A reactive, composable, Deno-first toolkit for terminal user interfaces. This fork includes the original canvas and component foundation plus controller-first widgets, app and runtime primitives, browser and remote-terminal entrypoints, an optional Three.js ASCII renderer, and full-screen visualization demos.
Exomux is the flagship application β a terminal multiplexer built entirely on this toolkit, and the reference for what a production-shaped adopter looks like.
A terminal multiplexer with a detachable host. Shells live in a daemon that outlives the UI, so the client can exit and reattach without disturbing a single running process.
deno task exomux # or: ./visualization exomux
./install-exomux.sh # compile + install ~/.local/bin/exomux for use from anywhereCtrl-N is the prefix key; Ctrl-N ? lists every command.
| Capability | Detail |
|---|---|
| Detachable host | Loopback WebSocket daemon, token-authenticated, survives client exit and relaunch |
| Named sessions | tmux-style: bare launch attaches, -n creates, -a <name> targets, --list-sessions lists |
| Crash-safe launch | Stale or wedged host descriptors are pruned or quarantined; a crash can never block relaunch |
| Real terminals | PTY-backed shells through the optional @sigma/pty-ffi adapter, with a pipe fallback |
| Floating workbench | Draggable, resizable, snapping windows over a live desktop, with session and network panels |
| Animated backgrounds | Twelve theme-derived fields, cycled with prefix b; all deterministic bar the mic-driven one |
| Rain and flood | The rain field runs a 2-D fluid sim; the desktop floods, and the drain plug is clickable |
| Audio visualizer | The butterchurn field runs 289 real MilkDrop presets β equations and shaders β off the mic |
| Transparent windows | Per-desktop and per-window opacity; terminal text sits on the live background behind it |
| Overgrowth | Organic backgrounds slowly reclaim idle windows and retreat when focused |
| Network panel | Remembered SSH hosts and live Tailscale devices, one keystroke to spawn a shell |
It is a real package rather than an example: packages/exomux carries its own deno.json, its own deno.lock, and 311
tests, and it reaches the toolkit only through the public entrypoints listed below β nothing in it imports src/. That
constraint is the point; Exomux is the standing proof that the published API is sufficient to build a non-trivial
application, and every gap it hit became a library export.
deno task exomux:test # the package suite
deno task exomux:compile # a self-contained binaryExomux's detached host currently requires Linux or Windows; see OS Support.
New applications should use the focused ./app entrypoint:
import { crayon } from "https://deno.land/x/crayon@3.3.3/mod.ts";
import { Button, Computed, createTerminalApp, Signal } from "jsr:@ubernaut/deno-tui/app";
const count = new Signal(0);
const app = createTerminalApp<{ type: "increment" }>({
tuiOptions: { style: crayon.bgBlack },
commands: [{
id: "increment",
label: "Increment",
binding: { key: "return" },
action: { type: "increment" },
}],
onAction: () => count.value += 1,
setup(app) {
const button = new Button({
parent: app.tui,
rectangle: new Computed(() => ({
column: Math.max(1, Math.floor(app.tui.rectangle.value.width / 2) - 9),
row: Math.max(1, Math.floor(app.tui.rectangle.value.height / 2) - 1),
height: 3,
width: 18,
})),
label: { text: new Computed(() => `Count: ${count.value}`) },
theme: {
base: crayon.bgBlue,
focused: crayon.bgLightBlue,
active: crayon.bgCyan,
},
zIndex: 1,
onPress: () => void app.executeCommand("increment"),
});
app.registerComponent(button);
app.focus.focus(button);
},
});
app.start();TerminalApp owns input, command bindings, focus traversal, mouse routing, bracketed paste, terminal signals, and
cleanup by default. Every binding can be disabled for embedding or tests. From a repository checkout, run the focused
example, component demo, or launcher:
deno task terminal-app
deno task demo
./visualization| Area | Primary ownership |
|---|---|
| Terminal foundation | src/tui.ts, src/canvas/, src/component.ts, src/view.ts |
| Input and interaction | src/input_reader/, src/input.ts, src/focus.ts, src/keymap.ts, src/selection.ts |
| Widgets and controllers | src/components/ |
| Layout and markup | src/layout/, src/markup/ |
| App architecture | src/app/ |
| Runtime and concurrency | src/runtime/ |
| Theme system | src/theme*.ts |
| Three.js ASCII renderer | src/three_ascii/ |
| Flagship application | packages/exomux/ (standalone package, own config and lockfile) |
| Full-screen applications | app/ |
| Focused examples and tooling | examples/, scripts/ |
The package is intentionally layered. Core terminal APIs remain Deno-first. Three.js, Yoga, browser build tooling, and screenshot tooling stay behind their owning entrypoints or tasks.
