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# Entrypoint script for Hermes Agent on Hugging Face Spaces
# 基于 Hermes Agent 真实 config.yaml 格式(source: cli-config.yaml.example + hermes_cli/config.py)
#
# 启动架构:
# entrypoint.sh
# ├── data_sync daemon (后台, 数据持久化)
# ├── hermes gateway run (后台, API Server :8642 + 消息平台)
# └── node /opt/hermes-web-ui/dist/server/index.js (前台, BFF :7860, 替代 hermes dashboard)
set -e
echo "🚀 Hermes Agent v0.10.0 - Hugging Face Spaces"
echo "=============================================="
# 检查必要的环境变量
if [ -z "$HF_DATASET_REPO" ]; then
echo "⚠️ 警告: HF_DATASET_REPO 未设置,数据将不会持久化到 Dataset"
fi
# ==================== 初始化目录 ====================
echo "📁 初始化目录结构..."
mkdir -p /data/.hermes/{cron,sessions,logs,memories,skills,pairing,hooks,image_cache,audio_cache,whatsapp/session}
mkdir -p /data/.hermes-web-ui
mkdir -p /app/logs
# ==================== 数据恢复 ====================
# 跳过从 Dataset 恢复 config.yaml(由本脚本根据环境变量重新生成)
export SKIP_CONFIG_RESTORE=true
if [ -n "$HF_DATASET_REPO" ]; then
# 如果 HF_TOKEN 未在进程环境变量中,但从 .env 文件中存在,则提前加载
# 否则 data_sync restore 会因为认证失败而丢失恢复
if [ -z "$HF_TOKEN" ] && [ -f /data/.hermes/.env ]; then
while IFS='=' read -r key value; do
if [ "$key" = "HF_TOKEN" ] && [ -n "$value" ]; then
export HF_TOKEN="$value"
echo "📥 已从 .env 加载 HF_TOKEN 用于 data_sync restore"
break
fi
done < /data/.hermes/.env
fi
echo "📥 从 Dataset 恢复数据..."
python -m src.data_sync restore || {
echo "⚠️ 数据恢复失败,使用空配置启动"
}
fi
# ==================== 会话模型同步 ====================
# 解决模型切换后历史记录"消失"问题:
# 将所有历史会话的 model 字段更新为当前模型,使 Web UI 显示所有记录
echo "🔄 同步历史会话模型配置..."
python3 << 'SESSION_SYNC'
import json, os, glob
from pathlib import Path
current_model = os.environ.get('HERMES_MODEL', os.environ.get('MODEL_NAME', ''))
if not current_model:
print(" ⚠️ 未配置模型,跳过会话同步")
exit(0)
sessions_dir = Path('/data/.hermes/sessions')
if not sessions_dir.exists():
print(" ⚠️ 会话目录不存在")
exit(0)
updated = 0
for session_file in sessions_dir.glob('*.json'):
try:
with open(session_file, 'r', encoding='utf-8') as f:
data = json.load(f)
# 保留原始 model 信息
if 'original_model' not in data and 'model' in data:
data['original_model'] = data['model']
# 更新 model 字段为当前模型(使 Web UI 显示此会话)
if data.get('model') != current_model:
data['model'] = current_model
with open(session_file, 'w', encoding='utf-8') as f:
json.dump(data, f, ensure_ascii=False, indent=2)
updated += 1
except Exception as e:
print(f" ⚠️ 处理 {session_file.name} 失败: {e}")
print(f" ✅ 已同步 {updated} 个会话的模型配置")
SESSION_SYNC
# ==================== 模型配置系统 ====================
echo "🤖 配置模型系统..."
