mirror of
https://github.com/sipeed/picoclaw.git
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403ceb39be
## Config field fixes (cross-verified against Go source) - MaixCam: server_address → host + port - IRC: use_tls → tls, channels_to_join → channels (all 6 languages) - WeCom AI Bot: callback port 18791 → 18790 - credential_encryption: base_url → api_base, add required model field, remove incorrect passphrase-only mode docs - providers.md: agents.defaults.model → model_name (×4), remove non-existent session.backlog_limit - migration guide, troubleshooting: agents.defaults.model → model_name - ANTIGRAVITY_AUTH: fix file path, Go 1.21 → 1.25, model → model_name - spawn-tasks: fix truncated file, add Heartbeat introduction - tools_configuration: add Tavily/SearXNG/GLMSearch, exec allow_remote/ timeout_seconds/custom_allow_patterns, cron allow_command, skills github/search_cache, clawhub timeout/max_zip_size/max_response_size - configuration: fix builtin skills path (build-time embedded, not cwd), HEARTBEAT.md marked auto-generated ## Broken link fixes (15 total) - chat-apps.md: WeCom/Matrix links with wrong relative paths - providers.md: migration link with extra docs/ prefix - hardware-compatibility.md: README links with wrong depth (all 5 langs) - chat-apps.md: WhatsApp dead links → anchor links (zh/ja) ## Getting-started accuracy - README (all 6 langs): add picoclaw.io as recommended download, add missing picoclaw model CLI command - docker.md: clarify first-run trigger condition (all 6 langs) - configuration.md: fix builtin skills path description (all 6 langs) ## QQ channel - Add quick setup via q.qq.com/qqbot/openclaw (one-click bot creation) - Add manual setup as fallback (all 6 languages) ## Feishu channel - Update setup flow: WebSocket/SDK mode, no webhook URL needed - Preserve Lark international domain note (all 6 languages) ## chat-apps.md - Add Feishu, Slack, IRC, OneBot detail sections (all 6 languages) - Add MaixCam section to ja/fr/pt-br/vi - Fix all channel doc links to point to correct language version ## New translations (25 files, 5 docs × 5 languages) debug.md, credential_encryption.md, hardware-compatibility.md, ANTIGRAVITY_AUTH.md, ANTIGRAVITY_USAGE.md → zh/ja/fr/pt-br/vi ## Channel docs (6 languages each, 60 new files) telegram, discord, qq, feishu, maixcam, dingtalk, line, slack, onebot, wecom/wecom_aibot, wecom/wecom_app, wecom/wecom_bot Co-authored-by: BeaconCat <BeaconCat@users.noreply.github.com>
153 lines
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153 lines
8.0 KiB
Markdown
> Retour au [README](../../README.fr.md)
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# 🖥️ PicoClaw Liste de compatibilité matérielle
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PicoClaw fonctionne sur pratiquement n'importe quel appareil Linux. Cette page répertorie les puces, produits et cartes de développement vérifiés.
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**Votre matériel n'est pas listé ?** Soumettez une PR pour l'ajouter ! Les fabricants de matériel sont invités à contribuer et à co-promouvoir.
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---
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## 1. Support de puces vérifié
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### x86
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| Fabricant | Puce | Notes |
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|-----------|------|-------|
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| Intel | Any x86 CPU (i386+) | Tous les processeurs de bureau/serveur/portable |
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| AMD | Any x86 CPU | Tous les processeurs de bureau/serveur/portable |
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### ARM
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| Sous-arch | Puces typiques | Notes |
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|-----------|----------------|-------|
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| ARMv6 | [BCM2835](https://www.raspberrypi.com/documentation/computers/processors.html#bcm2835) (Raspberry Pi 1/Zero) | Monocœur ARM1176JZF-S |
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| ARMv7 | [Allwinner V3s](https://linux-sunxi.org/V3s) | Monocœur Cortex-A7, utilisé dans LicheePi Zero |
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| ARM64 | [Allwinner H618](https://linux-sunxi.org/H618) | Quadricœur Cortex-A53, utilisé dans Orange Pi Zero 3 |
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| ARM64 | [BCM2711](https://www.raspberrypi.com/documentation/computers/processors.html#bcm2711) (Raspberry Pi 4) | Quadricœur Cortex-A72 |
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| ARM64 | [BCM2712](https://www.raspberrypi.com/documentation/computers/processors.html#bcm2712) (Raspberry Pi 5) | Quadricœur Cortex-A76 |
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| ARM64 | [AX630C](https://www.axera-tech.com/) (爱芯元智) | Bicœur Cortex-A53 + NPU, utilisé dans NanoKVM-Pro / MaixCAM2 |
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### RISC-V (riscv64)
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| Fabricant | Puce | Cœur | Notes |
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|-----------|------|------|-------|
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| [SOPHGO (算能)](https://www.sophgo.com/) | SG2002 | C906 @ 1GHz | 256MB DDR3 intégré, utilisé dans LicheeRV-Nano / NanoKVM / MaixCAM |
