feat: Workspace-Umbau Schritt 6 — QEMU fuer alle Architekturen + set_project_kind
QEMU auf dem Host + ARIA-Anbindung:
- host-provisioning/qemu-setup.sh: installiert qemu-system-* (x86/arm/mips/ppc/
sparc/misc), qemu-utils, Firmware, socat, imagemagick + den aria-vm-Helper.
- host-provisioning/aria-vm: VM-Verwaltung fuer JEDE Architektur (create/boot/
screenshot/list/stop/rm). VNC bindet nur 127.0.0.1:<display> (Tunnel via
Bridge), KVM nur fuer x86-Gaeste, sonst TCG.
- Brain: Projekt-Modell bekommt kind ('chat'|'code'); neues Tool
set_project_kind markiert das aktive Projekt (blendet Editor/Desktop in der
App ein) + feuert project_changed.
- Seed-Regel: ARIA weiss jetzt, dass Code unter /shared/projects/<id>/ gehoert
und wie sie per `ssh aria-wohnung aria-vm ...` VMs baut/testet; VNC landet
automatisch in der Desktop-Kachel.
py-compile clean, Host-Skripte bash -n OK.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
This commit is contained in:
@@ -1080,6 +1080,28 @@ META_TOOLS = [
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},
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},
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},
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{
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"type": "function",
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"function": {
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"name": "set_project_kind",
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"description": (
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"Markiert das AKTUELLE Projekt als Code-Projekt ('code') oder "
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"normalen Chat ('chat'). Bei 'code' blendet die App zusaetzlich "
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"einen Live-Code-Editor und den QEMU-Desktop (VNC) ein. Rufe es auf, "
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"sobald aus einem Gespraech ein Programmier-/Bau-Projekt wird (Du "
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"faengst an Code zu schreiben, eine VM zu bauen, etc.). Dein "
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"Arbeitsverzeichnis fuer Code-Dateien ist dann /shared/projects/"
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"<projekt-id>/ — nur was Du DORT schreibst erscheint im Editor."
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),
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"parameters": {
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"type": "object",
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"properties": {
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"kind": {"type": "string", "enum": ["code", "chat"], "description": "'code' oder 'chat'."},
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},
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"required": ["kind"],
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},
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},
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},
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]
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@@ -2576,6 +2598,27 @@ class Agent:
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"action": "ended",
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})
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return f"OK — Projekt '{p['name']}' beendet (id={p['id']}). Bleibt in der Liste, aktiv ist jetzt der Hauptthread."
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if name == "set_project_kind":
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kind = (arguments.get("kind") or "").strip().lower()
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if kind not in ("code", "chat"):
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return "FEHLER: kind muss 'code' oder 'chat' sein."
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active_id = projects_mod.get_active()
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if not active_id:
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return ("Kein aktives Projekt — Du bist im Hauptthread. Erst ein Projekt "
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"anlegen/betreten (project_create/project_enter), dann set_project_kind.")
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updated = projects_mod.update_project(active_id, {"kind": kind})
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if not updated:
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return f"FEHLER: aktives Projekt '{active_id}' nicht gefunden."
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self._pending_events.append({
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"type": "project_changed",
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"project": updated,
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"action": "kind_changed",
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})
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if kind == "code":
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return (f"OK — Projekt '{updated['name']}' ist jetzt ein Code-Projekt. "
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f"Editor + Desktop erscheinen in der App. Code-Dateien unter "
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f"/shared/projects/{active_id}/ schreiben, damit sie im Editor auftauchen.")
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return f"OK — Projekt '{updated['name']}' ist wieder ein normaler Chat."
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return f"Unbekanntes Tool: {name}"
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except Exception as exc:
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logger.exception("Tool '%s' fehlgeschlagen", name)
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@@ -133,6 +133,7 @@ def create_project(name: str, description: str = "") -> dict:
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"description": description.strip(),
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"status": "active", # active | ended | archived
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"hidden": False, # optisch aus Listen ausblenden (bleibt nutzbar)
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"kind": "chat", # chat | code — 'code' blendet Editor/VNC in der App ein
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"created_at": now,
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"updated_at": now,
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"last_activity_at": now,
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@@ -149,7 +150,7 @@ def update_project(project_id: str, patch: dict) -> Optional[dict]:
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projects = _load_all()
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for p in projects:
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if p["id"] == project_id:
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for k in ("name", "description", "status", "hidden"):
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for k in ("name", "description", "status", "hidden", "kind"):
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if k in patch and patch[k] is not None:
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p[k] = patch[k]
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p["updated_at"] = _now()
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@@ -400,6 +400,43 @@ SEED_RULES: List[dict] = [
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"Brain-Resources: erst denken, sonst Brain-Tool nehmen."
