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+90
-1
@@ -10,7 +10,96 @@ Alle Änderungen am Projekt. Format: [Keep a Changelog](https://keepachangelog.c
|
||||
|
||||
---
|
||||
|
||||
## [0.2.2.0] — 2026-07-17 — Desktop-Workspace: zoombarer Canvas, Live-Code-Editor, QEMU/VNC
|
||||
## [0.2.3.0] — 2026-07-19 — Satelliten: ARIAs Augen & Hände in fremden Netzen 🛰️
|
||||
|
||||
### Hinzugefügt
|
||||
|
||||
**Neuer eigenständiger Container `satellite/`** — ein Außenposten, den du in einem beliebigen Netz (Büro, Werkstatt …) deployst. Er verbindet sich als RVS-Client in deinen Raum und gibt ARIA Zugriff auf **genau dieses Netz**, ohne dass der Haupt-Stack dort steht.
|
||||
- **Entdeckung (Info):** mDNS/Zeroconf (Chromecast, AirPlay, Sonos, Drucker, NAS …), SSDP/UPnP + **DIAL** (Smart-TVs, Fire TV), ARP-Tabelle (rohe Hosts) → Live-Inventar.
|
||||
- **Steuerung (mit Guards):** **DIAL-App-Launch** (z.B. „ARIA, spiel YouTube-Video X auf dem Büro-Stick" → Fire TV), **Wake-on-LAN**, generisches **HTTP**. Nur wenn `CONTROL_ENABLED=true`, nur Aktionen aus der `CONTROL_ALLOWLIST`, alles geloggt, read-only per `.env` abschaltbar. Reagiert nur auf den eigenen RVS-Raum (Token). Keine offenen Ports.
|
||||
- **Adressierung** über `SATELLITE_LOCATION` (z.B. „Büro") — mehrere Satelliten im selben Raum, jeder mit eigenem Namen.
|
||||
|
||||
**End-to-end verdrahtet:**
|
||||
- `satellite/`: eigener Stack (`docker compose` mit `network_mode: host`), `.env.example`, README.
|
||||
- RVS: neue Message-Typen `sat_hello / sat_discover / sat_devices / sat_command / sat_result`.
|
||||
- Bridge: Satelliten-Registry (`sat_hello`) + Future-Relay (`/internal/satellite`, `/internal/satellite-list`) analog zum flux-Muster.
|
||||
- Brain: Tools `satellite_list`, `satellite_devices`, `satellite_command` + Seed-Regel, die ARIA den Ablauf beibringt (erst list, dann devices, dann command).
|
||||
- **Diagnostic: neuer Tab „Satelliten"** — zeigt live welche Satelliten verbunden sind (online/offline, Standort, Capabilities, read-only vs. steuerbar) und pro Satellit ein „Geräte scannen" (löst `sat_discover` aus → erkannte Geräte mit Typ/IP/Modell/DIAL/MAC).
|
||||
|
||||
### Deploy
|
||||
Satellit im Ziel-Netz: `cd satellite && cp .env.example .env && docker compose up -d --build`. Haupt-Stack: `git pull && docker compose up -d --build brain bridge` + RVS-Stack `up -d --build`. Kein APK-Rebuild.
|
||||
|
||||
---
|
||||
|
||||
## [0.2.2.3] — 2026-07-17 — ARIA liest andere Projekt-Chats wirklich (volle Historie)
|
||||
|
||||
### Behoben
|
||||
|
||||
- **`project_summary` fand fast nie Inhalte.** Es las nur ARIAs rollendes Kontextfenster (~50 Turns über ALLE Projekte) — ältere/andere Projekt-Chats sind da längst rausdistilliert. „Hol dir die Infos aus Projekt X" lieferte deshalb leere Ergebnisse, und ARIA wusste nicht, wie sie an die Historie kommt. Jetzt liest das Tool die **echte, volle Historie aus `chat_backup.jsonl`** (im Brain gemountet) — die letzten ~20 Turns des Zielprojekts, unabhängig davon wie lange man da nicht war. Standort-Hints in User-Turns werden rausgefiltert. Fallback aufs Fenster, falls das Backup fehlt. Tool-Beschreibung geschärft, damit ARIA es direkt aufruft.
|
||||
- Nebenbei bereinigt: `mac_os_update_fehler` war durch den alten `set_project_kind`-Bug (0.2.2.1) fälschlich `kind=code` — auf `chat` zurückgesetzt.
|
||||
|
||||
### Deploy
|
||||
`git pull && docker compose up -d --build brain` (kein APK-Rebuild nötig).
|
||||
|
||||
---
|
||||
|
||||
## [0.2.2.2] — 2026-07-17 — Voice-Projektwechsel zurück — aber gerätelokal
|
||||
|
||||
### Hinzugefügt
|
||||
|
||||
- **„ARIA, geh in Projekt X" per Sprache wechselt wieder das Projekt** — aber **nur auf dem Gerät, das den Befehl gab**. Andere App-Instanzen und das Diagnostic bleiben in ihrem Projekt.
|
||||
- Umsetzung: Jedes Gerät merkt sich die IDs seiner eigenen Anfragen (Text-`clientMsgId` + Voice-`audioRequestId`). Der Brain/Voice-Router hängt an jedes `project_changed`-Event die auslösende `clientMsgId` an; die App folgt dem Wechsel nur, wenn die ID eine **eigene** ist. Deckt beide Voice-Pfade ab (ARIAs `project_enter`/`exit` via `send_to_core` **und** den Bridge-Voice-Router „für Projekt X: …" / „zurück zum Hauptchat").
|
||||
- Manuelles Umschalten bleibt wie gehabt gerätelokal über den Drawer.
|
||||
|
||||
### Deploy
|
||||
`git pull && docker compose up -d --build bridge` + APK 0.2.2.2 (kein Brain-Rebuild nötig).
|
||||
|
||||
---
|
||||
|
||||
## [0.2.2.1] — 2026-07-17 — Projekt-Fokus wirklich pro Gerät unabhängig
|
||||
|
||||
### Behoben
|
||||
|
||||
- **`set_project_kind` markierte das falsche Projekt.** Es nutzte den **globalen** `active_project` (geräteübergreifend) statt des Projekts, in dem der aktuelle Request läuft. Folge: Obwohl auf der App „Basic os" aktiv war, bekam das global-aktive „Mac OS Update Fehler" `kind=code`. Jetzt wirkt das Tool auf die pro Request mitgesendete `project_id` (in `_dispatch_tool` durchgereicht) — jede App-/Diagnostic-Instanz markiert ihr eigenes Projekt.
|
||||
- **App wurde von fremden `project_changed`-Broadcasts ins andere Projekt gezogen.** Ein Projektwechsel/‑anlegen durch ARIA, das Diagnostic oder eine andere App-Instanz erzwang auf **allen** Geräten einen Fokuswechsel. Der Projekt-Fokus ist jetzt **rein gerätelokal**: Broadcasts aktualisieren nur Namen + Typ, wechseln aber nicht mehr das Projekt. Umschalten geht ausschließlich lokal über den Projekt-Drawer. So arbeitet jedes Gerät unabhängig in seinem eigenen Projekt (auch mehrere App-Instanzen).
|
||||
- Hinweis: „ARIA, geh in Projekt X" per Sprache wechselt das App-Projekt dadurch **nicht mehr** automatisch — bewusst, damit Geräte unabhängig bleiben. Wechseln über den Drawer.
|
||||
|
||||
### Deploy
|
||||
`git pull && docker compose up -d --build brain` + APK 0.2.2.1 neu bauen.
|
||||
|
||||
---
|
||||
|
||||
## [0.2.2.0] — 2026-07-17 — Workbench: Taskleisten-Dock statt Zoom-Landkarte + bedienbare VNC-Konsole
|
||||
|
||||
### Geändert
|
||||
|
||||
**Cockpit-Navigation neu gedacht — Dock statt Pinch-Canvas**
|
||||
- Die Zoom-Landkarte (mit 2 Fingern rauszoomen, Kachel finden, reintippen) fühlte sich auf 5 Zoll fummelig an. Ersetzt durch eine **Taskleiste unten im Daumenbereich** (Chat · Code · Desktop): **ein Tap wechselt sofort** das Panel, ein animierter Indikator gleitet unter das aktive Icon. Desktop-*Umfang*, Handy-*Ergonomie*.
|
||||
- Jedes Panel ist **bildschirmfüllend** und Handy-optimiert; alle bleiben gemountet (nur das aktive ist sichtbar) → kein Remount, Chat behält RVS/Audio/Queue, WebViews ihren Zustand.
|
||||
- Das Dock **blendet bei offener Tastatur aus** (mehr Platz zum Tippen) und respektiert die Gesten-Navigationsleiste (Safe-Area).
|
||||
- **Aktivitäts-Punkte** am Dock: Code blau, sobald Dateien da sind; Desktop grün, wenn die VM verbunden ist.
|
||||
- Entfällt: Pinch/Pan-Canvas, Übersichts-Button im Header, die „Landkarten"-Thumbnails.
|
||||
|
||||
**noVNC-Konsole endlich bedienbar**
|
||||
- Steuerungs-Leiste im Desktop-Panel: **⌨ Tastatur** (blendet die Handy-Tastatur ein, tippt direkt in die VM — inkl. Enter/Backspace/Pfeiltasten), **Strg+Alt+Entf**, und **⤢ Fit ↔ 1:1**. Tippen/Ziehen steuert weiterhin die Maus.
|
||||
|
||||
### Deploy
|
||||
Nur **App neu bauen** (kein Backend). APK 0.2.2.0.
|
||||
|
||||
---
|
||||
|
||||
## [0.2.1.9] — 2026-07-17 — Kompakt ↔ Cockpit: Umschalter für den Kachel-Desktop
|
||||
|
||||
### Hinzugefügt
|
||||
|
||||
- **Ansichts-Umschalter im Header** („⧉ Kompakt" / „⧉ Cockpit"): Die App startet in **Kompakt** — der klassische Vollbild-Chat, **exakt wie vor dem Umbau** (Default, Mama-tauglich). Ein Tap auf den Button oben rechts schaltet auf **Cockpit** — den zoom-/verschiebbaren Kachel-Desktop. Persistiert über Neustart (`aria_view_mode`).
|
||||
- **Warum:** Nach dem 0.2.1.8-Deploy sah die App „unverändert" aus — korrekt, denn im normalen Chat gibt es nur eine Kachel (= Vollbild-Chat). Der Umschalter macht den Cockpit-Modus jetzt **explizit sichtbar/steuerbar**, statt nur bei Code-Projekten aufzutauchen.
|
||||
- Im Cockpit ist die **Übersicht jetzt immer erreichbar** (auch im Hauptchat): „⤢ Übersicht" sitzt **im Header links** (kollidiert nicht mehr mit dem Abbrechen-Button der „ARIA denkt"-Leiste), dazu 2-Finger-Pinch/Pan und Hardware-Back.
|
||||
- Im Cockpit werden **immer alle vier Kacheln** gezeigt (Chat/Editor/Desktop/Vorschau) — Editor/Desktop/Vorschau als Platzhalter mit Status-Untertitel („kein Code-Projekt" / „kein Desktop"), bis ARIA ein Code-Projekt startet bzw. eine VM läuft. Vorher wirkten sie „verschwunden", weil sie erst bei Code-Projekten auftauchten.
|
||||
|
||||
---
|
||||
|
||||
## [0.2.1.8] — 2026-07-17 — Desktop-Workspace: zoombarer Canvas, Live-Code-Editor, QEMU/VNC
|
||||
|
||||
### Hinzugefügt
|
||||
|
||||
|
||||
@@ -96,6 +96,7 @@ ARIA hat zwei Rollen:
|
||||
| RVS | Rechenzentrum | `cd rvs && docker compose up -d` |
|
||||
| ARIA Brain/Bridge/Diagnostic | Debian 13 VM | `./init.sh && ./aria-setup.sh && docker compose up -d` |
|
||||
| Gamebox-Stack (F5-TTS + Whisper) | Gamebox (GPU) | `cd xtts && docker compose up -d` |
|
||||
| Satellit(en) 🛰️ (optional) | Fremdes Netz (Büro …) | `cd satellite && cp .env.example .env && docker compose up -d --build` |
|
||||
| Android App | Stefans Handy | APK installieren (Auto-Update via RVS) |
|
||||
|
||||
> Der Gamebox-Stack ist optional: ohne ihn faellt STT auf lokales Whisper (CPU,
|
||||
@@ -500,7 +501,7 @@ Erreichbar unter `http://<VM-IP>:3001`. Teilt das Netzwerk mit der Bridge.
|
||||
|
||||
### Features
|
||||
|
||||
- **Desktop-Workspace (zoombarer Canvas)**: Die App ist eine desktop-artige Arbeitsfläche — rausgezoomt eine **Landkarte aus Kacheln** (Chat/Editor/Desktop/Vorschau), die man mit **2 Fingern zoomt und verschiebt**; Tippen auf eine Kachel zoomt sie voll auf und macht sie echt bedienbar („Übersicht + Fokus"). Reiner Chat verhält sich exakt wie bisher (eine Kachel, dauerhaft fokussiert). Zurück per „⤢ Übersicht" oder Hardware-Back. Basiert auf gesture-handler + reanimated; interaktive Inhalte werden nie unter Zoom-Transform gerendert (Keyboard/Touch bleiben korrekt)
|
||||
- **Desktop-Workbench (Kompakt ↔ Cockpit)**: Umschalter oben rechts im Header. **Kompakt** = klassischer Vollbild-Chat (Default). **Cockpit** = Workbench mit **Taskleiste unten** (Chat · Code · Desktop) — ein Daumen-Tap wechselt sofort das Panel, animierter Indikator, Aktivitäts-Punkte (Code blau / Desktop grün). Jedes Panel bildschirmfüllend und Handy-optimiert; Dock blendet bei offener Tastatur aus. Desktop-Umfang, aber auf 5 Zoll bedienbar
|
||||
- **Live-Code-Editor** (Code-Projekte): Wird ein Projekt zum Code-Projekt (`set_project_kind('code')`), zeigt eine Editor-Kachel **live, was ARIA schreibt** (Syntax-Highlighting, offline) und du kannst selbst editieren → zurück an ARIA. ARIAs `Write`/`Edit` unter `/shared/projects/<id>/` werden im Proxy abgefangen und als `code_file` gespiegelt; deine Edits kommen als `code_file_edit` pfad-sicher zurück
|
||||
- **Live-Desktop per VNC (durch RVS getunnelt)**: ARIA baut/testet VMs mit **QEMU für jede Architektur** (x86/ARM/MIPS/PPC/RISC-V/SPARC, Host-Helper `aria-vm`, KVM für x86). Der QEMU-Desktop erscheint **live in der Desktop-Kachel** — noVNC in der WebView, RFB-Bytes werden als Base64 über RVS gebrückt (Bridge ↔ QEMU `127.0.0.1:5901`). Du bedienst die VM **live mit Maus/Tastatur**, NAT-sicher, kein offener Port am Host
|
||||
- Text-Chat mit ARIA
|
||||
@@ -1044,7 +1045,8 @@ docker exec aria-brain curl localhost:8080/memory/stats
|
||||
- [x] Background Audio Service: TTS, Wake-Word-Lauschen + Aufnahme laufen auch bei minimierter App weiter (Foreground-Service mit mediaPlayback|microphone, dynamische Notification)
|
||||
- [x] Disk-Voll Banner in Diagnostic mit copy-baren Cleanup-Befehlen
|
||||
- [x] Wake-Word on-device via openWakeWord (ONNX Runtime, kein API-Key) + State-Icon
|
||||
- [x] **Desktop-Workspace**: zoom-/verschiebbarer Kachel-Canvas (gesture-handler + reanimated), „Übersicht + Fokus" — Chat/Editor/Desktop/Vorschau als Kacheln; reiner Chat unverändert (eine Kachel)
|
||||
- [x] **Desktop-Workbench**: Taskleisten-Dock (Chat · Code · Desktop), Ein-Tap-Panelwechsel im Daumenbereich, Aktivitäts-Badges, keyboard-aware; Kompakt↔Cockpit-Umschalter. (Ersetzte den anfänglichen Pinch-Zoom-Kachel-Canvas — auf 5 Zoll zu fummelig)
|
||||
- [x] **noVNC-Konsole bedienbar**: Tastatur-Einblendung (tippt in die VM), Strg+Alt+Entf, Fit↔1:1
|
||||
- [x] **Live-Code-Editor** für Code-Projekte (WebView, offline, bidirektional) — ARIAs Write/Edit unter `/shared/projects/<id>/` live gespiegelt (`code_file`), eigene Edits zurück (`code_file_edit`)
|
||||
- [x] **QEMU für alle Architekturen** (Host-Helper `aria-vm`, `qemu-setup.sh`) + `set_project_kind`-Tool + Seed-Regel
|
||||
- [x] **VNC-Live-Desktop durch RVS getunnelt** (Bridge RFB-TCP ↔ RVS, noVNC-WebView mit WebSocket-Shim) — VM live mit Maus/Tastatur bedienbar
|
||||
|
||||
@@ -0,0 +1,63 @@
|
||||
# ai-box — KI-Box (gpubox) Bootstrap
|
||||
|
||||
Macht aus einem frisch installierten **Debian Trixie** (headless, nur SSH) einen
|
||||
startklaren GPU-Satelliten-Host für den `xtts`-Stack (STT/TTS/LLM).
|
||||
|
||||
## Was das Script tut
|
||||
|
||||
1. Basis-Pakete (curl, gnupg, git …)
|
||||
2. `contrib non-free non-free-firmware` aktivieren (Trixie-**deb822**-Format berücksichtigt)
|
||||
3. **NVIDIA-Treiber** installieren (`nvidia-driver` + firmware)
|
||||
4. **Docker** Engine + Compose-Plugin
|
||||
5. **NVIDIA Container Toolkit** + Docker-Runtime auf NVIDIA konfigurieren
|
||||
6. `xtts/.env` aus `.env.example` anlegen (RVS_TOKEN optional gleich setzen)
|
||||
7. **GPU-im-Container-Test** (`docker run --gpus all … nvidia-smi`)
|
||||
8. optional (`--up`): den `xtts`-Stack hochziehen
|
||||
|
||||
Alles **idempotent** — mehrfach ausführbar.
|
||||
|
||||
## Ablauf
|
||||
|
||||
```bash
|
||||
git clone <repo> ARIA-AGENT
|
||||
cd ARIA-AGENT/ai-box
|
||||
|
||||
sudo ./bootstrap.sh
|
||||
# → Wenn der Treiber frisch installiert wurde: einmal neu starten, dann nochmal:
|
||||
sudo reboot
|
||||
# … nach dem Boot:
|
||||
cd ARIA-AGENT/ai-box
|
||||
sudo ./bootstrap.sh --up --token <DEIN_RVS_TOKEN>
|
||||
```
|
||||
|
||||
Der Treiber-Reboot ist normal (Kernel-Modul wird erst beim Boot geladen). Beim
|
||||
zweiten Lauf überspringt das Script alles Erledigte und macht nur noch den
|
||||
GPU-Test + Stack-Start.
|
||||
|
||||
## Optionen
|
||||
|
||||
| Option | Wirkung |
|
||||
|---|---|
|
||||
| `--up` | am Ende `docker compose up -d --build` (Default-Profil) |
|
||||
| `--token <TOK>` | `RVS_TOKEN` in `xtts/.env` eintragen (auch via `RVS_TOKEN=…` env) |
|
||||
| `--rvs-host <H>` | `RVS_HOST` setzen |
|
||||
|
||||
## Wichtig
|
||||
|
||||
- **Stimm-Daten** (nicht in git): falls von der alten Box noch vorhanden,
|
||||
`xtts/voice-id/` (Speaker-Fingerprint) + `xtts/voices/` (F5-Referenz) herkopieren.
|
||||
Sonst egal — in der App neu anlegen: Stimme neu enrollen (ohne Fingerprint läuft
|
||||
die Speaker-ID fail-open, alles geht durch) + F5-Voice-Referenz neu hochladen.
|
||||
- **Voxtral bleibt aus** auf der 3060 (braucht ≥16 GB VRAM). Das Default-Profil
|
||||
fährt Whisper (mit dem M0.1-Fix) + F5-TTS + lokales LLM. Voxtral erst mit der
|
||||
24-GB-Karte: `docker compose stop whisper-bridge && docker compose --profile voxtral up -d --build`.
|
||||
- **Erster Start lädt Modelle** (mehrere GB via HuggingFace nach `xtts/hf-cache`
|
||||
+ `xtts/models`) — genug Platz (1 TB NVMe ✓) und etwas Geduld.
|
||||
|
||||
## Verifizieren
|
||||
|
||||
```bash
|
||||
nvidia-smi # Host sieht die GPU
|
||||
docker run --rm --gpus all nvidia/cuda:12.4.0-base-ubuntu22.04 nvidia-smi # Container auch
|
||||
docker logs -f aria-whisper-bridge # "RVS verbunden" + service_status ready
|
||||
```
|
||||
Executable
+277
@@ -0,0 +1,277 @@
|
||||
#!/usr/bin/env bash
|
||||
#
|
||||
# ARIA KI-Box (gpubox) Bootstrap — frisches Debian Trixie → startklarer
|
||||
# GPU-Satelliten-Host fuer den xtts-Stack (Voxtral/Whisper STT, F5-TTS, lokales LLM).
|
||||
#
|
||||
# Ablauf nach `git clone`:
|
||||
# cd ARIA-AGENT/ai-box
|
||||
# sudo ./bootstrap.sh # richtet Treiber + Docker + NVIDIA-Toolkit ein
|
||||
# # (falls Treiber frisch installiert: einmal `sudo reboot`, dann Script erneut)
|
||||
# sudo ./bootstrap.sh --up # dazu: xtts-Stack (Whisper+F5+LLM) hochziehen
|
||||
#
|
||||
# Optionen:
|
||||
# --up am Ende den xtts-Stack starten (Default-Profil, OHNE voxtral)
|
||||
# --upgrade-driver NVIDIA-Treiber aus trixie-backports (modernes CUDA fuer Voxtral).
|
||||
# Danach REBOOT noetig. Default-Bootstrap laesst 550 unangetastet.
|
||||
# --token <TOK> RVS_TOKEN in xtts/.env eintragen (alternativ: env RVS_TOKEN=...)
|
||||
# --rvs-host <H> RVS_HOST setzen (Default aus .env.example)
|
||||
#
|
||||
# IDEMPOTENT: bereits erledigte Schritte werden uebersprungen. Nach dem
|
||||
# Treiber-Reboot einfach nochmal ausfuehren — der Rest laeuft dann durch.
|
||||
#
|
||||
set -euo pipefail
|
||||
|
||||
# ── CLI ──
|
||||
DO_UP=0
|
||||
DO_UPGRADE_DRIVER=0
|
||||
RVS_TOKEN_ARG="${RVS_TOKEN:-}"
|
||||
RVS_HOST_ARG="${RVS_HOST:-}"
|
||||
while [[ $# -gt 0 ]]; do
|
||||
case "$1" in
|
||||
--up) DO_UP=1; shift ;;
|
||||
--upgrade-driver) DO_UPGRADE_DRIVER=1; shift ;;
|
||||
--token) RVS_TOKEN_ARG="${2:-}"; shift 2 ;;
|
||||
--rvs-host) RVS_HOST_ARG="${2:-}"; shift 2 ;;
|
||||
-h|--help) grep '^#' "$0" | sed 's/^# \{0,1\}//'; exit 0 ;;
|
||||
*) echo "Unbekannte Option: $1"; exit 1 ;;
|
||||
esac
|
||||
done
|
||||
|
||||
# ── Log-Helfer ──
|
||||
c_g="\033[1;32m"; c_y="\033[1;33m"; c_r="\033[1;31m"; c_b="\033[1;34m"; c_0="\033[0m"
|
||||
STEP=0
|
||||
step() { STEP=$((STEP+1)); echo -e "\n${c_b}[${STEP}] $*${c_0}"; }
|
||||
ok() { echo -e " ${c_g}✓${c_0} $*"; }
|
||||
warn() { echo -e " ${c_y}!${c_0} $*"; }
|
||||
die() { echo -e "${c_r}✗ $*${c_0}" >&2; exit 1; }
|
||||
|
||||
SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)"
|
||||
REPO_ROOT="$(cd "$SCRIPT_DIR/.." && pwd)"
|
||||
XTTS_DIR="$REPO_ROOT/xtts"
|
||||
|
||||
# ── Preflight ──
|
||||
[[ "$(id -u)" -eq 0 ]] || die "Bitte als root ausfuehren (sudo ./bootstrap.sh)."
|
||||
command -v apt-get >/dev/null || die "Kein apt-get — dieses Script ist fuer Debian/Trixie."
|
||||
export DEBIAN_FRONTEND=noninteractive
|
||||
|
||||
echo -e "${c_b}=== ARIA KI-Box Bootstrap ===${c_0}"
|
||||
echo "Repo: $REPO_ROOT"
|
||||
echo "xtts: $XTTS_DIR"
|
||||
|
||||
# ── 1. Basis-Pakete ──
|
||||
step "Basis-Pakete"
|
||||
apt-get update -qq
|
||||
apt-get install -y -qq ca-certificates curl gnupg git lsb-release >/dev/null
|
||||
ok "ca-certificates, curl, gnupg, git"
|
||||
|
||||
# ── 2. non-free Repos aktivieren (Trixie deb822 + Legacy) ──
|
||||
step "APT-Komponenten (contrib non-free non-free-firmware)"
|
||||
# Ergaenzt die drei Komponenten in JEDER Components:-Zeile einer deb822-Datei —
|
||||
# pro Zeile nur was fehlt, reihenfolge-robust, idempotent. Die Adressen pruefen
|
||||
# ganze Woerter (non-free-firmware zaehlt NICHT als non-free).
|
||||
add_components() {
|
||||
sed -i -E '/^[Cc]omponents:/{
|
||||
/(^|[[:space:]])contrib([[:space:]]|$)/!s/$/ contrib/
|
||||
/(^|[[:space:]])non-free([[:space:]]|$)/!s/$/ non-free/
|
||||
/(^|[[:space:]])non-free-firmware([[:space:]]|$)/!s/$/ non-free-firmware/
|
||||
}' "$1"
|
||||
}
|
||||
ENABLED_ANY=0
|
||||
shopt -s nullglob
|
||||
for f in /etc/apt/sources.list.d/*.sources; do
|
||||
grep -qE '^[Cc]omponents:' "$f" || continue
|
||||
b="$(md5sum "$f")"; add_components "$f"; a="$(md5sum "$f")"
|
||||
if [[ "$b" != "$a" ]]; then ENABLED_ANY=1; ok "aktualisiert: $(basename "$f")"; fi
|
||||
done
|
||||
shopt -u nullglob
|
||||
# Legacy /etc/apt/sources.list (deb-Zeilen)
|
||||
if [[ -f /etc/apt/sources.list ]] && grep -qE '^deb ' /etc/apt/sources.list; then
|
||||
if ! grep -qE '^deb .*[[:space:]]non-free([[:space:]]|$)' /etc/apt/sources.list; then
|
||||
sed -i -E '/^deb .*debian/ s/$/ contrib non-free non-free-firmware/' /etc/apt/sources.list
|
||||
ENABLED_ANY=1; ok "aktualisiert: sources.list"
|
||||
fi
|
||||
fi
|
||||
[[ $ENABLED_ANY -eq 0 ]] && ok "non-free schon aktiv"
|
||||
apt-get update -qq # immer neu einlesen, damit der Kandidat sicher da ist
|
||||
|
||||
# ── 2b. (opt-in) Treiber-Upgrade via trixie-backports — fuer Voxtral/modernes CUDA ──
|
||||
# Der Trixie-Standardtreiber (550, CUDA 12.4) ist zu alt fuer den modernen Stack
|
||||
# (torch 2.13, vLLM). Backports bringt einen neueren, apt-verwalteten Treiber.
|
||||
# NUR mit --upgrade-driver, damit ein laufendes Setup nicht ungewollt angefasst wird.
|
||||
if [[ "$DO_UPGRADE_DRIVER" -eq 1 ]]; then
|
||||
step "NVIDIA-Treiber-Upgrade (trixie-backports)"
|
||||
BP_FILE="/etc/apt/sources.list.d/backports.sources"
|
||||
if ! grep -rqs "trixie-backports" /etc/apt/sources.list /etc/apt/sources.list.d/ 2>/dev/null; then
|
||||
cat > "$BP_FILE" <<'EOF'
|
||||
Types: deb
|
||||
URIs: http://deb.debian.org/debian
|
||||
Suites: trixie-backports
|
||||
Components: main contrib non-free non-free-firmware
|
||||
Signed-By: /usr/share/keyrings/debian-archive-keyring.gpg
|
||||
EOF
|
||||
ok "trixie-backports hinzugefuegt"
|
||||
else
|
||||
ok "trixie-backports bereits aktiv"
|
||||
fi
|
||||
apt-get update
|
||||
apt-get install -y linux-headers-amd64 || true
|
||||
apt-get install -y "linux-headers-$(uname -r)" || true
|
||||
if apt-get install -y -t trixie-backports nvidia-driver; then
|
||||
dkms autoinstall >/dev/null 2>&1 || true
|
||||
NEWV="$(dpkg-query -W -f='${Version}' nvidia-driver 2>/dev/null || echo '?')"
|
||||
ok "nvidia-driver aus backports installiert: ${NEWV}"
|
||||
echo
|
||||
echo -e "${c_y}==> REBOOT noetig, damit der neue Treiber laedt:${c_0}"
|
||||
echo -e "${c_y} sudo reboot && danach: cd ai-box && sudo ./bootstrap.sh --up --token <TOKEN>${c_0}"
|
||||
echo -e "${c_y} (nvidia-smi zeigt dann die neue Version + CUDA-Level)${c_0}"
|
||||
exit 0
|
||||
else
|
||||
warn "backports-Install fehlgeschlagen — 550er bleibt aktiv."
|
||||
warn "Alternative fuer den neuesten Treiber: NVIDIAs CUDA-Repo fuer debian13"
|
||||
warn " (developer.download.nvidia.com/compute/cuda/repos/debian13/x86_64) → Paket 'cuda-drivers'."
|
||||
die "Treiber-Upgrade nicht moeglich — siehe oben."
|
||||
fi
|
||||
fi
|
||||
|
||||
# ── 3. NVIDIA-Treiber ──
|
||||
step "NVIDIA-Treiber"
|
||||
if nvidia-smi >/dev/null 2>&1; then
|
||||
ok "Treiber aktiv: $(nvidia-smi --query-gpu=name --format=csv,noheader | paste -sd', ')"
|
||||
DRIVER_ACTIVE=1
|
||||
else
|
||||
if dpkg -l | grep -q '^ii nvidia-driver '; then
|
||||
warn "Treiber installiert, aber nvidia-smi antwortet nicht → REBOOT noetig."
|
||||
DRIVER_ACTIVE=0
|
||||
else
|
||||
# KEIN separater Kandidaten-Check — die apt-cache-Ausgabe ist locale-/pipe-
|
||||
# fragil (hat faelschlich "kein Kandidat" gemeldet). Der Install IST der Test:
|
||||
# direkt installieren; schlaegt er fehl, einmal volles apt-get update + Retry,
|
||||
# dann erst mit Diagnose abbrechen.
|
||||
# Kernel-Header ZUERST — sonst ueberspringt DKMS den Modulbau ("No kernel
|
||||
# headers were found") und nvidia-smi kann spaeter nicht mit dem Treiber reden.
|
||||
warn "Kernel-Header + nvidia-driver installieren (DKMS-Build, dauert)…"
|
||||
apt-get install -y linux-headers-amd64 || true
|
||||
apt-get install -y "linux-headers-$(uname -r)" || true
|
||||
if ! apt-get install -y nvidia-driver firmware-misc-nonfree; then
|
||||
warn "Install fehlgeschlagen — volles 'apt-get update' + zweiter Versuch…"
|
||||
apt-get update
|
||||
if ! apt-get install -y nvidia-driver firmware-misc-nonfree; then
|
||||
echo
|
||||
warn "nvidia-driver liess sich nicht installieren. Aktive Quellen:"
|
||||
grep -rhE '^[Cc]omponents:' /etc/apt/sources.list.d/*.sources 2>/dev/null | sed 's/^/ /' || true
|
||||
grep -E '^deb ' /etc/apt/sources.list 2>/dev/null | sed 's/^/ /' || true
|
||||
die "Pruefe 'apt-cache policy nvidia-driver' + Netz/non-free."
|
||||
fi
|
||||
fi
|
||||
# Falls nvidia-kernel-dkms schon (ohne Header) installiert war: Modul jetzt bauen.
|
||||
dkms autoinstall >/dev/null 2>&1 || true
|
||||
ok "nvidia-driver + Kernel-Modul installiert"
|
||||
DRIVER_ACTIVE=0
|
||||
fi
|
||||
fi
|
||||
|
||||
# ── 4. Docker Engine + Compose-Plugin ──
|
||||
step "Docker"
|
||||
if command -v docker >/dev/null 2>&1; then
|
||||
ok "Docker vorhanden: $(docker --version)"
|
||||
else
|
||||
warn "Installiere Docker (offizielles get.docker.com)…"
|
||||
curl -fsSL https://get.docker.com | sh >/dev/null
|
||||
systemctl enable --now docker >/dev/null 2>&1 || true
|
||||
ok "Docker installiert: $(docker --version)"
|
||||
fi
|
||||
if docker compose version >/dev/null 2>&1; then
|
||||
ok "Compose-Plugin: $(docker compose version | head -1)"
|
||||
else
|
||||
warn "Compose-Plugin fehlt — installiere docker-compose-plugin…"
|
||||
apt-get install -y -qq docker-compose-plugin >/dev/null || \
|
||||
warn "Konnte docker-compose-plugin nicht via apt holen — get.docker.com bringt es normalerweise mit."
|
||||
fi
|
||||
|
||||
# ── 5. NVIDIA Container Toolkit ──
|
||||
step "NVIDIA Container Toolkit"
|
||||
NCT_LIST="/etc/apt/sources.list.d/nvidia-container-toolkit.list"
|
||||
NCT_KEY="/usr/share/keyrings/nvidia-container-toolkit-keyring.gpg"
|
||||
if ! dpkg -l | grep -q '^ii nvidia-container-toolkit '; then
|
||||
[[ -f "$NCT_KEY" ]] || curl -fsSL https://nvidia.github.io/libnvidia-container/gpgkey \
|
||||
| gpg --dearmor -o "$NCT_KEY"
|
||||
if [[ ! -f "$NCT_LIST" ]]; then
|
||||
curl -fsSL https://nvidia.github.io/libnvidia-container/stable/deb/nvidia-container-toolkit.list \
|
||||
| sed "s#deb https://#deb [signed-by=${NCT_KEY}] https://#g" > "$NCT_LIST"
|
||||
fi
|
||||
apt-get update -qq
|
||||
apt-get install -y -qq nvidia-container-toolkit >/dev/null
|
||||
ok "nvidia-container-toolkit installiert"
|
||||
else
|
||||
ok "nvidia-container-toolkit vorhanden"
|
||||
fi
|
||||
# Docker-Runtime auf NVIDIA konfigurieren (idempotent)
|
||||
if ! grep -q '"nvidia"' /etc/docker/daemon.json 2>/dev/null; then
|
||||
nvidia-ctk runtime configure --runtime=docker >/dev/null
|
||||
systemctl restart docker
|
||||
ok "Docker-Runtime auf NVIDIA konfiguriert + Docker neugestartet"
|
||||
else
|
||||
ok "Docker-Runtime bereits NVIDIA-konfiguriert"
|
||||
fi
|
||||
|
||||
# ── 6. xtts/.env vorbereiten ──
|
||||
step "xtts/.env"
|
||||
if [[ -f "$XTTS_DIR/.env" ]]; then
|
||||
ok ".env existiert bereits (unangetastet)"
|
||||
else
|
||||
cp "$XTTS_DIR/.env.example" "$XTTS_DIR/.env"
|
||||
ok ".env aus .env.example erstellt"
|
||||
fi
|
||||
if [[ -n "$RVS_TOKEN_ARG" ]]; then
|
||||
sed -i -E "s#^RVS_TOKEN=.*#RVS_TOKEN=${RVS_TOKEN_ARG}#" "$XTTS_DIR/.env"
|
||||
ok "RVS_TOKEN eingetragen"
|
||||
fi
|
||||
if [[ -n "$RVS_HOST_ARG" ]]; then
|
||||
sed -i -E "s#^RVS_HOST=.*#RVS_HOST=${RVS_HOST_ARG}#" "$XTTS_DIR/.env"
|
||||
ok "RVS_HOST=${RVS_HOST_ARG} eingetragen"
|
||||
fi
|
||||
if grep -q '^RVS_TOKEN=dein_token_hier' "$XTTS_DIR/.env"; then
|
||||
warn "RVS_TOKEN ist noch der Platzhalter — vor dem Start setzen:"
|
||||
warn " nano $XTTS_DIR/.env (oder: sudo ./bootstrap.sh --token <TOKEN>)"
|
||||
fi
|
||||
warn "Stimm-Daten (nicht in git): falls von der alten Box noch vorhanden, xtts/voice-id/"
|
||||
warn " + xtts/voices/ herkopieren. Sonst egal — in der App neu anlegen:"
|
||||
warn " Sprache neu enrollen (Speaker-ID, sonst fail-open) + F5-Referenz neu hochladen."
|
||||
|
||||
# ── 7. GPU-im-Container verifizieren ──
|
||||
step "GPU-im-Container Test"
|
||||
if [[ "${DRIVER_ACTIVE:-0}" -eq 1 ]]; then
|
||||
if docker run --rm --gpus all nvidia/cuda:12.4.0-base-ubuntu22.04 nvidia-smi >/dev/null 2>&1; then
|
||||
ok "Docker sieht die GPU — KI-Box ist einsatzbereit."
|
||||
GPU_READY=1
|
||||
else
|
||||
warn "Host-Treiber ok, aber Container sieht die GPU nicht — Toolkit/Runtime pruefen."
|
||||
GPU_READY=0
|
||||
fi
|
||||
else
|
||||
warn "Treiber noch nicht aktiv → Test uebersprungen."
|
||||
echo
|
||||
echo -e "${c_y}==> REBOOT noetig, dann Script erneut ausfuehren:${c_0}"
|
||||
echo -e "${c_y} sudo reboot && (nach dem Boot) sudo ./bootstrap.sh${c_0}"
|
||||
exit 0
|
||||
fi
|
||||
|
||||
# ── 8. Optional: xtts-Stack hochziehen ──
|
||||
if [[ $DO_UP -eq 1 && "${GPU_READY:-0}" -eq 1 ]]; then
|
||||
step "xtts-Stack starten (Default-Profil: Whisper + F5 + LLM — OHNE voxtral)"
|
||||
warn "Erster Start laedt Modelle (mehrere GB via HuggingFace) — kann dauern."
|
||||
( cd "$XTTS_DIR" && docker compose up -d --build )
|
||||
ok "Stack laeuft. Logs: docker logs -f aria-whisper-bridge"
|
||||
echo
|
||||
echo " voxtral (STT via Voxtral) braucht >=16 GB VRAM → erst mit der 24-GB-Karte:"
|
||||
echo " cd $XTTS_DIR && docker compose stop whisper-bridge && docker compose --profile voxtral up -d --build"
|
||||
fi
|
||||
|
||||
# ── Abschluss ──
|
||||
echo
|
||||
echo -e "${c_g}=== Fertig. KI-Box startklar. ===${c_0}"
|
||||
if [[ $DO_UP -eq 0 ]]; then
|
||||
echo "Naechster Schritt — Stack starten:"
|
||||
echo " cd $XTTS_DIR && docker compose up -d --build"
|
||||
echo "oder direkt: sudo ./bootstrap.sh --up"
|
||||
fi
|
||||
@@ -14,6 +14,7 @@ import { createBottomTabNavigator } from '@react-navigation/bottom-tabs';
|
||||
|
||||
import WorkspaceScreen from './src/workspace/WorkspaceScreen';
|
||||
import SettingsScreen from './src/screens/SettingsScreen';
|
||||
import ViewModeToggle from './src/components/ViewModeToggle';
|
||||
import rvs from './src/services/rvs';
|
||||
import { initLogger, installGlobalCrashReporter } from './src/services/logger';
|
||||
import { acquireBackgroundAudio } from './src/services/backgroundAudio';
|
||||
@@ -170,6 +171,7 @@ const App: React.FC = () => {
|
||||
options={{
|
||||
title: 'ARIA Chat',
|
||||
headerTitle: 'ARIA Cockpit',
|
||||
headerRight: () => <ViewModeToggle />,
|
||||
}}
|
||||
/>
|
||||
<Tab.Screen
|
||||
|
||||
@@ -79,8 +79,8 @@ android {
|
||||
applicationId "com.ariacockpit"
|
||||
minSdkVersion rootProject.ext.minSdkVersion
|
||||
targetSdkVersion rootProject.ext.targetSdkVersion
|
||||
versionCode 20108
|
||||
versionName "0.2.1.8"
|
||||
versionCode 20405
|
||||
versionName "0.2.4.5"
|
||||
// Fallback fuer Libraries mit Product Flavors
|
||||
missingDimensionStrategy 'react-native-camera', 'general'
|
||||
}
|
||||
|
||||
@@ -59,7 +59,7 @@ class OpenWakeWordModule(reactContext: ReactApplicationContext) : ReactContextBa
|
||||
// Trigger eingestuft werden kann. Folge: App pausiert beim Oeffnen die Musik,
|
||||
// weil der False-Positive die AudioFocus-Switch-Logik anwirft (Stefan-Bug 06/2026).
|
||||
// Loesung: in dieser Phase keine Detections an JS weiterleiten.
|
||||
private const val STARTUP_SUPPRESSION_MS = 1500L
|
||||
private const val STARTUP_SUPPRESSION_MS = 600L
|
||||
}
|
||||
|
||||
private val env: OrtEnvironment = OrtEnvironment.getEnvironment()
|
||||
|
||||
@@ -1,6 +1,6 @@
|
||||
{
|
||||
"name": "aria-cockpit",
|
||||
"version": "0.2.1.8",
|
||||
"version": "0.2.4.5",
|
||||
"private": true,
|
||||
"scripts": {
|
||||
"android": "react-native run-android",
|
||||
|
||||
@@ -28,6 +28,7 @@ import {
|
||||
|
||||
import brainApi, { Project } from '../services/brainApi';
|
||||
import rvs from '../services/rvs';
|
||||
import projectFocus from '../services/projectFocus';
|
||||
|
||||
interface Props {
|
||||
/** Optional — wenn als Modal genutzt, sonst inline */
|
||||
@@ -75,6 +76,7 @@ export const ProjectsBrowser: React.FC<Props> = ({ visible = true, onClose, onAc
|
||||
const [editing, setEditing] = useState<Project | null>(null);
|
||||
const [editName, setEditName] = useState('');
|
||||
const [editDesc, setEditDesc] = useState('');
|
||||
const [editKind, setEditKind] = useState<'code' | 'chat'>('chat');
|
||||
// Versteckte Projekte standardmaessig ausblenden; Toggle blendet sie
|
||||
// temporaer (gedimmt) ein — zum Ansehen/Auswaehlen oder Wieder-Sichtbarmachen.
|
||||
const [showHidden, setShowHidden] = useState(false);
|
||||
@@ -148,18 +150,25 @@ export const ProjectsBrowser: React.FC<Props> = ({ visible = true, onClose, onAc
|
||||
setEditing(p);
|
||||
setEditName(p.name);
|
||||
setEditDesc(p.description || '');
|
||||
setEditKind(p.kind === 'code' ? 'code' : 'chat');
|
||||
}, []);
|
||||
|
||||
const saveEdit = useCallback(() => {
|
||||
if (!editing) return;
|
||||
const patch: Partial<Pick<Project, 'name' | 'description'>> = {};
|
||||
const patch: Partial<Pick<Project, 'name' | 'description' | 'kind'>> = {};
|
||||
if (editName.trim() && editName.trim() !== editing.name) patch.name = editName.trim();
|
||||
if (editDesc.trim() !== (editing.description || '')) patch.description = editDesc.trim();
|
||||
const curKind = editing.kind === 'code' ? 'code' : 'chat';
|
||||
if (editKind !== curKind) patch.kind = editKind;
|
||||
if (Object.keys(patch).length === 0) { setEditing(null); return; }
|
||||
brainApi.updateProject(editing.id, patch)
|
||||
.then(() => { setEditing(null); load(); })
|
||||
.then(() => {
|
||||
// Kind sofort in den Workspace spiegeln (Editor/Desktop-Panels).
|
||||
if (patch.kind) projectFocus.setKind(editing.id, patch.kind);
|
||||
setEditing(null); load();
|
||||
})
|
||||
.catch(e => Alert.alert('Fehler', String(e?.message || e)));
|
||||
}, [editing, editName, editDesc, load]);
|
||||
}, [editing, editName, editDesc, editKind, load]);
|
||||
|
||||
const endProject = useCallback((p: Project) => {
|
||||
Alert.alert(`"${p.name}" beenden?`,
|
||||
@@ -216,6 +225,9 @@ export const ProjectsBrowser: React.FC<Props> = ({ visible = true, onClose, onAc
|
||||
<View style={{ width: 8, height: 8, borderRadius: 4, backgroundColor: dot.color }} />
|
||||
)}
|
||||
<Text style={[s.rowName, isActive && { color: '#34C759' }]}>{item.name}</Text>
|
||||
{item.has_files && (
|
||||
<Text style={{ fontSize: 12 }} accessibilityLabel="hat Dateien">📄{item.file_count ? ` ${item.file_count}` : ''}</Text>
|
||||
)}
|
||||
{hidden && <Text style={s.hiddenBadge}>versteckt</Text>}
|
||||
{item.status === 'ended' && <Text style={s.statusBadge}>beendet</Text>}
|
||||
{isActive && <Text style={s.activeBadge}>✓ FOCUS</Text>}
|
||||
@@ -375,6 +387,21 @@ export const ProjectsBrowser: React.FC<Props> = ({ visible = true, onClose, onAc
|
||||
style={[s.input, { height: 70 }]}
|
||||
multiline
|
||||
/>
|
||||
<TouchableOpacity
|
||||
onPress={() => setEditKind(k => (k === 'code' ? 'chat' : 'code'))}
|
||||
style={{ flexDirection: 'row', alignItems: 'center', justifyContent: 'space-between', paddingVertical: 8 }}
|
||||
>
|
||||
<Text style={{ color: '#E0E0F0', fontSize: 14 }}>💻 Code-Projekt{'\n'}
|
||||
<Text style={{ color: '#8888AA', fontSize: 11 }}>zeigt Editor + Desktop im Cockpit</Text>
|
||||
</Text>
|
||||
<View style={{
|
||||
width: 46, height: 26, borderRadius: 13, padding: 3,
|
||||
backgroundColor: editKind === 'code' ? '#0096FF' : '#2A2A3E',
|
||||
alignItems: editKind === 'code' ? 'flex-end' : 'flex-start',
|
||||
}}>
|
||||
<View style={{ width: 20, height: 20, borderRadius: 10, backgroundColor: '#FFFFFF' }} />
|
||||
</View>
|
||||
</TouchableOpacity>
|
||||
<View style={{ flexDirection: 'row', gap: 8, marginTop: 12 }}>
|
||||
<TouchableOpacity onPress={() => setEditing(null)} style={[s.modalBtn, { backgroundColor: '#2A2A3E' }]}>
|
||||
<Text style={s.modalBtnText}>Abbrechen</Text>
|
||||
|
||||
@@ -0,0 +1,47 @@
|
||||
/**
|
||||
* ViewModeToggle — kleiner Header-Button zum Umschalten zwischen Kompakt-
|
||||
* Ansicht (klassischer Chat) und Cockpit (Kachel-Desktop).
|
||||
*
|
||||
* Sitzt rechts im Navigations-Header ("ARIA Cockpit"), kollidiert also mit
|
||||
* nichts in der Chat-Ansicht. Zeigt das Ziel des naechsten Taps.
|
||||
*/
|
||||
|
||||
import React, { useEffect, useState } from 'react';
|
||||
import { StyleSheet, Text, TouchableOpacity } from 'react-native';
|
||||
import viewMode, { ViewModeValue } from '../services/viewMode';
|
||||
|
||||
const ViewModeToggle: React.FC = () => {
|
||||
const [mode, setMode] = useState<ViewModeValue>(viewMode.get());
|
||||
useEffect(() => viewMode.subscribe(setMode), []);
|
||||
|
||||
const isCockpit = mode === 'cockpit';
|
||||
return (
|
||||
<TouchableOpacity
|
||||
onPress={() => viewMode.toggle()}
|
||||
style={[styles.pill, isCockpit && styles.pillActive]}
|
||||
hitSlop={{ top: 10, bottom: 10, left: 10, right: 10 }}
|
||||
activeOpacity={0.75}
|
||||
>
|
||||
<Text style={[styles.text, isCockpit && styles.textActive]}>
|
||||
{isCockpit ? '⧉ Cockpit' : '⧉ Kompakt'}
|
||||
</Text>
|
||||
</TouchableOpacity>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
pill: {
|
||||
marginRight: 12,
|
||||
paddingHorizontal: 12,
|
||||
paddingVertical: 6,
|
||||
borderRadius: 16,
|
||||
borderWidth: 1,
|
||||
borderColor: '#1E1E2E',
|
||||
backgroundColor: '#12122A',
|
||||
},
|
||||
pillActive: { borderColor: '#0096FF', backgroundColor: '#0A1F33' },
|
||||
text: { color: '#9090B0', fontSize: 13, fontWeight: '700' },
|
||||
textActive: { color: '#0096FF' },
|
||||
});
|
||||
|
||||
export default ViewModeToggle;
|
||||
@@ -35,7 +35,7 @@ import MemoryBrowser from '../components/MemoryBrowser';
|
||||
import ErrorBoundary from '../components/ErrorBoundary';
|
||||
import rvs, { RVSMessage, ConnectionState } from '../services/rvs';
|
||||
import audioService from '../services/audio';
|
||||
import wakeWordService, { loadPassiveListenMs } from '../services/wakeword';
|
||||
import wakeWordService from '../services/wakeword';
|
||||
import ProjectsBrowser from '../components/ProjectsBrowser';
|
||||
import brainApi, { Project as BrainProject } from '../services/brainApi';
|
||||
import projectFocus from '../services/projectFocus';
|
||||
@@ -50,7 +50,7 @@ import VoiceButton from '../components/VoiceButton';
|
||||
import FileUpload, { FileData } from '../components/FileUpload';
|
||||
import CameraUpload, { PhotoData } from '../components/CameraUpload';
|
||||
import MessageText from '../components/MessageText';
|
||||
import { loadConvWindowMs, loadTtsSpeed, TTS_SPEED_DEFAULT, loadSttEndpointMs } from '../services/audio';
|
||||
import { loadTtsSpeed, TTS_SPEED_DEFAULT, loadSttEndpointMs, loadMaxRecordingMs, loadBargeInEnabled } from '../services/audio';
|
||||
import Geolocation from '@react-native-community/geolocation';
|
||||
|
||||
// --- Typen ---
|
||||
@@ -93,6 +93,9 @@ interface ChatMessage {
|
||||
* gespiegelt damit wir die EXAKT richtige Placeholder-Bubble ersetzen,
|
||||
* auch wenn mehrere Aufnahmen parallel offen sind. */
|
||||
audioRequestId?: string;
|
||||
/** Laenge der Sprachaufnahme in Sekunden (aus dem stt_endpoint) — fuer die
|
||||
* Dauer-Anzeige an der Voice-Bubble. */
|
||||
durationS?: number;
|
||||
/** Skill-Created-Bubble: ARIA hat einen neuen Skill angelegt */
|
||||
skillCreated?: {
|
||||
name: string;
|
||||
@@ -184,6 +187,14 @@ function stripSystemHints(text: string): string {
|
||||
}
|
||||
return out;
|
||||
}
|
||||
/** Sekunden → "M:SS" fuer die Sprachnachricht-Dauer. */
|
||||
function formatDur(sec: number): string {
|
||||
const s = Math.max(0, Math.round(sec));
|
||||
const m = Math.floor(s / 60);
|
||||
const r = s % 60;
|
||||
return `${m}:${r.toString().padStart(2, '0')}`;
|
||||
}
|
||||
|
||||
const DEFAULT_ATTACHMENT_DIR = `${RNFS.DocumentDirectoryPath}/chat_attachments`;
|
||||
const STORAGE_PATH_KEY = 'aria_attachment_storage_path';
|
||||
|
||||
@@ -373,6 +384,8 @@ const ChatScreen: React.FC = () => {
|
||||
// stoppen? Kommt als 'converse' in der Chat-Payload; onPlaybackFinished liest
|
||||
// es. Default true (Konversation). false = Einzelaktion/Skill-Antwort.
|
||||
const converseRef = useRef<boolean>(true);
|
||||
// Barge-in erlaubt? Default false = Halb-Duplex (waehrend TTS kein Mikro).
|
||||
const bargeInEnabledRef = useRef<boolean>(false);
|
||||
|
||||
const flatListRef = useRef<FlatList>(null);
|
||||
const messageIdCounter = useRef(0);
|
||||
@@ -407,6 +420,22 @@ const ChatScreen: React.FC = () => {
|
||||
const nextClientMsgId = (): string =>
|
||||
`cmsg_${Date.now()}_${Math.floor(Math.random() * 1_000_000)}`;
|
||||
|
||||
// IDs (clientMsgId + audioRequestId), die DIESES Geraet ausgeloest hat.
|
||||
// Fuer den geraete-lokalen Voice-Projektwechsel: ein project_changed vom Brain
|
||||
// traegt die ausloesende ID; nur wenn sie zu einer unserer IDs gehoert, folgt
|
||||
// dieses Geraet dem Wechsel. So wechselt „ARIA, geh in Projekt X" nur das
|
||||
// Geraet, das den Befehl gab — nicht andere App-/Diagnostic-Instanzen.
|
||||
const myRequestIdsRef = useRef<Set<string>>(new Set());
|
||||
const rememberMyRequest = (id: string): void => {
|
||||
if (!id) return;
|
||||
const s = myRequestIdsRef.current;
|
||||
s.add(id);
|
||||
if (s.size > 80) {
|
||||
const oldest = s.values().next().value;
|
||||
if (oldest !== undefined) s.delete(oldest);
|
||||
}
|
||||
};
|
||||
|
||||
// Wie lange wir auf das ACK warten bevor wir retryen. Bridge sollte
|
||||
// unmittelbar zurueckmelden — 30s ist grosszuegig fuer schlechte Netze.
|
||||
// 60s — grosszuegiger als 30s, weil langsame Brain-Calls (Multi-Tool) sonst
|
||||
@@ -462,6 +491,7 @@ const ChatScreen: React.FC = () => {
|
||||
return;
|
||||
}
|
||||
pendingPayloads.current.set(cmid, { type, payload });
|
||||
rememberMyRequest(cmid);
|
||||
const online = connectionStateRef.current === 'connected';
|
||||
if (!online) {
|
||||
updateMessageStatus(cmid, { deliveryStatus: 'queued', sendAttempts: attempt });
|
||||
@@ -634,6 +664,7 @@ const ChatScreen: React.FC = () => {
|
||||
const voice = await AsyncStorage.getItem('aria_xtts_voice');
|
||||
localXttsVoiceRef.current = voice || '';
|
||||
ttsSpeedRef.current = await loadTtsSpeed();
|
||||
bargeInEnabledRef.current = await loadBargeInEnabled();
|
||||
const gps = await AsyncStorage.getItem('aria_gps_enabled');
|
||||
setGpsEnabled(gps === 'true');
|
||||
const hints = await AsyncStorage.getItem('aria_show_hints');
|
||||
@@ -992,10 +1023,18 @@ const ChatScreen: React.FC = () => {
|
||||
if (p.id && (p.kind === 'code' || p.kind === 'chat')) {
|
||||
projectFocus.setKind(p.id, p.kind);
|
||||
}
|
||||
if (action === 'entered' || action === 'created') {
|
||||
if (p.id) setFocusedProjectId(p.id);
|
||||
} else if (action === 'exited') {
|
||||
setFocusedProjectId('');
|
||||
// Projekt-Fokus ist GERAETE-LOKAL. Ein Broadcast wechselt dieses Geraet
|
||||
// NUR, wenn er durch EINEN EIGENEN Befehl ausgeloest wurde — erkennbar an
|
||||
// der mitgelieferten clientMsgId (unsere gesendete Text-cmid oder Voice-
|
||||
// audioRequestId). So folgt „ARIA, geh in Projekt X" nur dem Geraet, das
|
||||
// den Befehl gab; Diagnostic / andere App-Instanzen bleiben unberuehrt.
|
||||
const trigCmid = typeof p.clientMsgId === 'string' ? p.clientMsgId : '';
|
||||
if (trigCmid && myRequestIdsRef.current.has(trigCmid)) {
|
||||
if (action === 'entered' || action === 'created') {
|
||||
if (p.id) setFocusedProjectId(p.id);
|
||||
} else if (action === 'exited') {
|
||||
setFocusedProjectId('');
|
||||
}
|
||||
}
|
||||
return;
|
||||
}
|
||||
@@ -1362,13 +1401,61 @@ const ChatScreen: React.FC = () => {
|
||||
// Fallback mehr: die Bridge schickt speak zuverlaessig mit.
|
||||
// Merken ob nach dem Vorlesen 30s weiterlauschen (Gespraech) oder direkt
|
||||
// stoppen — onPlaybackFinished liest converseRef. Default true.
|
||||
converseRef.current = (message.payload as any).converse !== false;
|
||||
// Passiv-Lauschen (30s) NUR wenn das Brain explizit converse:true schickt.
|
||||
// Vorher default true → jeder Befehl (auch "Spiele Spotify" mit gesproche-
|
||||
// ner Bestaetigung) landete im 30s-Fenster. Jetzt: einzelne Befehle enden
|
||||
// sofort (zurueck aufs Wake-Word), nur echte Gespraeche lauschen weiter.
|
||||
converseRef.current = (message.payload as any).converse === true;
|
||||
const _wakeOff = (message.payload as any).wake_off === true;
|
||||
const _wakeOn = (message.payload as any).wake_on === true;
|
||||
const _isSilent = (message.payload as any).speak === false;
|
||||
if (_isSilent && wakeWordService.isConversing()) {
|
||||
// Klarer Steuerbefehl (Liedersteuerung etc.) = KEINE Konversation →
|
||||
// STOP: direkt zurueck aufs Wake-Word. Kein Gong, keine Aufnahme,
|
||||
// kein 30s-Fenster (skipPassive=true).
|
||||
wakeWordService.endConversation(true).catch(() => {});
|
||||
if (_wakeOn) {
|
||||
// "Wake-Word an" per Text/Aufnahme-Button → Listener wieder starten
|
||||
// (gleicher Weg wie toggleWakeWord-on). Geht auch wenn das Ohr taub war,
|
||||
// weil der Befehl NICHT ueber "Computer" kam.
|
||||
(async () => {
|
||||
try {
|
||||
const started = await wakeWordService.start();
|
||||
setWakeWordActive(started);
|
||||
console.log('[Chat] Wake-Word per Befehl AN gestartet:', started);
|
||||
} catch (e) {
|
||||
console.warn('[Chat] Wake-Word AN fehlgeschlagen:', e);
|
||||
}
|
||||
})();
|
||||
} else if (_wakeOff) {
|
||||
// ARIA hat "Wake-Word aus" per Sprache bekommen → Listener KOMPLETT
|
||||
// stoppen (Mikro frei, echte Ruhe). Gleicher Weg wie der Ohr-Button
|
||||
// (toggleWakeWord-off). Wieder-An nur ueber den Button (dann taub).
|
||||
(async () => {
|
||||
try {
|
||||
if (audioService.isStreamingRecording()) {
|
||||
await audioService.cancelStreamingRecording('wake-off-voice');
|
||||
} else {
|
||||
await audioService.stopRecording();
|
||||
}
|
||||
} catch {}
|
||||
try { await wakeWordService.stop(); } catch {}
|
||||
setWakeWordActive(false);
|
||||
console.log('[Chat] Wake-Word per Sprachbefehl AUS — Ohr-Button zum Wieder-Anmachen');
|
||||
})();
|
||||
} else if (_isSilent) {
|
||||
// Steuerbefehl (speak=false) ist ausgefuehrt und wird NICHT vorgelesen.
|
||||
// Ohne TTS feuert onPlaybackFinished nie — der Mikro-/Konversations-
|
||||
// Lifecycle muss hier selbst weitergeschaltet werden, sonst haengt das Ohr.
|
||||
if (converseRef.current) {
|
||||
// Befehlskette laeuft WEITER ([[WEITER]]): Mikro NICHT schliessen,
|
||||
// sondern das passive Lausch-Fenster oeffnen (endConversation(false)),
|
||||
// damit der naechste Kettenbefehl direkt gesprochen werden kann. ARIA
|
||||
// haelt bewusst offen, bis sie [[ENDE]] (converse=false) schickt.
|
||||
if (wakeWordService.isConversing()) {
|
||||
wakeWordService.endConversation(false).catch(() => {});
|
||||
}
|
||||
} else {
|
||||
// Einzelbefehl / [[ENDE]] → ARIA "drueckt selbst Stop": jede offene
|
||||
// Aufnahme schliessen + zurueck aufs Wake-Word, egal in welchem Zustand
|
||||
// (conversing, passives Lauschen ODER offene Streaming-Aufnahme).
|
||||
ariaStopRecording('silent-command').catch(() => {});
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1620,9 +1707,14 @@ const ChatScreen: React.FC = () => {
|
||||
// dem finalen Text, dann wird die Bubble ueber audioRequestId-Match
|
||||
// aktualisiert (siehe chat-Handler oben).
|
||||
const audioRequestId = `audio_${Date.now()}_${Math.floor(Math.random() * 100000)}`;
|
||||
rememberMyRequest(audioRequestId);
|
||||
const wasInterrupted = interruptAriaIfBusy();
|
||||
const location = await getCurrentLocation();
|
||||
const windowMs = await loadConvWindowMs();
|
||||
// EIN Wert regiert: die Stille-Toleranz. Sie gilt sowohl als Pause WÄHREND
|
||||
// des Redens (endpointMs) ALS AUCH als "wenn du nicht anfängst zu reden,
|
||||
// ist Schluss" (noSpeechTimeoutMs). Kein separates 30s-Konversationsfenster
|
||||
// mehr — Stefans Modell: sagst du nichts, greift der Stille-Wert.
|
||||
const sttEndpointMs = await loadSttEndpointMs();
|
||||
|
||||
const userMsg: ChatMessage = {
|
||||
id: nextId(),
|
||||
@@ -1640,9 +1732,11 @@ const ChatScreen: React.FC = () => {
|
||||
speed: ttsSpeedRef.current,
|
||||
interrupted: wasInterrupted,
|
||||
location: location || null,
|
||||
noSpeechTimeoutMs: windowMs,
|
||||
endpointMs: await loadSttEndpointMs(),
|
||||
hardCapMs: 60000,
|
||||
noSpeechTimeoutMs: sttEndpointMs,
|
||||
endpointMs: sttEndpointMs,
|
||||
// Notbremse 5 min (nicht 1 min) — der Stille-Endpoint beendet normale
|
||||
// Turns eh sofort; der Cap darf lange Diktate nicht mitten drin kappen.
|
||||
hardCapMs: await loadMaxRecordingMs(),
|
||||
projectId: focusedProjectIdRef.current,
|
||||
});
|
||||
import('../services/logger').then(m => m.reportAppDebug('wake.cb', `startStreamingRecording returned ok=${ok}`)).catch(()=>{});
|
||||
@@ -1670,6 +1764,13 @@ const ChatScreen: React.FC = () => {
|
||||
if (ev.text && ev.text.trim()) {
|
||||
console.log('[Chat] STT-Endpoint: %r (reason=%s, %dms, %.1fs Audio)',
|
||||
ev.text.slice(0, 80), ev.reason, ev.sttMs, ev.durationS);
|
||||
// Aufnahme-Dauer an die passende Voice-Bubble haengen (Anzeige). Der
|
||||
// spaetere STT-Text-Update spreadet die Message, die Dauer bleibt.
|
||||
if (ev.audioRequestId && typeof ev.durationS === 'number' && ev.durationS > 0) {
|
||||
const dur = ev.durationS;
|
||||
setMessages(prev => prev.map(m =>
|
||||
m.audioRequestId === ev.audioRequestId ? { ...m, durationS: dur } : m));
|
||||
}
|
||||
// Wenn passive lauschend: User hat tatsaechlich was gesagt → uebergang
|
||||
// zu 'conversing' damit der normale Flow greift (TTS, resume, etc.)
|
||||
if (wakeWordService.getState() === 'listening') {
|
||||
@@ -1690,12 +1791,12 @@ const ChatScreen: React.FC = () => {
|
||||
!(m.audioRequestId === ev.audioRequestId
|
||||
&& m.text.includes('Spracheingabe wird verarbeitet'))));
|
||||
}
|
||||
// Bei Passive-Listen + speaker_mismatch oder no-speech: erneut passiv
|
||||
// lauschen (Timer im wakeword-service laeuft weiter, regelt das Ende).
|
||||
// Sonst endConversation wie bisher.
|
||||
// Kein Re-Arm mehr: nach ARIAs Antwort gab es EIN Stille-Fenster (=
|
||||
// Stille-Toleranz). Kam nichts, ist Schluss → zurück aufs Wake-Word.
|
||||
// Kein 30s-Nachlauschen. (speaker_mismatch/no-speech landen beide hier.)
|
||||
if (wakeWordService.getState() === 'listening') {
|
||||
console.log('[Chat] Passive-Listen: leeres Endpoint — naechste passive Aufnahme');
|
||||
startPassiveStreamingRecording();
|
||||
console.log('[Chat] Passive-Listen: leeres Endpoint — Ende, zurueck aufs Wake-Word');
|
||||
wakeWordService.exitPassiveListening('timeout').catch(() => {});
|
||||
} else {
|
||||
wakeWordService.endConversation();
|
||||
if (!wakeWordService.isActive()) setWakeWordActive(false);
|
||||
@@ -1723,8 +1824,9 @@ const ChatScreen: React.FC = () => {
|
||||
// Kurze Pause damit halt durchgreift, dann neue Aufnahme starten
|
||||
await new Promise(r => setTimeout(r, 150));
|
||||
const audioRequestId = `audio_${Date.now()}_${Math.floor(Math.random() * 100000)}`;
|
||||
rememberMyRequest(audioRequestId);
|
||||
const location = await getCurrentLocation();
|
||||
const windowMs = await loadConvWindowMs();
|
||||
const sttEndpointMs = await loadSttEndpointMs(); // ein Wert für Pause + No-Speech
|
||||
|
||||
const userMsg: ChatMessage = {
|
||||
id: nextId(),
|
||||
@@ -1742,9 +1844,10 @@ const ChatScreen: React.FC = () => {
|
||||
speed: ttsSpeedRef.current,
|
||||
interrupted: true, // Barge-In → Brain weiss "User hat unterbrochen"
|
||||
location: location || null,
|
||||
noSpeechTimeoutMs: windowMs,
|
||||
endpointMs: await loadSttEndpointMs(),
|
||||
hardCapMs: 60000,
|
||||
noSpeechTimeoutMs: sttEndpointMs,
|
||||
endpointMs: sttEndpointMs,
|
||||
// Notbremse 5 min (s.o.) — lange Diktate nicht bei 1 min abschneiden.
|
||||
hardCapMs: await loadMaxRecordingMs(),
|
||||
projectId: focusedProjectIdRef.current,
|
||||
});
|
||||
if (ok) {
|
||||
@@ -1762,7 +1865,9 @@ const ChatScreen: React.FC = () => {
|
||||
// Prozess nicht killt wenn die App im Hintergrund ist.
|
||||
const unsubTtsStart = audioService.onPlaybackStarted(() => {
|
||||
acquireBackgroundAudio('tts').catch(() => {});
|
||||
if (wakeWordService.isConversing() && wakeWordService.hasWakeWord()) {
|
||||
// Barge-Listening (Mikro waehrend TTS) NUR im Barge-in-Modus. Default aus =
|
||||
// Halb-Duplex: ARIA spricht ungestoert zu Ende, dann erst geht das Mikro auf.
|
||||
if (bargeInEnabledRef.current && wakeWordService.isConversing() && wakeWordService.hasWakeWord()) {
|
||||
wakeWordService.startBargeListening().catch(() => {});
|
||||
}
|
||||
});
|
||||
@@ -1799,17 +1904,22 @@ const ChatScreen: React.FC = () => {
|
||||
// useCallback damit der useEffect oben die Funktion stabil capturen kann.
|
||||
const startPassiveStreamingRecording = useCallback(async () => {
|
||||
const audioRequestId = `audio_passive_${Date.now()}_${Math.floor(Math.random() * 100000)}`;
|
||||
rememberMyRequest(audioRequestId);
|
||||
const location = await getCurrentLocation();
|
||||
const passiveMs = await loadPassiveListenMs();
|
||||
// Kein 30s-Passiv-Fenster mehr: nach ARIAs Antwort geht das Mikro auf, und
|
||||
// fängst du nicht innerhalb der Stille-Toleranz an zu reden, ist Schluss →
|
||||
// zurück aufs Wake-Word. Derselbe Wert wie die Pause-Toleranz beim Reden.
|
||||
const sttEndpointMs = await loadSttEndpointMs();
|
||||
const { ok } = await audioService.startStreamingRecording({
|
||||
audioRequestId,
|
||||
voice: localXttsVoiceRef.current,
|
||||
speed: ttsSpeedRef.current,
|
||||
interrupted: false,
|
||||
location: location || null,
|
||||
noSpeechTimeoutMs: Math.min(passiveMs, 30000),
|
||||
endpointMs: await loadSttEndpointMs(),
|
||||
hardCapMs: Math.max(passiveMs + 5000, 35000),
|
||||
noSpeechTimeoutMs: sttEndpointMs,
|
||||
endpointMs: sttEndpointMs,
|
||||
// Lange Antworten nicht kappen (früher 35s → schnitt langes Reden ab).
|
||||
hardCapMs: await loadMaxRecordingMs(),
|
||||
projectId: focusedProjectIdRef.current,
|
||||
});
|
||||
if (!ok) {
|
||||
@@ -2182,15 +2292,16 @@ const ChatScreen: React.FC = () => {
|
||||
advanceQueue(pid);
|
||||
}, [advanceQueue]);
|
||||
|
||||
// Queue-Modus („immer anstellen"): eine neue Sprachnachricht bricht ARIAs
|
||||
// laufende Arbeit NICHT mehr ab. Sie wird — wie Text — angestellt und laeuft
|
||||
// serialisiert (der Brain-Lock pro Projekt reiht /chat-/audio-Turns auf).
|
||||
// Nur das TTS wird akustisch gestoppt, damit das Mikro ARIAs eigene Stimme
|
||||
// nicht mithoert. Explizites Abbrechen laeuft ueber den Stop-Button
|
||||
// (cancelRequest). Rueckgabe = false, weil kein Barge-In/Interrupt mehr.
|
||||
// Nimmt der User das Mikro waehrend ARIA SPRICHT, ist das ein echter Interrupt:
|
||||
// TTS stoppen UND die laufende Brain-Antwort abbrechen (cancel_request). Sonst
|
||||
// produziert das Brain weiter TTS, die ins offene Mikro laeuft → genau der
|
||||
// "Mischmasch" (ARIA antwortet weiter waehrend ich rede). Fuer bewusstes
|
||||
// Nicht-Abbrechen gibt es weiterhin den separaten Zwischenruf-Button (📣).
|
||||
const interruptAriaIfBusy = useCallback(() => {
|
||||
if (audioService.isPlayingAudio()) {
|
||||
audioService.haltAllPlayback('user startet Aufnahme (Queue-Modus, kein Abbruch)');
|
||||
audioService.haltAllPlayback('user startet Aufnahme — Interrupt');
|
||||
rvs.send('cancel_request' as any, { hard: true, source: 'voice-interrupt' });
|
||||
return true;
|
||||
}
|
||||
return false;
|
||||
}, []);
|
||||
@@ -2202,6 +2313,7 @@ const ChatScreen: React.FC = () => {
|
||||
// ueber audioRequestId-Match nachgereicht wenn whisper das Endpoint feuert.
|
||||
const handleVoiceButtonStart = useCallback(async (): Promise<boolean> => {
|
||||
const audioRequestId = `audio_${Date.now()}_${Math.floor(Math.random() * 100000)}`;
|
||||
rememberMyRequest(audioRequestId);
|
||||
const wasInterrupted = interruptAriaIfBusy();
|
||||
const location = await getCurrentLocation();
|
||||
|
||||
@@ -2226,7 +2338,7 @@ const ChatScreen: React.FC = () => {
|
||||
// die Session auch app-seitig haben wir +2s Toleranz.
|
||||
noSpeechTimeoutMs: 0,
|
||||
endpointMs: await loadSttEndpointMs(),
|
||||
hardCapMs: 300000,
|
||||
hardCapMs: await loadMaxRecordingMs(),
|
||||
projectId: focusedProjectIdRef.current,
|
||||
});
|
||||
if (!ok) {
|
||||
@@ -2238,11 +2350,50 @@ const ChatScreen: React.FC = () => {
|
||||
return true;
|
||||
}, [getCurrentLocation, interruptAriaIfBusy, scheduleStaleAudioCleanup]);
|
||||
|
||||
// ARIA schliesst die Aufnahme SELBST — das programmatische Gegenstueck zum
|
||||
// Stop-Button. Aufgerufen nach einem stillen Steuerbefehl (speak=false): der
|
||||
// Befehl ist ausgefuehrt, ARIA hat die Rueckinfo (Skill-Ergebnis) und antwortet
|
||||
// NICHT vorgelesen. Weil ohne TTS kein onPlaybackFinished kommt, muss der
|
||||
// Aufnahme-/Konversations-Zustand hier aktiv aufgeraeumt werden, sonst bleibt
|
||||
// das Ohr haengen bzw. das Aufnahme-Fenster laeuft leer weiter (Stefans
|
||||
// Reproduktion: "spotify play" und das Mikro wartet trotzdem 30s).
|
||||
// Unterschied zum manuellen Stop: der verwirft NICHT, sondern finalisiert die
|
||||
// Aufnahme (User will seinen Satz verarbeitet haben) — hier ist der Befehl
|
||||
// schon durch, ein evtl. offenes Folge-Fenster wird verworfen.
|
||||
const ariaStopRecording = useCallback(async (reason: string): Promise<void> => {
|
||||
converseRef.current = false;
|
||||
// 1) Passiv-Lauschen: sauber beenden (cancelt den Stream selbst, startet
|
||||
// KEINE neue passive Aufnahme).
|
||||
if (wakeWordService.getState() === 'listening') {
|
||||
await wakeWordService.exitPassiveListening('manual').catch(() => {});
|
||||
return;
|
||||
}
|
||||
// 2) Noch offene Streaming-Aufnahme (aktiv / Barge-In) verwerfen.
|
||||
if (audioService.isStreamingRecording()) {
|
||||
await audioService.cancelStreamingRecording(reason).catch(() => {});
|
||||
}
|
||||
// 3) Konversation beenden → zurueck aufs Wake-Word (skipPassive: kein 30s-Fenster).
|
||||
if (wakeWordService.isConversing()) {
|
||||
await wakeWordService.endConversation(true).catch(() => {});
|
||||
} else if (!wakeWordService.isActive()) {
|
||||
setWakeWordActive(false);
|
||||
}
|
||||
}, []);
|
||||
|
||||
// Manueller Aufnahme-Knopf — Stop. Sendet stt_stream_end an Whisper, die
|
||||
// dann ihrerseits den finalen Text als stt_endpoint emittiert. aria-bridge
|
||||
// forwarded direkt an Brain. Im wake-word-conversing-Fall zusaetzlich
|
||||
// endConversation: User hat explizit gestoppt → kein Multi-Turn-Resume.