# ---- 供应商定义 ----
declare -A PROVIDER_MODELS=(
["xai"]="grok-4.3"
["nvidia"]="moonshotai/kimi-k2-thinking"
["siliconflow"]="deepseek-ai/DeepSeek-V4-Flash"
["openai"]="gpt-4o"
["anthropic"]="claude-3-5-sonnet-20241022"
["google"]="gemini-2.0-flash"
["gemini"]="gemini-2.5-flash"
["openrouter"]="meta-llama/llama-3.1-8b-instruct:free"
["longcat"]="LongCat-Flash-Thinking-2601"
)
declare -A PROVIDER_API_KEYS=(
["xai"]="XAI_API_KEY"
["nvidia"]="NVIDIA_API_KEY"
["siliconflow"]="SILICONFLOW_API_KEY"
["openai"]="OPENAI_API_KEY"
["anthropic"]="ANTHROPIC_API_KEY"
["google"]="GOOGLE_API_KEY"
["gemini"]="GEMINI_API_KEY"
["openrouter"]="OPENROUTER_API_KEY"
["longcat"]="LONGCAT_API_KEY"
)
declare -A PROVIDER_BASE_URLS=(
["xai"]="https://api.x.ai/v1"
["nvidia"]="https://integrate.api.nvidia.com/v1"
["siliconflow"]="https://api.siliconflow.cn/v1"
["openai"]="https://api.openai.com/v1"
["anthropic"]="https://api.anthropic.com/v1"
["google"]="https://generativelanguage.googleapis.com"
["gemini"]="https://generativelanguage.googleapis.com"
["openrouter"]="https://openrouter.ai/api/v1"
["longcat"]="https://api.longcat.chat/openai"
)
# ---- 检测主模型 ----
detect_main_model() {
if [ -n "$MODEL_PROVIDER" ] && [ -n "$MODEL_NAME" ]; then
echo "manual:$MODEL_PROVIDER:$MODEL_NAME"
return
fi
for provider in xai nvidia siliconflow openai anthropic google openrouter longcat; do
api_key_var="${PROVIDER_API_KEYS[$provider]}"
if [ -n "${!api_key_var}" ]; then
if [ -n "$MODEL_NAME" ]; then
echo "auto:$provider:$MODEL_NAME"
else
echo "auto:$provider:${PROVIDER_MODELS[$provider]}"
fi
return
fi
done
if [ -n "$GEMINI_API_KEY" ]; then
echo "auto:gemini:${PROVIDER_MODELS[gemini]}"
return
fi
echo "default:nvidia:${PROVIDER_MODELS[nvidia]}"
}
# Hermes Gateway 实际使用的 provider 名称映射
# 某些 provider 名称在 Gateway 中不被识别,需要映射为 'custom' 或其他有效名称
map_provider_for_gateway() {
local provider="$1"
case "$provider" in
siliconflow)
# Gateway 不认识 'siliconflow',使用 'custom' 并保留 base URL
echo "custom"
;;
*)
echo "$provider"
;;
esac
}
# ---- 检测辅助模型 ----
detect_vision_model() {
if [ -n "$VISION_MODEL" ]; then echo "$VISION_MODEL"; return; fi
if [ -n "$GEMINI_API_KEY" ] || [ -n "$GOOGLE_API_KEY" ]; then echo "google/gemini-2.5-flash"; return; fi
echo ""
}
detect_aux_model() {
if [ -n "$AUX_MODEL" ]; then echo "$AUX_MODEL"; return; fi
if [ -n "$OPENROUTER_API_KEY" ]; then echo "google/gemini-3-flash-preview"; return; fi
if [ -n "$GEMINI_API_KEY" ] || [ -n "$GOOGLE_API_KEY" ]; then echo "google/gemini-2.0-flash"; return; fi
echo ""
}
detect_delegation_model() {
if [ -n "$DELEGATION_MODEL" ]; then echo "$DELEGATION_MODEL"; return; fi
if [ -n "$SILICONFLOW_API_KEY" ]; then echo "Pro/moonshotai/Kimi-K2.5"; return; fi
echo ""
}
# ---- 执行检测 ----
echo ""
echo "📋 模型配置检测:"
echo "────────────────────────────────────────"
MAIN_DETECTED=$(detect_main_model)
IFS=':' read -r MAIN_MODE MAIN_PROVIDER MAIN_MODEL <<< "$MAIN_DETECTED"
echo "🎯 Main Model: $MAIN_PROVIDER/$MAIN_MODEL (模式: $MAIN_MODE)"
VISION_MODEL_VAL=$(detect_vision_model)
echo "👁️ Vision Model: ${VISION_MODEL_VAL:-auto-detect}"
AUX_MODEL_VAL=$(detect_aux_model)
echo "⚡ Aux Model: ${AUX_MODEL_VAL:-auto-detect}"
DELEGATION_MODEL_VAL=$(detect_delegation_model)
echo "💻 Delegation Model: ${DELEGATION_MODEL_VAL:-inherit-main}"
MAIN_BASE_URL="${PROVIDER_BASE_URLS[$MAIN_PROVIDER]}"
echo " Base URL: $MAIN_BASE_URL"
echo "────────────────────────────────────────"
# ==================== 生成 config.yaml ====================
# 不再生成覆盖 config.yaml,保留用户配置(custom_providers 等)
# 只在 config.yaml 不存在时才生成默认配置
if [ ! -f "$CONFIG_FILE" ]; then
echo "📝 生成默认 config.yaml (文件不存在)..."
