm waist_cm hips_cm left_arm_cm right_arm_cm left_forearm_cm right_forearm_cm left_thigh_cm right_thigh_cm left_calf_cm right_calf_cm ``` Missing observations are never invented as zero values. ## 20. Current priority before Android The TUI editability checkpoint is complete enough to move toward the Android input workflow. Current order: ```text 1. finish visual/navigation consistency 2. keep persisted session/body editing safe 3. detect an Android phone over USB/ADB 4. build the minimal Android recorder 5. transfer/import through the frozen Trainlog JSON v1 contract ``` Measured-max analytics remain separate from ordinary best-set performance and are not required for the Android transport milestone. ## 21. Global body evolution graph — implemented `F4 Corps` provides a record-oriented observation history plus a global normalized overlay view. The global graph must not overlay raw kilograms and centimeters directly. Each metric is normalized to its own first real observation: ```text first recorded value = 100 ``` Examples: ```text waist 100 -> 96 = -4 % right arm 100 -> 103 = +3 % weight 100 -> 98 = -2 % ``` This makes unlike units visually comparable without changing persisted data. Rules: - no missing observation becomes zero; - each metric begins only at its first real value; - original dates remain ordered; - every series has both a color and a distinct text/symbol identity; - left/right limb metrics remain separate; - normalization is display-only; - canonical SQLite values remain untouched. The global view is toggled from `F4 Corps` with `g`. The normal `F4 Corps` screen remains a newest-first observation history; left/right navigation is used inside observation detail pages. The global view also shows a compact percentage summary from first to latest recorded value for each available metric. ## 22. Dashboard graph v2 — implemented The dashboard body graph is implemented as a compact rolling 12-month multi-metric summary. It shows available body metrics normalized to their first visible value in the window, while the legend preserves each latest raw value and percentage change. The dashboard remains intentionally compact. Detailed absolute observation history and the complete normalized overlay belong to `F4 Corps`. ## 23. Current implementation cursor ```text TUI_DURATION_HUMAN_INPUT=IMPLEMENTED TUI_BODY_METRIC_GRAPHS=IMPLEMENTED TUI_GLOBAL_BODY_OVERLAY=IMPLEMENTED DASHBOARD_GRAPH_V2=IMPLEMENTED DASHBOARD_12_MONTHS=IMPLEMENTED TUI_EXERCISE_PERFORMANCE=IMPLEMENTED DATABASE_SCHEMA_V2=IMPLEMENTED SESSION_TYPE_PERSISTENCE=IMPLEMENTED SESSION_TYPE_TUI=IMPLEMENTED TUI_SESSION_EDIT=IMPLEMENTED TUI_BODY_OBSERVATION_EDIT=IMPLEMENTED TUI_PRIMARY_NAVIGATION=IMPLEMENTED TUI_SECONDARY_VIEW_POLISH=IMPLEMENTED ANDROID_USB_DETECTION=NEXT ``` The frozen Trainlog JSON v1 contract remains unchanged. ## Dashboard graph-only layout The home screen avoids duplicating numeric summaries already visible in the graph. The dashboard uses: ```text X = recorded date Y = percentage evolution from the first real value of each metric ``` The legend identifies every available series using a symbol, theme color, human metric name, unit (`kg` or `cm`), and current percentage evolution. Detailed absolute values remain available in `F4 Corps`. ## Dashboard rolling 12-month window The dashboard graph uses a rolling calendar window ending in the current month. Exactly 12 month slots are displayed. Rules: - months with no observation remain visible and empty; - missing months are never filled with zero; - missing months are never interpolated; - if several observations exist in one month, the last one is used on the dashboard; - each metric is normalized from its first visible month in the 12-month window; - the detailed F4 history keeps the exact original timestamps and values. The dashboard legend keeps the last visible raw value and the percentage change over the visible 12-month window. ## Exercise performance history `F3 Exercices` opens an exercise performance screen with `Enter`. The current slice tracks representative actual performance per workout without inventing a maximum. Semantics: ```text load none greatest successful reps/duration external load greatest actual load tie -> greatest reps/duration assistance lowest actual assistance tie -> greatest reps/duration ``` Assistance graphs keep kilograms as actual assistance and explicitly state that lower assistance is better. A recorded best set is not a measured maximum. Measured maxima, max-session scheduling and working-load percentages remain a separate later contract. ## Current navigation and editability checkpoint Primary large-layout screens share the same visual identity: ```text TRAINLOG ASCII banner top navigation bar framed page content footer shortcuts ``` The top navigation is: ```text 0 Accueil 1 Séance 2 Historique 3 Exercices 4 Corps ``` Direct shortcuts keep `1`-`4` / `F1`-`F4`; `0` or `Home` returns to the dashboard. On multi-zone pages, `Tab` / `Shift+Tab` changes focus. Only the border and title of the focused frame use the warning/yellow role; content colors are unchanged. Large-layout framed/bannnered views include: - dashboard; - history; - exercise catalog; - body history; - new-session type selection; - in-progress session review; - session detail; - exercise performance; - body-observation detail; - exercise selection during session entry. Session entry can create a missing exercise directly from the exercise chooser with `a`, then return to the chooser. Text prompts treat Escape as immediate cancellation. A cancelled draft or edit does not persist partial state. Persisted session replacement edits only session children. The parent session row, stable ID, timestamps, session type, notes, and body-observation links are preserved. The dashboard rolling 12-month axis clamps the final `MM/YY` label inside the dashboard frame so the current-month label does not overwrite the right border. ## Sync page The primary TUI navigation includes: ```text 5 