|
||||
const handleVoiceButtonStop = useCallback(async (): Promise<void> => {
|
||||
// Manueller Stop = endgueltig: auch die NACH der Antwort kommende
|
||||
// onPlaybackFinished darf kein 30s-Passiv-Fenster mehr oeffnen.
|
||||
converseRef.current = false;
|
||||
// Stop = ALLES beenden, vorhersehbar. Spricht ARIA gerade, hart stoppen +
|
||||
// laufende Brain-Antwort abbrechen (sonst "sagt sie ihren letzten Satz").
|
||||
if (audioService.isPlayingAudio()) {
|
||||
audioService.haltAllPlayback('user stop');
|
||||
rvs.send('cancel_request' as any, { hard: true, source: 'voice-stop' });
|
||||
}
|
||||
// Stop WAEHREND des passiven 30s-Lauschens ('listening'): sauber beenden
|
||||
// (zurueck aufs Wake-Word), NICHT den passiven Stream neu starten.
|
||||
// exitPassiveListening cancelt den Stream selbst (via _freeMic) → es feuert
|
||||
@@ -2342,6 +2493,10 @@ const ChatScreen: React.FC = () => {
|
||||
size: file.size,
|
||||
base64,
|
||||
projectId: activePid,
|
||||
// Korrelation: dieselbe clientMsgId wie der Text, damit die Bridge
|
||||
// die Datei genau DIESER Nachricht zuordnet — auch wenn Files (fire-
|
||||
// and-forget) und Text (ACK-getrackt, bei Queue verzoegert) desyncen.
|
||||
...(cmid && { clientMsgId: cmid }),
|
||||
...(isPhoto && file.width && { width: file.width, height: file.height }),
|
||||
...(location && { location }),
|
||||
});
|
||||
@@ -2411,6 +2566,24 @@ const ChatScreen: React.FC = () => {
|
||||
}
|
||||
}, [inputText, pendingAttachments, sendPendingAttachments, getCtxState, setCtxState, setCtxQueue, actuallySend]);
|
||||
|
||||
// Zwischenruf: waehrend ARIA arbeitet eine Korrektur MITTEN in den laufenden
|
||||
// Turn schieben — NICHT in die Queue, KEIN Abbruch. Geht als 'interject' ueber
|
||||
// RVS an die Bridge → Proxy → laufender Subprozess (greift es an der naechsten
|
||||
// Tool-Grenze auf). Sichtbar nur, wenn der aktive Kontext gerade arbeitet.
|
||||
const sendInterject = useCallback(() => {
|
||||
const text = inputText.trim();
|
||||
if (!text) return;
|
||||
const activePid = focusedProjectIdRef.current;
|
||||
rvs.send('interject' as any, { projectId: activePid, text });
|
||||
// Lokale Bubble zur Rueckmeldung (laeuft NICHT durch Send/Queue).
|
||||
setMessages(prev => capMessages([...prev, {
|
||||
id: nextId(), sender: 'user', text: `📣 Zwischenruf: ${text}`,
|
||||
timestamp: Date.now(), projectId: activePid,
|
||||
}]));
|
||||
projectDraftsRef.current = { ...projectDraftsRef.current, [activePid]: '' };
|
||||
setInputText('');
|
||||
}, [inputText]);
|
||||
|
||||
// --- Rendering ---
|
||||
|
||||
const renderMessage = ({ item }: { item: ChatMessage }) => {
|
||||
@@ -2596,6 +2769,16 @@ const ChatScreen: React.FC = () => {
|
||||
{att.serverPath ? '(tippen zum Laden)' : '(nicht verfuegbar)'}
|
||||
</Text>
|
||||
</TouchableOpacity>
|
||||
) : att.type === 'audio' ? (
|
||||
<View style={styles.attachmentFile}>
|
||||
<Text style={styles.attachmentFileIcon}>{'🎙'}</Text>
|
||||
<Text style={styles.attachmentFileName} numberOfLines={1}>
|
||||
{att.name || 'Sprachaufnahme'}
|
||||
</Text>
|
||||
{typeof item.durationS === 'number' && item.durationS > 0 ? (
|
||||
<Text style={styles.attachmentFileSize}>{formatDur(item.durationS)}</Text>
|
||||
) : null}
|
||||
</View>
|
||||
) : (
|
||||
<TouchableOpacity
|
||||
style={styles.attachmentFile}
|
||||
@@ -3185,9 +3368,19 @@ const ChatScreen: React.FC = () => {
|
||||
|
||||
{/* Senden oder Sprache */}
|
||||
{inputText.trim() || pendingAttachments.length > 0 ? (
|
||||
<TouchableOpacity style={styles.sendButton} onPress={sendTextMessage}>
|
||||
<Text style={styles.sendIcon}>{'\u2B06\uFE0F'}</Text>
|
||||
</TouchableOpacity>
|
||||
<>
|
||||
{/* Zwischenruf: nur wenn ARIA im aktiven Kontext gerade arbeitet und
|
||||
Text da ist. Schiebt die Korrektur in den laufenden Turn statt
|
||||
sie anzustellen. */}
|
||||
{inputText.trim() && (agentActivityByCtx[focusedProjectId]?.activity || 'idle') !== 'idle' ? (
|
||||
<TouchableOpacity style={styles.interjectButton} onPress={sendInterject} accessibilityLabel="Zwischenruf">
|
||||
<Text style={styles.interjectIcon}>{'\uD83D\uDCE3'}</Text>
|
||||
</TouchableOpacity>
|
||||
) : null}
|
||||
<TouchableOpacity style={styles.sendButton} onPress={sendTextMessage}>
|
||||
<Text style={styles.sendIcon}>{'\u2B06\uFE0F'}</Text>
|
||||
</TouchableOpacity>
|
||||
</>
|
||||
) : (
|
||||
<>
|
||||
<VoiceButton
|
||||
@@ -3705,6 +3898,18 @@ const styles = StyleSheet.create({
|
||||
sendIcon: {
|
||||
fontSize: 18,
|
||||
},
|
||||
interjectButton: {
|
||||
width: 40,
|
||||
height: 40,
|
||||
borderRadius: 20,
|
||||
backgroundColor: '#FF9500', // orange — Zwischenruf, klar vom blauen Senden getrennt
|
||||
alignItems: 'center',
|
||||
justifyContent: 'center',
|
||||
marginRight: 6,
|
||||
},
|
||||
interjectIcon: {
|
||||
fontSize: 18,
|
||||
},
|
||||
wakeWordBtn: {
|
||||
width: 32,
|
||||
height: 32,
|
||||
|
||||
@@ -63,14 +63,16 @@ import {
|
||||
VAD_SILENCE_MIN_SEC,
|
||||
VAD_SILENCE_MAX_SEC,
|
||||
VAD_SILENCE_STORAGE_KEY,
|
||||
CONV_WINDOW_DEFAULT_SEC,
|
||||
CONV_WINDOW_MIN_SEC,
|
||||
CONV_WINDOW_MAX_SEC,
|
||||
CONV_WINDOW_STORAGE_KEY,
|
||||
STT_ENDPOINT_DEFAULT_MS,
|
||||
STT_ENDPOINT_MIN_MS,
|
||||
STT_ENDPOINT_MAX_MS,
|
||||
STT_ENDPOINT_STORAGE_KEY,
|
||||
MAX_RECORDING_DEFAULT_SEC,
|
||||
MAX_RECORDING_MIN_SEC,
|
||||
MAX_RECORDING_MAX_SEC,
|
||||
MAX_RECORDING_STORAGE_KEY,
|
||||
loadBargeInEnabled,
|
||||
saveBargeInEnabled,
|
||||
VAD_SILENCE_DB_DEFAULT,
|
||||
VAD_SILENCE_DB_MIN,
|
||||
VAD_SILENCE_DB_MAX,
|
||||
@@ -110,9 +112,8 @@ import wakeWordService, {
|
||||
WAKE_THRESHOLD_MAX,
|
||||
loadWakeThreshold,
|
||||
saveWakeThreshold,
|
||||
PASSIVE_LISTEN_DEFAULT_MS,
|
||||
loadPassiveListenMs,
|
||||
savePassiveListenMs,
|
||||
loadBgWakeEnabled,
|
||||
saveBgWakeEnabled,
|
||||
} from '../services/wakeword';
|
||||
import ModeSelector from '../components/ModeSelector';
|
||||
import QRScanner from '../components/QRScanner';
|
||||
@@ -195,8 +196,12 @@ const SettingsScreen: React.FC = () => {
|
||||
const [ttsEnabled, setTtsEnabled] = useState(true);
|
||||
const [ttsPrerollSec, setTtsPrerollSec] = useState<number>(TTS_PREROLL_DEFAULT_SEC);
|
||||
const [vadSilenceSec, setVadSilenceSec] = useState<number>(VAD_SILENCE_DEFAULT_SEC);
|
||||
const [convWindowSec, setConvWindowSec] = useState<number>(CONV_WINDOW_DEFAULT_SEC);
|
||||
// Aktive Streaming-Pausen-Toleranz (STT_ENDPOINT) — der "Stille-Toleranz"-Regler
|
||||
// steuert jetzt DIESEN Wert (der alte vadSilenceSec war der tote Legacy-dB-Pfad).
|
||||
const [sttEndpointSec, setSttEndpointSec] = useState<number>(STT_ENDPOINT_DEFAULT_MS / 1000);
|
||||
const [maxRecordingSec, setMaxRecordingSec] = useState<number>(MAX_RECORDING_DEFAULT_SEC);
|
||||
// Barge-in: ARIA waehrend ihrer Antwort unterbrechen duerfen. Default aus (Halb-Duplex).
|
||||
const [bargeIn, setBargeIn] = useState<boolean>(false);
|
||||
// null = automatisch (adaptive Baseline), sonst manueller dB-Override
|
||||
const [vadSilenceDb, setVadSilenceDb] = useState<number | null>(null);
|
||||
const [showVadInfo, setShowVadInfo] = useState(false);
|
||||
@@ -209,7 +214,8 @@ const SettingsScreen: React.FC = () => {
|
||||
const [wakeStatus, setWakeStatus] = useState<string>('');
|
||||
const [wakeReadySound, setWakeReadySound] = useState<boolean>(true);
|
||||
const [wakeThreshold, setWakeThreshold] = useState<number>(WAKE_THRESHOLD_DEFAULT);
|
||||
const [passiveSec, setPassiveSec] = useState<number>(Math.round(PASSIVE_LISTEN_DEFAULT_MS / 1000));
|
||||
// Hintergrund-Wake: auch bei gesperrtem Bildschirm auf das Wake-Wort hoeren. Default aus.
|
||||
const [bgWake, setBgWake] = useState<boolean>(false);
|
||||
const [editingPath, setEditingPath] = useState(false);
|
||||
const [xttsVoice, setXttsVoice] = useState('');
|
||||
const [loadingVoice, setLoadingVoice] = useState<string | null>(null);
|
||||
@@ -298,11 +304,11 @@ const SettingsScreen: React.FC = () => {
|
||||
}
|
||||
}
|
||||
});
|
||||
AsyncStorage.getItem(CONV_WINDOW_STORAGE_KEY).then(saved => {
|
||||
AsyncStorage.getItem(STT_ENDPOINT_STORAGE_KEY).then(saved => {
|
||||
if (saved != null) {
|
||||
const n = parseFloat(saved);
|
||||
if (isFinite(n) && n >= CONV_WINDOW_MIN_SEC && n <= CONV_WINDOW_MAX_SEC) {
|
||||
setConvWindowSec(n);
|
||||
const n = parseInt(saved, 10);
|
||||
if (isFinite(n) && n >= STT_ENDPOINT_MIN_MS && n <= STT_ENDPOINT_MAX_MS) {
|
||||
setSttEndpointSec(n / 1000);
|
||||
}
|
||||
}
|
||||
});
|
||||
@@ -314,6 +320,7 @@ const SettingsScreen: React.FC = () => {
|
||||
}
|
||||
}
|
||||
});
|
||||
loadBargeInEnabled().then(setBargeIn).catch(() => {});
|
||||
AsyncStorage.getItem(VAD_SILENCE_DB_OVERRIDE_KEY).then(saved => {
|
||||
if (saved != null && saved !== '') {
|
||||
const n = parseFloat(saved);
|
||||
@@ -333,7 +340,7 @@ const SettingsScreen: React.FC = () => {
|
||||
});
|
||||
isWakeReadySoundEnabled().then(setWakeReadySound);
|
||||
loadWakeThreshold().then(setWakeThreshold).catch(() => {});
|
||||
loadPassiveListenMs().then(ms => setPassiveSec(Math.round(ms / 1000))).catch(() => {});
|
||||
loadBgWakeEnabled().then(setBgWake).catch(() => {});
|
||||
updateService.getApkCacheSize().then(setApkCacheInfo).catch(() => {});
|
||||
audioService.getTtsCacheSize().then(setTtsCacheInfo).catch(() => {});
|
||||
AsyncStorage.getItem('aria_xtts_voice').then(saved => {
|
||||
@@ -1651,72 +1658,56 @@ const SettingsScreen: React.FC = () => {
|
||||
{currentSection === 'voice_input' && (<>
|
||||
<Text style={styles.sectionTitle}>Spracheingabe</Text>
|
||||
<View style={styles.card}>
|
||||
<Text style={styles.toggleLabel}>Stille-Toleranz</Text>
|
||||
<View style={styles.toggleRow}>
|
||||
<View style={styles.toggleInfo}>
|
||||
<Text style={styles.toggleLabel}>Barge-in (unterbrechen)</Text>
|
||||
<Text style={styles.toggleHint}>
|
||||
AUS (empfohlen): ARIA spricht ihre Antwort ZU ENDE, dann geht das
|
||||
Mikro auf — sauber, kein Selbst-Echo, du hoerst sie ganz. AN: du
|
||||
kannst sie waehrend des Sprechens per Wake-Wort unterbrechen.
|
||||
</Text>
|
||||
</View>
|
||||
<Switch
|
||||
value={bargeIn}
|
||||
onValueChange={(v) => { setBargeIn(v); saveBargeInEnabled(v).catch(() => {}); }}
|
||||
trackColor={{ false: '#2A2A3E', true: '#0096FF' }}
|
||||
thumbColor={bargeIn ? '#FFFFFF' : '#666680'}
|
||||
/>
|
||||
</View>
|
||||
|
||||
<Text style={[styles.toggleLabel, {marginTop: 20}]}>Stille-Toleranz</Text>
|
||||
<Text style={styles.toggleHint}>
|
||||
Wie lange du eine Sprechpause machen darfst, bevor die Aufnahme
|
||||
automatisch beendet und gesendet wird. Hoeher = mehr Zeit zum
|
||||
Nachdenken; niedriger = schnelleres Senden.
|
||||
Default: {VAD_SILENCE_DEFAULT_SEC.toFixed(1)}s.
|
||||
Nachdenken (z.B. im Auto); niedriger = schnelleres Senden.
|
||||
Default: {(STT_ENDPOINT_DEFAULT_MS / 1000).toFixed(1)}s.
|
||||
</Text>
|
||||
<View style={styles.prerollRow}>
|
||||
<TouchableOpacity
|
||||
style={styles.prerollButton}
|
||||
onPress={() => {
|
||||
const next = Math.max(VAD_SILENCE_MIN_SEC, Math.round((vadSilenceSec - 0.5) * 10) / 10);
|
||||
setVadSilenceSec(next);
|
||||
AsyncStorage.setItem(VAD_SILENCE_STORAGE_KEY, String(next));
|
||||
const next = Math.max(STT_ENDPOINT_MIN_MS / 1000, Math.round((sttEndpointSec - 0.5) * 10) / 10);
|
||||
setSttEndpointSec(next);
|
||||
AsyncStorage.setItem(STT_ENDPOINT_STORAGE_KEY, String(Math.round(next * 1000)));
|
||||
}}
|
||||
disabled={vadSilenceSec <= VAD_SILENCE_MIN_SEC}
|
||||
disabled={sttEndpointSec <= STT_ENDPOINT_MIN_MS / 1000}
|
||||
>
|
||||
<Text style={styles.prerollButtonText}>−0.5</Text>
|
||||
</TouchableOpacity>
|
||||
<Text style={styles.prerollValue}>{vadSilenceSec.toFixed(1)} s</Text>
|
||||
<Text style={styles.prerollValue}>{sttEndpointSec.toFixed(1)} s</Text>
|
||||
<TouchableOpacity
|
||||
style={styles.prerollButton}
|
||||
onPress={() => {
|
||||
const next = Math.min(VAD_SILENCE_MAX_SEC, Math.round((vadSilenceSec + 0.5) * 10) / 10);
|
||||
setVadSilenceSec(next);
|
||||
AsyncStorage.setItem(VAD_SILENCE_STORAGE_KEY, String(next));
|
||||
const next = Math.min(STT_ENDPOINT_MAX_MS / 1000, Math.round((sttEndpointSec + 0.5) * 10) / 10);
|
||||
setSttEndpointSec(next);
|
||||
AsyncStorage.setItem(STT_ENDPOINT_STORAGE_KEY, String(Math.round(next * 1000)));
|
||||
}}
|
||||
disabled={vadSilenceSec >= VAD_SILENCE_MAX_SEC}
|
||||
disabled={sttEndpointSec >= STT_ENDPOINT_MAX_MS / 1000}
|
||||
>
|
||||
<Text style={styles.prerollButtonText}>+0.5</Text>
|
||||
</TouchableOpacity>
|
||||
</View>
|
||||
|
||||
<Text style={[styles.toggleLabel, {marginTop: 24}]}>Konversations-Fenster</Text>
|
||||
<Text style={styles.toggleHint}>
|
||||
Im Gespraechsmodus (Ohr-Button): nach ARIA's Antwort hast du so lange
|
||||
Zeit, weiter zu sprechen, bevor die Konversation automatisch beendet wird.
|
||||
Sprichst du nichts → Mikrofon zu.
|
||||
Default: {CONV_WINDOW_DEFAULT_SEC.toFixed(1)}s.
|
||||
</Text>
|
||||
<View style={styles.prerollRow}>
|
||||
<TouchableOpacity
|
||||
style={styles.prerollButton}
|
||||
onPress={() => {
|
||||
const next = Math.max(CONV_WINDOW_MIN_SEC, Math.round((convWindowSec - 1) * 10) / 10);
|
||||
setConvWindowSec(next);
|
||||
AsyncStorage.setItem(CONV_WINDOW_STORAGE_KEY, String(next));
|
||||
}}
|
||||
disabled={convWindowSec <= CONV_WINDOW_MIN_SEC}
|
||||
>
|
||||
<Text style={styles.prerollButtonText}>−1</Text>
|
||||
</TouchableOpacity>
|
||||
<Text style={styles.prerollValue}>{convWindowSec.toFixed(0)} s</Text>
|
||||
<TouchableOpacity
|
||||
style={styles.prerollButton}
|
||||
onPress={() => {
|
||||
const next = Math.min(CONV_WINDOW_MAX_SEC, Math.round((convWindowSec + 1) * 10) / 10);
|
||||
setConvWindowSec(next);
|
||||
AsyncStorage.setItem(CONV_WINDOW_STORAGE_KEY, String(next));
|
||||
}}
|
||||
disabled={convWindowSec >= CONV_WINDOW_MAX_SEC}
|
||||
>
|
||||
<Text style={styles.prerollButtonText}>+1</Text>
|
||||
</TouchableOpacity>
|
||||
</View>
|
||||
|
||||
<Text style={[styles.toggleLabel, {marginTop: 24}]}>Maximale Aufnahmedauer</Text>
|
||||
<Text style={styles.toggleHint}>
|
||||
Notbremse: nach so vielen Minuten wird die Aufnahme automatisch beendet,
|
||||
@@ -1749,56 +1740,10 @@ const SettingsScreen: React.FC = () => {
|
||||
</TouchableOpacity>
|
||||
</View>
|
||||
|
||||
<View style={{flexDirection: 'row', alignItems: 'center', marginTop: 24, gap: 8}}>
|
||||
<Text style={styles.toggleLabel}>Stille-Pegel (dB)</Text>
|
||||
<TouchableOpacity onPress={() => setShowVadInfo(true)} style={styles.infoBtn}>
|
||||
<Text style={styles.infoBtnText}>i</Text>
|
||||
</TouchableOpacity>
|
||||
</View>
|
||||
<Text style={styles.toggleHint}>
|
||||
Welcher Mikro-Pegel als "Stille" gilt. Standard: automatisch (Baseline aus
|
||||
den ersten 500ms). Manuell setzen wenn Auto nicht zuverlaessig greift.
|
||||
</Text>
|
||||
<View style={styles.prerollRow}>
|
||||
<TouchableOpacity
|
||||
style={styles.prerollButton}
|
||||
onPress={() => {
|
||||
const next = vadSilenceDb == null
|
||||
? VAD_SILENCE_DB_DEFAULT - 1
|
||||
: Math.max(VAD_SILENCE_DB_MIN, vadSilenceDb - 1);
|
||||
setVadSilenceDb(next);
|
||||
AsyncStorage.setItem(VAD_SILENCE_DB_OVERRIDE_KEY, String(next));
|
||||
}}
|
||||
>
|
||||
<Text style={styles.prerollButtonText}>−1</Text>
|
||||
</TouchableOpacity>
|
||||
<Text style={styles.prerollValue}>
|
||||
{vadSilenceDb == null ? 'auto' : `${vadSilenceDb} dB`}
|
||||
</Text>
|
||||
<TouchableOpacity
|
||||
style={styles.prerollButton}
|
||||
onPress={() => {
|
||||
const next = vadSilenceDb == null
|
||||
? VAD_SILENCE_DB_DEFAULT + 1
|
||||
: Math.min(VAD_SILENCE_DB_MAX, vadSilenceDb + 1);
|
||||
setVadSilenceDb(next);
|
||||
AsyncStorage.setItem(VAD_SILENCE_DB_OVERRIDE_KEY, String(next));
|
||||
}}
|
||||
>
|
||||
<Text style={styles.prerollButtonText}>+1</Text>
|
||||
</TouchableOpacity>
|
||||
</View>
|
||||
{vadSilenceDb != null && (
|
||||
<TouchableOpacity
|
||||
onPress={() => {
|
||||
setVadSilenceDb(null);
|
||||
AsyncStorage.removeItem(VAD_SILENCE_DB_OVERRIDE_KEY);
|
||||
}}
|
||||
style={{alignSelf: 'center', marginTop: 8, paddingVertical: 6, paddingHorizontal: 12}}
|
||||
>
|
||||
<Text style={{color: '#0096FF', fontSize: 13}}>↻ Auf automatisch zuruecksetzen</Text>
|
||||
</TouchableOpacity>
|
||||
)}
|
||||
{/* "Stille-Pegel (dB)"-Regler entfernt: der aktive Streaming-STT nutzt
|
||||
einen adaptiven Rausch-Boden (automatisch), ein manueller dB-Wert war
|
||||
wirkungslos. Rauschen-als-Wort verhindert das STT-Modell selbst
|
||||
(no_speech_prob-Filter), nicht die dB-Schwelle. */}
|
||||
</View>
|
||||
|
||||
<Modal
|
||||
@@ -1954,38 +1899,36 @@ const SettingsScreen: React.FC = () => {
|
||||
/>
|
||||
</View>
|
||||
|
||||
<Text style={[styles.toggleLabel, {marginTop: 20}]}>Weiterreden-Fenster (Gespraech)</Text>
|
||||
<Text style={styles.toggleHint}>
|
||||
Nach einer gesprochenen ARIA-Antwort kannst du so lange einfach
|
||||
weiterreden — ohne Wake-Word — bevor zurueck aufs Wake-Word geschaltet
|
||||
wird. Reine Steuerbefehle (z.B. „nächster Titel") beenden sofort.
|
||||
Default: {Math.round(PASSIVE_LISTEN_DEFAULT_MS / 1000)}s.
|
||||
</Text>
|
||||
<View style={styles.prerollRow}>
|
||||
<TouchableOpacity
|
||||
style={styles.prerollButton}
|
||||
onPress={() => {
|
||||
const next = Math.max(10, passiveSec - 5);
|
||||
setPassiveSec(next);
|
||||
savePassiveListenMs(next * 1000);
|
||||
<View style={[styles.toggleRow, {marginTop: 20, borderTopWidth: 1, borderTopColor: '#1E1E2E', paddingTop: 16}]}>
|
||||
<View style={styles.toggleInfo}>
|
||||
<Text style={styles.toggleLabel}>Auch bei gesperrtem Bildschirm zuhören</Text>
|
||||
<Text style={styles.toggleHint}>
|
||||
AUS (empfohlen): das Wake-Wort greift nur, wenn die App offen ist —
|
||||
im Hintergrund sind die meisten „Trigger" Fehlalarme (TV, Husten).
|
||||
AN: ARIA hört auch bei gesperrtem Bildschirm / im Hintergrund auf
|
||||
„{KEYWORD_LABELS[wakeKeyword as keyof typeof KEYWORD_LABELS] || wakeKeyword}" — mehr Fehlauslöser möglich.
|
||||
</Text>
|
||||
</View>
|
||||
<Switch
|
||||
value={bgWake}
|
||||
onValueChange={(val) => {
|
||||
setBgWake(val);
|
||||
saveBgWakeEnabled(val).catch(() => {});
|
||||
wakeWordService.setBgWakeEnabled(val);
|
||||
}}
|
||||
disabled={passiveSec <= 10}
|
||||
>
|
||||
<Text style={styles.prerollButtonText}>−5</Text>
|
||||
</TouchableOpacity>
|
||||
<Text style={styles.prerollValue}>{passiveSec} s</Text>
|
||||
<TouchableOpacity
|
||||
style={styles.prerollButton}
|
||||
onPress={() => {
|
||||
const next = Math.min(60, passiveSec + 5);
|
||||
setPassiveSec(next);
|
||||
savePassiveListenMs(next * 1000);
|
||||
}}
|
||||
disabled={passiveSec >= 60}
|
||||
>
|
||||
<Text style={styles.prerollButtonText}>+5</Text>
|
||||
</TouchableOpacity>
|
||||
trackColor={{ false: '#2A2A3E', true: '#0096FF' }}
|
||||
thumbColor={bgWake ? '#FFFFFF' : '#666680'}
|
||||
/>
|
||||
</View>
|
||||
|
||||
<Text style={[styles.toggleLabel, {marginTop: 20}]}>Weiterreden nach der Antwort</Text>
|
||||
<Text style={styles.toggleHint}>
|
||||
Nach einer gesprochenen ARIA-Antwort geht das Mikro auf — du kannst ohne
|
||||
Wake-Word weiterreden. Fängst du nicht innerhalb der „Stille-Toleranz"
|
||||
(Sektion Spracheingabe) an, geht's zurück aufs Wake-Word. Reine
|
||||
Steuerbefehle beenden sofort. Ein separates Zeitfenster gibt es nicht
|
||||
mehr — es zählt überall derselbe Stille-Wert.
|
||||
</Text>
|
||||
</View>
|
||||
</>)}
|
||||
|
||||
|
||||
@@ -0,0 +1,104 @@
|
||||
/**
|
||||
* ariaView — Empfaenger der von ARIA komponierten RAEUMLICHEN Ansichten (M1).
|
||||
*
|
||||
* Fluss: ARIA ruft im Brain `present_view` → Brain-Event `aria_view` → Bridge →
|
||||
* RVS `aria_view` → hier gepuffert → WorkspaceCanvas rendert Orb + Karten, die
|
||||
* auf der Flaeche materialisieren.
|
||||
*
|
||||
* Der Service haelt pro Projekt die AKTUELLE View-Spec, damit eine spaet
|
||||
* gemountete Canvas-Kachel sofort den Ist-Stand bekommt. Muster wie
|
||||
* services/codeFile.ts (Singleton, rvs.onMessage).
|
||||
*
|
||||
* Die Karten-Typen sind bewusst offen (string), damit spaetere Renderer (vnc,
|
||||
* chart, file …) ohne Service-Aenderung dazukommen. Der jeweilige Client-Renderer
|
||||
* entscheidet, was er mit einem unbekannten Typ macht (i.d.R. ignorieren).
|
||||
*/
|
||||
|
||||
import rvs, { RVSMessage } from './rvs';
|
||||
|
||||
export type OrbState = 'idle' | 'listening' | 'thinking' | 'speaking' | 'working';
|
||||
|
||||
export interface ViewMarker {
|
||||
lat: number;
|
||||
lon: number;
|
||||
label?: string;
|
||||
}
|
||||
|
||||
export interface ViewCard {
|
||||
type: 'text' | 'image' | 'map' | 'code' | 'list' | string;
|
||||
title?: string;
|
||||
md?: string; // text/list
|
||||
src?: string; // image
|
||||
markers?: ViewMarker[]; // map
|
||||
path?: string; // code
|
||||
lang?: string; // code
|
||||
// Zukuenftige Kartenfelder ohne Service-Aenderung:
|
||||
[k: string]: any;
|
||||
}
|
||||
|
||||
export interface ViewSpec {
|
||||
cards: ViewCard[];
|
||||
orb?: OrbState;
|
||||
title?: string;
|
||||
}
|
||||
|
||||
export interface AriaView {
|
||||
projectId: string;
|
||||
view: ViewSpec;
|
||||
clientMsgId?: string;
|
||||
ts: number;
|
||||
}
|
||||
|
||||
type ViewSub = (v: AriaView) => void;
|
||||
|
||||
class AriaViewService {
|
||||
private views = new Map<string, AriaView>();
|
||||
private subs: ViewSub[] = [];
|
||||
|
||||
constructor() {
|
||||
rvs.onMessage((m) => this.onMessage(m));
|
||||
}
|
||||
|
||||
private onMessage(m: RVSMessage): void {
|
||||
if (m.type !== 'aria_view') return;
|
||||
const p = (m.payload || {}) as any;
|
||||
const raw = (p.view || {}) as any;
|
||||
const cards: ViewCard[] = Array.isArray(raw.cards) ? raw.cards : [];
|
||||
if (cards.length === 0) return; // leere Ansicht ignorieren
|
||||
const view: ViewSpec = {
|
||||
cards,
|
||||
orb: raw.orb || 'speaking',
|
||||
title: raw.title || '',
|
||||
};
|
||||
const projectId: string = p.projectId || '';
|
||||
const entry: AriaView = {
|
||||
projectId,
|
||||
view,
|
||||
clientMsgId: p.clientMsgId || '',
|
||||
ts: Date.now(),
|
||||
};
|
||||
this.views.set(projectId, entry);
|
||||
this.subs.forEach((cb) => {
|
||||
try { cb(entry); } catch {}
|
||||
});
|
||||
}
|
||||
|
||||
/** Aktuelle Ansicht eines Projekts (leer = Hauptchat). */
|
||||
getView(projectId: string): AriaView | undefined {
|
||||
return this.views.get(projectId || '');
|
||||
}
|
||||
|
||||
/** Registriert einen Listener fuer neue Ansichten. */
|
||||
subscribe(cb: ViewSub): () => void {
|
||||
this.subs.push(cb);
|
||||
return () => { this.subs = this.subs.filter((s) => s !== cb); };
|
||||
}
|
||||
|
||||
/** Ansicht eines Projekts verwerfen (z.B. wenn der User sie wegwischt). */
|
||||
clear(projectId: string): void {
|
||||
this.views.delete(projectId || '');
|
||||
}
|
||||
}
|
||||
|
||||
const ariaView = new AriaViewService();
|
||||
export default ariaView;
|
||||
@@ -143,23 +143,34 @@ export const VAD_SILENCE_MIN_SEC = 1.0;
|
||||
export const VAD_SILENCE_MAX_SEC = 8.0;
|
||||
export const VAD_SILENCE_STORAGE_KEY = 'aria_vad_silence_sec';
|
||||
|
||||
// Konversations-Fenster (in Sekunden) — nach ARIA's Antwort hat der User so
|
||||
// lange Zeit, im Gespraechsmodus weiter zu sprechen, ohne dass die Konversation
|
||||
// beendet wird. Sprichst du im Fenster nichts → Konversation aus.
|
||||
export const CONV_WINDOW_DEFAULT_SEC = 8.0;
|
||||
export const CONV_WINDOW_MIN_SEC = 3.0;
|
||||
export const CONV_WINDOW_MAX_SEC = 20.0;
|
||||
export const CONV_WINDOW_STORAGE_KEY = 'aria_conv_window_sec';
|
||||
|
||||
// STT-Endpoint (ms Stille bis "fertig gesprochen"). Zu kurz = schneidet mitten
|
||||
// im Satz ab, besonders im Auto wo man mit Pausen spricht (Reproduktion: die
|
||||
// 11.8s-Frage wurde bei "…ohne dass ein" gekappt). 1500 war zu aggressiv;
|
||||
// 2400 default, im Auto ggf. hoeher. Konfigurierbar in den Settings.
|
||||
// im Satz ab, besonders im Auto oder wenn man zum Nachdenken pausiert. 1500 war
|
||||
// zu aggressiv; 2400 default, bis 8s hoch stellbar (Denkpausen). In den Settings
|
||||
// unter "Stille-Toleranz" konfigurierbar.
|
||||
export const STT_ENDPOINT_DEFAULT_MS = 2400;
|
||||
export const STT_ENDPOINT_MIN_MS = 1000;
|
||||
export const STT_ENDPOINT_MAX_MS = 4000;
|
||||
export const STT_ENDPOINT_MAX_MS = 8000; // bis 8s: genug Zeit zum Ueberlegen
|
||||
export const STT_ENDPOINT_STORAGE_KEY = 'aria_stt_endpoint_ms';
|
||||
|
||||
// Barge-in-Modus: darf man ARIA waehrend ihrer TTS-Antwort unterbrechen (reden)?
|
||||
// Default AUS = sauberes Halb-Duplex (ARIA spricht aus, DANN oeffnet das Mikro —
|
||||
// kein Selbst-Echo, kein Mischmasch). AN = waehrend TTS auf Wake-Wort lauschen.
|
||||
export const BARGE_IN_STORAGE_KEY = 'aria_barge_in_enabled';
|
||||
|
||||
export async function loadBargeInEnabled(): Promise<boolean> {
|
||||
try {
|
||||
return (await AsyncStorage.getItem(BARGE_IN_STORAGE_KEY)) === 'true';
|
||||
} catch {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
export async function saveBargeInEnabled(enabled: boolean): Promise<void> {
|
||||
try {
|
||||
await AsyncStorage.setItem(BARGE_IN_STORAGE_KEY, String(enabled));
|
||||
} catch {}
|
||||
}
|
||||
|
||||
export async function loadSttEndpointMs(): Promise<number> {
|
||||
try {
|
||||
const raw = await AsyncStorage.getItem(STT_ENDPOINT_STORAGE_KEY);
|
||||
@@ -189,18 +200,6 @@ export async function loadTtsSpeed(): Promise<number> {
|
||||
return TTS_SPEED_DEFAULT;
|
||||
}
|
||||
|
||||
export async function loadConvWindowMs(): Promise<number> {
|
||||
try {
|
||||
const raw = await AsyncStorage.getItem(CONV_WINDOW_STORAGE_KEY);
|
||||
if (raw != null) {
|
||||
const n = parseFloat(raw);
|
||||
if (isFinite(n) && n >= CONV_WINDOW_MIN_SEC && n <= CONV_WINDOW_MAX_SEC) {
|
||||
return Math.round(n * 1000);
|
||||
}
|
||||
}
|
||||
} catch {}
|
||||
return Math.round(CONV_WINDOW_DEFAULT_SEC * 1000);
|
||||
}
|
||||
|
||||
async function loadVadSilenceMs(): Promise<number> {
|
||||
try {
|
||||
@@ -1145,7 +1144,7 @@ class AudioService {
|
||||
speed: typeof opts.speed === 'number' ? opts.speed : 1.0,
|
||||
interrupted: !!opts.interrupted,
|
||||
location: opts.location || null,
|
||||
endpointMs: typeof opts.endpointMs === 'number' ? opts.endpointMs : 1500,
|
||||
endpointMs: typeof opts.endpointMs === 'number' ? opts.endpointMs : STT_ENDPOINT_DEFAULT_MS,
|
||||
hardCapMs: typeof opts.hardCapMs === 'number' ? opts.hardCapMs : 60000,
|
||||
sampleRate: 16000,
|
||||
projectId: opts.projectId || '',
|
||||
|
||||
@@ -168,6 +168,9 @@ export interface Project {
|
||||
// Optionale absolute noVNC-URL (falls der Desktop direkt erreichbar ist,
|
||||
// sonst laeuft der VNC-Stream als RFB-Bytes durch RVS).
|
||||
desktop_url?: string;
|
||||
// Automatisch: hat das Projekt Dateien in /shared/projects/<id>/? → Datei-Symbol.
|
||||
has_files?: boolean;
|
||||
file_count?: number;
|
||||
}
|
||||
|
||||
export interface ProjectStatus {
|
||||
@@ -176,6 +179,19 @@ export interface ProjectStatus {
|
||||
projects: Project[];
|
||||
}
|
||||
|
||||
/** QEMU-VM eines Projekts (Registry + Live-Status). */
|
||||
export interface ProjectVm {
|
||||
name: string;
|
||||
arch: string;
|
||||
iso?: string;
|
||||
vnc_display: number;
|
||||
mem: number;
|
||||
running?: boolean;
|
||||
vnc_port?: number;
|
||||
boot_cmd?: string;
|
||||
created_at?: number;
|
||||
}
|
||||
|
||||
/** Queue-Status pro Kontext — was gerade arbeitet, was wartet.
|
||||
* Key "__main__" = Hauptchat, sonst project_id. */
|
||||
export interface QueueContextStatus {
|
||||
@@ -600,14 +616,58 @@ export const brainApi = {
|
||||
});
|
||||
},
|
||||
|
||||
/** Projekt-Metadaten patchen (name / description / hidden). */
|
||||
updateProject(projectId: string, patch: Partial<Pick<Project, 'name' | 'description' | 'hidden'>>): Promise<Project> {
|
||||
/** Projekt-Metadaten patchen (name / description / hidden / kind). */
|
||||
updateProject(projectId: string, patch: Partial<Pick<Project, 'name' | 'description' | 'hidden' | 'kind'>>): Promise<Project> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}`, {
|
||||
method: 'PATCH',
|
||||
body: patch,
|
||||
});
|
||||
},
|
||||
|
||||
/** Projekt manuell als Code-Projekt / normalen Chat markieren. */
|
||||
setProjectKind(projectId: string, kind: 'code' | 'chat'): Promise<Project> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}`, {
|
||||
method: 'PATCH',
|
||||
body: { kind },
|
||||
});
|
||||
},
|
||||
|
||||
/** Vorhandene Code-Dateien eines Projekts auflisten (/shared/projects/<id>/). */
|
||||
listProjectFiles(projectId: string): Promise<{ projectId: string; files: { path: string; size: number }[] }> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/files`);
|
||||
},
|
||||
|
||||
/** Inhalt einer Projekt-Datei laden (Text). */
|
||||
readProjectFile(projectId: string, path: string): Promise<{ projectId: string; path: string; content: string }> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/file?path=${encodeURIComponent(path)}`);
|
||||
},
|
||||
|
||||
/** Binaere Projekt-Datei (z.B. Bild) als Base64 + MIME laden. */
|
||||
readProjectFileBinary(projectId: string, path: string): Promise<{ path: string; mime: string; base64: string }> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/file?binary=1&path=${encodeURIComponent(path)}`, { timeoutMs: 30000 });
|
||||
},
|
||||
|
||||
// ── QEMU-VMs pro Projekt ─────────────────────────────────────────
|
||||
listProjectVms(projectId: string): Promise<{ projectId: string; vms: ProjectVm[] }> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/vms`, { timeoutMs: 20000 });
|
||||
},
|
||||
addProjectVm(projectId: string, body: { name: string; arch?: string; iso?: string; vnc_display?: number; mem?: number; create_disk?: boolean; size?: string }): Promise<ProjectVm> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/vms`, { method: 'POST', body, timeoutMs: 30000 });
|
||||
},
|
||||
removeProjectVm(projectId: string, name: string, purge = false): Promise<{ ok: boolean }> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/vms/${encodeURIComponent(name)}?purge=${purge ? 'true' : 'false'}`, { method: 'DELETE' });
|
||||
},
|
||||
bootProjectVm(projectId: string, name: string): Promise<{ ok: boolean; vnc_port: number; output: string }> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/vms/${encodeURIComponent(name)}/boot`, { method: 'POST', timeoutMs: 45000 });
|
||||
},
|
||||
stopProjectVm(projectId: string, name: string): Promise<{ ok: boolean; output: string }> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/vms/${encodeURIComponent(name)}/stop`, { method: 'POST', timeoutMs: 30000 });
|
||||
},
|
||||
/** Screenshot der laufenden VM (Base64-PNG) — VM-Bildschirm ohne Live-VNC. */
|
||||
screenshotProjectVm(projectId: string, name: string): Promise<{ ok: boolean; filename: string; base64: string }> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}/vms/${encodeURIComponent(name)}/screenshot`, { method: 'POST', timeoutMs: 30000 });
|
||||
},
|
||||
|
||||
/** Projekt verstecken / wieder sichtbar machen (bleibt voll nutzbar). */
|
||||
setProjectHidden(projectId: string, hidden: boolean): Promise<Project> {
|
||||
return _send(`/projects/${encodeURIComponent(projectId)}`, {
|
||||
|
||||
@@ -145,6 +145,17 @@ class GpsTrackingService {
|
||||
// liefert im Hintergrund keine Updates (nur Heartbeat sendet alte Werte).
|
||||
const bgEnabled = await isBackgroundGpsEnabled();
|
||||
if (bgEnabled) {
|
||||
// Ohne ACCESS_BACKGROUND_LOCATION liefert watchPosition im Hintergrund
|
||||
// NICHTS (Android 10+) → der Foreground-Service allein bringt nichts, und
|
||||
// genau der Fall "Ankunft waehrend der Fahrt, Screen aus" faellt durch.
|
||||
// Deshalb erst die Permission sicherstellen (oeffnet ggf. die Android-
|
||||
// Settings fuer "Immer erlauben"), DANN den Location-Foreground-Service
|
||||
// hochziehen — der haelt den Prozess wach, sodass watchPosition + der
|
||||
// 60s-Heartbeat auch unter Doze weiterlaufen.
|
||||
const bgOk = await ensureBackgroundLocationPermission();
|
||||
if (!bgOk) {
|
||||
console.warn('[gps-track] Background-Permission fehlt — Tracking nur im Vordergrund zuverlaessig');
|
||||
}
|
||||
try { await acquireBackgroundAudio('location'); } catch {}
|
||||
}
|
||||
try {
|
||||
|
||||
@@ -7,7 +7,7 @@
|
||||
*/
|
||||
|
||||
import AsyncStorage from '@react-native-async-storage/async-storage';
|
||||
import { Platform, DeviceEventEmitter } from 'react-native';
|
||||
import { Platform, DeviceEventEmitter, AppState } from 'react-native';
|
||||
import rvs from './rvs';
|
||||
|
||||
// Lokales Event damit die SettingsScreen Live Logs / Events Tabs
|
||||
@@ -38,6 +38,23 @@ const noop = () => {};
|
||||
let _verbose = true;
|
||||
let _debugLogsToBridge = false;
|
||||
|
||||
// ─── Crash-Kontext ohne adb ─────────────────────────────────────────
|
||||
// Ein RUN_MARKER bleibt gesetzt, solange die App AKTIV laeuft; bei sauberem
|
||||
// Wechsel in den Hintergrund wird er geloescht. Ist er beim naechsten Start
|
||||
// noch da, ist der vorige Lauf unsauber gestorben (nativer Crash/OOM — der
|
||||
// schreibt KEINEN JS-Fehler, taucht also sonst nirgends auf). Wir melden das
|
||||
// dann via RVS mit dem letzten Breadcrumb (was die App zuletzt tat).
|
||||
const RUN_MARKER_KEY = 'aria_run_marker';
|
||||
const BREADCRUMB_KEY = 'aria_last_breadcrumb';
|
||||
let _breadcrumb: { ts: number; scope: string; message: string } = { ts: 0, scope: '', message: '' };
|
||||
let _breadcrumbDirty = false;
|
||||
|
||||
/** Letzte App-Aktivitaet merken — Crash-Kontext fuer den naechsten Boot. */
|
||||
export function noteBreadcrumb(scope: string, message: string): void {
|
||||
_breadcrumb = { ts: Date.now(), scope: scope || '', message: String(message || '').slice(0, 120) };
|
||||
_breadcrumbDirty = true;
|
||||
}
|
||||
|
||||
function applyState(): void {
|
||||
console.log = _verbose ? originalLog : noop;
|
||||
}
|
||||
@@ -53,6 +70,45 @@ export async function initLogger(): Promise<void> {
|
||||
_debugLogsToBridge = d === 'true'; // default: false
|
||||
} catch {}
|
||||
applyState();
|
||||
await _initCrashDetection();
|
||||
}
|
||||
|
||||
// Native-Crash-Erkennung (ohne adb) — siehe RUN_MARKER-Kommentar oben.
|
||||
async function _initCrashDetection(): Promise<void> {
|
||||
try {
|
||||
const marker = await AsyncStorage.getItem(RUN_MARKER_KEY);
|
||||
if (marker) {
|
||||
let bc: any = {};
|
||||
try { bc = JSON.parse((await AsyncStorage.getItem(BREADCRUMB_KEY)) || '{}'); } catch {}
|
||||
const gap = bc && bc.ts ? Math.round((Date.now() - bc.ts) / 1000) : -1;
|
||||
// Verzoegert melden — RVS ist beim Boot oft noch nicht verbunden.
|
||||
setTimeout(() => {
|
||||
reportAppError({
|
||||
scope: 'app.crash-detected',
|
||||
level: 'warn',
|
||||
message: `Voriger Lauf ohne sauberes Shutdown beendet (nativer Crash/OOM?). `
|
||||
+ `Letzte Aktivitaet: [${(bc && bc.scope) || '?'}] ${(bc && bc.message) || '?'}`
|
||||
+ (gap >= 0 ? ` (vor ~${gap}s)` : ''),
|
||||
});
|
||||
}, 6000);
|
||||
}
|
||||
await AsyncStorage.setItem(RUN_MARKER_KEY, String(Date.now()));
|
||||
} catch {}
|
||||
// Breadcrumb throttled persistieren (alle 5s, nur wenn geaendert).
|
||||
setInterval(() => {
|
||||
if (_breadcrumbDirty) {
|
||||
_breadcrumbDirty = false;
|
||||
AsyncStorage.setItem(BREADCRUMB_KEY, JSON.stringify(_breadcrumb)).catch(() => {});
|
||||
}
|
||||
}, 5000);
|
||||
// Sauberer Hintergrund-Wechsel → Marker weg (kein Crash). Rueckkehr → wieder
|
||||
// scharf. So melden nur echte Aktiv-Crashes, kein normales Backgrounden.
|
||||
try {
|
||||
AppState.addEventListener('change', (s) => {
|
||||
if (s === 'background') AsyncStorage.removeItem(RUN_MARKER_KEY).catch(() => {});
|
||||
else if (s === 'active') AsyncStorage.setItem(RUN_MARKER_KEY, String(Date.now())).catch(() => {});
|
||||
});
|
||||
} catch {}
|
||||
}
|
||||
|
||||
export function isVerboseLogging(): boolean {
|
||||
@@ -94,6 +150,7 @@ let _reportingInstalled = false;
|
||||
/** Schickt einen App-Fehler via RVS an die Bridge. */
|
||||
export function reportAppError(ev: AppErrorEvent): void {
|
||||
const ts = Date.now();
|
||||
noteBreadcrumb(ev.scope, ev.message);
|
||||
try {
|
||||
rvs.send('app_log' as any, {
|
||||
ts,
|
||||
@@ -128,6 +185,9 @@ export function reportAppError(ev: AppErrorEvent): void {
|
||||
* Default aus damit Mama-Modus keine Disk-Schreiblast hat. Error-Reports
|
||||
* (reportAppError) gehen weiterhin IMMER durch. */
|
||||
export function reportAppDebug(scope: string, message: string): void {
|
||||
// Breadcrumb IMMER aktualisieren (auch wenn Debug-Logs-an-Bridge aus ist) —
|
||||
// fuer den Crash-Kontext beim naechsten Boot.
|
||||
noteBreadcrumb(scope, message);
|
||||
if (!_debugLogsToBridge) return;
|
||||
const ts = Date.now();
|
||||
const trimmed = String(message).slice(0, 2000);
|
||||
|
||||
@@ -0,0 +1,57 @@
|
||||
/**
|
||||
* viewMode — App-Ansicht: 'compact' (klassischer Vollbild-Chat wie vor 0.2.2.0)
|
||||
* oder 'cockpit' (zoombarer Kachel-Desktop).
|
||||
*
|
||||
* Default 'compact' → fuer normale Nutzung aendert sich nichts (Mama-tauglich).
|
||||
* Umschaltbar ueber den Header-Button; persistiert in AsyncStorage. Muster wie
|
||||
* services/rvs.ts (Singleton mit Listener-Liste).
|
||||
*/
|
||||
|
||||
import AsyncStorage from '@react-native-async-storage/async-storage';
|
||||
|
||||
export type ViewModeValue = 'compact' | 'cockpit';
|
||||
|
||||
const KEY = 'aria_view_mode';
|
||||
type Sub = (mode: ViewModeValue) => void;
|
||||
|
||||
class ViewMode {
|
||||
private mode: ViewModeValue = 'compact';
|
||||
private subs: Sub[] = [];
|
||||
private loaded = false;
|
||||
|
||||
constructor() {
|
||||
AsyncStorage.getItem(KEY).then((v) => {
|
||||
if (v === 'cockpit' || v === 'compact') this.mode = v;
|
||||
this.loaded = true;
|
||||
this.emit();
|
||||
}).catch(() => { this.loaded = true; });
|
||||
}
|
||||
|
||||
get(): ViewModeValue { return this.mode; }
|
||||
isLoaded(): boolean { return this.loaded; }
|
||||
|
||||
set(mode: ViewModeValue): void {
|
||||
if (this.mode === mode) return;
|
||||
this.mode = mode;
|
||||
AsyncStorage.setItem(KEY, mode).catch(() => {});
|
||||
this.emit();
|
||||
}
|
||||
|
||||
toggle(): void {
|
||||
this.set(this.mode === 'compact' ? 'cockpit' : 'compact');
|
||||
}
|
||||
|
||||
subscribe(cb: Sub): () => void {
|
||||
this.subs.push(cb);
|
||||
cb(this.mode);
|
||||
return () => { this.subs = this.subs.filter((s) => s !== cb); };
|
||||
}
|
||||
|
||||
private emit(): void {
|
||||
const m = this.mode;
|
||||
this.subs.forEach((cb) => cb(m));
|
||||
}
|
||||
}
|
||||
|
||||
const viewMode = new ViewMode();
|
||||
export default viewMode;
|
||||
@@ -30,34 +30,22 @@ type PassiveListenCallback = () => void;
|
||||
|
||||
export type WakeWordState = 'off' | 'armed' | 'conversing' | 'listening';
|
||||
|
||||
/** Default-Dauer fuer den Passive-Listen-Modus nach einer Konversation —
|
||||
* in dem Fenster braucht's kein Wake-Word, Speaker-ID-Filter haelt
|
||||
* fremde Stimmen raus (TV, Familie). 30s default; konfigurierbar. */
|
||||
export const PASSIVE_LISTEN_DEFAULT_MS = 30_000;
|
||||
export const PASSIVE_LISTEN_STORAGE_KEY = 'aria_passive_listen_ms';
|
||||
|
||||
export async function loadPassiveListenMs(): Promise<number> {
|
||||
try {
|
||||
const raw = await AsyncStorage.getItem(PASSIVE_LISTEN_STORAGE_KEY);
|
||||
if (raw) {
|
||||
const n = parseInt(raw, 10);
|
||||
if (isFinite(n) && n >= 0 && n <= 120_000) return n;
|
||||
}
|
||||
} catch {}
|
||||
return PASSIVE_LISTEN_DEFAULT_MS;
|
||||
}
|
||||
|
||||
export async function savePassiveListenMs(ms: number): Promise<void> {
|
||||
await AsyncStorage.setItem(PASSIVE_LISTEN_STORAGE_KEY, String(ms));
|
||||
}
|
||||
/** Reine HANG-Notbremse fuer den Passive-Listen-Modus. Das echte Ende regelt IMMER
|
||||
* die passive Aufnahme selbst: Stille-Toleranz (User pausiert), No-Speech (User
|
||||
* sagt gar nichts) oder Hard-Cap (max. Aufnahmedauer, ~5min) → ChatScreen ruft
|
||||
* dann exitPassiveListening. Dieser Timer darf aktives Reden NIE abschneiden —
|
||||
* deshalb LÄNGER als der Hard-Cap (nur falls ein Endpoint-Event mal verloren geht
|
||||
* und der State sonst ewig 'listening' bliebe). Das alte 30s-Fenster, das lange
|
||||
* Antworten mitten im Satz kappte, ist damit raus. */
|
||||
const PASSIVE_BACKSTOP_MS = 10 * 60_000;
|
||||
|
||||
export const WAKE_KEYWORD_STORAGE = 'aria_wake_keyword';
|
||||
|
||||
// Wake-Word-Empfindlichkeit (openWakeWord-Threshold). Hoeher = strenger =
|
||||
// weniger Fehlauslösung (z.B. durch Musik/Radio ueber die Auto-Lautsprecher,
|
||||
// die das Mikro mithoert — der App-Echo-Canceler kann nur ARIAs eigenes TTS
|
||||
// rausrechnen, NICHT Spotify). Default 0.6 (war 0.5). 0..1.
|
||||
export const WAKE_THRESHOLD_DEFAULT = 0.6;
|
||||
// weniger Fehlauslösung, aber man muss deutlicher/lauter sprechen (fuehlt sich
|
||||
// "traege" an). Fehlausloeser werden ueber Speaker-ID (E3) ohnehin verworfen,
|
||||
// deshalb darf der Default empfindlicher sein. 0.45 (war 0.6/0.5). 0..1.
|
||||
export const WAKE_THRESHOLD_DEFAULT = 0.45;
|
||||
export const WAKE_THRESHOLD_MIN = 0.3;
|
||||
export const WAKE_THRESHOLD_MAX = 0.9;
|
||||
export const WAKE_THRESHOLD_STORAGE_KEY = 'aria_wake_threshold';
|
||||
@@ -77,6 +65,28 @@ export async function saveWakeThreshold(v: number): Promise<void> {
|
||||
await AsyncStorage.setItem(WAKE_THRESHOLD_STORAGE_KEY, String(v));
|
||||
}
|
||||
|
||||
// Hintergrund-Wake: darf das Wake-Wort auch triggern, wenn die App im
|
||||
// Hintergrund / der Bildschirm gesperrt ist? Default AUS — im Hintergrund
|
||||
// sind die meisten „Trigger" Fehlalarme (TV, Husten, AudioFocus-Spikes).
|
||||
// AN = auch bei gesperrtem Bildschirm zuhoeren. Die native Erkennung laeuft
|
||||
// ohnehin durch (Foreground-Service + Wake-Locks) — dieser Schalter oeffnet
|
||||
// nur das JS-Gate in onWakeDetected.
|
||||
export const BG_WAKE_STORAGE_KEY = 'aria_bg_wake_enabled';
|
||||
|
||||
export async function loadBgWakeEnabled(): Promise<boolean> {
|
||||
try {
|
||||
return (await AsyncStorage.getItem(BG_WAKE_STORAGE_KEY)) === 'true';
|
||||
} catch {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
export async function saveBgWakeEnabled(enabled: boolean): Promise<void> {
|
||||
try {
|
||||
await AsyncStorage.setItem(BG_WAKE_STORAGE_KEY, String(enabled));
|
||||
} catch {}
|
||||
}
|
||||
|
||||
/** Verfuegbare Wake-Words — entsprechen den .onnx Dateien in
|
||||
* android/app/src/main/assets/openwakeword/. Custom-Keywords (eigenes
|
||||
* Training via openwakeword Notebook) muessen aktuell als Asset eingebaut
|
||||
@@ -103,7 +113,9 @@ export const KEYWORD_LABELS: Record<WakeKeyword, string> = {
|
||||
// Detection-Tuning. Threshold ist ueber die Settings konfigurierbar
|
||||
// (loadWakeThreshold) — der Wert hier ist nur der Fallback.
|
||||
const DEFAULT_THRESHOLD = WAKE_THRESHOLD_DEFAULT;
|
||||
const DEFAULT_PATIENCE = 2;
|
||||
// patience=1 statt 2: nur EIN Frame ueber Threshold noetig → deutlich schneller.
|
||||
// Speaker-ID filtert Fehlausloeser, also ist das vertretbar.
|
||||
const DEFAULT_PATIENCE = 1;
|
||||
const DEFAULT_DEBOUNCE_MS = 1500;
|
||||
|
||||
interface OpenWakeWordModule {
|
||||
@@ -143,6 +155,10 @@ class WakeWordService {
|
||||
* Hintergrund-Detections sind quasi immer false-positives (TV, Husten,
|
||||
* AudioFocus-Switch beim Wechsel zu Musik etc.). */
|
||||
private inBackground: boolean = false;
|
||||
/** Wenn true: Wake-Wort triggert auch im Hintergrund / bei gesperrtem
|
||||
* Bildschirm. Default false. Wird beim Arm aus AsyncStorage geladen und
|
||||
* bei Aenderung in den Einstellungen via setBgWakeEnabled() aktualisiert. */
|
||||
private bgWakeEnabled: boolean = false;
|
||||
/** Re-Entry-Guard fuer onWakeDetected: native kann mehrere
|
||||
* WakeWordDetected-Events emitten BEVOR OpenWakeWord.stop() in JS
|
||||
* resolved (Bridge-Queue + Doze-Backlog). Mit dem Flag wird das zweite
|
||||
@@ -150,8 +166,9 @@ class WakeWordService {
|
||||
* Ausnahme: bargeListening → Barge-In ist ein legitimer neuer Trigger
|
||||
* waehrend ARIA noch redet, NICHT vom Guard blockieren. */
|
||||
private detectionInProgress: boolean = false;
|
||||
/** Passive-Listen-Timer: feuert nach PASSIVE_LISTEN_MS ohne Stefan-Speech,
|
||||
* beendet den listening-State und geht zurueck zu armed. */
|
||||
/** Passive-Listen-Backstop-Timer: Notbremse (PASSIVE_BACKSTOP_MS). Normal endet
|
||||
* das Fenster ueber die Stille-Toleranz der Aufnahme; feuert dieser Timer
|
||||
* trotzdem, zurueck zu armed. */
|
||||
private passiveListenTimer: ReturnType<typeof setTimeout> | null = null;
|
||||
/** Callbacks fuer den Eintritt in Passive-Listen — ChatScreen startet
|
||||
* hier eine streaming-Aufnahme OHNE User-Bubble (passiv lauschen). */
|
||||
@@ -223,7 +240,8 @@ class WakeWordService {
|
||||
this.initInProgress = (async () => {
|
||||
try {
|
||||
const threshold = await loadWakeThreshold();
|
||||
console.log('[WakeWord] init mit threshold=%s', threshold);
|
||||
this.bgWakeEnabled = await loadBgWakeEnabled();
|
||||
console.log('[WakeWord] init mit threshold=%s, bgWake=%s', threshold, this.bgWakeEnabled);
|
||||
await OpenWakeWord.init(this.keyword, threshold, DEFAULT_PATIENCE, DEFAULT_DEBOUNCE_MS);
|
||||
// Subscribe nur einmal
|
||||
if (!this.eventSub) {
|
||||
@@ -310,7 +328,7 @@ class WakeWordService {
|
||||
/** Cooldown setzen — alle Wake-Word-Detections in den naechsten ms ignorieren.
|
||||
* Wird beim App-Resume gerufen weil AppState-Wechsel Audio-Spikes erzeugen
|
||||
* die openWakeWord faelschlich als Trigger interpretiert. */
|
||||
setResumeCooldown(ms: number = 1500): void {
|
||||
setResumeCooldown(ms: number = 500): void {
|
||||
this.cooldownUntilMs = Date.now() + ms;
|
||||
console.log('[WakeWord] Cooldown aktiv fuer %dms', ms);
|
||||
}
|
||||
@@ -320,23 +338,31 @@ class WakeWordService {
|
||||
* was als „Wake-Word" reinkommt ist Husten/TV/AudioFocus-Switch. */
|
||||
setBackground(): void {
|
||||
this.inBackground = true;
|
||||
console.log('[WakeWord] App im Hintergrund — Detections gesperrt');
|
||||
console.log('[WakeWord] App im Hintergrund — Detections %s',
|
||||
this.bgWakeEnabled ? 'AKTIV (Hintergrund-Wake an)' : 'gesperrt');
|
||||
}
|
||||
|
||||
/** App im Vordergrund: Detections wieder freigeben, plus 3s Cooldown
|
||||
* als Schutz gegen den AudioFocus-/AudioTrack-Spike der direkt nach
|
||||
* dem Resume kommt. Ersetzt das alte setResumeCooldown(3000)-Pattern. */
|
||||
/** Hintergrund-Wake ein/aus schalten (aus den Einstellungen). */
|
||||
setBgWakeEnabled(enabled: boolean): void {
|
||||
this.bgWakeEnabled = enabled;
|
||||
console.log('[WakeWord] Hintergrund-Wake = %s', enabled);
|
||||
}
|
||||
|
||||
/** App im Vordergrund: Detections wieder freigeben, plus kurzer Cooldown
|
||||
* als Schutz gegen den AudioFocus-/AudioTrack-Spike direkt nach dem Resume.
|
||||
* 1s statt 3s — 3s hat sich "traege" angefuehlt (Trigger direkt nach dem
|
||||
* App-Oeffnen wurden verschluckt). */
|
||||
setForeground(): void {
|
||||
this.inBackground = false;
|
||||
this.cooldownUntilMs = Date.now() + 3000;
|
||||
console.log('[WakeWord] App im Vordergrund — Cooldown 3s aktiv');
|
||||
this.cooldownUntilMs = Date.now() + 1000;
|
||||
console.log('[WakeWord] App im Vordergrund — Cooldown 1s aktiv');
|
||||
}
|
||||
|
||||
/** Wake-Word getriggert: Native-Modul pausieren, Konversation starten. */
|
||||
private async onWakeDetected(): Promise<void> {
|
||||
if (this.inBackground) {
|
||||
console.log('[WakeWord] Trigger ignoriert (App im Hintergrund)');
|
||||
import('./logger').then(m => m.reportAppDebug('wake.detect', 'ignored: app in background')).catch(()=>{});
|
||||
if (this.inBackground && !this.bgWakeEnabled) {
|
||||
console.log('[WakeWord] Trigger ignoriert (App im Hintergrund, Hintergrund-Wake aus)');
|
||||
import('./logger').then(m => m.reportAppDebug('wake.detect', 'ignored: app in background (bg-wake off)')).catch(()=>{});
|
||||
return;
|
||||
}
|
||||
// Re-Entry-Guard: blocken wenn ein Detection-Zyklus schon laeuft.
|
||||
@@ -486,13 +512,12 @@ class WakeWordService {
|
||||
import('./logger').then(m => m.reportAppDebug('wake.end',
|
||||
`endConversation called, wasBarge=${wasBarge}, nativeReady=${this.nativeReady}`)).catch(()=>{});
|
||||
|
||||
// Passive-Listen aktiv? Dann nicht direkt zu armed — passive lauschen
|
||||
// fuer N Sekunden, dann erst Wake-Word wieder aktivieren. Speaker-ID
|
||||
// (Phase 3) filtert fremde Stimmen weg, der User kann ohne erneute
|
||||
// Anrede weitersprechen.
|
||||
const passiveMs = await loadPassiveListenMs();
|
||||
if (!skipPassive && passiveMs > 0 && this.nativeReady) {
|
||||
this.enterPassiveListening(passiveMs);
|
||||
// Kein skipPassive? Dann EIN Stille-Fenster zum Weiterreden (kein Wake-Word
|
||||
// noetig). Das echte Ende regelt die Stille-Toleranz der passiven Aufnahme;
|
||||
// der Backstop-Timer ist nur die Notbremse. Der User kann ohne erneute
|
||||
// Anrede weitersprechen; sagt er nichts → zurueck aufs Wake-Word.
|
||||
if (!skipPassive && this.nativeReady) {
|
||||
this.enterPassiveListening(PASSIVE_BACKSTOP_MS);
|
||||
return;
|
||||
}
|
||||
|
||||
@@ -534,10 +559,10 @@ class WakeWordService {
|
||||
this.cancelPassiveListenTimer();
|
||||
this.setState('listening');
|
||||
const seconds = Math.round(durationMs / 1000);
|
||||
console.log('[WakeWord] Passive-Listen aktiv (%ds) — Speaker-ID gefiltert', seconds);
|
||||
console.log('[WakeWord] Passive-Listen aktiv (Backstop %ds) — Speaker-ID gefiltert', seconds);
|
||||
import('./logger').then(m => m.reportAppDebug('wake.passive',
|
||||
`entered listening for ${seconds}s, cb-count=${this.passiveListenCallbacks.length}`)).catch(()=>{});
|
||||
ToastAndroid.show(`🎧 ${seconds}s lauscht — sprich einfach weiter`, ToastAndroid.SHORT);
|
||||
`entered listening (backstop ${seconds}s), cb-count=${this.passiveListenCallbacks.length}`)).catch(()=>{});
|
||||
ToastAndroid.show('🎧 sprich einfach weiter', ToastAndroid.SHORT);
|
||||
this.passiveListenTimer = setTimeout(() => {
|
||||
this.passiveListenTimer = null;
|
||||
this.exitPassiveListening('timeout').catch(() => {});
|
||||
|
||||
@@ -0,0 +1,175 @@
|
||||
/**
|
||||
* AriaViewCanvas — die pannbare Flaeche, auf der ARIAs komponierte Ansicht
|
||||
* (aria_view) MATERIALISIERT: Orb oben, darunter die Karten. Erscheint als
|
||||
* Overlay ueber dem Chat, sobald ARIA present_view aufruft ("sag was → Orb denkt
|
||||
* → Karte fliegt rein"). Der erste, greifbare Vorgeschmack aufs generative
|
||||
* Cockpit (M1).
|
||||
*
|
||||
* Bedienung (NoMachine-Prinzip): 2-Finger halten + schieben bewegt die Welt,
|
||||
* Pinch zoomt. Ein-Finger-Touch geht an die Karten durch (Scrollen). Die Welt
|
||||
* traegt gerenderte/gestreamte Inhalte — interaktive native Panels rasten
|
||||
* spaeter bei Scale 1 ein (Chat bleibt separat darunter).
|
||||
*
|
||||
* Geraete-agnostisch gehalten: liest nur die ViewSpec, damit ein spaeterer Web-/
|
||||
* AR-Renderer dieselbe Spec konsumieren kann.
|
||||
*/
|
||||
|
||||
import React from 'react';
|
||||
import { StyleSheet, Text, TouchableOpacity, View } from 'react-native';
|
||||
import Animated, {
|
||||
FadeInDown,
|
||||
useAnimatedStyle,
|
||||
useSharedValue,
|
||||
withTiming,
|
||||
} from 'react-native-reanimated';
|
||||
import { Gesture, GestureDetector } from 'react-native-gesture-handler';
|
||||
import { ViewSpec } from '../services/ariaView';
|
||||
import Orb from './Orb';
|
||||
import CardView from './CardView';
|
||||
|
||||
const MIN_SCALE = 0.5;
|
||||
const MAX_SCALE = 3;
|
||||
|
||||
interface Props {
|
||||
view: ViewSpec;
|
||||
onClose: () => void;
|
||||
}
|
||||
|
||||
const AriaViewCanvas: React.FC<Props> = ({ view, onClose }) => {
|
||||
const tx = useSharedValue(0);
|
||||
const ty = useSharedValue(0);
|
||||
const scale = useSharedValue(1);
|
||||
const savedTx = useSharedValue(0);
|
||||
const savedTy = useSharedValue(0);
|
||||
const savedScale = useSharedValue(1);
|
||||
|
||||
const pan = Gesture.Pan()
|
||||
.minPointers(2)
|
||||
.maxPointers(2)
|
||||
.onUpdate((e) => {
|
||||
tx.value = savedTx.value + e.translationX;
|
||||
ty.value = savedTy.value + e.translationY;
|
||||
})
|
||||
.onEnd(() => {
|
||||
savedTx.value = tx.value;
|
||||
savedTy.value = ty.value;
|
||||
});
|
||||
|
||||
const pinch = Gesture.Pinch()
|
||||
.onUpdate((e) => {
|
||||
const next = savedScale.value * e.scale;
|
||||
scale.value = Math.max(MIN_SCALE, Math.min(MAX_SCALE, next));
|
||||
})
|
||||
.onEnd(() => {
|
||||
savedScale.value = scale.value;
|
||||
});
|
||||
|
||||
const composed = Gesture.Simultaneous(pan, pinch);
|
||||
|
||||
const worldStyle = useAnimatedStyle(() => ({
|
||||
transform: [
|
||||
{ translateX: tx.value },
|
||||
{ translateY: ty.value },
|
||||
{ scale: scale.value },
|
||||
],
|
||||
}));
|
||||
|
||||
const resetCamera = () => {
|
||||
tx.value = withTiming(0);
|
||||
ty.value = withTiming(0);
|
||||
scale.value = withTiming(1);
|
||||
savedTx.value = 0;
|
||||
savedTy.value = 0;
|
||||
savedScale.value = 1;
|
||||
};
|
||||
|
||||
const cards = Array.isArray(view.cards) ? view.cards : [];
|
||||
|
||||
return (
|
||||
<View style={styles.overlay}>
|
||||
<GestureDetector gesture={composed}>
|
||||
<Animated.View style={[styles.world, worldStyle]}>
|
||||
<View style={styles.orbWrap}>
|
||||
<Orb state={view.orb} size={110} />
|
||||
</View>
|
||||
{!!view.title && <Text style={styles.worldTitle}>{view.title}</Text>}
|
||||
<View style={styles.cards}>
|
||||
{cards.map((c, i) => (
|
||||
<Animated.View
|
||||
key={i}
|
||||
entering={FadeInDown.duration(420).delay(120 + i * 90)}
|
||||
>
|
||||
<CardView card={c} />
|
||||
</Animated.View>
|
||||
))}
|
||||
</View>
|
||||
</Animated.View>
|
||||
</GestureDetector>
|
||||
|
||||
{/* Steuerung — ausserhalb des Transforms, immer bei Scale 1 bedienbar */}
|
||||
<View style={styles.topBar} pointerEvents="box-none">
|
||||
<TouchableOpacity style={styles.iconBtn} onPress={resetCamera}>
|
||||
<Text style={styles.icon}>⤢</Text>
|
||||
</TouchableOpacity>
|
||||
<TouchableOpacity style={styles.iconBtn} onPress={onClose}>
|
||||
<Text style={styles.icon}>✕</Text>
|
||||
</TouchableOpacity>
|
||||
</View>
|
||||
<View style={styles.hintWrap} pointerEvents="none">
|
||||
<Text style={styles.hint}>2 Finger: schieben · Pinch: zoomen</Text>
|
||||
</View>
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
overlay: {
|
||||
...StyleSheet.absoluteFillObject,
|
||||
backgroundColor: 'rgba(6,6,16,0.94)',
|
||||
zIndex: 50,
|
||||
},
|
||||
world: {
|
||||
...StyleSheet.absoluteFillObject,
|
||||
alignItems: 'center',
|
||||
paddingTop: 48,
|
||||
paddingHorizontal: 18,
|
||||
},
|
||||
orbWrap: { marginTop: 8, marginBottom: 6 },
|
||||
worldTitle: {
|
||||
color: '#C9C9FF',
|
||||
fontSize: 18,
|
||||
fontWeight: '700',
|
||||
marginBottom: 4,
|
||||
textAlign: 'center',
|
||||
},
|
||||
cards: { width: '100%', maxWidth: 560 },
|
||||
topBar: {
|
||||
position: 'absolute',
|
||||
top: 10,
|
||||
right: 12,
|
||||
flexDirection: 'row',
|
||||
},
|
||||
iconBtn: {
|
||||
width: 40,
|
||||
height: 40,
|
||||
borderRadius: 20,
|
||||
marginLeft: 10,
|
||||
alignItems: 'center',
|
||||
justifyContent: 'center',
|
||||
backgroundColor: 'rgba(30,30,60,0.9)',
|
||||
borderWidth: 1,
|
||||
borderColor: 'rgba(123,92,255,0.4)',
|
||||
},
|
||||
icon: { color: '#C9C9FF', fontSize: 18 },
|
||||
hintWrap: {
|
||||
position: 'absolute',
|
||||
bottom: 14,
|
||||
alignSelf: 'center',
|
||||
},
|
||||
hint: {
|
||||
color: '#6A6A90',
|
||||
fontSize: 12,
|
||||
},
|
||||
});
|
||||
|
||||
export default AriaViewCanvas;
|
||||
@@ -0,0 +1,114 @@
|
||||
/**
|
||||
* CardView — rendert EINE Karte einer aria_view-Spec (M1). Schaltet nach
|
||||
* card.type auf den passenden Renderer. Unbekannte Typen werden als Text-
|
||||
* Fallback gezeigt (nie crashen).
|
||||
*
|
||||
* Bewusst dependency-leicht (v1): Markdown wird als Klartext dargestellt, Map
|
||||
* als Marker-Liste (kein Karten-Lib), Code als Monospace-Block. Spaeter koennen
|
||||
* einzelne Renderer aufgebohrt werden, ohne die Spec/den Fluss zu aendern.
