kappa mascot

# kappa **Anywhere, any init, anytime.** A declarative, source-based package manager that doesn't care what init system you run. Or what bootloader. Or what CPU architecture. Kappa builds your entire system from source — and lets you swap the init system like you'd swap a wallpaper. --- ### Why Every other package manager picked a side. `apt` married systemd. `pacman` shackled itself to Arch's ecosystem. `emerge` gave you choice but at the cost of your weekend. Nix gave you reproducibility but took your filesystem with it. Kappa is what you get when you stop negotiating. You declare what your system *is*, and kappa figures out how to build it. Change your mind about the init system? Rebuild only the packages that care — the other 800 stay put. ### What it does ``` # Your system, in one file: boot { kernel = "linux" init = "s6" # swap to "systemd" anytime bootloader = "limine" # or "grub" root = "/dev/sda1" } packages { nginx { version = ">=1.24" } postgresql {} zlib {} } services { nginx { enable = true } } ``` Then: ```sh kappa rebuild config.kap # builds everything, generates service files kappa rebuild config.kap # boot.init = "openrc" — only 5 packages actually rebuild ``` ### Features that nobody else has - **Init-system-as-configuration.** `boot.init = "s6"` → generates s6 service directories. Change it to `"systemd"` → regenerates `.service` units. Change it to `"openrc"` → generates init.d scripts. The package definitions don't know or care which init you picked. That's kappa's problem. - **Post-install init switching.** Change `boot.init`, run `kappa rebuild`, reboot. You're now on a different init system. Only packages that actually use `${enabledinit}` in their build scripts need recompiling. Everything else just gets new service files generated. - **Bootloader rollback.** Every rebuild creates a fallback boot entry pointing at the previous generation's init. If the new one doesn't boot, the old one is one reboot away. - **Parallel scheduler.** `-w 4 -j 8` means four packages building simultaneously, eight jobs each. The scheduler uses depth-based priority grouping so leaf dependencies unblock as much work as possible first. - **Package recipe caching with indexed repos.** Declare named repos with channels and mirrors in your config. Kappa fetches `index.kap` from each repo, caches it, and only re-fetches when the remote changes. Package recipes are resolved from the index — fast, offline-tolerant, and mirror-aware. ```kap repos { kappa-os { url = "https://packages.kappa-os.org/" channels = ["stable"] mirrors = [ "https://cdn.kappa-os.org/", "https://eu.kappa-os.org/", ] } } ``` `remotes = [...]` still works. Repos are tried first, then legacy remotes. - **Source tarball caching.** Downloaded once, stored at `$KAPPA_ROOT/cache/` (default: `/usr/local/kappa/cache/`). Rebuilds don't touch the network unless versions change. - **Env operators.** Three ways to set build environment variables: `=` (hard set), `+=` (append with space), `?=` (soft set — only if not already defined). System-level env propagates to all packages. ```kap env { CFLAGS = "-O2 -march=native" # overwrite CFLAGS += "-pipe" # append → "-O2 -march=native -pipe" CFLAGS ?= "-g" # soft — only if not set } ``` - **Conflicts.** `systemd` declares `conflicts = ["eudev", "elogind"]`. The resolver catches mutual incompatibility before a build starts — and now actually reports it, rather than silently ignoring it. - **Init-agnostic system config.** `groups { wheel { gid = 998 } }` — kappa creates the groups. `system { hostname = "mybox" }` — kappa writes `/etc/hostname`. No `systemctl`, no `rc-update`, no init dependency. ### 5 init systems. 2 bootloaders. Zero lock-in. | Init | Service location | Enable command | |------|-----------------|----------------| | systemd | `/etc/systemd/system/{name}.service` | `systemctl enable` | | openrc | `/etc/init.d/{name}` | `rc-update add` | | s6 | `/etc/s6/sv/{name}/run` | `s6-rc-bundle-update` | | runit | `/etc/sv/{name}/run` | `ln -sf /etc/sv/{name} /var/service/` | | dinit | `/etc/dinit.d/{name}` | `dinitctl enable` | | Bootloader | Config path | |-----------|------------| | limine | `/boot/limine.cfg` | | grub | `/boot/grub/grub.cfg` | ### Quick start > **Note for 0.1.x users**: The default store root has moved from `/kappa` to > `/usr/local/kappa` (FHS 3.0). Set `KAPPA_ROOT` to your existing `/kappa` > directory to keep using the old location. ```sh # Build kappa (needs Clang 17+, CMake 3.20+, C++23) cmake -B build -G Ninja -DCMAKE_C_COMPILER=clang -DCMAKE_CXX_COMPILER=clang++ cmake --build build # Add packages to your system config build/kappa add make build/kappa add nginx ">=1.24" build/kappa add zlib # Rebuild — kappa fetches recipes, resolves deps, builds everything build/kappa rebuild $KAPPA_ROOT/system/config.kap # Remove packages build/kappa remove zlib ``` No config files to write by hand. `kappa add` writes the `packages {}` block for you. `kappa rebuild` handles the rest. ### Subcommands | Command | What it does | |---------|-------------| | `add [version]` | Add a package to system config | | `remove ` | Remove a package from system config | | `build ` | Build a single package from its `.kap` definition | | `rebuild ` | Diff config against installed state, rebuild changed | | `resolve ` | Compute a build plan (shows order, deps, conflicts) | | `doctor ` | Check a file for issues and warnings | | `fetch ` | Download and verify source tarballs | | `fetch-package ` | Fetch a package recipe from remotes | | `format ` | Pretty-print to canonical style | | `index ` | Build an `index.kap` from `.kap` files in a directory | | `list` | Show installed packages | | `parse-config ` | Validate a system configuration | | `parse-package ` | Validate a `.kap` package definition | | `rollback` | Show available generations | | `validate ` | Validate any kappa file (package, config, or index) | ### Repo maintenance ```sh # Generate an index from a directory of .kap files kappa index ./packages/ # → packages/index.kap # Host the directory behind any HTTP server. That's your repo. ``` The index is a tiny text file listing every package and version. Clients fetch it once, cache it, and check for updates via HTTP headers. ### License BSD 2-Clause. Do whatever you want. Just don't sue us. ### Contributing See [CONTRIBUTING.md](CONTRIBUTING.md). We're opinionated but we merge good code. See [STYLEGUIDE.md](STYLEGUIDE.md) for code conventions. Tests: 138 integration tests across three suites. CI runs on Arch Linux. Everything passes or nothing merges.