The export map in deno.jsonc defines the supported package boundaries:
| Import target | Source | Runtime | Stability |
|---|---|---|---|
. |
mod.ts |
terminal | stable |
./app |
mod.app.ts |
terminal | beta |
./web |
mod.web.ts |
browser | beta |
./remote |
mod.remote.ts |
remote | experimental |
./three-ascii |
mod.three_ascii.ts |
shared | experimental |
./theme |
mod.theme.ts |
shared | beta |
./runtime |
mod.runtime.ts |
shared | beta |
./terminal |
mod.terminal.ts |
terminal | beta |
./testing |
mod.testing.ts |
terminal | beta |
./layout/yoga |
src/layout/solvers/yoga.ts |
shared | experimental |
Use ./app for new terminal applications and the root entrypoint for compatibility or low-level composition. Focused
entrypoints let application and tooling authors avoid taking a dependency on the broad terminal surface. Package
stability policy and release checks are documented in
API Stability and Packaging.
- Exomux documents the flagship multiplexer, why it is packaged separately, and how it depends on the toolkit.
- Repository Overview maps module families, integration surfaces, demos, and quality gates.
- API Reference is generated from the public re-export graph and lists every exported symbol.
- API Stability and Packaging defines entrypoint tiers and release policy.
- Testing and Performance covers test helpers, benchmarks, probes, and contributor gates.
- Visualization App documents the system monitor shell and visualization controls.
- HTML/CSS-Style Layout documents markup parsing, the supported CSS subset, and the simple and optional Yoga solvers.
- Terminal Emulation Strategy describes process, PTY, screen, and scrollback scope.
- Curses and WebTUI Parity records terminal and browser toolkit expectations.
- Browser Framework Plan explains the browser host, DOM target, remote bridge, and Pages build direction.
Use the generated and queryable catalogs instead of maintaining parallel symbol lists:
deno task api-inventory
deno task component-catalog
deno task app-plugin-catalog
deno task benchmark -- --list
./visualization --listThe main design rule is separation between state, projection, and host rendering:
Signal,Computed,Effect, and their lazy variants own reactive state propagation.Canvas, draw objects, and sinks own terminal-cell rendering and repaint behavior.- Widget controllers own reusable interaction state; components own terminal presentation.
- Command adapters expose controller operations to menus, palettes, keymaps, and plugins.
TuiAppcomposes actions, routes, commands, focus, settings, history, and disposable plugins.- Runtime plans select workers, storage, renderers, and terminal capabilities outside deterministic components.
- Terminal and browser workbenches share renderer-neutral controller, geometry, menu, workspace, and projection code.
| Family | Representative APIs |
|---|---|
| Foundation | Box, Frame, Label, Text, View |
| Input | Button, CheckBox, ComboBox, Input, TextBox, RadioGroup, Slider |
| Navigation | List, VirtualList, Tabs, MenuBar, Tree, FileExplorer, Breadcrumbs, Stepper |
| Data and text | Table, DataTableController, Pad, ScrollArea, LogViewer |
| Feedback | ProgressBar, Spinner, EmptyState, StatusBar, ToastStack |
| Overlays | Modal, ContextMenu, CommandPalette, KeyHelp |
| Dashboard | Sparkline, Gauge, Chart, MetricSeriesController |
| Visualization | ThreeAscii, system monitor panels, Neon Three scenes |
deno task component-catalog is the authoritative component inventory. It supports text and JSON output and includes
category, capability, controller, and Three.js metadata.