|
||||
*/
|
||||
|
||||
import React from 'react';
|
||||
import { Image, ScrollView, StyleSheet, Text, View } from 'react-native';
|
||||
import { ViewCard, ViewMarker } from '../services/ariaView';
|
||||
|
||||
const ImageBody: React.FC<{ src?: string }> = ({ src }) => {
|
||||
const isUrl = !!src && /^https?:\/\//i.test(src);
|
||||
if (isUrl) {
|
||||
return <Image source={{ uri: src }} style={styles.image} resizeMode="contain" />;
|
||||
}
|
||||
return <Text style={styles.muted}>🖼️ {src || '(kein Bild)'}</Text>;
|
||||
};
|
||||
|
||||
const ListBody: React.FC<{ md?: string }> = ({ md }) => {
|
||||
const lines = (md || '')
|
||||
.split('\n')
|
||||
.map((l) => l.replace(/^\s*[-*•]\s?/, '').trim())
|
||||
.filter(Boolean);
|
||||
if (lines.length === 0) return <Text style={styles.muted}>(leer)</Text>;
|
||||
return (
|
||||
<View>
|
||||
{lines.map((l, i) => (
|
||||
<View key={i} style={styles.listRow}>
|
||||
<Text style={styles.bullet}>•</Text>
|
||||
<Text style={styles.text}>{l}</Text>
|
||||
</View>
|
||||
))}
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const MapBody: React.FC<{ markers?: ViewMarker[] }> = ({ markers }) => {
|
||||
const ms = Array.isArray(markers) ? markers : [];
|
||||
return (
|
||||
<View style={styles.map}>
|
||||
<Text style={styles.mapHint}>🗺️ Karte ({ms.length} Orte)</Text>
|
||||
{ms.map((m, i) => (
|
||||
<Text key={i} style={styles.text}>
|
||||
📍 {m.label || `${m.lat?.toFixed?.(4)}, ${m.lon?.toFixed?.(4)}`}
|
||||
</Text>
|
||||
))}
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const CodeBody: React.FC<{ md?: string; path?: string; lang?: string }> = ({ md, path, lang }) => (
|
||||
<View>
|
||||
{(path || lang) && (
|
||||
<Text style={styles.codeCaption}>
|
||||
{path || ''}{lang ? ` · ${lang}` : ''}
|
||||
</Text>
|
||||
)}
|
||||
<ScrollView horizontal style={styles.codeScroll}>
|
||||
<Text style={styles.code}>{md || ''}</Text>
|
||||
</ScrollView>
|
||||
</View>
|
||||
);
|
||||
|
||||
const CardView: React.FC<{ card: ViewCard }> = ({ card }) => {
|
||||
return (
|
||||
<View style={styles.card}>
|
||||
{!!card.title && <Text style={styles.cardTitle}>{card.title}</Text>}
|
||||
{card.type === 'image' ? (
|
||||
<ImageBody src={card.src} />
|
||||
) : card.type === 'list' ? (
|
||||
<ListBody md={card.md} />
|
||||
) : card.type === 'map' ? (
|
||||
<MapBody markers={card.markers} />
|
||||
) : card.type === 'code' ? (
|
||||
<CodeBody md={card.md} path={card.path} lang={card.lang} />
|
||||
) : (
|
||||
<Text style={styles.text}>{card.md || ''}</Text>
|
||||
)}
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
card: {
|
||||
backgroundColor: 'rgba(18,18,42,0.92)',
|
||||
borderColor: 'rgba(123,92,255,0.35)',
|
||||
borderWidth: 1,
|
||||
borderRadius: 14,
|
||||
padding: 14,
|
||||
marginVertical: 8,
|
||||
shadowColor: '#7B5CFF',
|
||||
shadowOpacity: 0.25,
|
||||
shadowRadius: 12,
|
||||
shadowOffset: { width: 0, height: 2 },
|
||||
elevation: 6,
|
||||
},
|
||||
cardTitle: { color: '#C9C9FF', fontSize: 15, fontWeight: '700', marginBottom: 8 },
|
||||
text: { color: '#E6E6F0', fontSize: 14, lineHeight: 20, flexShrink: 1 },
|
||||
muted: { color: '#8A8AB0', fontSize: 13, fontStyle: 'italic' },
|
||||
image: { width: '100%', height: 200, borderRadius: 8, backgroundColor: '#0D0D1A' },
|
||||
listRow: { flexDirection: 'row', alignItems: 'flex-start', marginVertical: 2 },
|
||||
bullet: { color: '#7B5CFF', marginRight: 8, fontSize: 14, lineHeight: 20 },
|
||||
map: { backgroundColor: '#0D0D1A', borderRadius: 8, padding: 10 },
|
||||
mapHint: { color: '#00B4D8', fontSize: 13, fontWeight: '600', marginBottom: 6 },
|
||||
codeCaption: { color: '#8A8AB0', fontSize: 12, marginBottom: 6 },
|
||||
codeScroll: { backgroundColor: '#0A0A14', borderRadius: 8, padding: 10 },
|
||||
code: { color: '#B9F5C9', fontFamily: 'monospace', fontSize: 12.5, lineHeight: 18 },
|
||||
});
|
||||
|
||||
export default React.memo(CardView);
|
||||
@@ -0,0 +1,106 @@
|
||||
/**
|
||||
* Orb — ARIAs Praesenz-Avatar (M1). Zeigt ihren Zustand (idle/listening/
|
||||
* thinking/speaking/working) als pulsierender Leucht-Kern und ist das
|
||||
* verbindende Element ueber alle Oberflaechen (App/Web/spaeter Brille).
|
||||
*
|
||||
* Reine Optik, keine Logik — der Zustand kommt von aussen (aria_view.orb bzw.
|
||||
* spaeter direkt von Audio/Wake-Word-Signalen). Dependency-leicht: nur
|
||||
* reanimated (schon installiert), kein SVG/Gradient noetig.
|
||||
*/
|
||||
|
||||
import React, { useEffect } from 'react';
|
||||
import { StyleSheet, View } from 'react-native';
|
||||
import Animated, {
|
||||
Easing,
|
||||
cancelAnimation,
|
||||
useAnimatedStyle,
|
||||
useSharedValue,
|
||||
withRepeat,
|
||||
withTiming,
|
||||
} from 'react-native-reanimated';
|
||||
import { OrbState } from '../services/ariaView';
|
||||
|
||||
const COLORS: Record<OrbState, string> = {
|
||||
idle: '#3A6EA5',
|
||||
listening: '#00B4D8',
|
||||
thinking: '#7B5CFF',
|
||||
speaking: '#34C759',
|
||||
working: '#FF9500',
|
||||
};
|
||||
|
||||
interface Props {
|
||||
state?: OrbState;
|
||||
size?: number;
|
||||
}
|
||||
|
||||
const Orb: React.FC<Props> = ({ state = 'idle', size = 120 }) => {
|
||||
const pulse = useSharedValue(1);
|
||||
|
||||
useEffect(() => {
|
||||
const fast = state === 'thinking' || state === 'working';
|
||||
cancelAnimation(pulse);
|
||||
pulse.value = 1;
|
||||
pulse.value = withRepeat(
|
||||
withTiming(fast ? 1.14 : 1.07, {
|
||||
duration: fast ? 620 : 1500,
|
||||
easing: Easing.inOut(Easing.ease),
|
||||
}),
|
||||
-1,
|
||||
true,
|
||||
);
|
||||
return () => cancelAnimation(pulse);
|
||||
}, [state, pulse]);
|
||||
|
||||
const animStyle = useAnimatedStyle(() => ({ transform: [{ scale: pulse.value }] }));
|
||||
const color = COLORS[state] || COLORS.idle;
|
||||
|
||||
return (
|
||||
<View style={[styles.wrap, { width: size, height: size }]}>
|
||||
<Animated.View
|
||||
style={[
|
||||
styles.glow,
|
||||
{ width: size, height: size, borderRadius: size / 2, backgroundColor: color },
|
||||
animStyle,
|
||||
]}
|
||||
/>
|
||||
<Animated.View
|
||||
style={[
|
||||
styles.ring,
|
||||
{
|
||||
width: size * 0.72,
|
||||
height: size * 0.72,
|
||||
borderRadius: size * 0.36,
|
||||
borderColor: color,
|
||||
},
|
||||
animStyle,
|
||||
]}
|
||||
/>
|
||||
<View
|
||||
style={[
|
||||
styles.core,
|
||||
{
|
||||
width: size * 0.44,
|
||||
height: size * 0.44,
|
||||
borderRadius: size * 0.22,
|
||||
backgroundColor: color,
|
||||
shadowColor: color,
|
||||
},
|
||||
]}
|
||||
/>
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
wrap: { alignItems: 'center', justifyContent: 'center' },
|
||||
glow: { position: 'absolute', opacity: 0.22 },
|
||||
ring: { position: 'absolute', borderWidth: 2, opacity: 0.55 },
|
||||
core: {
|
||||
shadowOpacity: 0.9,
|
||||
shadowRadius: 16,
|
||||
shadowOffset: { width: 0, height: 0 },
|
||||
elevation: 12,
|
||||
},
|
||||
});
|
||||
|
||||
export default React.memo(Orb);
|
||||
@@ -1,61 +0,0 @@
|
||||
/**
|
||||
* Tile — leichte Thumbnail-Darstellung einer Kachel in der gezoomten "Landkarte".
|
||||
*
|
||||
* Zeigt NUR Icon + Titel (+ optionalen Untertitel). Die schweren, interaktiven
|
||||
* Inhalte (ChatScreen, WebViews) liegen NICHT hier, sondern in der separaten
|
||||
* Identity-Content-Ebene des WorkspaceCanvas — Thumbnails werden nie skaliert
|
||||
* interaktiv. Ein Tap fokussiert die Kachel (zoomt sie voll auf).
|
||||
*/
|
||||
|
||||
import React from 'react';
|
||||
import { StyleSheet, Text, View } from 'react-native';
|
||||
import { Gesture, GestureDetector } from 'react-native-gesture-handler';
|
||||
import { runOnJS } from 'react-native-reanimated';
|
||||
import { TileId, TileRect, TILE_META } from './layout';
|
||||
|
||||
interface Props {
|
||||
id: TileId;
|
||||
/** Welt-View-lokales Rect (relativ zur Bounds-Ecke). */
|
||||
rect: TileRect;
|
||||
subtitle?: string;
|
||||
onFocus: (id: TileId) => void;
|
||||
}
|
||||
|
||||
const Tile: React.FC<Props> = ({ id, rect, subtitle, onFocus }) => {
|
||||
const meta = TILE_META[id];
|
||||
const tap = Gesture.Tap()
|
||||
.maxDuration(300)
|
||||
.onEnd((_e, success) => {
|
||||
if (success) runOnJS(onFocus)(id);
|
||||
});
|
||||
|
||||
return (
|
||||
<GestureDetector gesture={tap}>
|
||||
<View style={[styles.tile, { left: rect.x, top: rect.y, width: rect.w, height: rect.h }]}>
|
||||
<Text style={styles.icon}>{meta.icon}</Text>
|
||||
<Text style={styles.title}>{meta.title}</Text>
|
||||
{!!subtitle && <Text style={styles.subtitle} numberOfLines={2}>{subtitle}</Text>}
|
||||
<Text style={styles.hint}>Tippen zum Öffnen</Text>
|
||||
</View>
|
||||
</GestureDetector>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
tile: {
|
||||
position: 'absolute',
|
||||
backgroundColor: '#12122A',
|
||||
borderRadius: 32,
|
||||
borderWidth: 3,
|
||||
borderColor: '#1E1E2E',
|
||||
alignItems: 'center',
|
||||
justifyContent: 'center',
|
||||
padding: 40,
|
||||
},
|
||||
icon: { fontSize: 220, marginBottom: 24 },
|
||||
title: { color: '#FFFFFF', fontSize: 96, fontWeight: '800' },
|
||||
subtitle: { color: '#9090B0', fontSize: 52, marginTop: 20, textAlign: 'center' },
|
||||
hint: { color: '#555570', fontSize: 46, marginTop: 40 },
|
||||
});
|
||||
|
||||
export default Tile;
|
||||
@@ -1,244 +0,0 @@
|
||||
/**
|
||||
* WorkspaceCanvas — die zoom-/verschiebbare "Landkarte" plus Fokus-Modus.
|
||||
*
|
||||
* Zwei Ebenen uebereinander:
|
||||
* 1. Welt-Ebene (skaliert/verschoben): nur leichte Thumbnail-Kacheln. Hier
|
||||
* wirken 2-Finger-Pinch-Zoom + 2-Finger-Pan (nur in der Uebersicht).
|
||||
* 2. Identity-Content-Ebene (Scale 1, nie transformiert): die schweren,
|
||||
* interaktiven Inhalte (ChatScreen + WebViews). Alle sichtbaren Kacheln
|
||||
* sind hier IMMER gemountet; nur die fokussierte ist per display sichtbar.
|
||||
* Dadurch bleiben Touch-Koordinaten/Keyboard korrekt und nichts remountet
|
||||
* beim Fokuswechsel.
|
||||
*
|
||||
* Tap auf eine Thumbnail-Kachel → Fokus (voll aufgezoomt + interaktiv). Der
|
||||
* "⤢ Übersicht"-Button bzw. der Hardware-Back fuehren zurueck zur Landkarte.
|
||||
* Bei nur einer Kachel (reiner Chat) ist diese dauerhaft fokussiert und der
|
||||
* Canvas verhaelt sich exakt wie der bisherige Vollbild-Chat.
|
||||
*/
|
||||
|
||||
import React, { useEffect, useMemo, useState } from 'react';
|
||||
import { BackHandler, StyleSheet, Text, TouchableOpacity, useWindowDimensions, View } from 'react-native';
|
||||
import Animated, { useAnimatedStyle, useSharedValue, withTiming } from 'react-native-reanimated';
|
||||
import { Gesture, GestureDetector } from 'react-native-gesture-handler';
|
||||
|
||||
import {
|
||||
boundsOf, Camera, focusCamera, overviewCamera, TileId, TILE_RECTS, toLocal,
|
||||
} from './layout';
|
||||
import Tile from './Tile';
|
||||
import { useWorkspaceLayout } from './useWorkspaceLayout';
|
||||
import ChatTile from './tiles/ChatTile';
|
||||
import CodeEditorTile from './tiles/CodeEditorTile';
|
||||
import VncTile from './tiles/VncTile';
|
||||
import PreviewTile from './tiles/PreviewTile';
|
||||
|
||||
interface Props {
|
||||
projectId: string;
|
||||
visibleTiles: TileId[];
|
||||
subtitles?: Partial<Record<TileId, string>>;
|
||||
}
|
||||
|
||||
const ANIM = { duration: 260 };
|
||||
const MIN_SCALE = 0.15;
|
||||
const MAX_SCALE = 4;
|
||||
|
||||
const WorkspaceCanvas: React.FC<Props> = ({ projectId, visibleTiles, subtitles }) => {
|
||||
const { width: vw, height: vh } = useWindowDimensions();
|
||||
const [focusedTileId, setFocusedTileId] = useState<TileId | null>('chat');
|
||||
|
||||
const visibleKey = visibleTiles.join(',');
|
||||
const bounds = useMemo(() => boundsOf(visibleTiles), [visibleKey]);
|
||||
const worldW = bounds.w;
|
||||
const worldH = bounds.h;
|
||||
const single = visibleTiles.length <= 1;
|
||||
const { loaded: layoutLoaded, getFocus, saveFocus } = useWorkspaceLayout(projectId);
|
||||
|
||||
// Kamera (shared values fuer 60fps auf dem UI-Thread).
|
||||
const scale = useSharedValue(1);
|
||||
const tx = useSharedValue(0);
|
||||
const ty = useSharedValue(0);
|
||||
const savedScale = useSharedValue(1);
|
||||
const savedTx = useSharedValue(0);
|
||||
const savedTy = useSharedValue(0);
|
||||
|
||||
// Bei nur einer Kachel: immer fokussiert. Verschwindet die fokussierte
|
||||
// Kachel aus der Sichtbarkeit, auf Chat zurueckfallen.
|
||||
useEffect(() => {
|
||||
if (single) {
|
||||
setFocusedTileId(visibleTiles[0] || 'chat');
|
||||
} else if (focusedTileId && !visibleTiles.includes(focusedTileId)) {
|
||||
setFocusedTileId('chat');
|
||||
}
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [visibleKey]);
|
||||
|
||||
// Zuletzt fokussierte Kachel pro Projekt wiederherstellen (nur Mehr-Kachel-
|
||||
// Projekte; laeuft NACH dem single-Effekt oben, gewinnt also fuer Code-Projekte).
|
||||
useEffect(() => {
|
||||
if (!layoutLoaded || single) return;
|
||||
const stored = getFocus();
|
||||
if (stored === undefined) return;
|
||||
if (stored === null || visibleTiles.includes(stored)) setFocusedTileId(stored);
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [projectId, layoutLoaded, visibleKey]);
|
||||
|
||||
// Fokus-Wahl persistieren.
|
||||
useEffect(() => {
|
||||
if (layoutLoaded) saveFocus(focusedTileId);
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [focusedTileId, layoutLoaded]);
|
||||
|
||||
// Kamera auf das Ziel fahren (Fokus-Rect oder Uebersicht).
|
||||
useEffect(() => {
|
||||
const cam: Camera = focusedTileId
|
||||
? focusCamera(toLocal(TILE_RECTS[focusedTileId], bounds), worldW, worldH, vw, vh)
|
||||
: overviewCamera(worldW, worldH, vw, vh);
|
||||
scale.value = withTiming(cam.scale, ANIM);
|
||||
tx.value = withTiming(cam.tx, ANIM);
|
||||
ty.value = withTiming(cam.ty, ANIM);
|
||||
savedScale.value = cam.scale;
|
||||
savedTx.value = cam.tx;
|
||||
savedTy.value = cam.ty;
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [focusedTileId, visibleKey, vw, vh]);
|
||||
|
||||
// Hardware-Back: im Fokus (und mehr als eine Kachel) → zurueck zur Uebersicht.
|
||||
useEffect(() => {
|
||||
const onBack = () => {
|
||||
if (focusedTileId && !single) {
|
||||
setFocusedTileId(null);
|
||||
return true;
|
||||
}
|
||||
return false;
|
||||
};
|
||||
const sub = BackHandler.addEventListener('hardwareBackPress', onBack);
|
||||
return () => sub.remove();
|
||||
}, [focusedTileId, single]);
|
||||
|
||||
// Gesten nur in der Uebersicht (Fokus-Modus: Touches fallen an die Kachel).
|
||||
const gesturesEnabled = !focusedTileId && !single;
|
||||
const canvasGesture = useMemo(() => {
|
||||
const pinch = Gesture.Pinch()
|
||||
.enabled(gesturesEnabled)
|
||||
.onUpdate((e) => {
|
||||
'worklet';
|
||||
scale.value = Math.max(MIN_SCALE, Math.min(MAX_SCALE, savedScale.value * e.scale));
|
||||
})
|
||||
.onEnd(() => {
|
||||
'worklet';
|
||||
savedScale.value = scale.value;
|
||||
});
|
||||
const pan = Gesture.Pan()
|
||||
.enabled(gesturesEnabled)
|
||||
.minPointers(2)
|
||||
.onUpdate((e) => {
|
||||
'worklet';
|
||||
tx.value = savedTx.value + e.translationX;
|
||||
ty.value = savedTy.value + e.translationY;
|
||||
})
|
||||
.onEnd(() => {
|
||||
'worklet';
|
||||
savedTx.value = tx.value;
|
||||
savedTy.value = ty.value;
|
||||
});
|
||||
return Gesture.Simultaneous(pinch, pan);
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [gesturesEnabled]);
|
||||
|
||||
const worldStyle = useAnimatedStyle(() => ({
|
||||
transform: [
|
||||
{ translateX: tx.value },
|
||||
{ translateY: ty.value },
|
||||
{ scale: scale.value },
|
||||
],
|
||||
}));
|
||||
|
||||
const renderContent = (id: TileId) => {
|
||||
switch (id) {
|
||||
case 'chat': return <ChatTile />;
|
||||
case 'editor': return <CodeEditorTile projectId={projectId} />;
|
||||
case 'vnc': return <VncTile projectId={projectId} focused={focusedTileId === 'vnc'} />;
|
||||
case 'preview': return <PreviewTile />;
|
||||
default: return null;
|
||||
}
|
||||
};
|
||||
|
||||
return (
|
||||
<View style={styles.root}>
|
||||
{/* Ebene 1 — skalierte Landkarte mit Thumbnails */}
|
||||
<View style={StyleSheet.absoluteFill} pointerEvents={focusedTileId ? 'none' : 'auto'}>
|
||||
<GestureDetector gesture={canvasGesture}>
|
||||
<Animated.View style={[styles.world, { width: worldW, height: worldH }, worldStyle]}>
|
||||
{visibleTiles.map((id) => (
|
||||
<Tile
|
||||
key={id}
|
||||
id={id}
|
||||
rect={toLocal(TILE_RECTS[id], bounds)}
|
||||
subtitle={subtitles?.[id]}
|
||||
onFocus={setFocusedTileId}
|
||||
/>
|
||||
))}
|
||||
</Animated.View>
|
||||
</GestureDetector>
|
||||
</View>
|
||||
|
||||
{/* Ebene 2 — Identity-Content, immer gemountet, nur fokussierte sichtbar */}
|
||||
<View style={StyleSheet.absoluteFill} pointerEvents={focusedTileId ? 'box-none' : 'none'}>
|
||||
{visibleTiles.map((id) => (
|
||||
<View
|
||||
key={id}
|
||||
style={[StyleSheet.absoluteFill, { display: focusedTileId === id ? 'flex' : 'none' }]}
|
||||
>
|
||||
{renderContent(id)}
|
||||
</View>
|
||||
))}
|
||||
</View>
|
||||
|
||||
{/* Steuerung */}
|
||||
{focusedTileId && !single && (
|
||||
<TouchableOpacity style={styles.overviewBtn} onPress={() => setFocusedTileId(null)} activeOpacity={0.8}>
|
||||
<Text style={styles.overviewBtnText}>⤢ Übersicht</Text>
|
||||
</TouchableOpacity>
|
||||
)}
|
||||
{!focusedTileId && (
|
||||
<View style={styles.hintBar} pointerEvents="none">
|
||||
<Text style={styles.hintText}>Kachel antippen zum Öffnen · 2 Finger: zoomen & schieben</Text>
|
||||
</View>
|
||||
)}
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
root: { flex: 1, backgroundColor: '#0D0D1A' },
|
||||
world: { position: 'absolute', left: 0, top: 0 },
|
||||
overviewBtn: {
|
||||
position: 'absolute',
|
||||
top: 10,
|
||||
right: 12,
|
||||
backgroundColor: 'rgba(18,18,42,0.92)',
|
||||
borderColor: '#1E1E2E',
|
||||
borderWidth: 1,
|
||||
borderRadius: 18,
|
||||
paddingHorizontal: 14,
|
||||
paddingVertical: 8,
|
||||
},
|
||||
overviewBtnText: { color: '#0096FF', fontSize: 14, fontWeight: '700' },
|
||||
hintBar: {
|
||||
position: 'absolute',
|
||||
bottom: 16,
|
||||
left: 0,
|
||||
right: 0,
|
||||
alignItems: 'center',
|
||||
},
|
||||
hintText: {
|
||||
color: '#9090B0',
|
||||
fontSize: 12,
|
||||
backgroundColor: 'rgba(18,18,42,0.85)',
|
||||
paddingHorizontal: 12,
|
||||
paddingVertical: 6,
|
||||
borderRadius: 14,
|
||||
overflow: 'hidden',
|
||||
},
|
||||
});
|
||||
|
||||
export default WorkspaceCanvas;
|
||||
@@ -0,0 +1,92 @@
|
||||
/**
|
||||
* WorkspaceDeck — die Workbench: Vollbild-Panels + Taskleisten-Dock unten.
|
||||
*
|
||||
* Statt einer Zoom-Landkarte: jedes Panel ist bildschirmfuellend und Handy-
|
||||
* optimiert, das Dock wechselt per Daumen-Tap sofort. Alle Panels sind IMMER
|
||||
* gemountet (nur das aktive ist via display sichtbar) → kein Remount, Chat
|
||||
* behaelt RVS/Audio/Queue, WebViews behalten ihren Zustand.
|
||||
*
|
||||
* Bei offener Tastatur blendet das Dock aus (mehr Platz zum Tippen).
|
||||
*/
|
||||
|
||||
import React, { useEffect, useState } from 'react';
|
||||
import { Keyboard, StyleSheet, View } from 'react-native';
|
||||
import { TileId } from './layout';
|
||||
import { useWorkspaceLayout } from './useWorkspaceLayout';
|
||||
import WorkspaceDock from './WorkspaceDock';
|
||||
import ChatTile from './tiles/ChatTile';
|
||||
import FilesTile from './tiles/FilesTile';
|
||||
import CodeEditorTile from './tiles/CodeEditorTile';
|
||||
import DesktopTile from './tiles/DesktopTile';
|
||||
|
||||
interface Props {
|
||||
projectId: string;
|
||||
panels: TileId[];
|
||||
badges?: Partial<Record<TileId, string>>;
|
||||
}
|
||||
|
||||
const WorkspaceDeck: React.FC<Props> = ({ projectId, panels, badges }) => {
|
||||
const [active, setActive] = useState<TileId>('chat');
|
||||
const [kbVisible, setKbVisible] = useState(false);
|
||||
const { loaded, getFocus, saveFocus } = useWorkspaceLayout(projectId);
|
||||
|
||||
// Aktives Panel pro Projekt wiederherstellen.
|
||||
useEffect(() => {
|
||||
if (!loaded) return;
|
||||
const stored = getFocus();
|
||||
if (stored && panels.includes(stored)) setActive(stored);
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [projectId, loaded]);
|
||||
|
||||
// Falls das aktive Panel wegfaellt → erstes nehmen.
|
||||
useEffect(() => {
|
||||
if (!panels.includes(active)) setActive(panels[0] || 'chat');
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [panels.join(',')]);
|
||||
|
||||
useEffect(() => {
|
||||
if (loaded) saveFocus(active);
|
||||
// eslint-disable-next-line react-hooks/exhaustive-deps
|
||||
}, [active, loaded]);
|
||||
|
||||
useEffect(() => {
|
||||
const s1 = Keyboard.addListener('keyboardDidShow', () => setKbVisible(true));
|
||||
const s2 = Keyboard.addListener('keyboardDidHide', () => setKbVisible(false));
|
||||
return () => { s1.remove(); s2.remove(); };
|
||||
}, []);
|
||||
|
||||
const render = (id: TileId) => {
|
||||
switch (id) {
|
||||
case 'chat': return <ChatTile />;
|
||||
case 'files': return <FilesTile projectId={projectId} focused={active === 'files'} />;
|
||||
case 'editor': return <CodeEditorTile projectId={projectId} />;
|
||||
case 'vnc': return <DesktopTile projectId={projectId} focused={active === 'vnc'} />;
|
||||
default: return null;
|
||||
}
|
||||
};
|
||||
|
||||
return (
|
||||
<View style={styles.root}>
|
||||
<View style={styles.stack}>
|
||||
{panels.map((id) => (
|
||||
<View
|
||||
key={id}
|
||||
style={[StyleSheet.absoluteFill, { display: active === id ? 'flex' : 'none' }]}
|
||||
>
|
||||
{render(id)}
|
||||
</View>
|
||||
))}
|
||||
</View>
|
||||
{!kbVisible && (
|
||||
<WorkspaceDock panels={panels} active={active} badges={badges} onSelect={setActive} />
|
||||
)}
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
root: { flex: 1, backgroundColor: '#0D0D1A' },
|
||||
stack: { flex: 1, position: 'relative' },
|
||||
});
|
||||
|
||||
export default WorkspaceDeck;
|
||||
@@ -0,0 +1,108 @@
|
||||
/**
|
||||
* WorkspaceDock — die Taskleiste unten (Daumenzone). Ein Tap wechselt sofort
|
||||
* das Panel; ein animierter Indikator gleitet unter das aktive Icon. Kleine
|
||||
* Aktivitaets-Punkte (Badges) zeigen z.B. „Desktop verbunden" / „Code da".
|
||||
*
|
||||
* Das ist der Kern des Workbench-Gefuehls: Desktop-Umfang, aber Handy-schnell
|
||||
* per Daumen erreichbar — statt einer Zoom-Landkarte.
|
||||
*/
|
||||
|
||||
import React, { useState } from 'react';
|
||||
import { LayoutChangeEvent, StyleSheet, Text, TouchableOpacity, View } from 'react-native';
|
||||
import Animated, { useAnimatedStyle, withTiming } from 'react-native-reanimated';
|
||||
import { useSafeAreaInsets } from 'react-native-safe-area-context';
|
||||
import { TileId, TILE_META } from './layout';
|
||||
|
||||
interface Props {
|
||||
panels: TileId[];
|
||||
active: TileId;
|
||||
badges?: Partial<Record<TileId, string>>; // TileId → Punkt-Farbe (undefined = kein Punkt)
|
||||
onSelect: (id: TileId) => void;
|
||||
}
|
||||
|
||||
const WorkspaceDock: React.FC<Props> = ({ panels, active, badges, onSelect }) => {
|
||||
const insets = useSafeAreaInsets();
|
||||
const [rowW, setRowW] = useState(0);
|
||||
const n = Math.max(1, panels.length);
|
||||
const idx = Math.max(0, panels.indexOf(active));
|
||||
const slot = rowW / n;
|
||||
|
||||
const onLayout = (e: LayoutChangeEvent) => setRowW(e.nativeEvent.layout.width);
|
||||
|
||||
const indicatorStyle = useAnimatedStyle(() => ({
|
||||
width: slot,
|
||||
transform: [{ translateX: withTiming(slot * idx, { duration: 200 }) }],
|
||||
}));
|
||||
|
||||
return (
|
||||
<View style={[styles.dock, { paddingBottom: Math.max(insets.bottom, 6) }]}>
|
||||
<View style={styles.row} onLayout={onLayout}>
|
||||
{rowW > 0 && <Animated.View style={[styles.indicator, indicatorStyle]} pointerEvents="none" />}
|
||||
{panels.map((id) => {
|
||||
const meta = TILE_META[id];
|
||||
const isActive = id === active;
|
||||
const badge = badges?.[id];
|
||||
return (
|
||||
<TouchableOpacity
|
||||
key={id}
|
||||
style={styles.item}
|
||||
onPress={() => onSelect(id)}
|
||||
activeOpacity={0.7}
|
||||
>
|
||||
<View>
|
||||
<Text style={[styles.icon, isActive && styles.iconActive]}>{meta.icon}</Text>
|
||||
{!!badge && <View style={[styles.badge, { backgroundColor: badge }]} />}
|
||||
</View>
|
||||
<Text style={[styles.label, isActive && styles.labelActive]} numberOfLines={1}>
|
||||
{meta.title}
|
||||
</Text>
|
||||
</TouchableOpacity>
|
||||
);
|
||||
})}
|
||||
</View>
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
dock: {
|
||||
backgroundColor: '#0B0B18',
|
||||
borderTopWidth: 1,
|
||||
borderTopColor: '#1E1E2E',
|
||||
},
|
||||
row: {
|
||||
flexDirection: 'row',
|
||||
height: 58,
|
||||
position: 'relative',
|
||||
},
|
||||
indicator: {
|
||||
position: 'absolute',
|
||||
top: 0,
|
||||
height: 3,
|
||||
backgroundColor: '#0096FF',
|
||||
borderBottomLeftRadius: 3,
|
||||
borderBottomRightRadius: 3,
|
||||
},
|
||||
item: {
|
||||
flex: 1,
|
||||
alignItems: 'center',
|
||||
justifyContent: 'center',
|
||||
gap: 2,
|
||||
},
|
||||
icon: { fontSize: 22, opacity: 0.55 },
|
||||
iconActive: { opacity: 1 },
|
||||
label: { color: '#6A6A85', fontSize: 10, fontWeight: '600' },
|
||||
labelActive: { color: '#0096FF' },
|
||||
badge: {
|
||||
position: 'absolute',
|
||||
top: -2,
|
||||
right: -6,
|
||||
width: 8,
|
||||
height: 8,
|
||||
borderRadius: 4,
|
||||
borderWidth: 1,
|
||||
borderColor: '#0B0B18',
|
||||
},
|
||||
});
|
||||
|
||||
export default WorkspaceDock;
|
||||
@@ -1,31 +1,46 @@
|
||||
/**
|
||||
* WorkspaceScreen — Screen-Wrapper fuer den Workspace-Canvas.
|
||||
* WorkspaceScreen — Screen-Wrapper fuer die Workbench.
|
||||
*
|
||||
* Buendelt die Signale, die entscheiden welche Kacheln sichtbar sind:
|
||||
* - projectFocus: aktives Projekt + dessen kind ('code'|'chat')
|
||||
* - codeFile: kam schon eine Code-Datei rein? (Live-Reveal des Editors)
|
||||
* - desktop: ist ein QEMU-Desktop verfuegbar? (Live-Reveal der VNC-Kachel)
|
||||
* Kompakt-Modus → klassischer Vollbild-Chat (wie vor dem Umbau).
|
||||
* Cockpit-Modus → Workbench mit Taskleisten-Dock: Chat · Code · Desktop.
|
||||
*
|
||||
* Ersetzt den bisherigen Chat-Tab: die ChatScreen lebt als Kachel im Canvas,
|
||||
* bleibt aber genau eine Instanz.
|
||||
* Aktivitaets-Badges am Dock: Editor blau, wenn schon Code-Dateien da sind;
|
||||
* Desktop gruen NUR, wenn im aktiven Projekt eine VM laeuft.
|
||||
*/
|
||||
|
||||
import React, { useEffect, useMemo, useState } from 'react';
|
||||
import { View } from 'react-native';
|
||||
import projectFocus, { FocusSnapshot } from '../services/projectFocus';
|
||||
import codeFile from '../services/codeFile';
|
||||
import desktop from '../services/desktop';
|
||||
import { TileId, visibleTilesFor } from './layout';
|
||||
import WorkspaceCanvas from './WorkspaceCanvas';
|
||||
import brainApi from '../services/brainApi';
|
||||
import viewMode, { ViewModeValue } from '../services/viewMode';
|
||||
import ChatScreen from '../screens/ChatScreen';
|
||||
import { TileId } from './layout';
|
||||
import WorkspaceDeck from './WorkspaceDeck';
|
||||
import ariaView, { AriaView } from '../services/ariaView';
|
||||
import AriaViewCanvas from './AriaViewCanvas';
|
||||
|
||||
const COCKPIT_PANELS: TileId[] = ['chat', 'files', 'editor', 'vnc'];
|
||||
|
||||
const WorkspaceScreen: React.FC = () => {
|
||||
const [mode, setMode] = useState<ViewModeValue>(viewMode.get());
|
||||
const [focus, setFocus] = useState<FocusSnapshot>(projectFocus.get());
|
||||
const [hasCode, setHasCode] = useState(false);
|
||||
const [hasDesktop, setHasDesktop] = useState(false);
|
||||
const [view, setView] = useState<AriaView | undefined>(undefined);
|
||||
|
||||
useEffect(() => viewMode.subscribe(setMode), []);
|
||||
useEffect(() => projectFocus.subscribe(setFocus), []);
|
||||
|
||||
const pid = focus.focusedProjectId;
|
||||
const kind = projectFocus.getProjectKind(pid);
|
||||
|
||||
// aria_view: ARIAs komponierte Ansicht fuers fokussierte Projekt spiegeln.
|
||||
useEffect(() => {
|
||||
setView(ariaView.getView(pid));
|
||||
return ariaView.subscribe((v) => {
|
||||
if ((v.projectId || '') === (pid || '')) setView(v);
|
||||
});
|
||||
}, [pid]);
|
||||
|
||||
// Code-Signal: hat der Spiegel schon Dateien fuer dieses Projekt?
|
||||
useEffect(() => {
|
||||
@@ -35,25 +50,53 @@ const WorkspaceScreen: React.FC = () => {
|
||||
});
|
||||
}, [pid]);
|
||||
|
||||
// Desktop-Signal + einmaliger Check beim Betreten eines Code-Projekts.
|
||||
// Desktop-Signal: gruener Punkt NUR, wenn im AKTIVEN Projekt wirklich eine VM
|
||||
// laeuft (nicht generell irgendwo). Quelle ist die projektbezogene VM-Liste;
|
||||
// leichtes Nachfassen, damit Start/Stop sich zeitnah zeigt.
|
||||
useEffect(() => {
|
||||
setHasDesktop(desktop.getStatus().available);
|
||||
const unsub = desktop.subscribeStatus((s) => setHasDesktop(s.available));
|
||||
if (kind === 'code') desktop.requestCheck(pid);
|
||||
return unsub;
|
||||
}, [pid, kind]);
|
||||
if (!pid) { setHasDesktop(false); return; }
|
||||
let alive = true;
|
||||
const check = () => {
|
||||
brainApi.listProjectVms(pid)
|
||||
.then(r => { if (alive) setHasDesktop((r.vms || []).some(v => v.running)); })
|
||||
.catch(() => { if (alive) setHasDesktop(false); });
|
||||
};
|
||||
check();
|
||||
const t = setInterval(check, 6000);
|
||||
return () => { alive = false; clearInterval(t); };
|
||||
}, [pid]);
|
||||
|
||||
const visibleTiles: TileId[] = useMemo(
|
||||
() => visibleTilesFor({ kind, hasCode, hasDesktop }),
|
||||
[kind, hasCode, hasDesktop],
|
||||
const badges = useMemo(() => ({
|
||||
editor: hasCode ? '#0096FF' : undefined,
|
||||
vnc: hasDesktop ? '#34C759' : undefined,
|
||||
} as Partial<Record<TileId, string>>), [hasCode, hasDesktop]);
|
||||
|
||||
// Kompakt-Ansicht: klassischer Vollbild-Chat; Cockpit: Workbench mit Dock.
|
||||
const content =
|
||||
mode === 'compact' ? (
|
||||
<ChatScreen />
|
||||
) : (
|
||||
<WorkspaceDeck projectId={pid} panels={COCKPIT_PANELS} badges={badges} />
|
||||
);
|
||||
|
||||
// Generative Flaeche als Overlay, sobald ARIA fuer dieses Projekt eine Ansicht
|
||||
// komponiert hat (present_view → aria_view). Chat/Cockpit bleiben darunter.
|
||||
const showView = !!view && (view.projectId || '') === (pid || '');
|
||||
|
||||
return (
|
||||
<View style={{ flex: 1 }}>
|
||||
{content}
|
||||
{showView && view && (
|
||||
<AriaViewCanvas
|
||||
view={view.view}
|
||||
onClose={() => {
|
||||
ariaView.clear(pid);
|
||||
setView(undefined);
|
||||
}}
|
||||
/>
|
||||
)}
|
||||
</View>
|
||||
);
|
||||
|
||||
const subtitles = useMemo(
|
||||
() => ({ chat: pid ? projectFocus.getProjectName(pid) : 'Hauptchat' } as Partial<Record<TileId, string>>),
|
||||
[pid, focus.projectNameById],
|
||||
);
|
||||
|
||||
return <WorkspaceCanvas projectId={pid} visibleTiles={visibleTiles} subtitles={subtitles} />;
|
||||
};
|
||||
|
||||
export default WorkspaceScreen;
|
||||
|
||||
@@ -76,10 +76,19 @@ export const NOVNC_HTML = `<!doctype html><html><head><meta charset="utf-8">
|
||||
};
|
||||
|
||||
var msg=document.getElementById('msg');
|
||||
// noVNC per ESM vom CDN laden.
|
||||
|
||||
// Tastatur laeuft NICHT mehr ueber ein verstecktes WebView-Feld (Android
|
||||
// oeffnet die Software-Tastatur dafuer unzuverlaessig). Stattdessen haelt die
|
||||
// App ein echtes RN-<TextInput> und ruft window.ariaVncKey.* per
|
||||
// injectJavaScript auf → wird unten (nach RFB-Init) definiert.
|
||||
// cp<0x100 → Keysym == Codepoint (Latin-1)
|
||||
// sonst → X11-Unicode-Keysym 0x01000000+cp
|
||||
function cpToKeysym(cp){ return cp < 0x100 ? cp : 0x01000000 + cp; }
|
||||
|
||||
import('https://cdn.jsdelivr.net/npm/@novnc/novnc@1.4.0/core/rfb.js').then(function(mod){
|
||||
var RFB = mod.default;
|
||||
var rfb = new RFB(document.getElementById('screen'), 'ws://aria-vnc/', {});
|
||||
var fit=true;
|
||||
rfb.scaleViewport = true;
|
||||
rfb.clipViewport = false;
|
||||
rfb.addEventListener('connect', function(){ msg.style.display='none'; post({event:'vnc_state', state:'connected'}); });
|
||||
@@ -88,6 +97,34 @@ export const NOVNC_HTML = `<!doctype html><html><head><meta charset="utf-8">
|
||||
post({event:'vnc_state', state:'disconnected'});
|
||||
});
|
||||
window.__rfb = rfb;
|
||||
|
||||
// Down+Up einer Taste an die VM schicken.
|
||||
function tap(keysym, code){ try{ rfb.sendKey(keysym, code||null, true); rfb.sendKey(keysym, code||null, false); }catch(_){} }
|
||||
|
||||
// Empfaenger-API: die App (RN-<TextInput> + Sondertasten-Leiste) ruft das
|
||||
// per injectJavaScript.
|
||||
// char(cp) druckbares Zeichen (Codepoint)
|
||||
// keysym(ks) Sondertaste als fertiges X11-Keysym (Enter/Esc/F1/…)
|
||||
// combo(mods,ks) Modifier(-Keysyms) halten → Taste → wieder loslassen
|
||||
// (Strg+C, Strg+Alt+Entf, …). mods = Array von Keysyms.
|
||||
window.ariaVncKey = {
|
||||
char: function(cp){ tap(cpToKeysym(cp)); },
|
||||
keysym: function(ks){ tap(ks); },
|
||||
combo: function(mods, ks){
|
||||
try{
|
||||
for(var i=0;i<mods.length;i++) rfb.sendKey(mods[i], null, true);
|
||||
rfb.sendKey(ks, null, true); rfb.sendKey(ks, null, false);
|
||||
for(var j=mods.length-1;j>=0;j--) rfb.sendKey(mods[j], null, false);
|
||||
}catch(_){}
|
||||
}
|
||||
};
|
||||
|
||||
// Steuerungs-API fuer die App (per injectJavaScript).
|
||||
window.ariaVncCtl = {
|
||||
cad: function(){ try{ rfb.sendCtrlAltDel(); }catch(_){} },
|
||||
toggleFit: function(){ fit=!fit; rfb.scaleViewport=fit; rfb.clipViewport=!fit; post({event:'vnc_fit', fit:fit}); }
|
||||
};
|
||||
|
||||
post({event:'ready'});
|
||||
}).catch(function(err){
|
||||
msg.textContent='noVNC konnte nicht geladen werden (Internet?)';
|
||||
|
||||
@@ -1,95 +1,15 @@
|
||||
/**
|
||||
* layout — Kachel-Geometrie + Kamera-Mathematik fuer den Workspace-Canvas.
|
||||
*
|
||||
* Welt-Koordinaten = Pixel bei Scale 1. Kacheln liegen auf einem festen 2x2-
|
||||
* Raster. Die "Welt-View" (Animated.View) ist exakt die Bounding-Box der gerade
|
||||
* sichtbaren Kacheln; Kinder werden relativ zu deren Ursprung positioniert.
|
||||
*
|
||||
* RN 0.73 kennt noch kein transformOrigin — Scale dreht um die View-MITTE.
|
||||
* Alle Kamera-Formeln rechnen deshalb mit Center-Origin:
|
||||
* screen = center + scale*(p - center) + translate
|
||||
* wobei center = (worldW/2, worldH/2) (die Welt-View sitzt bei screen 0,0).
|
||||
* layout — Panel-Definitionen der Workbench (Metadaten fuer das Dock).
|
||||
*/
|
||||
|
||||
export type TileId = 'chat' | 'editor' | 'vnc' | 'preview';
|
||||
export type TileId = 'chat' | 'files' | 'editor' | 'vnc' | 'preview';
|
||||
|
||||
export interface TileRect { x: number; y: number; w: number; h: number; }
|
||||
|
||||
export interface TileDef { id: TileId; title: string; icon: string; }
|
||||
|
||||
// Feste Kachelgroesse im Welt-Raster (Pixel bei Scale 1).
|
||||
const TILE_W = 1100;
|
||||
const TILE_H = 1500;
|
||||
const GAP = 140;
|
||||
|
||||
/** Absolute Welt-Rects pro Kachel (2x2-Raster). */
|
||||
export const TILE_RECTS: Record<TileId, TileRect> = {
|
||||
chat: { x: 0, y: 0, w: TILE_W, h: TILE_H },
|
||||
editor: { x: TILE_W + GAP, y: 0, w: TILE_W, h: TILE_H },
|
||||
vnc: { x: 0, y: TILE_H + GAP, w: TILE_W, h: TILE_H },
|
||||
preview: { x: TILE_W + GAP, y: TILE_H + GAP, w: TILE_W, h: TILE_H },
|
||||
};
|
||||
export interface TileDef { id: TileId; title: string; icon: string }
|
||||
|
||||
export const TILE_META: Record<TileId, TileDef> = {
|
||||
chat: { id: 'chat', title: 'Chat', icon: '💬' },
|
||||
editor: { id: 'editor', title: 'Editor', icon: '📝' },
|
||||
files: { id: 'files', title: 'Dateien', icon: '📁' },
|
||||
editor: { id: 'editor', title: 'Code', icon: '📝' },
|
||||
vnc: { id: 'vnc', title: 'Desktop', icon: '🖥️' },
|
||||
preview: { id: 'preview', title: 'Vorschau', icon: '🖼️' },
|
||||
};
|
||||
|
||||
// Reihenfolge fuer stabiles Rendering.
|
||||
export const TILE_ORDER: TileId[] = ['chat', 'editor', 'vnc', 'preview'];
|
||||
|
||||
export interface VisibilitySignals {
|
||||
kind: 'code' | 'chat';
|
||||
hasCode: boolean; // schon ein code_file empfangen
|
||||
hasDesktop: boolean; // Desktop verfuegbar gemeldet
|
||||
}
|
||||
|
||||
/** Welche Kacheln sind fuer den aktuellen Kontext sichtbar?
|
||||
* Chat ist immer da; Code-Projekt (explizit ODER durch ein Live-Signal)
|
||||
* blendet Editor/Desktop/Vorschau ein. */
|
||||
export function visibleTilesFor(sig: VisibilitySignals): TileId[] {
|
||||
const isCode = sig.kind === 'code' || sig.hasCode || sig.hasDesktop;
|
||||
if (!isCode) return ['chat'];
|
||||
return ['chat', 'editor', 'vnc', 'preview'];
|
||||
}
|
||||
|
||||
/** Bounding-Box mehrerer Kacheln. */
|
||||
export function boundsOf(ids: TileId[]): TileRect {
|
||||
if (ids.length === 0) return { x: 0, y: 0, w: TILE_W, h: TILE_H };
|
||||
let minX = Infinity, minY = Infinity, maxX = -Infinity, maxY = -Infinity;
|
||||
for (const id of ids) {
|
||||
const r = TILE_RECTS[id];
|
||||
minX = Math.min(minX, r.x);
|
||||
minY = Math.min(minY, r.y);
|
||||
maxX = Math.max(maxX, r.x + r.w);
|
||||
maxY = Math.max(maxY, r.y + r.h);
|
||||
}
|
||||
return { x: minX, y: minY, w: maxX - minX, h: maxY - minY };
|
||||
}
|
||||
|
||||
/** Rect in Welt-View-lokale Koordinaten (relativ zur Bounds-Ecke) umrechnen. */
|
||||
export function toLocal(rect: TileRect, bounds: TileRect): TileRect {
|
||||
return { x: rect.x - bounds.x, y: rect.y - bounds.y, w: rect.w, h: rect.h };
|
||||
}
|
||||
|
||||
export interface Camera { scale: number; tx: number; ty: number; }
|
||||
|
||||
/** Kamera, die ein (lokales) Rect bildschirmfuellend zeigt (Fokus-Modus). */
|
||||
export function focusCamera(localRect: TileRect, worldW: number, worldH: number, vw: number, vh: number): Camera {
|
||||
const s = Math.min(vw / localRect.w, vh / localRect.h);
|
||||
const pcx = localRect.x + localRect.w / 2;
|
||||
const pcy = localRect.y + localRect.h / 2;
|
||||
const tx = vw / 2 - worldW / 2 - s * (pcx - worldW / 2);
|
||||
const ty = vh / 2 - worldH / 2 - s * (pcy - worldH / 2);
|
||||
return { scale: s, tx, ty };
|
||||
}
|
||||
|
||||
/** Kamera, die die gesamte Welt zentriert einpasst (Uebersicht). */
|
||||
export function overviewCamera(worldW: number, worldH: number, vw: number, vh: number, pad = 0.86): Camera {
|
||||
const s = Math.min(vw / worldW, vh / worldH) * pad;
|
||||
const tx = vw / 2 - worldW / 2;
|
||||
const ty = vh / 2 - worldH / 2;
|
||||
return { scale: s, tx, ty };
|
||||
}
|
||||
|
||||
@@ -1,57 +1,97 @@
|
||||
/**
|
||||
* CodeEditorTile — Live-Code-Editor (WebView, editorHtml.ts).
|
||||
*
|
||||
* Zeigt live, was ARIA in diesem Projekt schreibt (aus dem codeFile-Spiegel)
|
||||
* und laesst Stefan selbst editieren — Aenderungen gehen als code_file_edit
|
||||
* zurueck an die Bridge. Datei-Tabs oben zum Umschalten.
|
||||
* Zeigt die Dateien eines Code-Projekts aus /shared/projects/<id>/:
|
||||
* - beim Oeffnen werden die BEREITS vorhandenen Dateien vom Brain geladen
|
||||
* (listProjectFiles/readProjectFile) — sonst waere der Editor leer, obwohl
|
||||
* ARIA schon Dateien geschrieben hat.
|
||||
* - live schreibt ARIA weiter → code_file-Stream aktualisiert die offene Datei.
|
||||
* Stefan kann selbst editieren → code_file_edit zurueck an die Bridge.
|
||||
*/
|
||||
|
||||
import React, { useCallback, useEffect, useRef, useState } from 'react';
|
||||
import React, { useCallback, useEffect, useMemo, useRef, useState } from 'react';
|
||||
import { ScrollView, StyleSheet, Text, TouchableOpacity, View } from 'react-native';
|
||||
import { WebView, WebViewMessageEvent } from 'react-native-webview';
|
||||
import codeFile, { CodeFileState } from '../../services/codeFile';
|
||||
import codeFile from '../../services/codeFile';
|
||||
import brainApi from '../../services/brainApi';
|
||||
import { EDITOR_HTML } from '../assets/editorHtml';
|
||||
|
||||
interface Props {
|
||||
projectId: string;
|
||||
}
|
||||
|
||||
function guessLang(path: string): string {
|
||||
const ext = (path.split('.').pop() || '').toLowerCase();
|
||||
const map: Record<string, string> = {
|
||||
js: 'javascript', ts: 'typescript', tsx: 'typescript', py: 'python',
|
||||
c: 'c', h: 'c', cpp: 'cpp', asm: 'asm', s: 'asm', sh: 'shell', bash: 'shell',
|
||||
html: 'html', css: 'css', json: 'json', yaml: 'yaml', yml: 'yaml', md: 'markdown',
|
||||
go: 'go', rs: 'rust', java: 'java', kt: 'kotlin', txt: 'text',
|
||||
};
|
||||
return map[ext] || 'text';
|
||||
}
|
||||
|
||||
const CodeEditorTile: React.FC<Props> = ({ projectId }) => {
|
||||
const webRef = useRef<WebView>(null);
|
||||
const [files, setFiles] = useState<CodeFileState[]>(() => codeFile.getFiles(projectId));
|
||||
const [currentPath, setCurrentPath] = useState<string | null>(files[0]?.path ?? null);
|
||||
// Pfade aus dem Brain (vorhandene Dateien) — mit Live-Dateien gemergt.
|
||||
const [serverPaths, setServerPaths] = useState<string[]>([]);
|
||||
const [currentPath, setCurrentPath] = useState<string | null>(null);
|
||||
const [loadErr, setLoadErr] = useState<string>('');
|
||||
|
||||
const readyRef = useRef(false);
|
||||
const currentPathRef = useRef<string | null>(currentPath);
|
||||
currentPathRef.current = currentPath;
|
||||
|
||||
// Vereinigte, sortierte Dateiliste (Live-Spiegel + Server-Dateien).
|
||||
const files = useMemo(() => {
|
||||
const set = new Set<string>(serverPaths);
|
||||
for (const f of codeFile.getFiles(projectId)) set.add(f.path);
|
||||
return Array.from(set).sort((a, b) => a.localeCompare(b));
|
||||
}, [serverPaths, projectId]);
|
||||
|
||||
const sendToWeb = useCallback((payload: Record<string, unknown>) => {
|
||||
const js = `window.ariaBridge && window.ariaBridge.onMessage(${JSON.stringify(JSON.stringify(payload))}); true;`;
|
||||
webRef.current?.injectJavaScript(js);
|
||||
}, []);
|
||||
|
||||
const loadFileIntoEditor = useCallback((path: string | null) => {
|
||||
const loadFileIntoEditor = useCallback(async (path: string | null) => {
|
||||
if (!path) { sendToWeb({ cmd: 'setContent', content: '', language: 'text', version: 0 }); return; }
|
||||
const f = codeFile.getFile(projectId, path);
|
||||
sendToWeb({ cmd: 'setContent', content: f?.content ?? '', language: f?.language ?? 'text', version: f?.version ?? 0 });
|
||||
// Live-Version bevorzugen (falls ARIA gerade schreibt), sonst vom Brain holen.
|
||||
const live = codeFile.getFile(projectId, path);
|
||||
if (live) {
|
||||
sendToWeb({ cmd: 'setContent', content: live.content, language: live.language, version: live.version });
|
||||
return;
|
||||
}
|
||||
try {
|
||||
const res = await brainApi.readProjectFile(projectId, path);
|
||||
sendToWeb({ cmd: 'setContent', content: res.content ?? '', language: guessLang(path), version: 0 });
|
||||
} catch (e: any) {
|
||||
sendToWeb({ cmd: 'setContent', content: `// Konnte ${path} nicht laden: ${e?.message || e}`, language: 'text', version: 0 });
|
||||
}
|
||||
}, [projectId, sendToWeb]);
|
||||
|
||||
// Projektwechsel: Dateiliste + Auswahl neu.
|
||||
// Projektwechsel: vorhandene Dateien vom Brain laden.
|
||||
useEffect(() => {
|
||||
const list = codeFile.getFiles(projectId);
|
||||
setFiles(list);
|
||||
setCurrentPath((prev) => (prev && list.some((f) => f.path === prev) ? prev : list[0]?.path ?? null));
|
||||
let cancelled = false;
|
||||
setLoadErr('');
|
||||
brainApi.listProjectFiles(projectId)
|
||||
.then(res => {
|
||||
if (cancelled) return;
|
||||
const paths = (res.files || []).map(f => f.path);
|
||||
setServerPaths(paths);
|
||||
setCurrentPath(prev => (prev && paths.includes(prev)) ? prev : (paths[0] ?? codeFile.getFiles(projectId)[0]?.path ?? null));
|
||||
})
|
||||
.catch(e => { if (!cancelled) setLoadErr(String(e?.message || e)); });
|
||||
return () => { cancelled = true; };
|
||||
}, [projectId]);
|
||||
|
||||
// Eingehende Updates aus dem Spiegel.
|
||||
// Live-Updates aus dem Spiegel.
|
||||
useEffect(() => {
|
||||
return codeFile.subscribe((u) => {
|
||||
if ((u.projectId || '') !== (projectId || '')) return;
|
||||
setFiles(codeFile.getFiles(projectId));
|
||||
// Noch keine Datei gewaehlt → diese oeffnen.
|
||||
setServerPaths(prev => prev.includes(u.path) ? prev : [...prev, u.path]);
|
||||
if (!currentPathRef.current) { setCurrentPath(u.path); return; }
|
||||
if (u.path !== currentPathRef.current) return;
|
||||
if (!readyRef.current) return;
|
||||
if (u.path !== currentPathRef.current || !readyRef.current) return;
|
||||
if (u.patch) {
|
||||
sendToWeb({ cmd: 'applyPatch', from: u.patch.from, to: u.patch.to, insert: u.patch.insert, version: u.version });
|
||||
} else {
|
||||
@@ -60,7 +100,7 @@ const CodeEditorTile: React.FC<Props> = ({ projectId }) => {
|
||||
});
|
||||
}, [projectId, sendToWeb]);
|
||||
|
||||
// Datei-Auswahl gewechselt → in den Editor laden (falls WebView bereit).
|
||||
// Datei-Auswahl gewechselt → laden (falls WebView bereit).
|
||||
useEffect(() => {
|
||||
if (readyRef.current) loadFileIntoEditor(currentPath);
|
||||
}, [currentPath, loadFileIntoEditor]);
|
||||
@@ -82,14 +122,14 @@ const CodeEditorTile: React.FC<Props> = ({ projectId }) => {
|
||||
<View style={styles.container}>
|
||||
<View style={styles.tabsRow}>
|
||||
{files.length === 0 ? (
|
||||
<Text style={styles.noFiles}>Noch keine Datei</Text>
|
||||
<Text style={styles.noFiles}>{loadErr ? `Fehler: ${loadErr}` : 'Noch keine Datei in diesem Projekt'}</Text>
|
||||
) : (
|
||||
<ScrollView horizontal showsHorizontalScrollIndicator={false} contentContainerStyle={styles.tabs}>
|
||||
{files.map((f) => {
|
||||
const active = f.path === currentPath;
|
||||
const name = f.path.split('/').pop() || f.path;
|
||||
{files.map((path) => {
|
||||
const active = path === currentPath;
|
||||
const name = path.split('/').pop() || path;
|
||||
return (
|
||||
<TouchableOpacity key={f.path} onPress={() => setCurrentPath(f.path)} style={[styles.tab, active && styles.tabActive]}>
|
||||
<TouchableOpacity key={path} onPress={() => setCurrentPath(path)} style={[styles.tab, active && styles.tabActive]}>
|
||||
<Text style={[styles.tabText, active && styles.tabTextActive]} numberOfLines={1}>{name}</Text>
|
||||
</TouchableOpacity>
|
||||
);
|
||||
|
||||
@@ -0,0 +1,192 @@
|
||||
/**
|
||||
* DesktopTile — das Desktop-Panel eines Code-Projekts.
|
||||
*
|
||||
* Zeigt die (pro Projekt gefuehrte) QEMU-VM-Liste: leer, bis ARIA per
|
||||
* vm_register eine VM eintraegt. Pro VM: Start / Stop / Verbinden. „Verbinden"
|
||||
* oeffnet die noVNC-Ansicht (VncTile) fuer den VNC-Port dieser VM.
|
||||
*/
|
||||
|
||||
import React, { useCallback, useEffect, useState } from 'react';
|
||||
import { ActivityIndicator, Image, Modal, ScrollView, StyleSheet, Text, TouchableOpacity, View } from 'react-native';
|
||||
import brainApi, { ProjectVm } from '../../services/brainApi';
|
||||
import VncTile from './VncTile';
|
||||
|
||||
interface Props {
|
||||
projectId: string;
|
||||
focused: boolean;
|
||||
}
|
||||
|
||||
const DesktopTile: React.FC<Props> = ({ projectId, focused }) => {
|
||||
const [vms, setVms] = useState<ProjectVm[]>([]);
|
||||
const [loading, setLoading] = useState(false);
|
||||
const [err, setErr] = useState('');
|
||||
const [busy, setBusy] = useState(''); // VM-Name, der gerade bootet/stoppt
|
||||
const [connected, setConnected] = useState<ProjectVm | null>(null);
|
||||
const [shotBusy, setShotBusy] = useState('');
|
||||
const [shot, setShot] = useState<{ name: string; b64: string } | null>(null);
|
||||
|
||||
const load = useCallback(() => {
|
||||
if (!projectId) { setVms([]); setErr(''); setLoading(false); return; }
|
||||
setLoading(true); setErr('');
|
||||
brainApi.listProjectVms(projectId)
|
||||
.then(r => setVms(r.vms || []))
|
||||
.catch(e => setErr(String(e?.message || e)))
|
||||
.finally(() => setLoading(false));
|
||||
}, [projectId]);
|
||||
|
||||
useEffect(() => {
|
||||
if (focused && !connected) load();
|
||||
}, [focused, projectId, connected, load]);
|
||||
|
||||
const boot = useCallback((vm: ProjectVm) => {
|
||||
setBusy(vm.name);
|
||||
brainApi.bootProjectVm(projectId, vm.name)
|
||||
.then(() => load())
|
||||
.catch(e => setErr(String(e?.message || e)))
|
||||
.finally(() => setBusy(''));
|
||||
}, [projectId, load]);
|
||||
|
||||
const stop = useCallback((vm: ProjectVm) => {
|
||||
setBusy(vm.name);
|
||||
brainApi.stopProjectVm(projectId, vm.name)
|
||||
.then(() => load())
|
||||
.catch(e => setErr(String(e?.message || e)))
|
||||
.finally(() => setBusy(''));
|
||||
}, [projectId, load]);
|
||||
|
||||
const screenshot = useCallback((vm: ProjectVm) => {
|
||||
setShotBusy(vm.name); setErr('');
|
||||
brainApi.screenshotProjectVm(projectId, vm.name)
|
||||
.then(r => setShot({ name: vm.name, b64: r.base64 }))
|
||||
.catch(e => setErr(String(e?.message || e)))
|
||||
.finally(() => setShotBusy(''));
|
||||
}, [projectId]);
|
||||
|
||||
if (!focused) {
|
||||
return (
|
||||
<View style={styles.placeholder}>
|
||||
<Text style={styles.icon}>🖥️</Text>
|
||||
<Text style={styles.text}>Desktop</Text>
|
||||
<Text style={styles.sub}>Panel öffnen für VM-Liste</Text>
|
||||
</View>
|
||||
);
|
||||
}
|
||||
|
||||
return (
|
||||
<View style={styles.container}>
|
||||
<View style={styles.bar}>
|
||||
<Text style={styles.barTitle}>Virtuelle Maschinen</Text>
|
||||
<TouchableOpacity onPress={load} style={styles.barBtn}><Text style={styles.barBtnText}>↻</Text></TouchableOpacity>
|
||||
</View>
|
||||
<ScrollView contentContainerStyle={{ padding: 12 }}>
|
||||
{loading && vms.length === 0 ? (
|
||||
<ActivityIndicator color="#0096FF" style={{ marginTop: 20 }} />
|
||||
) : err ? (
|
||||
<Text style={styles.err}>{err}</Text>
|
||||
) : !projectId ? (
|
||||
<Text style={styles.empty}>Kein aktives Projekt — wechsle in ein Projekt für dessen VMs.</Text>
|
||||
) : vms.length === 0 ? (
|
||||
<Text style={styles.empty}>
|
||||
Noch keine VM in diesem Projekt.{'\n'}
|
||||
Sag ARIA z.B. „bau eine QEMU-VM zum Testen" — sie registriert sie hier,
|
||||
dann kannst du sie starten und verbinden.
|
||||
</Text>
|
||||
) : (
|
||||
vms.map(vm => {
|
||||
const isBusy = busy === vm.name;
|
||||
return (
|
||||
<View key={vm.name} style={styles.vmRow}>
|
||||
<View style={{ flex: 1 }}>
|
||||
<Text style={styles.vmName}>
|
||||
<Text style={{ color: vm.running ? '#34C759' : '#555570' }}>●</Text> {vm.name}
|
||||
<Text style={styles.vmMeta}> {vm.arch} · {vm.running ? 'läuft' : 'gestoppt'}</Text>
|
||||
</Text>
|
||||
<Text style={styles.vmCmd} numberOfLines={2}>{vm.boot_cmd || `aria-vm boot ${vm.name} --vnc-display ${vm.vnc_display}`}</Text>
|
||||
</View>
|
||||
<View style={styles.vmBtns}>
|
||||
{isBusy ? (
|
||||
<ActivityIndicator color="#0096FF" />
|
||||
) : vm.running ? (
|
||||
<>
|
||||
<TouchableOpacity onPress={() => screenshot(vm)} style={[styles.vmBtn, { borderColor: '#8888AA' }]} disabled={shotBusy === vm.name}>
|
||||
{shotBusy === vm.name
|
||||
? <ActivityIndicator color="#8888AA" size="small" />
|
||||
: <Text style={[styles.vmBtnText, { color: '#C8C8E0' }]}>📷</Text>}
|
||||
</TouchableOpacity>
|
||||
<TouchableOpacity onPress={() => setConnected(vm)} style={[styles.vmBtn, { borderColor: '#0096FF' }]}>
|
||||
<Text style={[styles.vmBtnText, { color: '#0096FF' }]}>Verbinden</Text>
|
||||
</TouchableOpacity>
|
||||
<TouchableOpacity onPress={() => stop(vm)} style={[styles.vmBtn, { borderColor: '#E55C5C' }]}>
|
||||
<Text style={[styles.vmBtnText, { color: '#E55C5C' }]}>Stop</Text>
|
||||
</TouchableOpacity>
|
||||
</>
|
||||
) : (
|
||||
<TouchableOpacity onPress={() => boot(vm)} style={[styles.vmBtn, { borderColor: '#34C759' }]}>
|
||||
<Text style={[styles.vmBtnText, { color: '#34C759' }]}>Start</Text>
|
||||
</TouchableOpacity>
|
||||
)}
|
||||
</View>
|
||||
</View>
|
||||
);
|
||||
})
|
||||
)}
|
||||
</ScrollView>
|
||||
|
||||
<Modal visible={!!shot} transparent animationType="fade" onRequestClose={() => setShot(null)}>
|
||||
<TouchableOpacity style={styles.shotOverlay} activeOpacity={1} onPress={() => setShot(null)}>
|
||||
<Text style={styles.shotTitle}>{shot?.name} — Screenshot</Text>
|
||||
{shot && (
|
||||
<Image
|
||||
source={{ uri: `data:image/png;base64,${shot.b64}` }}
|
||||
style={styles.shotImg}
|
||||
resizeMode="contain"
|
||||
/>
|
||||
)}
|
||||
<Text style={styles.shotHint}>Tippen zum Schließen</Text>
|
||||
</TouchableOpacity>
|
||||
</Modal>
|
||||
|
||||
{/* Vollbild-VNC — randlos ueber das ganze Display (Header + Dock weg). */}
|
||||
{connected && (
|
||||
<Modal visible animationType="slide" onRequestClose={() => setConnected(null)} supportedOrientations={['portrait', 'landscape']}>
|
||||
<View style={styles.fs}>
|
||||
<VncTile projectId={projectId} focused port={connected.vnc_port || (5900 + (connected.vnc_display || 1))} />
|
||||
<TouchableOpacity style={styles.fsBack} onPress={() => setConnected(null)} activeOpacity={0.8}>
|
||||
<Text style={styles.fsBackText}>‹ VMs</Text>
|
||||
</TouchableOpacity>
|
||||
</View>
|
||||
</Modal>
|
||||
)}
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
container: { flex: 1, backgroundColor: '#0D0D1A' },
|
||||
placeholder: { flex: 1, backgroundColor: '#000', alignItems: 'center', justifyContent: 'center' },
|
||||
icon: { fontSize: 64, marginBottom: 16 },
|
||||
text: { color: '#FFFFFF', fontSize: 18, fontWeight: '700' },
|
||||
sub: { color: '#9090B0', fontSize: 14, marginTop: 8 },
|
||||
bar: { height: 40, flexDirection: 'row', alignItems: 'center', paddingHorizontal: 12, backgroundColor: '#12122A', borderBottomColor: '#1E1E2E', borderBottomWidth: 1 },
|
||||
barTitle: { color: '#E0E0F0', fontSize: 14, fontWeight: '700', flex: 1 },
|
||||
barBtn: { paddingHorizontal: 10, paddingVertical: 4 },
|
||||
barBtnText: { color: '#0096FF', fontSize: 14, fontWeight: '700' },
|
||||
empty: { color: '#8888AA', fontSize: 13, lineHeight: 20, textAlign: 'center', marginTop: 24 },
|
||||
err: { color: '#FF6E6E', fontSize: 13, marginTop: 16 },
|
||||
vmRow: { flexDirection: 'row', alignItems: 'center', backgroundColor: '#12122A', borderRadius: 10, padding: 12, marginBottom: 8 },
|
||||
vmName: { color: '#E0E0F0', fontSize: 15, fontWeight: '700' },
|
||||
vmMeta: { color: '#8888AA', fontSize: 12, fontWeight: '400' },
|
||||
vmCmd: { color: '#6A9BD0', fontSize: 11, fontFamily: 'monospace', marginTop: 4 },
|
||||
vmBtns: { flexDirection: 'row', gap: 6, alignItems: 'center' },
|
||||
vmBtn: { borderWidth: 1, borderRadius: 8, paddingHorizontal: 10, paddingVertical: 6, minWidth: 34, alignItems: 'center' },
|
||||
vmBtnText: { fontSize: 12, fontWeight: '700' },
|
||||
fs: { flex: 1, backgroundColor: '#000000' },
|
||||
fsBack: { position: 'absolute', top: 34, left: 10, backgroundColor: 'rgba(18,18,42,0.9)', borderColor: '#2A2A3E', borderWidth: 1, borderRadius: 10, paddingHorizontal: 12, paddingVertical: 7 },
|
||||
fsBackText: { color: '#0096FF', fontSize: 14, fontWeight: '700' },
|
||||
shotOverlay: { flex: 1, backgroundColor: 'rgba(0,0,0,0.92)', alignItems: 'center', justifyContent: 'center', padding: 12 },
|
||||
shotTitle: { color: '#E0E0F0', fontSize: 14, fontWeight: '700', marginBottom: 10 },
|
||||
shotImg: { width: '100%', height: '78%', backgroundColor: '#000' },
|
||||
shotHint: { color: '#8888AA', fontSize: 12, marginTop: 12 },
|
||||
});
|
||||
|
||||
export default DesktopTile;
|
||||
@@ -0,0 +1,149 @@
|
||||
/**
|
||||
* FilesTile — Datei-Browser eines Projekts (/shared/projects/<id>/).
|
||||
*
|
||||
* Listet ALLE Dateien (nicht nur Code): erzeugte Bilder, Logs, Assets … — die
|
||||
* gleichen, die in der Projektliste als 📄 gezaehlt werden. Tippen auf ein Bild
|
||||
* zeigt es; tippen auf eine Textdatei zeigt eine Vorschau.
|
||||
*/
|
||||
|
||||
import React, { useCallback, useEffect, useState } from 'react';
|
||||
import { ActivityIndicator, Image, Modal, ScrollView, StyleSheet, Text, TouchableOpacity, View } from 'react-native';
|
||||
import brainApi from '../../services/brainApi';
|
||||
|
||||
interface Props {
|
||||
projectId: string;
|
||||
focused: boolean;
|
||||
}
|
||||
|
||||
interface FileEntry { path: string; size: number }
|
||||
|
||||
const IMG_EXT = ['png', 'jpg', 'jpeg', 'gif', 'webp', 'bmp'];
|
||||
|
||||
function ext(path: string): string { return (path.split('.').pop() || '').toLowerCase(); }
|
||||
function isImage(path: string): boolean { return IMG_EXT.includes(ext(path)); }
|
||||
function iconFor(path: string): string {
|
||||
const e = ext(path);
|
||||
if (isImage(path)) return '🖼️';
|
||||
if (['md', 'txt', 'readme'].includes(e)) return '📄';
|
||||
if (['asm', 's', 'c', 'h', 'cpp', 'py', 'js', 'ts', 'sh', 'go', 'rs'].includes(e)) return '📝';
|
||||
if (['zip', 'tar', 'gz', 'img', 'iso', 'qcow2'].includes(e)) return '📦';
|
||||
return '📄';
|
||||
}
|
||||
function humanSize(n: number): string {
|
||||
if (n < 1024) return `${n} B`;
|
||||
if (n < 1024 * 1024) return `${(n / 1024).toFixed(1)} KB`;
|
||||
return `${(n / 1024 / 1024).toFixed(1)} MB`;
|
||||
}
|
||||
|
||||
const FilesTile: React.FC<Props> = ({ projectId, focused }) => {
|
||||
const [files, setFiles] = useState<FileEntry[]>([]);
|
||||
const [loading, setLoading] = useState(false);
|
||||
const [err, setErr] = useState('');
|
||||
const [preview, setPreview] = useState<{ path: string; kind: 'image' | 'text'; data: string } | null>(null);
|
||||
const [previewBusy, setPreviewBusy] = useState('');
|
||||
|
||||
const load = useCallback(() => {
|
||||
if (!projectId) { setFiles([]); setErr(''); setLoading(false); return; }
|
||||
setLoading(true); setErr('');
|
||||
brainApi.listProjectFiles(projectId)
|
||||
.then(r => setFiles((r.files || []).slice().sort((a, b) => a.path.localeCompare(b.path))))
|
||||
.catch(e => setErr(String(e?.message || e)))
|
||||
.finally(() => setLoading(false));
|
||||
}, [projectId]);
|
||||
|
||||
useEffect(() => { if (focused) load(); }, [focused, projectId, load]);
|
||||
|
||||
const open = useCallback((f: FileEntry) => {
|
||||
setPreviewBusy(f.path); setErr('');
|
||||
if (isImage(f.path)) {
|
||||
brainApi.readProjectFileBinary(projectId, f.path)
|
||||
.then(r => setPreview({ path: f.path, kind: 'image', data: `data:${r.mime};base64,${r.base64}` }))
|
||||
.catch(e => setErr(String(e?.message || e)))
|
||||
.finally(() => setPreviewBusy(''));
|
||||
} else {
|
||||
brainApi.readProjectFile(projectId, f.path)
|
||||
.then(r => setPreview({ path: f.path, kind: 'text', data: r.content ?? '' }))
|
||||
.catch(e => setErr(String(e?.message || e)))
|
||||
.finally(() => setPreviewBusy(''));
|
||||
}
|
||||
}, [projectId]);
|
||||
|
||||
if (!focused) {
|
||||
return (
|
||||
<View style={styles.placeholder}>
|
||||
<Text style={styles.icon}>📁</Text>
|
||||
<Text style={styles.text}>Dateien</Text>
|
||||
</View>
|
||||
);
|
||||
}
|
||||
|
||||
return (
|
||||
<View style={styles.container}>
|
||||
<View style={styles.bar}>
|
||||
<Text style={styles.barTitle}>Dateien{files.length ? ` (${files.length})` : ''}</Text>
|
||||
<TouchableOpacity onPress={load} style={styles.barBtn}><Text style={styles.barBtnText}>↻</Text></TouchableOpacity>
|
||||
</View>
|
||||
<ScrollView contentContainerStyle={{ padding: 8 }}>
|
||||
{loading && files.length === 0 ? (
|
||||
<ActivityIndicator color="#0096FF" style={{ marginTop: 20 }} />
|
||||
) : err ? (
|
||||
<Text style={styles.err}>{err}</Text>
|
||||
) : files.length === 0 ? (
|
||||
<Text style={styles.empty}>{!projectId ? 'Kein aktives Projekt — wechsle in ein Projekt für dessen Dateien.' : 'Noch keine Dateien in diesem Projekt.'}</Text>
|
||||
) : (
|
||||
files.map(f => (
|
||||
<TouchableOpacity key={f.path} onPress={() => open(f)} style={styles.row} disabled={previewBusy === f.path}>
|
||||
<Text style={styles.rowIcon}>{iconFor(f.path)}</Text>
|
||||
<Text style={styles.rowName} numberOfLines={1}>{f.path}</Text>
|
||||
{previewBusy === f.path
|
||||
? <ActivityIndicator color="#8888AA" size="small" />
|
||||
: <Text style={styles.rowSize}>{humanSize(f.size)}</Text>}
|
||||
</TouchableOpacity>
|
||||
))
|
||||
)}
|
||||
</ScrollView>
|
||||
|
||||
<Modal visible={!!preview} transparent animationType="fade" onRequestClose={() => setPreview(null)}>
|
||||
<View style={styles.pvOverlay}>
|
||||
<View style={styles.pvBar}>
|
||||
<Text style={styles.pvTitle} numberOfLines={1}>{preview?.path}</Text>
|
||||
<TouchableOpacity onPress={() => setPreview(null)}><Text style={styles.pvClose}>✕</Text></TouchableOpacity>
|
||||
</View>
|
||||
{preview?.kind === 'image' ? (
|
||||
<Image source={{ uri: preview.data }} style={styles.pvImg} resizeMode="contain" />
|
||||
) : (
|
||||
<ScrollView style={styles.pvTextWrap} horizontal>
|
||||
<ScrollView><Text style={styles.pvText}>{preview?.data}</Text></ScrollView>
|
||||
</ScrollView>
|
||||
)}
|
||||
</View>
|
||||
</Modal>
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
container: { flex: 1, backgroundColor: '#0D0D1A' },
|
||||
placeholder: { flex: 1, backgroundColor: '#0D0D1A', alignItems: 'center', justifyContent: 'center' },
|
||||
icon: { fontSize: 56, marginBottom: 10 },
|
||||
text: { color: '#FFFFFF', fontSize: 18, fontWeight: '700' },
|
||||
bar: { height: 40, flexDirection: 'row', alignItems: 'center', paddingHorizontal: 12, backgroundColor: '#12122A', borderBottomColor: '#1E1E2E', borderBottomWidth: 1 },
|
||||
barTitle: { color: '#E0E0F0', fontSize: 14, fontWeight: '700', flex: 1 },
|
||||
barBtn: { paddingHorizontal: 10, paddingVertical: 4 },
|
||||
barBtnText: { color: '#0096FF', fontSize: 14, fontWeight: '700' },
|
||||
empty: { color: '#8888AA', fontSize: 13, textAlign: 'center', marginTop: 24 },
|
||||
err: { color: '#FF6E6E', fontSize: 13, marginTop: 16, paddingHorizontal: 8 },
|
||||
row: { flexDirection: 'row', alignItems: 'center', paddingVertical: 10, paddingHorizontal: 8, borderBottomColor: '#161628', borderBottomWidth: 1, gap: 10 },
|
||||
rowIcon: { fontSize: 18 },
|
||||
rowName: { color: '#E0E0F0', fontSize: 13, flex: 1 },
|
||||
rowSize: { color: '#555570', fontSize: 11 },
|
||||
pvOverlay: { flex: 1, backgroundColor: 'rgba(0,0,0,0.94)' },
|
||||
pvBar: { flexDirection: 'row', alignItems: 'center', padding: 12, gap: 10 },
|
||||
pvTitle: { color: '#E0E0F0', fontSize: 13, fontWeight: '700', flex: 1 },
|
||||
pvClose: { color: '#E0E0F0', fontSize: 20, paddingHorizontal: 6 },
|
||||
pvImg: { flex: 1, width: '100%' },
|
||||
pvTextWrap: { flex: 1, padding: 12 },
|
||||
pvText: { color: '#C8C8E0', fontSize: 12, fontFamily: 'monospace' },
|
||||
});
|
||||
|
||||
export default FilesTile;
|
||||
@@ -1,40 +0,0 @@
|
||||
/**
|
||||
* PreviewTile — zeigt den letzten Screenshot/Vorschau-Frame eines Code-Projekts
|
||||
* (z. B. aria-vm screenshot). Fuellt sich, sobald ARIA ein Bild in den
|
||||
* Vorschau-Kanal legt; bis dahin ein ruhiger Platzhalter.