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),
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},
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{
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"migration_key": "seed/architecture/qemu-vm-code-projects",
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"type": "rule",
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"title": "Code-Projekte + QEMU: aria-vm auf dem Host, Editor/Desktop in der App",
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"category": "architektur",
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"content": (
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"Wenn aus einem Gespraech ein PROGRAMMIER- oder BAU-Projekt wird "
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"(Du schreibst Code, baust ein System, testest eine VM):\n"
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"\n"
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"1. Ruf `set_project_kind('code')` — dann blendet Stefans App einen "
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"Live-Code-Editor und den QEMU-Desktop ein. Vorher ein Projekt "
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"anlegen/betreten (project_create/enter), sonst gibt's kein Ziel.\n"
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"2. Schreib Code-Dateien NUR unter `/shared/projects/<projekt-id>/` "
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"(das Volume ist in proxy+bridge+brain gemountet). Genau diese "
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"Writes/Edits erscheinen live in Stefans Editor — und was Stefan "
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"dort tippt, landet als Datei zurueck in diesem Verzeichnis.\n"
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"\n"
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"QEMU (VMs fuer JEDE Architektur — x86, ARM, MIPS, PPC, RISC-V, SPARC) "
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"laeuft auf dem Host. Du steuerst sie per `ssh aria-wohnung aria-vm ...`:\n"
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" - `aria-vm create <name> <arch> [groesse]` Disk anlegen (z.B. i386 "
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"fuer Win 3.11, aarch64, mips ...).\n"
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" - `aria-vm boot <name> [--iso <pfad>] [--vnc-display 1] [--mem 1024]` "
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"startet die VM. VNC bindet an 127.0.0.1:<display> (Display 1 = Port "
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"5901). Nicht selbst nach aussen oeffnen!\n"
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" - `aria-vm screenshot <name>` PNG in die Shared-Uploads (kannst Du "
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"Stefan mit [FILE:] schicken).\n"
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" - `aria-vm list` / `aria-vm stop <name>` / `aria-vm rm <name>`.\n"
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"\n"
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"Der VNC-Stream kommt AUTOMATISCH ueber den RVS-Tunnel der Bridge in "
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"Stefans App-Desktop-Kachel (Display 1 / Port 5901) — dort kann er die "
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"VM live mit Maus/Tastatur bedienen. Du musst nur die VM booten und ggf. "
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"sagen 'schau in die Desktop-Kachel'. KVM-Beschleunigung gibt es nur "
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"fuer x86-Gaeste; andere Architekturen laufen emuliert (langsamer, aber "
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"sie laufen). Medien-Downloads/Baubares fuer Stefans Privatgebrauch: "
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"wie gewohnt einfach machen, nicht moralisieren."
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),
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},
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{
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"migration_key": "seed/architecture/brain-tools-xml-tag",
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"type": "rule",
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Executable
+185
@@ -0,0 +1,185 @@
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#!/usr/bin/env bash
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#
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# aria-vm — ARIAs QEMU-VM-Verwaltung fuer alle Architekturen (laeuft auf dem
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# Host). ARIA ruft das per SSH (aria-wohnung) ueber den qemu-vm-Skill auf.
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#
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# Unterkommandos:
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# aria-vm create <name> <arch> [size] Disk anlegen (qcow2)
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# aria-vm boot <name> [optionen] VM starten (VNC 127.0.0.1:<display>)
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# aria-vm screenshot <name> PNG-Screenshot → Shared-Uploads
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# aria-vm list laufende/vorhandene VMs
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# aria-vm stop <name> VM beenden
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# aria-vm rm <name> VM + Disk loeschen
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#
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# boot-Optionen:
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# --iso <pfad> Boot-ISO (setzt Boot-Reihenfolge auf CD)
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# --disk-boot von der Festplatte booten (Default nach Installation)
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# --vnc-display <N> VNC-Display (Port = 5900+N, Default 1)
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# --mem <MB> RAM (Default 1024)
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# --machine <typ> QEMU-Maschine ueberschreiben
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#
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# VNC bindet immer nur an 127.0.0.1 — von aussen erreichbar ausschliesslich
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# ueber den RVS-Tunnel der Bridge (host.docker.internal:<port>).
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set -euo pipefail
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VM_ROOT="${ARIA_VM_ROOT:-/var/lib/aria-vms}"
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# Wohin Screenshots geschrieben werden — Host-Pfad des /shared-Volumes, damit
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# Bridge/App sie sehen. Ueberschreibbar via ARIA_VM_SHOT_DIR.
