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Breadway 45b5aee117 Add rules.toml: declarative event->action automation without Lua
Adds a bread.rules built-in module plus a breadd/src/core/rules.rs
parser/validator so the common "when event X happens, do Y" case
(dock connect script, AC-disconnect notification, keyboard rate on
connect) no longer requires hand-written init.lua.

- rules.toml is optional, XDG_CONFIG_HOME-aware (mirrors breadd.toml's
  config_path() resolution), and purely additive alongside init.lua.
- Each [[rule]] needs `on` (event suffix, "bread." implied, wildcards
  supported) and exactly one of run/exec/notify. `run` names a single
  script (tilde-expanded + shell-quoted so spaces in the path can't be
  word-split); `exec` is a raw shell command line passed through as-is;
  `notify` shows a desktop notification.
- Rule data is threaded into the bread.rules Lua module via globals
  set just before it loads (same technique load_profiles() already
  uses for __profiles_path), avoiding any need to hand-escape values
  into generated Lua source text.
- Parse/validation failures surface through the existing module
  load-error path (Lua error() -> run_on_load -> set_module_status),
  so a bad rules.toml shows up via `bread doctor` exactly like a
  broken hand-written module would, without blocking other valid
  rules in the same file.
- Documentation.md gets a new Getting-started fast path plus a
  Dictionary entry; README's Configuration section gets a short
  pointer. Since: v1.5.
2026-08-04 22:05:26 +08:00
.forgejo/workflows CI: single-trunk model — dev triggers on main, beta becomes RC-tag-triggered 2026-07-31 11:05:29 +08:00
bread-cli Bump version to 0.7.0 2026-07-19 03:06:24 +08:00
bread-emit Bump version to 0.7.0 2026-07-19 03:06:24 +08:00
bread-shared can't be bothered writing a commit message 2026-08-03 09:37:15 +08:00
breadd Add rules.toml: declarative event->action automation without Lua 2026-08-04 22:05:26 +08:00
examples/modules Will change this commit message to mean something later 2026-07-23 11:16:33 +08:00
graphify-out can't be bothered writing a commit message 2026-08-03 09:37:15 +08:00
packaging Drop pacman packaging, bakery-only distribution 2026-07-23 10:25:12 +08:00
scripts Final Release of Version 1.0 2026-05-13 22:01:42 +08:00
.gitignore Final Release of Version 1.0 2026-05-13 22:01:42 +08:00
bakery.toml Drop pacman packaging, bakery-only distribution 2026-07-23 10:25:12 +08:00
Cargo.lock update deps 2026-07-23 11:46:35 +08:00
Cargo.toml update deps 2026-07-23 11:46:35 +08:00
CONTRIBUTING.md CONTRIBUTING.md: document single-trunk + RC-tag release model 2026-07-31 11:08:41 +08:00
Documentation.md Add rules.toml: declarative event->action automation without Lua 2026-08-04 22:05:26 +08:00
Examples.md Will change this commit message to mean something later 2026-07-22 19:52:16 +08:00
LICENSE Daemon release-ready 2026-05-11 12:21:23 +08:00
README.md Add rules.toml: declarative event->action automation without Lua 2026-08-04 22:05:26 +08:00

Bread

A reactive automation fabric for Linux desktops.

Bread is a modular desktop automation runtime built around a single idea: your desktop should behave like a programmable system, not a collection of disconnected config files.

Instead of scattering behavior across shell scripts, compositor configs, udev rules, and ad-hoc daemons, Bread centralizes runtime awareness into a coherent layer that can observe, interpret, and react to system state dynamically.

Status: Early development. The daemon (breadd) is stable. The Lua automation API is active and feature-complete for daily use.


How it works

Bread runs a long-lived daemon (breadd) that:

  1. Ingests raw signals from your compositor, hardware, and OS
  2. Normalizes them into stable, semantic events (bread.device.dock.connected, bread.monitor.connected, etc.)
  3. Maintains a live model of your desktop state
  4. Delivers those events to Lua modules that implement your automation

Your automation lives in Lua. You subscribe to events, read state, and call APIs:

local M = bread.module({ name = "dock", version = "1.0.0" })

bread.on("bread.device.dock.connected", function(event)
    bread.profile.activate("desk")
    bread.exec("waybar --config ~/.config/waybar/desk.jsonc")
    bread.notify("Dock connected", { urgency = "low" })
end)

bread.on("bread.device.dock.disconnected", function(event)
    bread.profile.activate("default")
end)

return M

Architecture

breadd/          Rust daemon — event pipeline, state engine, IPC, adapter supervision
bread-cli/       CLI frontend — talks to breadd over a Unix socket
bread-shared/    Shared types — RawEvent, BreadEvent, AdapterSource
packaging/       Arch PKGBUILD and systemd user service

The daemon is structured in four layers:

  • Adapters — interface with Hyprland IPC, udev, power state, network interfaces, and Bluetooth (BlueZ)
  • Normalizer — transforms raw adapter signals into semantic Bread events
  • State engine — maintains runtime state and dispatches events to subscribers
  • Lua runtime — loads your modules, registers handlers, executes automation

Requirements

  • Linux (Arch recommended)
  • Wayland compositor (Hyprland for full functionality)
  • Rust toolchain (stable, 2021 edition)
  • udev (standard on systemd systems)

Optional but preferred:

  • UPower (for battery events via D-Bus rather than sysfs polling)
  • rtnetlink (for network events; falls back to sysfs polling without it)
  • BlueZ (for Bluetooth device events and control)

Installation

From source

git clone https://git.breadway.dev/Breadway/bread.git
cd bread

Run the install script — it builds, symlinks breadd and bread into ~/.local/bin (override with BIN_DIR=…), installs the systemd user service, and starts the daemon:

bash scripts/install.sh

Or step by step (system-wide install):

cargo build --release
sudo install -Dm755 target/release/breadd /usr/bin/breadd
sudo install -Dm755 target/release/bread /usr/bin/bread

Arch Linux (PKGBUILD)

cd packaging/arch
makepkg -si

systemd user service

mkdir -p ~/.config/systemd/user
cp packaging/systemd/breadd.service ~/.config/systemd/user/
systemctl --user daemon-reload
systemctl --user enable --now breadd

Configuration

Bread reads from ~/.config/bread/breadd.toml. All values are optional — the daemon runs with defaults if the file doesn't exist.

[daemon]
log_level = "info"   # trace | debug | info | warn | error

[lua]
entry_point = "~/.config/bread/init.lua"
module_path = "~/.config/bread/modules"

[adapters.hyprland]
enabled = true

[adapters.udev]
enabled = true
subsystems = ["usb", "input", "drm", "power_supply"]

[adapters.power]
enabled = true
poll_interval_secs = 30

[adapters.network]
enabled = true

[adapters.bluetooth]
enabled = true

[events]
dedup_window_ms = 100

[notifications]
default_timeout_ms = 5000
default_urgency = "normal"
notify_send_path = "notify-send"

[modules]
builtin = true    # load built-in modules (monitors, devices, workspaces, binds, rules)
disable = []      # list of built-in module names to disable

For the common "when event X happens, do Y" case, you don't need Lua at all — drop rules straight into ~/.config/bread/rules.toml and skip init.lua entirely:

# ~/.config/bread/rules.toml
[[rule]]
on = "device.dock.connected"
run = "~/.config/bread/scripts/dock-connected.sh"

[[rule]]
on = "power.ac.disconnected"
notify = "Unplugged"

It's optional and purely additive alongside init.lua — see Getting started in Documentation.md for the full schema (run vs exec vs notify, wildcard on patterns, and how a malformed rule surfaces via bread doctor).

For anything beyond a single action per event, your automation lives in ~/.config/bread/init.lua. Modules placed in ~/.config/bread/modules/ are auto-loaded after init.lua:

-- ~/.config/bread/init.lua

bread.on("bread.system.startup", function(event)
    bread.profile.activate("default")
end)

CLI reference

All commands communicate with the running daemon over a Unix socket at $XDG_RUNTIME_DIR/bread/breadd.sock.

# Daemon
bread ping                            # Check daemon connectivity
bread health                          # Daemon version, uptime, PID
bread doctor                          # Diagnose daemon and module health
bread doctor --json                   # Output raw JSON

# Lua runtime
bread reload                          # Hot-reload all Lua modules
bread reload --watch                  # Watch config dir and reload on changes

# State and events
bread state                           # Dump full runtime state as JSON
bread state network                   # Read a single path from state
bread state --json                    # Output raw JSON
bread events                          # Stream live normalized events
bread events bread.device.*           # Stream filtered events
bread events --since 60               # Replay events from the last 60 seconds
bread events --fields event,data      # Limit output to specific fields
bread events --json                   # Output raw JSON
bread emit <event>                    # Manually fire an event (for testing)

# Profiles
bread profile-list                    # List defined profiles
bread profile-activate <name>         # Activate a named profile

# Modules
bread modules list                    # List installed modules and daemon status
bread modules install /local/path     # Install from a local module directory
bread modules remove <name>           # Remove an installed module (--yes skips confirmation)
bread modules info <name>             # Show full manifest and daemon status

Module system

Modules are Lua files (or directories) installed to ~/.config/bread/modules/. Each module must declare itself with bread.module() and have a bread.module.toml manifest.

Installing modules

Modules install from a local directory only. Modules run with full bread.exec() privileges and are not sandboxed, so to use a module published on a git host, clone it yourself and review the Lua before installing from the local checkout:

git clone https://github.com/someuser/bread-wifi ~/src/bread-wifi
# review ~/src/bread-wifi, then:
bread modules install ~/src/bread-wifi

Writing a module

A module directory looks like:

~/.config/bread/modules/
└── wifi/
    ├── bread.module.toml    ← required manifest
    └── init.lua             ← entry point

bread.module.toml:

name = "wifi"
version = "1.0.0"
description = "WiFi management for Bread"
author = "someuser"
source = "/home/you/src/bread-wifi"
installed_at = "2026-01-01T00:00:00Z"

init.lua:

local M = bread.module({ name = "wifi", version = "1.0.0" })

bread.on("bread.network.connected", function(event)
    bread.log("Network up: " .. (event.data.interface or "unknown"))
end)

return M

Event reference, Lua API, and IPC protocol

These are fully documented in Documentation.md — the single canonical reference (event catalogue, per-function Lua API, runtime-state schema, and IPC protocol), versioned as Bread Automation API v1. This README no longer keeps a parallel copy, to avoid the two drifting apart.


Contributing

Bread is early-stage software. Contributions, issues, and feedback are welcome.

The daemon (breadd) is the most stable part of the codebase. Active development is happening across the Lua API and module system.


License

MIT — see LICENSE.