Red Bear OS 8fbf1a2066 local/scripts: add redbear-full QEMU boot test launcher (v6.0 2026)
Adds a single canonical QEMU launcher for the redbear-full desktop
target so subsequent validation runs (boot logs, init probes,
DRM/KMS registration, audio-stack bring-up, D-Bus system bus) can
be reproduced from a single script.

Coverage:
  * ACPI / GPE / Notify plumbing (acpid + kernel AML interpreter)
  * v6.0 input architecture (evdevd + virtio-keyboard / virtio-mouse)
  * MSI-X USB (xhcid via virtio xhci passthrough) and EHCI fallback
  * multi-queue NVMe (nvmed with multiple queues)
  * virtio-gpu (redox-drm via /scheme/drm/card0, opt-in via --with-gpu)
  * virtio-net (e1000d / virtio-netd via net0 user-mode networking)
  * D-Bus system bus (dbus) and redbear-sessiond
  * SDDM + KWin Wayland compositor (when redbear-full image exists)

The launcher mirrors the per-target test-*qemu.sh scripts already
in this directory (test-ps2-qemu.sh, test-greeter-qemu.sh,
test-phase4-wayland-qemu.sh) so behaviour is consistent:
q35 + OVMF, KVM opportunistic with TCG fallback, serial log to
local/docs/boot-logs/ with a timestamped filename, snapshot=on
when booting the live ISO so the build artifact is not corrupted
across re-runs.

The QEMU display is intentionally hidden (no -display gtk/vnc);
the boot log is the source of truth, not a UI surface. This
matches the v6.0 2026 NO VESA POLICY: the standard display path
is /scheme/drm/card0 via redox-drm, and the test harness never
opens /scheme/display.vesa/.

Exit code 0 on capture, exit code 1 on missing prerequisites
(firmware, qemu, image); boot outcome is in the log, not the
exit code. The 60s default timeout mirrors the redbear-mini
boot time observed in test-ps2-qemu.sh / test-timer-qemu.sh and
can be overridden with --timeout.
2026-06-09 18:18:57 +03:00

Red Bear OS

Red Bear OS

A microkernel operating system written in Rust, derived from Redox OS

MIT x86_64 Status


What is Red Bear OS?

Red Bear OS is a general-purpose, Unix-like operating system with a microkernel architecture, written in Rust. It is a full fork of Redox OS, frozen at release 0.1.0, with added hardware support, filesystem drivers, and a KDE Plasma desktop path.

Goals:

  • AMD & Intel parity — first-class support for both platforms on bare metal
  • KDE Plasma desktop — Wayland-based desktop environment via the KWin compositor
  • Hardware GPU acceleration — AMD GPU (amdgpu) and Intel GPU drivers via redox-drm
  • Modern subsystems — USB, WiFi, Bluetooth, ext4, GRUB, D-Bus
  • Offline-first builds — reproducible from archived, BLAKE3-verified sources

Quick Start

Prerequisites

Linux x86_64 host with Rust nightly, QEMU, nasm, and standard build tools.
See the Redox Build Guide for full setup.

Build & Run

# Clone
git clone https://gitea.redbearos.org/vasilito/RedBear-OS.git
cd RedBear-OS

# Build and run the desktop target in QEMU
./scripts/run.sh --build

# Build a live ISO for bare metal
./scripts/build-iso.sh redbear-full

# Build the text-only recovery target
./scripts/run.sh --build --config redbear-mini

Repository Hosting

The canonical Red Bear OS Git server is Gitea at https://gitea.redbearos.org/vasilito/RedBear-OS.git. GitHub is not a Red Bear OS source of truth and must not be used for pushes, issues, releases, or project coordination.

Public Scripts

Script Purpose
scripts/run.sh Build and run in QEMU (-b to build, -c <config> for target)
scripts/build-iso.sh Build a live ISO for bare-metal boot
scripts/build-all-isos.sh Build all live ISO targets
scripts/network-boot.sh PXE network boot helper
scripts/dual-boot.sh Dual-boot installation helper

Config Targets

Target Type Description
redbear-full Desktop Wayland + KDE + GPU drivers + D-Bus services
redbear-mini Console Text-only recovery / install target
redbear-grub Console Text-only with GRUB boot manager

Current Status

Red Bear OS boots to a login prompt in QEMU with working wired networking, D-Bus system bus, hardware detection daemons, and filesystem support (RedoxFS, ext4, FAT).

Area Status
Boot (ACPI/x2APIC/SMP) Bare-metal proven
Userspace drivers (PCI, storage, net) Working in QEMU
D-Bus system bus + services Working (login1, PolicyKit, UDisks, UPower)
ext4 / FAT filesystems Compiles, installer-wired
POSIX gaps (relibc) 🚧 Bounded Wayland-facing support
DRM/KMS display drivers 🚧 AMD + Intel compile; HW validation pending
Wayland compositor 🚧 Bounded proof; Qt6/KF6 clients crash at init
KDE Plasma desktop 🔄 In progress (Qt6/KF6 compile; KWin/QML blocked)
WiFi / Bluetooth 📋 Planned (architected, implementation pending)

How It Works

Red Bear OS uses a userspace driver model — all drivers run as unprivileged daemons:

Kernel (microkernel)
  └── schemes: memory, irq, event, pipe, debug
        └── Driver daemons (userspace)
              ├── pcid        → PCI enumeration
              ├── e1000d      → Intel ethernet
              ├── xhcid       → USB controller
              └── vesad       → Display framebuffer

The kernel provides minimal services (memory, interrupts, IPC). Everything else — filesystems, networking, graphics, input — runs in userspace.

Documentation

Contributing

Red Bear OS uses a full fork model. Upstream Redox sources are frozen and archived. All custom work lives in local/:

local/
├── sources/     # Red Bear source forks (git repos, directly editable)
├── recipes/     # Custom packages (drivers, GPU, system)
├── docs/        # Integration and planning docs
└── scripts/     # Build, test, and release tooling

We welcome contributions made with or without AI assistance — we care about quality, not how the code was produced.

License

MIT — same as upstream Redox OS.

S
Description
RedBear Operating System, based on RedoxOS. Licenced under MIT license.
https://redbearos.org
Readme MIT 20 GiB
Languages
C 43.9%
C++ 23.5%
Makefile 7.3%
Python 3.7%
JavaScript 3.4%
Other 17.1%