cat > "$CONFIG_FILE" << EOF
EOF
EOF
echo " ✅ 默认配置已生成"
echo " ✅ 配置文件已生成"
# ==================== 合并用户配置(平台/channel 设置等) ====================
# 如果存在从 Dataset 恢复的 config.yaml.restored,将其中的用户修改区块合并到新生成的 config.yaml
# 合并策略:
# - entrypoint.sh 控制的区块(auxiliary, delegation, api_server):新生成的优先
# (这些由 HF Spaces 环境变量决定,必须权威)
# - 用户在 Web UI 中修改的区块(platforms, display, agent, memory, compression, cron, terminal):
# 恢复的优先(保留用户的个性化设置,如 channel 行为、显示偏好等)
# - custom_providers 始终从 restored 合并(entrypoint.sh 不处理自定义供应商)
# - model.provider / model.base_url 从 restored 合并(用户可能修改为自定义 provider)
RESTORED_CONFIG="/data/.hermes/config.yaml.restored"
if [ -f "$RESTORED_CONFIG" ]; then
echo "🔄 合并用户配置 (platforms, display, agent 等)..."
python3 << 'MERGE_SCRIPT'
import yaml
import sys
GENERATED = '/data/.hermes/config.yaml'
RESTORED = '/data/.hermes/config.yaml.restored'
# 区块优先级定义:
# ENTRYPOINT_PRIORITY → entrypoint.sh 生成的值优先(由 HF Spaces 环境变量控制)
# USER_PRIORITY → 恢复的用户值优先(Web UI 中用户修改的偏好)
# 注意:model 不在 ENTRYPOINT_PRIORITY 中,允许保留用户的 custom_providers 和 provider 设置
ENTRYPOINT_PRIORITY = {'auxiliary', 'delegation', 'api_server'}
USER_PRIORITY = {'platforms', 'display', 'agent', 'memory', 'compression', 'cron', 'terminal'}
try:
with open(GENERATED) as f:
generated = yaml.safe_load(f) or {}
with open(RESTORED) as f:
restored = yaml.safe_load(f) or {}
merged = {}
# 遍历所有出现在任一配置中的顶层键
all_keys = set(list(generated.keys()) + list(restored.keys()))
for key in all_keys:
if key in ENTRYPOINT_PRIORITY:
# 环境变量控制的区块:始终用新生成的值
if key in generated:
merged[key] = generated[key]
elif key in USER_PRIORITY:
# 用户偏好区块:优先用恢复的值,没有则用生成的默认值
if key in restored:
merged[key] = restored[key]
elif key in generated:
merged[key] = generated[key]
else:
# 未明确分类的区块(含 model, custom_providers):优先用恢复的值
if key in restored:
merged[key] = restored[key]
elif key in generated:
merged[key] = generated[key]
# 特殊处理:model.default 由 entrypoint.sh 控制,强制使用新生成的值
# 但 model.provider 和 model.base_url 保留用户自定义(来自 restored)
if 'model' in merged and 'model' in generated:
merged['model']['default'] = generated['model'].get('default', '')
with open(GENERATED, 'w') as f:
yaml.dump(merged, f, default_flow_style=False, allow_unicode=True, sort_keys=False)
# 统计合并了哪些区块
merged_user_keys = [k for k in USER_PRIORITY if k in restored]
merged_other_keys = [k for k in all_keys - ENTRYPOINT_PRIORITY - USER_PRIORITY if k in restored and k not in generated]
print(f" ✅ 已合并用户区块: {', '.join(merged_user_keys) if merged_user_keys else '无'}")
# 检查 custom_providers
if 'custom_providers' in restored:
print(" ✅ 已合并 custom_providers")
except Exception as e:
print(f" ⚠️ 合并配置失败: {e},使用生成的默认配置")
sys.exit(0) # 不阻止启动
MERGE_SCRIPT
# 合并完成后删除临时文件,避免被后续备份重复保存
rm -f "$RESTORED_CONFIG"
else
echo " ℹ️ 无需合并(无恢复的用户配置)"
fi
# ==================== 导出供应商环境变量 ====================
echo "🌐 设置供应商环境变量..."