|
||||
*
|
||||
* (Screenshot-Anbindung folgt mit dem QEMU-Track; hier zunaechst die Kachel.)
|
||||
*/
|
||||
|
||||
import React from 'react';
|
||||
import { Image, StyleSheet, Text, View } from 'react-native';
|
||||
|
||||
interface Props {
|
||||
imageUri?: string;
|
||||
}
|
||||
|
||||
const PreviewTile: React.FC<Props> = ({ imageUri }) => {
|
||||
return (
|
||||
<View style={styles.container}>
|
||||
{imageUri ? (
|
||||
<Image source={{ uri: imageUri }} style={styles.image} resizeMode="contain" />
|
||||
) : (
|
||||
<>
|
||||
<Text style={styles.icon}>🖼️</Text>
|
||||
<Text style={styles.text}>Noch keine Vorschau</Text>
|
||||
<Text style={styles.sub}>Screenshots der VM erscheinen hier.</Text>
|
||||
</>
|
||||
)}
|
||||
</View>
|
||||
);
|
||||
};
|
||||
|
||||
const styles = StyleSheet.create({
|
||||
container: { flex: 1, backgroundColor: '#0D0D1A', alignItems: 'center', justifyContent: 'center' },
|
||||
image: { width: '100%', height: '100%' },
|
||||
icon: { fontSize: 64, marginBottom: 16 },
|
||||
text: { color: '#FFFFFF', fontSize: 18, fontWeight: '700' },
|
||||
sub: { color: '#9090B0', fontSize: 14, marginTop: 8 },
|
||||
});
|
||||
|
||||
export default PreviewTile;
|
||||
@@ -1,15 +1,17 @@
|
||||
/**
|
||||
* VncTile — Live-Desktop der QEMU-VM (noVNC in einer WebView, RFB durch RVS).
|
||||
*
|
||||
* Nur im Fokus aktiv: dann wird die WebView gemountet, bei 'ready' der
|
||||
* RVS-VNC-Tunnel geoeffnet (desktop.openVnc). Server-Bytes (vnc_data) werden in
|
||||
* die WebView injiziert, RFB-Bytes der WebView (vnc_send) gehen als vnc_input
|
||||
* zurueck. Verlaesst man die Kachel, wird der Tunnel geschlossen (die VM laeuft
|
||||
* auf dem Host weiter).
|
||||
* Nur aktiv, wenn das Desktop-Panel offen ist (focused): dann WebView mounten,
|
||||
* bei 'ready' den RVS-VNC-Tunnel oeffnen. Zwei Bedien-Leisten machen die VM auf
|
||||
* dem Handy voll bedienbar:
|
||||
* - ctlBar (oben rechts): Fn-Leiste ein/aus, Software-Tastatur, Fit ↔ 1:1.
|
||||
* - keyBar (oben, Fn): echte Steuertasten, die keine Software-Tastatur
|
||||
* liefert — Esc, Tab, Pfeile, Pos1/Ende/Bild, Einfg/Entf, Enter, F1–F12 und
|
||||
* Sticky-Modifier Strg/Alt/Shift (fuer Strg+C, Strg+Alt+Entf, …).
|
||||
*/
|
||||
|
||||
import React, { useCallback, useEffect, useRef, useState } from 'react';
|
||||
import { StyleSheet, Text, View } from 'react-native';
|
||||
import { Keyboard, NativeSyntheticEvent, ScrollView, StyleSheet, Text, TextInput, TextInputChangeEventData, TextInputKeyPressEventData, TouchableOpacity, View } from 'react-native';
|
||||
import { WebView, WebViewMessageEvent } from 'react-native-webview';
|
||||
import desktop from '../../services/desktop';
|
||||
import { NOVNC_HTML } from '../assets/novncHtml';
|
||||
@@ -17,36 +19,136 @@ import { NOVNC_HTML } from '../assets/novncHtml';
|
||||
interface Props {
|
||||
projectId: string;
|
||||
focused: boolean;
|
||||
port?: number; // VNC-Port der zu verbindenden VM (Default 5901 = Display :1)
|
||||
}
|
||||
|
||||
const VncTile: React.FC<Props> = ({ projectId, focused }) => {
|
||||
// X11-Keysyms fuer Sondertasten, die kein druckbares Zeichen liefern.
|
||||
const KEYSYM = { Backspace: 0xff08, Enter: 0xff0d, Tab: 0xff09 };
|
||||
const MOD = { ctrl: 0xffe3, alt: 0xffe9, shift: 0xffe1 };
|
||||
const cpToKeysym = (cp: number) => (cp < 0x100 ? cp : 0x01000000 + cp);
|
||||
|
||||
// Sondertasten fuer die Fn-Leiste (Label → Keysym).
|
||||
const NAV_KEYS: { label: string; ks: number }[] = [
|
||||
{ label: 'Esc', ks: 0xff1b }, { label: 'Tab', ks: 0xff09 },
|
||||
{ label: '←', ks: 0xff51 }, { label: '↑', ks: 0xff52 }, { label: '↓', ks: 0xff54 }, { label: '→', ks: 0xff53 },
|
||||
{ label: 'Pos1', ks: 0xff50 }, { label: 'Ende', ks: 0xff57 },
|
||||
{ label: 'Bild↑', ks: 0xff55 }, { label: 'Bild↓', ks: 0xff56 },
|
||||
{ label: 'Einfg', ks: 0xff63 }, { label: 'Entf', ks: 0xffff }, { label: '⏎', ks: 0xff0d },
|
||||
];
|
||||
const F_KEYS: { label: string; ks: number }[] = Array.from({ length: 12 }, (_, i) => ({ label: 'F' + (i + 1), ks: 0xffbe + i }));
|
||||
|
||||
const VncTile: React.FC<Props> = ({ projectId, focused, port = 5901 }) => {
|
||||
const webRef = useRef<WebView>(null);
|
||||
const kbdRef = useRef<TextInput>(null);
|
||||
const bufRef = useRef(''); // Spiegel des TextInput-Textes
|
||||
const [status, setStatus] = useState<'idle' | 'connecting' | 'connected' | 'disconnected'>('idle');
|
||||
const [kbdOn, setKbdOn] = useState(false);
|
||||
const [keyBar, setKeyBar] = useState(false); // Fn-Leiste sichtbar?
|
||||
const [mods, setMods] = useState({ ctrl: false, alt: false, shift: false });
|
||||
const modRef = useRef({ ctrl: false, alt: false, shift: false }); // Spiegel fuer Closures
|
||||
const unsubDataRef = useRef<null | (() => void)>(null);
|
||||
|
||||
// Aufraeumen: Tunnel zu + Daten-Abo weg.
|
||||
const teardown = useCallback(() => {
|
||||
if (unsubDataRef.current) { unsubDataRef.current(); unsubDataRef.current = null; }
|
||||
desktop.closeVnc();
|
||||
}, []);
|
||||
|
||||
// Fokus verloren / Unmount → Tunnel schliessen.
|
||||
useEffect(() => {
|
||||
if (!focused) { teardown(); setStatus('idle'); }
|
||||
return () => teardown();
|
||||
}, [focused, teardown]);
|
||||
|
||||
// Button-Zustand an die ECHTE Tastatur-Sichtbarkeit koppeln: Androids
|
||||
// Zurueck-Taste blendet die Tastatur aus, ohne den TextInput zu blurren —
|
||||
// ueber keyboardDidHide setzen wir das ⌨-Symbol trotzdem zurueck.
|
||||
useEffect(() => {
|
||||
if (!focused) return;
|
||||
const show = Keyboard.addListener('keyboardDidShow', () => setKbdOn(true));
|
||||
const hide = Keyboard.addListener('keyboardDidHide', () => setKbdOn(false));
|
||||
return () => { show.remove(); hide.remove(); };
|
||||
}, [focused]);
|
||||
|
||||
const ctl = useCallback((fn: string) => {
|
||||
webRef.current?.injectJavaScript(`window.ariaVncCtl && window.ariaVncCtl.${fn}(); true;`);
|
||||
}, []);
|
||||
|
||||
const sendKeysym = useCallback((ks: number) => {
|
||||
webRef.current?.injectJavaScript(`window.ariaVncKey && window.ariaVncKey.keysym(${ks}); true;`);
|
||||
}, []);
|
||||
const sendCombo = useCallback((modKeysyms: number[], ks: number) => {
|
||||
webRef.current?.injectJavaScript(`window.ariaVncKey && window.ariaVncKey.combo(${JSON.stringify(modKeysyms)}, ${ks}); true;`);
|
||||
}, []);
|
||||
|
||||
// Aktive Sticky-Modifier als Keysym-Liste; nach dem Anwenden one-shot zuruecksetzen.
|
||||
const activeMods = useCallback(() => {
|
||||
const m = modRef.current; const a: number[] = [];
|
||||
if (m.ctrl) a.push(MOD.ctrl); if (m.alt) a.push(MOD.alt); if (m.shift) a.push(MOD.shift);
|
||||
return a;
|
||||
}, []);
|
||||
const clearMods = useCallback(() => {
|
||||
if (modRef.current.ctrl || modRef.current.alt || modRef.current.shift) {
|
||||
modRef.current = { ctrl: false, alt: false, shift: false };
|
||||
setMods(modRef.current);
|
||||
}
|
||||
}, []);
|
||||
const toggleMod = useCallback((k: 'ctrl' | 'alt' | 'shift') => {
|
||||
modRef.current = { ...modRef.current, [k]: !modRef.current[k] };
|
||||
setMods(modRef.current);
|
||||
}, []);
|
||||
|
||||
// Eine Taste (fertiges Keysym) senden — mit ggf. aktiven Modifiern.
|
||||
const pressKey = useCallback((ks: number) => {
|
||||
const m = activeMods();
|
||||
if (m.length) { sendCombo(m, ks); clearMods(); } else sendKeysym(ks);
|
||||
}, [activeMods, sendCombo, clearMods, sendKeysym]);
|
||||
|
||||
// Ein druckbares Zeichen senden — mit ggf. aktiven Modifiern (Strg+C etc.).
|
||||
const pressChar = useCallback((cp: number) => {
|
||||
const m = activeMods();
|
||||
if (m.length) { sendCombo(m, cpToKeysym(cp)); clearMods(); }
|
||||
else webRef.current?.injectJavaScript(`window.ariaVncKey && window.ariaVncKey.char(${cp}); true;`);
|
||||
}, [activeMods, sendCombo, clearMods]);
|
||||
|
||||
// Tastatur ein-/ausblenden. Oeffnen: blur→focus erzwingt das Aufklappen auch
|
||||
// dann, wenn der TextInput noch fokussiert ist (Tastatur per Zurueck-Taste
|
||||
// versteckt). Schliessen: Keyboard.dismiss(); den Button-Zustand setzt der
|
||||
// keyboardDidShow/Hide-Listener — nicht hier —, damit er nie „haengen" bleibt.
|
||||
const toggleKbd = useCallback(() => {
|
||||
if (kbdOn) { Keyboard.dismiss(); }
|
||||
else { kbdRef.current?.blur(); setTimeout(() => kbdRef.current?.focus(), 30); }
|
||||
}, [kbdOn]);
|
||||
|
||||
// Druckbare Zeichen: Prefix-Diff des (wachsenden) Feldes → nur neu Getipptes an
|
||||
// die VM. Loeschungen kommen ueber onKeyPress(Backspace), daher hier nur Inserts.
|
||||
const onKbdChange = useCallback((e: NativeSyntheticEvent<TextInputChangeEventData>) => {
|
||||
const text = e.nativeEvent.text || '';
|
||||
const prev = bufRef.current;
|
||||
let i = 0;
|
||||
const min = Math.min(prev.length, text.length);
|
||||
while (i < min && prev.charCodeAt(i) === text.charCodeAt(i)) i++;
|
||||
for (const ch of text.slice(i)) { const cp = ch.codePointAt(0); if (cp) pressChar(cp); }
|
||||
bufRef.current = text;
|
||||
if (text.length > 200) { bufRef.current = ''; kbdRef.current?.setNativeProps({ text: '' }); }
|
||||
}, [pressChar]);
|
||||
|
||||
// Sondertasten der Software-Tastatur: Backspace feuert auf Android zuverlaessig
|
||||
// als keyPress; die Return-Taste (Haken) kommt als onSubmitEditing (s.u.).
|
||||
const onKbdKeyPress = useCallback((e: NativeSyntheticEvent<TextInputKeyPressEventData>) => {
|
||||
const k = e.nativeEvent.key;
|
||||
if (k === 'Backspace') pressKey(KEYSYM.Backspace);
|
||||
else if (k === 'Enter') pressKey(KEYSYM.Enter);
|
||||
}, [pressKey]);
|
||||
|
||||
const onMessage = useCallback((e: WebViewMessageEvent) => {
|
||||
let m: any;
|
||||
try { m = JSON.parse(e.nativeEvent.data); } catch { return; }
|
||||
if (m.event === 'ready') {
|
||||
// WebView + RFB bereit → Tunnel oeffnen und Server-Bytes einspeisen.
|
||||
setStatus('connecting');
|
||||
unsubDataRef.current = desktop.onVncData((b64) => {
|
||||
const js = `window.ariaVnc && window.ariaVnc.onData(${JSON.stringify(b64)}); true;`;
|
||||
webRef.current?.injectJavaScript(js);
|
||||
});
|
||||
desktop.openVnc(projectId);
|
||||
desktop.openVnc(projectId, port);
|
||||
} else if (m.event === 'vnc_send') {
|
||||
desktop.sendInput(m.b64);
|
||||
} else if (m.event === 'vnc_close') {
|
||||
@@ -55,18 +157,19 @@ const VncTile: React.FC<Props> = ({ projectId, focused }) => {
|
||||
if (m.state === 'connected') setStatus('connected');
|
||||
else if (m.state === 'disconnected') setStatus('disconnected');
|
||||
}
|
||||
}, [projectId]);
|
||||
}, [projectId, port]);
|
||||
|
||||
if (!focused) {
|
||||
return (
|
||||
<View style={styles.placeholder}>
|
||||
<Text style={styles.icon}>🖥️</Text>
|
||||
<Text style={styles.text}>Desktop</Text>
|
||||
<Text style={styles.sub}>Antippen zum Verbinden</Text>
|
||||
<Text style={styles.sub}>Panel öffnen zum Verbinden</Text>
|
||||
</View>
|
||||
);
|
||||
}
|
||||
|
||||
const connected = status === 'connected';
|
||||
return (
|
||||
<View style={styles.container}>
|
||||
<WebView
|
||||
@@ -79,8 +182,65 @@ const VncTile: React.FC<Props> = ({ projectId, focused }) => {
|
||||
domStorageEnabled
|
||||
mixedContentMode="always"
|
||||
androidLayerType="hardware"
|
||||
keyboardDisplayRequiresUserAction={false}
|
||||
/>
|
||||
{status !== 'connected' && (
|
||||
|
||||
{/* Verstecktes Eingabefeld: fokussiert → Android-Tastatur tippt in die VM.
|
||||
keyboardType=visible-password schaltet Autokorrektur/Vorschlaege ab und
|
||||
liefert saubere Einzelzeichen. Offscreen, aber fokussierbar. */}
|
||||
<TextInput
|
||||
ref={kbdRef}
|
||||
style={styles.hiddenInput}
|
||||
onChange={onKbdChange}
|
||||
onKeyPress={onKbdKeyPress}
|
||||
onSubmitEditing={() => pressKey(KEYSYM.Enter)}
|
||||
keyboardType="visible-password"
|
||||
returnKeyType="send"
|
||||
autoCapitalize="none"
|
||||
autoCorrect={false}
|
||||
spellCheck={false}
|
||||
blurOnSubmit={false}
|
||||
caretHidden
|
||||
contextMenuHidden
|
||||
multiline={false}
|
||||
/>
|
||||
|
||||
{/* Steuerungs-Leiste — nur wenn verbunden */}
|
||||
{connected && (
|
||||
<View style={styles.ctlBar}>
|
||||
<TouchableOpacity style={[styles.ctlBtn, keyBar && styles.ctlBtnOn]} onPress={() => setKeyBar(v => !v)} activeOpacity={0.7}>
|
||||
<Text style={styles.ctlText}>Fn</Text>
|
||||
</TouchableOpacity>
|
||||
<TouchableOpacity style={[styles.ctlBtn, kbdOn && styles.ctlBtnOn]} onPress={toggleKbd} activeOpacity={0.7}>
|
||||
<Text style={styles.ctlText}>⌨</Text>
|
||||
</TouchableOpacity>
|
||||
<TouchableOpacity style={styles.ctlBtn} onPress={() => ctl('toggleFit')} activeOpacity={0.7}>
|
||||
<Text style={styles.ctlText}>⤢</Text>
|
||||
</TouchableOpacity>
|
||||
</View>
|
||||
)}
|
||||
|
||||
{/* Fn-Leiste — echte Steuertasten (oben, ueber der Software-Tastatur). */}
|
||||
{connected && keyBar && (
|
||||
<View style={styles.keyBar} pointerEvents="box-none">
|
||||
<ScrollView horizontal showsHorizontalScrollIndicator={false} keyboardShouldPersistTaps="always" contentContainerStyle={styles.keyRow}>
|
||||
<TouchableOpacity style={[styles.key, mods.ctrl && styles.keyOn]} onPress={() => toggleMod('ctrl')} activeOpacity={0.7}><Text style={styles.keyText}>Strg</Text></TouchableOpacity>
|
||||
<TouchableOpacity style={[styles.key, mods.alt && styles.keyOn]} onPress={() => toggleMod('alt')} activeOpacity={0.7}><Text style={styles.keyText}>Alt</Text></TouchableOpacity>
|
||||
<TouchableOpacity style={[styles.key, mods.shift && styles.keyOn]} onPress={() => toggleMod('shift')} activeOpacity={0.7}><Text style={styles.keyText}>Shift</Text></TouchableOpacity>
|
||||
{NAV_KEYS.map(k => (
|
||||
<TouchableOpacity key={k.label} style={styles.key} onPress={() => pressKey(k.ks)} activeOpacity={0.7}><Text style={styles.keyText}>{k.label}</Text></TouchableOpacity>
|
||||
))}
|
||||
</ScrollView>
|
||||
<ScrollView horizontal showsHorizontalScrollIndicator={false} keyboardShouldPersistTaps="always" contentContainerStyle={styles.keyRow}>
|
||||
{F_KEYS.map(k => (
|
||||
<TouchableOpacity key={k.label} style={styles.key} onPress={() => pressKey(k.ks)} activeOpacity={0.7}><Text style={styles.keyText}>{k.label}</Text></TouchableOpacity>
|
||||
))}
|
||||
<TouchableOpacity style={styles.key} onPress={() => ctl('cad')} activeOpacity={0.7}><Text style={styles.keyTextSm}>Strg+Alt+Entf</Text></TouchableOpacity>
|
||||
</ScrollView>
|
||||
</View>
|
||||
)}
|
||||
|
||||
{!connected && (
|
||||
<View style={styles.overlay} pointerEvents="none">
|
||||
<Text style={styles.overlayText}>
|
||||
{status === 'connecting' ? 'Verbinde …' : status === 'disconnected' ? 'Getrennt' : ''}
|
||||
@@ -98,7 +258,40 @@ const styles = StyleSheet.create({
|
||||
icon: { fontSize: 64, marginBottom: 16 },
|
||||
text: { color: '#FFFFFF', fontSize: 18, fontWeight: '700' },
|
||||
sub: { color: '#9090B0', fontSize: 14, marginTop: 8 },
|
||||
overlay: { position: 'absolute', top: 10, left: 0, right: 0, alignItems: 'center' },
|
||||
ctlBar: {
|
||||
position: 'absolute',
|
||||
top: 34,
|
||||
right: 8,
|
||||
flexDirection: 'row',
|
||||
gap: 6,
|
||||
},
|
||||
ctlBtn: {
|
||||
backgroundColor: 'rgba(18,18,42,0.9)',
|
||||
borderColor: '#2A2A3E',
|
||||
borderWidth: 1,
|
||||
borderRadius: 10,
|
||||
paddingHorizontal: 10,
|
||||
paddingVertical: 7,
|
||||
minWidth: 38,
|
||||
alignItems: 'center',
|
||||
justifyContent: 'center',
|
||||
},
|
||||
ctlBtnOn: { backgroundColor: 'rgba(0,150,255,0.85)', borderColor: '#0096FF' },
|
||||
ctlText: { color: '#E0E0F0', fontSize: 16, fontWeight: '700' },
|
||||
ctlTextSmall: { color: '#E0E0F0', fontSize: 11, fontWeight: '700' },
|
||||
// Fokussierbar (nicht display:none), aber aus dem Sichtfeld geschoben.
|
||||
hiddenInput: { position: 'absolute', width: 1, height: 1, top: -100, left: -100, opacity: 0, padding: 0 },
|
||||
keyBar: { position: 'absolute', top: 74, left: 0, right: 0, gap: 5 },
|
||||
keyRow: { paddingHorizontal: 6, gap: 5, alignItems: 'center' },
|
||||
key: {
|
||||
backgroundColor: 'rgba(18,18,42,0.92)', borderColor: '#2A2A3E', borderWidth: 1,
|
||||
borderRadius: 8, paddingHorizontal: 9, paddingVertical: 7, minWidth: 34,
|
||||
alignItems: 'center', justifyContent: 'center',
|
||||
},
|
||||
keyOn: { backgroundColor: 'rgba(0,150,255,0.85)', borderColor: '#0096FF' },
|
||||
keyText: { color: '#E0E0F0', fontSize: 13, fontWeight: '700' },
|
||||
keyTextSm: { color: '#E0E0F0', fontSize: 10, fontWeight: '700' },
|
||||
overlay: { position: 'absolute', top: 12, left: 0, right: 0, alignItems: 'center' },
|
||||
overlayText: { color: '#9090B0', fontSize: 12, backgroundColor: 'rgba(0,0,0,0.6)', paddingHorizontal: 10, paddingVertical: 4, borderRadius: 10, overflow: 'hidden' },
|
||||
});
|
||||
|
||||
|
||||
+578
-35
@@ -37,6 +37,7 @@ import triggers as triggers_mod
|
||||
import watcher as watcher_mod
|
||||
import oauth as oauth_mod
|
||||
import projects as projects_mod
|
||||
import project_vms as project_vms_mod
|
||||
|
||||
BRIDGE_URL = os.environ.get("BRIDGE_URL", "http://aria-bridge:8090")
|
||||
# SearXNG (self-hosted Meta-Suche) — Backend fuers web_search-Tool (B1b).
|
||||
@@ -626,10 +627,11 @@ META_TOOLS = [
|
||||
"name": "request_location_tracking",
|
||||
"description": (
|
||||
"Bittet die App, das kontinuierliche GPS-Tracking zu aktivieren oder zu "
|
||||
"deaktivieren. Default ist AUS (Akku-Schutz). Nutze das wenn du einen "
|
||||
"GPS-basierten Watcher anlegst (z.B. `near(...)`), sonst hat die App "
|
||||
"veraltete Position und der Watcher feuert nie. Auch wieder ausschalten "
|
||||
"wenn der letzte GPS-Watcher geloescht wurde."
|
||||
"deaktivieren. Default ist AUS (Akku-Schutz). HINWEIS: Beim Anlegen/Loeschen "
|
||||
"eines Standort-Watchers (`near/entered_near/left_near`) schaltet das System "
|
||||
"das Tracking bereits AUTOMATISCH mit an bzw. aus — dieses Tool brauchst du "
|
||||
"dafuer nicht mehr. Nutze es nur fuer manuelle/explizite Faelle (z.B. Tracking "
|
||||
"kurz einschalten ohne Watcher)."
|
||||
),
|
||||
"parameters": {
|
||||
"type": "object",
|
||||
@@ -641,6 +643,48 @@ META_TOOLS = [
|
||||
},
|
||||
},
|
||||
},
|
||||
{
|
||||
"type": "function",
|
||||
"function": {
|
||||
"name": "present_view",
|
||||
"description": (
|
||||
"Komponiere eine RAEUMLICHE Ansicht, die auf ARIAs Flaeche materialisiert "
|
||||
"(Orb + Karten). Nutze das, wenn eine visuelle Anordnung besser ist als reiner "
|
||||
"Text — z.B. eine Akte/Datei zeigen (Bild links, Text rechts, Karte unten), "
|
||||
"einen Vergleich, eine Liste, eine Karte mit Orten, oder Code. NICHT fuer "
|
||||
"normale Gespraechsantworten. Die Karten erscheinen ZUSAETZLICH zu deiner "
|
||||
"(kurzen) Sprachantwort — halte die Antwort dann knapp, das Visuelle traegt."
|
||||
),
|
||||
"parameters": {
|
||||
"type": "object",
|
||||
"properties": {
|
||||
"cards": {
|
||||
"type": "array",
|
||||
"description": "Die Karten der Ansicht, in sinnvoller Anordnung.",
|
||||
"items": {
|
||||
"type": "object",
|
||||
"properties": {
|
||||
"type": {"type": "string", "enum": ["text", "image", "map", "code", "list"],
|
||||
"description": "Kartentyp"},
|
||||
"title": {"type": "string", "description": "Optionaler Kartentitel"},
|
||||
"md": {"type": "string", "description": "text/list: Markdown-Inhalt"},
|
||||
"src": {"type": "string", "description": "image: Bild-URL oder /shared-Pfad"},
|
||||
"markers": {"type": "array", "items": {"type": "object"},
|
||||
"description": "map: Liste [{lat, lon, label}]"},
|
||||
"path": {"type": "string", "description": "code: Datei-Pfad im Projekt"},
|
||||
"lang": {"type": "string", "description": "code: Sprache fuers Highlighting"},
|
||||
},
|
||||
"required": ["type"],
|
||||
},
|
||||
},
|
||||
"orb": {"type": "string", "enum": ["idle", "speaking", "working"],
|
||||
"description": "Orb-Zustand nach dem Rendern (default: speaking)"},
|
||||
"title": {"type": "string", "description": "Optionaler Titel der ganzen Ansicht"},
|
||||
},
|
||||
"required": ["cards"],
|
||||
},
|
||||
},
|
||||
},
|
||||
{
|
||||
"type": "function",
|
||||
"function": {
|
||||
@@ -1045,12 +1089,15 @@ META_TOOLS = [
|
||||
"function": {
|
||||
"name": "project_summary",
|
||||
"description": (
|
||||
"Schau in einen ANDEREN Chat rein und fass zusammen was dort zuletzt "
|
||||
"passiert ist (letzte ~12 Turns). Funktioniert fuer jedes Projekt (per "
|
||||
"Name, Fuzzy-Match) UND fuer den Hauptchat (name='Hauptchat'). Nutze es "
|
||||
"IMMER wenn Stefan sagt 'hol dir die Infos aus Projekt X', 'schau mal in "
|
||||
"den Hauptchat/in Projekt Y rein', 'was war zuletzt bei ...', 'hol mich "
|
||||
"ab' — sonst halluzinierst Du Inhalte die nicht da sind."
|
||||
"Liest die ECHTE gespeicherte Chat-Historie eines ANDEREN Projekts "
|
||||
"(letzte ~20 Turns aus dem persistierten Verlauf — nicht nur Deinem "
|
||||
"aktuellen Kontextfenster) und fasst sie zusammen. Funktioniert fuer "
|
||||
"JEDES Projekt (per Name, Fuzzy-Match) UND fuer den Hauptchat "
|
||||
"(name='Hauptchat'). Rufe es DIREKT auf, sobald Stefan sagt 'hol dir "
|
||||
"die Infos aus Projekt X', 'schau mal in Projekt Y / den Hauptchat "
|
||||
"rein', 'was war zuletzt bei ...', 'hol mich ab' — antworte NICHT aus "
|
||||
"dem Gedaechtnis, sonst halluzinierst Du. Der Verlauf des Projekts steht "
|
||||
"sicher zur Verfuegung, auch wenn Ihr da lange nicht wart."
|
||||
),
|
||||
"parameters": {
|
||||
"type": "object",
|
||||
@@ -1102,6 +1149,99 @@ META_TOOLS = [
|
||||
},
|
||||
},
|
||||
},
|
||||
{
|
||||
"type": "function",
|
||||
"function": {
|
||||
"name": "satellite_list",
|
||||
"description": (
|
||||
"Zeigt welche ARIA-Satelliten (Aussenposten-Container in FREMDEN Netzen, "
|
||||
"z.B. 'Buero') gerade ONLINE sind und was sie koennen (discover / "
|
||||
"dial.launch / wol / http). Nutze das ZUERST, wenn Stefan etwas 'im "
|
||||
"Buero' / 'im Netz X' / 'auf dem <Geraet> dort' machen will — so weisst "
|
||||
"Du welche Netze erreichbar sind."
|
||||
),
|
||||
"parameters": {"type": "object", "properties": {}},
|
||||
},
|
||||
},
|
||||
{
|
||||
"type": "function",
|
||||
"function": {
|
||||
"name": "satellite_devices",
|
||||
"description": (
|
||||
"Listet die Geraete im Netz eines Satelliten (Fire TV, Chromecast, "
|
||||
"Smart-TVs, Drucker, NAS, Hosts ...). Nutze es um herauszufinden welches "
|
||||
"Geraet gemeint ist, BEVOR Du satellite_command aufrufst."
|
||||
),
|
||||
"parameters": {
|
||||
"type": "object",
|
||||
"properties": {
|
||||
"satellite": {"type": "string", "description": "Satelliten-Name/Location/ID (z.B. 'Buero')."},
|
||||
},
|
||||
"required": ["satellite"],
|
||||
},
|
||||
},
|
||||
},
|
||||
{
|
||||
"type": "function",
|
||||
"function": {
|
||||
"name": "satellite_command",
|
||||
"description": (
|
||||
"Fuehrt eine Aktion auf einem Geraet im Netz eines Satelliten aus. "
|
||||
"Beispiel YouTube-Video auf Fire TV: action='dial.launch', "
|
||||
"device='Fire TV', params={'app':'YouTube','v':'<videoId>'}. Weitere "
|
||||
"Aktionen: 'wol' (params={'mac':'...'}) zum Aufwecken, "
|
||||
"'http.get'/'http.post' (params={'url':'...'}) fuer lokale Webhooks. "
|
||||
"Geht nur, wenn der Satellit Steuerung erlaubt (siehe satellite_list)."
|
||||
),
|
||||
"parameters": {
|
||||
"type": "object",
|
||||
"properties": {
|
||||
"satellite": {"type": "string", "description": "Satelliten-Name/Location/ID."},
|
||||
"device": {"type": "string", "description": "Geraet (Name/ID/IP) aus satellite_devices."},
|
||||
"action": {"type": "string", "description": "z.B. 'dial.launch', 'wol', 'http.get'."},
|
||||
"params": {"type": "object", "description": "Aktions-Parameter, z.B. {'app':'YouTube','v':'<id>'}."},
|
||||
},
|
||||
"required": ["satellite", "action"],
|
||||
},
|
||||
},
|
||||
},
|
||||
{
|
||||
"type": "function",
|
||||
"function": {
|
||||
"name": "vm_register",
|
||||
"description": (
|
||||
"Traegt eine QEMU-VM in die VM-Liste des AKTUELLEN Projekts ein, "
|
||||
"damit sie in Stefans Desktop-Panel (Cockpit) erscheint und er sie "
|
||||
"starten/stoppen/verbinden kann. Rufe das auf, NACHDEM Du mit aria-vm "
|
||||
"eine VM gebaut/gebootet hast — mit den Medien, die zum Task passen: "
|
||||
"disk (Festplatte, z.B. DOS-Spiele), floppy (Diskette, OS-Dev), iso "
|
||||
"(Installer). Leer lassen = aria-vm erkennt disk.qcow2/floppy.img/"
|
||||
"cdrom.iso im VM-Ordner selbst. vnc_display → Port 5900+display "
|
||||
"(mehrere VMs = verschiedene Displays)."
|
||||
),
|
||||
"parameters": {
|
||||
"type": "object",
|
||||
"properties": {
|
||||
"name": {"type": "string", "description": "VM-Name wie bei aria-vm (a-z0-9_-)."},
|
||||
"arch": {"type": "string", "description": "z.B. i386, x86_64, aarch64, mips (Architektur zum Task waehlen)."},
|
||||
"disk": {"type": "string", "description": "optional: qcow2-Pfad (Festplatte)."},
|
||||
"floppy": {"type": "string", "description": "optional: Disketten-Image-Pfad (-fda)."},
|
||||
"iso": {"type": "string", "description": "optional: Boot-ISO-Pfad."},
|
||||
"vnc_display": {"type": "integer", "description": "meist WEGLASSEN — das VNC-Display wird global eindeutig auto-vergeben (kein Port-Konflikt bei mehreren VMs). Nur setzen wenn Du ein bestimmtes willst."},
|
||||
"mem": {"type": "integer", "description": "RAM in MB (Default 1024)."},
|
||||
},
|
||||
"required": ["name", "arch"],
|
||||
},
|
||||
},
|
||||
},
|
||||
{
|
||||
"type": "function",
|
||||
"function": {
|
||||
"name": "vm_list",
|
||||
"description": "Listet die registrierten QEMU-VMs des aktuellen Projekts (mit Lauf-Status).",
|
||||
"parameters": {"type": "object", "properties": {}},
|
||||
},
|
||||
},
|
||||
]
|
||||
|
||||
|
||||
@@ -1207,6 +1347,149 @@ def _extract_await_marker(text: str) -> tuple:
|
||||
return text, False
|
||||
|
||||
|
||||
# ── Sprach-/Gespraechs-Steuermarker (ARIA deklariert die Phase SELBST) ──
|
||||
#
|
||||
# Voice-First: ARIA erkennt aus dem Text, ob Stefan einen BEFEHL gibt (etwas tun)
|
||||
# oder eine FRAGE stellt (etwas wissen), und ob das Gespraech/eine Befehlskette
|
||||
# weiterlaeuft oder endet. Sie haengt dazu Marker ans Ende ihrer Antwort — genau
|
||||
# wie [[AWAIT]], und sie werden ebenso entfernt (nicht angezeigt/vorgelesen/in
|
||||
# History). Der Marker ist AUTORITATIV — er ueberschreibt das Skill-Manifest-Flag,
|
||||
# denn dasselbe Skill (z.B. VM-/GUI-Steuerung) ist mal Befehl, mal Auskunft; nur
|
||||
# ARIA weiss aus dem Kontext, was gerade gemeint ist.
|
||||
#
|
||||
# [[STUMM]] -> reiner Steuerbefehl: NICHT vorlesen (speak=false). Allein =
|
||||
# Einzelbefehl → danach zurueck aufs Wake-Word (converse=false).
|
||||
# [[WEITER]] -> Konversation/Befehlskette laeuft weiter: Mikro offen halten
|
||||
# (converse=true) — kein erneutes "Computer" noetig.
|
||||
# [[ENDE]] -> Konversation/Kette beenden: zurueck aufs Wake-Word (converse=false).
|
||||
_SILENT_MARKER_RE = re.compile(r"\[\[\s*STUMM\s*\]\]", re.IGNORECASE)
|
||||
_CONT_MARKER_RE = re.compile(r"\[\[\s*WEITER\s*\]\]", re.IGNORECASE)
|
||||
_END_MARKER_RE = re.compile(r"\[\[\s*ENDE\s*\]\]", re.IGNORECASE)
|
||||
|
||||
|
||||
def _extract_flow_markers(text: str) -> tuple:
|
||||
"""Zieht [[STUMM]]/[[WEITER]]/[[ENDE]] aus dem finalen Text.
|
||||
Gibt (clean_text, speak_override, converse_override) zurueck; ein Override ist
|
||||
None, wenn der jeweilige Marker fehlt (dann gilt Default/Skill-Flag).
|
||||
Regeln: [[STUMM]] alleine = Einzelbefehl → auch converse=false (Mikro zu),
|
||||
ausser [[WEITER]] haelt es explizit offen. [[ENDE]] gewinnt gegen [[WEITER]]."""
|
||||
if not text:
|
||||
return text, None, None
|
||||
speak_ov = None
|
||||
conv_ov = None
|
||||
if _SILENT_MARKER_RE.search(text):
|
||||
speak_ov = False
|
||||
text = _SILENT_MARKER_RE.sub("", text)
|
||||
if _END_MARKER_RE.search(text):
|
||||
conv_ov = False
|
||||
text = _END_MARKER_RE.sub("", text)
|
||||
if _CONT_MARKER_RE.search(text):
|
||||
# [[ENDE]] hat Vorrang — widerspruechliche Marker → beenden.
|
||||
if conv_ov is None:
|
||||
conv_ov = True
|
||||
text = _CONT_MARKER_RE.sub("", text)
|
||||
# Stiller Einzelbefehl ohne explizites Weiterlauschen → Mikro zu.
|
||||
if speak_ov is False and conv_ov is None:
|
||||
conv_ov = False
|
||||
return text.strip(), speak_ov, conv_ov
|
||||
|
||||
|
||||
# Explizite "Konversation beenden"-Phrasen vom USER — deterministisch, NICHT auf
|
||||
# ARIAs [[ENDE]]-Marker angewiesen. Stefan will "Konversation Ende" o.ae. als
|
||||
# festen Trigger: danach zurueck aufs Wake-Word, egal was ARIA sonst tut. Eine in
|
||||
# derselben Nachricht enthaltene Frage beantwortet sie normal (wird vorgelesen),
|
||||
# aber converse wird auf false gezwungen. Nomen + Ende-Wort in EINEM Satzteil
|
||||
# ([^.!?]{0,15}) in beliebiger Reihenfolge; "befehls?kette" damit "Lieferkette"
|
||||
# o.ae. nicht faelschlich matcht.
|
||||
_CONV_NOUN = r"(?:konversation|gespr[aä]ch|befehls?kette)"
|
||||
_CONV_END_VERB = r"(?:ende|beend\w*|aus|stop\w*|schluss)"
|
||||
_END_CONVERSATION_RE = re.compile(
|
||||
rf"\b{_CONV_NOUN}\b[^.!?]{{0,15}}\b{_CONV_END_VERB}\b"
|
||||
rf"|\b(?:beend\w*|schlie(?:ß|ss)\w*)\b[^.!?]{{0,15}}\b{_CONV_NOUN}\b",
|
||||
re.IGNORECASE,
|
||||
)
|
||||
|
||||
|
||||
def _user_wants_conversation_end(text: str) -> bool:
|
||||
"""True, wenn der User in dieser Nachricht explizit die Konversation/Kette
|
||||
beenden will (deterministisch, unabhaengig vom LLM-Marker)."""
|
||||
if not text:
|
||||
return False
|
||||
return bool(_END_CONVERSATION_RE.search(_strip_leading_hint_blocks(text)))
|
||||
|
||||
|
||||
# Gegenstueck zu _END: expliziter "Konversation OFFEN halten / fortfuehren"-Wunsch.
|
||||
# Wichtig fuer BEFEHLE die den Fast-Path treffen: "spiel Spotify ab ABER Konversation
|
||||
# fortfuehren" — der Fast-Path (Regex) versteht den Satz-Rest nicht und wuerde mit
|
||||
# converse=false schliessen. Dieser Detektor erzwingt converse=true, auch am
|
||||
# Fast-Path, egal was das Skill-Manifest sagt. Nomen+Verb in einem Satzteil, plus
|
||||
# "weiter reden/sprechen" ohne Nomen.
|
||||
_CONT_VERB = (r"(?:fortf[uü]hr\w*|fortsetz\w*|weiterf[uü]hr\w*|weiter\s*mach\w*|"
|
||||
r"weiter\b|fort\b|offen\s+(?:halten|lassen)|nicht\s+beenden|weiterlauf\w*)")
|
||||
_CONTINUE_CONVERSATION_RE = re.compile(
|
||||
rf"\b{_CONV_NOUN}\b[^.!?]{{0,20}}\b{_CONT_VERB}"
|
||||
rf"|\b{_CONT_VERB}[^.!?]{{0,20}}\b{_CONV_NOUN}\b"
|
||||
rf"|\bweiter\s*(?:reden|sprechen|quatschen|plaudern|labern)\b",
|
||||
re.IGNORECASE,
|
||||
)
|
||||
|
||||
|
||||
def _user_wants_conversation_continue(text: str) -> bool:
|
||||
"""True, wenn der User explizit weiter im Gespraech bleiben will (converse=true
|
||||
erzwingen — auch bei einem Fast-Path-Befehl). [[ENDE]]/_wants_end hat Vorrang."""
|
||||
if not text:
|
||||
return False
|
||||
return bool(_CONTINUE_CONVERSATION_RE.search(_strip_leading_hint_blocks(text)))
|
||||
|
||||
|
||||
# ── Wake-Word AUS per Sprachbefehl ──────────────────────────────────────────
|
||||
# "Wake-Word aus", "mach das Ohr aus", "hoer auf zuzuhoeren", "geh schlafen" …
|
||||
# → die App stoppt den Wake-Word-Listener KOMPLETT (Mikro frei, echte Ruhe).
|
||||
# Wieder-An geht nur ueber den App-Button (bewusst, weil dann taub). Reiner
|
||||
# Steuerbefehl: still (speak=false), kein Weiterlauschen (converse=false).
|
||||
_WAKE_NOUN = r"(?:wake[\s-]?word|wakeword|ohr(?:en)?|mikro(?:fon)?|zuh[oö]r\w*|lausch\w*)"
|
||||
_WAKE_OFF_VERB = (r"(?:aus(?:schalten|stellen)?|abschalten|abstellen|deaktivier\w*|"
|
||||
r"beenden|beende|stopp?\w*|schlafen|ruhe)")
|
||||
_WAKE_OFF_RE = re.compile(
|
||||
rf"\b{_WAKE_NOUN}\b[^.!?]{{0,20}}\b{_WAKE_OFF_VERB}\b"
|
||||
rf"|\b(?:beende|beend\w*|deaktivier\w*|stopp?e?)\b[^.!?]{{0,20}}\b{_WAKE_NOUN}\b"
|
||||
rf"|h[oö]r\s+auf\s+(?:zu\s*)?(?:zu)?(?:h[oö]r|lausch)\w*"
|
||||
rf"|h[oö]r\s+nicht\s+mehr\s+zu"
|
||||
rf"|geh\s+schlafen",
|
||||
re.IGNORECASE,
|
||||
)
|
||||
|
||||
|
||||
def _user_wants_wake_off(text: str) -> bool:
|
||||
"""True, wenn der User den Wake-Word-Listener per Sprache abschalten will."""
|
||||
if not text:
|
||||
return False
|
||||
return bool(_WAKE_OFF_RE.search(_strip_leading_hint_blocks(text)))
|
||||
|
||||
|
||||
# ── Wake-Word AN per Befehl (Text ODER manueller Aufnahme-Button) ────────────
|
||||
# Gegenstueck zu wake_off. Das "Wieder-An" per Stimme geht NICHT ueber "Computer"
|
||||
# (das hoert ja nicht mehr), aber ueber eine Text-Nachricht oder den manuellen
|
||||
# Aufnahme-Button — beide laufen unabhaengig vom Wake-Word-Listener. Die App
|
||||
# startet den Listener dann wieder (wakeWordService.start()).
|
||||
_WAKE_ON_VERB = r"(?:an(?:schalten|machen|stellen)?|einschalten|aktivier\w*|starte\w*|reaktivier\w*)"
|
||||
_WAKE_ON_RE = re.compile(
|
||||
rf"\b{_WAKE_NOUN}\b[^.!?]{{0,20}}\b{_WAKE_ON_VERB}\b"
|
||||
rf"|\b(?:aktivier\w*|reaktivier\w*|starte\w*)\b[^.!?]{{0,15}}\b{_WAKE_NOUN}\b"
|
||||
rf"|h[oö]r\s+(?:mir\s+)?wieder\s+zu"
|
||||
rf"|(?:wieder|erneut)\s+(?:zu\s*)?(?:h[oö]r|lausch)\w*"
|
||||
rf"|wach\s+auf|aufwachen",
|
||||
re.IGNORECASE,
|
||||
)
|
||||
|
||||
|
||||
def _user_wants_wake_on(text: str) -> bool:
|
||||
"""True, wenn der User den Wake-Word-Listener per Befehl wieder anschalten will."""
|
||||
if not text:
|
||||
return False
|
||||
return bool(_WAKE_ON_RE.search(_strip_leading_hint_blocks(text)))
|
||||
|
||||
|
||||
def _normalize_for_fast_match(text: str) -> str:
|
||||
norm = _strip_leading_hint_blocks(text).lower()
|
||||
norm = _fold_umlauts(norm)
|
||||
@@ -1258,6 +1541,17 @@ def _skill_to_tool(s: dict) -> dict:
|
||||
}
|
||||
|
||||
|
||||
# Standort-Funktionen in Watcher-Conditions — brauchen aktives GPS-Tracking.
|
||||
_LOCATION_FUNCS = ("near(", "entered_near(", "left_near(")
|
||||
|
||||
|
||||
def _condition_needs_location(condition: str) -> bool:
|
||||
"""True, wenn die Watcher-Condition eine Standort-Funktion nutzt und damit
|
||||
laufende GPS-Updates der App braucht."""
|
||||
c = condition or ""
|
||||
return any(fn in c for fn in _LOCATION_FUNCS)
|
||||
|
||||
|
||||
class Agent:
|
||||
# Mindest-Score den ein Cold-Memory-Treffer haben muss um in den
|
||||
# System-Prompt aufgenommen zu werden. Unter dieser Schwelle ist's
|
||||
@@ -1515,7 +1809,7 @@ class Agent:
|
||||
targs = {}
|
||||
logger.info("[router] lokal Tool-Call: %s(%s)", tname,
|
||||
", ".join(targs.keys()))
|
||||
tresult = self._dispatch_tool(tname, targs)
|
||||
tresult = self._dispatch_tool(tname, targs, active_project_id)
|
||||
# Echter Skill (run_*) erfolgreich? Dann uebernimmt dieser
|
||||
# Turn das speak-Flag des Skills (Steuerbefehl=stumm,
|
||||
# Antwort-Skill=vorlesen). Letzter Skill gewinnt.
|
||||
@@ -1604,6 +1898,14 @@ class Agent:
|
||||
if not user_message:
|
||||
raise ValueError("Leere Nachricht")
|
||||
|
||||
# Explizite Gespraechs-Steuerung vom USER (deterministisch, an JEDEM Return
|
||||
# angewendet — auch am Fast-Path, den die LLM-Marker nicht erreichen):
|
||||
# _wants_end → converse=false ("Konversation Ende")
|
||||
# _wants_continue → converse=true ("... aber Konversation fortfuehren")
|
||||
# End hat Vorrang bei Widerspruch.
|
||||
_wants_end = _user_wants_conversation_end(user_message)
|
||||
_wants_continue = (not _wants_end) and _user_wants_conversation_continue(user_message)
|
||||
|
||||
# Events vom letzten Turn weglassen
|
||||
self._pending_events = []
|
||||
|
||||
@@ -1611,6 +1913,27 @@ class Agent:
|
||||
active_project_id = (project_id or "").strip()
|
||||
active_project = projects_mod.get_project(active_project_id) if active_project_id else None
|
||||
|
||||
# Wake-Word AUS per Sprache: reiner Steuerbefehl, KEIN Claude/Fast-Path
|
||||
# noetig. Still (speak=false) + kein Weiterlauschen (converse=false). Das
|
||||
# tatsaechliche Stoppen des Listeners macht die App anhand von wake_off in
|
||||
# der Antwort (ChatOut) — hier signalisieren wir es nur. Wieder-An: App-Button.
|
||||
if _user_wants_wake_off(user_message):
|
||||
reply = "Ohr aus. Sag 'Wake-Word an' (per Text oder Aufnahme-Knopf) oder tipp den Ohr-Button, wenn ich wieder lauschen soll. 🔇"
|
||||
self.conversation.add("user", user_message, source=source,
|
||||
project_id=active_project_id)
|
||||
self.conversation.add("assistant", reply, project_id=active_project_id)
|
||||
logger.info("[wake-off] Sprachbefehl erkannt — App stoppt Listener")
|
||||
return reply, "wake-off", False, False, False
|
||||
|
||||
# Wake-Word AN per Befehl (Text/Aufnahme-Button): App startet den Listener.
|
||||
if _user_wants_wake_on(user_message):
|
||||
reply = "Ohr wieder an — ich lausche auf 'Computer'. 👂"
|
||||
self.conversation.add("user", user_message, source=source,
|
||||
project_id=active_project_id)
|
||||
self.conversation.add("assistant", reply, project_id=active_project_id)
|
||||
logger.info("[wake-on] Befehl erkannt — App startet Listener")
|
||||
return reply, "wake-on", False, False, False
|
||||
|
||||
# Fast-Path: einfache "reines Steuern"-Commands ueberspringen Claude komplett.
|
||||
# Jeder Skill kann in seinem Manifest fast_patterns deklarieren — das Brain
|
||||
# iteriert hier ueber alle aktiven Skills und matched. Spart 5-10s Latenz.
|
||||
@@ -1631,6 +1954,10 @@ class Agent:
|
||||
speak = bool(getattr(self, "_fast_path_speak", False))
|
||||
# converse folgt dem Skill (Manifest/Output) — nicht mehr generell False.
|
||||
converse = bool(getattr(self, "_fast_path_converse", False))
|
||||
if _wants_end:
|
||||
converse = False
|
||||
elif _wants_continue:
|
||||
converse = True
|
||||
# Fast-Path = reiner Steuerbefehl, nie eine Rueckfrage → awaiting=False.
|
||||
return fast_reply, "fast-path", speak, converse, False
|
||||
|
||||
@@ -1650,6 +1977,10 @@ class Agent:
|
||||
# dem Skill (bzw. Default: Info/Gespraech = vorlesen + 30s).
|
||||
speak = getattr(self, "_local_turn_speak", True)
|
||||
converse = getattr(self, "_local_turn_converse", True)
|
||||
if _wants_end:
|
||||
converse = False
|
||||
elif _wants_continue:
|
||||
converse = True
|
||||
# Local ist tool-loses Reden; blockierende Rueckfragen macht Claude.
|
||||
return local_reply, "local", speak, converse, False
|
||||
|
||||
@@ -1667,6 +1998,15 @@ class Agent:
|
||||
logger.warning("Cold-Search fehlgeschlagen: %s", exc)
|
||||
cold = []
|
||||
|
||||
# 3b. Titel-Index des kalten Gedaechtnisses — ARIA sieht WAS sie an
|
||||
# Nachschlage-Wissen hat (Zugangsdaten, Infra, Projekte) und holt es via
|
||||
# memory_search, statt Stefan danach zu fragen. Nur Titel = billig.
|
||||
try:
|
||||
memory_index = self.store.list_index_titles()
|
||||
except Exception as exc:
|
||||
logger.warning("Titel-Index laden fehlgeschlagen: %s", exc)
|
||||
memory_index = []
|
||||
|
||||
# 4. Aktive Skills holen + Tool-Liste bauen
|
||||
all_skills = skills_mod.list_skills(active_only=False)
|
||||
active_skills = [s for s in all_skills if s.get("active", True)]
|
||||
@@ -1689,7 +2029,8 @@ class Agent:
|
||||
oauth_port = os.environ.get("RVS_PORT_PUBLIC", os.environ.get("RVS_PORT", "443")).strip()
|
||||
oauth_tls = os.environ.get("RVS_TLS", "true").strip().lower() != "false"
|
||||
|
||||
system_prompt = build_system_prompt(hot, cold, skills=all_skills,
|
||||
system_prompt = build_system_prompt(hot, cold, memory_index=memory_index,
|
||||
skills=all_skills,
|
||||
triggers=all_triggers,
|
||||
condition_vars=condition_vars,
|
||||
condition_funcs=condition_funcs,
|
||||
@@ -1807,7 +2148,7 @@ class Agent:
|
||||
))
|
||||
# Tools ausfuehren + Ergebnis als role=tool zurueck
|
||||
for tc in result.tool_calls:
|
||||
tool_result = self._dispatch_tool(tc["name"], tc["arguments"])
|
||||
tool_result = self._dispatch_tool(tc["name"], tc["arguments"], active_project_id)
|
||||
# Steuerbefehl-Skill (run_*, speak=false) erfolgreich
|
||||
# ausgefuehrt → Antwort nicht vorlesen (letzter Skill gewinnt).
|
||||
_tn = tc.get("name") or ""
|
||||
@@ -1882,23 +2223,143 @@ class Agent:
|
||||
# Rueckfrage-Marker aus dem finalen Text ziehen (vor History/Return, damit
|
||||
# er nicht angezeigt/vorgelesen wird und nicht die Conversation vergiftet).
|
||||
final_reply, awaiting_reply = _extract_await_marker(final_reply)
|
||||
# ARIAs Phasen-Marker ([[STUMM]]/[[WEITER]]/[[ENDE]]) ziehen — VOR History,
|
||||
# damit sie nicht angezeigt/vorgelesen/gespeichert werden.
|
||||
final_reply, _speak_ov, _conv_ov = _extract_flow_markers(final_reply)
|
||||
|
||||
# 7. Assistant-Turn (final reply) in die Conversation
|
||||
self.conversation.add("assistant", final_reply,
|
||||
project_id=active_project_id)
|
||||
# speak/converse folgen dem ausgefuehrten Skill (sonst Default: Gespraech);
|
||||
# speak/converse folgen dem ausgefuehrten Skill (sonst Default: Gespraech).
|
||||
# ARIAs Phasen-Marker sind AUTORITATIV: sie kennt aus dem Text den Unter-
|
||||
# schied Befehl/Frage und Kette/Ende, den das Skill-Manifest nicht kennt.
|
||||
speak = bool(getattr(self, "_claude_turn_speak", True))
|
||||
converse = bool(getattr(self, "_claude_turn_converse", True))
|
||||
if _speak_ov is not None:
|
||||
speak = _speak_ov
|
||||
if _conv_ov is not None:
|
||||
converse = _conv_ov
|
||||
# Explizite User-Woerter gewinnen ueber Marker/Manifest: "Konversation
|
||||
# beenden" → zu; "... fortfuehren" → offen halten. End hat Vorrang.
|
||||
if _wants_end:
|
||||
converse = False
|
||||
elif _wants_continue:
|
||||
converse = True
|
||||
# awaiting_reply = ARIA stellt eine blockierende Rueckfrage (Queue pausiert).
|
||||
return (final_reply, "claude",
|
||||
bool(getattr(self, "_claude_turn_speak", True)),
|
||||
bool(getattr(self, "_claude_turn_converse", True)),
|
||||
awaiting_reply)
|
||||
return (final_reply, "claude", speak, converse, awaiting_reply)
|
||||
|
||||
# ── Tool-Dispatcher ───────────────────────────────────────
|
||||
|
||||
def _dispatch_tool(self, name: str, arguments: dict) -> str:
|
||||
def _read_project_history(self, project_id: str, limit: int = 20) -> list:
|
||||
"""Liest die VOLLE Chat-Historie eines Projekts aus dem geteilten
|
||||
chat_backup.jsonl (/shared/config, auch im Brain gemountet).
|
||||
|
||||
Noetig, weil das rollende Conversation-Window nur die letzten ~50 Turns
|
||||
ueber ALLE Projekte haelt — aeltere/andere Projekt-Chats sind da laengst
|
||||
rausdistilliert. Gibt die letzten `limit` (role, text)-Paare zurueck,
|
||||
gefiltert auf project_id ('' = Hauptthread). Fuehrende Hint-Bloecke
|
||||
([Standort: ...]) in User-Turns werden entfernt."""
|
||||
path = "/shared/config/chat_backup.jsonl"
|
||||
out: list = []
|
||||
try:
|
||||
if not os.path.exists(path):
|
||||
return []
|
||||
with open(path, "r", encoding="utf-8") as f:
|
||||
for line in f:
|
||||
line = line.strip()
|
||||
if not line:
|
||||
continue
|
||||
try:
|
||||
o = json.loads(line)
|
||||
except Exception:
|
||||
continue
|
||||
role = o.get("role")
|
||||
text = o.get("text")
|
||||
if not role or text is None:
|
||||
continue
|
||||
# nur echte Gespraechs-Turns (keine skill/memory/system-Eintraege)
|
||||
if role not in ("user", "assistant", "aria"):
|
||||
continue
|
||||
if (o.get("project_id") or "") != (project_id or ""):
|
||||
continue
|
||||
if role == "user":
|
||||
text = _strip_leading_hint_blocks(text)
|
||||
out.append((role, text))
|
||||
except Exception as exc:
|
||||
logger.warning("project_summary: chat_backup lesen fehlgeschlagen: %s", exc)
|
||||
return []
|
||||
return out[-limit:]
|
||||
|
||||
def _dispatch_satellite(self, name: str, arguments: dict) -> str:
|
||||
"""satellite_list / satellite_devices / satellite_command — geht via
|
||||
Bridge (/internal/satellite*) → RVS → Satellit. Muster wie flux_generate."""
|
||||
def _post(path: str, body: dict, timeout: float) -> dict:
|
||||
data = json.dumps(body).encode("utf-8")
|
||||
req = urllib.request.Request(f"{BRIDGE_URL}{path}", data=data, method="POST",
|
||||
headers={"Content-Type": "application/json"})
|
||||
with urllib.request.urlopen(req, timeout=timeout) as resp:
|
||||
return json.loads(resp.read().decode("utf-8", "ignore"))
|
||||
try:
|
||||
if name == "satellite_list":
|
||||
result = _post("/internal/satellite-list", {}, 10)
|
||||
sats = result.get("satellites") or []
|
||||
if not sats:
|
||||
return ("Gerade ist kein Satellit online. (Ein Satellit ist ein "
|
||||
"Aussenposten-Container in einem fremden Netz, der sich mit "
|
||||
"RVS verbindet und Dir dort Geraete zeigt + steuerbar macht.)")
|
||||
lines = []
|
||||
for s in sats:
|
||||
status = "online" if s.get("online") else "offline"
|
||||
caps = ", ".join(s.get("caps") or []) or "nur beobachten"
|
||||
lines.append(f"- {s.get('location')} (id={s.get('id')}, {status}; kann: {caps})")
|
||||
return "Satelliten / erreichbare Netze:\n" + "\n".join(lines)
|
||||
|
||||
if name == "satellite_devices":
|
||||
sat = (arguments.get("satellite") or "").strip()
|
||||
if not sat:
|
||||
return "FEHLER: satellite ist Pflicht."
|
||||
result = _post("/internal/satellite", {"op": "discover", "satellite": sat}, 30)
|
||||
if result.get("error"):
|
||||
return f"FEHLER: {result['error']}"
|
||||
devices = result.get("devices") or []
|
||||
if not devices:
|
||||
return f"Im Netz von '{sat}' wurden keine Geraete gefunden (oder der Satellit ist offline)."
|
||||
lines = []
|
||||
for d in devices[:40]:
|
||||
tags = []
|
||||
if d.get("model"):
|
||||
tags.append(d["model"])
|
||||
if d.get("dialAppUrl"):
|
||||
tags.append("DIAL/App-Launch")
|
||||
if d.get("mac"):
|
||||
tags.append(d["mac"])
|
||||
extra = f" ({'; '.join(tags)})" if tags else ""
|
||||
lines.append(f"- {d.get('name')} [{d.get('type')}] {d.get('ip', '')}{extra} id={d.get('id')}")
|
||||
return f"Geraete im Netz '{result.get('location', sat)}':\n" + "\n".join(lines)
|
||||
|
||||
# satellite_command
|
||||
sat = (arguments.get("satellite") or "").strip()
|
||||
action = (arguments.get("action") or "").strip()
|
||||
if not sat or not action:
|
||||
return "FEHLER: satellite und action sind Pflicht."
|
||||
params = arguments.get("params") if isinstance(arguments.get("params"), dict) else {}
|
||||
result = _post("/internal/satellite", {
|
||||
"op": "command", "satellite": sat,
|
||||
"device": arguments.get("device") or "", "action": action, "params": params,
|
||||
}, 30)
|
||||
if result.get("ok"):
|
||||
r = result.get("result")
|
||||
return f"OK — {r}" if r else "OK — Aktion ausgefuehrt."
|
||||
return f"FEHLER: {result.get('error') or 'Aktion fehlgeschlagen'}"
|
||||
except Exception as exc:
|
||||
return f"FEHLER: Satellit/Bridge nicht erreichbar: {exc}"
|
||||
|
||||
def _dispatch_tool(self, name: str, arguments: dict, project_id: str = "") -> str:
|
||||
"""Fuehrt einen Tool-Call aus und gibt ein kurzes Text-Resultat zurueck.
|
||||
Niemals werfen — Fehler werden als Text-Resultat reportet damit Claude
|
||||
weitermachen kann."""
|
||||
weitermachen kann. project_id = Projekt DIESES Requests (fuer Tools die
|
||||
aufs aktuelle Projekt wirken, z.B. set_project_kind) — NICHT der globale
|
||||
active_project (geraeteuebergreifend)."""
|
||||
try:
|
||||
if name == "skill_create":
|
||||
# ARIA-Skills sind immer Python — execution ist nicht mehr im Schema
|
||||
@@ -2169,13 +2630,41 @@ class Agent:
|
||||
"trigger": {"name": t["name"], "type": "watcher",
|
||||
"condition": t["condition"], "message": t["message"]},
|
||||
})
|
||||
return f"OK — Watcher '{t['name']}' angelegt: feuert wenn '{t['condition']}'."
|
||||
# GPS-Kopplung: ein Standort-Watcher (near/entered_near/left_near)
|
||||
# ist tot, wenn die App kein Tracking sendet. Frueher musste ARIA
|
||||
# separat request_location_tracking aufrufen — wurde oft vergessen,
|
||||
# dann feuerte der Trigger nie. Jetzt automatisch mit-anschalten.
|
||||
extra = ""
|
||||
if _condition_needs_location(t["condition"]):
|
||||
self._pending_events.append({
|
||||
"type": "location_tracking",
|
||||
"on": True,
|
||||
"reason": f"watcher:{t['name']}",
|
||||
})
|
||||
extra = " GPS-Tracking automatisch aktiviert."
|
||||
return f"OK — Watcher '{t['name']}' angelegt: feuert wenn '{t['condition']}'.{extra}"
|
||||
if name == "trigger_cancel":
|
||||
try:
|
||||
triggers_mod.delete(arguments["name"])
|
||||
return f"OK — Trigger '{arguments['name']}' geloescht."
|
||||
except ValueError as e:
|
||||
return f"FEHLER: {e}"
|
||||
# GPS-Kopplung (Gegenstueck): existiert kein Standort-Watcher mehr,
|
||||
# Tracking wieder ausschalten (Akku schonen).
|
||||
extra = ""
|
||||
remaining = triggers_mod.list_triggers(active_only=False)
|
||||
still_needs_gps = any(
|
||||
r.get("type") == "watcher"
|
||||
and _condition_needs_location(r.get("condition") or "")
|
||||
for r in remaining
|
||||
)
|
||||
if not still_needs_gps:
|
||||
self._pending_events.append({
|
||||
"type": "location_tracking",
|
||||
"on": False,
|
||||
"reason": "no-location-watchers",
|
||||
})
|
||||
extra = " GPS-Tracking deaktiviert (kein Standort-Watcher mehr)."
|
||||
return f"OK — Trigger '{arguments['name']}' geloescht.{extra}"
|
||||
if name == "request_location_tracking":
|
||||
on = bool(arguments.get("on", False))
|
||||
reason = (arguments.get("reason") or "").strip()
|
||||
@@ -2185,6 +2674,22 @@ class Agent:
|
||||
"reason": reason,
|
||||
})
|
||||
return f"OK — Tracking-Request gesendet (on={on}). App wird in Kuerze umschalten."
|
||||
if name == "present_view":
|
||||
cards = arguments.get("cards") or []
|
||||
if not isinstance(cards, list) or not cards:
|
||||
return "FEHLER: present_view braucht mindestens eine Karte in 'cards'."
|
||||
view = {
|
||||
"cards": cards,
|
||||
"orb": arguments.get("orb") or "speaking",
|
||||
"title": arguments.get("title") or "",
|
||||
}
|
||||
self._pending_events.append({
|
||||
"type": "aria_view",
|
||||
"view": view,
|
||||
"project_id": project_id or "",
|
||||
})
|
||||
return (f"OK — Ansicht mit {len(cards)} Karte(n) an die Flaeche geschickt "
|
||||
f"(Kontext: {project_id or 'Hauptchat'}).")
|
||||
if name == "trigger_list":
|
||||
items = triggers_mod.list_triggers(active_only=False)
|
||||
if not items:
|
||||
@@ -2566,23 +3071,29 @@ class Agent:
|
||||
# aus einem Projekt heraus in den Hauptthread reinschauen kann.
|
||||
if pname.lower() in {"hauptchat", "hauptthread", "haupt", "main",
|
||||
"mainchat", "haupt-chat", "hauptchat-thread"}:
|
||||
turns = [t for t in self.conversation.turns if not t.project_id]
|
||||
target_pid = ""
|
||||
label, desc = "Hauptchat", "der Hauptthread (kein Projekt)"
|
||||
else:
|
||||
p = projects_mod.find_project(pname)
|
||||
if not p:
|
||||
return f"Kein Chat/Projekt '{pname}' gefunden (fuer den Hauptthread: name='Hauptchat')."
|
||||
turns = [t for t in self.conversation.turns if t.project_id == p["id"]]
|
||||
target_pid = p["id"]
|
||||
label, desc = p["name"], p.get("description", "(keine Beschreibung)")
|
||||
# VOLLE Historie aus chat_backup.jsonl (nicht nur das rollende
|
||||
# Window — sonst fehlen aeltere/andere Projekt-Chats komplett).
|
||||
turns = self._read_project_history(target_pid, limit=20)
|
||||
if not turns:
|
||||
return (f"'{label}' hat im aktuellen Conversation-Window noch keine "
|
||||
f"Turns. {desc}")
|
||||
tail = turns[-12:]
|
||||
# Fallback aufs In-Memory-Window, falls chat_backup fehlt/leer.
|
||||
turns = [(t.role, t.content) for t in self.conversation.turns
|
||||
if (t.project_id or "") == target_pid]
|
||||
if not turns:
|
||||
return (f"'{label}' hat noch keine Chat-Historie. {desc}")
|
||||
tail = turns[-20:]
|
||||
summary_lines = []
|
||||
for t in tail:
|
||||
prefix = "Stefan" if t.role == "user" else "Du"
|
||||
summary_lines.append(f"{prefix}: {t.content[:280]}")
|
||||
preamble = f"'{label}' — {desc}.\nLetzte {len(tail)} Turns:\n"
|
||||
for role, text in tail:
|
||||
prefix = "Stefan" if role == "user" else "Du"
|
||||
summary_lines.append(f"{prefix}: {(text or '')[:280]}")
|
||||
preamble = f"'{label}' — {desc}.\nLetzte {len(tail)} Turns aus der Historie:\n"
|
||||
return preamble + "\n".join(summary_lines)
|
||||
if name == "project_end":
|
||||
pname = (arguments.get("name") or "").strip()
|
||||
@@ -2602,13 +3113,18 @@ class Agent:
|
||||
kind = (arguments.get("kind") or "").strip().lower()
|
||||
if kind not in ("code", "chat"):
|
||||
return "FEHLER: kind muss 'code' oder 'chat' sein."
|
||||
active_id = projects_mod.get_active()
|
||||
# WICHTIG: das Projekt des AKTUELLEN Requests markieren, NICHT den
|
||||
# globalen active_project — der ist geraeteuebergreifend und wuerde
|
||||
# (bei mehreren App-/Diagnostic-Instanzen) das falsche Projekt
|
||||
# treffen. project_id kommt pro Request vom Client.
|
||||
active_id = (project_id or "").strip()
|
||||
if not active_id:
|
||||
return ("Kein aktives Projekt — Du bist im Hauptthread. Erst ein Projekt "
|
||||
"anlegen/betreten (project_create/project_enter), dann set_project_kind.")
|
||||
return ("Kein aktives Projekt — dieser Chat laeuft im Hauptthread. "
|
||||
"set_project_kind wirkt nur, wenn der Request in einem Projekt "
|
||||
"laeuft (der Client sendet die project_id mit).")
|
||||
updated = projects_mod.update_project(active_id, {"kind": kind})
|
||||
if not updated:
|
||||
return f"FEHLER: aktives Projekt '{active_id}' nicht gefunden."
|
||||
return f"FEHLER: Projekt '{active_id}' nicht gefunden."
|
||||
self._pending_events.append({
|
||||
"type": "project_changed",
|
||||
"project": updated,
|
||||
@@ -2619,6 +3135,33 @@ class Agent:
|
||||
f"Editor + Desktop erscheinen in der App. Code-Dateien unter "
|
||||
f"/shared/projects/{active_id}/ schreiben, damit sie im Editor auftauchen.")
|
||||
return f"OK — Projekt '{updated['name']}' ist wieder ein normaler Chat."
|
||||
if name in ("satellite_list", "satellite_devices", "satellite_command"):
|
||||
return self._dispatch_satellite(name, arguments)
|
||||
if name == "vm_register":
|
||||
pid = (project_id or "").strip()
|
||||
if not pid:
|
||||
return "Kein aktives Projekt — VMs werden pro Projekt gefuehrt. Erst ein Projekt betreten."
|
||||
try:
|
||||
vm = project_vms_mod.add_vm(
|
||||
pid, (arguments.get("name") or "").strip(),
|
||||
(arguments.get("arch") or "i386").strip(),
|
||||
(arguments.get("iso") or "").strip(),
|
||||
(arguments.get("floppy") or "").strip(),
|
||||
(arguments.get("disk") or "").strip(),
|
||||
int(arguments.get("vnc_display") or 0),
|
||||
int(arguments.get("mem") or 1024),
|
||||
)
|
||||
except (ValueError, TypeError) as exc:
|
||||
return f"FEHLER: {exc}"
|
||||
return (f"OK — VM '{vm['name']}' ({vm['arch']}, Display :{vm['vnc_display']}) "
|
||||
f"in Projekt '{pid}' registriert. Erscheint in Stefans Desktop-Panel.")
|
||||
if name == "vm_list":
|
||||
pid = (project_id or "").strip()
|
||||
vms = project_vms_mod.list_vms(pid)
|
||||
if not vms:
|
||||
return f"Projekt '{pid or 'Hauptchat'}' hat noch keine registrierten VMs."
|
||||
return "VMs:\n" + "\n".join(
|
||||
f"- {v['name']} ({v.get('arch')}, Display :{v.get('vnc_display', 1)})" for v in vms)
|
||||
return f"Unbekanntes Tool: {name}"
|
||||
except Exception as exc:
|
||||
logger.exception("Tool '%s' fehlgeschlagen", name)
|
||||
|
||||
@@ -0,0 +1,90 @@
|
||||
"""Einmaliger Backfill: weist bestehenden Memory-Punkten ein `scope`
|
||||
(system | personal) zu. Sicher & reversibel — Stefan kann pro Eintrag in der
|
||||
Diagnostic-UI umschalten. Idempotent: laeuft mehrfach ohne Schaden.
|
||||
|
||||
Heuristik (datengetrieben aus dem realen Bestand):
|
||||
- type=preference / fact / conversation / reminder -> personal
|
||||
- source in (seed, auto-feedback) -> system
|
||||
- type=identity -> system
|
||||
- type in (rule, tool, skill) und category in SYSTEM_CATS -> system
|
||||
- sonst -> personal (sicher: nichts leakt)
|
||||
|
||||
Aufruf im Brain-Container:
|
||||
docker exec aria-brain python3 /app/backfill_scope.py # dry-run
|
||||
docker exec aria-brain python3 /app/backfill_scope.py --apply # schreibt
|
||||
"""
|
||||
import os
|
||||
import sys
|
||||
from collections import Counter
|
||||
|
||||
from qdrant_client import QdrantClient
|
||||
from qdrant_client.http import models as qm
|
||||
|
||||
COLLECTION = "aria_memory"
|
||||
SYSTEM_CATS = {
|
||||
"sicherheit", "arbeitsweise", "architektur", "ehrlichkeit", "verhalten",
|
||||
"voice", "skills", "freigaben", "infrastruktur", "persoenlichkeit",
|
||||
"pentest", "ausgabe",
|
||||
}
|
||||
|
||||
|
||||
def compute_scope(pl: dict) -> str:
|
||||
typ = pl.get("type")
|
||||
src = pl.get("source")
|
||||
cat = (pl.get("category") or "").lower()
|
||||
if typ == "preference":
|
||||
return "personal"
|
||||
if typ in ("fact", "conversation", "reminder"):
|
||||
return "personal"
|
||||
if src in ("seed", "auto-feedback"):
|
||||
return "system"
|
||||
if typ == "identity":
|
||||
return "system"
|
||||
if typ in ("rule", "tool", "skill") and cat in SYSTEM_CATS:
|
||||
return "system"
|
||||
return "personal"
|
||||
|
||||
|
||||
def main():
|
||||
apply = "--apply" in sys.argv
|
||||
force = "--force" in sys.argv # auch schon gesetzte scopes ueberschreiben
|
||||
c = QdrantClient(
|
||||
host=os.environ.get("QDRANT_HOST", "aria-qdrant"),
|
||||
port=int(os.environ.get("QDRANT_PORT", "6333")),
|
||||
)
|
||||
pts, _ = c.scroll(collection_name=COLLECTION, limit=5000,
|
||||
with_payload=True, with_vectors=False)
|
||||
|
||||
per_scope: dict[str, list] = {"system": [], "personal": []}
|
||||
pinned_examples = Counter()
|
||||
skipped = 0
|
||||
for p in pts:
|
||||
pl = p.payload or {}
|
||||
if pl.get("scope") in ("system", "personal") and not force:
|
||||
skipped += 1
|
||||
continue
|
||||
scope = compute_scope(pl)
|
||||
per_scope[scope].append(p.id)
|
||||
if pl.get("pinned"):
|
||||
pinned_examples[(scope, pl.get("source"), pl.get("type"),
|
||||
pl.get("category"))] += 1
|
||||
|
||||
print(f"total={len(pts)} skipped(already set)={skipped}")
|
||||
print(f"-> system={len(per_scope['system'])} personal={len(per_scope['personal'])}")
|
||||
print("pinned split (scope, source, type, category):")
|
||||
for k, v in sorted(pinned_examples.items()):
|
||||
print(" ", k, v)
|
||||
|
||||
if not apply:
|
||||
print("\nDRY-RUN — nichts geschrieben. Mit --apply ausfuehren.")