The beta ./app entrypoint also includes Markdown and MarkdownController. A pinned markdown-it parser produces a
renderer-neutral document model; the terminal projection adds cell-width wrapping, nested lists and quotes, task items,
fenced code, links, rules, tables, semantic ANSI styling, scrolling, and responsive reflow. parseMarkdown() and
renderMarkdown() can be used without mounting the component.
import { Markdown } from "jsr:@ubernaut/deno-tui/app";
const document = new Markdown({
parent: app.tui,
rectangle: { column: 0, row: 0, width: 80, height: 24 },
zIndex: 1,
theme: { base: crayon.white, focused: crayon.white },
source: "# Status\n\n- [x] Runtime ready\n- [ ] Deploy",
});
app.registerComponent(document);Controllers can be used without mounting a component. Their command adapters preserve the same behavior across command palettes, menus, key bindings, and tests:
import { bindSliderCommands, CommandRegistry, type SliderCommandAction, SliderController } from "./mod.ts";
const slider = new SliderController({
min: 0,
max: 100,
step: 5,
value: 40,
orientation: "horizontal",
});
const commands = new CommandRegistry<SliderCommandAction>();
const dispose = bindSliderCommands(commands, slider, {
id: "volume",
idPrefix: "settings.volume",
includeValueCommands: true,
values: [0, 50, 100],
});
await commands.execute("settings.volume.increment", console.log);
dispose();
slider.dispose();GridLayout, HorizontalLayout, and VerticalLayout cover declarative terminal grids. flexRects(), split panes,
responsive recipes, and WindowManagerController support application shells and tiled workspaces. The markup path adds
an HTML/CSS-style tree with terminal-cell media queries, Flexbox, Grid, absolute positioning, overflow inspection, and
an optional Yoga backend.
See HTML/CSS-Style Layout,
examples/layout_recipe_report.ts, examples/html_css_layout.ts, and examples/window_manager_demo.ts for executable
examples.
createApp() assembles the terminal host with an ActionBus, RouteManager, CommandRegistry, focus manager, keymap,
and lifecycle disposal. Settings bindings, undo/redo history, command surfaces, and plugin helpers build on those owners
instead of introducing app-local state loops.
createTerminalApp() is the recommended application boundary. It accepts routes, commands, key bindings, focus items,
mouse targets, plugins, middleware, action handling, and component setup in one definition, then owns the standard
terminal interaction and shutdown wiring. registerComponent() connects an interactive component to app focus and
pointer routing without legacy global control handlers.
The runtime layer provides capability and terminal plans, AsyncScheduler, WorkerPool, RenderLoop, memory and
IndexedDB stores, persistent signals, async resources, cached pipelines, data queries, process sessions, PTY backend
selection, and workload telemetry. Optional capabilities are selected through explicit plans and diagnostics so
components remain deterministic.
Start with these focused examples:
| Workflow | Example or task |
|---|---|
| App routes, settings, commands, themes | deno task app-shell |
| Forms and widget bindings | deno task form-workflow |
| Data table sorting and selection | deno task table-selection |
| Process and terminal commands | deno task terminal-command |
| Worker pool and scheduler telemetry | deno task runtime-workloads |
| Cached resources and pipelines | deno task cached-resource, deno task cached-pipeline |
| Runtime and terminal capability report | deno task capabilities |
Themes use semantic tokens and component states rather than hard-coded demo colors. Palette presets, theme packs,
provider layers, engine factories, pipelines, resolver caches, gallery previews, validation, and binding groups are
available through the root or ./theme entrypoint.