# 显式导出所有 API Key 和 Base URL,确保 Gateway 子进程能正确继承
# (某些版本的 Hermes CLI 可能依赖显式 export 的环境变量)
for var in XAI_API_KEY NVIDIA_API_KEY SILICONFLOW_API_KEY OPENAI_API_KEY ANTHROPIC_API_KEY GOOGLE_API_KEY GEMINI_API_KEY OPENROUTER_API_KEY LONGCAT_API_KEY; do
if [ -n "${!var}" ]; then
export "$var"
fi
done
if [ -n "$XAI_API_KEY" ]; then
export XAI_BASE_URL="${XAI_BASE_URL:-https://api.x.ai/v1}"
fi
if [ -n "$NVIDIA_API_KEY" ]; then
export NVIDIA_BASE_URL="${NVIDIA_BASE_URL:-https://integrate.api.nvidia.com/v1}"
fi
if [ -n "$SILICONFLOW_API_KEY" ]; then
export SILICONFLOW_BASE_URL="${SILICONFLOW_BASE_URL:-https://api.siliconflow.cn/v1}"
# Gateway 可能不认识 'siliconflow' provider,但认识 'openai' provider
# siliconflow 使用 OpenAI 兼容 API,因此复制 key 到 OPENAI_API_KEY 作为备选
if [ -z "$OPENAI_API_KEY" ]; then
export OPENAI_API_KEY="$SILICONFLOW_API_KEY"
export OPENAI_BASE_URL="${SILICONFLOW_BASE_URL:-https://api.siliconflow.cn/v1}"
echo " ℹ️ 已将 SILICONFLOW_API_KEY 复制到 OPENAI_API_KEY (Gateway 兼容性)"
fi
fi
if [ -n "$GEMINI_API_KEY" ]; then
export GEMINI_BASE_URL="${GEMINI_BASE_URL:-https://generativelanguage.googleapis.com}"
fi
if [ -n "$OPENROUTER_API_KEY" ]; then
export OPENROUTER_BASE_URL="${OPENROUTER_BASE_URL:-https://openrouter.ai/api/v1}"
fi
if [ -n "$LONGCAT_API_KEY" ]; then
export LONGCAT_BASE_URL="${LONGCAT_BASE_URL:-https://api.longcat.chat/openai}"
fi
# 导出 API Server 环境变量(确保 Gateway 以 API Server 模式启动)
export API_SERVER_ENABLED=true
export API_SERVER_PORT=8642
export API_SERVER_HOST=127.0.0.1
# 默认允许所有用户(Hugging Face Spaces 单用户场景,否则 Gateway 拒绝所有消息)
export GATEWAY_ALLOW_ALL_USERS="${GATEWAY_ALLOW_ALL_USERS:-true}"
# 导出 HERMES_HOME(确保 Gateway 能正确定位配置目录)
export HERMES_HOME=/data/.hermes
# 导出 HERMES_MODEL 环境变量(进程级覆盖,影响 cron 等调度任务的模型选择)
export HERMES_MODEL="$MAIN_MODEL"
echo " ✅ API Key 环境变量已导出"
echo " ✅ Base URL 环境变量已设置"
echo " ✅ API Server 环境变量已设置 (端口: 8642)"
echo " ✅ HERMES_HOME=$HERMES_HOME"
echo " ✅ HERMES_MODEL=$HERMES_MODEL (进程级模型覆盖)"
# ==================== 环境变量注入 ====================
echo "⚙️ 注入环境变量到 .env..."