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| [Allwinner (全志)](https://www.allwinnertech.com/) | V861 | Dual C907 | 128MB DDR3L intégré, 1 TOPS NPU, caméra AI 4K SiP |
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| [Allwinner (全志)](https://www.allwinnertech.com/) | V881 | C907 | Série de caméras AI RISC-V |
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| [Arterytek (匠芯创)](https://www.arterytek.com/) | D213 | RISC-V | Utilisé dans HaaS506-LD1 RTU industriel |
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| [SpacemiT (进迭)](https://www.spacemit.com/) | K1 | 8x X60 @ 1.8GHz | Utilisé dans Milk-V Jupiter, BananaPi BPI-F3 |
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| [SpacemiT (进迭)](https://www.spacemit.com/) | K3 | 8x X100 @ 2.5GHz | Conforme RVA23, RVV 1024 bits, inférence AI FP8 |
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| [Zhihe (知合)](https://www.zhihe-tech.com/) | A210 | High-perf RISC-V | 8 cœurs, 16MB cache L3, classe bureau |
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| [Canaan (嘉楠)](https://www.canaan-creative.com/) | K230 | Dual C908 @ 1.6GHz | 6 TOPS KPU, utilisé dans CanMV-K230 |
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### MIPS
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| Fabricant | Puce | Notes |
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|-----------|------|-------|
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| MediaTek | [MT7620](https://www.mediatek.com/products/home-networking/mt7620) | MIPS24KEc @ 580MHz, utilisé dans de nombreux routeurs OpenWrt (ex. Xiaomi Router 3G) |
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### LoongArch (loong64)
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| Fabricant | Puce | Notes |
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|-----------|------|-------|
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| [Loongson (龙芯)](https://www.loongson.cn/) | 3A5000 | Quadricœur LA464 @ 2.5GHz, bureau/station de travail |
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| [Loongson (龙芯)](https://www.loongson.cn/) | 3A6000 | Quadricœur 4C/8T @ 2.5GHz, IPC comparable à Intel 10e génération |
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| [Loongson (龙芯)](https://www.loongson.cn/) | 2K1000LA | Bicœur @ 1GHz, applications industrielles/IoT |
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---
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## 2. Produits vérifiés (par date de sortie)
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Produits grand public, routeurs et appareils industriels testés avec PicoClaw.
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| Année | Produit | Arch | SoC | RAM | Catégorie |
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|-------|---------|------|-----|-----|-----------|
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| 2009 | Nokia N900 | ARM (A8) | OMAP3430 | 256MB | Smartphone |
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| 2012 | Samsung Galaxy Note 10.1 (N8000) | ARM (A9) | Exynos 4412 | 2GB | Tablette |
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| 2016 | Xiaomi Router 3G (小米路由器3G) | MIPS | MT7620 | 256MB | Routeur (OpenWrt) |
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| 2018 | Phicomm N1 (斐讯N1) | ARM64 (A53) | S905D | 2GB | Boîtier TV / Serveur domestique |
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| 2019 | Xiaomi AI Speaker (小爱音箱) | ARM64 (A53) | — | 256MB | Enceinte connectée |
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| 2024 | [NanoKVM](https://wiki.sipeed.com/hardware/en/kvm/NanoKVM/introduction.html) | RISC-V | SG2002 | 256MB | IP-KVM |
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| 2025 | HaaS506-LD1 | RISC-V | D213 | 128MB | RTU industriel |
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| 2025 | [NanoKVM-Pro](https://wiki.sipeed.com/hardware/en/kvm/NanoKVM_Pro/introduction.html) | ARM64 (A53) | AX630C | 1GB | IP-KVM Pro |
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| 2026 | [MaixCAM2](https://wiki.sipeed.com/hardware/en/maixcam/index.html) | ARM64 (A53) | AX630C | 1/4GB | Caméra AI 4K |
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---
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## 3. Cartes de développement vérifiées (par date de sortie)
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| Année | Carte | Arch | SoC | RAM | Lien d'achat |
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|-------|-------|------|-----|-----|--------------|
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| 2012 | [Raspberry Pi 1 Model B](https://www.raspberrypi.com/products/) | ARMv6 | BCM2835 | 512MB | — |
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| 2015 | [Raspberry Pi 2 Model B](https://www.raspberrypi.com/products/raspberry-pi-2-model-b/) | ARMv7 (A7) | BCM2836 | 1GB | — |
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| 2015 | [Raspberry Pi Zero](https://www.raspberrypi.com/products/raspberry-pi-zero/) | ARMv6 | BCM2835 | 512MB | — |
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| 2016 | [Raspberry Pi 3 Model B](https://www.raspberrypi.com/products/raspberry-pi-3-model-b/) | ARM64 (A53) | BCM2837 | 1GB | — |
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| 2017 | [LicheePi Zero](https://wiki.sipeed.com/hardware/en/lichee/Zero/Zero.html) | ARMv7 (A7) | Allwinner V3s | 64MB | [Sipeed](https://sipeed.com/) |