|
||||
return
|
||||
|
||||
for scope, ids in per_scope.items():
|
||||
if not ids:
|
||||
continue
|
||||
c.set_payload(collection_name=COLLECTION, payload={"scope": scope}, points=ids)
|
||||
print(f"\nAPPLIED: system={len(per_scope['system'])} personal={len(per_scope['personal'])}")
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
@@ -149,14 +149,23 @@ async def _fire(trigger: dict, agent_factory) -> None:
|
||||
)
|
||||
|
||||
try:
|
||||
agent = agent_factory()
|
||||
reply, _, _, _, _ = agent.chat(prompt, source="trigger")
|
||||
events = agent.pop_events()
|
||||
# WICHTIG: agent.chat() ist ein SYNCHRONER, blockierender Aufruf (Proxy-
|
||||
# HTTP mit bis zu 24h Read-Timeout). NIEMALS direkt im async-Loop —
|
||||
# sonst friert ein einziger getriggerter Turn den GESAMTEN Brain ein
|
||||
# (kein /health, kein weiterer Request). Wie der /chat-Pfad in den
|
||||
# Executor auslagern, damit der Event-Loop frei bleibt.
|
||||
loop = asyncio.get_running_loop()
|
||||
|
||||
def _run_turn():
|
||||
a = agent_factory()
|
||||
rep, *_rest = a.chat(prompt, source="trigger")
|
||||
return rep, a.pop_events()
|
||||
|
||||
reply, events = await loop.run_in_executor(None, _run_turn)
|
||||
logger.info("[trigger] %s gefeuert → ARIA-Reply: %s", name, reply[:80])
|
||||
triggers_mod.append_log(name, {"event": "reply", "text": reply[:500]})
|
||||
# Reply an die Bridge pushen, damit App + Diagnostic + TTS sie kriegen.
|
||||
# Ohne diesen Push wuerde die Antwort nur im Brain-Log landen.
|
||||
loop = asyncio.get_event_loop()
|
||||
await loop.run_in_executor(None, _push_to_bridge, reply, name, ttype, events)
|
||||
except Exception as e:
|
||||
logger.exception("Trigger %s feuern fehlgeschlagen: %s", name, e)
|
||||
|
||||
+334
-15
@@ -39,6 +39,7 @@ import background as background_mod
|
||||
import oauth as oauth_mod
|
||||
import seed_rules as seed_rules_mod
|
||||
import projects as projects_mod
|
||||
import project_vms as project_vms_mod
|
||||
|
||||
logging.basicConfig(level=logging.INFO, format="%(asctime)s [%(levelname)s] %(name)s: %(message)s")
|
||||
logger = logging.getLogger("aria-brain")
|
||||
@@ -189,6 +190,7 @@ class MemoryIn(BaseModel):
|
||||
pinned: bool = False
|
||||
category: str = ""
|
||||
source: str = "manual"
|
||||
scope: str = "personal" # system | personal — steuert Bootstrap-Export
|
||||
tags: List[str] = Field(default_factory=list)
|
||||
conversation_id: Optional[str] = None
|
||||
# Vorhandene Anhang-Metadaten beim Save mitgeben (i.d.R. werden Anhaenge
|
||||
@@ -202,6 +204,7 @@ class MemoryUpdate(BaseModel):
|
||||
content: Optional[str] = None
|
||||
pinned: Optional[bool] = None
|
||||
category: Optional[str] = None
|
||||
scope: Optional[str] = None # system | personal
|
||||
tags: Optional[List[str]] = None
|
||||
|
||||
|
||||
@@ -213,6 +216,7 @@ class MemoryOut(BaseModel):
|
||||
pinned: bool
|
||||
category: str
|
||||
source: str
|
||||
scope: str = "personal"
|
||||
tags: List[str]
|
||||
created_at: str
|
||||
updated_at: str
|
||||
@@ -327,6 +331,7 @@ def memory_save(body: MemoryIn):
|
||||
pinned=body.pinned,
|
||||
category=body.category,
|
||||
source=body.source,
|
||||
scope=body.scope,
|
||||
tags=body.tags,
|
||||
conversation_id=body.conversation_id,
|
||||
attachments=body.attachments or [],
|
||||
@@ -352,6 +357,8 @@ def memory_update(point_id: str, body: MemoryUpdate):
|
||||
existing.pinned = body.pinned
|
||||
if body.category is not None:
|
||||
existing.category = body.category
|
||||
if body.scope is not None:
|
||||
existing.scope = body.scope
|
||||
if body.tags is not None:
|
||||
existing.tags = body.tags
|
||||
|
||||
@@ -536,12 +543,23 @@ def memory_import_files():
|
||||
# Wiederherstellen einer schlanken ARIA nach Wipe.
|
||||
|
||||
@app.get("/memory/export-bootstrap")
|
||||
def memory_export_bootstrap():
|
||||
"""Gibt alle pinned Memories als JSON zurueck — fuer Browser-Download."""
|
||||
def memory_export_bootstrap(scope: str = "system"):
|
||||
"""Gibt pinned Memories als JSON zurueck — fuer Browser-Download.
|
||||
|
||||
scope='system' → nur generische Regeln (fuer ein frisches System),
|
||||
scope='personal' → nur Stefan-spezifisches (Name, Zugangsdaten, Projekte),
|
||||
scope='all' → alles pinned (Vollbackup).
|
||||
Default 'system', damit man nicht versehentlich Persoenliches teilt."""
|
||||
s = store()
|
||||
pinned = s.list_pinned()
|
||||
if scope == "all":
|
||||
pinned = s.list_pinned()
|
||||
elif scope in ("system", "personal"):
|
||||
pinned = s.list_pinned_by_scope(scope)
|
||||
else:
|
||||
raise HTTPException(400, f"Ungueltiger scope: {scope}")
|
||||
return {
|
||||
"version": 1,
|
||||
"version": 2,
|
||||
"scope": scope,
|
||||
"exported_at": __import__("datetime").datetime.now(
|
||||
__import__("datetime").timezone.utc
|
||||
).isoformat(),
|
||||
@@ -554,6 +572,7 @@ def memory_export_bootstrap():
|
||||
"pinned": True,
|
||||
"category": p.category,
|
||||
"source": p.source,
|
||||
"scope": p.scope,
|
||||
"tags": p.tags,
|
||||
}
|
||||
for p in pinned
|
||||
@@ -563,13 +582,18 @@ def memory_export_bootstrap():
|
||||
|
||||
class BootstrapBundle(BaseModel):
|
||||
version: int = 1
|
||||
scope: Optional[str] = None # system | personal | all (aus dem Export)
|
||||
memories: List[dict]
|
||||
|
||||
|
||||
@app.post("/memory/import-bootstrap")
|
||||
def memory_import_bootstrap(body: BootstrapBundle):
|
||||
"""Loescht alle pinned Memories und importiert die im Bundle.
|
||||
Cold Memory (unpinned) bleibt unangetastet.
|
||||
"""Importiert ein Bootstrap-Bundle scope-sicher.
|
||||
|
||||
Es werden NUR die aktuell pinned Punkte geloescht, deren scope zum Import
|
||||
gehoert — ein System-Import laesst also die persoenlichen pinned Memories
|
||||
(Name, Zugangsdaten) unangetastet und umgekehrt. Bei einem 'all'-Bundle
|
||||
(Vollbackup) werden alle pinned ersetzt.
|
||||
|
||||
Wenn keine Memories im Bundle: nur loeschen ist NICHT erlaubt — der
|
||||
Caller soll erst exportieren und dann importieren.
|
||||
@@ -579,23 +603,31 @@ def memory_import_bootstrap(body: BootstrapBundle):
|
||||
|
||||
s = store()
|
||||
e = embedder()
|
||||
|
||||
# Alle aktuell pinned Punkte loeschen
|
||||
from qdrant_client.http import models as qm
|
||||
from memory.vector_store import COLLECTION
|
||||
|
||||
# Scope bestimmen: explizit aus dem Bundle, sonst aus den memories ableiten.
|
||||
bundle_scope = body.scope
|
||||
if bundle_scope not in ("system", "personal", "all"):
|
||||
scopes_in_mems = {m.get("scope", "personal") for m in body.memories}
|
||||
bundle_scope = scopes_in_mems.pop() if len(scopes_in_mems) == 1 else "all"
|
||||
|
||||
# Nur die pinned Punkte des betroffenen scope loeschen.
|
||||
del_must = [qm.FieldCondition(key="pinned", match=qm.MatchValue(value=True))]
|
||||
if bundle_scope in ("system", "personal"):
|
||||
del_must.append(qm.FieldCondition(key="scope", match=qm.MatchValue(value=bundle_scope)))
|
||||
s.client.delete(
|
||||
collection_name=COLLECTION,
|
||||
points_selector=qm.FilterSelector(filter=qm.Filter(must=[
|
||||
qm.FieldCondition(key="pinned", match=qm.MatchValue(value=True))
|
||||
])),
|
||||
points_selector=qm.FilterSelector(filter=qm.Filter(must=del_must)),
|
||||
)
|
||||
|
||||
# Neue Punkte einspeisen
|
||||
# Neue Punkte einspeisen — scope pro memory (Fallback: bundle_scope bzw. personal).
|
||||
created = 0
|
||||
for m in body.memories:
|
||||
content = (m.get("content") or "").strip()
|
||||
if not content:
|
||||
continue
|
||||
mscope = m.get("scope") or (bundle_scope if bundle_scope != "all" else "personal")
|
||||
point = MemoryPoint(
|
||||
id="",
|
||||
type=m.get("type", "fact"),
|
||||
@@ -604,13 +636,14 @@ def memory_import_bootstrap(body: BootstrapBundle):
|
||||
pinned=True,
|
||||
category=m.get("category", ""),
|
||||
source=m.get("source", "bootstrap-import"),
|
||||
scope=mscope,
|
||||
tags=list(m.get("tags", [])),
|
||||
)
|
||||
vec = e.embed(content)
|
||||
s.upsert(point, vec)
|
||||
created += 1
|
||||
|
||||
return {"created": created, "deleted_previous_pinned": True}
|
||||
return {"created": created, "scope": bundle_scope, "deleted_previous_pinned": True}
|
||||
|
||||
|
||||
# ─── Conversation-Loop ──────────────────────────────────────────────
|
||||
@@ -643,6 +676,11 @@ class ChatOut(BaseModel):
|
||||
# Task fertig ist)? Dann pausiert die App die Projekt-Queue und leitet die
|
||||
# naechste Eingabe als Antwort weiter, statt sie als neuen Auftrag anzustellen.
|
||||
awaiting_reply: bool = False
|
||||
# Der User hat per Sprache "Wake-Word aus" gesagt → die App stoppt den
|
||||
# Wake-Word-Listener komplett (Mikro frei).
|
||||
wake_off: bool = False
|
||||
# "Wake-Word an" per Befehl (Text/Aufnahme-Button) → App startet den Listener.
|
||||
wake_on: bool = False
|
||||
# Echo der project_id die dieser Turn hatte. Bridge nutzt sie damit die
|
||||
# ausgehende Chat-Bubble sauber getaggt in der richtigen Thread-Bahn der
|
||||
# UI landet.
|
||||
@@ -752,6 +790,8 @@ async def chat(body: ChatIn, background: BackgroundTasks):
|
||||
speak=speak,
|
||||
converse=converse,
|
||||
awaiting_reply=awaiting_reply,
|
||||
wake_off=(answered_by == "wake-off"),
|
||||
wake_on=(answered_by == "wake-on"),
|
||||
)
|
||||
finally:
|
||||
_project_pending[pid] = [
|
||||
@@ -769,15 +809,49 @@ def projects_queue_status():
|
||||
|
||||
# ── Projekte ────────────────────────────────────────────────────────
|
||||
|
||||
def _project_file_count(pid: str) -> int:
|
||||
"""Anzahl Dateien in /shared/projects/<pid>/ (rekursiv, gecappt). 0 = leer."""
|
||||
base = os.path.join("/shared/projects", pid or "")
|
||||
if not os.path.isdir(base):
|
||||
return 0
|
||||
cnt = 0
|
||||
try:
|
||||
for _dp, dns, fns in os.walk(base):
|
||||
dns[:] = [d for d in dns if d not in (".git", "node_modules", "__pycache__", ".venv", "venv")]
|
||||
cnt += len(fns)
|
||||
if cnt > 999:
|
||||
return 999
|
||||
except Exception:
|
||||
return 0
|
||||
return cnt
|
||||
|
||||
|
||||
def _enrich_projects(projects: list) -> list:
|
||||
"""Ergaenzt has_files + file_count pro Projekt (fuer das Datei-Symbol in der
|
||||
Liste). Das ersetzt das manuelle Code-Flag als primaeren Code-Indikator."""
|
||||
for p in projects or []:
|
||||
if not isinstance(p, dict):
|
||||
continue
|
||||
c = _project_file_count(p.get("id") or "")
|
||||
p["file_count"] = c
|
||||
p["has_files"] = c > 0
|
||||
return projects
|
||||
|
||||
|
||||
@app.get("/projects/status")
|
||||
def projects_status():
|
||||
"""Komplett-Status: aktives Projekt + Liste aller (nicht-archivierten)."""
|
||||
return projects_mod.status()
|
||||
st = projects_mod.status()
|
||||
_enrich_projects(st.get("projects", []))
|
||||
if st.get("active"):
|
||||
_enrich_projects([st["active"]])
|
||||
return st
|
||||
|
||||
|
||||
@app.get("/projects/list")
|
||||
def projects_list(include_archived: bool = False):
|
||||
return {"projects": projects_mod.list_projects(include_archived=include_archived)}
|
||||
return {"projects": _enrich_projects(
|
||||
projects_mod.list_projects(include_archived=include_archived))}
|
||||
|
||||
|
||||
class ProjectCreateBody(BaseModel):
|
||||
@@ -827,17 +901,262 @@ class ProjectUpdateBody(BaseModel):
|
||||
name: Optional[str] = None
|
||||
description: Optional[str] = None
|
||||
hidden: Optional[bool] = None
|
||||
kind: Optional[str] = None # 'code' | 'chat' — manuell setzbar (App/Diagnostic)
|
||||
|
||||
|
||||
@app.patch("/projects/{project_id}")
|
||||
def projects_update(project_id: str, body: ProjectUpdateBody):
|
||||
patch = body.dict(exclude_unset=True)
|
||||
if "kind" in patch and patch["kind"] not in ("code", "chat", None):
|
||||
raise HTTPException(status_code=400, detail="kind muss 'code' oder 'chat' sein")
|
||||
p = projects_mod.update_project(project_id, patch)
|
||||
if p is None:
|
||||
raise HTTPException(status_code=404, detail=f"Projekt {project_id} nicht gefunden")
|
||||
return p
|
||||
|
||||
|
||||
# ── Code-Dateien eines Projekts (/shared/projects/<pid>/) ───────────
|
||||
# Der Live-Editor streamt ARIAs Writes; diese Endpoints liefern zusaetzlich die
|
||||
# BEREITS vorhandenen Dateien, damit der Editor beim Oeffnen nicht leer ist.
|
||||
_PROJECT_FILES_ROOT = "/shared/projects"
|
||||
_PROJECT_FILE_MAX = 512 * 1024
|
||||
|
||||
|
||||
def _project_dir(project_id: str) -> str:
|
||||
base = os.path.realpath(os.path.join(_PROJECT_FILES_ROOT, project_id or ""))
|
||||
root = os.path.realpath(_PROJECT_FILES_ROOT)
|
||||
if base != root and not base.startswith(root + os.sep):
|
||||
raise HTTPException(status_code=400, detail="ungueltige project_id")
|
||||
return base
|
||||
|
||||
|
||||
@app.get("/projects/{project_id}/files")
|
||||
def project_files(project_id: str):
|
||||
base = _project_dir(project_id)
|
||||
out = []
|
||||
if os.path.isdir(base):
|
||||
for dirpath, dirs, files in os.walk(base):
|
||||
dirs[:] = [d for d in dirs if d not in
|
||||
(".git", "node_modules", "__pycache__", ".venv", "venv")]
|
||||
for f in files:
|
||||
full = os.path.join(dirpath, f)
|
||||
rel = os.path.relpath(full, base).replace("\\", "/")
|
||||
try:
|
||||
sz = os.path.getsize(full)
|
||||
except OSError:
|
||||
sz = 0
|
||||
out.append({"path": rel, "size": sz})
|
||||
out.sort(key=lambda x: x["path"])
|
||||
return {"projectId": project_id, "files": out}
|
||||
|
||||
|
||||
@app.get("/projects/{project_id}/file")
|
||||
def project_file(project_id: str, path: str, binary: bool = False):
|
||||
base = _project_dir(project_id)
|
||||
target = os.path.realpath(os.path.join(base, path))
|
||||
if target != base and not target.startswith(base + os.sep):
|
||||
raise HTTPException(status_code=400, detail="Pfad ausserhalb des Projekts")
|
||||
if not os.path.isfile(target):
|
||||
raise HTTPException(status_code=404, detail="Datei nicht gefunden")
|
||||
# Binaer (z.B. Bilder) → Base64. Grosszuegigeres Limit als beim Text-Editor.
|
||||
if binary:
|
||||
import base64
|
||||
import mimetypes
|
||||
if os.path.getsize(target) > 8 * 1024 * 1024:
|
||||
raise HTTPException(status_code=413, detail="Datei zu gross (max 8 MB)")
|
||||
with open(target, "rb") as f:
|
||||
data = f.read()
|
||||
mime, _ = mimetypes.guess_type(target)
|
||||
return {"projectId": project_id, "path": path, "mime": mime or "application/octet-stream",
|
||||
"base64": base64.b64encode(data).decode("ascii")}
|
||||
if os.path.getsize(target) > _PROJECT_FILE_MAX:
|
||||
raise HTTPException(status_code=413, detail="Datei zu gross fuer den Editor")
|
||||
try:
|
||||
with open(target, "r", encoding="utf-8", errors="replace") as f:
|
||||
content = f.read()
|
||||
except Exception as exc:
|
||||
raise HTTPException(status_code=500, detail=str(exc))
|
||||
return {"projectId": project_id, "path": path, "content": content}
|
||||
|
||||
|
||||
# ── QEMU-VMs pro Projekt ────────────────────────────────────────────
|
||||
# Registry (project_vms) + echter Start/Stop via `aria-vm` auf dem Host (SSH
|
||||
# aria-wohnung). Das Desktop-Panel der App zeigt pro Projekt die Liste.
|
||||
_ARIA_VM_HOST = os.environ.get("ARIA_VM_SSH_HOST", "aria-wohnung")
|
||||
|
||||
|
||||
def _docker_gateway() -> str:
|
||||
"""Docker-Gateway-IP (= Host-IP auf dem Container-Netz), an die QEMU sein VNC
|
||||
binden soll: von der Bridge erreichbar, aber NICHT im LAN/Internet. Aus
|
||||
/proc/net/route (Default-Route), kein `ip`-Tool noetig."""
|
||||
try:
|
||||
import socket as _sock
|
||||
import struct as _struct
|
||||
with open("/proc/net/route") as f:
|
||||
for line in f.readlines()[1:]:
|
||||
fields = line.strip().split()
|
||||
if len(fields) >= 3 and fields[1] == "00000000" and int(fields[3], 16) & 2:
|
||||
return _sock.inet_ntoa(_struct.pack("<L", int(fields[2], 16)))
|
||||
except Exception:
|
||||
pass
|
||||
return ""
|
||||
|
||||
|
||||
def _ssh_host(*cmd: str, timeout: int = 25):
|
||||
import subprocess
|
||||
full = ["ssh", "-o", "StrictHostKeyChecking=no", "-o", "ConnectTimeout=8",
|
||||
_ARIA_VM_HOST, *[str(c) for c in cmd]]
|
||||
try:
|
||||
r = subprocess.run(full, capture_output=True, text=True, timeout=timeout)
|
||||
return r.returncode, r.stdout or "", r.stderr or ""
|
||||
except Exception as exc:
|
||||
return 1, "", str(exc)
|
||||
|
||||
|
||||
def _ssh_aria_vm(*args: str, timeout: int = 25):
|
||||
return _ssh_host("aria-vm", *args, timeout=timeout)
|
||||
|
||||
|
||||
def _vm_running_names() -> set:
|
||||
rc, out, _err = _ssh_aria_vm("list", timeout=15)
|
||||
names = set()
|
||||
if rc == 0:
|
||||
for line in out.splitlines():
|
||||
parts = line.split()
|
||||
if parts and "laeuft" in line:
|
||||
names.add(parts[0])
|
||||
return names
|
||||
|
||||
|
||||
class VmAddBody(BaseModel):
|
||||
name: str
|
||||
arch: str = "i386"
|
||||
iso: str = ""
|
||||
floppy: str = ""
|
||||
disk: str = ""
|
||||
vnc_display: int = 1
|
||||
mem: int = 1024
|
||||
create_disk: bool = False
|
||||
size: str = "10G"
|
||||
|
||||
|
||||
def _vm_boot_args(v: dict) -> list:
|
||||
args = ["boot", v.get("name", "?"),
|
||||
"--vnc-display", str(v.get("vnc_display", 1)),
|
||||
"--mem", str(v.get("mem", 1024))]
|
||||
if v.get("disk"):
|
||||
args += ["--disk", v["disk"]]
|
||||
if v.get("floppy"):
|
||||
args += ["--floppy", v["floppy"]]
|
||||
if v.get("iso"):
|
||||
args += ["--iso", v["iso"]]
|
||||
return args
|
||||
|
||||
|
||||
def _vm_boot_cmd(v: dict) -> str:
|
||||
"""Lesbarer Start-Befehl (aria-vm) als 'Wert' hinter dem VM-Eintrag."""
|
||||
return "aria-vm " + " ".join(_vm_boot_args(v))
|
||||
|
||||
|
||||
@app.get("/projects/{project_id}/vms")
|
||||
def project_vms_list(project_id: str):
|
||||
vms = [dict(v) for v in project_vms_mod.list_vms(project_id)]
|
||||
running = _vm_running_names()
|
||||
for v in vms:
|
||||
v["running"] = v.get("name") in running
|
||||
v["vnc_port"] = 5900 + int(v.get("vnc_display", 1))
|
||||
v["boot_cmd"] = _vm_boot_cmd(v)
|
||||
return {"projectId": project_id, "vms": vms}
|
||||
|
||||
|
||||
@app.post("/projects/{project_id}/vms")
|
||||
def project_vm_add(project_id: str, body: VmAddBody):
|
||||
try:
|
||||
vm = project_vms_mod.add_vm(project_id, body.name, body.arch, body.iso,
|
||||
body.floppy, body.disk, body.vnc_display, body.mem)
|
||||
except ValueError as exc:
|
||||
raise HTTPException(status_code=400, detail=str(exc))
|
||||
if body.create_disk:
|
||||
rc, out, err = _ssh_aria_vm("create", body.name, body.arch, body.size)
|
||||
vm["create_result"] = out.strip() or err.strip()
|
||||
vm["create_ok"] = (rc == 0)
|
||||
return vm
|
||||
|
||||
|
||||
@app.delete("/projects/{project_id}/vms/{name}")
|
||||
def project_vm_remove(project_id: str, name: str, purge: bool = False):
|
||||
ok = project_vms_mod.remove_vm(project_id, name)
|
||||
if not ok:
|
||||
raise HTTPException(status_code=404, detail=f"VM '{name}' nicht in Projekt {project_id}")
|
||||
if purge:
|
||||
_ssh_aria_vm("rm", name)
|
||||
return {"ok": True, "name": name}
|
||||
|
||||
|
||||
@app.post("/projects/{project_id}/vms/{name}/boot")
|
||||
def project_vm_boot(project_id: str, name: str):
|
||||
vm = project_vms_mod.get_vm(project_id, name)
|
||||
if not vm:
|
||||
raise HTTPException(status_code=404, detail=f"VM '{name}' nicht gefunden")
|
||||
# VNC an die Docker-Gateway-IP binden, damit die Bridge den Stream tunneln
|
||||
# kann (Loopback ist von Containern nicht erreichbar). NICHT im LAN sichtbar.
|
||||
boot_args = _vm_boot_args(vm)
|
||||
gw = _docker_gateway()
|
||||
if gw:
|
||||
boot_args += ["--vnc-bind", gw]
|
||||
rc, out, err = _ssh_aria_vm(*boot_args, timeout=40)
|
||||
return {"ok": rc == 0, "name": name, "vnc_port": 5900 + int(vm.get("vnc_display", 1)),
|
||||
"vnc_bind": gw or "127.0.0.1", "output": (out.strip() or err.strip())[:500]}
|
||||
|
||||
|
||||
@app.post("/projects/{project_id}/vms/{name}/stop")
|
||||
def project_vm_stop(project_id: str, name: str):
|
||||
rc, out, err = _ssh_aria_vm("stop", name, timeout=25)
|
||||
return {"ok": rc == 0, "name": name, "output": (out.strip() or err.strip())[:500]}
|
||||
|
||||
|
||||
@app.post("/projects/{project_id}/vms/{name}/screenshot")
|
||||
def project_vm_screenshot(project_id: str, name: str):
|
||||
"""Macht einen Screenshot der laufenden VM und liefert ihn als Base64.
|
||||
|
||||
aria-vm schreibt das PNG ins VM-Verzeichnis (dem aria-User gehoerend — nicht
|
||||
ins /root-Shared-Volume, wo der aria-User keinen Zugriff hat). Der Brain holt
|
||||
die Datei danach per SSH (base64) — funktioniert unabhaengig von Volume-
|
||||
Rechten. Zusaetzlich wird das PNG ins Projekt kopiert (Dateien-Panel)."""
|
||||
import base64
|
||||
rc, out, err = _ssh_aria_vm("screenshot", name, timeout=30)
|
||||
if rc != 0:
|
||||
raise HTTPException(status_code=400, detail=f"Screenshot fehlgeschlagen: {(err or out).strip()[:200]}")
|
||||
path = ""
|
||||
for line in out.splitlines():
|
||||
if line.startswith("screenshot="):
|
||||
path = line.split("=", 1)[1].strip()
|
||||
if not path:
|
||||
raise HTTPException(status_code=500, detail=f"Kein Screenshot-Pfad: {out.strip()[:200]}")
|
||||
# PNG per SSH als Base64 holen (kein Shared-Volume noetig).
|
||||
rc2, b64, err2 = _ssh_host("base64", "-w0", path, timeout=20)
|
||||
if rc2 != 0 or not b64.strip():
|
||||
raise HTTPException(status_code=500, detail=f"Screenshot konnte nicht gelesen werden: {(err2 or 'leer').strip()[:200]}")
|
||||
b64 = b64.strip()
|
||||
try:
|
||||
data = base64.b64decode(b64)
|
||||
except Exception as exc:
|
||||
raise HTTPException(status_code=500, detail=f"Base64 ungueltig: {exc}")
|
||||
fname = os.path.basename(path)
|
||||
# Ins Projekt kopieren → taucht im Dateien-Panel auf.
|
||||
proj_rel = ""
|
||||
try:
|
||||
shots_dir = os.path.join(_project_dir(project_id), "screenshots")
|
||||
os.makedirs(shots_dir, exist_ok=True)
|
||||
with open(os.path.join(shots_dir, fname), "wb") as f:
|
||||
f.write(data)
|
||||
proj_rel = "screenshots/" + fname
|
||||
except Exception:
|
||||
proj_rel = ""
|
||||
return {"ok": True, "name": name, "filename": fname,
|
||||
"projectPath": proj_rel, "base64": b64}
|
||||
|
||||
|
||||
@app.get("/conversation/stats")
|
||||
def conversation_stats():
|
||||
return conversation().stats()
|
||||
|
||||
@@ -11,6 +11,10 @@ Punkt-Schema (Payload):
|
||||
content — eigentlicher Text (wird embedded)
|
||||
pinned — bool, True = Hot Memory (immer in Prompt)
|
||||
source — import | conversation | manual
|
||||
scope — system | personal. system = generische Regeln, die JEDER
|
||||
braucht, der das System aufsetzt (Sicherheit, Ehrlichkeit,
|
||||
Skill-Regeln). personal = Stefan-spezifisch (Name, Zugangs-
|
||||
daten, Projekte). Steuert den getrennten Bootstrap-Export.
|
||||
tags — Liste von Strings
|
||||
created_at, updated_at — ISO-Strings
|
||||
conversation_id — optional, nur fuer type=conversation
|
||||
@@ -55,6 +59,7 @@ class MemoryPoint:
|
||||
pinned: bool = False
|
||||
category: str = ""
|
||||
source: str = "manual"
|
||||
scope: str = "personal" # system | personal — steuert Bootstrap-Export
|
||||
tags: List[str] = field(default_factory=list)
|
||||
created_at: str = ""
|
||||
updated_at: str = ""
|
||||
@@ -74,6 +79,7 @@ class MemoryPoint:
|
||||
"pinned": self.pinned,
|
||||
"category": self.category,
|
||||
"source": self.source,
|
||||
"scope": self.scope,
|
||||
"tags": self.tags,
|
||||
"created_at": self.created_at,
|
||||
"updated_at": self.updated_at,
|
||||
@@ -94,6 +100,7 @@ class MemoryPoint:
|
||||
pinned=payload.get("pinned", False),
|
||||
category=payload.get("category", ""),
|
||||
source=payload.get("source", "manual"),
|
||||
scope=payload.get("scope", "personal"),
|
||||
tags=payload.get("tags", []),
|
||||
created_at=payload.get("created_at", ""),
|
||||
updated_at=payload.get("updated_at", ""),
|
||||
@@ -120,14 +127,23 @@ class VectorStore:
|
||||
collection_name=COLLECTION,
|
||||
vectors_config=qm.VectorParams(size=VECTOR_DIM, distance=qm.Distance.COSINE),
|
||||
)
|
||||
# Indexe fuer typische Filter-Felder
|
||||
for field_name in ("type", "pinned", "category", "source", "migration_key"):
|
||||
# Indexe fuer typische Filter-Felder — idempotent, laeuft auch auf
|
||||
# einer bestehenden Collection (fuer neu hinzugekommene Felder wie scope).
|
||||
self._ensure_indexes()
|
||||
|
||||
def _ensure_indexes(self):
|
||||
for field_name in ("type", "pinned", "category", "source", "scope", "migration_key"):
|
||||
schema = (qm.PayloadSchemaType.BOOL if field_name == "pinned"
|
||||
else qm.PayloadSchemaType.KEYWORD)
|
||||
try:
|
||||
self.client.create_payload_index(
|
||||
collection_name=COLLECTION,
|
||||
field_name=field_name,
|
||||
field_schema=qm.PayloadSchemaType.KEYWORD if field_name != "pinned"
|
||||
else qm.PayloadSchemaType.BOOL,
|
||||
field_schema=schema,
|
||||
)
|
||||
except Exception:
|
||||
# Index existiert bereits — kein Problem.
|
||||
pass
|
||||
|
||||
# ─── Schreib-Operationen ─────────────────────────────────────────
|
||||
|
||||
@@ -164,6 +180,38 @@ class VectorStore:
|
||||
qm.FieldCondition(key="pinned", match=qm.MatchValue(value=True))
|
||||
]))
|
||||
|
||||
def list_pinned_by_scope(self, scope: str) -> List[MemoryPoint]:
|
||||
"""Alle pinned Punkte eines scope (system | personal). Fuer den
|
||||
getrennten Bootstrap-Export."""
|
||||
return self._scroll(filter=qm.Filter(must=[
|
||||
qm.FieldCondition(key="pinned", match=qm.MatchValue(value=True)),
|
||||
qm.FieldCondition(key="scope", match=qm.MatchValue(value=scope)),
|
||||
]))
|
||||
|
||||
def list_index_titles(self, limit: int = 500) -> List[MemoryPoint]:
|
||||
"""Leichtgewichtiger Titel-Index des kalten Gedaechtnisses fuer den
|
||||
System-Prompt: ARIA sieht WAS sie an Nachschlage-Wissen hat (Zugangs-
|
||||
daten, Infrastruktur, Projekte) und holt den Inhalt bei Bedarf via
|
||||
memory_search — statt Stefan nach etwas zu fragen, das schon da ist.
|
||||
|
||||
Bewusst NUR die deliberat gespeicherten Punkte:
|
||||
- nicht pinned (die sind eh schon voll im Prompt),
|
||||
- kein type=conversation (Chat-Mitschnitte),
|
||||
- kein source=distilled (die 100e auto-destillierten Gespraechs-
|
||||
Fakten — die traegt das semantische Auto-Retrieval, sie hier
|
||||
als Titel zu listen wuerde nur Kontext fressen).
|
||||
So bleibt der Index klein (Dutzende statt Hunderte Zeilen)."""
|
||||
return self._scroll(
|
||||
filter=qm.Filter(
|
||||
must_not=[
|
||||
qm.FieldCondition(key="pinned", match=qm.MatchValue(value=True)),
|
||||
qm.FieldCondition(key="type", match=qm.MatchValue(value="conversation")),
|
||||
qm.FieldCondition(key="source", match=qm.MatchValue(value="distilled")),
|
||||
]
|
||||
),
|
||||
limit=limit,
|
||||
)
|
||||
|
||||
def list_by_type(self, type_: str, limit: int = 100) -> List[MemoryPoint]:
|
||||
return self._scroll(
|
||||
filter=qm.Filter(must=[
|
||||
|
||||
@@ -252,6 +252,7 @@ def _parse_user_md(md: str, source_file: str) -> List[MemoryPoint]:
|
||||
type_="preference", title=f"User: {btitle}",
|
||||
content=btext, category="allgemein",
|
||||
migration_key=f"{source_file}/general-{idx}",
|
||||
scope="personal",
|
||||
))
|
||||
else:
|
||||
cat_key = re.sub(r"[^a-z0-9]+", "-", title.lower()).strip("-") or "allgemein"
|
||||
@@ -259,6 +260,7 @@ def _parse_user_md(md: str, source_file: str) -> List[MemoryPoint]:
|
||||
type_="preference", title=title,
|
||||
content=content, category=cat_key,
|
||||
migration_key=f"{source_file}/{cat_key}",
|
||||
scope="personal",
|
||||
))
|
||||
return points
|
||||
|
||||
@@ -283,7 +285,11 @@ def _mk(
|
||||
migration_key: str,
|
||||
pinned: bool = True,
|
||||
category: str = "",
|
||||
scope: str = "system",
|
||||
) -> MemoryPoint:
|
||||
# scope-Default 'system': AGENT.md + TOOLING.md beschreiben ARIA selbst
|
||||
# (Identitaet, Sicherheit, Architektur) — das braucht jedes System.
|
||||
# USER.md-Praeferenzen sind personal und uebergeben scope='personal'.
|
||||
p = MemoryPoint(
|
||||
id="",
|
||||
type=type_,
|
||||
@@ -292,6 +298,7 @@ def _mk(
|
||||
pinned=pinned,
|
||||
category=category,
|
||||
source="import",
|
||||
scope=scope,
|
||||
tags=[],
|
||||
)
|
||||
# migration_key wird ueber Payload-Index angesprochen — in to_payload manuell anhaengen
|
||||
|
||||
@@ -0,0 +1,118 @@
|
||||
"""
|
||||
project_vms — Registry der QEMU-VMs PRO PROJEKT.
|
||||
|
||||
Persistenz: /shared/config/project_vms.json → { project_id: [ {vm}, ... ] }.
|
||||
Eine VM = {name, arch, iso, vnc_display, mem, created_at, updated_at}. Der echte
|
||||
Start/Stop laeuft ueber `aria-vm` auf dem Host (SSH aria-wohnung, siehe main.py);
|
||||
diese Datei haelt nur die Zuordnung VM ↔ Projekt + die Startparameter, damit die
|
||||
Liste im Desktop-Panel der App pro Projekt erscheint (auch wenn leer).
|
||||
"""
|
||||
|
||||
from __future__ import annotations
|
||||
|
||||
import json
|
||||
import os
|
||||
import re
|
||||
import time
|
||||
from pathlib import Path
|
||||
from typing import Optional
|
||||
|
||||
VMS_FILE = Path(os.environ.get("PROJECT_VMS_FILE", "/shared/config/project_vms.json"))
|
||||
NAME_RE = re.compile(r"^[a-zA-Z0-9_-]{1,40}$")
|
||||
VALID_ARCH = {"x86_64", "amd64", "i386", "i686", "x86", "arm", "aarch64",
|
||||
"mips", "mipsel", "mips64", "ppc", "ppc64", "riscv64", "sparc"}
|
||||
|
||||
|
||||
def _load() -> dict:
|
||||
if not VMS_FILE.exists():
|
||||
return {}
|
||||
try:
|
||||
data = json.loads(VMS_FILE.read_text(encoding="utf-8"))
|
||||
return data if isinstance(data, dict) else {}
|
||||
except Exception:
|
||||
return {}
|
||||
|
||||
|
||||
def _save(data: dict) -> None:
|
||||
VMS_FILE.parent.mkdir(parents=True, exist_ok=True)
|
||||
tmp = VMS_FILE.with_suffix(".tmp")
|
||||
tmp.write_text(json.dumps(data, indent=2, ensure_ascii=False), encoding="utf-8")
|
||||
tmp.replace(VMS_FILE)
|
||||
|
||||
|
||||
def list_vms(project_id: str) -> list[dict]:
|
||||
return _load().get(project_id or "", [])
|
||||
|
||||
|
||||
def get_vm(project_id: str, name: str) -> Optional[dict]:
|
||||
for v in list_vms(project_id):
|
||||
if v.get("name") == name:
|
||||
return v
|
||||
return None
|
||||
|
||||
|
||||
def _used_displays(data: dict, exclude: object = None) -> set:
|
||||
"""Alle VNC-Displays, die ueber ALLE Projekte belegt sind (exclude = eine
|
||||
VM-Dict-Instanz, die ignoriert wird — fuer Updates)."""
|
||||
used = set()
|
||||
for lst in data.values():
|
||||
for v in lst:
|
||||
if v is exclude:
|
||||
continue
|
||||
try:
|
||||
used.add(int(v.get("vnc_display", 1)))
|
||||
except (TypeError, ValueError):
|
||||
pass
|
||||
return used
|
||||
|
||||
|
||||
def add_vm(project_id: str, name: str, arch: str, iso: str = "",
|
||||
floppy: str = "", disk: str = "",
|
||||
vnc_display: int = 0, mem: int = 1024) -> dict:
|
||||
"""Registriert/aktualisiert eine VM. Medien (disk/floppy/iso) optional —
|
||||
leer = aria-vm erkennt disk.qcow2/floppy.img/cdrom.iso im VM-Ordner selbst.
|
||||
|
||||
Das VNC-Display wird GLOBAL eindeutig vergeben (ueber alle Projekte), damit
|
||||
mehrere laufende VMs nicht denselben Port doppelt binden. vnc_display<=0 oder
|
||||
ein bereits belegtes Display → automatisch das naechste freie."""
|
||||
if not NAME_RE.match(name or ""):
|
||||
raise ValueError(f"Ungueltiger VM-Name: {name!r} (nur a-z0-9_-, max 40)")
|
||||
if arch not in VALID_ARCH:
|
||||
raise ValueError(f"Unbekannte Architektur: {arch!r}")
|
||||
data = _load()
|
||||
lst = data.setdefault(project_id or "", [])
|
||||
now = int(time.time())
|
||||
existing = next((v for v in lst if v.get("name") == name), None)
|
||||
|
||||
used = _used_displays(data, exclude=existing)
|
||||
req = int(vnc_display or 0)
|
||||
if req <= 0 and existing: # Update ohne Display-Wunsch → behalten
|
||||
req = int(existing.get("vnc_display", 0) or 0)
|
||||
if req <= 0 or req in used: # frei/eindeutig machen
|
||||
req = 1
|
||||
while req in used:
|
||||
req += 1
|
||||
|
||||
fields = {"arch": arch, "iso": iso, "floppy": floppy, "disk": disk,
|
||||
"vnc_display": req, "mem": int(mem), "updated_at": now}
|
||||
if existing:
|
||||
existing.update(fields)
|
||||
_save(data)
|
||||
return existing
|
||||
vm = {"name": name, "created_at": now, **fields}
|
||||
lst.append(vm)
|
||||
_save(data)
|
||||
return vm
|
||||
|
||||
|
||||
def remove_vm(project_id: str, name: str) -> bool:
|
||||
data = _load()
|
||||
lst = data.get(project_id or "")
|
||||
if not lst:
|
||||
return False
|
||||
new = [v for v in lst if v.get("name") != name]
|
||||
if len(new) == len(lst):
|
||||
return False
|
||||
data[project_id or ""] = new
|
||||
_save(data)
|
||||
return True
|
||||
+76
-1
@@ -162,6 +162,46 @@ def build_time_section() -> str:
|
||||
]
|
||||
return "\n".join(lines)
|
||||
|
||||
def build_voice_flow_section() -> str:
|
||||
"""Sprach-/Gespraechssteuerung: ARIA erkennt AUS DEM TEXT die Phase (Befehl vs.
|
||||
Frage, Kette vs. Ende) und deklariert sie per Marker — wie [[AWAIT]]. Die
|
||||
Marker werden im Brain entfernt (nie angezeigt/vorgelesen)."""
|
||||
return "\n".join([
|
||||
"## Sprach- & Gespraechssteuerung (Voice-First — du entscheidest die Phase)",
|
||||
"Stefan spricht meist mit dir. DU erkennst aus dem Text, was gerade Phase "
|
||||
"ist — niemand raet das fuer dich. Dazu haengst du EINEN Marker (bei Bedarf "
|
||||
"zwei) ganz ans ENDE deiner Antwort. Sie werden entfernt: nicht angezeigt, "
|
||||
"nicht vorgelesen, nicht gespeichert — genau wie `[[AWAIT]]`.",
|
||||
"",
|
||||
"- `[[STUMM]]` → Deine Antwort ist ein reiner **Steuerbefehl** (du hast etwas "
|
||||
"GETAN: Musik, VNC oeffnen, einen Menuepunkt klicken, Licht …). Sie wird "
|
||||
"NICHT vorgelesen; der kurze Bestaetigungstext steht nur in der Bubble. "
|
||||
"Setz das IMMER, wenn Stefan dir einen Befehl gibt statt eine Frage stellt — "
|
||||
"AUCH wenn du den Befehl ueber ein Skill/Tool ausfuehrst (nicht nur beim "
|
||||
"Fast-Path). `[[STUMM]]` ALLEIN = Einzelbefehl → danach direkt zurueck aufs "
|
||||
"Wake-Word.",
|
||||
"- `[[WEITER]]` → Das Gespraech bzw. eine **Befehlskette** laeuft weiter: das "
|
||||
"Mikro bleibt offen, du wartest auf die naechste Eingabe (kein erneutes "
|
||||
"\"Computer\" noetig). Setz das, wenn Stefan eine Kette ankuendigt ('ich geb "
|
||||
"dir gleich mehrere Befehle', 'wir machen das jetzt Schritt fuer Schritt') "
|
||||
"oder das Gespraech klar weitergeht.",
|
||||
"- `[[ENDE]]` → Konversation/Kette ist zu Ende: zurueck aufs Wake-Word. Setz "
|
||||
"das, wenn Stefan schliesst ('das war's', 'Konversation Ende', 'Befehlskette "
|
||||
"Ende', 'danke, fertig'). Stellt er in DERSELBEN Nachricht noch eine Frage, "
|
||||
"beantworte sie normal (OHNE `[[STUMM]]`, wird also vorgelesen) UND haeng "
|
||||
"`[[ENDE]]` an.",
|
||||
"",
|
||||
"Regeln:",
|
||||
"- Befehl (etwas TUN) → `[[STUMM]]`. Frage (etwas WISSEN / plaudern) → normal, "
|
||||
"ohne Marker (wird vorgelesen).",
|
||||
"- Befehlskette: JEDER Schritt `[[STUMM]] [[WEITER]]` (stumm arbeiten, Mikro "
|
||||
"offen), bis Stefan die Kette beendet → letzter Turn `[[ENDE]]`.",
|
||||
"- Ohne Marker = normales Gespraech: du wirst vorgelesen und ich lausche "
|
||||
"danach kurz weiter (Stefan kann einfach antworten, ohne 'Computer').",
|
||||
"- Nie widerspruechlich: `[[ENDE]]` schlaegt `[[WEITER]]`.",
|
||||
])
|
||||
|
||||
|
||||
TYPE_HEADINGS = {
|
||||
"identity": "## Wer du bist",
|
||||
"rule": "## Sicherheitsregeln & Prinzipien",
|
||||
@@ -260,6 +300,36 @@ def build_cold_memory_section(matches: List[MemoryPoint]) -> str:
|
||||
return "\n".join(lines)
|
||||
|
||||
|
||||
def build_memory_index_section(index_titles: List[MemoryPoint]) -> str:
|
||||
"""Titel-Index des kalten Gedaechtnisses: ARIA sieht WELCHES Nachschlage-
|
||||
Wissen sie hat (nur Titel, kein Inhalt = billig), damit sie den Inhalt via
|
||||
memory_search holt statt Stefan nach etwas zu fragen, das schon da ist.
|
||||
Nach Kategorie gruppiert; Conversation-Logs + auto-destillierte Fakten sind
|
||||
bereits ausgefiltert (siehe list_index_titles)."""
|
||||
if not index_titles:
|
||||
return ""
|
||||
grouped: dict[str, List[MemoryPoint]] = {}
|
||||
for p in index_titles:
|
||||
key = (p.category or p.type or "sonstiges").strip() or "sonstiges"
|
||||
grouped.setdefault(key, []).append(p)
|
||||
|
||||
lines = [
|
||||
"## Was in deinem Gedaechtnis liegt (per memory_search abrufbar)",
|
||||
"Diese Eintraege hast DU gespeichert — hier nur die Titel, nicht der "
|
||||
"Inhalt. Wenn einer zur Aufgabe passt, hol den Inhalt mit `memory_search` "
|
||||
"(Titel oder Stichwort). **Frag Stefan NICHT nach etwas, das hier steht** "
|
||||
"(Zugangsdaten, Server/Hosts, Projekt-Stand, Konfig) — erst nachsehen.",
|
||||
"",
|
||||
]
|
||||
for cat in sorted(grouped.keys()):
|
||||
items = grouped[cat]
|
||||
lines.append(f"### {cat}")
|
||||
for p in items:
|
||||
lines.append(f"- {p.title}")
|
||||
lines.append("")
|
||||
return "\n".join(lines).strip()
|
||||
|
||||
|
||||
def build_skills_section(skills: List[dict]) -> str:
|
||||
"""Listet alle Skills (aktiv + deaktiviert) damit ARIA weiss was es gibt
|
||||
und keine doppelt baut. Plus klare Schwelle wann ein Skill sich lohnt."""
|
||||
@@ -450,6 +520,7 @@ def build_flux_section(flux_config: dict) -> str:
|
||||
def build_system_prompt(
|
||||
pinned: List[MemoryPoint],
|
||||
cold: List[MemoryPoint] | None = None,
|
||||
memory_index: List[MemoryPoint] | None = None,
|
||||
skills: List[dict] | None = None,
|
||||
triggers: List[dict] | None = None,
|
||||
condition_vars: List[dict] | None = None,
|
||||
@@ -463,7 +534,8 @@ def build_system_prompt(
|
||||
"""Kompletter System-Prompt: Hot + Cold + Skills + Triggers + FLUX + OAuth."""
|
||||
# Identitaets-Anker IMMER zuerst — vor allen Memories/Sektionen, damit die
|
||||
# ARIA-Rolle auch in Projekten mit injection-artigem Inhalt (Pentest) haelt.
|
||||
parts = [IDENTITY_ANCHOR, "", build_hot_memory_section(pinned), "", build_time_section()]
|
||||
parts = [IDENTITY_ANCHOR, "", build_hot_memory_section(pinned), "", build_time_section(),
|
||||
"", build_voice_flow_section()]
|
||||
if skills:
|
||||
parts.append("")
|
||||
parts.append(build_skills_section(skills))
|
||||
@@ -482,6 +554,9 @@ def build_system_prompt(
|
||||
callback_host=oauth_callback_host,
|
||||
callback_port=oauth_callback_port,
|
||||
callback_tls=oauth_callback_tls))
|
||||
if memory_index:
|
||||
parts.append("")
|
||||
parts.append(build_memory_index_section(memory_index))
|
||||
if cold:
|
||||
parts.append("")
|
||||
parts.append(build_cold_memory_section(cold))
|
||||
|
||||
+84
-25
@@ -406,35 +406,93 @@ SEED_RULES: List[dict] = [
|
||||
"title": "Code-Projekte + QEMU: aria-vm auf dem Host, Editor/Desktop in der App",
|
||||
"category": "architektur",
|
||||
"content": (
|
||||
"Wenn aus einem Gespraech ein PROGRAMMIER- oder BAU-Projekt wird "
|
||||
"(Du schreibst Code, baust ein System, testest eine VM):\n"
|
||||
"GRUNDWISSEN Code-/Bau-Projekte + VMs — so haengt das System zusammen:\n"
|
||||
"\n"
|
||||
"1. Ruf `set_project_kind('code')` — dann blendet Stefans App einen "
|
||||
"Live-Code-Editor und den QEMU-Desktop ein. Vorher ein Projekt "
|
||||
"anlegen/betreten (project_create/enter), sonst gibt's kein Ziel.\n"
|
||||
"2. Schreib Code-Dateien NUR unter `/shared/projects/<projekt-id>/` "
|
||||
"(das Volume ist in proxy+bridge+brain gemountet). Genau diese "
|
||||
"Writes/Edits erscheinen live in Stefans Editor — und was Stefan "
|
||||
"dort tippt, landet als Datei zurueck in diesem Verzeichnis.\n"
|
||||
"DATEIEN eines Code-Projekts gehoeren nach `/shared/projects/<projekt-id>/` "
|
||||
"(Volume in proxy+bridge+brain gemountet). Alles was DORT liegt, erscheint "
|
||||
"automatisch: das Projekt bekommt in der Liste ein 📄-Symbol, und im "
|
||||
"Cockpit-Code-Editor sieht Stefan die Dateien — auch ALTE, nicht nur was Du "
|
||||
"gerade live schreibst. Was Stefan im Editor tippt, kommt als Datei dorthin "
|
||||
"zurueck. (Ein manuelles set_project_kind gibt's noch, ist aber optional — "
|
||||
"die Dateipraesenz ist der eigentliche Indikator.)\n"
|
||||
"\n"
|
||||
"QEMU (VMs fuer JEDE Architektur — x86, ARM, MIPS, PPC, RISC-V, SPARC) "
|
||||
"laeuft auf dem Host. Du steuerst sie per `ssh aria-wohnung aria-vm ...`:\n"
|
||||
" - `aria-vm create <name> <arch> [groesse]` Disk anlegen (z.B. i386 "
|
||||
"fuer Win 3.11, aarch64, mips ...).\n"
|
||||
" - `aria-vm boot <name> [--iso <pfad>] [--vnc-display 1] [--mem 1024]` "
|
||||
"startet die VM. VNC bindet an 127.0.0.1:<display> (Display 1 = Port "
|
||||
"5901). Nicht selbst nach aussen oeffnen!\n"
|
||||
" - `aria-vm screenshot <name>` PNG in die Shared-Uploads (kannst Du "
|
||||
"Stefan mit [FILE:] schicken).\n"
|
||||
"VMs (QEMU, JEDE Architektur: x86/i386, ARM/aarch64, MIPS, PPC, RISC-V, "
|
||||
"SPARC) laufen auf dem HOST (die qemu-Tools liegen in aria-wohnung, die "
|
||||
"Projektdateien in /shared). Du steuerst sie per `ssh aria-wohnung aria-vm ...`:\n"
|
||||
" - `aria-vm create <name> <arch> [groesse]` — legt eine VM an. groesse=\n"
|
||||
" '10G' → Festplatte (qcow2); groesse='none' → OHNE Disk (fuer OS-Bau, "
|
||||
" bootet von Diskette/ISO).\n"
|
||||
" - `aria-vm boot <name> [optionen]` — startet sie (daemonized). Optionen:\n"
|
||||
" --iso <pfad> von CD/ISO booten\n"
|
||||
" --floppy <pfad> von Diskette booten (-fda, klassisch OS-Dev)\n"
|
||||
" --disk <pfad> explizite qcow2\n"
|
||||
" --vnc-display <N> VNC-Display (Default 1 → Port 5901; mehrere VMs = "
|
||||
"verschiedene N)\n"
|
||||
" --mem <MB> RAM (Default 1024)\n"
|
||||
" Medien im VM-Ordner (disk.qcow2/floppy.img/cdrom.iso) werden auto-"
|
||||
"erkannt. Es MUSS mindestens ein Boot-Medium da sein.\n"
|
||||
" - `aria-vm screenshot <name>` → PNG (an Stefan per [FILE:] schickbar).\n"
|
||||
" - `aria-vm list` / `aria-vm stop <name>` / `aria-vm rm <name>`.\n"
|
||||
"\n"
|
||||
"Der VNC-Stream kommt AUTOMATISCH ueber den RVS-Tunnel der Bridge in "
|
||||
"Stefans App-Desktop-Kachel (Display 1 / Port 5901) — dort kann er die "
|
||||
"VM live mit Maus/Tastatur bedienen. Du musst nur die VM booten und ggf. "
|
||||
"sagen 'schau in die Desktop-Kachel'. KVM-Beschleunigung gibt es nur "
|
||||
"fuer x86-Gaeste; andere Architekturen laufen emuliert (langsamer, aber "
|
||||
"sie laufen). Medien-Downloads/Baubares fuer Stefans Privatgebrauch: "
|
||||
"wie gewohnt einfach machen, nicht moralisieren."
|
||||
"PFLICHT nach dem Bau/Boot: `vm_register(name, arch, disk?/floppy?/iso?, "
|
||||
"mem?)` im aktuellen Projekt aufrufen — mit den Medien, die Du gebaut hast. "
|
||||
"vnc_display WEGLASSEN — es wird global eindeutig auto-vergeben (kein "
|
||||
"Port-Konflikt, wenn mehrere VMs laufen). ERST DANN erscheint die VM in "
|
||||
"Stefans Desktop-Panel (Cockpit), "
|
||||
"wo er sie Starten/Stoppen/Verbinden kann. Ohne vm_register bleibt seine "
|
||||
"Liste leer, obwohl die VM laeuft. Der Startbefehl steht als Wert dahinter.\n"
|
||||
"\n"
|
||||
"URTEIL — bau eine VM NUR wenn's Sinn macht, und erkenne aus der SITUATION "
|
||||
"was gebraucht wird:\n"
|
||||
" - DOS-/Retro-Spiele, installierte Software → FESTPLATTE (create mit "
|
||||
"Groesse, dann installieren; disk).\n"
|
||||
" - Eigenes OS / Bootloader / Bare-Metal-Experiment → DISKETTE (create "
|
||||
"'none', floppy.img; ggf. eine zweite Diskette einbinden).\n"
|
||||
" - Fertiges System installieren/testen → ISO (--iso Installer).\n"
|
||||
" - Architektur zum Task waehlen: 'teste mal was auf ARM' → arch=aarch64 "
|
||||
"(-M virt, laeuft emuliert = langsam, das ist ok). x86-Zeug → i386/x86_64.\n"
|
||||
"AENDERUNGS-ZYKLUS: willst Du an einer laufenden VM etwas aendern (Datei "
|
||||
"tauschen, Diskette neu bauen), dann `aria-vm stop <name>` → Aenderung → "
|
||||
"`aria-vm boot <name>` wieder starten. Stefan kann das auch selbst ueber "
|
||||
"Start/Stop im Panel.\n"
|
||||
"\n"
|
||||
"Der VNC-Stream laeuft AUTOMATISCH komplett durch den RVS-Server (die Bridge "
|
||||
"tunnelt die RFB-Bytes; der VNC-Port ist nur intern auf dem Host). Firewall-"
|
||||
"unabhaengig — Du oeffnest NIE einen Port nach aussen. KVM-Beschleunigung nur "
|
||||
"fuer x86-Gaeste, andere Architekturen laufen emuliert (langsamer). Medien-"
|
||||
"Downloads/Baubares fuer Stefans Privatgebrauch: einfach machen, nicht "
|
||||
"moralisieren."
|
||||
),
|
||||
},
|
||||
{
|
||||
"migration_key": "seed/architecture/satellites-remote-networks",
|
||||
"type": "rule",
|
||||
"title": "Satelliten: Augen + Haende in fremden Netzen (Buero etc.)",
|
||||
"category": "architektur",
|
||||
"content": (
|
||||
"Ein SATELLIT ist ein eigenstaendiger Container in einem FREMDEN Netz "
|
||||
"(z.B. Buero, Werkstatt), der sich mit RVS verbindet und Dir dort Geraete "
|
||||
"zeigt UND steuerbar macht. So erreichst Du Netze, in denen der Haupt-Stack "
|
||||
"NICHT steht.\n"
|
||||
"\n"
|
||||
"Wenn Stefan etwas 'im Buero' / 'im Netz X' / 'auf dem <Geraet> dort' will:\n"
|
||||
" 1. `satellite_list` — welche Satelliten/Netze sind online + was koennen sie.\n"
|
||||
" 2. `satellite_devices(satellite='Buero')` — welche Geraete gibt es dort "
|
||||
"(Fire TV, Chromecast, Smart-TVs, Drucker, NAS ...). Nutze es um das "
|
||||
"gemeinte Geraet zu finden, BEVOR Du steuerst.\n"
|
||||
" 3. `satellite_command(...)` — Aktion ausfuehren.\n"
|
||||
"\n"
|
||||
"Beispiel 'spiel YouTube-Video auf dem Buero-Stick':\n"
|
||||
" satellite_command(satellite='Buero', device='Fire TV', "
|
||||
"action='dial.launch', params={'app':'YouTube','v':'<videoId>'})\n"
|
||||
"Die YouTube-Video-ID (v=) ziehst Du aus dem Link/Titel (ggf. web_search). "
|
||||
"Weitere Aktionen: 'wol' (params={'mac':'...'}) zum Aufwecken, "
|
||||
"'http.get'/'http.post' (params={'url':'...'}) fuer lokale Webhooks.\n"
|
||||
"\n"
|
||||
"Adressierung ueber Location/Name des Satelliten ('Buero'), NICHT ueber die "
|
||||
"Geraete — die identifizieren sich selbst. Steuerung geht nur, wenn der "
|
||||
"Satellit sie erlaubt (steht in satellite_list als caps). Ist keiner online: "
|
||||
"sag das ehrlich, statt zu raten."
|
||||
),
|
||||
},
|
||||
{
|
||||
@@ -857,6 +915,7 @@ def apply(store: VectorStore, embedder: Embedder) -> dict:
|
||||
"pinned": True,
|
||||
"category": rule.get("category", ""),
|
||||
"source": "seed",
|
||||
"scope": "system",
|
||||
"tags": [],
|
||||
"created_at": now,
|
||||
"updated_at": now,
|
||||
|
||||
+253
-26
@@ -43,6 +43,25 @@ from openwakeword.model import Model as WakeWordModel
|
||||
|
||||
from modes import Mode, canonical_id, detect_mode_switch, mode_from_id, should_speak
|
||||
|
||||
|
||||
def _docker_gateway() -> str:
|
||||
"""Docker-Gateway-IP (= Host-IP auf DIESEM Container-Netz, aria-net) aus
|
||||
/proc/net/route. Genau die IP, an die der Brain QEMUs VNC bindet — im
|
||||
Gegensatz zu host.docker.internal, das auf die Default-Bridge (docker0)
|
||||
zeigt und daher die VM nicht trifft."""
|
||||
try:
|
||||
import socket as _sock
|
||||
import struct as _struct
|
||||
with open("/proc/net/route") as f:
|
||||
for line in f.readlines()[1:]:
|
||||
fields = line.strip().split()
|
||||
if len(fields) >= 4 and fields[1] == "00000000" and int(fields[3], 16) & 2:
|
||||
return _sock.inet_ntoa(_struct.pack("<L", int(fields[2], 16)))
|
||||
except Exception:
|
||||
pass
|
||||
return ""
|
||||
|
||||
|
||||
# ── Logging ──────────────────────────────────────────────────
|
||||
|
||||
logging.basicConfig(
|
||||
@@ -738,7 +757,15 @@ class ARIABridge:
|
||||
# "task": asyncio.Task}. Wir bruecken rohes RFB-TCP (QEMU-VNC auf dem
|
||||
# Host) <-> RVS (vnc_data/vnc_input, Base64-in-JSON).
|
||||
self._vnc_sessions: dict[str, dict] = {}
|
||||
self._vnc_host: str = os.environ.get("ARIA_VNC_HOST", "host.docker.internal")
|
||||
# VNC-Host: das aria-net-Gateway (dort bindet der Brain QEMUs VNC).
|
||||
# host.docker.internal zeigt faelschlich auf docker0 (172.17.0.1) → refused.
|
||||
self._vnc_host: str = (os.environ.get("ARIA_VNC_HOST")
|
||||
or _docker_gateway() or "host.docker.internal")
|
||||
# Satelliten (Aussenposten in fremden Netzen). id → {location, caps,
|
||||
# control, last_seen}. Registrierung via sat_hello. _pending_sat:
|
||||
# requestId → Future (sat_devices / sat_result), analog _pending_flux.
|
||||
self._satellites: dict[str, dict] = {}
|
||||
self._pending_sat: dict[str, asyncio.Future] = {}
|
||||
# FLUX-Render-Requests die aktuell auf Antwort der flux-bridge (Gamebox) warten.
|
||||
# requestId → Future mit dem flux_response-Payload (oder None bei Fehler).
|
||||
self._pending_flux: dict[str, asyncio.Future] = {}
|
||||
@@ -763,7 +790,8 @@ class ARIABridge:
|
||||
# Anfrage an aria-core. Sonst antwortet ARIA zweimal (einmal "warte auf
|
||||
# Anweisung" beim file, einmal auf den Chat-Text).
|
||||
# Liste von Tuples: (file_path, name, file_type, size_kb, width, height)
|
||||
self._pending_files: list[tuple[str, str, str, int, int, int]] = []
|
||||
# (file_path, name, type, kb, width, height, clientMsgId)
|
||||
self._pending_files: list[tuple[str, str, str, int, int, int, str]] = []
|
||||
self._pending_files_flush_task: Optional[asyncio.Task] = None
|
||||
# Projekt-Kontext der gerade gepufferten Anhaenge (aus dem file-Upload).
|
||||
# Wird beim Flush an send_to_core gegeben, damit Anhaenge im richtigen
|
||||
@@ -1594,6 +1622,11 @@ class ARIABridge:
|
||||
# die Projekt-Queue und leitet die naechste Eingabe als Antwort auf
|
||||
# DIESE Rueckfrage weiter, statt sie als neuen Auftrag anzustellen.
|
||||
"awaiting_reply": bool(payload.get("awaiting_reply", False)) if isinstance(payload, dict) else False,
|
||||
# User hat "Wake-Word aus" gesagt → App stoppt den Listener komplett
|
||||
# (Mikro frei).
|
||||
"wake_off": bool(payload.get("wake_off", False)) if isinstance(payload, dict) else False,
|
||||
# "Wake-Word an" (Text/Aufnahme-Button) → App startet den Listener.
|
||||
"wake_on": bool(payload.get("wake_on", False)) if isinstance(payload, dict) else False,
|
||||
},
|
||||
"timestamp": int(asyncio.get_event_loop().time() * 1000),
|
||||
})
|
||||
@@ -1812,16 +1845,16 @@ class ARIABridge:
|
||||
return " ".join(parts) + " " + text
|
||||
return text
|
||||
|
||||
def _build_pending_files_message(self, user_text: str) -> str:
|
||||
"""Baut eine Anweisung an aria-core aus den gepufferten Files + optionalem
|
||||
def _build_pending_files_message(self, user_text: str, files: list) -> str:
|
||||
"""Baut eine Anweisung an aria-core aus den uebergebenen Files + optionalem
|
||||
User-Text. user_text leer → 'warte auf Anweisung'-Variante."""
|
||||
parts: list[str] = []
|
||||
for fp, name, ftype, kb, w, h in self._pending_files:
|
||||
for fp, name, ftype, kb, w, h, _cmid in files:
|
||||
dim = f" {w}x{h}px" if (w and h) else ""
|
||||
kind = "Bild" if ftype.startswith("image/") else "Datei"
|
||||
parts.append(f"- {kind}: {name}{dim} ({ftype}, {kb}KB) liegt unter {fp}")
|
||||
files_summary = "\n".join(parts)
|
||||
n = len(self._pending_files)
|
||||
n = len(files)
|
||||
anhang = "Anhang" if n == 1 else "Anhaenge"
|
||||
if user_text:
|
||||
return (f"Stefan hat dir {n} {anhang} geschickt:\n{files_summary}\n\n"
|
||||
@@ -1830,15 +1863,16 @@ class ARIABridge:
|
||||
f"Warte auf seine Anweisung was du damit tun sollst.")
|
||||
|
||||
async def _flush_pending_files_after(self, delay: float) -> None:
|
||||
"""Wenn nach `delay`s kein chat-Text gekommen ist: Files alleine an
|
||||
aria-core senden ('warte auf Anweisung'-Variante)."""
|
||||
"""Wenn nach `delay`s kein chat-Text gekommen ist: alle noch gepufferten
|
||||
Files alleine an aria-core senden ('warte auf Anweisung'-Variante)."""
|
||||
try:
|
||||
await asyncio.sleep(delay)
|
||||
except asyncio.CancelledError:
|
||||
return
|
||||
if not self._pending_files:
|
||||
return
|
||||
text = self._build_pending_files_message("")
|
||||
files = self._pending_files
|
||||
text = self._build_pending_files_message("", files)
|
||||
self._pending_files = []
|
||||
self._pending_files_flush_task = None
|
||||
pid = self._pending_files_project_id
|
||||
@@ -1846,23 +1880,48 @@ class ARIABridge:
|
||||
await self.send_to_core(text, source="app-file", project_id=pid)
|
||||
|
||||
async def _flush_pending_files_with_text(self, user_text: str,
|
||||
project_id: str = "") -> bool:
|
||||
project_id: str = "",
|
||||
client_msg_id: str = "") -> bool:
|
||||
"""Wenn ein chat-Text reinkommt waehrend Files gepuffert sind:
|
||||
Files + Text zu einer einzigen aria-core-Nachricht mergen.
|
||||
Returns True wenn gemerged wurde (Caller soll dann nicht nochmal senden).
|
||||
|
||||
KORRELATION (Fix Queue-Bug): Files tragen dieselbe clientMsgId wie ihr
|
||||
Text. Bei einer Queue gehen Files (fire-and-forget) und Text (ACK-
|
||||
getrackt, ggf. verzoegert) auseinander — ohne Korrelation landeten die
|
||||
Bilder beim falschen Text. Wir mergen darum NUR die Files mit passender
|
||||
cmid; der Rest bleibt gepuffert fuer seine eigene Nachricht. Fallback
|
||||
(Legacy-App ohne cmid an Files, oder cmid ohne Treffer): altes Verhalten
|
||||
(alle Files mit diesem Text), damit nie ein Bild verloren geht.
|
||||
|
||||
project_id: Projekt-Kontext aus dem chat-Payload (der sichtbare Focus
|
||||
beim Absenden). Faellt auf den beim File-Upload gemerkten Kontext
|
||||
zurueck, damit Anhaenge im richtigen Projekt landen statt im Hauptchat."""
|
||||
beim Absenden). Faellt auf den beim File-Upload gemerkten Kontext zurueck.
|
||||
"""
|
||||
if not self._pending_files:
|
||||
return False
|
||||
cmid = (client_msg_id or "").strip()
|
||||
matching = [f for f in self._pending_files if cmid and f[6] == cmid]
|
||||
if not matching:
|
||||
# Kein cmid-Treffer → altes Verhalten: alle gepufferten Files mergen.
|
||||
matching = list(self._pending_files)
|
||||
remaining: list = []
|
||||
else:
|
||||
remaining = [f for f in self._pending_files if f not in matching]
|
||||
|
||||
text = self._build_pending_files_message(user_text, matching)
|
||||
self._pending_files = remaining
|
||||
pid = (project_id or "").strip() or self._pending_files_project_id
|
||||
# Flush-Timer neu setzen wenn noch Files anderer Nachrichten warten,
|
||||
# sonst zuruecksetzen.
|
||||
if self._pending_files_flush_task and not self._pending_files_flush_task.done():
|
||||
self._pending_files_flush_task.cancel()
|
||||
self._pending_files_flush_task = None
|
||||
text = self._build_pending_files_message(user_text)
|
||||
self._pending_files = []
|
||||
pid = (project_id or "").strip() or self._pending_files_project_id
|
||||
self._pending_files_project_id = ""
|
||||
if remaining:
|
||||
self._pending_files_flush_task = asyncio.create_task(
|
||||
self._flush_pending_files_after(self._PENDING_FILES_WINDOW_SEC)
|
||||
)
|
||||
else:
|
||||
self._pending_files_project_id = ""
|
||||
# create_task statt await — sonst blockt der RVS-recv-Loop bis Brain
|
||||
# fertig ist (siehe chat-handler oben).
|
||||
asyncio.create_task(self.send_to_core(text, source="app-file+chat", project_id=pid))
|
||||
@@ -1909,10 +1968,13 @@ class ARIABridge:
|
||||
url, data=payload, method="POST",
|
||||
headers={"Content-Type": "application/json"},
|
||||
)
|
||||
# 20 Min Timeout — lange Multi-Tool-Workflows (Karten,
|
||||
# PDFs, viele curl-Calls) brauchen das. 5 Min waren chronisch
|
||||
# zu knapp und haben ARIA mitten in der Arbeit gekappt.
|
||||
with urllib.request.urlopen(req, timeout=1200) as resp:
|
||||
# Timeout MUSS zum Proxy passen (der laesst ARIA bis 24h
|
||||
# rechnen). 1200s (20 Min) war zu knapp: lange Software-Dev-
|
||||
# Turns dauern laenger → die Bridge gab auf, die Antwort ging
|
||||
# verloren (kein Bubble), der Kontext blieb auf 'running'
|
||||
# haengen. Jetzt 24h (env BRAIN_CHAT_TIMEOUT_SEC).
|
||||
_chat_timeout = float(os.environ.get("BRAIN_CHAT_TIMEOUT_SEC", "86400"))
|
||||
with urllib.request.urlopen(req, timeout=_chat_timeout) as resp:
|
||||
return resp.status, resp.read().decode("utf-8", errors="ignore")
|
||||
except Exception as exc:
|
||||
return None, str(exc)
|
||||
@@ -1960,6 +2022,10 @@ class ARIABridge:
|
||||
# Stellt ARIA eine blockierende Rueckfrage? Dann pausiert die App die
|
||||
# Projekt-Queue und leitet die naechste Eingabe als Antwort weiter.
|
||||
awaiting_reply = bool(data.get("awaiting_reply", False))
|
||||
# User hat per Sprache "Wake-Word aus" gesagt → App stoppt den Listener.
|
||||
wake_off = bool(data.get("wake_off", False))
|
||||
# "Wake-Word an" (Text/Aufnahme-Button) → App startet den Listener wieder.
|
||||
wake_on = bool(data.get("wake_on", False))
|
||||
|
||||
# Side-Channel-Events VOR der Chat-Bubble broadcasten (z.B. skill_created)
|
||||
# damit sie in der UI vor der Reply auftauchen
|
||||
@@ -2007,10 +2073,15 @@ class ARIABridge:
|
||||
elif etype == "project_changed":
|
||||
# ARIA hat ein Projekt erstellt / betreten / verlassen / beendet.
|
||||
# App + Diagnostic refreshen ihren Projekt-Banner anhand des Events.
|
||||
# clientMsgId der ausloesenden Anfrage mitgeben (Text-cmid oder
|
||||
# Voice-audioRequestId) → das ausloesende Geraet kann einen
|
||||
# geraete-lokalen Projektwechsel machen ("geh in Projekt X"),
|
||||
# ohne andere App-/Diagnostic-Instanzen mitzuziehen.
|
||||
await self._send_to_rvs({
|
||||
"type": "project_changed",
|
||||
"payload": {
|
||||
"action": event.get("action") or "",
|
||||
"clientMsgId": client_msg_id or "",
|
||||
**(event.get("project") or {}),
|
||||
},
|
||||
"timestamp": int(asyncio.get_event_loop().time() * 1000),
|
||||
@@ -2018,6 +2089,22 @@ class ARIABridge:
|
||||
proj = event.get("project") or {}
|
||||
logger.info("[brain] Projekt %s: %s (id=%s)",
|
||||
event.get("action") or "?", proj.get("name"), proj.get("id"))
|
||||
elif etype == "aria_view":
|
||||
# M1: ARIA hat via present_view eine raeumliche Ansicht komponiert.
|
||||
# View-Spec (Orb + Karten) + Projekt-Kontext an App/Web/Diagnostic;
|
||||
# deren Renderer materialisieren die Karten auf der Flaeche.
|
||||
view = event.get("view") or {}
|
||||
await self._send_to_rvs({
|
||||
"type": "aria_view",
|
||||
"payload": {
|
||||
"view": view,
|
||||
"projectId": event.get("project_id") or "",
|
||||
"clientMsgId": client_msg_id or "",
|
||||
},
|
||||
"timestamp": int(asyncio.get_event_loop().time() * 1000),
|
||||
})
|
||||
logger.info("[brain] ARIA hat eine Ansicht geschickt: %d Karte(n), orb=%s",
|
||||
len(view.get("cards") or []), view.get("orb"))
|
||||
|
||||
# _process_core_response uebernimmt alles weitere:
|
||||
# File-Marker extrahieren + broadcasten, NO_REPLY-Check, Chat-
|
||||
@@ -2030,7 +2117,9 @@ class ARIABridge:
|
||||
"answeredBy": answered_by,
|
||||
"speak": speak,
|
||||
"converse": converse,
|
||||
"awaiting_reply": awaiting_reply})
|
||||
"awaiting_reply": awaiting_reply,
|
||||
"wake_off": wake_off,
|
||||
"wake_on": wake_on})
|
||||
except Exception:
|
||||
logger.exception("[brain] _process_core_response Fehler")
|
||||
await self._emit_activity("idle", "", project_id=project_id)
|
||||
@@ -2332,7 +2421,8 @@ class ARIABridge:
|
||||
# gesendet), mergen wir sie zu einer einzigen Anfrage statt
|
||||
# zwei separater send_to_core-Calls.
|
||||
merged = await self._flush_pending_files_with_text(
|
||||
text, project_id=str(payload.get("projectId") or ""))
|
||||
text, project_id=str(payload.get("projectId") or ""),
|
||||
client_msg_id=client_msg_id or "")
|
||||
if merged:
|
||||
logger.info("[rvs] App-Chat (mit Anhaengen) project=%s: '%s'",
|
||||
str(payload.get("projectId") or "") or "(main)", text[:80])
|
||||
@@ -2374,6 +2464,20 @@ class ARIABridge:
|
||||
await self._emit_activity("idle", "", project_id=cancel_pid)
|
||||
return
|
||||
|
||||
if msg_type == "interject":
|
||||
# Zwischenruf: waehrend eines laufenden Turns eine Korrektur
|
||||
# reinschieben — KEIN Abbruch, keine Queue. Geht an den Proxy-
|
||||
# internen /interject, der die Message in den laufenden Subprozess
|
||||
# des Kontexts schreibt (claude greift sie an der naechsten Tool-
|
||||
# Grenze auf).
|
||||
interject_pid = str(payload.get("projectId") or "")
|
||||
interject_text = str(payload.get("text") or "")
|
||||
logger.info("[rvs] Zwischenruf project=%s: '%s'",
|
||||
interject_pid or "(main)", interject_text[:80])
|
||||
if interject_text.strip():
|
||||
await self._interject_proxy_for_project(interject_pid, interject_text)
|
||||
return
|
||||
|
||||
elif msg_type == "audio_pcm":
|
||||
# Audio-PCM geht direkt von XTTS-Bridge an die App.
|
||||
# Die aria-bridge darf es NICHT rebroadcasten — sonst bekommt die App
|
||||
@@ -2626,8 +2730,11 @@ class ARIABridge:
|
||||
logger.warning("[rvs] Bild-Resize fehlgeschlagen (%s) — Original wird genutzt: %s",
|
||||
file_name, e)
|
||||
|
||||
# In Pending-Queue + Flush-Timer (anti-spam Buffering)
|
||||
self._pending_files.append((file_path, file_name, file_type, size_kb, int(width or 0), int(height or 0)))
|
||||
# In Pending-Queue + Flush-Timer (anti-spam Buffering).
|
||||
# clientMsgId mitpuffern → spaeterer Text-Flush ordnet die Datei
|
||||
# genau SEINER Nachricht zu (Queue-Korrelation, s. _flush_*).
|
||||
file_cmid = str(payload.get("clientMsgId") or "")
|
||||
self._pending_files.append((file_path, file_name, file_type, size_kb, int(width or 0), int(height or 0), file_cmid))
|
||||
if self._pending_files_flush_task and not self._pending_files_flush_task.done():
|
||||
self._pending_files_flush_task.cancel()
|
||||
self._pending_files_flush_task = asyncio.create_task(
|
||||
@@ -3406,6 +3513,32 @@ class ARIABridge:
|
||||
logger.warning("[vnc] input schreiben (%s) fehlgeschlagen: %s", session, exc)
|
||||
return
|
||||
|
||||
elif msg_type == "sat_hello":
|
||||
sid = (payload.get("id") or "").strip()
|
||||
if sid:
|
||||
self._satellites[sid] = {
|
||||
"id": sid,
|
||||
"location": payload.get("location") or sid,
|
||||
"caps": payload.get("caps") or [],
|
||||
"control": bool(payload.get("control")),
|
||||
"last_seen": time.time(),
|
||||
}
|
||||
logger.info("[sat] Satellit online: %s (%s) caps=%s control=%s",
|
||||
sid, self._satellites[sid]["location"],
|
||||
self._satellites[sid]["caps"], self._satellites[sid]["control"])
|
||||
return
|
||||
|
||||
elif msg_type in ("sat_devices", "sat_result"):
|
||||
req_id = payload.get("requestId", "")
|
||||
future = self._pending_sat.get(req_id)
|
||||
if future is not None and not future.done():
|
||||
future.set_result(payload)
|
||||
# last_seen aktualisieren
|
||||
sid = (payload.get("satellite") or "").strip()
|
||||
if sid and sid in self._satellites:
|
||||
self._satellites[sid]["last_seen"] = time.time()
|
||||
return
|
||||
|
||||
elif msg_type == "config_request":
|
||||
# Eine andere Bridge (whisper/f5tts) bittet um die aktuelle Voice-
|
||||
# Config — passiert wenn sie sich connected, weil sie sonst die
|
||||
@@ -3618,8 +3751,11 @@ class ARIABridge:
|
||||
)
|
||||
|
||||
if meta_action in ("back_to_main", "project_prefix"):
|
||||
# UI-Focus-Update broadcasten
|
||||
payload = {"action": "entered" if meta_action == "project_prefix" else "exited"}
|
||||
# UI-Focus-Update broadcasten — clientMsgId (= audio_request_id der
|
||||
# Aufnahme) mitgeben, damit NUR das Geraet folgt, das den Sprach-
|
||||
# befehl gab (geraete-lokaler Fokus, keine anderen Instanzen ziehen).
|
||||
payload = {"action": "entered" if meta_action == "project_prefix" else "exited",
|
||||
"clientMsgId": audio_request_id or ""}
|
||||
if meta_action == "project_prefix" and project_id:
|
||||
# Namen aus dem Cache holen — best effort
|
||||
try:
|
||||
@@ -4040,6 +4176,28 @@ class ARIABridge:
|
||||
logger.info("[cancel] proxy /cancel project=%s: %s %s",
|
||||
project_id or "(main)", status, body)
|
||||
|
||||
async def _interject_proxy_for_project(self, project_id: str, text: str) -> None:
|
||||
"""Zwischenruf: schiebt eine User-Message in den laufenden Turn dieses
|
||||
Kontexts (proxy-internes /interject) — ohne Abbruch. claude greift sie
|
||||
an der naechsten Tool-Grenze auf."""