ENV_FILE="/data/.hermes/.env"
mkdir -p /data/.hermes
PERSISTENT_VARS=(
"MODEL_PROVIDER" "MODEL_NAME" "HERMES_MODEL"
"VISION_MODEL" "AUX_MODEL" "DELEGATION_MODEL"
"XAI_API_KEY" "XAI_BASE_URL"
"NVIDIA_API_KEY" "NVIDIA_BASE_URL"
"SILICONFLOW_API_KEY" "SILICONFLOW_BASE_URL"
"OPENAI_API_KEY"
"ANTHROPIC_API_KEY"
"GOOGLE_API_KEY" "GEMINI_API_KEY" "GEMINI_BASE_URL"
"OPENROUTER_API_KEY" "OPENROUTER_BASE_URL"
"LONGCAT_API_KEY" "LONGCAT_BASE_URL"
"API_SERVER_ENABLED" "API_SERVER_PORT" "API_SERVER_HOST"
"TELEGRAM_BOT_TOKEN" "TELEGRAM_ALLOWED_USERS" "TELEGRAM_PROXY"
"DISCORD_BOT_TOKEN" "DISCORD_CLIENT_ID"
"SLACK_BOT_TOKEN" "SLACK_APP_TOKEN" "SLACK_SIGNING_SECRET"
"WHATSAPP_BUSINESS_ID" "WHATSAPP_PHONE_NUMBER" "WHATSAPP_ACCESS_TOKEN"
"WEIXIN_ACCOUNT_ID" "WEIXIN_TOKEN" "WEIXIN_BASE_URL"
"GATEWAY_ALLOW_ALL_USERS"
"AUTH_TOKEN"
"HF_TOKEN"
"HF_DATASET_REPO"
)
# 合并策略:保留恢复的 .env 中由 BFF 等写入的变量(如 WEIXIN_ACCOUNT_ID/WEIXIN_TOKEN),
# 同时用进程环境变量覆盖同名键(进程环境变量优先级更高)。
# 这避免了 "先恢复再清空" 导致 BFF 写入的凭据丢失的问题。
# 第1步:读取恢复的 .env 中所有现有键值对(跳过注释和空行)
declare -A env_entries=()
if [ -f "$ENV_FILE" ]; then
while IFS= read -r line; do
# 跳过注释和空行
[[ "$line" =~ ^[[:space:]]*# ]] && continue
[[ -z "${line// }" ]] && continue
# 提取 KEY=VALUE
eq_idx="${line%%=*}"
if [ -n "$eq_idx" ] && [ "$eq_idx" != "$line" ]; then
env_entries["$eq_idx"]="$line"
fi
done < "$ENV_FILE"
fi
# 第2步:用进程环境变量覆盖/新增 PERSISTENT_VARS 中的键
for var in "${PERSISTENT_VARS[@]}"; do
if [ -n "${!var}" ]; then
env_entries["$var"]="${var}=${!var}"
else
# 进程环境中没有该变量,但恢复的 .env 中可能有 → 保留恢复的值
# 如果恢复的 .env 中也没有,则不写入
:
fi
done
# 第3步:写入合并后的 .env
{
for key in "${!env_entries[@]}"; do
echo "${env_entries[$key]}"
done
} | sort > "$ENV_FILE"
RESTORED_COUNT=$(grep -c '=' "$ENV_FILE")
echo " ✅ 已写入 ${RESTORED_COUNT} 个环境变量(含恢复的持久化变量)"
# ==================== 启动数据同步服务 ====================
SYNC_INTERVAL=${SYNC_INTERVAL:-30}
echo "🔄 数据同步间隔: ${SYNC_INTERVAL}秒(会话实时同步)"
echo "🔄 启动数据同步服务..."
python -m src.data_sync daemon &
SYNC_PID=$!
echo " 同步服务 PID: $SYNC_PID"
# ==================== 配置检查 + 模型锁定 ====================
echo "🔄 检查配置..."
hermes config check 2>/dev/null || echo " 配置检查完成"
echo "🔒 检查模型配置(只锁定 model.default,保留用户自定义 provider/urls)..."
if command -v yq &>/dev/null && [ -f "$CONFIG_FILE" ]; then
ACTUAL_MODEL=$(yq '.model.default' "$CONFIG_FILE" 2>/dev/null)
if [ -z "$ACTUAL_MODEL" ] || [ "$ACTUAL_MODEL" = "null" ] || [ "$ACTUAL_MODEL" != "$MAIN_MODEL" ]; then
echo " 🔧 修正 model.default: $ACTUAL_MODEL -> $MAIN_MODEL"
yq -i ".model.default = \"$MAIN_MODEL\"" "$CONFIG_FILE"
else
echo " ✅ model.default 已正确: $ACTUAL_MODEL"
fi
fi
# ==================== 启动 Gateway (API Server + 消息平台) ====================
echo "📡 启动 Hermes Gateway + API Server..."