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SHOT_DIR="${ARIA_VM_SHOT_DIR:-/root/ARIA-AGENT/aria-shared/uploads}"
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die() { echo "aria-vm: $*" >&2; exit 1; }
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qemu_bin_for() {
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case "$1" in
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x86_64|amd64) echo qemu-system-x86_64 ;;
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i386|i686|x86) echo qemu-system-i386 ;;
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arm|armv7) echo qemu-system-arm ;;
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aarch64|arm64) echo qemu-system-aarch64 ;;
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mips) echo qemu-system-mips ;;
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mipsel) echo qemu-system-mipsel ;;
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mips64) echo qemu-system-mips64 ;;
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ppc) echo qemu-system-ppc ;;
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ppc64) echo qemu-system-ppc64 ;;
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riscv64) echo qemu-system-riscv64 ;;
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sparc) echo qemu-system-sparc ;;
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*) echo "" ;;
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esac
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}
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vm_dir() { echo "${VM_ROOT}/$1"; }
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vm_pid() { local d; d="$(vm_dir "$1")"; [[ -f "${d}/pid" ]] && cat "${d}/pid" || echo ""; }
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vm_running() {
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local p; p="$(vm_pid "$1")"
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[[ -n "${p}" ]] && kill -0 "${p}" 2>/dev/null
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}
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cmd_create() {
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local name="${1:?name}" arch="${2:?arch}" size="${3:-10G}"
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local bin; bin="$(qemu_bin_for "${arch}")"
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[[ -n "${bin}" ]] || die "unbekannte Architektur: ${arch}"
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command -v "${bin}" >/dev/null || die "${bin} nicht installiert (qemu-setup.sh?)"
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local d; d="$(vm_dir "${name}")"
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[[ -e "${d}/disk.qcow2" ]] && die "VM '${name}' existiert schon"
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mkdir -p "${d}"
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echo "${arch}" > "${d}/arch"
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qemu-img create -f qcow2 "${d}/disk.qcow2" "${size}" >/dev/null
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echo "VM '${name}' angelegt (${arch}, ${size})."
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}
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cmd_boot() {
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local name="${1:?name}"; shift || true
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local d; d="$(vm_dir "${name}")"
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[[ -f "${d}/disk.qcow2" ]] || die "VM '${name}' nicht gefunden (erst 'create')"
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vm_running "${name}" && die "VM '${name}' laeuft bereits"
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local arch; arch="$(cat "${d}/arch" 2>/dev/null || echo x86_64)"
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local bin; bin="$(qemu_bin_for "${arch}")"
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local iso="" bootdev="c" display=1 mem=1024 machine=""
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while [[ $# -gt 0 ]]; do
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case "$1" in
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--iso) iso="${2:?}"; bootdev="d"; shift 2 ;;
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--disk-boot) bootdev="c"; shift ;;
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--vnc-display) display="${2:?}"; shift 2 ;;
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--mem) mem="${2:?}"; shift 2 ;;
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--machine) machine="${2:?}"; shift 2 ;;
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*) die "unbekannte Option: $1" ;;
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esac
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done
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local args=(-name "${name}" -m "${mem}"
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-drive "file=${d}/disk.qcow2,format=qcow2"
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-vnc "127.0.0.1:${display}"
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-monitor "unix:${d}/monitor.sock,server,nowait"
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-pidfile "${d}/pid" -daemonize)
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# KVM nur fuer x86 auf x86-Host.
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case "${arch}" in
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x86_64|amd64|i386|i686|x86)
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[[ -e /dev/kvm ]] && args+=(-enable-kvm) ;;
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esac
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# ARM/AArch64 brauchen eine Maschine (kein Default).
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if [[ -z "${machine}" ]]; then
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case "${arch}" in
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arm|armv7|aarch64|arm64) machine="virt" ;;
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esac
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fi
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[[ -n "${machine}" ]] && args+=(-M "${machine}")
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[[ -n "${iso}" ]] && args+=(-cdrom "${iso}")
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args+=(-boot "${bootdev}")
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"${bin}" "${args[@]}"
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echo "VM '${name}' gestartet (${arch}) — VNC 127.0.0.1:${display} (Port $((5900+display)))."
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echo "vnc_display=${display} vnc_port=$((5900+display))"
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}
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cmd_screenshot() {
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local name="${1:?name}"
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local d; d="$(vm_dir "${name}")"
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vm_running "${name}" || die "VM '${name}' laeuft nicht"
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command -v socat >/dev/null || die "socat fehlt (qemu-setup.sh?)"