|
||||
url = os.environ.get("PROXY_INTERNAL_URL", "http://aria-proxy:3457") + "/interject"
|
||||
data = json.dumps({"projectId": project_id or "", "text": text}).encode("utf-8")
|
||||
|
||||
def _do_request():
|
||||
try:
|
||||
req = urllib.request.Request(
|
||||
url, method="POST", data=data,
|
||||
headers={"Content-Type": "application/json"},
|
||||
)
|
||||
with urllib.request.urlopen(req, timeout=3) as resp:
|
||||
return resp.status, resp.read().decode("utf-8", "ignore")[:200]
|
||||
except Exception as e:
|
||||
return f"error: {e}", ""
|
||||
|
||||
status, body = await asyncio.get_event_loop().run_in_executor(None, _do_request)
|
||||
logger.info("[interject] proxy /interject project=%s: %s %s",
|
||||
project_id or "(main)", status, body)
|
||||
|
||||
async def _emit_activity(self, activity: str, tool: str = "", force: bool = False,
|
||||
project_id: str = "") -> None:
|
||||
"""Sendet agent_activity an die App — nur wenn sich der State geaendert hat.
|
||||
@@ -4274,6 +4432,27 @@ class ARIABridge:
|
||||
"timestamp": int(time.time() * 1000),
|
||||
}))
|
||||
await _send_response(writer, 200, {"ok": True})
|
||||
elif method == "POST" and path == "/internal/satellite-list":
|
||||
# Brain fragt: welche Satelliten/Netze sind online + Capabilities.
|
||||
await _send_response(writer, 200, {"ok": True, "satellites": self._satellite_list()})
|
||||
elif method == "POST" and path == "/internal/satellite":
|
||||
# Brain-Tool: Discovery oder Command an einen Satelliten.
|
||||
# body: {op:'discover'|'command', satellite, device?, action?, params?}
|
||||
try:
|
||||
data = json.loads(body.decode("utf-8", "ignore"))
|
||||
except Exception as exc:
|
||||
await _send_response(writer, 400, {"error": f"bad json: {exc}"})
|
||||
return
|
||||
op = (data.get("op") or "discover").strip()
|
||||
result = await self._satellite_request(
|
||||
op=op,
|
||||
satellite=str(data.get("satellite") or ""),
|
||||
device=str(data.get("device") or ""),
|
||||
action=str(data.get("action") or ""),
|
||||
params=data.get("params") if isinstance(data.get("params"), dict) else {},
|
||||
timeout=float(data.get("timeout") or 20.0),
|
||||
)
|
||||
await _send_response(writer, 200, result)
|
||||
elif method == "POST" and path == "/internal/flux-generate":
|
||||
# Vom Brain (flux_generate-Tool) gefeuert. Wir routen den
|
||||
# Render-Request via RVS an die flux-bridge (Gamebox),
|
||||
@@ -4493,6 +4672,54 @@ class ARIABridge:
|
||||
pass
|
||||
logger.info("[vnc] Tunnel geschlossen: session=%s", session)
|
||||
|
||||
def _satellite_list(self) -> list[dict]:
|
||||
"""Bekannte Satelliten (frisch = in den letzten 5 Min gesehen)."""
|
||||
now = time.time()
|
||||
out = []
|
||||
for s in self._satellites.values():
|
||||
out.append({
|
||||
"id": s["id"], "location": s.get("location") or s["id"],
|
||||
"caps": s.get("caps") or [], "control": bool(s.get("control")),
|
||||
"online": (now - s.get("last_seen", 0)) < 300,
|
||||
})
|
||||
return out
|
||||
|
||||
async def _satellite_request(self, op: str, satellite: str = "",
|
||||
device: str = "", action: str = "",
|
||||
params: Optional[dict] = None,
|
||||
timeout: float = 20.0) -> dict:
|
||||
"""Schickt sat_discover / sat_command an einen Satelliten (via RVS) und
|
||||
wartet auf sat_devices / sat_result. op = 'discover' | 'command'.
|
||||
Muster identisch zu _flux_generate (requestId → Future)."""
|
||||
if self.ws_rvs is None:
|
||||
return {"ok": False, "error": "RVS-Verbindung nicht aktiv"}
|
||||
request_id = str(uuid.uuid4())
|
||||
loop = asyncio.get_event_loop()
|
||||
future: asyncio.Future = loop.create_future()
|
||||
self._pending_sat[request_id] = future
|
||||
try:
|
||||
if op == "discover":
|
||||
msg = {"type": "sat_discover",
|
||||
"payload": {"requestId": request_id, "satellite": satellite,
|
||||
"force": bool((params or {}).get("force"))}}
|
||||
else:
|
||||
msg = {"type": "sat_command",
|
||||
"payload": {"requestId": request_id, "satellite": satellite,
|
||||
"device": device, "action": action,
|
||||
"params": params or {}}}
|
||||
msg["timestamp"] = int(time.time() * 1000)
|
||||
ok = await self._send_to_rvs(msg)
|
||||
if not ok:
|
||||
return {"ok": False, "error": "Satellit-Request konnte nicht gesendet werden"}
|
||||
result = await asyncio.wait_for(future, timeout=timeout)
|
||||
return result if isinstance(result, dict) else {"ok": False, "error": "ungueltige Antwort"}
|
||||
except asyncio.TimeoutError:
|
||||
return {"ok": False, "error": f"Satellit '{satellite or 'all'}' antwortet nicht (Timeout)."}
|
||||
except Exception as exc:
|
||||
return {"ok": False, "error": str(exc)}
|
||||
finally:
|
||||
self._pending_sat.pop(request_id, None)
|
||||
|
||||
async def _delete_chat_message(self, ts: int) -> dict:
|
||||
"""Entfernt eine Bubble: aus chat_backup.jsonl + Brain conversation,
|
||||
broadcastet chat_message_deleted via RVS.
|
||||
|
||||
+247
-14
@@ -198,7 +198,7 @@
|
||||
<div style="display:flex;align-items:center;gap:10px;flex-wrap:wrap;">
|
||||
<span id="disk-banner-icon" style="font-size:18px;">⚠️</span>
|
||||
<span id="disk-banner-text" style="flex:1;min-width:200px;font-weight:600;"></span>
|
||||
<button onclick="copyDiskCmd('safe')" class="btn secondary" style="padding:4px 10px;font-size:11px;" title="docker builder prune -a -f && docker image prune -a -f">
|
||||
<button id="disk-clean-btn" onclick="runDiskCleanup('safe')" class="btn secondary" style="padding:4px 10px;font-size:11px;" title="Fuehrt aus: docker builder prune -a && docker image prune -a (ohne Volumes)">
|
||||
Sicher aufraeumen
|
||||
</button>
|
||||
<button onclick="document.getElementById('disk-banner-aggressive').style.display=(document.getElementById('disk-banner-aggressive').style.display==='none'?'flex':'none')"
|
||||
@@ -216,6 +216,7 @@
|
||||
<div style="color:#FFAA55;">
|
||||
<b>Aggressiv</b> — zusaetzlich ungenutzte Volumes. <b>Nur wenn alle ARIA-Container laufen</b>, sonst riskierst du Daten-Verlust (Sessions, SSH-Keys, Shared):<br>
|
||||
<code style="font-family:monospace;">docker system prune -a --volumes -f</code>
|
||||
<button onclick="runDiskCleanup('aggressive')" class="btn secondary" style="padding:2px 8px;font-size:10px;margin-left:6px;border-color:#FF3B30;color:#FF3B30;">Jetzt ausfuehren</button>
|
||||
<button onclick="copyDiskCmd('aggressive')" class="btn secondary" style="padding:2px 8px;font-size:10px;margin-left:6px;">Kopieren</button>
|
||||
</div>
|
||||
</div>
|
||||
@@ -229,6 +230,7 @@
|
||||
<button class="main-nav-btn" onclick="switchMainTab('skills')">Skills</button>
|
||||
<button class="main-nav-btn" onclick="switchMainTab('triggers')">Trigger</button>
|
||||
<button class="main-nav-btn" onclick="switchMainTab('files')">Dateien</button>
|
||||
<button class="main-nav-btn" onclick="switchMainTab('satellites')">Satelliten</button>
|
||||
<button class="main-nav-btn" onclick="switchMainTab('settings')">Einstellungen</button>
|
||||
</div>
|
||||
|
||||
@@ -327,6 +329,7 @@
|
||||
<input type="file" id="diag-file-input" multiple accept="image/*,application/pdf,.doc,.docx,.txt" style="display:none;" onchange="handleDiagFileSelect(this.files)">
|
||||
</label>
|
||||
<textarea id="chat-input" placeholder="Nachricht an ARIA... (Enter sendet, Shift+Enter neue Zeile)" rows="2" onpaste="handleDiagPaste(event)" oninput="autoResizeTextarea(this)"></textarea>
|
||||
<button class="btn secondary" onclick="interjectDiag('chat-input')" title="Zwischenruf — Korrektur in den laufenden Turn (kein Abbruch, keine Queue)" style="border-color:#FF9500;color:#FF9500;">📣</button>
|
||||
<button class="btn" id="btn-rvs" onclick="testRVS()">Senden</button>
|
||||
</div>
|
||||
</div>
|
||||
@@ -344,6 +347,7 @@
|
||||
</div>
|
||||
<div class="input-row" style="margin-top:8px;">
|
||||
<textarea id="chat-input-fs" placeholder="Nachricht an ARIA... (Enter sendet, Shift+Enter neue Zeile)" rows="2" oninput="autoResizeTextarea(this)"></textarea>
|
||||
<button class="btn secondary" onclick="interjectDiag('chat-input-fs')" title="Zwischenruf — Korrektur in den laufenden Turn (kein Abbruch, keine Queue)" style="border-color:#FF9500;color:#FF9500;">📣</button>
|
||||
<button class="btn" onclick="testRVSFS()">Senden</button>
|
||||
</div>
|
||||
</div>
|
||||
@@ -784,6 +788,18 @@
|
||||
<div id="voice-id-status" style="font-size:13px;color:#E0E0F0;margin-bottom:10px;">
|
||||
Status wird geladen...
|
||||
</div>
|
||||
<div style="display:flex;align-items:center;gap:12px;margin-bottom:8px;">
|
||||
<label style="color:#8888AA;font-size:12px;min-width:130px;">Nur meine Stimme:</label>
|
||||
<label style="display:flex;align-items:center;gap:8px;cursor:pointer;flex:1;">
|
||||
<input type="checkbox" id="diag-voice-id-enabled" onchange="sendVoiceConfig()">
|
||||
<span style="color:#E0E0F0;font-size:12px;">Speaker-ID-Prüfung aktiv</span>
|
||||
</label>
|
||||
</div>
|
||||
<div style="font-size:10px;color:#555570;margin-bottom:12px;">
|
||||
AUS (Default) = alle Stimmen kommen durch (fail-open). AN = nur der enrollte
|
||||
Sprecher wird ans Brain geleitet, fremde Stimmen werden verworfen. Erst
|
||||
einschalten wenn ein Fingerprint eingelernt ist — sonst hört ARIA niemanden.
|
||||
</div>
|
||||
<div style="display:flex;align-items:center;gap:12px;margin-bottom:8px;">
|
||||
<label style="color:#8888AA;font-size:12px;min-width:130px;">Match-Threshold:</label>
|
||||
<input type="range" id="diag-voice-id-threshold" min="0.30" max="0.70" step="0.05" value="0.50"
|
||||
@@ -1064,11 +1080,13 @@
|
||||
<div style="background:#0D0D1A;border-radius:6px;padding:10px 12px;margin-bottom:8px;">
|
||||
<div style="color:#FFD60A;font-weight:bold;font-size:12px;margin-bottom:4px;">2. Bootstrap-Snapshot (nur pinned)</div>
|
||||
<div style="color:#8888AA;font-size:11px;margin-bottom:8px;">
|
||||
Klein und schnell: <strong>nur</strong> die pinned Memories (Identität, Regeln, Präferenzen, Tools, Skills) als JSON.
|
||||
Use-Case: Wipe → Bootstrap-Import → ARIA hat Persönlichkeit zurück, sonst leer.
|
||||
Cold Memory (Konversations-Fakten) bleibt beim Import unangetastet.
|
||||
Getrennt nach <strong>scope</strong>: <span style="color:#3FFF3F;">System</span> = generische Regeln, die jeder braucht (Sicherheit, Ehrlichkeit, Skill-Regeln) — teilbar für ein frisches System.
|
||||
<span style="color:#FF9F0A;">Persönlich</span> = Stefan-spezifisch (Name, Zugangsdaten, Projekte) — bleibt privat.
|
||||
Import ersetzt nur die pinned Memories des jeweiligen scope; Cold Memory bleibt unangetastet.
|
||||
</div>
|
||||
<button class="btn secondary" onclick="exportBootstrap()" style="color:#FFD60A;border-color:#FFD60A;">⬇ Bootstrap exportieren (JSON)</button>
|
||||
<button class="btn secondary" onclick="exportBootstrap('system')" style="color:#3FFF3F;border-color:#3FFF3F;">⬇ System-Regeln exportieren</button>
|
||||
<button class="btn secondary" onclick="exportBootstrap('personal')" style="color:#FF9F0A;border-color:#FF9F0A;">⬇ Persönliches exportieren</button>
|
||||
<button class="btn secondary" onclick="exportBootstrap('all')" style="color:#FFD60A;border-color:#FFD60A;">⬇ Alles (Vollbackup)</button>
|
||||
<input type="file" id="bootstrap-import-file" accept=".json,application/json" style="display:none" onchange="importBootstrap(event)">
|
||||
<button class="btn secondary" onclick="document.getElementById('bootstrap-import-file').click()" style="color:#FFD60A;border-color:#FFD60A;">⬆ Bootstrap importieren</button>
|
||||
<div id="bootstrap-status" style="margin-top:8px;font-size:11px;color:#8888AA;"></div>
|
||||
@@ -1271,6 +1289,27 @@
|
||||
</div>
|
||||
</div><!-- /tab-triggers -->
|
||||
|
||||
<!-- ══════ TAB: Satelliten ══════ -->
|
||||
<div id="tab-satellites" class="main-tab">
|
||||
<div class="settings-section">
|
||||
<div style="display:flex;justify-content:space-between;align-items:center;margin-bottom:8px;">
|
||||
<h2 style="margin:0;">Satelliten 🛰️</h2>
|
||||
<button class="btn secondary" onclick="requestSatellites()" style="padding:4px 10px;font-size:11px;">Aktualisieren</button>
|
||||
</div>
|
||||
<div class="card" style="margin-bottom:8px;">
|
||||
<p style="color:#8888AA;font-size:12px;margin:0;">
|
||||
Aussenposten-Container in fremden Netzen (Buero, Werkstatt …), die sich mit
|
||||
RVS verbinden. Hier siehst Du, welche Satelliten online sind und welche
|
||||
Geraete sie im jeweiligen Netz erkannt haben. „Geraete scannen" fragt den
|
||||
Satelliten live ab.
|
||||
</p>
|
||||
</div>
|
||||
<div class="card">
|
||||
<div id="sat-list" style="font-size:12px;color:#8888AA;">(Lade...)</div>
|
||||
</div>
|
||||
</div>
|
||||
</div><!-- /tab-satellites -->
|
||||
|
||||
<!-- Trigger-Create/Edit Modal -->
|
||||
<div class="modal-overlay" id="trigger-modal">
|
||||
<div class="modal-box" style="max-width:600px;">
|
||||
@@ -1371,6 +1410,11 @@
|
||||
<input type="checkbox" id="memory-pinned">
|
||||
<span>📌 Pinned (Hot Memory — IMMER im System-Prompt)</span>
|
||||
</label>
|
||||
<label style="display:block;color:#8888AA;font-size:11px;margin-top:10px;margin-bottom:3px;">Scope (steuert Bootstrap-Export):</label>
|
||||
<select id="memory-scope" style="width:100%;background:#0D0D1A;color:#E0E0F0;border:1px solid #1E1E2E;padding:6px;border-radius:4px;font-family:inherit;margin-bottom:10px;">
|
||||
<option value="personal">🟠 Persönlich — Stefan-spezifisch, bleibt privat</option>
|
||||
<option value="system">🟢 System — generische Regel, teilbar für frisches System</option>
|
||||
</select>
|
||||
|
||||
<!-- Anhaenge — nur bei Edit (vorhandene ID) sichtbar -->
|
||||
<div id="memory-attachments-block" style="display:none;margin-top:14px;padding-top:10px;border-top:1px solid #1E1E2E;">
|
||||
@@ -1563,9 +1607,34 @@
|
||||
const d = await r.json();
|
||||
diagQueueStatus = d?.contexts || {};
|
||||
renderContextStrip();
|
||||
reconcileDiagStates();
|
||||
} catch {}
|
||||
}
|
||||
|
||||
// Selbstheilung: haengt ein Kontext lokal auf 'running', obwohl der Brain
|
||||
// ihn NICHT als busy meldet, ist der Turn (z.B. durch einen Bridge-Timeout)
|
||||
// ohne Antwort-Bubble abgebrochen — der Automat blieb sonst ewig 'running'
|
||||
// (Folge-Nachrichten wandern in die Queue, obwohl ARIA idle ist; frueher
|
||||
// half nur Ctrl+R, was die Queue-Nachricht verlor). Nach 2 aufeinander-
|
||||
// folgenden not-busy-Polls (~4s Karenz gegen das Sende-Fenster) schalten
|
||||
// wir die Queue weiter: angestellte Nachricht geht automatisch raus, sonst
|
||||
// idle.
|
||||
const diagStuckCounts = {};
|
||||
function reconcileDiagStates() {
|
||||
const ctxs = diagQueueStatus || {};
|
||||
for (const pid of Object.keys(diagCtxStates)) {
|
||||
if (diagCtxStates[pid] !== 'running') { diagStuckCounts[pid] = 0; continue; }
|
||||
const busy = !!(ctxs[pid || '__main__'] && ctxs[pid || '__main__'].busy);
|
||||
if (busy) { diagStuckCounts[pid] = 0; continue; }
|
||||
diagStuckCounts[pid] = (diagStuckCounts[pid] || 0) + 1;
|
||||
if (diagStuckCounts[pid] >= 2) {
|
||||
diagStuckCounts[pid] = 0;
|
||||
console.warn('[diag] Kontext', pid || '(main)', 'haengt auf running, Brain idle → Queue weiterschalten');
|
||||
advanceDiagQueue(pid);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
async function refreshDiagProjectsCache() {
|
||||
try {
|
||||
const r = await fetch('/api/brain/projects/list?include_archived=false');
|
||||
@@ -1715,6 +1784,27 @@
|
||||
return;
|
||||
}
|
||||
|
||||
if (msg.type === 'disk_cleanup') {
|
||||
const btn = document.getElementById('disk-clean-btn');
|
||||
const dtext = document.getElementById('disk-banner-text');
|
||||
if (msg.status === 'running') {
|
||||
if (btn) { btn.disabled = true; btn.textContent = 'Raeume auf...'; }
|
||||
} else if (msg.status === 'done') {
|
||||
// Feedback NICHT nur per alert() (koennte unterdrueckt sein) —
|
||||
// direkt am Button + im Banner sichtbar machen.
|
||||
if (btn) {
|
||||
btn.disabled = false;
|
||||
btn.textContent = '✓ ' + (msg.freed || '0 MB') + ' frei';
|
||||
setTimeout(() => { btn.textContent = 'Sicher aufraeumen'; }, 6000);
|
||||
}
|
||||
if (dtext) dtext.textContent = 'Aufgeraeumt: ' + (msg.freed || '0 MB') + ' frei (' + (msg.steps || []).join(', ') + '). Disk-Status aktualisiert sich gleich.';
|
||||
} else if (msg.status === 'error') {
|
||||
if (btn) { btn.disabled = false; btn.textContent = 'Fehler — nochmal'; setTimeout(() => { btn.textContent = 'Sicher aufraeumen'; }, 6000); }
|
||||
if (dtext) dtext.textContent = 'Aufraeumen fehlgeschlagen: ' + (msg.error || '');
|
||||
}
|
||||
return;
|
||||
}
|
||||
|
||||
if (msg.type === 'mode' && msg.payload) {
|
||||
// Bridge hat den Modus geaendert (evtl. von anderer App/Diagnostic) — UI syncen
|
||||
const mode = (msg.payload.mode || '').toLowerCase();
|
||||
@@ -1828,6 +1918,11 @@
|
||||
if (slider) slider.value = msg.voiceIdThreshold;
|
||||
if (display) display.textContent = Number(msg.voiceIdThreshold).toFixed(2);
|
||||
}
|
||||
// Speaker-ID Gating-Schalter wiederherstellen (Default aus)
|
||||
{
|
||||
const cb = document.getElementById('diag-voice-id-enabled');
|
||||
if (cb) cb.checked = !!msg.voiceIdEnabled;
|
||||
}
|
||||
return;
|
||||
}
|
||||
|
||||
@@ -1862,6 +1957,14 @@
|
||||
return;
|
||||
}
|
||||
|
||||
if (msg.type === 'sat_update') { satellites = msg.satellites || []; renderSatellites(); return; }
|
||||
if (msg.type === 'sat_devices') {
|
||||
if (msg.satellite) { satDevices[msg.satellite] = { devices: msg.devices || [], location: msg.location, ts: Date.now() }; }
|
||||
satScanning = null;
|
||||
renderSatellites();
|
||||
return;
|
||||
}
|
||||
|
||||
if (msg.type === 'voice_id_delete_response') {
|
||||
const p = msg.payload || msg;
|
||||
if (p.removed) {
|
||||
@@ -2214,6 +2317,18 @@
|
||||
diagCtxStates[pid] = 'running';
|
||||
renderDiagQueue();
|
||||
}
|
||||
// Zwischenruf: waehrend ARIA arbeitet eine Korrektur in den laufenden Turn
|
||||
// schieben — NICHT anstellen, NICHT abbrechen.
|
||||
function interjectDiag(inputId) {
|
||||
const input = document.getElementById(inputId || 'chat-input');
|
||||
const text = (input.value || '').trim();
|
||||
if (!text) return;
|
||||
send({ action: 'interject', text, projectId: focusedContextId });
|
||||
addChat('sent', '📣 Zwischenruf: ' + text, 'interject', { projectId: focusedContextId });
|
||||
diagDrafts[focusedContextId] = '';
|
||||
localStorage.setItem('diag_ctx_drafts', JSON.stringify(diagDrafts));
|
||||
input.value = '';
|
||||
}
|
||||
function advanceDiagQueue(pid) {
|
||||
const q = diagCtxQueues[pid] || [];
|
||||
if (q.length === 0) { diagCtxStates[pid] = 'idle'; renderDiagQueue(); return; }
|
||||
@@ -3162,14 +3277,17 @@
|
||||
<div onclick="switchProject('${p.id}')" style="cursor:pointer;flex:1;">
|
||||
<div style="color:${isActive ? '#34C759' : '#E0E0F0'};font-weight:600;">
|
||||
${hidden ? '🙈' : '📁'} ${escapeHtml(p.name)}
|
||||
${p.has_files ? `<span title="${p.file_count || 0} Dateien in /shared/projects/${escapeHtmlAttr(p.id)}/" style="font-size:11px;margin-left:4px;">📄${p.file_count ? ' ' + p.file_count : ''}</span>` : ''}
|
||||
${hidden ? '<span style="color:#B392F0;font-size:10px;font-weight:700;margin-left:6px;background:rgba(179,146,240,0.15);padding:2px 6px;border-radius:3px;">versteckt</span>' : ''}
|
||||
${ended ? '<span style="color:#FFD60A;font-size:10px;font-weight:700;margin-left:6px;background:rgba(255,214,10,0.15);padding:2px 6px;border-radius:3px;">beendet</span>' : ''}
|
||||
${p.kind === 'code' ? '<span style="color:#0096FF;font-size:10px;font-weight:700;margin-left:6px;background:rgba(0,150,255,0.15);padding:2px 6px;border-radius:3px;"></> Code</span>' : ''}
|
||||
${isActive ? '<span style="color:#34C759;font-size:10px;font-weight:800;margin-left:6px;">✓ AKTIV</span>' : ''}
|
||||
</div>
|
||||
${p.description ? `<div style="color:#8888AA;font-size:12px;margin-top:2px;">${escapeHtml(p.description)}</div>` : ''}
|
||||
<div style="color:#555570;font-size:11px;margin-top:4px;">${p.turn_count} Turns · zuletzt ${since}</div>
|
||||
</div>
|
||||
<div style="display:flex;gap:4px;">
|
||||
<button class="btn secondary" onclick="setProjectKind('${p.id}', '${p.kind === 'code' ? 'chat' : 'code'}')" style="padding:3px 8px;font-size:10px;color:${p.kind === 'code' ? '#0096FF' : '#8888AA'};" title="${p.kind === 'code' ? 'Ist Code-Projekt — klick fuer normalen Chat' : 'Als Code-Projekt markieren (Editor + Desktop im Cockpit)'}"></></button>
|
||||
<button class="btn secondary" onclick="setProjectHidden('${p.id}', ${!hidden})" style="padding:3px 8px;font-size:10px;color:${eyeColor};" title="${eyeTitle}">${eyeIcon}</button>
|
||||
${!ended ? `<button class="btn secondary" onclick="endProject('${p.id}', '${escapeHtmlAttr(p.name)}')" style="padding:3px 8px;font-size:10px;" title="Projekt beenden">⏹</button>` : ''}
|
||||
<button class="btn secondary" onclick="archiveProject('${p.id}', '${escapeHtmlAttr(p.name)}')" style="padding:3px 8px;font-size:10px;color:#E55C5C;" title="Archivieren">🗑</button>
|
||||
@@ -3216,6 +3334,18 @@
|
||||
} catch (e) { alert('Verstecken/Anzeigen fehlgeschlagen: ' + e.message); }
|
||||
}
|
||||
|
||||
async function setProjectKind(id, kind) {
|
||||
try {
|
||||
const r = await fetch(`/api/brain/projects/${encodeURIComponent(id)}`, {
|
||||
method: 'PATCH',
|
||||
headers: { 'Content-Type': 'application/json' },
|
||||
body: JSON.stringify({ kind }),
|
||||
});
|
||||
if (!r.ok) throw new Error('HTTP ' + r.status);
|
||||
loadProjects();
|
||||
} catch (e) { alert('Code-Markierung fehlgeschlagen: ' + e.message); }
|
||||
}
|
||||
|
||||
async function switchProject(projectId) {
|
||||
try {
|
||||
await fetch('/api/brain/projects/switch', {
|
||||
@@ -3494,13 +3624,14 @@
|
||||
const huggingfaceToken = document.getElementById('diag-flux-hf-token')?.value;
|
||||
const voiceIdThresholdRaw = document.getElementById('diag-voice-id-threshold')?.value;
|
||||
const voiceIdThreshold = voiceIdThresholdRaw ? parseFloat(voiceIdThresholdRaw) : undefined;
|
||||
const voiceIdEnabled = document.getElementById('diag-voice-id-enabled')?.checked;
|
||||
send({
|
||||
action: 'send_voice_config',
|
||||
ttsEnabled, xttsVoice, whisperModel,
|
||||
f5ttsModel, f5ttsCkptFile, f5ttsVocabFile,
|
||||
f5ttsCfgStrength, f5ttsNfeStep,
|
||||
fluxDefaultModel, fluxKeywordRaw, fluxKeywordSwitch, huggingfaceToken,
|
||||
voiceIdThreshold,
|
||||
voiceIdThreshold, voiceIdEnabled,
|
||||
});
|
||||
const statusEl = document.getElementById('voice-status');
|
||||
if (statusEl && xttsVoice) {
|
||||
@@ -4045,9 +4176,79 @@
|
||||
loadSkills();
|
||||
} else if (tab === 'triggers') {
|
||||
loadTriggers();
|
||||
} else if (tab === 'satellites') {
|
||||
requestSatellites();
|
||||
}
|
||||
}
|
||||
|
||||
// ── Satelliten-Ansicht ─────────────────────────────────
|
||||
let satellites = []; // [{id, location, caps, control, online}]
|
||||
let satDevices = {}; // id → {devices, location, ts}
|
||||
let satScanning = null; // id des gerade scannenden Satelliten
|
||||
|
||||
function requestSatellites() {
|
||||
send({ action: 'sat_list' });
|
||||
}
|
||||
function scanSatellite(id) {
|
||||
satScanning = id;
|
||||
renderSatellites();
|
||||
send({ action: 'sat_discover', satellite: id });
|
||||
}
|
||||
function renderSatellites() {
|
||||
const box = document.getElementById('sat-list');
|
||||
if (!box) return;
|
||||
if (!satellites.length) {
|
||||
box.innerHTML = '<span style="color:#8888AA;">Kein Satellit verbunden. ' +
|
||||
'Deploy einen satellite/-Container in einem Netz (siehe satellite/README).</span>';
|
||||
return;
|
||||
}
|
||||
box.innerHTML = satellites.map(s => {
|
||||
const online = s.online !== false;
|
||||
const dot = online ? '#34C759' : '#FF3B30';
|
||||
const caps = (s.caps || []).join(', ') || 'nur beobachten';
|
||||
const ctrl = s.control ? '<span style="color:#0096FF;">steuerbar</span>' : '<span style="color:#8888AA;">read-only</span>';
|
||||
const dev = satDevices[s.id];
|
||||
const scanning = satScanning === s.id;
|
||||
let devHtml;
|
||||
if (scanning) {
|
||||
devHtml = '<div style="color:#FFD60A;margin-top:6px;">Scanne Netz …</div>';
|
||||
} else if (dev) {
|
||||
if (!dev.devices.length) {
|
||||
devHtml = '<div style="color:#8888AA;margin-top:6px;">Keine Geraete gefunden.</div>';
|
||||
} else {
|
||||
devHtml = '<div style="margin-top:6px;display:flex;flex-direction:column;gap:3px;">' +
|
||||
dev.devices.map(d => {
|
||||
const tags = [];
|
||||
if (d.model) tags.push(escapeHtml(d.model));
|
||||
if (d.dialAppUrl) tags.push('DIAL');
|
||||
if (d.mac) tags.push(escapeHtml(d.mac));
|
||||
const tagStr = tags.length ? ' <span style="color:#666;">(' + tags.join(' · ') + ')</span>' : '';
|
||||
return '<div style="padding:3px 6px;background:#0D0D1A;border-radius:4px;">' +
|
||||
'<span style="color:#E0E0F0;">' + escapeHtml(d.name || d.id || '?') + '</span> ' +
|
||||
'<span style="color:#0096FF;">[' + escapeHtml(d.type || '?') + ']</span> ' +
|
||||
'<span style="color:#8888AA;">' + escapeHtml(d.ip || '') + '</span>' + tagStr +
|
||||
'</div>';
|
||||
}).join('') + '</div>';
|
||||
}
|
||||
} else {
|
||||
devHtml = '<div style="color:#8888AA;margin-top:6px;">Noch nicht gescannt.</div>';
|
||||
}
|
||||
return '<div style="border:1px solid #1E1E2E;border-radius:8px;padding:10px;margin-bottom:8px;">' +
|
||||
'<div style="display:flex;justify-content:space-between;align-items:center;">' +
|
||||
'<div><span style="display:inline-block;width:8px;height:8px;border-radius:50%;background:' + dot + ';margin-right:6px;"></span>' +
|
||||
'<strong style="color:#E0E0F0;">' + escapeHtml(s.location || s.id) + '</strong> ' +
|
||||
'<span style="color:#666;font-size:11px;">id=' + escapeHtml(s.id) + '</span></div>' +
|
||||
'<button class="btn secondary" onclick="scanSatellite(\'' + escapeHtml(s.id) + '\')" style="padding:3px 8px;font-size:11px;"' +
|
||||
(scanning ? ' disabled' : '') + '>Geraete scannen</button>' +
|
||||
'</div>' +
|
||||
'<div style="color:#8888AA;font-size:11px;margin-top:4px;">kann: ' + escapeHtml(caps) + ' · ' + ctrl +
|
||||
(s.net && s.net.primary_ip ? ' · Netz: ' + escapeHtml(s.net.primary_ip) : '') + '</div>' +
|
||||
(s.net && s.net.warning ? '<div style="color:#FF6E6E;font-size:11px;margin-top:6px;padding:6px;background:#3A1F1F;border-radius:4px;">⚠ ' + escapeHtml(s.net.warning) + '</div>' : '') +
|
||||
devHtml +
|
||||
'</div>';
|
||||
}).join('');
|
||||
}
|
||||
|
||||
// ── Triggers-Verwaltung ────────────────────────────────
|
||||
let triggersCache = [];
|
||||
|
||||
@@ -5610,9 +5811,15 @@
|
||||
const typeBadge = withScore ? `<span style="color:#0096FF;font-size:10px;margin-right:6px;">${escapeHtml(BRAIN_TYPE_LABELS[m.type] || m.type)}</span>` : '';
|
||||
const attCount = Array.isArray(m.attachments) ? m.attachments.length : 0;
|
||||
const attBadge = attCount > 0 ? `<span style="color:#34C759;font-size:10px;margin-left:6px;" title="${attCount} Anhang${attCount === 1 ? '' : ' / Anhaenge'}">📎${attCount}</span>` : '';
|
||||
// scope-Badge nur bei pinned (nur die werden exportiert — da zaehlt die Trennung).
|
||||
const scopeBadge = m.pinned
|
||||
? (m.scope === 'system'
|
||||
? `<span style="color:#3FFF3F;font-size:9px;margin-left:6px;border:1px solid #3FFF3F;border-radius:3px;padding:0 3px;" title="System-Regel — kommt in den System-Export">SYS</span>`
|
||||
: `<span style="color:#FF9F0A;font-size:9px;margin-left:6px;border:1px solid #FF9F0A;border-radius:3px;padding:0 3px;" title="Persönlich — bleibt privat">PRIV</span>`)
|
||||
: '';
|
||||
return `<div style="padding:6px 0;border-bottom:1px solid #1E1E2E;display:flex;gap:6px;align-items:flex-start;">
|
||||
<div style="flex:1;min-width:0;cursor:pointer;" onclick="openMemoryModal('${m.id}')">
|
||||
<div style="color:#E0E0F0;font-size:12px;">${typeBadge}${pin}<strong>${escapeHtml(m.title || '(ohne Titel)')}</strong>${score}${attBadge}
|
||||
<div style="color:#E0E0F0;font-size:12px;">${typeBadge}${pin}<strong>${escapeHtml(m.title || '(ohne Titel)')}</strong>${score}${attBadge}${scopeBadge}
|
||||
${m.category ? `<span style="color:#555570;font-weight:normal;font-size:10px;margin-left:6px;">[${escapeHtml(m.category)}]</span>` : ''}
|
||||
</div>
|
||||
<div style="color:#888;font-size:11px;line-height:1.4;">${escapeHtml(preview)}${m.content && m.content.length > 140 ? '...' : ''}</div>
|
||||
@@ -5822,6 +6029,7 @@
|
||||
document.getElementById('memory-category').value = m.category || '';
|
||||
document.getElementById('memory-tags').value = (m.tags || []).join(', ');
|
||||
document.getElementById('memory-pinned').checked = !!m.pinned;
|
||||
document.getElementById('memory-scope').value = (m.scope === 'system') ? 'system' : 'personal';
|
||||
// Anhang-Block sichtbar — Liste rendern
|
||||
if (attBlock) attBlock.style.display = 'block';
|
||||
if (attHint) attHint.style.display = 'none';
|
||||
@@ -5835,6 +6043,7 @@
|
||||
document.getElementById('memory-category').value = '';
|
||||
document.getElementById('memory-tags').value = '';
|
||||
document.getElementById('memory-pinned').checked = false;
|
||||
document.getElementById('memory-scope').value = 'personal';
|
||||
// Bei neuem Memory: nur Hinweis, dass Anhaenge nach Save gehen
|
||||
if (attBlock) attBlock.style.display = 'none';
|
||||
if (attHint) attHint.style.display = 'block';
|
||||
@@ -5939,6 +6148,7 @@
|
||||
const category = document.getElementById('memory-category').value.trim();
|
||||
const tags = document.getElementById('memory-tags').value.split(',').map(t => t.trim()).filter(Boolean);
|
||||
const pinned = document.getElementById('memory-pinned').checked;
|
||||
const scope = document.getElementById('memory-scope').value || 'personal';
|
||||
|
||||
if (!title) { errEl.textContent = 'Titel fehlt.'; errEl.style.display = 'block'; return; }
|
||||
if (!content) { errEl.textContent = 'Inhalt fehlt.'; errEl.style.display = 'block'; return; }
|
||||
@@ -5949,13 +6159,13 @@
|
||||
r = await fetch('/api/brain/memory/update/' + encodeURIComponent(id), {
|
||||
method: 'PATCH',
|
||||
headers: { 'Content-Type': 'application/json' },
|
||||
body: JSON.stringify({ title, content, pinned, category, tags }),
|
||||
body: JSON.stringify({ title, content, pinned, category, scope, tags }),
|
||||
});
|
||||
} else {
|
||||
r = await fetch('/api/brain/memory/save', {
|
||||
method: 'POST',
|
||||
headers: { 'Content-Type': 'application/json' },
|
||||
body: JSON.stringify({ type, title, content, pinned, category, tags, source: 'manual' }),
|
||||
body: JSON.stringify({ type, title, content, pinned, category, scope, tags, source: 'manual' }),
|
||||
});
|
||||
}
|
||||
if (!r.ok) {
|
||||
@@ -6332,11 +6542,12 @@
|
||||
}
|
||||
|
||||
// ── Bootstrap Export / Import ──────────────────────────
|
||||
async function exportBootstrap() {
|
||||
async function exportBootstrap(scope) {
|
||||
scope = scope || 'system';
|
||||
const status = document.getElementById('bootstrap-status');
|
||||
if (status) status.innerHTML = '⏳ Lade...';
|
||||
try {
|
||||
const r = await fetch('/api/brain/memory/export-bootstrap');
|
||||
const r = await fetch('/api/brain/memory/export-bootstrap?scope=' + encodeURIComponent(scope));
|
||||
if (!r.ok) throw new Error('HTTP ' + r.status);
|
||||
const data = await r.json();
|
||||
const blob = new Blob([JSON.stringify(data, null, 2)], { type: 'application/json' });
|
||||
@@ -6344,10 +6555,11 @@
|
||||
const ts = new Date().toISOString().replace(/[:.]/g, '-').slice(0, 19);
|
||||
const a = document.createElement('a');
|
||||
a.href = url;
|
||||
a.download = `aria-bootstrap-${ts}.json`;
|
||||
a.download = `aria-bootstrap-${scope}-${ts}.json`;
|
||||
document.body.appendChild(a); a.click();
|
||||
setTimeout(() => { URL.revokeObjectURL(url); a.remove(); }, 100);
|
||||
if (status) status.innerHTML = `<span style="color:#3FFF3F;">✓ ${data.count} pinned Memories exportiert</span>`;
|
||||
const label = scope === 'system' ? 'System-Regeln' : (scope === 'personal' ? 'persönliche Memories' : 'pinned Memories');
|
||||
if (status) status.innerHTML = `<span style="color:#3FFF3F;">✓ ${data.count} ${label} exportiert</span>`;
|
||||
} catch (e) {
|
||||
if (status) status.innerHTML = `<span style="color:#FF6B6B;">✗ ${e.message}</span>`;
|
||||
}
|
||||
@@ -6361,7 +6573,11 @@
|
||||
const text = await file.text();
|
||||
const bundle = JSON.parse(text);
|
||||
if (!Array.isArray(bundle.memories)) throw new Error('Datei hat kein "memories"-Array');
|
||||
if (!confirm(`Bootstrap importieren?\n\n${bundle.memories.length} pinned Memories aus "${file.name}".\n\nALLE aktuell pinned Memories werden überschrieben. Cold Memory bleibt unverändert.`)) {
|
||||
const bScope = bundle.scope || 'all';
|
||||
const scopeInfo = bScope === 'system' ? 'Nur die aktuell pinned SYSTEM-Regeln werden ersetzt — Persönliches bleibt.'
|
||||
: bScope === 'personal' ? 'Nur die aktuell pinned PERSÖNLICHEN Memories werden ersetzt — System-Regeln bleiben.'
|
||||
: 'ALLE aktuell pinned Memories werden überschrieben.';
|
||||
if (!confirm(`Bootstrap importieren? (scope: ${bScope})\n\n${bundle.memories.length} pinned Memories aus "${file.name}".\n\n${scopeInfo} Cold Memory bleibt unverändert.`)) {
|
||||
event.target.value = '';
|
||||
return;
|
||||
}
|
||||
@@ -6605,6 +6821,23 @@
|
||||
banner.style.display = 'block';
|
||||
}
|
||||
|
||||
// Fuehrt das Aufraeumen WIRKLICH aus (Server-seitig via Docker-API), statt
|
||||
// nur den Befehl zu kopieren.
|
||||
// WICHTIG: "safe" laeuft OHNE confirm() — Build-Cache + ungenutzte Images
|
||||
// sind ungefaehrlich (keine Volumes/Daten). Frueher blockte ein confirm()
|
||||
// den Klick, wenn der Browser Dialoge unterdrueckt hatte ("Verhindern,
|
||||
// dass diese Seite weitere Dialoge erstellt") → confirm()===false → es ging
|
||||
// NICHTS raus. Nur "aggressive" (Volumes!) fragt noch nach.
|
||||
function runDiskCleanup(variant) {
|
||||
const aggressive = variant === 'aggressive';
|
||||
if (aggressive) {
|
||||
const ok = confirm('AGGRESSIV aufraeumen? Loescht zusaetzlich ungenutzte Volumes — nur wenn ALLE ARIA-Container laufen, sonst Datenverlust!');
|
||||
if (!ok) return;
|
||||
}
|
||||
const btn = document.getElementById('disk-clean-btn');
|
||||
if (btn && !aggressive) { btn.disabled = true; btn.textContent = 'Raeume auf...'; }
|
||||
send({ action: 'disk_cleanup', variant });
|
||||
}
|
||||
function copyDiskCmd(variant) {
|
||||
const cmd = variant === 'aggressive'
|
||||
? 'docker system prune -a --volumes -f'
|
||||
|
||||
+129
-3
@@ -475,6 +475,21 @@ function broadcastState() {
|
||||
broadcast({ type: "state", state });
|
||||
}
|
||||
|
||||
// ── Satelliten-Registry (Aussenposten in fremden Netzen) ──────────
|
||||
const satellites = new Map(); // id → {id, location, caps, control, last_seen}
|
||||
|
||||
function satelliteList() {
|
||||
const now = Date.now();
|
||||
return Array.from(satellites.values()).map(s => ({
|
||||
id: s.id, location: s.location, caps: s.caps, control: s.control, net: s.net || null,
|
||||
online: (now - (s.last_seen || 0)) < 300000,
|
||||
}));
|
||||
}
|
||||
|
||||
function broadcastSatellites() {
|
||||
broadcast({ type: "sat_update", satellites: satelliteList() });
|
||||
}
|
||||
|
||||
// ── OpenClaw Gateway Verbindung ─────────────────────────
|
||||
|
||||
async function connectGateway() {
|
||||
@@ -903,6 +918,23 @@ function connectRVS(forcePlain) {
|
||||
// Browser-Tabs weiterreichen, damit die Projektliste live neu laedt
|
||||
// (bisher wurde das NICHT geforwardet → Diagnostic aktualisierte nie).
|
||||
broadcast({ type: "project_changed", payload: msg.payload || {} });
|
||||
} else if (msg.type === "sat_hello") {
|
||||
// Ein Satellit (Aussenposten in einem fremden Netz) meldet sich.
|
||||
const p = msg.payload || {};
|
||||
if (p.id) {
|
||||
satellites.set(p.id, {
|
||||
id: p.id, location: p.location || p.id,
|
||||
caps: p.caps || [], control: !!p.control, net: p.net || null,
|
||||
last_seen: Date.now(),
|
||||
});
|
||||
broadcastSatellites();
|
||||
}
|
||||
} else if (msg.type === "sat_devices") {
|
||||
// Antwort eines Satelliten auf sat_discover → Geraeteliste an Browser.
|
||||
const p = msg.payload || {};
|
||||
if (p.satellite && satellites.has(p.satellite)) satellites.get(p.satellite).last_seen = Date.now();
|
||||
broadcast({ type: "sat_devices", satellite: p.satellite || "",
|
||||
location: p.location || "", devices: p.devices || [] });
|
||||
} else if (msg.type === "agent_activity") {
|
||||
// Bridge meldet "ARIA denkt/schreibt/tool" oder "idle" — an Browser
|
||||
// weiterreichen, damit der Thinking-Indikator im Chat erscheint.
|
||||
@@ -1527,6 +1559,70 @@ function dockerExec(containerName, cmd) {
|
||||
});
|
||||
}
|
||||
|
||||
// POST gegen die Docker-Daemon-API (via gemountetem Socket). Fuer prune-
|
||||
// Endpoints — die geben SpaceReclaimed (Bytes) zurueck.
|
||||
function dockerApiPost(apiPath) {
|
||||
return new Promise((resolve, reject) => {
|
||||
const req = http.request({
|
||||
socketPath: "/var/run/docker.sock",
|
||||
path: apiPath,
|
||||
method: "POST",
|
||||
headers: { "Content-Type": "application/json", "Content-Length": 0 },
|
||||
}, (res) => {
|
||||
let data = "";
|
||||
res.on("data", (c) => data += c);
|
||||
res.on("end", () => {
|
||||
if (res.statusCode >= 200 && res.statusCode < 300) {
|
||||
try { resolve(JSON.parse(data || "{}")); } catch { resolve({}); }
|
||||
} else {
|
||||
reject(new Error(`Docker API ${apiPath}: HTTP ${res.statusCode} — ${String(data).slice(0, 200)}`));
|
||||
}
|
||||
});
|
||||
});
|
||||
req.on("error", reject);
|
||||
req.end();
|
||||
});
|
||||
}
|
||||
|
||||
// "Sicher aufraeumen": Build-Cache + ungenutzte Images prunen — OHNE Volumes
|
||||
// (keine Daten weg). "aggressive": zusaetzlich gestoppte Container + ungenutzte
|
||||
// Volumes (kann Daten kosten → nur auf ausdrueckliche Wahl). Fuehrt es WIRKLICH
|
||||
// aus (frueher kopierte der Button nur den Befehl in die Zwischenablage).
|
||||
async function handleDiskCleanup(clientWs, variant) {
|
||||
const aggressive = variant === "aggressive";
|
||||
const send = (o) => { try { clientWs.send(JSON.stringify(o)); } catch (_) {} };
|
||||
send({ type: "disk_cleanup", status: "running", variant });
|
||||
log("warn", "server", `Disk-Cleanup gestartet (${aggressive ? "aggressive" : "safe"})`);
|
||||
try {
|
||||
let reclaimed = 0;
|
||||
const steps = [];
|
||||
const bp = await dockerApiPost("/build/prune?all=true");
|
||||
reclaimed += (bp.SpaceReclaimed || 0);
|
||||
steps.push("Build-Cache");
|
||||
// dangling=false → ALLE ungenutzten Images (nicht nur dangling).
|
||||
// Docker-API-Filterformat: map[string][]string.
|
||||
const imgFilter = encodeURIComponent(JSON.stringify({ dangling: ["false"] }));
|
||||
const ip = await dockerApiPost("/images/prune?filters=" + imgFilter);
|
||||
reclaimed += (ip.SpaceReclaimed || 0);
|
||||
steps.push("ungenutzte Images");
|
||||
if (aggressive) {
|
||||
const cp = await dockerApiPost("/containers/prune");
|
||||
reclaimed += (cp.SpaceReclaimed || 0);
|
||||
steps.push("gestoppte Container");
|
||||
const vp = await dockerApiPost("/volumes/prune");
|
||||
reclaimed += (vp.SpaceReclaimed || 0);
|
||||
steps.push("ungenutzte Volumes");
|
||||
}
|
||||
const mb = (reclaimed / (1024 * 1024));
|
||||
const freed = mb >= 1024 ? (mb / 1024).toFixed(2) + " GB" : mb.toFixed(0) + " MB";
|
||||
log("info", "server", `Disk-Cleanup fertig: ${freed} frei (${steps.join(", ")})`);
|
||||
send({ type: "disk_cleanup", status: "done", variant, reclaimedBytes: reclaimed, freed, steps });
|
||||
} catch (err) {
|
||||
log("error", "server", `Disk-Cleanup fehlgeschlagen: ${err.message}`);
|
||||
send({ type: "disk_cleanup", status: "error", variant, error: String(err && err.message || err) });
|
||||
}
|
||||
}
|
||||
|
||||
// ── Hilfsfunktionen ─────────────────────────────────────
|
||||
|
||||
function waitForMessage(ws, timeoutMs) {
|
||||
@@ -2407,6 +2503,8 @@ wss.on("connection", (ws) => {
|
||||
ws.send(JSON.stringify({ type: "init", state, logs: logs.slice(-100) }));
|
||||
// Letzten Disk-Status mitgeben damit der Client sofort weiss wie's um Platz steht
|
||||
if (currentDiskStatus) ws.send(JSON.stringify(currentDiskStatus));
|
||||
// Aktuell bekannte Satelliten mitgeben (RVS replayt sat_hello nicht).
|
||||
ws.send(JSON.stringify({ type: "sat_update", satellites: satelliteList() }));
|
||||
|
||||
ws.on("message", (raw) => {
|
||||
try {
|
||||
@@ -2421,10 +2519,28 @@ wss.on("connection", (ws) => {
|
||||
} else if (msg.action === "test_rvs") {
|
||||
traceStart("RVS", msg.text || "aria lebst du noch?");
|
||||
sendToRVS(msg.text || "aria lebst du noch?", true, msg.projectId || "");
|
||||
} else if (msg.action === "interject") {
|
||||
// Zwischenruf: in den laufenden Turn schieben (kein Abbruch, keine
|
||||
// Queue) → RVS interject → Bridge → Proxy /interject.
|
||||
const t = String(msg.text || "");
|
||||
if (t.trim()) {
|
||||
sendToRVS_raw({ type: "interject", payload: { projectId: msg.projectId || "", text: t }, timestamp: Date.now() });
|
||||
log("info", "server", "Zwischenruf an RVS (project=" + (msg.projectId || "(main)") + "): " + t.slice(0, 60));
|
||||
}
|
||||
} else if (msg.action === "disk_cleanup") {
|
||||
handleDiskCleanup(ws, msg.variant === "aggressive" ? "aggressive" : "safe");
|
||||
} else if (msg.action === "reconnect_gateway") {
|
||||
connectGateway();
|
||||
} else if (msg.action === "reconnect_rvs") {
|
||||
connectRVS();
|
||||
} else if (msg.action === "sat_list") {
|
||||
// Browser will die aktuelle Satelliten-Liste.
|
||||
ws.send(JSON.stringify({ type: "sat_update", satellites: satelliteList() }));
|
||||
} else if (msg.action === "sat_discover") {
|
||||
// Browser triggert einen Geraete-Scan auf einem Satelliten.
|
||||
sendToRVS_raw({ type: "sat_discover",
|
||||
payload: { satellite: msg.satellite || "", force: true },
|
||||
timestamp: Date.now() });
|
||||
} else if (msg.action === "test_proxy") {
|
||||
testProxy(msg.text);
|
||||
} else if (msg.action === "check_proxy_auth") {
|
||||
@@ -2457,14 +2573,18 @@ wss.on("connection", (ws) => {
|
||||
});
|
||||
log("info", "server", `Datei gesendet: ${msg.name} (${msg.type})`);
|
||||
} else if (msg.action === "cancel_request") {
|
||||
// Laufende Anfrage abbrechen — doctor --fix beendet stuck runs
|
||||
log("warn", "server", "Anfrage abgebrochen — fuehre doctor --fix aus");
|
||||
// Laufende Anfrage abbrechen — ECHTER Cancel: RVS cancel_request (hard)
|
||||
// an die Bridge, die den Proxy-/cancel-all Side-Channel anruft und den
|
||||
// laufenden claude-Subprozess killt. Das alte `openclaw doctor --fix`
|
||||
// zielte auf den Container aria-core, den es nicht mehr gibt — es
|
||||
// beendete den Run nie (ARIA lief munter weiter).
|
||||
log("warn", "server", "Anfrage abgebrochen — cancel_request (hard) an Bridge/Proxy");
|
||||
pendingMessageTime = 0;
|
||||
watchdogWarned = false;
|
||||
watchdogFixAttempted = false;
|
||||
if (traceActive) traceEnd(false, "Vom Benutzer abgebrochen");
|
||||
broadcast({ type: "agent_activity", activity: "idle" });
|
||||
dockerExec("aria-core", "openclaw doctor --fix 2>/dev/null || true").catch(() => {});
|
||||
sendToRVS_raw({ type: "cancel_request", payload: { hard: true, source: "diagnostic-cancel" }, timestamp: Date.now() });
|
||||
} else if (msg.action === "aria_panic_stop") {
|
||||
// NOT-AUS aus ARIA-Live-View: lokales /api/cancel UND Hard-Kill via
|
||||
// Bridge (die wiederum den Proxy-Side-Channel /cancel-all anruft).
|
||||
@@ -2561,6 +2681,12 @@ wss.on("connection", (ws) => {
|
||||
const t = parseFloat(msg.voiceIdThreshold);
|
||||
if (t >= 0.0 && t <= 1.0) voiceConfig.voiceIdThreshold = t;
|
||||
}
|
||||
// Speaker-ID Gating an/aus ("nur meine Stimme"). Default aus (fail-open) —
|
||||
// bewusster Schalter. voxtral/whisper-bridge lesen voiceIdEnabled aus dem
|
||||
// config-Broadcast; aus = gar keine Pruefung.
|
||||
if (msg.voiceIdEnabled !== undefined) {
|
||||
voiceConfig.voiceIdEnabled = !!msg.voiceIdEnabled;
|
||||
}
|
||||
try {
|
||||
fs.mkdirSync("/shared/config", { recursive: true });
|
||||
fs.writeFileSync("/shared/config/voice_config.json", JSON.stringify(voiceConfig, null, 2));
|
||||
|
||||
+3
-5
@@ -11,11 +11,7 @@ services:
|
||||
npm install -g @anthropic-ai/claude-code claude-max-api-proxy &&
|
||||
DIST=$$(find /usr/local/lib -path '*/claude-max-api-proxy/dist' -type d | head -1) &&
|
||||
sed -i 's/startServer({ port })/startServer({ port, host: process.env.HOST || \"127.0.0.1\" })/' $$DIST/server/standalone.js &&
|
||||
sed -i 's/\"--no-session-persistence\",/\"--no-session-persistence\",\"--dangerously-skip-permissions\",/' $$DIST/subprocess/manager.js &&
|
||||
sed -i 's/\"--dangerously-skip-permissions\",/\"--dangerously-skip-permissions\",\"--system-prompt\",options.systemPrompt,/' $$DIST/subprocess/manager.js &&
|
||||
sed -i 's/const DEFAULT_TIMEOUT = 300000;/const DEFAULT_TIMEOUT = 86400000;/' $$DIST/subprocess/manager.js &&
|
||||
sed -i '/prompt, \\/\\/ Pass prompt as argument/d' $$DIST/subprocess/manager.js &&
|
||||
sed -i 's|this\\.process\\.stdin?\\.end();|this.process.stdin?.end(prompt);|' $$DIST/subprocess/manager.js &&
|
||||
cp /proxy-patches/manager.js $$DIST/subprocess/manager.js &&
|
||||
cp /proxy-patches/openai-to-cli.js $$DIST/adapter/openai-to-cli.js &&
|
||||
cp /proxy-patches/cli-to-openai.js $$DIST/adapter/cli-to-openai.js &&
|
||||
cp /proxy-patches/routes.js $$DIST/server/routes.js &&
|
||||
@@ -120,6 +116,8 @@ services:
|
||||
- brain
|
||||
networks:
|
||||
- aria-net
|
||||
extra_hosts:
|
||||
- "host.docker.internal:host-gateway" # fuer den VNC-Tunnel zum Host (QEMU)
|
||||
ports:
|
||||
- "3001:3001" # Diagnostic Web-UI (Diagnostic teilt Netzwerk mit Bridge)
|
||||
volumes:
|
||||
|
||||
+47
-13
@@ -59,38 +59,62 @@ cmd_create() {
|
||||
[[ -n "${bin}" ]] || die "unbekannte Architektur: ${arch}"
|
||||
command -v "${bin}" >/dev/null || die "${bin} nicht installiert (qemu-setup.sh?)"
|
||||
local d; d="$(vm_dir "${name}")"
|
||||
[[ -e "${d}/disk.qcow2" ]] && die "VM '${name}' existiert schon"
|
||||
[[ -f "${d}/arch" ]] && die "VM '${name}' existiert schon"
|
||||
mkdir -p "${d}"
|
||||
echo "${arch}" > "${d}/arch"
|
||||
qemu-img create -f qcow2 "${d}/disk.qcow2" "${size}" >/dev/null
|
||||
echo "VM '${name}' angelegt (${arch}, ${size})."
|
||||
# size='none' oder '0' → keine Festplatte (VM bootet von --iso/--floppy,
|
||||
# z.B. OS-Entwicklung von Diskette). Sonst eine qcow2-Disk anlegen.
|
||||
if [[ "${size}" == "none" || "${size}" == "0" ]]; then
|
||||
echo "VM '${name}' angelegt (${arch}, ohne Disk — bootet von ISO/Diskette)."
|
||||
else
|
||||
qemu-img create -f qcow2 "${d}/disk.qcow2" "${size}" >/dev/null
|
||||
echo "VM '${name}' angelegt (${arch}, ${size})."
|
||||
fi
|
||||
}
|
||||
|
||||
cmd_boot() {
|
||||
local name="${1:?name}"; shift || true
|
||||
local d; d="$(vm_dir "${name}")"
|
||||
[[ -f "${d}/disk.qcow2" ]] || die "VM '${name}' nicht gefunden (erst 'create')"
|
||||
[[ -f "${d}/arch" || -f "${d}/disk.qcow2" ]] || die "VM '${name}' nicht gefunden (erst 'create')"
|
||||
vm_running "${name}" && die "VM '${name}' laeuft bereits"
|
||||
local arch; arch="$(cat "${d}/arch" 2>/dev/null || echo x86_64)"
|
||||
local bin; bin="$(qemu_bin_for "${arch}")"
|
||||
|
||||
local iso="" bootdev="c" display=1 mem=1024 machine=""
|
||||
local iso="" floppy="" disk="" bootdev="" display=1 mem=1024 machine=""
|
||||
# VNC bindet an 127.0.0.1 (Loopback) — von aussen nur ueber den RVS-Tunnel der
|
||||
# Bridge erreichbar. Die Bridge (Container) kann Loopback aber NICHT erreichen;
|
||||
# der Brain gibt deshalb per --vnc-bind die Docker-Gateway-IP mit (container-
|
||||
# intern, NICHT im LAN/Internet). Default bleibt Loopback.
|
||||
local vncbind="${ARIA_VM_VNC_BIND:-127.0.0.1}"
|
||||
while [[ $# -gt 0 ]]; do
|
||||
case "$1" in
|
||||
--iso) iso="${2:?}"; bootdev="d"; shift 2 ;;
|
||||
--iso) iso="${2:?}"; shift 2 ;;
|
||||
--floppy) floppy="${2:?}"; shift 2 ;; # -fda (Disketten-Boot, OS-Dev)
|
||||
--disk) disk="${2:?}"; shift 2 ;; # explizite qcow2 statt Auto
|
||||
--boot) bootdev="${2:?}"; shift 2 ;; # Boot-Reihenfolge (a/c/d)
|
||||
--disk-boot) bootdev="c"; shift ;;
|
||||
--vnc-display) display="${2:?}"; shift 2 ;;
|
||||
--vnc-bind) vncbind="${2:?}"; shift 2 ;; # Bind-Adresse fuer -vnc
|
||||
--mem) mem="${2:?}"; shift 2 ;;
|
||||
--machine) machine="${2:?}"; shift 2 ;;
|
||||
*) die "unbekannte Option: $1" ;;
|
||||
esac
|
||||
done
|
||||
|
||||
# Auto-Erkennung der Medien im VM-Ordner, falls nicht explizit angegeben.
|
||||
[[ -z "${disk}" && -f "${d}/disk.qcow2" ]] && disk="${d}/disk.qcow2"
|
||||
[[ -z "${floppy}" && -f "${d}/floppy.img" ]] && floppy="${d}/floppy.img"
|
||||
[[ -z "${iso}" && -f "${d}/cdrom.iso" ]] && iso="${d}/cdrom.iso"
|
||||
[[ -n "${disk}${floppy}${iso}" ]] || \
|
||||
die "Keine Boot-Medien fuer '${name}' (disk.qcow2 / --iso / --floppy). Erst 'create <name> <arch> <groesse>' oder ein Medium angeben."
|
||||
|
||||
local args=(-name "${name}" -m "${mem}"
|
||||
-drive "file=${d}/disk.qcow2,format=qcow2"
|
||||
-vnc "127.0.0.1:${display}"
|
||||
-vnc "${vncbind}:${display}"
|
||||
-monitor "unix:${d}/monitor.sock,server,nowait"
|
||||
-pidfile "${d}/pid" -daemonize)
|
||||
[[ -n "${disk}" ]] && args+=(-drive "file=${disk},format=qcow2")
|
||||
[[ -n "${floppy}" ]] && args+=(-fda "${floppy}")
|
||||
[[ -n "${iso}" ]] && args+=(-cdrom "${iso}")
|
||||
|
||||
# KVM nur fuer x86 auf x86-Host.
|
||||
case "${arch}" in
|
||||
@@ -104,11 +128,17 @@ cmd_boot() {
|
||||
esac
|
||||
fi
|
||||
[[ -n "${machine}" ]] && args+=(-M "${machine}")
|
||||
[[ -n "${iso}" ]] && args+=(-cdrom "${iso}")
|
||||
|
||||
# Boot-Reihenfolge: explizit, sonst automatisch (ISO→d, nur Diskette→a, sonst c).
|
||||
if [[ -z "${bootdev}" ]]; then
|
||||
if [[ -n "${iso}" ]]; then bootdev="d"
|
||||
elif [[ -n "${floppy}" && -z "${disk}" ]]; then bootdev="a"
|
||||
else bootdev="c"; fi
|
||||
fi
|
||||
args+=(-boot "${bootdev}")
|
||||
|
||||
"${bin}" "${args[@]}"
|
||||
echo "VM '${name}' gestartet (${arch}) — VNC 127.0.0.1:${display} (Port $((5900+display)))."
|
||||
echo "VM '${name}' gestartet (${arch}) — VNC ${vncbind}:${display} (Port $((5900+display)))."
|
||||
echo "vnc_display=${display} vnc_port=$((5900+display))"
|
||||
}
|
||||
|
||||
@@ -117,16 +147,20 @@ cmd_screenshot() {
|
||||
local d; d="$(vm_dir "${name}")"
|
||||
vm_running "${name}" || die "VM '${name}' laeuft nicht"
|
||||
command -v socat >/dev/null || die "socat fehlt (qemu-setup.sh?)"
|
||||
mkdir -p "${SHOT_DIR}"
|
||||
# Standard: ins VM-Verzeichnis schreiben (dem aria-User gehoerend) — NICHT
|
||||
# nach /root/... (da kommt der aria-User nicht hin). Der Brain holt das PNG
|
||||
# danach per SSH (base64). Ueberschreibbar via ARIA_VM_SHOT_DIR.
|
||||
local out_dir="${ARIA_VM_SHOT_DIR:-${d}}"
|
||||
mkdir -p "${out_dir}"
|
||||
local ts; ts="$(date +%s)"
|
||||
local ppm="${d}/shot-${ts}.ppm"
|
||||
printf 'screendump %s\n' "${ppm}" | socat - "unix-connect:${d}/monitor.sock" >/dev/null
|
||||
sleep 0.3
|
||||
local out="${SHOT_DIR}/${name}-${ts}.png"
|
||||
local out="${out_dir}/${name}-${ts}.png"
|
||||
if command -v convert >/dev/null; then
|
||||
convert "${ppm}" "${out}" && rm -f "${ppm}"
|
||||
else
|
||||
out="${SHOT_DIR}/${name}-${ts}.ppm"; mv "${ppm}" "${out}"
|
||||
out="${out_dir}/${name}-${ts}.ppm"; mv "${ppm}" "${out}"
|
||||
fi
|
||||
echo "screenshot=${out}"
|
||||
}
|
||||
|
||||
@@ -0,0 +1,256 @@
|
||||
/**
|
||||
* Claude Code CLI Subprocess Manager — ARIA-Patch
|
||||
*
|
||||
* Basis: claude-max-api-proxy dist/subprocess/manager.js, plus die bisher per
|
||||
* sed in docker-compose.yml eingespielten Anpassungen (dangerously-skip-
|
||||
* permissions, system-prompt, 24h-Timeout, Prompt via stdin) — hier fest im
|
||||
* File, damit der groessere Zwischenruf-Umbau nicht per sed gefrickelt werden
|
||||
* muss. Wird per `cp` ueber die npm-Version gelegt (siehe docker-compose.yml).
|
||||
*
|
||||
* ZWISCHENRUF (interject): Statt den Prompt als Text zu schreiben und stdin
|
||||
* sofort zu schliessen (--print/text), laeuft claude jetzt im
|
||||
* `--input-format stream-json`-Modus. Der initiale Prompt geht als
|
||||
* stream-json User-Message rein, stdin bleibt OFFEN — so kann waehrend des
|
||||
* laufenden Turns per sendMessage() eine weitere User-Message reingeschoben
|
||||
* werden, die claude an der naechsten Tool-Grenze aufgreift (kein Abbruch).
|
||||
* Bei 'result' (Turn fertig) wird stdin geschlossen, damit claude sauber
|
||||
* beendet und die HTTP-Response (in routes.js an 'close' gebunden) rausgeht.
|
||||
*/
|
||||
import { spawn } from "child_process";
|
||||
import { EventEmitter } from "events";
|
||||
import { isAssistantMessage, isResultMessage, isContentDelta } from "../types/claude-cli.js";
|
||||
const DEFAULT_TIMEOUT = 86400000; // 24h — lange Agent-Loops (Pentests etc.)
|
||||
export class ClaudeSubprocess extends EventEmitter {
|
||||
process = null;
|
||||
buffer = "";
|
||||
timeoutId = null;
|
||||
isKilled = false;
|
||||
_stdinClosed = false;
|
||||
/**
|
||||
* Start the Claude CLI subprocess with the given prompt
|
||||
*/
|
||||
async start(prompt, options) {
|
||||
const args = this.buildArgs(prompt, options);
|
||||
const timeout = options.timeout || DEFAULT_TIMEOUT;
|
||||
return new Promise((resolve, reject) => {
|
||||
try {
|
||||
// Use spawn() for security - no shell interpretation
|
||||
this.process = spawn("claude", args, {
|
||||
cwd: options.cwd || process.cwd(),
|
||||
env: { ...process.env },
|
||||
stdio: ["pipe", "pipe", "pipe"],
|
||||
});
|
||||
// Set timeout
|
||||
this.timeoutId = setTimeout(() => {
|
||||
if (!this.isKilled) {
|
||||
this.isKilled = true;
|
||||
this.process?.kill("SIGTERM");
|
||||
this.emit("error", new Error(`Request timed out after ${timeout}ms`));
|
||||
}
|
||||
}, timeout);
|
||||
// Handle spawn errors (e.g., claude not found)
|
||||
this.process.on("error", (err) => {
|
||||
this.clearTimeout();
|
||||
if (err.message.includes("ENOENT")) {
|
||||
reject(new Error("Claude CLI not found. Install with: npm install -g @anthropic-ai/claude-code"));
|
||||
}
|
||||
else {
|
||||
reject(err);
|
||||
}
|
||||
});
|
||||
// stdin BLEIBT OFFEN: initialen Prompt als stream-json User-
|
||||
// Message schreiben; spaetere Zwischenrufe kommen via
|
||||
// sendMessage(). Geschlossen wird bei 'result' (s. processBuffer).
|
||||
this._writeUserMessage(prompt);
|
||||
// Falls stdin (z.B. EPIPE) frueh stirbt: nicht crashen.
|
||||
this.process.stdin?.on("error", () => {});
|
||||
console.error(`[Subprocess] Process spawned with PID: ${this.process.pid}`);
|
||||
// Parse JSON stream from stdout
|
||||
this.process.stdout?.on("data", (chunk) => {
|
||||
const data = chunk.toString();
|
||||
console.error(`[Subprocess] Received ${data.length} bytes of stdout`);
|
||||
this.buffer += data;
|
||||
this.processBuffer();
|
||||
});
|
||||
// Capture stderr for debugging
|
||||
this.process.stderr?.on("data", (chunk) => {
|
||||
const errorText = chunk.toString().trim();
|
||||
if (errorText) {
|
||||
// Don't emit as error unless it's actually an error
|
||||
// Claude CLI may write debug info to stderr
|
||||
console.error("[Subprocess stderr]:", errorText.slice(0, 200));
|
||||
}
|
||||
});
|
||||
// Handle process close
|
||||
this.process.on("close", (code) => {
|
||||
console.error(`[Subprocess] Process closed with code: ${code}`);
|
||||
this.clearTimeout();
|
||||
// Process any remaining buffer
|
||||
if (this.buffer.trim()) {
|
||||
this.processBuffer();
|
||||
}
|
||||
this.emit("close", code);
|
||||
});
|
||||
// Resolve immediately since we're streaming
|
||||
resolve();
|
||||
}
|
||||
catch (err) {
|
||||
this.clearTimeout();
|
||||
reject(err);
|
||||
}
|
||||
});
|
||||
}
|
||||
/**
|
||||
* Build CLI arguments array
|
||||
*/
|
||||
buildArgs(prompt, options) {
|
||||
const args = [
|
||||
"--print", // Non-interactive mode
|
||||
"--output-format",
|
||||
"stream-json", // JSON streaming output
|
||||
"--verbose", // Required for stream-json
|
||||
"--include-partial-messages", // Enable streaming chunks
|
||||
"--input-format",
|
||||
"stream-json", // ARIA: User-Messages via stdin (Zwischenruf)
|
||||
"--model",
|
||||
options.model, // Model alias (opus/sonnet/haiku)
|
||||
"--no-session-persistence", "--dangerously-skip-permissions", "--system-prompt", options.systemPrompt, "--safe-mode",
|
||||
];
|
||||
if (options.sessionId) {
|
||||
args.push("--session-id", options.sessionId);
|
||||
}
|
||||
return args;
|
||||
}
|
||||
/**
|
||||
* Eine User-Message im stream-json-Input-Format an stdin schreiben.
|
||||
* Genutzt fuer den initialen Prompt UND fuer Zwischenrufe (sendMessage).
|
||||
*/
|
||||
_writeUserMessage(text) {
|
||||
const p = this.process;
|
||||
if (!p || !p.stdin || p.stdin.destroyed || this._stdinClosed)
|
||||
return false;
|
||||
try {
|
||||
p.stdin.write(JSON.stringify({ type: "user", message: { role: "user", content: String(text) } }) + "\n");
|
||||
return true;
|
||||
}
|
||||
catch (_) {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
/**
|
||||
* Zwischenruf: waehrend eines laufenden Turns eine weitere User-Message
|
||||
* reinschieben. claude greift sie an der naechsten Tool-Grenze auf, ohne
|
||||
* den Turn abzubrechen. Kein Effekt, wenn stdin schon geschlossen ist
|
||||
* (Turn praktisch fertig) — dann ist der Zwischenruf schlicht zu spaet.
|
||||
*/
|
||||
sendMessage(text) {
|
||||
return this._writeUserMessage(text);
|
||||
}
|
||||
/**
|
||||
* stdin schliessen → claude beendet den stream-json-Input und exit't.
|
||||
*/
|
||||
_closeStdin() {
|
||||
if (this._stdinClosed)
|
||||
return;
|
||||
this._stdinClosed = true;
|
||||
try {
|
||||
this.process?.stdin?.end();
|
||||
}
|
||||
catch (_) { }
|
||||
}
|
||||
/**
|
||||
* Process the buffer and emit parsed messages
|
||||
*/
|
||||
processBuffer() {
|
||||
const lines = this.buffer.split("\n");
|
||||
this.buffer = lines.pop() || ""; // Keep incomplete line
|
||||
for (const line of lines) {
|
||||
const trimmed = line.trim();
|
||||
if (!trimmed)
|
||||
continue;
|
||||
try {
|
||||
const message = JSON.parse(trimmed);
|
||||
this.emit("message", message);
|
||||
if (isContentDelta(message)) {
|
||||
// Emit content delta for streaming
|
||||
this.emit("content_delta", message);
|
||||
}
|
||||
else if (isAssistantMessage(message)) {
|
||||
this.emit("assistant", message);
|
||||
}
|
||||
else if (isResultMessage(message)) {
|
||||
this.emit("result", message);
|
||||
// Turn fertig → stdin schliessen, sonst wartet claude im
|
||||
// stream-json-Input auf weitere Messages und der Prozess
|
||||
// (und damit die HTTP-Response) haengt fuer immer.