# 启动前诊断:打印关键配置信息,便于排查 Provider authentication failed
MAIN_API_KEY_VAR="${PROVIDER_API_KEYS[$MAIN_PROVIDER]}"
MAIN_API_KEY_VAL="${!MAIN_API_KEY_VAR}"
echo "🔍 Gateway 配置诊断:"
echo " 原始 Provider: $MAIN_PROVIDER"
echo " Gateway Provider: $GATEWAY_MAIN_PROVIDER"
echo " Model: $MAIN_MODEL"
echo " Base URL: $MAIN_BASE_URL"
if [ -n "$MAIN_API_KEY_VAL" ]; then
echo " API Key ($MAIN_API_KEY_VAR): 已设置 (长度: ${#MAIN_API_KEY_VAL})"
else
echo " ⚠️ API Key ($MAIN_API_KEY_VAR): 未设置! Provider authentication 可能失败"
fi
# 运行 hermes model 查看可用的 provider 列表(帮助诊断 Unknown provider 错误)
echo "📋 可用的 Provider 列表:"
hermes model 2>/dev/null | head -30 || echo " ⚠️ 无法获取 provider 列表"
# 运行 hermes doctor 诊断配置问题
echo "🔧 运行配置诊断:"
hermes doctor 2>/dev/null | grep -E "(provider|model|config|error|warning)" | head -20 || echo " ⚠️ hermes doctor 不可用"
# Gateway PID 文件(用于追踪当前运行的 gateway 进程)
GATEWAY_PIDFILE="/data/.hermes/gateway.pid"
# Gateway 包装器:自动重启 + 崩溃恢复
# 使用 --replace 避免端口冲突(BFF 偶尔也通过 hermes-cli.ts 调用 restartGateway)
# 崩溃后等待 30 秒重启;正常退出不重启
# BFF 保存 weixin 凭据后会调用 restartGateway(),该函数在 Docker 模式下
# 会 kill 旧进程然后 spawn "hermes gateway run",与本包装器可能竞争。
# --replace 让 gateway 在检测到端口占用时自动替换旧进程,避免冲突。
(
while true; do
hermes gateway run --replace 2>&1 | while IFS= read -r line; do
echo "$line"
case "$line" in
*"Gateway failed to connect"*)
echo " ⚠️ 网关消息平台连接失败,API Server 仍可使用,30 秒后重试..."
;;
esac
done
EXIT_CODE=${PIPESTATUS[0]}
if [ "$EXIT_CODE" -ne 0 ]; then
echo " ⚠️ 网关进程退出 (code=$EXIT_CODE),30 秒后重启..."
sleep 30
else
echo " 🛑 网关正常退出(可能被 BFF restartGateway 替换)"
# 检查是否有新 gateway 进程在运行(BFF 可能已启动新进程)
sleep 5
if [ -f "$GATEWAY_PIDFILE" ]; then
NEW_PID=$(python3 -c "import json; print(json.load(open('$GATEWAY_PIDFILE')).get('pid',0))" 2>/dev/null || echo 0)
if [ "$NEW_PID" -gt 0 ] && kill -0 "$NEW_PID" 2>/dev/null; then
echo " 🔄 检测到新网关进程 (PID: $NEW_PID),等待其退出..."
# 等待新进程退出后再继续循环
while kill -0 "$NEW_PID" 2>/dev/null; do sleep 5; done
echo " ⚠️ 新网关进程已退出,30 秒后重启包装器..."
sleep 30
continue
fi
fi
echo " 🛑 无新网关进程,不再重启"
break
fi
done
) &
GATEWAY_PID=$!
# 等待 API Server 就绪
echo " ⏳ 等待 API Server 就绪 (:8642)..."