Run deno task theme-gallery for the built-in palette suite and deno task theme-workspace for the combined provider,
factory, pipeline, and prewarm workflow.
mod.web.ts exposes the Canvas2D browser host, input source, ANSI cell parsing, DOM rendering helpers, and shared app
surfaces without constructing the terminal runtime. mod.remote.ts exposes the transport-neutral remote terminal
protocol, browser client, and bridge to a TerminalSessionHandle.
Validate these boundaries with:
deno task web:check
deno task web:demo:check
deno task web:test
deno task remote:checkThe optional Three.js renderer projects scenes into terminal cells using block, glyph, or mixed output. It supports WebGPU-backed post-processing, edge and fill controls, depth color and fog, deferred readback, adaptive panel budgets, and browser-compatible scene composition. Renderer and panel sizes follow their current terminal-cell rectangle, so console resize updates propagate through camera aspect, render targets, and visible grid projection.
Run the standalone renderer with:
deno task three-asciiThe API Workbench and Neon applications exercise the renderer inside resizable, tiled, fullscreen, and minimized windows. GPU-backed probes and visual smokes are documented in Testing and Performance.
./visualization is the canonical launcher. It supports interactive search, direct aliases, and a machine-readable
catalog. Common entrypoints are:
| Command | Surface |
|---|---|
./visualization exomux |
Terminal multiplexer with a detachable host β the flagship application |
./visualization portfolio |
API Workbench with managed windows, controls, terminal panes, and Three.js |
./visualization showcase |
Expanded widget and visualization showcase |
./visualization neon |
Neon Exodus-compatible and extended demo decks |
./visualization monitor |
Live system monitor dashboard |
./visualization polygons |
Standalone Three.js ASCII geometry scene |
./visualization workspace-launcher |
File-explorer-driven managed demo workspace |
./visualization gallery |
Compact capability report |
./visualization health |
Contributor health gate |
Use ./visualization --list for every current alias and description. Use deno task with no task name to inspect all
direct Deno tasks from deno.jsonc.
These fixed-size terminal captures are regenerated with deno task screenshots. The checked-in set is intentionally
limited to distinct interactive or catalog surfaces.
The full contributor gate is:
deno task healthIt verifies formatting, public API and package policy, generated docs, examples, browser and remote entrypoints, benchmarks, the main test matrix, the Exomux package suite, browser tests, and worker tests. Useful focused commands include:
deno test
deno task exomux:test
deno task package-check
deno task api-inventory -- --check
deno task benchmark
deno task e2eExomux resolves against its own config, so a bare deno test at the repository root does not reach it β run
deno task exomux:test (or deno task health, which includes it) when changing anything it depends on.
Renderer and workbench changes also require the matching live probe or PTY/browser visual smoke. See Testing and Performance for the current matrix and thresholds.
| Operating system | Linux | macOS | Windows* | WSL |
|---|---|---|---|---|
| Base | yes | yes | yes | yes |
| Keyboard support | yes | yes | yes | yes |
| Mouse support | yes | yes | yes | yes |
| Exomux detached host | yes | no | yes | yes |
On Windows, run chcp 65001 if Unicode characters display incorrectly.
Exomux's detached host needs to place its daemon in its own session. On Linux that uses setsid, which must be present
as a regular file at /usr/bin/setsid or /bin/setsid; on Windows detaching the standard handles is sufficient. macOS
has no equivalent path yet, so the host reports daemon-detach-unavailable there. Everything else in Exomux β the
workbench, backgrounds, and protocol β is platform-neutral.
Open an issue or pull request for bug fixes, features, or documentation improvements. Keep changes scoped, add focused coverage for behavior changes, and run the relevant health gates before submitting.
This project follows Conventional Commits.
MIT. See LICENSE.md.