|
||||
this._closeStdin();
|
||||
}
|
||||
}
|
||||
catch {
|
||||
// Non-JSON output, emit as raw
|
||||
this.emit("raw", trimmed);
|
||||
}
|
||||
}
|
||||
}
|
||||
/**
|
||||
* Clear the timeout timer
|
||||
*/
|
||||
clearTimeout() {
|
||||
if (this.timeoutId) {
|
||||
clearTimeout(this.timeoutId);
|
||||
this.timeoutId = null;
|
||||
}
|
||||
}
|
||||
/**
|
||||
* Kill the subprocess
|
||||
*/
|
||||
kill(signal = "SIGTERM") {
|
||||
if (!this.isKilled && this.process) {
|
||||
this.isKilled = true;
|
||||
this.clearTimeout();
|
||||
this.process.kill(signal);
|
||||
}
|
||||
}
|
||||
/**
|
||||
* Check if the process is still running
|
||||
*/
|
||||
isRunning() {
|
||||
return this.process !== null && !this.isKilled && this.process.exitCode === null;
|
||||
}
|
||||
}
|
||||
/**
|
||||
* Verify that Claude CLI is installed and accessible
|
||||
*/
|
||||
export async function verifyClaude() {
|
||||
return new Promise((resolve) => {
|
||||
const proc = spawn("claude", ["--version"], { stdio: "pipe" });
|
||||
let output = "";
|
||||
proc.stdout?.on("data", (chunk) => {
|
||||
output += chunk.toString();
|
||||
});
|
||||
proc.on("error", () => {
|
||||
resolve({
|
||||
ok: false,
|
||||
error: "Claude CLI not found. Install with: npm install -g @anthropic-ai/claude-code",
|
||||
});
|
||||
});
|
||||
proc.on("close", (code) => {
|
||||
if (code === 0) {
|
||||
resolve({ ok: true, version: output.trim() });
|
||||
}
|
||||
else {
|
||||
resolve({
|
||||
ok: false,
|
||||
error: "Claude CLI returned non-zero exit code",
|
||||
});
|
||||
}
|
||||
});
|
||||
});
|
||||
}
|
||||
/**
|
||||
* Check if Claude CLI is authenticated
|
||||
*/
|
||||
export async function verifyAuth() {
|
||||
return { ok: true };
|
||||
}
|
||||
//# sourceMappingURL=manager.js.map
|
||||
@@ -25,6 +25,13 @@ const MODEL_MAP = {
|
||||
"opus": "opus",
|
||||
"sonnet": "sonnet",
|
||||
"haiku": "haiku",
|
||||
"fable": "fable",
|
||||
"claude-fable-5": "fable",
|
||||
"claude-code-cli/fable": "fable",
|
||||
// Volle aktuelle IDs (falls die App/Diagnostic sie mal direkt setzt)
|
||||
"claude-opus-5": "opus",
|
||||
"claude-sonnet-5": "sonnet",
|
||||
"claude-haiku-4-5": "haiku",
|
||||
};
|
||||
|
||||
export function extractModel(model) {
|
||||
|
||||
+46
-4
@@ -514,12 +514,18 @@ async function handleNonStreamingResponse(res, subprocess, cliInput, requestId)
|
||||
// Datei, greifen die eingebauten Defaults; die Datei wird dann einmalig mit
|
||||
// diesen Defaults angelegt, damit es was zu editieren gibt.
|
||||
const MODELS_FILE = process.env.ARIA_MODELS_FILE || "/shared/config/models.json";
|
||||
// Tier-Aliase als id (opus/sonnet/haiku/fable) — die CLI loest sie automatisch
|
||||
// auf die AKTUELLE Version des Tiers auf (Stand 2026-07: fable→Fable 5,
|
||||
// opus→Opus 5, sonnet→Sonnet 5, haiku→Haiku 4.5). So bleibt die Liste
|
||||
// versions-robust; die display_name-Texte nur bei Tier-Wechsel anpassen.
|
||||
const DEFAULT_MODELS = [
|
||||
{ id: "claude-sonnet-4", tier: "sonnet", display_name: "Sonnet (aktuell: Sonnet 5)",
|
||||
{ id: "fable", tier: "fable", display_name: "Fable (aktuell: Fable 5)",
|
||||
description: "Staerkstes Modell — fuer die haertesten Aufgaben (Software-Entwicklung, lange Agent-Laeufe)." },
|
||||
{ id: "opus", tier: "opus", display_name: "Opus (aktuell: Opus 5)",
|
||||
description: "Sehr schlau, schneller als Fable — fuer schwere/lange Aufgaben." },
|
||||
{ id: "sonnet", tier: "sonnet", display_name: "Sonnet (aktuell: Sonnet 5)",
|
||||
description: "Schnell & gut — Standard fuer den Alltag." },
|
||||
{ id: "claude-opus-4", tier: "opus", display_name: "Opus (aktuell: Opus 4.8)",
|
||||
description: "Langsamer, aber am schlausten — fuer schwere/lange Aufgaben." },
|
||||
{ id: "claude-haiku-4", tier: "haiku", display_name: "Haiku (aktuell: Haiku 4.5)",
|
||||
{ id: "haiku", tier: "haiku", display_name: "Haiku (aktuell: Haiku 4.5)",
|
||||
description: "Sehr schnell & guenstig, kleinerer Kontext — fuer einfache Tasks." },
|
||||
];
|
||||
|
||||
@@ -621,6 +627,28 @@ function _cancelByProject(projectId) {
|
||||
return { killed, requestIds: ids, projectId: pid };
|
||||
}
|
||||
|
||||
// Zwischenruf: schiebt eine User-Message in den/die laufenden Subprozess(e)
|
||||
// eines Kontexts, OHNE sie zu killen. claude greift sie an der naechsten Tool-
|
||||
// Grenze auf (stream-json-Input, s. manager.js). Kein Treffer / stdin schon
|
||||
// zu (Turn quasi fertig) → delivered=0.
|
||||
function _interjectByProject(projectId, text) {
|
||||
const pid = String(projectId || "");
|
||||
const ids = [];
|
||||
let delivered = 0;
|
||||
for (const [id, entry] of Array.from(_activeSubprocesses)) {
|
||||
if (entry.projectId !== pid) continue;
|
||||
try {
|
||||
if (typeof entry.subprocess.sendMessage === "function" && entry.subprocess.sendMessage(text)) {
|
||||
delivered++;
|
||||
ids.push(id);
|
||||
}
|
||||
} catch (e) {
|
||||
console.error("[aria-interject] sendMessage failed for", id, e?.message);
|
||||
}
|
||||
}
|
||||
return { delivered, requestIds: ids, projectId: pid };
|
||||
}
|
||||
|
||||
try {
|
||||
const internalServer = http.createServer((req, res) => {
|
||||
if (req.method === "POST" && req.url === "/cancel-all") {
|
||||
@@ -645,6 +673,20 @@ try {
|
||||
});
|
||||
return;
|
||||
}
|
||||
if (req.method === "POST" && req.url === "/interject") {
|
||||
// Body: {projectId, text}. Zwischenruf in den laufenden Turn.
|
||||
let raw = "";
|
||||
req.on("data", (c) => { raw += c; if (raw.length > 65536) req.destroy(); });
|
||||
req.on("end", () => {
|
||||
let projectId = "", text = "";
|
||||
try { const b = JSON.parse(raw || "{}"); projectId = String(b.projectId || ""); text = String(b.text || ""); } catch (_) {}
|
||||
const result = text ? _interjectByProject(projectId, text) : { delivered: 0, requestIds: [], projectId };
|
||||
console.warn("[aria-interject] /interject project=%s — delivered %d", projectId || "(main)", result.delivered);
|
||||
res.writeHead(200, { "Content-Type": "application/json" });
|
||||
res.end(JSON.stringify({ ok: true, ...result }));
|
||||
});
|
||||
return;
|
||||
}
|
||||
if (req.method === "GET" && req.url === "/health") {
|
||||
res.writeHead(200, { "Content-Type": "application/json" });
|
||||
res.end(JSON.stringify({ ok: true, active: _activeSubprocesses.size }));
|
||||
|
||||
+9
-1
@@ -17,7 +17,7 @@ const ALLOWED_TYPES = new Set([
|
||||
"file_request", "file_response", "file_saved", "stt_result", "config", "tts_request",
|
||||
"xtts_request", "xtts_response", "xtts_list_voices", "xtts_voices_list", "voice_upload", "xtts_voice_saved",
|
||||
"update_check", "update_available", "update_download", "update_data",
|
||||
"agent_activity", "cancel_request",
|
||||
"agent_activity", "cancel_request", "interject",
|
||||
"audio_pcm",
|
||||
"file_from_aria",
|
||||
"container_restart",
|
||||
@@ -70,8 +70,16 @@ const ALLOWED_TYPES = new Set([
|
||||
// spiegelt ARIAs Datei-Writes, und QEMU-VNC wird als RFB-Bytes durch RVS
|
||||
// getunnelt (Base64-in-JSON wie audio_pcm — kein Binaer-Handling noetig).
|
||||
"code_file", "code_file_edit",
|
||||
// M1 Generatives Cockpit: ARIA komponiert via present_view eine View-Spec
|
||||
// (Orb + Karten), die App/Web/Diagnostic mit ihrem jeweiligen Renderer
|
||||
// materialisieren. Brain → Bridge → RVS → Clients.
|
||||
"aria_view",
|
||||
"check_desktop", "desktop_status",
|
||||
"vnc_open", "vnc_close", "vnc_data", "vnc_input",
|
||||
// Satelliten (Info-/Gateway-Aussenposten in fremden Netzen): melden sich mit
|
||||
// sat_hello, liefern Geraete-Inventar (sat_devices) auf sat_discover und
|
||||
// fuehren Aktionen aus (sat_command → sat_result).
|
||||
"sat_hello", "sat_discover", "sat_devices", "sat_command", "sat_result",
|
||||
]);
|
||||
|
||||
// Token-Raum: token -> { clients: Set<ws> }
|
||||
|
||||
@@ -0,0 +1,34 @@
|
||||
# ─── ARIA Satellit — Konfiguration ──────────────────────────────────
|
||||
# Kopiere diese Datei nach .env und passe sie an.
|
||||
|
||||
# RVS-Zugang (identisch zum Haupt-Stack — gleicher Raum/Token, damit ARIA
|
||||
# diesen Satelliten erreicht). Werte aus der Haupt-.env / vom generate-token.sh.
|
||||
RVS_HOST=rvs.example.de
|
||||
RVS_PORT=443
|
||||
RVS_TLS=true
|
||||
RVS_TOKEN=
|
||||
|
||||
# ─── Identitaet / Adresse dieses Satelliten ────────────────────────
|
||||
# SATELLITE_ID = technisch eindeutig (a-z0-9-_), Default = Hostname-Slug.
|
||||
# SATELLITE_LOCATION = menschlicher Name, so spricht ARIA das Netz an ("Buero").
|
||||
# Mehrere Satelliten koennen im selben RVS-Raum haengen — die Location
|
||||
# unterscheidet sie ("Buero", "Zuhause", "Werkstatt").
|
||||
SATELLITE_ID=buero
|
||||
SATELLITE_LOCATION=Büro
|
||||
|
||||
# ─── Steuerung (Sicherheit!) ───────────────────────────────────────
|
||||
# CONTROL_ENABLED=false → reiner Info-/Beobachtungs-Satellit (entdeckt & meldet
|
||||
# nur, steuert nichts). Sicherste Basis.
|
||||
# CONTROL_ENABLED=true → darf Geraete steuern (nur Aktionen aus der Allowlist).
|
||||
CONTROL_ENABLED=true
|
||||
# Erlaubte Steuer-Aktionen (kommagetrennt). Alles andere wird abgelehnt.
|
||||
# dial.launch App-Launch via DIAL (z.B. YouTube-Video auf Fire TV / Smart-TV)
|
||||
# wol Wake-on-LAN (Geraet per MAC aufwecken)
|
||||
# http.get generischer HTTP-GET (z.B. lokale IoT-Webhooks)
|
||||
# http.post generischer HTTP-POST
|
||||
CONTROL_ALLOWLIST=dial.launch,wol,http.get
|
||||
|
||||
# ─── Discovery-Tuning (optional) ───────────────────────────────────
|
||||
SCAN_INTERVAL_SEC=300 # Hintergrund-Rescan-Intervall
|
||||
DISCOVER_TIMEOUT_SEC=6 # Dauer eines Sweeps (mDNS + SSDP)
|
||||
DEVICE_CACHE_TTL_SEC=120 # wie lange ein Inventar als "frisch" gilt
|
||||
@@ -0,0 +1,13 @@
|
||||
# ARIA Satellit — schlanker Aussenposten-Container.
|
||||
# Laeuft mit network_mode: host (siehe docker-compose.yml), damit mDNS/SSDP-
|
||||
# Broadcasts + die Geraete-IPs im lokalen Netz erreichbar sind.
|
||||
FROM python:3.12-slim
|
||||
|
||||
WORKDIR /app
|
||||
|
||||
COPY requirements.txt .
|
||||
RUN pip install --no-cache-dir -r requirements.txt
|
||||
|
||||
COPY satellite.py .
|
||||
|
||||
CMD ["python", "-u", "satellite.py"]
|
||||
@@ -0,0 +1,102 @@
|
||||
# ARIA Satellit 🛰️
|
||||
|
||||
Ein eigenständiger **Außenposten-Container** für ein fremdes Netz (Büro, Werkstatt,
|
||||
Ferienwohnung …). Er verbindet sich als RVS-Client in Stefans Raum und gibt ARIA
|
||||
**Augen und Hände in genau diesem Netz** — ohne dass der Haupt-Stack dort stehen muss.
|
||||
|
||||
- **Augen (Info):** entdeckt Geräte via **mDNS/Zeroconf** (Chromecast, AirPlay, Sonos,
|
||||
Drucker, NAS …), **SSDP/UPnP + DIAL** (Smart-TVs, Fire TV) und der **ARP-Tabelle**
|
||||
(rohe Hosts). Meldet ARIA ein Live-Inventar.
|
||||
- **Hände (Steuerung):** **DIAL-App-Launch** (z.B. YouTube-Video auf dem Fire TV),
|
||||
**Wake-on-LAN**, generisches **HTTP**. Nur wenn freigeschaltet (siehe Sicherheit).
|
||||
|
||||
## ⚠️ Wichtig: der Satellit MUSS im echten Ziel-LAN laufen
|
||||
|
||||
Discovery (mDNS/SSDP-Multicast + ARP) funktioniert **nur**, wenn der Prozess
|
||||
tatsächlich im selben LAN wie die Geräte hängt — z.B. `192.168.177.0/24`, wo der
|
||||
Fire TV steht.
|
||||
|
||||
**Docker Desktop (Mac/Windows) geht NICHT.** Dort ist `network_mode: host` das Netz
|
||||
der Docker-Linux-VM (NAT, `192.168.65.x` / `172.x`), **nicht** dein echtes LAN.
|
||||
Der Satellit sieht dann nur Docker-Container statt der echten Geräte. (Der Satellit
|
||||
erkennt das selbst und meldet eine ⚠-Warnung im Diagnostic + Log.)
|
||||
|
||||
Richtig deployen — zwei Wege:
|
||||
|
||||
**A) Linux-Box im Ziel-LAN mit Docker Engine** (empfohlen, z.B. Raspberry Pi / NUC im Büro):
|
||||
```bash
|
||||
cd satellite
|
||||
cp .env.example .env # RVS-Zugang + SATELLITE_LOCATION
|
||||
docker compose up -d --build
|
||||
docker compose logs -f # "Netz: primary_ip=192.168.177.x" + "[scan] N Geraete"
|
||||
```
|
||||
`network_mode: host` (schon gesetzt) gibt hier echtes LAN + Multicast.
|
||||
|
||||
**B) Nativ als Python-Prozess** (für Mac/Windows-Test oder ohne Docker) — läuft direkt
|
||||
auf einer Maschine im Ziel-LAN. Das Script lädt die `.env` **selbst** (muss im
|
||||
`satellite/`-Ordner liegen):
|
||||
```bash
|
||||
cd satellite
|
||||
cp .env.example .env # RVS-Zugang + SATELLITE_LOCATION eintragen
|
||||
pip install -r requirements.txt
|
||||
python satellite.py # liest .env automatisch
|
||||
```
|
||||
(Echte Umgebungsvariablen haben Vorrang — `export RVS_TOKEN=...` überschreibt die
|
||||
`.env`, falls du das lieber magst.)
|
||||
|
||||
`RVS_HOST/PORT/TLS/TOKEN` **identisch** zum Haupt-Stack (gleicher Raum, damit ARIA
|
||||
den Satelliten erreicht). `SATELLITE_LOCATION` ist der Name, über den ARIA das Netz
|
||||
anspricht („Büro").
|
||||
|
||||
**Kontrolle:** im Log/Diagnostic muss `primary_ip` im Ziel-LAN liegen
|
||||
(`192.168.177.x`) — steht da `192.168.65.x` oder `172.x`, sitzt der Satellit im
|
||||
falschen (Docker-)Netz.
|
||||
|
||||
## Als Dienst installieren (Autostart, ohne Docker)
|
||||
|
||||
Legt automatisch ein `.venv` an, installiert die Requirements und richtet einen
|
||||
Dienst ein, der bei Boot startet und bei Absturz neu hochkommt. `.env` vorher
|
||||
anlegen.
|
||||
|
||||
**Linux (systemd) / macOS (launchd):**
|
||||
```bash
|
||||
cd satellite
|
||||
bash install.sh # installieren + starten
|
||||
bash install.sh uninstall # entfernen
|
||||
```
|
||||
- Linux-Logs: `journalctl -u aria-satellite -f`
|
||||
- macOS-Logs: `tail -f satellite.log` (evtl. „Lokales Netzwerk"-Zugriff erlauben)
|
||||
|
||||
**Windows (Scheduled Task) — PowerShell als Administrator:**
|
||||
```powershell
|
||||
cd satellite
|
||||
powershell -ExecutionPolicy Bypass -File install.ps1 # installieren + starten
|
||||
powershell -ExecutionPolicy Bypass -File install.ps1 -Uninstall # entfernen
|
||||
```
|
||||
- Log: `Get-Content -Wait satellite.log`
|
||||
|
||||
## So nutzt ARIA es
|
||||
|
||||
ARIA hat drei Brain-Tools:
|
||||
- `satellite_list` — welche Netze/Satelliten sind online + was können sie.
|
||||
- `satellite_devices(satellite)` — Inventar eines Netzes.
|
||||
- `satellite_command(satellite, device, action, params)` — Aktion ausführen.
|
||||
|
||||
Beispiel „YouTube-Video auf dem Büro-Stick":
|
||||
```
|
||||
satellite_command(satellite="Büro", device="Fire TV",
|
||||
action="dial.launch", params={"app":"YouTube","v":"<videoId>"})
|
||||
```
|
||||
|
||||
## Sicherheit
|
||||
|
||||
Der Satellit scannt ein Netz **und** ist über einen Cloud-Relay erreichbar — deshalb:
|
||||
|
||||
- Reagiert **nur** auf den eigenen RVS-Raum (Token).
|
||||
- **`CONTROL_ENABLED=false`** = reiner Info-Satellit (steuert nichts). Standard-sicher.
|
||||
- Bei `true`: nur Aktionen aus **`CONTROL_ALLOWLIST`**, alles andere wird abgelehnt.
|
||||
- Jede ausgeführte Aktion wird **geloggt**.
|
||||
- Keine offenen Ports — reiner Client.
|
||||
|
||||
Empfehlung: in vertrauenswürdigen Netzen `CONTROL_ENABLED=true` mit enger Allowlist;
|
||||
sonst `false` und nur beobachten.
|
||||
@@ -0,0 +1,23 @@
|
||||
# ARIA Satellit — eigenstaendiger Stack fuer ein fremdes Netz (Buero, Werkstatt …).
|
||||
#
|
||||
# Deploy:
|
||||
# cd satellite
|
||||
# cp .env.example .env # RVS-Zugang + SATELLITE_LOCATION eintragen
|
||||
# docker compose up -d --build
|
||||
#
|
||||
# WICHTIG: network_mode: host — der Satellit MUSS im Host-Netz laufen, sonst
|
||||
# sieht er die mDNS/SSDP-Broadcasts + Geraete-IPs des LAN nicht (Docker-Bridge
|
||||
# wuerde das isolieren). Damit ist er zugleich als RVS-Client raus ins Internet
|
||||
# verbunden. Keine Ports zu veroeffentlichen — er ist reiner Client.
|
||||
#
|
||||
# ⚠ NUR auf LINUX Docker Engine, und der Host muss physisch im Ziel-LAN haengen!
|
||||
# Docker Desktop (Mac/Windows) gibt hier NUR das Docker-VM-Netz (192.168.65.x /
|
||||
# 172.x), NICHT dein echtes LAN → Discovery findet dann nur Docker-Container.
|
||||
# Fuer Mac/Windows: satellite.py nativ starten (siehe README, Weg B).
|
||||
services:
|
||||
satellite:
|
||||
build: .
|
||||
container_name: aria-satellite
|
||||
network_mode: host
|
||||
env_file: .env
|
||||
restart: unless-stopped
|
||||
@@ -0,0 +1,87 @@
|
||||
<#
|
||||
ARIA Satellit — Dienst-Installer fuer Windows (Scheduled Task, Autostart + Restart).
|
||||
|
||||
powershell -ExecutionPolicy Bypass -File install.ps1 installiert + startet
|
||||
powershell -ExecutionPolicy Bypass -File install.ps1 -Uninstall entfernt den Task
|
||||
|
||||
Legt ein venv (.venv) an, installiert requirements.txt und richtet einen
|
||||
geplanten Task ein, der satellite.py aus DIESEM Ordner startet (findet die .env)
|
||||
und bei Absturz/Neustart wieder hochkommt. Laeuft als aktueller Nutzer (S4U),
|
||||
auch ohne Anmeldung. Als Administrator ausfuehren.
|
||||
|
||||
WICHTIG: Der Satellit muss im ECHTEN Ziel-LAN laufen (siehe README) — auf einer
|
||||
Maschine, die physisch im Netz der Geraete haengt. Docker Desktop taugt nicht.
|
||||
#>
|
||||
param([switch]$Uninstall)
|
||||
|
||||
$ErrorActionPreference = "Stop"
|
||||
$Dir = Split-Path -Parent $MyInvocation.MyCommand.Path
|
||||
$Task = "ARIA-Satellite"
|
||||
|
||||
# ─── Uninstall ──────────────────────────────────────────────────────
|
||||
if ($Uninstall) {
|
||||
if (Get-ScheduledTask -TaskName $Task -ErrorAction SilentlyContinue) {
|
||||
Unregister-ScheduledTask -TaskName $Task -Confirm:$false
|
||||
Write-Host "Task '$Task' entfernt."
|
||||
} else {
|
||||
Write-Host "Kein Task '$Task' gefunden."
|
||||
}
|
||||
exit 0
|
||||
}
|
||||
|
||||
# ─── Admin-Check ────────────────────────────────────────────────────
|
||||
$isAdmin = ([Security.Principal.WindowsPrincipal] `
|
||||
[Security.Principal.WindowsIdentity]::GetCurrent()
|
||||
).IsInRole([Security.Principal.WindowsBuiltInRole]::Administrator)
|
||||
if (-not $isAdmin) {
|
||||
Write-Warning "Bitte als Administrator ausfuehren (Rechtsklick PowerShell -> Als Administrator)."
|
||||
exit 1
|
||||
}
|
||||
|
||||
# ─── Python finden ──────────────────────────────────────────────────
|
||||
$py = (Get-Command python -ErrorAction SilentlyContinue).Source
|
||||
if (-not $py) { $py = (Get-Command python3 -ErrorAction SilentlyContinue).Source }
|
||||
if (-not $py) { Write-Error "Python 3 nicht gefunden. Bitte von python.org installieren (mit 'Add to PATH')."; exit 1 }
|
||||
|
||||
# ─── venv + Abhaengigkeiten ─────────────────────────────────────────
|
||||
if (-not (Test-Path "$Dir\.venv")) {
|
||||
Write-Host "[install] Lege venv an ..."
|
||||
& $py -m venv "$Dir\.venv"
|
||||
}
|
||||
$venvPy = "$Dir\.venv\Scripts\python.exe"
|
||||
Write-Host "[install] Installiere Abhaengigkeiten ..."
|
||||
& $venvPy -m pip install --upgrade pip | Out-Null
|
||||
& $venvPy -m pip install -r "$Dir\requirements.txt"
|
||||
|
||||
if (-not (Test-Path "$Dir\.env")) {
|
||||
Write-Warning "Keine .env gefunden - bitte anlegen: copy .env.example .env (RVS-Zugang + SATELLITE_LOCATION)"
|
||||
}
|
||||
|
||||
# ─── Scheduled Task ─────────────────────────────────────────────────
|
||||
Write-Host "[install] Richte geplanten Task '$Task' ein ..."
|
||||
# Ueber cmd starten, damit stdout/stderr in satellite.log landen (der Task laeuft
|
||||
# in Session 0 / S4U = kein sichtbares Fenster, python.exe ist hier ok).
|
||||
$logfile = Join-Path $Dir "satellite.log"
|
||||
$cmdArg = '/c ""{0}" satellite.py >> "{1}" 2>&1"' -f $venvPy, $logfile
|
||||
$action = New-ScheduledTaskAction -Execute "cmd.exe" -Argument $cmdArg -WorkingDirectory $Dir
|
||||
$trigger = @(
|
||||
New-ScheduledTaskTrigger -AtStartup
|
||||
New-ScheduledTaskTrigger -AtLogOn
|
||||
)
|
||||
# Laeuft als aktueller Nutzer, auch ohne Anmeldung (S4U), mit hoechsten Rechten.
|
||||
$principal = New-ScheduledTaskPrincipal -UserId "$env:USERDOMAIN\$env:USERNAME" `
|
||||
-LogonType S4U -RunLevel Highest
|
||||
# Bei Absturz neu starten, unbegrenzte Laufzeit, startet nach falls Zeitpunkt verpasst, versteckt.
|
||||
$settings = New-ScheduledTaskSettingsSet -StartWhenAvailable -Hidden `
|
||||
-RestartCount 999 -RestartInterval (New-TimeSpan -Minutes 1) `
|
||||
-ExecutionTimeLimit (New-TimeSpan -Seconds 0) `
|
||||
-MultipleInstances IgnoreNew
|
||||
|
||||
Register-ScheduledTask -TaskName $Task -Action $action -Trigger $trigger `
|
||||
-Principal $principal -Settings $settings -Force | Out-Null
|
||||
|
||||
Start-ScheduledTask -TaskName $Task
|
||||
Write-Host "OK Dienst laeuft."
|
||||
Write-Host " Status: Get-ScheduledTask -TaskName $Task"
|
||||
Write-Host " Stoppen: Stop-ScheduledTask -TaskName $Task"
|
||||
Write-Host " Log: Get-Content -Wait '$logfile' (pruefen: primary_ip + '[scan] N Geraete')"
|
||||
Executable
+119
@@ -0,0 +1,119 @@
|
||||
#!/usr/bin/env bash
|
||||
#
|
||||
# ARIA Satellit — Dienst-Installer fuer Linux (systemd) und macOS (launchd).
|
||||
#
|
||||
# bash install.sh installiert + startet den Dienst
|
||||
# bash install.sh uninstall entfernt den Dienst
|
||||
#
|
||||
# Legt ein venv an (.venv), installiert requirements.txt und richtet einen
|
||||
# Autostart-Dienst ein, der satellite.py aus DIESEM Ordner startet (damit die
|
||||
# .env gefunden wird) und bei Absturz neu startet.
|
||||
#
|
||||
# WICHTIG: Der Satellit muss im ECHTEN Ziel-LAN laufen (siehe README) — auf einer
|
||||
# Maschine, die physisch im Netz der Geraete haengt. Docker Desktop taugt nicht.
|
||||
set -euo pipefail
|
||||
|
||||
DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)"
|
||||
SVC="aria-satellite"
|
||||
PLIST_LABEL="de.aria.satellite"
|
||||
OS="$(uname -s)"
|
||||
ACTION="${1:-install}"
|
||||
|
||||
# ─── Uninstall ──────────────────────────────────────────────────────
|
||||
if [ "$ACTION" = "uninstall" ]; then
|
||||
if [ "$OS" = "Linux" ]; then
|
||||
SUDO=""; [ "$(id -u)" -ne 0 ] && SUDO="sudo"
|
||||
$SUDO systemctl disable --now "$SVC" 2>/dev/null || true
|
||||
$SUDO rm -f "/etc/systemd/system/$SVC.service"
|
||||
$SUDO systemctl daemon-reload
|
||||
echo "systemd-Dienst '$SVC' entfernt."
|
||||
elif [ "$OS" = "Darwin" ]; then
|
||||
PLIST="$HOME/Library/LaunchAgents/$PLIST_LABEL.plist"
|
||||
launchctl unload "$PLIST" 2>/dev/null || true
|
||||
rm -f "$PLIST"
|
||||
echo "launchd-Agent '$PLIST_LABEL' entfernt."
|
||||
fi
|
||||
exit 0
|
||||
fi
|
||||
|
||||
# ─── venv + Abhaengigkeiten ─────────────────────────────────────────
|
||||
PY="$(command -v python3 || command -v python || true)"
|
||||
[ -n "$PY" ] || { echo "Python 3 nicht gefunden. Bitte installieren."; exit 1; }
|
||||
|
||||
if [ ! -d "$DIR/.venv" ]; then
|
||||
echo "[install] Lege venv an …"
|
||||
if ! "$PY" -m venv "$DIR/.venv" 2>/dev/null; then
|
||||
echo "venv-Erstellung fehlgeschlagen. Auf Debian/Ubuntu: sudo apt install python3-venv"
|
||||
exit 1
|
||||
fi
|
||||
fi
|
||||
VENV_PY="$DIR/.venv/bin/python"
|
||||
echo "[install] Installiere Abhaengigkeiten …"
|
||||
"$VENV_PY" -m pip install --upgrade pip >/dev/null
|
||||
"$VENV_PY" -m pip install -r "$DIR/requirements.txt"
|
||||
|
||||
if [ ! -f "$DIR/.env" ]; then
|
||||
echo "⚠ Keine .env gefunden — bitte anlegen: cp .env.example .env (RVS-Zugang + SATELLITE_LOCATION)"
|
||||
fi
|
||||
|
||||
# ─── Dienst einrichten ──────────────────────────────────────────────
|
||||
if [ "$OS" = "Linux" ]; then
|
||||
RUN_USER="${SUDO_USER:-$(id -un)}"
|
||||
UNIT="/etc/systemd/system/$SVC.service"
|
||||
SUDO=""; [ "$(id -u)" -ne 0 ] && SUDO="sudo"
|
||||
echo "[install] Schreibe systemd-Unit $UNIT (User=$RUN_USER) …"
|
||||
$SUDO tee "$UNIT" >/dev/null <<EOF
|
||||
[Unit]
|
||||
Description=ARIA Satellit (Netz-Aussenposten)
|
||||
After=network-online.target
|
||||
Wants=network-online.target
|
||||
|
||||
[Service]
|
||||
Type=simple
|
||||
User=$RUN_USER
|
||||
WorkingDirectory=$DIR
|
||||
ExecStart=$VENV_PY $DIR/satellite.py
|
||||
Restart=always
|
||||
RestartSec=5
|
||||
|
||||
[Install]
|
||||
WantedBy=multi-user.target
|
||||
EOF
|
||||
$SUDO systemctl daemon-reload
|
||||
$SUDO systemctl enable --now "$SVC"
|
||||
echo "✅ Dienst laeuft."
|
||||
echo " Status: $SUDO systemctl status $SVC"
|
||||
echo " Logs: $SUDO journalctl -u $SVC -f"
|
||||
|
||||
elif [ "$OS" = "Darwin" ]; then
|
||||
PLIST="$HOME/Library/LaunchAgents/$PLIST_LABEL.plist"
|
||||
mkdir -p "$HOME/Library/LaunchAgents"
|
||||
echo "[install] Schreibe launchd-Agent $PLIST …"
|
||||
cat > "$PLIST" <<EOF
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
|
||||
<plist version="1.0">
|
||||
<dict>
|
||||
<key>Label</key><string>$PLIST_LABEL</string>
|
||||
<key>ProgramArguments</key>
|
||||
<array>
|
||||
<string>$VENV_PY</string>
|
||||
<string>$DIR/satellite.py</string>
|
||||
</array>
|
||||
<key>WorkingDirectory</key><string>$DIR</string>
|
||||
<key>RunAtLoad</key><true/>
|
||||
<key>KeepAlive</key><true/>
|
||||
<key>StandardOutPath</key><string>$DIR/satellite.log</string>
|
||||
<key>StandardErrorPath</key><string>$DIR/satellite.log</string>
|
||||
</dict>
|
||||
</plist>
|
||||
EOF
|
||||
launchctl unload "$PLIST" 2>/dev/null || true
|
||||
launchctl load "$PLIST"
|
||||
echo "✅ Agent geladen."
|
||||
echo " Logs: tail -f $DIR/satellite.log"
|
||||
echo " Hinweis: macOS fragt evtl. nach 'Lokales Netzwerk'-Zugriff — erlauben, sonst findet der Satellit keine Geraete."
|
||||
else
|
||||
echo "Unbekanntes OS: $OS (dieses Skript kann Linux/macOS; fuer Windows: install.ps1)"
|
||||
exit 1
|
||||
fi
|
||||
@@ -0,0 +1,3 @@
|
||||
websockets>=12.0
|
||||
zeroconf>=0.131.0
|
||||
requests>=2.31.0
|
||||
@@ -0,0 +1,668 @@
|
||||
"""
|
||||
ARIA Satellit — Info-/Gateway-Aussenposten in einem fremden Netz.
|
||||
|
||||
Laeuft eigenstaendig (z.B. im Buero) und verbindet sich als RVS-Client in
|
||||
Stefans Raum (gleicher Token). Gibt ARIA damit Augen + Haende in DIESEM Netz:
|
||||
|
||||
Augen: entdeckt Geraete (mDNS/Zeroconf, SSDP/UPnP + DIAL, ARP-Tabelle) und
|
||||
meldet ein Inventar → sat_devices.
|
||||
Haende: steuert Geraete (DIAL-App-Launch z.B. YouTube auf Fire TV, Wake-on-
|
||||
LAN, generisches HTTP) → sat_command / sat_result. Nur wenn
|
||||
CONTROL_ENABLED=true, Aktion in der Allowlist, alles geloggt.
|
||||
|
||||
Adressierung: mehrere Satelliten haengen im selben RVS-Raum. Jeder hat eine
|
||||
SATELLITE_ID (technisch, eindeutig) + SATELLITE_LOCATION (menschlich, "Buero").
|
||||
ARIA spricht einen Satelliten ueber seine ID/Location an.
|
||||
|
||||
Message-Typen (RVS, Base64/JSON-Relay wie der Rest):
|
||||
raus: sat_hello {id, location, caps, ts}
|
||||
sat_devices {requestId, satellite, devices:[...]}
|
||||
sat_result {requestId, satellite, ok, result|error}
|
||||
rein: sat_discover {satellite?, requestId}
|
||||
sat_command {satellite?, requestId, device, action, params}
|
||||
|
||||
Sicherheit: reagiert nur auf den eigenen RVS-Raum (Token). Commands brauchen
|
||||
CONTROL_ENABLED + Allowlist. Discovery ist read-only. Keine offenen Ports.
|
||||
"""
|
||||
|
||||
from __future__ import annotations
|
||||
|
||||
import asyncio
|
||||
import json
|
||||
import logging
|
||||
import os
|
||||
import re
|
||||
import socket
|
||||
import struct
|
||||
import time
|
||||
from typing import Optional
|
||||
|
||||
import websockets
|
||||
|
||||
logging.basicConfig(
|
||||
level=logging.INFO,
|
||||
format="%(asctime)s [satellite] %(levelname)s %(message)s",
|
||||
)
|
||||
logger = logging.getLogger("satellite")
|
||||
|
||||
|
||||
def _load_dotenv() -> None:
|
||||
"""Laedt eine .env neben dem Script (oder im CWD) in os.environ — fuer den
|
||||
NATIVEN Start (`python satellite.py`). In Docker sind die Variablen via
|
||||
env_file schon gesetzt; bereits gesetzte Werte gewinnen (werden NICHT
|
||||
ueberschrieben). Kein python-dotenv noetig."""
|
||||
here = os.path.dirname(os.path.abspath(__file__))
|
||||
for path in (os.path.join(here, ".env"), os.path.join(os.getcwd(), ".env")):
|
||||
if not os.path.isfile(path):
|
||||
continue
|
||||
try:
|
||||
with open(path, "r", encoding="utf-8") as f:
|
||||
for line in f:
|
||||
line = line.strip()
|
||||
if not line or line.startswith("#") or "=" not in line:
|
||||
continue
|
||||
key, _, val = line.partition("=")
|
||||
key = key.strip()
|
||||
if key.startswith("export "):
|
||||
key = key[len("export "):].strip()
|
||||
val = val.strip()
|
||||
if val[:1] in ("'", '"'):
|
||||
# Gequotet: Inhalt bis zum schliessenden Quote, Rest (Kommentar) egal.
|
||||
q = val[0]
|
||||
end = val.find(q, 1)
|
||||
val = val[1:end] if end != -1 else val[1:]
|
||||
else:
|
||||
# Ungequotet: Inline-Kommentar (Whitespace + #) abschneiden.
|
||||
m = re.search(r"\s+#", val)
|
||||
if m:
|
||||
val = val[:m.start()]
|
||||
val = val.strip()
|
||||
if key and key not in os.environ:
|
||||
os.environ[key] = val
|
||||
except Exception as exc:
|
||||
logging.getLogger("satellite").warning(".env laden fehlgeschlagen (%s): %s", path, exc)
|
||||
break # erste gefundene .env gewinnt
|
||||
|
||||
|
||||
_load_dotenv()
|
||||
|
||||
|
||||
# ─── Konfiguration ──────────────────────────────────────────────────
|
||||
|
||||
def _env_bool(name: str, default: bool) -> bool:
|
||||
v = os.environ.get(name)
|
||||
if v is None:
|
||||
return default
|
||||
return v.strip().lower() in ("1", "true", "yes", "on", "ja")
|
||||
|
||||
|
||||
def _default_id() -> str:
|
||||
host = socket.gethostname() or "satellite"
|
||||
slug = re.sub(r"[^a-zA-Z0-9_-]+", "-", host).strip("-").lower()
|
||||
return slug or "satellite"
|
||||
|
||||
|
||||
RVS_HOST = os.environ.get("RVS_HOST", "")
|
||||
RVS_PORT = int(os.environ.get("RVS_PORT", "443") or "443")
|
||||
RVS_TLS = _env_bool("RVS_TLS", True)
|
||||
RVS_TOKEN = os.environ.get("RVS_TOKEN", "")
|
||||
|
||||
SATELLITE_ID = (os.environ.get("SATELLITE_ID") or _default_id()).strip()
|
||||
SATELLITE_LOCATION = (os.environ.get("SATELLITE_LOCATION") or SATELLITE_ID).strip()
|
||||
|
||||
CONTROL_ENABLED = _env_bool("CONTROL_ENABLED", False)
|
||||
CONTROL_ALLOWLIST = [
|
||||
a.strip() for a in
|
||||
os.environ.get("CONTROL_ALLOWLIST", "dial.launch,wol,http.get").split(",")
|
||||
if a.strip()
|
||||
]
|
||||
|
||||
SCAN_INTERVAL_SEC = int(os.environ.get("SCAN_INTERVAL_SEC", "300") or "300")
|
||||
DISCOVER_TIMEOUT_SEC = float(os.environ.get("DISCOVER_TIMEOUT_SEC", "6") or "6")
|
||||
DEVICE_CACHE_TTL_SEC = int(os.environ.get("DEVICE_CACHE_TTL_SEC", "120") or "120")
|
||||
|
||||
HEARTBEAT_SEC = 25
|
||||
|
||||
# mDNS-Servicetypen, die fuer ARIA interessant sind.
|
||||
MDNS_TYPES = [
|
||||
"_googlecast._tcp.local.", # Chromecast / Google TV / Nest
|
||||
"_airplay._tcp.local.", # Apple TV / AirPlay
|
||||
"_raop._tcp.local.", # AirPlay-Audio
|
||||
"_spotify-connect._tcp.local.", # Spotify-Geraete
|
||||
"_sonos._tcp.local.", # Sonos
|
||||
"_hap._tcp.local.", # HomeKit
|
||||
"_printer._tcp.local.", # Drucker
|
||||
"_ipp._tcp.local.", # Drucker (IPP)
|
||||
"_smb._tcp.local.", # NAS / Fileshares
|
||||
"_workstation._tcp.local.", # generische Hosts
|
||||
"_http._tcp.local.", # Web-UIs (Router, NAS, IoT)
|
||||
]
|
||||
|
||||
CAPABILITIES = ["discover"]
|
||||
if CONTROL_ENABLED:
|
||||
CAPABILITIES += CONTROL_ALLOWLIST
|
||||
|
||||
|
||||
# ─── Netz-Kontext / Selbstdiagnose ──────────────────────────────────
|
||||
|
||||
def _in_docker_bridge(ip: str) -> bool:
|
||||
# Docker-Default-Bridge-Range 172.16.0.0/12
|
||||
try:
|
||||
a, b = ip.split(".")[:2]
|
||||
return a == "172" and 16 <= int(b) <= 31
|
||||
except Exception:
|
||||
return False
|
||||
|
||||
|
||||
def _net_context() -> dict:
|
||||
"""Ermittelt in welchem Netz der Satellit LAeUFT — und warnt, wenn das ein
|
||||
Docker-/NAT-Netz ist (dann erreicht Discovery das echte LAN nicht)."""
|
||||
ips: list[str] = []
|
||||
primary = ""
|
||||
try:
|
||||
s = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
|
||||
s.settimeout(1)
|
||||
s.connect(("8.8.8.8", 80))
|
||||
primary = s.getsockname()[0]
|
||||
s.close()
|
||||
except Exception:
|
||||
pass
|
||||
try:
|
||||
for info in socket.getaddrinfo(socket.gethostname(), None, socket.AF_INET):
|
||||
ip = info[4][0]
|
||||
if ip and not ip.startswith("127.") and ip not in ips:
|
||||
ips.append(ip)
|
||||
except Exception:
|
||||
pass
|
||||
if primary and primary not in ips:
|
||||
ips.insert(0, primary)
|
||||
p = primary or (ips[0] if ips else "")
|
||||
warning = ""
|
||||
if p.startswith("192.168.65.") or _in_docker_bridge(p):
|
||||
warning = (f"Satellit laeuft in einem Docker-/NAT-Netz ({p}), NICHT im echten LAN. "
|
||||
"mDNS/SSDP erreichen die realen Geraete so nicht. Auf Docker Desktop "
|
||||
"(Mac/Windows) geht LAN-Discovery nicht — den Satelliten NATIV (python "
|
||||
"satellite.py) oder auf einem Linux-Host im Ziel-LAN betreiben.")
|
||||
return {"primary_ip": p, "ips": ips, "warning": warning}
|
||||
|
||||
|
||||
NET = _net_context()
|
||||
|
||||
|
||||
# ─── Discovery ──────────────────────────────────────────────────────
|
||||
|
||||
def _discover_mdns(timeout: float) -> list[dict]:
|
||||
"""Blockierend (im Executor): mDNS/Zeroconf-Sweep ueber MDNS_TYPES."""
|
||||
out: dict[str, dict] = {}
|
||||
try:
|
||||
from zeroconf import Zeroconf, ServiceBrowser
|
||||
except Exception as exc:
|
||||
logger.warning("zeroconf nicht verfuegbar: %s", exc)
|
||||
return []
|
||||
|
||||
class _Listener:
|
||||
def add_service(self, zc, type_, name):
|
||||
try:
|
||||
info = zc.get_service_info(type_, name, timeout=2000)
|
||||
except Exception:
|
||||
info = None
|
||||
if not info:
|
||||
return
|
||||
ips = []
|
||||
try:
|
||||
for addr in info.parsed_addresses():
|
||||
ips.append(addr)
|
||||
except Exception:
|
||||
pass
|
||||
props = {}
|
||||
try:
|
||||
for k, v in (info.properties or {}).items():
|
||||
try:
|
||||
props[k.decode("utf-8", "ignore")] = (
|
||||
v.decode("utf-8", "ignore") if isinstance(v, (bytes, bytearray)) else v)
|
||||
except Exception:
|
||||
pass
|
||||
except Exception:
|
||||
pass
|
||||
friendly = name.split("." + type_.split(".", 1)[0])[0].strip(".")
|
||||
fn = props.get("fn") or props.get("friendlyName") or friendly
|
||||
dev_id = _slug(f"{fn}-{ips[0] if ips else name}")
|
||||
out[dev_id] = {
|
||||
"id": dev_id,
|
||||
"name": fn,
|
||||
"type": _mdns_kind(type_),
|
||||
"ip": ips[0] if ips else "",
|
||||
"port": info.port,
|
||||
"via": "mdns",
|
||||
"service": type_,
|
||||
"model": props.get("md") or props.get("model") or "",
|
||||
}
|
||||
|
||||
def update_service(self, *a):
|
||||
pass
|
||||
|
||||
def remove_service(self, *a):
|
||||
pass
|
||||
|
||||
zc = None
|
||||
try:
|
||||
zc = Zeroconf()
|
||||
listener = _Listener()
|
||||
for t in MDNS_TYPES:
|
||||
try:
|
||||
ServiceBrowser(zc, t, listener)
|
||||
except Exception:
|
||||
pass
|
||||
time.sleep(timeout)
|
||||
except Exception as exc:
|
||||
logger.warning("mDNS-Sweep-Fehler: %s", exc)
|
||||
finally:
|
||||
try:
|
||||
if zc:
|
||||
zc.close()
|
||||
except Exception:
|
||||
pass
|
||||
return list(out.values())
|
||||
|
||||
|
||||
def _mdns_kind(service_type: str) -> str:
|
||||
m = {
|
||||
"_googlecast": "cast", "_airplay": "airplay", "_raop": "airplay-audio",
|
||||
"_spotify-connect": "spotify", "_sonos": "sonos", "_hap": "homekit",
|
||||
"_printer": "printer", "_ipp": "printer", "_smb": "fileshare",
|
||||
"_workstation": "host", "_http": "web",
|
||||
}
|
||||
for k, v in m.items():
|
||||
if service_type.startswith(k):
|
||||
return v
|
||||
return "unknown"
|
||||
|
||||
|
||||
def _discover_ssdp(timeout: float) -> list[dict]:
|
||||
"""Blockierend: SSDP M-SEARCH (UPnP + DIAL). Liefert v.a. Smart-TVs / Fire
|
||||
TV mit ihrer DIAL Application-URL (fuer App-Launch wie YouTube)."""
|
||||
out: dict[str, dict] = {}
|
||||
targets = [
|
||||
"urn:dial-multiscreen-org:service:dial:1",
|
||||
"ssdp:all",
|
||||
]
|
||||
for st in targets:
|
||||
msg = (
|
||||
"M-SEARCH * HTTP/1.1\r\n"
|
||||
"HOST: 239.255.255.250:1900\r\n"
|
||||
'MAN: "ssdp:discover"\r\n'
|
||||
"MX: 2\r\n"
|
||||
f"ST: {st}\r\n\r\n"
|
||||
).encode("utf-8")
|
||||
sock = None
|
||||
try:
|
||||
sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM, socket.IPPROTO_UDP)
|
||||
sock.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
|
||||
sock.setsockopt(socket.IPPROTO_IP, socket.IP_MULTICAST_TTL, 2)
|
||||
sock.settimeout(timeout)
|
||||
sock.sendto(msg, ("239.255.255.250", 1900))
|
||||
deadline = time.time() + timeout
|
||||
while time.time() < deadline:
|
||||
try:
|
||||
data, addr = sock.recvfrom(65507)
|
||||
except socket.timeout:
|
||||
break
|
||||
except Exception:
|
||||
break
|
||||
headers = _parse_http_headers(data.decode("utf-8", "ignore"))
|
||||
location = headers.get("location", "")
|
||||
dial_app = headers.get("application-url", "")
|
||||
ip = addr[0]
|
||||
dev = _fetch_upnp_description(location) if location else {}
|
||||
name = dev.get("name") or headers.get("server", "") or ip
|
||||
dev_id = _slug(f"{name}-{ip}")
|
||||
entry = out.get(dev_id, {
|
||||
"id": dev_id, "name": name, "type": "media-renderer",
|
||||
"ip": ip, "via": "ssdp",
|
||||
})
|
||||
if dev.get("name"):
|
||||
entry["name"] = dev["name"]
|
||||
if dev.get("model"):
|
||||
entry["model"] = dev["model"]
|
||||
if dev.get("manufacturer"):
|
||||
entry["manufacturer"] = dev["manufacturer"]
|
||||
if dial_app or dev.get("dialAppUrl"):
|
||||
entry["dialAppUrl"] = dial_app or dev.get("dialAppUrl")
|
||||
entry["type"] = "dial"
|
||||
out[dev_id] = entry
|
||||
except Exception as exc:
|
||||
logger.debug("SSDP (%s) Fehler: %s", st, exc)
|
||||
finally:
|
||||
try:
|
||||
if sock:
|
||||
sock.close()
|
||||
except Exception:
|
||||
pass
|
||||
return list(out.values())
|
||||
|
||||
|
||||
def _fetch_upnp_description(location: str) -> dict:
|
||||
try:
|
||||
import requests
|
||||
r = requests.get(location, timeout=3)
|
||||
dial_app = r.headers.get("Application-URL", "")
|
||||
xml = r.text
|
||||
name = _xml_tag(xml, "friendlyName")
|
||||
model = _xml_tag(xml, "modelName")
|
||||
manuf = _xml_tag(xml, "manufacturer")
|
||||
return {"name": name, "model": model, "manufacturer": manuf, "dialAppUrl": dial_app}
|
||||
except Exception:
|
||||
return {}
|
||||
|
||||
|
||||
def _discover_arp() -> list[dict]:
|
||||
"""Rohe Host-Liste aus der ARP-Tabelle (kein aktiver Scan)."""
|
||||
out = []
|
||||
try:
|
||||
with open("/proc/net/arp", "r", encoding="utf-8") as f:
|
||||
lines = f.read().splitlines()[1:]
|
||||
for ln in lines:
|
||||
parts = ln.split()
|
||||
if len(parts) < 4:
|
||||
continue
|
||||
ip, _hw, _flags, mac = parts[0], parts[1], parts[2], parts[3]
|
||||
if mac == "00:00:00:00:00:00":
|
||||
continue
|
||||
out.append({
|
||||
"id": _slug(f"host-{ip}"), "name": ip, "type": "host",
|
||||
"ip": ip, "mac": mac, "via": "arp",
|
||||
})
|
||||
except Exception:
|
||||
pass
|
||||
return out
|
||||
|
||||
|
||||
def _merge_devices(*lists) -> list[dict]:
|
||||
"""Fuehrt Geraetelisten zusammen, dedupt per IP (reichere Quelle gewinnt)."""
|
||||
by_ip: dict[str, dict] = {}
|
||||
loose: list[dict] = []
|
||||
order = {"mdns": 3, "ssdp": 2, "arp": 1}
|
||||
for lst in lists:
|
||||
for d in lst:
|
||||
ip = d.get("ip") or ""
|
||||
if not ip:
|
||||
loose.append(d)
|
||||
continue
|
||||
cur = by_ip.get(ip)
|
||||
if not cur:
|
||||
by_ip[ip] = d
|
||||
else:
|
||||
# bessere Quelle / mehr Felder → mergen
|
||||
merged = {**d, **{k: v for k, v in cur.items() if v}}
|
||||
if order.get(d.get("via"), 0) >= order.get(cur.get("via"), 0):
|
||||
merged.update({k: v for k, v in d.items() if v})
|
||||
# DIAL-URL / mac aus beiden behalten
|
||||
for key in ("dialAppUrl", "mac", "model", "manufacturer"):
|
||||
merged[key] = d.get(key) or cur.get(key) or merged.get(key)
|
||||
by_ip[ip] = {k: v for k, v in merged.items() if v not in (None, "")}
|
||||
return list(by_ip.values()) + loose
|
||||
|
||||
|
||||
# ─── Control ────────────────────────────────────────────────────────
|
||||
|
||||
async def _control(action: str, params: dict, devices: list[dict]) -> dict:
|
||||
"""Fuehrt eine Steuer-Aktion aus. Guards: CONTROL_ENABLED + Allowlist."""
|
||||
if not CONTROL_ENABLED:
|
||||
return {"ok": False, "error": "Steuerung ist an diesem Satelliten deaktiviert (CONTROL_ENABLED=false)."}
|
||||
if action not in CONTROL_ALLOWLIST:
|
||||
return {"ok": False, "error": f"Aktion '{action}' nicht erlaubt (Allowlist: {', '.join(CONTROL_ALLOWLIST)})."}
|
||||
logger.info("[control] %s params=%s", action, {k: str(v)[:60] for k, v in (params or {}).items()})
|
||||
loop = asyncio.get_event_loop()
|
||||
try:
|
||||
if action == "dial.launch":
|
||||
return await loop.run_in_executor(None, _do_dial_launch, params, devices)
|
||||
if action == "wol":
|
||||
return await loop.run_in_executor(None, _do_wol, params)
|
||||
if action in ("http.get", "http.post"):
|
||||
return await loop.run_in_executor(None, _do_http, action, params)
|
||||
return {"ok": False, "error": f"Aktion '{action}' nicht implementiert."}
|
||||
except Exception as exc:
|
||||
return {"ok": False, "error": f"{action} fehlgeschlagen: {exc}"}
|
||||
|
||||
|
||||
def _find_device(devices: list[dict], ref: str) -> Optional[dict]:
|
||||
ref = (ref or "").strip().lower()
|
||||
if not ref:
|
||||
return None
|
||||
for d in devices:
|
||||
if d.get("id", "").lower() == ref or d.get("ip", "") == ref:
|
||||
return d
|
||||
for d in devices:
|
||||
if ref in (d.get("name", "").lower()):
|
||||
return d
|
||||
return None
|
||||
|
||||
|
||||
def _do_dial_launch(params: dict, devices: list[dict]) -> dict:
|
||||
"""DIAL-App-Launch, z.B. YouTube-Video auf Fire TV / Smart-TV.
|
||||
params: {device, app='YouTube', v=<videoId> (oder beliebige app-params)}"""
|
||||
import requests
|
||||
ref = params.get("device") or ""
|
||||
dev = _find_device(devices, ref)
|
||||
app_url = (dev or {}).get("dialAppUrl") if dev else params.get("dialAppUrl")
|
||||
if not app_url:
|
||||
return {"ok": False, "error": f"Kein DIAL-Geraet fuer '{ref}' gefunden (oder keine Application-URL)."}
|
||||
app = params.get("app") or "YouTube"
|
||||
# app-Parameter (alles ausser device/app) als form-urlencoded Body.
|
||||
body = {k: v for k, v in (params or {}).items() if k not in ("device", "app", "dialAppUrl")}
|
||||
url = app_url.rstrip("/") + "/" + app
|
||||
r = requests.post(url, data=body, timeout=5)
|
||||
ok = r.status_code in (200, 201)
|
||||
return {"ok": ok, "result": f"DIAL {app} → {(dev or {}).get('name', ref)} (HTTP {r.status_code})"
|
||||
if ok else None,
|
||||
"error": None if ok else f"DIAL-Launch HTTP {r.status_code}: {r.text[:120]}"}
|
||||
|
||||
|
||||
def _do_wol(params: dict) -> dict:
|
||||
mac = (params.get("mac") or "").strip()
|
||||
if not re.match(r"^([0-9A-Fa-f]{2}[:-]){5}[0-9A-Fa-f]{2}$", mac):
|
||||
return {"ok": False, "error": f"Ungueltige MAC: {mac!r}"}
|
||||
clean = re.sub(r"[:-]", "", mac)
|
||||
packet = b"\xff" * 6 + bytes.fromhex(clean) * 16
|
||||
s = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
|
||||
s.setsockopt(socket.SOL_SOCKET, socket.SO_BROADCAST, 1)
|
||||
s.sendto(packet, ("255.255.255.255", 9))
|
||||
s.close()
|
||||
return {"ok": True, "result": f"Wake-on-LAN an {mac} gesendet."}
|
||||
|
||||
|
||||
def _do_http(action: str, params: dict) -> dict:
|
||||
import requests
|
||||
url = params.get("url") or ""
|
||||
if not url.startswith(("http://", "https://")):
|
||||
return {"ok": False, "error": "url (http/https) erforderlich."}
|
||||
method = "GET" if action == "http.get" else "POST"
|
||||
r = requests.request(method, url, data=params.get("body"),
|
||||
headers=params.get("headers"), timeout=6)
|
||||
return {"ok": True, "result": {"status": r.status_code, "body": r.text[:2000]}}
|
||||
|
||||
|
||||
# ─── Helpers ────────────────────────────────────────────────────────
|
||||
|
||||
def _slug(s: str) -> str:
|
||||
s = (s or "").strip().lower()
|
||||
s = re.sub(r"[^a-z0-9]+", "-", s).strip("-")
|
||||
return s or "dev"
|
||||
|
||||
|
||||
def _parse_http_headers(text: str) -> dict:
|
||||
headers = {}
|
||||
for line in text.split("\r\n")[1:]:
|
||||
if ":" in line:
|
||||
k, _, v = line.partition(":")
|
||||
headers[k.strip().lower()] = v.strip()
|
||||
return headers
|
||||
|
||||
|
||||
def _xml_tag(xml: str, tag: str) -> str:
|
||||
m = re.search(rf"<{tag}>(.*?)</{tag}>", xml, re.IGNORECASE | re.DOTALL)
|
||||
return m.group(1).strip() if m else ""
|
||||
|
||||
|
||||
# ─── Satellit (RVS-Client) ──────────────────────────────────────────
|
||||
|
||||
class Satellite:
|
||||
def __init__(self) -> None:
|
||||
self.ws: Optional[websockets.WebSocketClientProtocol] = None
|
||||
self._devices: list[dict] = []
|
||||
self._devices_ts: float = 0.0
|
||||
self._scanning = False
|
||||
|
||||
async def _scan(self, force: bool = False) -> list[dict]:
|
||||
fresh = (time.time() - self._devices_ts) < DEVICE_CACHE_TTL_SEC
|
||||
if self._devices and fresh and not force:
|
||||
return self._devices
|
||||
if self._scanning:
|
||||
# Laufenden Scan abwarten (grob)
|
||||
for _ in range(30):
|
||||
await asyncio.sleep(0.2)
|
||||
if not self._scanning:
|
||||
break
|
||||
return self._devices
|
||||
self._scanning = True
|
||||
try:
|
||||
loop = asyncio.get_event_loop()
|
||||
mdns = await loop.run_in_executor(None, _discover_mdns, DISCOVER_TIMEOUT_SEC)
|
||||
ssdp = await loop.run_in_executor(None, _discover_ssdp, DISCOVER_TIMEOUT_SEC)
|
||||
arp = await loop.run_in_executor(None, _discover_arp)
|
||||
self._devices = _merge_devices(mdns, ssdp, arp)
|
||||
self._devices_ts = time.time()
|
||||
logger.info("[scan] %d Geraete (mdns=%d ssdp=%d arp=%d)",
|
||||
len(self._devices), len(mdns), len(ssdp), len(arp))
|
||||
finally:
|
||||
self._scanning = False
|
||||
return self._devices
|
||||
|
||||
async def _send(self, message: dict) -> None:
|
||||
if self.ws is None:
|
||||
return
|
||||
try:
|
||||
await self.ws.send(json.dumps(message))
|
||||
except Exception as exc:
|
||||
logger.warning("send fehlgeschlagen: %s", exc)
|
||||
|
||||
async def _hello(self, log: bool = False) -> None:
|
||||
await self._send({
|
||||
"type": "sat_hello",
|
||||
"payload": {
|
||||
"id": SATELLITE_ID,
|
||||
"location": SATELLITE_LOCATION,
|
||||
"caps": CAPABILITIES,
|
||||
"control": CONTROL_ENABLED,
|
||||
"net": NET,
|
||||
},
|
||||
"timestamp": int(time.time() * 1000),
|
||||
})
|
||||
if log:
|
||||
logger.info("sat_hello gesendet: id=%s location=%s caps=%s",
|
||||
SATELLITE_ID, SATELLITE_LOCATION, CAPABILITIES)
|
||||
|
||||
def _for_me(self, payload: dict) -> bool:
|
||||
target = (payload.get("satellite") or "").strip().lower()
|
||||
if not target or target in ("all", "*"):
|
||||
return True
|
||||
return target in (SATELLITE_ID.lower(), SATELLITE_LOCATION.lower())
|
||||
|
||||
async def _handle(self, raw: str) -> None:
|
||||
try:
|
||||
msg = json.loads(raw)
|
||||
except Exception:
|
||||
return
|
||||
mtype = msg.get("type", "")
|
||||
payload = msg.get("payload", {}) or {}
|
||||
|
||||
if mtype == "sat_discover":
|
||||
if not self._for_me(payload):
|
||||
return
|
||||
req_id = payload.get("requestId", "")
|
||||
devices = await self._scan(force=bool(payload.get("force")))
|
||||
await self._send({
|
||||
"type": "sat_devices",
|
||||
"payload": {"requestId": req_id, "satellite": SATELLITE_ID,
|
||||
"location": SATELLITE_LOCATION, "devices": devices,
|
||||
"net": NET},
|
||||
"timestamp": int(time.time() * 1000),
|
||||
})
|
||||
|
||||
elif mtype == "sat_command":
|
||||
if not self._for_me(payload):
|
||||
return
|
||||
req_id = payload.get("requestId", "")
|
||||
action = (payload.get("action") or "").strip()
|
||||
params = payload.get("params") or {}
|
||||
if payload.get("device") and "device" not in params:
|
||||
params["device"] = payload.get("device")
|
||||
devices = await self._scan()
|
||||
result = await _control(action, params, devices)
|
||||
await self._send({
|
||||
"type": "sat_result",
|
||||
"payload": {"requestId": req_id, "satellite": SATELLITE_ID, **result},
|
||||
"timestamp": int(time.time() * 1000),
|
||||
})
|
||||
|
||||
async def _periodic_scan(self) -> None:
|
||||
while True:
|
||||
try:
|
||||
await self._scan(force=True)
|
||||
except Exception as exc:
|
||||
logger.warning("periodischer Scan-Fehler: %s", exc)
|
||||
await asyncio.sleep(SCAN_INTERVAL_SEC)
|
||||
|
||||
async def _heartbeat(self) -> None:
|
||||
# Re-announce bei jedem Heartbeat: falls die Bridge NACH uns (neu)
|
||||
# verbindet, lernt sie uns so innerhalb von HEARTBEAT_SEC — RVS replayt
|
||||
# nichts. Haelt zugleich last_seen in der Bridge-Registry frisch.
|
||||
while True:
|
||||
await asyncio.sleep(HEARTBEAT_SEC)
|
||||
await self._send({"type": "heartbeat", "timestamp": int(time.time() * 1000)})
|
||||
await self._hello()
|
||||
|
||||
async def run(self) -> None:
|
||||
if not RVS_HOST or not RVS_TOKEN:
|
||||
logger.error("RVS_HOST und RVS_TOKEN sind Pflicht (siehe .env.example).")
|
||||
return
|
||||
asyncio.create_task(self._periodic_scan())
|
||||
backoff = 1
|
||||
while True:
|
||||
proto = "wss" if RVS_TLS else "ws"
|
||||
url = f"{proto}://{RVS_HOST}:{RVS_PORT}?token={RVS_TOKEN}"
|
||||
try:
|
||||
logger.info("Verbinde mit RVS %s://%s:%s …", proto, RVS_HOST, RVS_PORT)
|
||||
async with websockets.connect(url, max_size=8 * 1024 * 1024,
|
||||
ping_interval=20, ping_timeout=20) as ws:
|
||||
self.ws = ws
|
||||
backoff = 1
|
||||
await self._hello(log=True)
|
||||
hb = asyncio.create_task(self._heartbeat())
|
||||
try:
|
||||
async for raw in ws:
|
||||
await self._handle(raw)
|
||||
finally:
|
||||
hb.cancel()
|
||||
except Exception as exc:
|
||||
logger.warning("RVS-Verbindung verloren: %s", exc)
|
||||
finally:
|
||||
self.ws = None
|
||||
await asyncio.sleep(backoff)
|
||||
backoff = min(backoff * 2, 30)
|
||||
|
||||
|
||||
def main() -> None:
|
||||
logger.info("ARIA Satellit startet — id=%s location=%s control=%s",
|
||||
SATELLITE_ID, SATELLITE_LOCATION, CONTROL_ENABLED)
|
||||
logger.info("Netz: primary_ip=%s alle=%s", NET.get("primary_ip"), NET.get("ips"))
|
||||
if NET.get("warning"):
|
||||
logger.warning("⚠ %s", NET["warning"])
|
||||
try:
|
||||
asyncio.run(Satellite().run())
|
||||
except KeyboardInterrupt:
|
||||
pass
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
+35
-3
@@ -30,7 +30,7 @@ services:
|
||||
reservations:
|
||||
devices:
|
||||
- driver: nvidia
|
||||
count: 1
|
||||
device_ids: ["0"] # TTS → GPU 0 (8 GB; F5 ist klein)
|
||||
capabilities: [gpu]
|
||||
volumes:
|
||||
- ./voices:/voices # WAV + TXT Referenz
|
||||
@@ -63,12 +63,13 @@ services:
|
||||
whisper-bridge:
|
||||
build: ./whisper
|
||||
container_name: aria-whisper-bridge
|
||||
profiles: ["whisper"] # Fallback-STT — startet nur mit --profile whisper
|
||||
deploy:
|
||||
resources:
|
||||
reservations:
|
||||
devices:
|
||||
- driver: nvidia
|
||||
count: 1
|
||||
device_ids: ["1"] # STT/groesstes Modell → GPU 1 (12 GB; spaeter Voxtral-STT-3B ~9 GB)
|
||||
capabilities: [gpu]
|
||||
environment:
|
||||
- RVS_HOST=${RVS_HOST}
|
||||
@@ -108,7 +109,7 @@ services:
|
||||
reservations:
|
||||
devices:
|
||||
- driver: nvidia
|
||||
count: 1
|
||||
device_ids: ["0"] # LLM → GPU 0 (8 GB, teilt sich mit TTS)
|
||||
capabilities: [gpu]
|
||||
volumes:
|
||||
- ./models:/models # HF-Download-Cache (persistent)
|
||||
@@ -137,3 +138,34 @@ services:
|
||||
# Erster Load eines Modells kann ein GGUF ziehen (mehrere GB) — grosszuegig.
|
||||
- LLM_TIMEOUT_SEC=${LLM_TIMEOUT_SEC:-600}
|
||||
restart: unless-stopped
|
||||
|
||||
# ─── Voxtral STT-3B (Transformers, GPU) — DEFAULT-STT ─────────
|
||||
# Ersetzt whisper als STT. Laeuft auf Treiber 550/CUDA 12.4 (torch cu124, KEIN
|
||||
# Treiber-Upgrade noetig). Modell Voxtral-Mini-3B-2507 (~9 GB bf16) → GPU 1.
|
||||
# Startet bei jedem `docker compose up -d`. Whisper ist der opt-in Fallback
|
||||
# (Profil "whisper") — beide zusammen wuerden stt_* doppelt beantworten, also
|
||||
# immer nur EINEN STT laufen lassen.
|
||||
voxtral-bridge:
|
||||
build: ./voxtral
|
||||
container_name: aria-voxtral-bridge
|
||||
deploy:
|
||||
resources:
|
||||
reservations:
|
||||
devices:
|
||||
- driver: nvidia
|
||||
device_ids: ["1"] # 12-GB-Karte (STT-3B ~9 GB); GPU 0 (8 GB) bleibt fuer F5/LLM
|
||||
capabilities: [gpu]
|
||||
volumes:
|
||||
- ./hf-cache:/root/.cache/huggingface # gleicher Modell-Cache wie whisper/f5
|
||||
- ./voice-id:/voice-id # Speaker-Fingerprint (wie whisper)
|
||||
environment:
|
||||
- RVS_HOST=${RVS_HOST}
|
||||
- RVS_PORT=${RVS_PORT:-443}
|
||||
- RVS_TLS=${RVS_TLS:-true}
|
||||
- RVS_TLS_FALLBACK=${RVS_TLS_FALLBACK:-true}
|
||||
- RVS_TOKEN=${RVS_TOKEN}
|
||||
- VOXTRAL_MODEL=mistralai/Voxtral-Mini-3B-2507
|
||||
- VOXTRAL_LANGUAGE=${WHISPER_LANGUAGE:-de}
|
||||
- HUGGING_FACE_HUB_TOKEN=${HF_TOKEN:-} # falls das Modell HF-gated ist
|
||||
- PYTORCH_CUDA_ALLOC_CONF=expandable_segments:True # weniger VRAM-Fragmentierung
|
||||
restart: unless-stopped
|
||||
|
||||
@@ -9,12 +9,16 @@ RUN apt-get update && apt-get install -y --no-install-recommends \
|
||||
|
||||
WORKDIR /app
|
||||
|
||||
# PyTorch CUDA-Wheels zuerst (f5-tts zieht sonst CPU-only Torch rein)
|
||||
RUN pip3 install --no-cache-dir torch==2.3.1 torchaudio==2.3.1 \
|
||||
--index-url https://download.pytorch.org/whl/cu121
|
||||
# torch FEST auf cu124 (Treiber 550 = CUDA 12.4). 2.6.0 ist der NEUESTE cu124-
|
||||
# Build — torch 2.7+ gibt es nur noch fuer cu126+, was 550 nicht unterstuetzt
|
||||
# ("NVIDIA driver too old, found 12040"). Der Constraint haelt f5-tts davon ab,
|
||||
# torch beim Dependency-Aufloesen wieder auf eine zu neue CUDA-Version zu ziehen.
|
||||
RUN pip3 install --no-cache-dir torch==2.6.0 torchaudio==2.6.0 \
|
||||
--index-url https://download.pytorch.org/whl/cu124
|
||||
|
||||
COPY requirements.txt .
|
||||
RUN pip3 install --no-cache-dir -r requirements.txt
|
||||
RUN printf 'torch==2.6.0\ntorchaudio==2.6.0\n' > /tmp/torch-constraint.txt && \
|
||||
pip3 install --no-cache-dir -c /tmp/torch-constraint.txt -r requirements.txt
|
||||
|
||||
COPY bridge.py .
|
||||
|
||||
|
||||
@@ -0,0 +1,26 @@
|
||||
# Voxtral-STT-3B Bridge (Transformers). Laeuft auf Treiber 550/CUDA 12.4 via
|
||||
# torch cu124 — KEIN Treiber-Upgrade noetig (gleicher Trick wie f5tts).
|
||||
# Modell: Voxtral-Mini-3B-2507 (~9 GB in bf16) → passt auf die 12-GB-Karte (GPU 1).
|
||||
FROM nvidia/cuda:12.2.2-cudnn8-runtime-ubuntu22.04
|
||||
|
||||
ENV DEBIAN_FRONTEND=noninteractive
|
||||
ENV PYTHONUNBUFFERED=1
|
||||
WORKDIR /app
|
||||
|
||||
RUN apt-get update && apt-get install -y --no-install-recommends \
|
||||
python3 python3-pip ffmpeg git \
|
||||
&& rm -rf /var/lib/apt/lists/*
|
||||
|
||||
# torch FEST auf cu124 (Treiber 550 = CUDA 12.4). 2.6.0 ist der neueste cu124-Build;
|
||||
# torch 2.7+ gibt es nur fuer cu126+ und braeuchte einen neueren Treiber.
|
||||
RUN pip3 install --no-cache-dir torch==2.6.0 torchaudio==2.6.0 \
|
||||
--index-url https://download.pytorch.org/whl/cu124
|
||||
|
||||
COPY requirements.txt .
|
||||
# Constraint haelt transformers/mistral-common davon ab, torch wieder hochzuziehen.
|
||||
RUN printf 'torch==2.6.0\ntorchaudio==2.6.0\n' > /tmp/torch-constraint.txt && \
|
||||
pip3 install --no-cache-dir -c /tmp/torch-constraint.txt -r requirements.txt
|
||||
|
||||
COPY bridge.py speaker_id.py ./
|
||||
|
||||
CMD ["python3", "bridge.py"]
|
||||
@@ -0,0 +1,47 @@
|
||||
# Voxtral-STT-3B-Satellit (Transformers)
|
||||
|
||||
Streaming-STT via **Voxtral-Mini-3B-2507** (Mistral, Apache 2.0) über
|
||||
🤗 Transformers. Ersetzt whisper als STT — genauer, und **ohne Treiber-Upgrade**:
|
||||
läuft auf dem Trixie-Standardtreiber (550/CUDA 12.4) via **torch 2.6.0+cu124**
|
||||
(derselbe Trick wie bei f5tts).
|
||||
|
||||
- Modell ~9 GB (bf16) → **GPU 1** (die 12-GB-Karte; per Compose gepinnt).
|
||||
- **F5-TTS + LLM** bleiben auf GPU 0 (8 GB).
|
||||
- Arbeitsweise = chunked wie whisper: live PCM → alle ~1 s transkribieren
|
||||
(Partials) → **adaptiver Endpointer** (Rausch-Boden-VAD + semantische
|
||||
Stagnation, aus M0.1) feuert `stt_endpoint`. RVS-Protokoll identisch → drop-in.
|
||||
|
||||
## Starten (Profil `voxtral`)
|
||||
|
||||
```bash
|
||||
cd xtts
|
||||
docker compose stop whisper-bridge # sonst beantworten beide stt_*
|
||||
docker compose --profile voxtral up -d --build
|
||||
docker logs -f aria-voxtral-bridge # Modell laedt (mehrere GB), dann "RVS verbunden"
|
||||
```
|
||||
Zurück zu whisper: `docker compose --profile voxtral down && docker compose up -d whisper-bridge`.
|
||||
|
||||
## ⚠️ Auf echter Hardware verifizieren (blind gebaut)
|
||||
|
||||
1. **Transformers-API.** Die exakte Voxtral-Transkriptions-API ist in `bridge.py`
|
||||
in **einer** Methode gekapselt (`VoxtralRunner._transcribe_blocking`), modelliert
|
||||
nach der HF-Modelcard (`apply_transcription_request` → `generate` → `batch_decode`).
|
||||
Beim ersten Lauf gegen die Modelcard prüfen und dort anpassen.
|
||||
2. **HF-Gating.** Ist `Voxtral-Mini-3B-2507` gated, `HF_TOKEN` in `xtts/.env` setzen
|
||||
(wird als `HUGGING_FACE_HUB_TOKEN` durchgereicht).
|
||||
3. **VRAM/Tempo.** 3B in bf16 ~9 GB auf der 12-GB-Karte — Rest fürs KV-Cache. Ist die
|
||||
Partial-Transkription (alle 1 s) zu schwer, `STREAM_TRANSCRIBE_INTERVAL_MS` hochsetzen.
|
||||
4. **torch-Konflikt.** Falls `transformers`/`mistral-common` beim Build torch>2.6
|
||||
erzwingen, meldet der Constraint einen Konflikt → dann brauchen wir doch das
|
||||
Treiber-Upgrade (`bootstrap.sh --upgrade-driver` via NVIDIA-CUDA-Repo) + cu126-torch.