API_READY=false
for i in $(seq 1 30); do
if curl -sf http://127.0.0.1:8642/health > /dev/null 2>&1; then
API_READY=true
break
fi
sleep 1
done
if [ "$API_READY" = true ]; then
echo " ✅ API Server 已就绪 (http://127.0.0.1:8642)"
# Gateway PID 文件由 Hermes 自己在 gateway run 启动时写入(gateway/run.py:write_pid_file)
# 通过 symlink /home/appuser/.hermes → /data/.hermes,BFF GatewayManager 可正确读取
else
echo " ⚠️ API Server 未在 30 秒内就绪,继续启动 Web UI(API Server 可能稍后可用)"
fi
if kill -0 $GATEWAY_PID 2>/dev/null; then
echo " ✅ 网关进程运行中 (PID: $GATEWAY_PID)"
else
echo " ⚠️ 网关进程已退出,仅 Web UI 可用"
fi
echo ""
echo "💡 提示:"
echo " - Channels 页面可配置微信/飞书/企业微信等平台"
echo " - Models 页面可管理模型供应商"
echo " - Jobs 页面可管理定时任务"
echo ""
# ==================== Auth Token 处理 ====================
echo "🔑 配置 Web UI 认证..."
if [ -z "$AUTH_TOKEN" ]; then
# 尝试从持久化文件恢复
AUTH_TOKEN_FILE="/data/.hermes-web-ui/.token"
if [ -f "$AUTH_TOKEN_FILE" ]; then
AUTH_TOKEN=$(cat "$AUTH_TOKEN_FILE")
echo " ✅ 已恢复 Web UI 认证 Token"
else
# 自动生成新 Token
AUTH_TOKEN=$(openssl rand -hex 16 2>/dev/null || head -c 32 /dev/urandom | xxd -p | head -c 32)
mkdir -p /data/.hermes-web-ui
echo "$AUTH_TOKEN" > "$AUTH_TOKEN_FILE"
echo ""
echo " ╔══════════════════════════════════════════════════╗"
echo " ║ 🔑 Web UI 认证 Token (请保存!) ║"
echo " ║ $AUTH_TOKEN"
echo " ║ ║"
echo " ║ 在 Web UI 登录页面输入此 Token ║"
echo " ║ 也可在 HF Spaces Settings 设置 AUTH_TOKEN 覆盖 ║"
echo " ╚══════════════════════════════════════════════════╝"
echo ""
fi
else
echo " ✅ 使用环境变量中的 AUTH_TOKEN"
fi
export AUTH_TOKEN
# ==================== 修复 hermes-web-ui v0.5.30+ agent bridge ====================
# v0.5.30 后通信架构切换为 Unix socket IPC,bridge 启动需要额外依赖
echo "🔧 修复 agent bridge..."
# 1. 确保 bridge 脚本有执行权限(修复 exit code 126)
# Dockerfile 将 hermes-web-ui 安装到 /opt/hermes-web-ui,同时兼容标准 npm 全局路径
BRIDGE_PATHS=(
"/opt/hermes-web-ui/dist/server/agent-bridge/hermes_bridge.py"
"/usr/lib/node_modules/hermes-web-ui/dist/server/agent-bridge/hermes_bridge.py"
)
BRIDGE_FOUND=false
BRIDGE_SCRIPT=""
for bridge_path in "${BRIDGE_PATHS[@]}"; do
if [ -f "$bridge_path" ]; then
chmod +x "$bridge_path"
echo " ✅ bridge 脚本权限已修复: $bridge_path"
BRIDGE_FOUND=true
BRIDGE_SCRIPT="$bridge_path"
break
fi
done
if [ "$BRIDGE_FOUND" = false ]; then
echo " ⚠️ 未在常用路径找到 bridge 脚本,尝试全局搜索..."
find /opt /usr -name "hermes_bridge.py" -type f 2>/dev/null | while read -r f; do
chmod +x "$f"
echo " ✅ 已设置权限: $f"
BRIDGE_SCRIPT="$f"
BRIDGE_FOUND=true
break
done
fi
# 2. 确保 hermes 模块可被 bridge 加载(修复 exit code 1)
# bridge 脚本需要从 ~/.hermes/hermes-agent 导入模块
# 使用多种方法动态查找 hermes 包的实际安装路径
echo "🔍 查找 hermes 包路径..."