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mkdir -p "${SHOT_DIR}"
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local ts; ts="$(date +%s)"
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local ppm="${d}/shot-${ts}.ppm"
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printf 'screendump %s\n' "${ppm}" | socat - "unix-connect:${d}/monitor.sock" >/dev/null
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sleep 0.3
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local out="${SHOT_DIR}/${name}-${ts}.png"
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if command -v convert >/dev/null; then
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convert "${ppm}" "${out}" && rm -f "${ppm}"
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else
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out="${SHOT_DIR}/${name}-${ts}.ppm"; mv "${ppm}" "${out}"
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fi
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echo "screenshot=${out}"
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}
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cmd_list() {
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[[ -d "${VM_ROOT}" ]] || { echo "(keine VMs)"; return; }
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local any=0
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for d in "${VM_ROOT}"/*/; do
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[[ -d "${d}" ]] || continue
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any=1
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local name arch state
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name="$(basename "${d}")"
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arch="$(cat "${d}/arch" 2>/dev/null || echo '?')"
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if vm_running "${name}"; then state="laeuft (pid $(vm_pid "${name}"))"; else state="gestoppt"; fi
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echo "${name} [${arch}] ${state}"
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done
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[[ "${any}" -eq 1 ]] || echo "(keine VMs)"
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}
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cmd_stop() {
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local name="${1:?name}"
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local d; d="$(vm_dir "${name}")"
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if vm_running "${name}"; then
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printf 'quit\n' | socat - "unix-connect:${d}/monitor.sock" >/dev/null 2>&1 || true
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sleep 0.5
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vm_running "${name}" && kill "$(vm_pid "${name}")" 2>/dev/null || true
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echo "VM '${name}' gestoppt."
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else
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echo "VM '${name}' lief nicht."
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fi
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rm -f "${d}/pid" "${d}/monitor.sock"
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}
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cmd_rm() {
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local name="${1:?name}"
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vm_running "${name}" && cmd_stop "${name}"
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rm -rf "$(vm_dir "${name}")"
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echo "VM '${name}' geloescht."
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}
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main() {
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local sub="${1:-}"; shift || true
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case "${sub}" in
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create) cmd_create "$@" ;;
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boot) cmd_boot "$@" ;;
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screenshot) cmd_screenshot "$@" ;;
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list) cmd_list "$@" ;;
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stop) cmd_stop "$@" ;;
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rm) cmd_rm "$@" ;;
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""|-h|--help)
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sed -n '2,40p' "$0" | sed 's/^# \{0,1\}//' ;;
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*) die "unbekanntes Kommando: ${sub} (siehe --help)" ;;
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esac
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}
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main "$@"
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Executable
+53
@@ -0,0 +1,53 @@
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#!/usr/bin/env bash
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#
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# qemu-setup.sh — installiert QEMU fuer ALLE Architekturen auf dem ARIA-Host
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# (172.0.2.33) plus den aria-vm-Helper. Einmalig als root ausfuehren.
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#
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# sudo bash host-provisioning/qemu-setup.sh
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#
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# KVM-Beschleunigung gibt es nur fuer x86-Gaeste auf einem x86-Host; ARM/MIPS/
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# PPC/RISC-V laufen unter TCG (voll emuliert, langsamer, aber alle Architekturen
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# baubar). websockify/noVNC werden NICHT installiert — der VNC-Stream wird als
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# RFB-Bytes durch die Bridge/RVS getunnelt (siehe aria_bridge.py VNC-Bruecke).
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set -euo pipefail
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if [[ "${EUID}" -ne 0 ]]; then
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echo "Bitte als root ausfuehren (sudo)." >&2
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exit 1
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fi
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echo "[qemu-setup] apt update ..."
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apt-get update -qq
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echo "[qemu-setup] Installiere QEMU (alle Architekturen) + Werkzeuge ..."
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DEBIAN_FRONTEND=noninteractive apt-get install -y --no-install-recommends \
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qemu-system \
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qemu-system-x86 \
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qemu-system-arm \
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qemu-system-mips \
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qemu-system-ppc \
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qemu-system-sparc \
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qemu-system-misc \
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qemu-utils \
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seabios \
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ovmf \
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ipxe-qemu \
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socat \
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imagemagick
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echo "[qemu-setup] KVM-Status:"
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if [[ -e /dev/kvm ]]; then
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echo " /dev/kvm vorhanden → x86-Gaeste mit KVM-Beschleunigung."
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else
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echo " /dev/kvm FEHLT → alle Gaeste laufen unter TCG (emuliert, langsamer)."
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fi
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# aria-vm-Helper installieren (liegt neben diesem Skript).
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SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)"
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install -m 0755 "${SCRIPT_DIR}/aria-vm" /usr/local/bin/aria-vm
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echo "[qemu-setup] /usr/local/bin/aria-vm installiert."
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mkdir -p /var/lib/aria-vms
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echo "[qemu-setup] VM-Verzeichnis: /var/lib/aria-vms"
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echo "[qemu-setup] Fertig. Test: aria-vm list"
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Reference in New Issue
Block a user