Sync / F5 ``` The Sync screen uses the same ASCII banner, top navigation, ncurses frames and footer conventions as the other primary pages. The screen is a live overview of the direct USB/MTP transport: - connected physical MTP device; - USB bus/device and VID:PID; - device serial when available; - selected MTP storage; - free/capacity values; - readiness of the root `Trainlog` exchange area. Incoming categories are presented explicitly: ```text Séances Exercices Mensurations ``` New exercise metadata arriving inside a valid session is intended to reconcile automatically against the canonical local catalog. Body measurements carried by a valid session are imported with that session. The opposite direction is also explicit: exercises created directly on the PC must be exportable to the Android application so both sides use the same stable exercise IDs, names and tracking modes. This catalog synchronization uses a separate versioned catalog snapshot; it does not overload or modify the frozen Trainlog session JSON v1 contract. The first Sync-page slice displays remote JSON candidates and the local exercise count. Actual JSON classification/import and catalog-snapshot export are the next synchronization slices. ## Sync page checkpoint Primary navigation now includes: ```text 0 Accueil 1 Séance 2 Historique 3 Exercices 4 Corps 5 Sync ``` `5 Sync / F5` opens a dedicated page rather than drawing over the dashboard. The page contains: - `APPAREIL CONNECTE`; - `SYNCHRONISATION`. Focus rules: ```text Tab / Shift+Tab switch focused frame Left/Right move inside top navigation Enter activate selected navigation item Up/Down move through synchronization rows PgUp/PgDn scroll synchronization content r rescan USB/MTP state b / Escape return ``` Only the focused frame uses the yellow border/title role. The live page reports the connected Android MTP device and exposes these sync directions: ```text Android -> PC sessions exercises carried by sessions body measurements carried by sessions PC -> Android canonical exercise catalog ``` The session exchange remains frozen Trainlog JSON v1. Catalog synchronization is a separate versioned contract. ## Profile-aware exercise entry The TUI form is driven by exercise metadata. ```text SETS + REPS series, reps, optional load, rest SETS + DURATION series, duration, optional load, rest CONTINUOUS + DURATION + SPEED_KMH duration, speed ``` Continuous exercises do not display a set count. `Marche` will use the continuous form only after its catalog metadata is explicitly changed; behavior is never inferred from its name. ## Continuous exercise TUI — implemented Exercise creation supports explicit organization: ```text 1 séries 2 continu ``` Continuous creation forces duration tracking in model v1 and can enable: ```text speed distance ``` The same creation path is available: ```text from Exercices page inline while recording a session ``` Session entry is profile-aware. Set-based exercises retain: ```text charge sets reps/duration rest performed sets ``` Continuous exercises display only their relevant fields. For `Marche + SPEED_KMH`: ```text Durée (minutes) Vitesse km/h ``` Bare continuous duration input is interpreted as minutes. Example: ```text 15 -> 15 min -> 900 seconds in SQLite ``` Session detail is also profile-aware. Continuous detail example: ```text Mode : continu Durée : 15 min Vitesse : 7.0 km/h Réalisé : activité continue ``` Do not render set-oriented labels for a valid continuous activity. ## Android → PC synchronization action The Sync page now exposes: ```text s synchroniser ``` The action performs the complete validated chain: ```text detect exact MTP device → locate Download/Trainlog/trainlog-mobile-export-v1.json → direct libmtp download → transactional mobile-export importer → refresh desktop overview ``` No mount is used. The TUI resolves the reference importer relative to `/proc/self/exe`. In the development layout this means: ```text build/tui/trainlog → ../../tools/import_mobile_export.py ``` and therefore also works when `trainlog` is launched through the user's `~/.local/bin/trainlog` symlink. ## Sync foundation checkpoint The desktop Sync backend has validated physical transport in both directions: ```text Android → PC mobile snapshot import PC → Android canonical exercise catalog publication ``` Direct libmtp remains mandatory; no mount is introduced. The current category/count presentation is transitional. A persistent mobile snapshot is not a pending item, so a displayed `JSON candidate count` must not be treated as the final synchronization model. Next TUI design: ```text HISTORIQUE DES SYNCHRONISATIONS ↑/↓ select Enter detail s synchronize r refresh ``` The history/detail interaction should follow the conceptual model of `git log` / `git show`. User-facing session timestamps should be normalized to: ```text DD/MM/YYYY HH:MM ``` while stored timestamps remain RFC3339. ## Variable sets and session exercise removal checkpoint Validated functionality in this checkpoint: ```text VARIABLE_REPETITION_SETS=PASS REPETITION_SHORTHAND_5x10=PASS REPETITION_EXPLICIT_LIST=PASS REPETITION_PYRAMID=PASS DESKTOP_SCHEMA_V5=PASS V4_TO_V5_MIGRATION_REGRESSION=PASS MOBILE_HETEROGENEOUS_SET_IMPORT=PASS MOBILE_IMPORT_IDEMPOTENCE=PASS NO_FAKE_UNIFORM_TARGET=PASS ANDROID_SESSION_DRAFT_EXERCISE_REMOVE=PASS DESKTOP_SESSION_EXERCISE_REMOVE=PASS ``` Accepted repetition examples: ```text 5x10 4,5,6,7,8,9,10,9,8,7,6,5,4 4..10..4 ``` A heterogeneous mobile session is persisted as ordered `performed_sets`. The desktop does not invent `target_sets`, `target_reps` or `target_duration_seconds` for actual-only mobile observations. On Android, an exercise already added to the current session can be removed before saving the session. On the desktop TUI, session editing already supports: ```text d supprimer ``` for removing the selected exercise from a current or persisted session draft. The database replacement remains transactional. `TRAINLOG_FORMAT_V1` remains frozen and unchanged.