|
||||
|
||||
## Protokoll (RVS, identisch zu whisper — drop-in)
|
||||
Rein: `stt_stream_start`, `stt_audio_chunk` (16 kHz mono s16le, base64), `stt_stream_end`.
|
||||
Raus: `stt_partial`, `stt_endpoint`, `stt_stream_done`.
|
||||
|
||||
## TTS
|
||||
Bleibt **F5-TTS** (klingt gut, passt auf GPU 0). Voxtral-TTS bräuchte ~24 GB — separates Thema.
|
||||
|
||||
## Quellen
|
||||
- Modell: https://huggingface.co/mistralai/Voxtral-Mini-3B-2507
|
||||
- Transformers-Nutzung: HF-Modelcard (Voxtral) + `mistral-common`
|
||||
@@ -0,0 +1,775 @@
|
||||
#!/usr/bin/env python3
|
||||
"""
|
||||
ARIA Voxtral-STT-3B Bridge (Transformers) — Ersatz fuer whisper.
|
||||
|
||||
Laeuft auf Treiber 550/CUDA 12.4 via torch cu124 (kein Treiber-Upgrade noetig).
|
||||
Modell: Voxtral-Mini-3B-2507 (bf16, ~9 GB) → GPU 1 (12 GB, per Compose gepinnt).
|
||||
|
||||
Arbeitsweise = Zwilling der whisper-Bridge: App schickt live PCM-Chunks; wir
|
||||
transkribieren alle ~STREAM_TRANSCRIBE_INTERVAL_MS auf dem Ringbuffer (Partials)
|
||||
und feuern stt_endpoint, sobald der ADAPTIVE Endpointer (Rausch-Boden-VAD +
|
||||
semantische Stagnation, aus M0.1) "fertig" sagt. RVS-Wire-Protokoll identisch zu
|
||||
whisper → drop-in (die App merkt nur bessere Genauigkeit).
|
||||
|
||||
⚠️ VERIFY-ON-FIRST-RUN: Die exakte Transformers-Transkriptions-API von Voxtral
|
||||
(apply_transcription_request / generate / decode) ist unten in EINER Methode
|
||||
(VoxtralRunner._transcribe_blocking) gekapselt und nach dem HF-Modelcard-Muster
|
||||
modelliert. Beim ersten echten Lauf gegen die Voxtral-Modelcard pruefen und dort
|
||||
anpassen. Alles andere (RVS, Endpointer) ist bewaehrt.
|
||||
|
||||
Env:
|
||||
RVS_HOST, RVS_PORT, RVS_TLS, RVS_TLS_FALLBACK, RVS_TOKEN
|
||||
VOXTRAL_MODEL Default: mistralai/Voxtral-Mini-3B-2507
|
||||
VOXTRAL_LANGUAGE Default: de
|
||||
VOXTRAL_DEVICE Default: cuda
|
||||
STREAM_TRANSCRIBE_INTERVAL_MS Default 1000 (3B ist schwerer als whisper-small)
|
||||
"""
|
||||
import asyncio
|
||||
import base64
|
||||
import json
|
||||
import logging
|
||||
import os
|
||||
import re
|
||||
import tempfile
|
||||
import time
|
||||
from dataclasses import dataclass, field
|
||||
from typing import Optional
|
||||
|
||||
import numpy as np
|
||||
import soundfile as sf
|
||||
import websockets
|
||||
|
||||
import speaker_id # Speaker-ID (nur Stefans Stimme) — portiert aus der whisper-Bridge
|
||||
|
||||
logging.basicConfig(
|
||||
level=logging.INFO,
|
||||
format="%(asctime)s [%(levelname)s] %(message)s",
|
||||
datefmt="%H:%M:%S",
|
||||
)
|
||||
logger = logging.getLogger("voxtral-bridge")
|
||||
|
||||
RVS_HOST = os.getenv("RVS_HOST", "").strip()
|
||||
RVS_PORT = int(os.getenv("RVS_PORT", "443"))
|
||||
RVS_TLS = os.getenv("RVS_TLS", "true").lower() == "true"
|
||||
RVS_TLS_FALLBACK = os.getenv("RVS_TLS_FALLBACK", "true").lower() == "true"
|
||||
RVS_TOKEN = os.getenv("RVS_TOKEN", "").strip()
|
||||
|
||||
VOXTRAL_MODEL = os.getenv("VOXTRAL_MODEL", "mistralai/Voxtral-Mini-3B-2507")
|
||||
VOXTRAL_LANGUAGE = os.getenv("VOXTRAL_LANGUAGE", "de")
|
||||
VOXTRAL_DEVICE = os.getenv("VOXTRAL_DEVICE", "cuda")
|
||||
|
||||
STREAM_TRANSCRIBE_INTERVAL_MS = int(os.getenv("STREAM_TRANSCRIBE_INTERVAL_MS", "1000"))
|
||||
STREAM_DEFAULT_ENDPOINT_MS = 2400
|
||||
STREAM_DEFAULT_HARD_CAP_MS = 300000
|
||||
STREAM_MIN_AUDIO_MS = 600
|
||||
STREAM_SPEAKER_CHECK_MS = 1500 # ab so viel Audio einmalig Speaker-ID pruefen
|
||||
STREAM_SESSION_TTL_S = 120
|
||||
STREAM_ENERGY_WINDOW_MS = 300
|
||||
STREAM_SEMANTIC_BACKUP_FACTOR = 2.0
|
||||
# Adaptiver Voice-Schwellwert (M0.1): relativ zum gemessenen Rausch-Boden.
|
||||
STREAM_VOICE_FACTOR = 2.5
|
||||
STREAM_VOICE_RMS_MIN = 0.005
|
||||
STREAM_VOICE_RMS_MAX = 0.020
|
||||
# Mindest-Stimme (in ~200ms-Endpointer-Frames), ab der eine Aufnahme ueberhaupt
|
||||
# als Sprache gilt. Darunter = Stille / kurzer Geraeusch-Blip → KEIN Transkript
|
||||
# (Voxtral halluziniert aus Fast-Nichts sonst einen Fuellsatz). 2 ≈ 400ms.
|
||||
STREAM_MIN_VOICED_FRAMES = int(os.getenv("STREAM_MIN_VOICED_FRAMES", "2"))
|
||||
|
||||
# Halluzinations-Filter (2. Netz NACH der Transkription). Der voiced_frames-Guard
|
||||
# oben faengt die reine Stille; hier kommt das "borderline"-Band dazu: wenn wenig
|
||||
# echte Stimme da war UND das Transkript ein bekanntes Voxtral-Silence-Artefakt
|
||||
# ist (Untertitel-Credits, Staedte-/Geo-Fakten "Flaeche von X km2"), ist es fast
|
||||
# sicher ein Phantom aus Fast-Nichts → verwerfen. Gegated auf wenig voiced_frames,
|
||||
# damit eine ECHTE Geografie-Frage (die hat normale Stimm-Energie) durchgeht.
|
||||
STREAM_HALLUC_GUARD_FRAMES = int(os.getenv("STREAM_HALLUC_GUARD_FRAMES",
|
||||
str(STREAM_MIN_VOICED_FRAMES * 4))) # ~1.6s
|
||||
_HALLUCINATION_RE = re.compile(
|
||||
r"untertitel"
|
||||
r"|amara\.org"
|
||||
r"|vielen\s+dank\s+f[uü]r'?s?\s+(zuschauen|zusehen|zuh[oö]ren)"
|
||||
r"|bis\s+zum\s+n[aä]chsten\s+mal"
|
||||
r"|abonnier"
|
||||
r"|fl[aä]che\s+von\s+[\d.,]+\s*(km|quadratkilometer)"
|
||||
r"|[\d.,]+\s*(km²|quadratkilometern?|einwohnern?)\b",
|
||||
re.IGNORECASE,
|
||||
)
|
||||
|
||||
# Kollabiert unmittelbar wiederholte Phrasen (Voxtral-Repetition-Loop) auf EINE
|
||||
# Kopie. Zweites Netz hinter no_repeat_ngram in der Generation. Phrase 5-80 Zeichen,
|
||||
# 3+ mal hintereinander → eine. Kurze legitime Doppelungen ('ja ja', 'sehr sehr')
|
||||
# bleiben (Unit < 5 Zeichen bzw. < 3 Wiederholungen).
|
||||
_REPEAT_RE = re.compile(r"(.{5,80}?)(?:\s*\1){2,}", re.IGNORECASE | re.DOTALL)
|
||||
|
||||
|
||||
def _collapse_repetitions(text: str) -> str:
|
||||
if not text:
|
||||
return text
|
||||
out = text
|
||||
for _ in range(3): # mehrfach fuer verschachtelte/ungleiche Loops
|
||||
new = _REPEAT_RE.sub(r"\1", out)
|
||||
if new == out:
|
||||
break
|
||||
out = new
|
||||
return out.strip()
|
||||
|
||||
|
||||
# ── Silero VAD: echte Sprach-Erkennung VOR dem Transkribieren ──────────────
|
||||
# Der Muster-Filter oben kennt nur spezifische Artefakte. Generische Phantome
|
||||
# ("Ich bin ein guter Mann" aus Fast-Stille) kann ein Text-Regex nicht fangen —
|
||||
# aber ein VAD schon, weil es am AUDIO entscheidet, nicht am Text. Silero trennt
|
||||
# Sprache zuverlaessig von Stille / Rauschen / MUSIK. Kein Speech-Segment →
|
||||
# no-speech → nicht transkribieren → kein Phantom (und Musik/Instrumental fliegt
|
||||
# gleich mit raus).
|
||||
# FAIL-OPEN: klappt das VAD nicht (Import/Load/Inferenz), wird trotzdem normal
|
||||
# transkribiert. Die STT darf NIE komplett sterben (Speaker-ID-Lektion).
|
||||
SILERO_VAD_ENABLED = os.getenv("SILERO_VAD_ENABLED", "true").lower() in ("1", "true", "yes")
|
||||
SILERO_VAD_THRESHOLD = float(os.getenv("SILERO_VAD_THRESHOLD", "0.5"))
|
||||
SILERO_MIN_SPEECH_MS = int(os.getenv("SILERO_MIN_SPEECH_MS", "150"))
|
||||
SILERO_PAD_MS = int(os.getenv("SILERO_PAD_MS", "200"))
|
||||
|
||||
_vad_state = {"model": None, "get_ts": None, "failed": False}
|
||||
|
||||
|
||||
def _speech_segments(audio_f32):
|
||||
"""Silero-VAD-Sprachsegmente (Liste von {start,end} Sample-Indizes) im
|
||||
16kHz-float32-Audio. Rueckgabe:
|
||||
[] → kein Speech (Stille/Rauschen/Musik) → Phantom-Verdacht, verwerfen.
|
||||
[...] → Speech vorhanden.
|
||||
None → VAD nicht verfuegbar → fail-open (Aufrufer transkribiert normal)."""
|
||||
if not SILERO_VAD_ENABLED or _vad_state["failed"]:
|
||||
return None
|
||||
if _vad_state["model"] is None:
|
||||
try:
|
||||
from silero_vad import load_silero_vad, get_speech_timestamps
|
||||
_vad_state["model"] = load_silero_vad()
|
||||
_vad_state["get_ts"] = get_speech_timestamps
|
||||
logger.info("Silero VAD geladen (threshold=%.2f, min_speech=%dms)",
|
||||
SILERO_VAD_THRESHOLD, SILERO_MIN_SPEECH_MS)
|
||||
except Exception:
|
||||
logger.exception("Silero VAD Laden fehlgeschlagen — dauerhaft aus (fail-open)")
|
||||
_vad_state["failed"] = True
|
||||
return None
|
||||
try:
|
||||
import torch as _torch
|
||||
segs = _vad_state["get_ts"](
|
||||
_torch.from_numpy(audio_f32), _vad_state["model"],
|
||||
sampling_rate=16000, threshold=SILERO_VAD_THRESHOLD,
|
||||
min_speech_duration_ms=SILERO_MIN_SPEECH_MS,
|
||||
)
|
||||
return segs or []
|
||||
except Exception:
|
||||
logger.exception("Silero VAD Inferenz fehlgeschlagen — dieser Turn fail-open")
|
||||
return None
|
||||
|
||||
# Speaker-ID Gating global an/aus. DEFAULT AUS (fail-open) — die "nur meine Stimme"-
|
||||
# Pruefung ist ein BEWUSSTER Schalter, kein Automatismus: ein einziger schlechter
|
||||
# Enroll darf nie die ganze STT lahmlegen (genau das ist passiert). Wird per config-
|
||||
# Broadcast (voiceIdEnabled, aus dem Diagnostic) zur Laufzeit gesetzt. Kann per ENV
|
||||
# vorbelegt werden.
|
||||
SPEAKER_ID_ENABLED = os.getenv("VOICE_ID_ENABLED", "false").lower() in ("1", "true", "yes")
|
||||
|
||||
|
||||
def _set_speaker_id_enabled(val: bool) -> None:
|
||||
global SPEAKER_ID_ENABLED
|
||||
SPEAKER_ID_ENABLED = bool(val)
|
||||
|
||||
|
||||
def pcm_s16le_to_float32(data: bytes) -> np.ndarray:
|
||||
if not data:
|
||||
return np.zeros(0, dtype=np.float32)
|
||||
return np.frombuffer(data, dtype=np.int16).astype(np.float32) / 32768.0
|
||||
|
||||
|
||||
async def _send(ws, mtype: str, payload: dict) -> None:
|
||||
try:
|
||||
await ws.send(json.dumps({
|
||||
"type": mtype, "payload": payload, "timestamp": int(time.time() * 1000),
|
||||
}))
|
||||
except Exception as e:
|
||||
logger.warning("RVS-Send fehlgeschlagen (%s): %s", mtype, e)
|
||||
|
||||
|
||||
class VoxtralRunner:
|
||||
"""Haelt das Voxtral-Modell (Transformers). transcribe() blockiert → aus dem
|
||||
Event-Loop via run_in_executor aufrufen. Ein Lock serialisiert GPU-Zugriffe."""
|
||||
|
||||
def __init__(self) -> None:
|
||||
self.model = None
|
||||
self.processor = None
|
||||
self._lock = asyncio.Lock()
|
||||
|
||||
def load(self) -> None:
|
||||
import torch
|
||||
from transformers import AutoProcessor, VoxtralForConditionalGeneration
|
||||
t0 = time.time()
|
||||
logger.info("Lade Voxtral '%s' (device=%s, bf16)…", VOXTRAL_MODEL, VOXTRAL_DEVICE)
|
||||
self.processor = AutoProcessor.from_pretrained(VOXTRAL_MODEL)
|
||||
self.model = VoxtralForConditionalGeneration.from_pretrained(
|
||||
VOXTRAL_MODEL, torch_dtype=torch.bfloat16, device_map=VOXTRAL_DEVICE,
|
||||
)
|
||||
logger.info("Voxtral geladen in %.1fs", time.time() - t0)
|
||||
|
||||
def _transcribe_blocking(self, audio_f32: np.ndarray, language: str) -> str:
|
||||
import torch
|
||||
proc, model = self.processor, self.model
|
||||
if proc is None or model is None or audio_f32.size == 0:
|
||||
return ""
|
||||
# VoxtralProcessor verlangt bei rohen Arrays ein 'format'. Robuster:
|
||||
# in ein temp-WAV schreiben und den PFAD uebergeben — der Processor liest
|
||||
# Format + Samplerate selbst, kein 'format'-Argument noetig.
|
||||
wav_path = None
|
||||
try:
|
||||
with tempfile.NamedTemporaryFile(suffix=".wav", delete=False) as tf:
|
||||
wav_path = tf.name
|
||||
sf.write(wav_path, audio_f32, 16000, subtype="PCM_16")
|
||||
inputs = proc.apply_transcription_request(
|
||||
language=language, audio=wav_path, model_id=VOXTRAL_MODEL,
|
||||
)
|
||||
inputs = inputs.to(VOXTRAL_DEVICE, dtype=torch.bfloat16)
|
||||
with torch.no_grad():
|
||||
# hoch genug fuer lange Diktate (stoppt eh am EOS); 512 hat
|
||||
# mehrminutige Aufnahmen abgeschnitten.
|
||||
# Repetition-Bremse: Voxtral kippt bei Stille/Rauschen am Ende
|
||||
# gern in eine Schleife und wiederholt einen Satz zig-mal
|
||||
# ("Vergiss das, das ist nur... Vergiss das, das ist nur..."
|
||||
# x15). no_repeat_ngram_size=4 laesst die ERSTE echte Nennung
|
||||
# durch, verbietet aber die exakte 4-Gramm-Wiederholung → Loop
|
||||
# bricht ab; repetition_penalty daempft zusaetzlich. Beides mild,
|
||||
# damit normale Sprache (auch mal ein doppeltes Wort) unberuehrt
|
||||
# bleibt.
|
||||
outputs = model.generate(
|
||||
**inputs,
|
||||
max_new_tokens=4096,
|
||||
no_repeat_ngram_size=4,
|
||||
repetition_penalty=1.15,
|
||||
)
|
||||
trimmed = outputs[:, inputs.input_ids.shape[1]:]
|
||||
text = proc.batch_decode(trimmed, skip_special_tokens=True)
|
||||
return (text[0] if text else "").strip()
|
||||
finally:
|
||||
if wav_path:
|
||||
try:
|
||||
os.unlink(wav_path)
|
||||
except Exception:
|
||||
pass
|
||||
|
||||
async def transcribe(self, audio_f32: np.ndarray, language: str) -> str:
|
||||
loop = asyncio.get_running_loop()
|
||||
async with self._lock:
|
||||
return await loop.run_in_executor(None, self._transcribe_blocking, audio_f32, language)
|
||||
|
||||
|
||||
@dataclass
|
||||
class StreamSession:
|
||||
request_id: str
|
||||
audio_request_id: str
|
||||
language: str
|
||||
endpoint_ms: int
|
||||
hard_cap_ms: int
|
||||
voice: str = ""
|
||||
speed: float = 1.0
|
||||
interrupted: bool = False
|
||||
location: Optional[dict] = None
|
||||
sample_rate: int = 16000
|
||||
voice_factor: float = STREAM_VOICE_FACTOR
|
||||
voice_rms_min: float = STREAM_VOICE_RMS_MIN
|
||||
voice_rms_max: float = STREAM_VOICE_RMS_MAX
|
||||
pcm_buffer: bytearray = field(default_factory=bytearray)
|
||||
started_at: float = field(default_factory=time.time)
|
||||
last_chunk_at: float = field(default_factory=time.time)
|
||||
last_partial: str = ""
|
||||
last_growth_at: float = 0.0
|
||||
last_transcribe_at: float = 0.0
|
||||
last_voice_at: float = 0.0
|
||||
noise_floor: float = 0.0
|
||||
closed: bool = False
|
||||
endpoint_sent: bool = False
|
||||
# Einmaliges "Sprache erkannt"-Signal an die App gesendet? Voxtral schickt
|
||||
# keine Live-Partials, aber der App-No-Speech-Watchdog wartet auf ein
|
||||
# stt_partial, um "der User redet" zu erkennen — sonst cancelt er mitten im
|
||||
# Satz. Wir feuern EIN leeres stt_partial beim ersten Voice-Frame.
|
||||
speech_signaled: bool = False
|
||||
# Anzahl Endpointer-Frames (~200ms) mit echter Stimme. Gate gegen Halluzination
|
||||
# aus Stille/Blips: unter STREAM_MIN_VOICED_FRAMES wird nicht transkribiert.
|
||||
voiced_frames: int = 0
|
||||
# Speaker-ID Gating (einmalig auf die ersten ~1.5s der Aufnahme)
|
||||
speaker_checked: bool = False
|
||||
speaker_match: Optional[bool] = None
|
||||
speaker_similarity: float = 0.0
|
||||
|
||||
|
||||
class SessionManager:
|
||||
def __init__(self, runner: VoxtralRunner) -> None:
|
||||
self.runner = runner
|
||||
self._sessions: dict[str, StreamSession] = {}
|
||||
self._ws = None
|
||||
|
||||
def attach_ws(self, ws) -> None:
|
||||
self._ws = ws
|
||||
|
||||
def start_session(self, payload: dict) -> None:
|
||||
rid = (payload.get("requestId") or "").strip()
|
||||
if not rid:
|
||||
return
|
||||
try:
|
||||
endpoint_ms = int(payload.get("endpointMs") or STREAM_DEFAULT_ENDPOINT_MS)
|
||||
except (TypeError, ValueError):
|
||||
endpoint_ms = STREAM_DEFAULT_ENDPOINT_MS
|
||||
try:
|
||||
hard_cap_ms = int(payload.get("hardCapMs") or STREAM_DEFAULT_HARD_CAP_MS)
|
||||
except (TypeError, ValueError):
|
||||
hard_cap_ms = STREAM_DEFAULT_HARD_CAP_MS
|
||||
try:
|
||||
voice_factor = float(payload.get("voiceFactor") or STREAM_VOICE_FACTOR)
|
||||
except (TypeError, ValueError):
|
||||
voice_factor = STREAM_VOICE_FACTOR
|
||||
self._sessions[rid] = StreamSession(
|
||||
request_id=rid,
|
||||
audio_request_id=payload.get("audioRequestId", "") or "",
|
||||
language=payload.get("language") or VOXTRAL_LANGUAGE,
|
||||
endpoint_ms=endpoint_ms,
|
||||
hard_cap_ms=hard_cap_ms,
|
||||
voice=payload.get("voice", "") or "",
|
||||
speed=float(payload.get("speed") or 1.0),
|
||||
voice_factor=voice_factor,
|
||||
interrupted=bool(payload.get("interrupted", False)),
|
||||
location=payload.get("location") or None,
|
||||
sample_rate=int(payload.get("sampleRate") or 16000),
|
||||
)
|
||||
logger.info("Voxtral-Session offen: id=%s lang=%s endpointMs=%d",
|
||||
rid[:8], self._sessions[rid].language, endpoint_ms)
|
||||
|
||||
def feed_chunk(self, payload: dict) -> bool:
|
||||
sess = self._sessions.get(payload.get("requestId", ""))
|
||||
if sess is None or sess.closed:
|
||||
return False
|
||||
pcm_b64 = payload.get("pcm", "")
|
||||
if pcm_b64:
|
||||
try:
|
||||
sess.pcm_buffer.extend(base64.b64decode(pcm_b64))
|
||||
except Exception:
|
||||
pass
|
||||
sess.last_chunk_at = time.time()
|
||||
return True
|
||||
|
||||
def end_session(self, request_id: str) -> None:
|
||||
sess = self._sessions.get(request_id)
|
||||
if sess is not None:
|
||||
sess.closed = True
|
||||
|
||||
def drop(self, request_id: str) -> None:
|
||||
self._sessions.pop(request_id, None)
|
||||
|
||||
# ── Endpointer (adaptiv, M0.1) ──
|
||||
def _buffer_ms(self, sess: StreamSession) -> float:
|
||||
samples = len(sess.pcm_buffer) // 2
|
||||
return (samples / sess.sample_rate) * 1000.0 if samples else 0.0
|
||||
|
||||
def _tail_rms(self, sess: StreamSession) -> float:
|
||||
win = int(sess.sample_rate * STREAM_ENERGY_WINDOW_MS / 1000) * 2
|
||||
if win <= 0:
|
||||
return 0.0
|
||||
tail = sess.pcm_buffer[-win:]
|
||||
if len(tail) < 2:
|
||||
return 0.0
|
||||
arr = pcm_s16le_to_float32(bytes(tail))
|
||||
return float(np.sqrt(np.mean(arr * arr))) if arr.size else 0.0
|
||||
|
||||
def _voice_threshold(self, sess: StreamSession) -> float:
|
||||
nf = sess.noise_floor
|
||||
if nf <= 0.0:
|
||||
return sess.voice_rms_min
|
||||
return min(max(nf * sess.voice_factor, sess.voice_rms_min), sess.voice_rms_max)
|
||||
|
||||
def _update_noise_floor(self, sess: StreamSession, rms: float) -> None:
|
||||
nf = sess.noise_floor
|
||||
if nf <= 0.0:
|
||||
sess.noise_floor = rms
|
||||
elif rms < nf:
|
||||
sess.noise_floor = 0.90 * nf + 0.10 * rms
|
||||
else:
|
||||
sess.noise_floor = 0.98 * nf + 0.02 * rms
|
||||
|
||||
async def _check_speaker(self, sess: StreamSession) -> None:
|
||||
"""Einmalig: erste ~1.5s → Embedding → Vergleich mit Fingerprint.
|
||||
Ohne Fingerprint fail-open (match=True). Bei Mismatch: Session beenden."""
|
||||
sess.speaker_checked = True
|
||||
# Schalter aus (Default) → gar keine Pruefung, alles durchlassen.
|
||||
if not SPEAKER_ID_ENABLED:
|
||||
sess.speaker_match = True
|
||||
return
|
||||
head = bytes(sess.pcm_buffer[: STREAM_SPEAKER_CHECK_MS * 32])
|
||||
if len(head) < speaker_id.MIN_SAMPLE_BYTES:
|
||||
sess.speaker_match = True
|
||||
return
|
||||
try:
|
||||
loop = asyncio.get_running_loop()
|
||||
is_match, sim = await loop.run_in_executor(None, speaker_id.verify, head)
|
||||
except Exception as exc:
|
||||
logger.warning("Stream %s: speaker-check crashed (%s) — fail-open",
|
||||
sess.request_id[:8], exc)
|
||||
sess.speaker_match = True
|
||||
return
|
||||
sess.speaker_match = is_match
|
||||
sess.speaker_similarity = sim
|
||||
logger.info("Stream %s: speaker-check sim=%.2f → %s (thr=%.2f)",
|
||||
sess.request_id[:8], sim, "MATCH" if is_match else "REJECT",
|
||||
speaker_id.DEFAULT_THRESHOLD)
|
||||
if not is_match:
|
||||
await self._finalize_speaker_mismatch(sess, sim)
|
||||
|
||||
async def _finalize_speaker_mismatch(self, sess: StreamSession, similarity: float) -> None:
|
||||
"""Fremde Stimme: synthetisches leeres stt_endpoint (reason=speaker_mismatch),
|
||||
Session droppen — kein Voxtral-Transcribe, kein Brain-Call."""
|
||||
if sess.endpoint_sent:
|
||||
return
|
||||
sess.endpoint_sent = True
|
||||
duration_s = self._buffer_ms(sess) / 1000.0
|
||||
logger.info("Stream %s: speaker-mismatch (sim=%.2f) — DROP nach %.1fs",
|
||||
sess.request_id[:8], similarity, duration_s)
|
||||
if self._ws is not None:
|
||||
payload = {
|
||||
"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "", "reason": "speaker_mismatch",
|
||||
"durationS": duration_s, "sttMs": 0,
|
||||
"voice": sess.voice, "speed": sess.speed,
|
||||
"interrupted": sess.interrupted,
|
||||
"speakerSimilarity": float(similarity),
|
||||
}
|
||||
if sess.location:
|
||||
payload["location"] = sess.location
|
||||
await _send(self._ws, "stt_endpoint", payload)
|
||||
await _send(self._ws, "stt_stream_done", {
|
||||
"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "", "reason": "speaker_mismatch",
|
||||
})
|
||||
self.drop(sess.request_id)
|
||||
|
||||
async def run_endpointer(self) -> None:
|
||||
logger.info("Voxtral-Endpointer gestartet (adaptiver VAD, interval=%dms)",
|
||||
STREAM_TRANSCRIBE_INTERVAL_MS)
|
||||
while True:
|
||||
await asyncio.sleep(0.2)
|
||||
now = time.time()
|
||||
for sid, sess in list(self._sessions.items()):
|
||||
try:
|
||||
await self._tick(sess, now)
|
||||
except Exception:
|
||||
logger.exception("Tick crashed (session=%s)", sid[:8])
|
||||
for sid, sess in list(self._sessions.items()):
|
||||
if now - sess.last_chunk_at > STREAM_SESSION_TTL_S:
|
||||
logger.info("Stream %s: TTL — drop", sid[:8])
|
||||
self.drop(sid)
|
||||
|
||||
async def _tick(self, sess: StreamSession, now: float) -> None:
|
||||
if sess.endpoint_sent:
|
||||
return
|
||||
if (now - sess.started_at) * 1000.0 > sess.hard_cap_ms and not sess.closed:
|
||||
await self._finalize(sess, "hardcap")
|
||||
return
|
||||
if sess.closed:
|
||||
await self._finalize(sess, "stream_end")
|
||||
return
|
||||
if self._buffer_ms(sess) < STREAM_MIN_AUDIO_MS:
|
||||
return
|
||||
# Speaker-ID einmalig: ist es Stefans Stimme? Fremde → Session verwerfen
|
||||
# (kein Transcribe, kein Brain-Call). Ohne Enrollment fail-open.
|
||||
if not sess.speaker_checked and self._buffer_ms(sess) >= STREAM_SPEAKER_CHECK_MS:
|
||||
await self._check_speaker(sess)
|
||||
if sess.speaker_match is False:
|
||||
return
|
||||
# Adaptive akustische Sprach-Aktivitaet (M0.1). KEINE Live-Partials mehr:
|
||||
# Voxtral-3B transkribiert den ganzen WACHSENDEN Buffer und braucht dafuer
|
||||
# bei langen Aufnahmen 5-6 s — zu langsam fuer Live-Text, UND diese Latenz
|
||||
# hat den semantischen Endpoint faelschlich ausgeloest (Partial-Latenz >
|
||||
# Timeout → willkuerliche Abbrueche nach 20-40 s). Deshalb: Turn-Ende rein
|
||||
# AKUSTISCH, transkribiert wird nur EINMAL im _finalize.
|
||||
rms = self._tail_rms(sess)
|
||||
if rms >= self._voice_threshold(sess):
|
||||
sess.last_voice_at = now
|
||||
sess.voiced_frames += 1
|
||||
# Einmalig der App melden, dass Sprache begonnen hat — aber ERST ab genug
|
||||
# echter Stimme (>= STREAM_MIN_VOICED_FRAMES). Ein einzelner Geraeusch-
|
||||
# Blip darf den No-Speech-Watchdog NICHT loeschen, sonst transkribiert
|
||||
# Voxtral das Fast-Nichts und HALLUZINIERT einen Phantom-Satz. Ohne Live-
|
||||
# Partials wuerde der Watchdog die Aufnahme sonst am Konversationsfenster
|
||||
# canceln, obwohl der User redet ("beendet nach ~4s"-Repro). Leeres
|
||||
# stt_partial: App setzt streamGotPartial=true + loescht den Watchdog.
|
||||
# Nach der Speaker-ID-Pruefung (oben) → fremde Stimmen signalisieren NICHT.
|
||||
if (not sess.speech_signaled and self._ws is not None
|
||||
and sess.voiced_frames >= STREAM_MIN_VOICED_FRAMES):
|
||||
sess.speech_signaled = True
|
||||
await _send(self._ws, "stt_partial", {
|
||||
"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "",
|
||||
})
|
||||
else:
|
||||
self._update_noise_floor(sess, rms)
|
||||
# No-Speech-Timeout: wurde die GANZE Zeit KEINE Stimme erkannt
|
||||
# (last_voice_at==0), feuert der normale Endpoint unten NIE — der braucht
|
||||
# last_voice_at>0. Ohne das bleibt ein reines Stille-Fenster offen bis
|
||||
# Hardcap/manuellem Stop → genau Stefans Repro: "die Stille-Ende wird nie
|
||||
# erreicht, stop ich selbst ist es weg". Nach endpoint_ms Stille ab Start
|
||||
# schliessen wir das Fenster selbst als no-speech (leer, lautlos, zurueck
|
||||
# aufs Wake-Word). voiced_frames==0 → _finalize verwirft ohne Transkript,
|
||||
# also KEIN Phantom.
|
||||
if sess.last_voice_at == 0 and (now - sess.started_at) * 1000.0 >= sess.endpoint_ms:
|
||||
await self._finalize(sess, "no_speech")
|
||||
return
|
||||
# Endpoint: hat der User schon gesprochen UND ist es seit endpoint_ms still?
|
||||
if sess.last_voice_at > 0 and (now - sess.last_voice_at) * 1000.0 >= sess.endpoint_ms:
|
||||
await self._finalize(sess, "endpoint")
|
||||
|
||||
async def _emit_no_speech(self, sess: "StreamSession", reason_label: str) -> None:
|
||||
"""Leeres no-speech-Endpoint senden + Session droppen (kein Transkript).
|
||||
App re-armt still, zurueck aufs Wake-Word."""
|
||||
if self._ws is not None:
|
||||
payload = {"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "", "reason": reason_label,
|
||||
"durationS": 0.0, "sttMs": 0}
|
||||
await _send(self._ws, "stt_endpoint", payload)
|
||||
await _send(self._ws, "stt_stream_done", {
|
||||
"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "", "reason": reason_label})
|
||||
self.drop(sess.request_id)
|
||||
|
||||
async def _finalize(self, sess: StreamSession, reason: str) -> None:
|
||||
if sess.endpoint_sent:
|
||||
return
|
||||
sess.endpoint_sent = True
|
||||
# Halluzinations-Guard: zu wenig echte Stimme (Stille / kurzer Blip im
|
||||
# Passiv-/Wake-Fenster) → NICHT transkribieren. Voxtral (wie Whisper) baut
|
||||
# aus Fast-Nichts gern einen Fuellsatz ("Die Stadt hat eine Flaeche von
|
||||
# 1,5 km2"), der dann als PHANTOM-Nachricht ans Brain geht und das Gespraech
|
||||
# entgleisen laesst (Stefans Repro: "kam Nachricht von mir, obwohl ich
|
||||
# nichts sagte"). Leeres Endpoint = no-speech → App re-armt still.
|
||||
#
|
||||
# WICHTIG (aus dem ai-box-Log gelernt): die Phantome kommen mit
|
||||
# reason=stream_end — Passiv-/Wake-Fenster enden AUCH per stream_end, wenn
|
||||
# sie auf Stille zumachen. stream_end ist also NICHT gleich "manueller Stop".
|
||||
# Deshalb greift der Guard jetzt auch bei stream_end, aber mit niedrigerer
|
||||
# Schwelle (voiced==0 = gar keine Stimme), damit ein kurzes bewusstes Wort
|
||||
# ('ja', 'stopp') am Aufnahme-Button noch durchgeht, echte Stille aber nicht.
|
||||
_min_voiced = STREAM_MIN_VOICED_FRAMES if reason != "stream_end" else 1
|
||||
if sess.voiced_frames < _min_voiced:
|
||||
logger.info("Stream %s: no-speech (voiced_frames=%d<%d, reason=%s) — leeres Endpoint",
|
||||
sess.request_id[:8], sess.voiced_frames, _min_voiced, reason)
|
||||
if self._ws is not None:
|
||||
nospeech = {"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "", "reason": f"no_speech:{reason}",
|
||||
"durationS": 0.0, "sttMs": 0}
|
||||
await _send(self._ws, "stt_endpoint", nospeech)
|
||||
await _send(self._ws, "stt_stream_done", {
|
||||
"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "", "reason": f"no_speech:{reason}"})
|
||||
self.drop(sess.request_id)
|
||||
return
|
||||
audio = pcm_s16le_to_float32(bytes(sess.pcm_buffer))
|
||||
|
||||
# Silero VAD: ist ueberhaupt echte Sprache im Audio? Das entscheidet am
|
||||
# AUDIO, nicht am Text — faengt also generische Phantome ("Ich bin ein
|
||||
# guter Mann") UND Musik/Rauschen, die der Muster-Filter nicht kennt.
|
||||
# Kein Speech-Segment → no-speech, gar nicht erst transkribieren.
|
||||
# fail-open: segs=None (VAD nicht verfuegbar) → normal weiter.
|
||||
segs = _speech_segments(audio)
|
||||
if segs is not None and len(segs) == 0:
|
||||
logger.info("Stream %s: Silero VAD — keine Sprache (%.1fs, reason=%s) → no-speech",
|
||||
sess.request_id[:8], audio.size / 16000.0, reason)
|
||||
await self._emit_no_speech(sess, f"vad_no_speech:{reason}")
|
||||
return
|
||||
if segs:
|
||||
# Auf die Sprach-Spanne trimmen (Stille-Raender weg → Voxtral
|
||||
# halluziniert an den Enden weniger). Kleiner Pad gegen abgeschnittene
|
||||
# leise Wort-Anfaenge/-Enden.
|
||||
pad = int(SILERO_PAD_MS / 1000.0 * 16000)
|
||||
s0 = max(0, segs[0]["start"] - pad)
|
||||
s1 = min(int(audio.size), segs[-1]["end"] + pad)
|
||||
if s1 > s0 and (s1 - s0) < audio.size:
|
||||
audio = audio[s0:s1]
|
||||
|
||||
t0 = time.time()
|
||||
try:
|
||||
final_text = (await self.runner.transcribe(audio, sess.language)).strip()
|
||||
except Exception:
|
||||
logger.exception("Stream %s: Final-Transcribe crashed", sess.request_id[:8])
|
||||
final_text = sess.last_partial
|
||||
stt_ms = int((time.time() - t0) * 1000)
|
||||
duration_s = audio.size / 16000.0
|
||||
# Repetition-Loop einkassieren, falls trotz no_repeat_ngram was durchkam.
|
||||
_collapsed = _collapse_repetitions(final_text)
|
||||
if _collapsed != final_text:
|
||||
logger.info("Stream %s: Repetition-Loop kollabiert (%d→%d Zeichen)",
|
||||
sess.request_id[:8], len(final_text), len(_collapsed))
|
||||
final_text = _collapsed
|
||||
logger.info("Stream %s: FINAL (reason=%s, %.1fs, %dms): %r",
|
||||
sess.request_id[:8], reason, duration_s, stt_ms, final_text[:120])
|
||||
|
||||
# Halluzinations-Filter (2. Netz): leeres/Artefakt-Transkript im borderline-
|
||||
# Band → als no-speech verwerfen statt ein Phantom ("Die Stadt hat eine
|
||||
# Flaeche von 1,5 km2") ans Brain zu schicken. Gilt fuer ALLE reasons inkl.
|
||||
# stream_end (dort kamen die realen Phantome!) — aber das borderline-Band
|
||||
# (wenig voiced_frames) schuetzt echte, klar gesprochene Eingaben: eine echte
|
||||
# Geografie-FRAGE hat normale Stimm-Energie (voiced_frames >> Schwelle) und
|
||||
# geht durch; das Phantom aus Stille hat ~0 und wird verworfen. Ein leeres
|
||||
# Transkript wird immer verworfen (nichts gesagt = nichts senden).
|
||||
_clean = final_text.strip(" .,!?…-\t\n\r")
|
||||
_borderline = sess.voiced_frames < STREAM_HALLUC_GUARD_FRAMES
|
||||
_is_phantom = (not _clean) or (_borderline and bool(_HALLUCINATION_RE.search(final_text)))
|
||||
if _is_phantom:
|
||||
logger.info("Stream %s: Halluzination verworfen (voiced_frames=%d<%d, %.1fs, text=%r)",
|
||||
sess.request_id[:8], sess.voiced_frames, STREAM_HALLUC_GUARD_FRAMES,
|
||||
duration_s, final_text[:80])
|
||||
if self._ws is not None:
|
||||
nospeech = {"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "", "reason": f"hallucination:{reason}",
|
||||
"durationS": 0.0, "sttMs": stt_ms}
|
||||
await _send(self._ws, "stt_endpoint", nospeech)
|
||||
await _send(self._ws, "stt_stream_done", {
|
||||
"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": "", "reason": f"hallucination:{reason}"})
|
||||
self.drop(sess.request_id)
|
||||
return
|
||||
|
||||
if self._ws is not None:
|
||||
payload = {
|
||||
"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": final_text,
|
||||
"reason": reason,
|
||||
"durationS": duration_s,
|
||||
"sttMs": stt_ms,
|
||||
"voice": sess.voice,
|
||||
"speed": sess.speed,
|
||||
"interrupted": sess.interrupted,
|
||||
}
|
||||
if sess.location:
|
||||
payload["location"] = sess.location
|
||||
await _send(self._ws, "stt_endpoint", payload)
|
||||
await _send(self._ws, "stt_stream_done", {
|
||||
"requestId": sess.request_id,
|
||||
"audioRequestId": sess.audio_request_id,
|
||||
"text": final_text,
|
||||
"reason": reason,
|
||||
})
|
||||
self.drop(sess.request_id)
|
||||
|
||||
|
||||
async def _broadcast_status(ws, state: str, **extra) -> None:
|
||||
payload = {"service": "voxtral", "state": state}
|
||||
payload.update(extra)
|
||||
await _send(ws, "service_status", payload)
|
||||
|
||||
|
||||
async def run_loop(sessions: SessionManager) -> None:
|
||||
use_tls = RVS_TLS
|
||||
retry_s = 2
|
||||
tls_fallback_tried = False
|
||||
while True:
|
||||
scheme = "wss" if use_tls else "ws"
|
||||
url = f"{scheme}://{RVS_HOST}:{RVS_PORT}/ws?token={RVS_TOKEN}"
|
||||
masked = url.replace(RVS_TOKEN, "***") if RVS_TOKEN else url
|
||||
try:
|
||||
logger.info("Verbinde zu RVS: %s", masked)
|
||||
async with websockets.connect(url, ping_interval=20, ping_timeout=10,
|
||||
max_size=50 * 1024 * 1024) as ws:
|
||||
logger.info("RVS verbunden")
|
||||
retry_s = 2
|
||||
tls_fallback_tried = False
|
||||
sessions.attach_ws(ws)
|
||||
await _broadcast_status(ws, "ready", model=VOXTRAL_MODEL)
|
||||
await _send(ws, "config_request", {"service": "voxtral"})
|
||||
async for raw in ws:
|
||||
try:
|
||||
msg = json.loads(raw)
|
||||
except Exception:
|
||||
continue
|
||||
mtype = msg.get("type", "")
|
||||
payload = msg.get("payload", {}) or {}
|
||||
if mtype == "stt_stream_start":
|
||||
sessions.start_session(payload)
|
||||
elif mtype == "stt_audio_chunk":
|
||||
sessions.feed_chunk(payload)
|
||||
elif mtype == "stt_stream_end":
|
||||
sessions.end_session(payload.get("requestId", ""))
|
||||
elif mtype == "voice_id_status_request":
|
||||
req_id = payload.get("requestId", "")
|
||||
try:
|
||||
status = speaker_id.status()
|
||||
await _send(ws, "voice_id_status_response",
|
||||
{"requestId": req_id, "ok": True, **status})
|
||||
except Exception as exc:
|
||||
await _send(ws, "voice_id_status_response",
|
||||
{"requestId": req_id, "ok": False, "error": str(exc)[:200]})
|
||||
elif mtype == "voice_id_enroll_request":
|
||||
req_id = payload.get("requestId", "")
|
||||
samples = payload.get("samples") or []
|
||||
logger.info("voice_id_enroll_request: %d Samples (id=%s)", len(samples), req_id[:8])
|
||||
try:
|
||||
result = await asyncio.get_running_loop().run_in_executor(
|
||||
None, speaker_id.enroll_from_samples, samples)
|
||||
await _send(ws, "voice_id_enroll_response", {
|
||||
"requestId": req_id, "ok": True,
|
||||
"sample_count": result.get("sample_count", 0),
|
||||
"rejected": result.get("rejected", []),
|
||||
"updated_at": result.get("updated_at"),
|
||||
"embedding_dim": result.get("embedding_dim"),
|
||||
})
|
||||
except Exception as exc:
|
||||
logger.warning("voice_id_enroll failed: %s", exc)
|
||||
await _send(ws, "voice_id_enroll_response",
|
||||
{"requestId": req_id, "ok": False, "error": str(exc)[:300]})
|
||||
elif mtype == "voice_id_delete_request":
|
||||
req_id = payload.get("requestId", "")
|
||||
removed = speaker_id.delete_fingerprint()
|
||||
await _send(ws, "voice_id_delete_response",
|
||||
{"requestId": req_id, "ok": True, "removed": removed})
|
||||
elif mtype == "config":
|
||||
if "voiceIdThreshold" in payload:
|
||||
try:
|
||||
t = float(payload.get("voiceIdThreshold", 0.5))
|
||||
if 0.0 <= t <= 1.0:
|
||||
speaker_id.DEFAULT_THRESHOLD = t
|
||||
logger.info("[speaker-id] threshold gesetzt: %.2f", t)
|
||||
except (TypeError, ValueError):
|
||||
pass
|
||||
if "voiceIdEnabled" in payload:
|
||||
_set_speaker_id_enabled(payload.get("voiceIdEnabled"))
|
||||
logger.info("[speaker-id] Gating %s (voiceIdEnabled)",
|
||||
"AN" if SPEAKER_ID_ENABLED else "AUS")
|
||||
except Exception as e:
|
||||
logger.warning("RVS-Verbindung verloren: %s — retry in %ds", e, retry_s)
|
||||
if use_tls and RVS_TLS_FALLBACK and not tls_fallback_tried:
|
||||
use_tls = False
|
||||
tls_fallback_tried = True
|
||||
continue
|
||||
await asyncio.sleep(retry_s)
|
||||
retry_s = min(retry_s * 2, 30)
|
||||
use_tls = RVS_TLS
|
||||
|
||||
|
||||
async def main() -> None:
|
||||
if not RVS_HOST or not RVS_TOKEN:
|
||||
logger.error("RVS_HOST/RVS_TOKEN fehlen — .env pruefen. Abbruch.")
|
||||
return
|
||||
runner = VoxtralRunner()
|
||||
loop = asyncio.get_running_loop()
|
||||
await loop.run_in_executor(None, runner.load) # Modell laden (blockierend)
|
||||
sessions = SessionManager(runner)
|
||||
logger.info("Voxtral-Bridge startet — Modell=%s", VOXTRAL_MODEL)
|
||||
await asyncio.gather(run_loop(sessions), sessions.run_endpointer())
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
try:
|
||||
asyncio.run(main())
|
||||
except KeyboardInterrupt:
|
||||
pass
|
||||
@@ -0,0 +1,11 @@
|
||||
# Voxtral-3B via Transformers. torch/torchaudio kommen cu124-gepinnt aus dem
|
||||
# Dockerfile (nicht hier, sonst zieht pip das Default-CUDA-Wheel).
|
||||
transformers>=4.54
|
||||
mistral-common[audio]>=1.8.1
|
||||
accelerate>=0.30
|
||||
speechbrain>=1.0 # Speaker-ID (ECAPA-TDNN) — nur Stefans Stimme
|
||||
silero-vad>=5.1 # neuronales VAD: echte Sprache vs Stille/Rauschen/Musik
|
||||
soundfile>=0.12
|
||||
librosa>=0.10 # VoxtralProcessor.load_audio_as nutzt librosa zum WAV-Laden
|
||||
numpy>=1.24
|
||||
websockets>=12.0
|
||||
@@ -0,0 +1,272 @@
|
||||
"""
|
||||
Speaker-ID Backend fuer ARIAs Stimmen-Erkennung.
|
||||
|
||||
Nutzt SpeechBrain ECAPA-TDNN (192-dim Embeddings, auf VoxCeleb-1+2 trainiert).
|
||||
Fingerprint = gemittelter, L2-normalisierter Embedding-Vektor aus N
|
||||
Enrollment-Samples. Verify: cosine_similarity(neue_aufnahme, fingerprint).
|
||||
|
||||
Persistenz: /voice-id/fingerprint.json (Float-Liste + Metadaten).
|
||||
Modell-Cache: /root/.cache/huggingface/ (Bind-Mount mit f5tts geteilt).
|
||||
|
||||
Verhalten OHNE Enrollment (kein Fingerprint vorhanden):
|
||||
verify() → (True, 0.0) — Fail-open, damit Speaker-ID-Gating den
|
||||
ungeenrollten Brain-Pfad nicht versehentlich blockiert.
|
||||
"""
|
||||
|
||||
from __future__ import annotations
|
||||
|
||||
import base64
|
||||
import json
|
||||
import logging
|
||||
import os
|
||||
import time
|
||||
from pathlib import Path
|
||||
from typing import Optional
|
||||
|
||||
import numpy as np
|
||||
|
||||
logger = logging.getLogger(__name__)
|
||||
|
||||
VOICE_ID_DIR = Path(os.environ.get("VOICE_ID_DIR", "/voice-id"))
|
||||
FINGERPRINT_FILE = VOICE_ID_DIR / "fingerprint.json"
|
||||
|
||||
# Cosine-Threshold: 0.5 ist konservativ (wenig false-positives), 0.3 ist
|
||||
# locker (mehr Treffer auch bei Nebengeraeuschen). Stefan kann's per
|
||||
# Diagnostic-Setting feintunen.
|
||||
DEFAULT_THRESHOLD = 0.5
|
||||
|
||||
# Minimal-Sample-Laenge fuer ein verlaessliches Embedding (~1s @ 16kHz int16 = 32000 bytes)
|
||||
MIN_SAMPLE_BYTES = 32000
|
||||
|
||||
_model = None
|
||||
|
||||
|
||||
def _ensure_loaded():
|
||||
"""Lazy-Load des ECAPA-TDNN. Holt das Modell beim ersten Aufruf von HF;
|
||||
danach cached im HF-Cache-Volume. Erste Init: ~30s download + load,
|
||||
danach <1s warm. Wirft bei Fehler — Caller muss catchen + fail-open."""
|
||||
global _model
|
||||
if _model is not None:
|
||||
return _model
|
||||
import torch
|
||||
from speechbrain.inference.speaker import EncoderClassifier
|
||||
device = "cuda" if torch.cuda.is_available() else "cpu"
|
||||
logger.info("[speaker-id] loading ECAPA-TDNN on %s ...", device)
|
||||
_model = EncoderClassifier.from_hparams(
|
||||
source="speechbrain/spkrec-ecapa-voxceleb",
|
||||
savedir="/root/.cache/huggingface/speechbrain-ecapa",
|
||||
run_opts={"device": device},
|
||||
)
|
||||
logger.info("[speaker-id] model ready (device=%s)", device)
|
||||
return _model
|
||||
|
||||
|
||||
def _decode_compressed_to_pcm(audio_bytes: bytes) -> bytes:
|
||||
"""Dekodiert komprimiertes Audio (MP4/M4A/AAC vom Android-Recorder) via ffmpeg
|
||||
(im Container vorhanden) auf rohes 16kHz mono int16 LE PCM. Input geht ueber
|
||||
eine Temp-Datei (nicht Pipe): Androids MediaRecorder legt das moov-Atom ans
|
||||
ENDE, das braucht seekbaren Input, sonst 'moov atom not found'."""
|
||||
import os
|
||||
import subprocess
|
||||
import tempfile
|
||||
tmp = None
|
||||
try:
|
||||
with tempfile.NamedTemporaryFile(suffix=".mp4", delete=False) as tf:
|
||||
tf.write(audio_bytes)
|
||||
tmp = tf.name
|
||||
proc = subprocess.run(
|
||||
["ffmpeg", "-hide_banner", "-loglevel", "error", "-i", tmp,
|
||||
"-f", "s16le", "-ac", "1", "-ar", "16000", "pipe:1"],
|
||||
stdout=subprocess.PIPE, stderr=subprocess.PIPE,
|
||||
)
|
||||
if proc.returncode != 0 or not proc.stdout:
|
||||
raise ValueError(
|
||||
f"ffmpeg decode failed: {proc.stderr.decode('utf-8', 'ignore')[:200]}")
|
||||
return proc.stdout
|
||||
finally:
|
||||
if tmp:
|
||||
try:
|
||||
os.unlink(tmp)
|
||||
except Exception:
|
||||
pass
|
||||
|
||||
|
||||
def _normalize_audio_bytes(audio_bytes: bytes) -> bytes:
|
||||
"""Akzeptiert rohes 16kHz int16 LE PCM, eine WAV-Datei (RIFF/WAVE) ODER einen
|
||||
komprimierten MP4/M4A/AAC-Container (Android-Recorder). WAV → Header strippen +
|
||||
Format validieren; MP4/AAC → via ffmpeg dekodieren. Ergebnis: rohes PCM."""
|
||||
if (len(audio_bytes) >= 44
|
||||
and audio_bytes[:4] == b"RIFF"
|
||||
and audio_bytes[8:12] == b"WAVE"):
|
||||
import io
|
||||
import wave
|
||||
with wave.open(io.BytesIO(audio_bytes), "rb") as wav:
|
||||
sr = wav.getframerate()
|
||||
ch = wav.getnchannels()
|
||||
sw = wav.getsampwidth()
|
||||
if sr != 16000:
|
||||
raise ValueError(f"WAV-Samplerate {sr} != 16000")
|
||||
if ch != 1:
|
||||
raise ValueError(f"WAV-Kanalzahl {ch} != 1 (mono erwartet)")
|
||||
if sw != 2:
|
||||
raise ValueError(f"WAV-Sampleweite {sw} != 2 (int16 erwartet)")
|
||||
return wav.readframes(wav.getnframes())
|
||||
# MP4/M4A/AAC-Container: Android-AAC-Recorder legt 'ftyp' bei Offset 4 an.
|
||||
if len(audio_bytes) >= 12 and audio_bytes[4:8] == b"ftyp":
|
||||
return _decode_compressed_to_pcm(audio_bytes)
|
||||
return audio_bytes
|
||||
|
||||
|
||||
def _audio_bytes_to_tensor(audio_bytes: bytes):
|
||||
"""int16 LE PCM (16kHz mono) → Torch-Tensor (1, N), normalisiert auf [-1, 1].
|
||||
WAV wird vorher auf rohes PCM reduziert (Header strippen)."""
|
||||
import torch
|
||||
raw = _normalize_audio_bytes(audio_bytes)
|
||||
arr = np.frombuffer(raw, dtype=np.int16).astype(np.float32) / 32768.0
|
||||
return torch.from_numpy(arr).unsqueeze(0)
|
||||
|
||||
|
||||
def embed(audio_bytes: bytes) -> np.ndarray:
|
||||
"""Berechnet das Speaker-Embedding fuer einen Audio-Chunk.
|
||||
Erwartet 16kHz int16 LE PCM Mono. Returns 192-dim numpy float32."""
|
||||
import torch
|
||||
model = _ensure_loaded()
|
||||
wav = _audio_bytes_to_tensor(audio_bytes)
|
||||
with torch.no_grad():
|
||||
emb = model.encode_batch(wav)
|
||||
return emb.squeeze().cpu().numpy().astype(np.float32)
|
||||
|
||||
|
||||
def cosine_similarity(a: np.ndarray, b: np.ndarray) -> float:
|
||||
"""Kosinus-Aehnlichkeit zwischen zwei 1D-Vektoren, Range [-1, 1].
|
||||
Hoeher = aehnlicher. Bei normalisierten Vektoren ist das gleich dem Skalarprodukt."""
|
||||
na = np.linalg.norm(a)
|
||||
nb = np.linalg.norm(b)
|
||||
if na < 1e-9 or nb < 1e-9:
|
||||
return 0.0
|
||||
return float(np.dot(a, b) / (na * nb))
|
||||
|
||||
|
||||
def save_fingerprint(embeddings: list[np.ndarray], sample_durations_s: list[float]) -> dict:
|
||||
"""Mittelt + L2-normalisiert die Embeddings und schreibt sie nach
|
||||
FINGERPRINT_FILE. Returns das gespeicherte Dict."""
|
||||
if not embeddings:
|
||||
raise ValueError("Keine Embeddings zum Speichern")
|
||||
VOICE_ID_DIR.mkdir(parents=True, exist_ok=True)
|
||||
stacked = np.stack(embeddings)
|
||||
mean = stacked.mean(axis=0)
|
||||
mean = mean / max(np.linalg.norm(mean), 1e-9)
|
||||
data = {
|
||||
"version": 1,
|
||||
"embedding": mean.tolist(),
|
||||
"embedding_dim": int(mean.shape[0]),
|
||||
"sample_count": len(embeddings),
|
||||
"sample_durations_s": [float(s) for s in sample_durations_s],
|
||||
"updated_at": int(time.time()),
|
||||
}
|
||||
FINGERPRINT_FILE.write_text(json.dumps(data, indent=2), encoding="utf-8")
|
||||
logger.info("[speaker-id] fingerprint gespeichert: %d Samples, dim=%d, total_s=%.1f",
|
||||
len(embeddings), mean.shape[0], sum(sample_durations_s))
|
||||
return data
|
||||
|
||||
|
||||
def load_fingerprint() -> Optional[dict]:
|
||||
"""Returns das Fingerprint-Dict oder None wenn noch nicht enrolled."""
|
||||
if not FINGERPRINT_FILE.exists():
|
||||
return None
|
||||
try:
|
||||
return json.loads(FINGERPRINT_FILE.read_text(encoding="utf-8"))
|
||||
except Exception as exc:
|
||||
logger.warning("[speaker-id] fingerprint laden fehlgeschlagen: %s", exc)
|
||||
return None
|
||||
|
||||
|
||||
def delete_fingerprint() -> bool:
|
||||
"""Loescht den Fingerprint (z.B. fuer Re-Enrollment). True wenn was weg ist."""
|
||||
if FINGERPRINT_FILE.exists():
|
||||
FINGERPRINT_FILE.unlink()
|
||||
logger.info("[speaker-id] fingerprint geloescht")
|
||||
return True
|
||||
return False
|
||||
|
||||
|
||||
def verify(audio_bytes: bytes, threshold: Optional[float] = None) -> tuple[bool, float]:
|
||||
"""Returns (is_match, similarity).
|
||||
|
||||
Wenn threshold=None: nutzt den Modul-Default (DEFAULT_THRESHOLD) — der wird
|
||||
vom config-Broadcast zur Laufzeit auf den Diagnostic-Slider-Wert gesetzt.
|
||||
Default-Arg-Bindung waere zur Def-Zeit, also bewusst None statt direkt.
|
||||
|
||||
Fail-open: wenn kein Fingerprint vorhanden ist oder das Embedding-Modell
|
||||
crasht, returnt (True, 0.0) — kein Filtering. Sonst wuerde ein kaputter
|
||||
Speaker-ID-Service die ganze Aufnahme blockieren."""
|
||||
if threshold is None:
|
||||
threshold = DEFAULT_THRESHOLD
|
||||
fp = load_fingerprint()
|
||||
if fp is None:
|
||||
return True, 0.0
|
||||
if len(audio_bytes) < MIN_SAMPLE_BYTES:
|
||||
# Zu wenig Audio fuer ein verlaessliches Embedding → durchlassen
|
||||
return True, 0.0
|
||||
try:
|
||||
saved_emb = np.array(fp["embedding"], dtype=np.float32)
|
||||
new_emb = embed(audio_bytes)
|
||||
except Exception as exc:
|
||||
logger.warning("[speaker-id] verify embed failed: %s — fail-open", exc)
|
||||
return True, 0.0
|
||||
sim = cosine_similarity(new_emb, saved_emb)
|
||||
return sim >= threshold, sim
|
||||
|
||||
|
||||
def status() -> dict:
|
||||
"""Status-Snapshot fuer die App / Diagnostic."""
|
||||
fp = load_fingerprint()
|
||||
return {
|
||||
"enrolled": fp is not None,
|
||||
"sample_count": fp.get("sample_count", 0) if fp else 0,
|
||||
"sample_durations_s": fp.get("sample_durations_s", []) if fp else [],
|
||||
"updated_at": fp.get("updated_at") if fp else None,
|
||||
"embedding_dim": fp.get("embedding_dim") if fp else None,
|
||||
"default_threshold": DEFAULT_THRESHOLD,
|
||||
}
|
||||
|
||||
|
||||
def enroll_from_samples(samples_b64: list[str]) -> dict:
|
||||
"""Verarbeitet base64-Samples (16kHz int16 LE PCM Mono) zu einem neuen
|
||||
Fingerprint. Returns Status-Dict. Wirft ValueError wenn nichts brauchbar ist."""
|
||||
if not samples_b64:
|
||||
raise ValueError("Keine Samples uebergeben")
|
||||
embeddings: list[np.ndarray] = []
|
||||
durations: list[float] = []
|
||||
rejected: list[dict] = []
|
||||
for idx, s in enumerate(samples_b64):
|
||||
try:
|
||||
raw = base64.b64decode(s)
|
||||
except Exception as exc:
|
||||
rejected.append({"index": idx, "reason": f"base64: {exc}"})
|
||||
continue
|
||||
# Erst dekodieren (WAV/MP4/AAC → rohes PCM), DANN Laenge pruefen: der
|
||||
# Android-Recorder liefert komprimiertes MP4, dessen Byte-Laenge nichts
|
||||
# ueber die Dauer sagt (4s AAC < 32KB → faelschlich "zu kurz").
|
||||
try:
|
||||
pcm = _normalize_audio_bytes(raw)
|
||||
except Exception as exc:
|
||||
rejected.append({"index": idx, "reason": f"decode: {exc}"})
|
||||
continue
|
||||
if len(pcm) < MIN_SAMPLE_BYTES:
|
||||
rejected.append({"index": idx, "reason": f"zu kurz ({len(pcm)} bytes PCM)"})
|
||||
continue
|
||||
try:
|
||||
emb = embed(pcm)
|
||||
embeddings.append(emb)
|
||||
durations.append(len(pcm) / 2 / 16000.0)
|
||||
except Exception as exc:
|
||||
rejected.append({"index": idx, "reason": f"embed: {exc}"})
|
||||
if not embeddings:
|
||||
raise ValueError(
|
||||
f"Keine Samples konnten verarbeitet werden ({len(rejected)} rejected). "
|
||||
f"Details: {rejected[:3]}"
|
||||
)
|
||||
fingerprint = save_fingerprint(embeddings, durations)
|
||||
fingerprint["rejected"] = rejected
|
||||
return fingerprint
|
||||
+68
-2
@@ -75,7 +75,27 @@ STREAM_SESSION_TTL_S = 120 # tote Sessions nach 2 min aufraeumen
|
||||
# (Whisper oszilliert/halluziniert). Echte akustische Stille ist das robuste
|
||||
# „User hat aufgehoert"-Signal.
|
||||
STREAM_ENERGY_WINDOW_MS = 300 # RMS ueber die letzten 300ms Audio messen
|
||||
STREAM_VOICE_RMS_THRESHOLD = 0.012 # RMS darueber = Sprache (haelt Session am Leben)
|
||||
# --- Adaptiver Voice-Schwellwert (ersetzt die fixe 0.012-Grenze) ---
|
||||
# Problem (Repro dokumentiert in audio.ts): eine FESTE RMS-Grenze schneidet
|
||||
# leises/entferntes Sprechen faelschlich als „Stille" (Handy weiter weg vom Mund,
|
||||
# ruhig im Auto, kurze Sprech-Pause) → Cut mitten im Satz. Loesung: die Grenze
|
||||
# relativ zum gemessenen Rausch-Boden der Session fuehren. Sprache =
|
||||
# noise_floor * Faktor, geklammert auf [MIN, MAX]. Bei noch ungelerntem Boden
|
||||
# gilt MIN → sensibel, lieber nicht abschneiden.
|
||||
STREAM_VOICE_FACTOR = 2.5 # Sprache = noise_floor * Faktor
|
||||
STREAM_VOICE_RMS_MIN = 0.005 # Untergrenze (stiller Raum: nicht auf 0 kollabieren)
|
||||
STREAM_VOICE_RMS_MAX = 0.020 # Obergrenze (lautes Auto: Sprache nie ganz aussperren)
|
||||
STREAM_VOICE_RMS_THRESHOLD = 0.012 # Legacy-Konstante (nicht mehr im Cut-Pfad genutzt)
|
||||
|
||||
# Speaker-ID Gating global an/aus. DEFAULT AUS (fail-open) — bewusster Schalter
|
||||
# ("nur meine Stimme"), kein Automatismus: ein schlechter Enroll darf nie die STT
|
||||
# lahmlegen. Wird per config-Broadcast (voiceIdEnabled) zur Laufzeit gesetzt.
|
||||
SPEAKER_ID_ENABLED = os.getenv("VOICE_ID_ENABLED", "false").lower() in ("1", "true", "yes")
|
||||
|
||||
|
||||
def _set_speaker_id_enabled(val: bool) -> None:
|
||||
global SPEAKER_ID_ENABLED
|
||||
SPEAKER_ID_ENABLED = bool(val)
|
||||
# Rein-semantischer Backstop: wenn die Energie NIE faellt (laute Umgebung,
|
||||
# z.B. Auto), endpointen wir trotzdem — aber erst nach diesem Faktor x
|
||||
# endpoint_ms, damit normales Sprechen mit Pausen nicht abgeschnitten wird.
|
||||
@@ -323,6 +343,10 @@ class StreamSession:
|
||||
last_growth_at: float = 0.0
|
||||
last_transcribe_at: float = 0.0
|
||||
last_voice_at: float = 0.0 # letzter Tick mit akustischer Sprach-Energie
|
||||
noise_floor: float = 0.0 # adaptiver Rausch-Boden (0.0 = noch ungelernt)
|
||||
voice_factor: float = STREAM_VOICE_FACTOR # per-Session konfigurierbar (Payload voiceFactor)
|
||||
voice_rms_min: float = STREAM_VOICE_RMS_MIN
|
||||
voice_rms_max: float = STREAM_VOICE_RMS_MAX
|
||||
closed: bool = False # nach stream_end gesetzt
|
||||
endpoint_sent: bool = False # Endpoint nur einmal feuern
|
||||
# Speaker-ID Gating: bei aktiviertem Fingerprint pruefen wir die ersten
|
||||
@@ -372,6 +396,10 @@ class SessionManager:
|
||||
speed = float(payload.get("speed") or 1.0)
|
||||
except (TypeError, ValueError):
|
||||
speed = 1.0
|
||||
try:
|
||||
voice_factor = float(payload.get("voiceFactor") or STREAM_VOICE_FACTOR)
|
||||
except (TypeError, ValueError):
|
||||
voice_factor = STREAM_VOICE_FACTOR
|
||||
session = StreamSession(
|
||||
request_id=request_id,
|
||||
audio_request_id=payload.get("audioRequestId", "") or "",
|
||||
@@ -381,6 +409,7 @@ class SessionManager:
|
||||
hard_cap_ms=hard_cap_ms,
|
||||
voice=payload.get("voice", "") or "",
|
||||
speed=speed,
|
||||
voice_factor=voice_factor,
|
||||
interrupted=bool(payload.get("interrupted", False)),
|
||||
location=payload.get("location") or None,
|
||||
sample_rate=int(payload.get("sampleRate") or 16000),
|
||||
@@ -448,6 +477,11 @@ class SessionManager:
|
||||
Ohne Fingerprint → fail-open (match=True). Bei mismatch wird die
|
||||
Session sofort beendet mit synthetischem stt_endpoint."""
|
||||
sess.speaker_checked = True
|
||||
# Schalter aus (Default) → gar keine Pruefung, alles durchlassen.
|
||||
if not SPEAKER_ID_ENABLED:
|
||||
sess.speaker_match = True
|
||||
sess.speaker_similarity = 0.0
|
||||
return
|
||||
# Erste ~1.5s aus dem Buffer entnehmen (16kHz * 2 byte/sample = 32 bytes/ms)
|
||||
head_bytes = bytes(sess.pcm_buffer[: STREAM_SPEAKER_CHECK_MS * 32])
|
||||
if len(head_bytes) < speaker_id.MIN_SAMPLE_BYTES:
|
||||
@@ -549,8 +583,16 @@ class SessionManager:
|
||||
# Akustische Sprach-Aktivitaet JEDEN Tick (~200ms) messen — unabhaengig
|
||||
# vom Transcribe-Throttle. Solange wirklich gesprochen wird, bleibt die
|
||||
# Session am Leben, auch wenn Whisper gerade keinen neuen Text liefert.
|
||||
if self._tail_rms(sess) >= STREAM_VOICE_RMS_THRESHOLD:
|
||||
# ADAPTIV: der Schwellwert richtet sich nach dem gemessenen Rausch-Boden
|
||||
# (fast-down/slow-up), damit leises/entferntes Sprechen nicht faelschlich
|
||||
# als Stille gilt und der Satz mitten drin abgeschnitten wird.
|
||||
rms = self._tail_rms(sess)
|
||||
if rms >= self._voice_threshold(sess):
|
||||
sess.last_voice_at = now
|
||||
else:
|
||||
# Rausch-Boden NUR aus Nicht-Sprache lernen — waehrend Sprache
|
||||
# einfrieren, sonst wandert die Grenze hoch und sperrt Sprache aus.
|
||||
self._update_noise_floor(sess, rms)
|
||||
|
||||
# Endpoint-Entscheidung JEDEN Tick, sobald ueberhaupt Text erkannt wurde:
|
||||
# (a) akustisch: seit endpoint_ms keine Sprach-Energie mehr → User ist
|
||||
@@ -620,6 +662,26 @@ class SessionManager:
|
||||
return 0.0
|
||||
return (samples / sess.sample_rate) * 1000.0
|
||||
|
||||
def _voice_threshold(self, sess: StreamSession) -> float:
|
||||
"""Adaptiver Voice-Schwellwert = Rausch-Boden * Faktor, geklammert auf
|
||||
[min, max]. Bei noch ungelerntem Boden (0.0) → Untergrenze: sensibel,
|
||||
lieber nicht abschneiden (das war der eigentliche Cutoff-Bug)."""
|
||||
nf = sess.noise_floor
|
||||
if nf <= 0.0:
|
||||
return sess.voice_rms_min
|
||||
return min(max(nf * sess.voice_factor, sess.voice_rms_min), sess.voice_rms_max)
|
||||
|
||||
def _update_noise_floor(self, sess: StreamSession, rms: float) -> None:
|
||||
"""Rausch-Boden nachfuehren: schnell runter (neue, leisere Stille),
|
||||
langsam rauf (Umgebung wird lauter). NUR mit Nicht-Sprache aufrufen."""
|
||||
nf = sess.noise_floor
|
||||
if nf <= 0.0:
|
||||
sess.noise_floor = rms
|
||||
elif rms < nf:
|
||||
sess.noise_floor = 0.90 * nf + 0.10 * rms
|
||||
else:
|
||||
sess.noise_floor = 0.98 * nf + 0.02 * rms
|
||||
|
||||
def _tail_rms(self, sess: StreamSession) -> float:
|
||||
"""RMS-Energie der letzten STREAM_ENERGY_WINDOW_MS des Audio-Buffers.
|
||||
Dient als akustisches „redet noch / ist still"-Signal."""
|
||||
@@ -928,6 +990,10 @@ async def run_loop(runner: WhisperRunner, sessions: SessionManager) -> None:
|
||||
logger.info("[speaker-id] threshold gesetzt: %.2f", t)
|
||||
except (TypeError, ValueError):
|
||||
pass
|
||||
if "voiceIdEnabled" in payload:
|
||||
_set_speaker_id_enabled(payload.get("voiceIdEnabled"))
|
||||
logger.info("[speaker-id] Gating %s (voiceIdEnabled)",
|
||||
"AN" if SPEAKER_ID_ENABLED else "AUS")
|
||||
if "whisperDebugLog" in payload:
|
||||
global _DEBUG_LOG_TO_BRIDGE
|
||||
old = _DEBUG_LOG_TO_BRIDGE
|
||||
|
||||
@@ -61,10 +61,40 @@ def _ensure_loaded():
|
||||
return _model
|
||||
|
||||
|
||||
def _decode_compressed_to_pcm(audio_bytes: bytes) -> bytes:
|
||||
"""Dekodiert komprimiertes Audio (MP4/M4A/AAC vom Android-Recorder) via ffmpeg
|
||||
(im Container vorhanden) auf rohes 16kHz mono int16 LE PCM. Input geht ueber
|
||||
eine Temp-Datei (nicht Pipe): Androids MediaRecorder legt das moov-Atom ans
|
||||
ENDE, das braucht seekbaren Input, sonst 'moov atom not found'."""
|
||||
import os
|
||||
import subprocess
|
||||
import tempfile
|
||||
tmp = None
|
||||
try:
|
||||
with tempfile.NamedTemporaryFile(suffix=".mp4", delete=False) as tf:
|
||||
tf.write(audio_bytes)
|
||||
tmp = tf.name
|
||||
proc = subprocess.run(
|
||||
["ffmpeg", "-hide_banner", "-loglevel", "error", "-i", tmp,
|
||||
"-f", "s16le", "-ac", "1", "-ar", "16000", "pipe:1"],
|
||||
stdout=subprocess.PIPE, stderr=subprocess.PIPE,
|
||||
)
|
||||
if proc.returncode != 0 or not proc.stdout:
|
||||
raise ValueError(
|
||||
f"ffmpeg decode failed: {proc.stderr.decode('utf-8', 'ignore')[:200]}")
|
||||
return proc.stdout
|
||||
finally:
|
||||
if tmp:
|
||||
try:
|
||||
os.unlink(tmp)
|
||||
except Exception:
|
||||
pass
|
||||
|
||||
|
||||
def _normalize_audio_bytes(audio_bytes: bytes) -> bytes:
|
||||
"""Akzeptiert entweder rohes 16kHz int16 LE PCM ODER eine WAV-Datei (RIFF/WAVE).
|
||||
Bei WAV wird der Header gestrippt + Format validiert (16kHz / mono / int16).
|
||||
Ergebnis: rohes PCM."""
|
||||
"""Akzeptiert rohes 16kHz int16 LE PCM, eine WAV-Datei (RIFF/WAVE) ODER einen
|
||||
komprimierten MP4/M4A/AAC-Container (Android-Recorder). WAV → Header strippen +
|
||||
Format validieren; MP4/AAC → via ffmpeg dekodieren. Ergebnis: rohes PCM."""
|
||||
if (len(audio_bytes) >= 44
|
||||
and audio_bytes[:4] == b"RIFF"
|
||||
and audio_bytes[8:12] == b"WAVE"):
|
||||
@@ -81,6 +111,9 @@ def _normalize_audio_bytes(audio_bytes: bytes) -> bytes:
|
||||
if sw != 2:
|
||||
raise ValueError(f"WAV-Sampleweite {sw} != 2 (int16 erwartet)")
|
||||
return wav.readframes(wav.getnframes())
|
||||
# MP4/M4A/AAC-Container: Android-AAC-Recorder legt 'ftyp' bei Offset 4 an.
|
||||
if len(audio_bytes) >= 12 and audio_bytes[4:8] == b"ftyp":
|
||||
return _decode_compressed_to_pcm(audio_bytes)
|
||||
return audio_bytes
|
||||
|
||||
|
||||
@@ -212,13 +245,21 @@ def enroll_from_samples(samples_b64: list[str]) -> dict:
|
||||
except Exception as exc:
|
||||
rejected.append({"index": idx, "reason": f"base64: {exc}"})
|
||||
continue
|
||||
if len(raw) < MIN_SAMPLE_BYTES:
|
||||
rejected.append({"index": idx, "reason": f"zu kurz ({len(raw)} bytes)"})
|
||||
# Erst dekodieren (WAV/MP4/AAC → rohes PCM), DANN Laenge pruefen: der
|
||||
# Android-Recorder liefert komprimiertes MP4, dessen Byte-Laenge nichts
|
||||
# ueber die Dauer sagt (4s AAC < 32KB → faelschlich "zu kurz").
|
||||
try:
|
||||
pcm = _normalize_audio_bytes(raw)
|
||||
except Exception as exc:
|
||||
rejected.append({"index": idx, "reason": f"decode: {exc}"})
|
||||
continue
|
||||
if len(pcm) < MIN_SAMPLE_BYTES:
|
||||
rejected.append({"index": idx, "reason": f"zu kurz ({len(pcm)} bytes PCM)"})
|
||||
continue
|
||||
try:
|
||||
emb = embed(raw)
|
||||
emb = embed(pcm)
|
||||
embeddings.append(emb)
|
||||
durations.append(len(raw) / 2 / 16000.0)
|
||||
durations.append(len(pcm) / 2 / 16000.0)
|
||||
except Exception as exc:
|
||||
rejected.append({"index": idx, "reason": f"embed: {exc}"})
|
||||
if not embeddings:
|
||||
|
||||
Reference in New Issue
Block a user