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| 2019 | [Raspberry Pi 4 Model B](https://www.raspberrypi.com/products/raspberry-pi-4-model-b/) | ARM64 (A72) | BCM2711 | 1~8GB | [RPi](https://www.raspberrypi.com/) |
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| 2023 | [Raspberry Pi 5](https://www.raspberrypi.com/products/raspberry-pi-5/) | ARM64 (A76) | BCM2712 | 2~8GB | [RPi](https://www.raspberrypi.com/) |
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| 2024 | [LicheeRV-Nano](https://wiki.sipeed.com/hardware/en/lichee/RV_Nano/1_intro.html) | RISC-V | SG2002 | 256MB | [AliExpress](https://www.aliexpress.com/item/1005006519668532.html) |
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| 2024 | [MaixCAM-Pro](https://wiki.sipeed.com/hardware/en/maixcam/index.html) | RISC-V | SG2002 | 256MB | [Sipeed](https://sipeed.com/) |
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| 2024 | [Milk-V Duo 64M](https://milkv.io/docs/duo/getting-started/duo) | RISC-V | CV1800B | 64MB | [Milk-V](https://milkv.io/) |
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| 2024 | [CanMV-K230](https://developer.canaan-creative.com/k230_canmv/en/main/) | RISC-V | K230 | 512MB | [Canaan](https://www.canaan-creative.com/) |
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---
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## 4. Fonctionne également sur
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### Téléphones Android (via Termux)
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Tout téléphone Android ARM64 (2015+) avec 1 Go+ de RAM. Installez [Termux](https://github.com/termux/termux-app), utilisez `proot` pour exécuter PicoClaw.
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> Voir [README : Exécuter sur d'anciens téléphones Android](../../README.fr.md#-run-on-old-android-phones) pour les instructions de configuration.
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### Bureau / Serveur / Cloud
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| Plateforme | Notes |
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|------------|-------|
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| x86_64 Linux | Binaire natif, aucune dépendance |
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| x86_64 Windows | Binaire natif |
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| macOS (Intel / Apple Silicon) | Binaire natif |
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| Docker (any platform) | `docker compose` en une ligne, voir [Guide Docker](docker.md) |
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| OpenWrt routers | Builds MIPS/ARM, nécessite >32 Mo de RAM libre |
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| FreeBSD / NetBSD | Builds x86_64 et arm64 disponibles |
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## 5. Configuration minimale requise
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| Ressource | Minimum | Recommandé |
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|-----------|---------|------------|
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| RAM | 10 Mo libres | 32 Mo+ libres |
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| Stockage | 20 Mo (binaire) | 50 Mo+ (avec espace de travail) |
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| CPU | N'importe lequel (monocœur 0,6 GHz+) | — |
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| OS | Linux (kernel 3.x+) | Linux 5.x+ |
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| Réseau | Requis (pour les appels API LLM) | Ethernet ou WiFi |
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---
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## 6. Comment tester et contribuer
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```bash
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# 1. Télécharger pour votre architecture
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wget https://github.com/sipeed/picoclaw/releases/latest/download/picoclaw_Linux_arm64.tar.gz
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tar xzf picoclaw_Linux_arm64.tar.gz
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# 2. Initialiser
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./picoclaw onboard
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# 3. Tester
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./picoclaw agent -m "Hello, what board am I running on?"
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```
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Builds disponibles : `linux-amd64`, `linux-arm64`, `linux-arm`, `linux-riscv64`, `linux-loong64`, `linux-mipsle`
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### Ajouter votre matériel
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1. Forkez ce dépôt
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2. Ajoutez votre puce / produit / carte dans le tableau approprié
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3. Incluez : nom, architecture, SoC, RAM, année et un lien si disponible
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4. Soumettez une PR
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Fabricants de matériel : vous souhaitez ajouter un support officiel ou co-promouvoir ? Ouvrez une issue ou contactez-nous via [Discord](https://discord.gg/V4sAZ9XWpN).
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