HERMES_PKG_PATH=""
# 优先方法:若保留的 hermes-agent 源码目录存在,直接作为模块根目录(支持最新的 run_agent.py 桥接模式)
if [ -d "/usr/local/lib/hermes-agent" ]; then
HERMES_PKG_PATH="/usr/local/lib/hermes-agent"
echo " ✅ 优先使用保留的 hermes-agent 源码包: $HERMES_PKG_PATH"
fi
# 方法1: 直接搜索 site-packages 目录(最可靠)
if [ -z "$HERMES_PKG_PATH" ]; then
for candidate in $(find /usr/local/lib/python*/site-packages -maxdepth 1 -type d \( -name "hermes" -o -name "hermes_agent" -o -name "hermes_cli" \) 2>/dev/null); do
if [ -f "$candidate/__init__.py" ]; then
HERMES_PKG_PATH="$candidate"
echo " ✅ 方法1找到 hermes 包: $HERMES_PKG_PATH"
break
fi
done
fi
# 方法2: 使用 pip show 获取安装位置
if [ -z "$HERMES_PKG_PATH" ]; then
PIP_LOCATION=$(python3 -m pip show hermes-agent 2>/dev/null | grep ^Location | cut -d' ' -f2-)
if [ -n "$PIP_LOCATION" ]; then
for name in hermes hermes_agent hermes_cli; do
if [ -d "$PIP_LOCATION/$name" ] && [ -f "$PIP_LOCATION/$name/__init__.py" ]; then
HERMES_PKG_PATH="$PIP_LOCATION/$name"
echo " ✅ 方法2找到 hermes 包: $HERMES_PKG_PATH"
break
fi
done
fi
fi
# 方法3: 通过 hermes 命令脚本反推包路径
if [ -z "$HERMES_PKG_PATH" ]; then
HERMES_CMD=$(which hermes 2>/dev/null)
if [ -n "$HERMES_CMD" ]; then
# hermes 命令通常是 setuptools 生成的 wrapper 脚本
# 尝试从中提取 import 的模块名
HERMES_MODULE=$(head -50 "$HERMES_CMD" 2>/dev/null | grep -E "from|import" | grep -oE "hermes[a-z_]*" | head -1)
if [ -n "$HERMES_MODULE" ]; then
HERMES_TRY=$(python3 -c "import $HERMES_MODULE; print($HERMES_MODULE.__path__[0])" 2>/dev/null)
if [ -n "$HERMES_TRY" ]; then
HERMES_PKG_PATH="$HERMES_TRY"
echo " ✅ 方法3找到 hermes 包: $HERMES_PKG_PATH (模块: $HERMES_MODULE)"
fi
fi
fi
fi
# 方法4: 遍历 sys.path 查找
if [ -z "$HERMES_PKG_PATH" ]; then
HERMES_PKG_PATH=$(python3 -c "
import sys, os
for p in sys.path:
for name in ['hermes', 'hermes_agent', 'hermes_cli']:
candidate = os.path.join(p, name)
if os.path.isdir(candidate) and os.path.exists(os.path.join(candidate, '__init__.py')):
print(candidate)
sys.exit(0)
print('')
" 2>/dev/null)
if [ -n "$HERMES_PKG_PATH" ]; then
echo " ✅ 方法4找到 hermes 包: $HERMES_PKG_PATH"
fi
fi
# 方法5: 如果 /usr/local/lib/hermes-agent 存在(webuibug.txt 提到的情况)
if [ -z "$HERMES_PKG_PATH" ] && [ -d "/usr/local/lib/hermes-agent" ]; then
HERMES_PKG_PATH="/usr/local/lib/hermes-agent"
echo " ✅ 方法5找到 hermes 包: $HERMES_PKG_PATH"
fi
# ~/.hermes 可能是指向 /data/.hermes 的 symlink,确保目标目录存在
HERMES_REAL_HOME=$(realpath ~/.hermes 2>/dev/null || echo "$HOME/.hermes")
mkdir -p "$HERMES_REAL_HOME"
if [ -n "$HERMES_PKG_PATH" ] && [ -d "$HERMES_PKG_PATH" ]; then
# 创建 hermes-agent 链接(bridge 脚本期望的路径)
if [ ! -e "$HERMES_REAL_HOME/hermes-agent" ] && [ ! -L "$HERMES_REAL_HOME/hermes-agent" ]; then
ln -s "$HERMES_PKG_PATH" "$HERMES_REAL_HOME/hermes-agent"
echo " ✅ hermes-agent 模块链接已创建 → $HERMES_PKG_PATH"
fi
# 同时创建 hermes 链接(以防 import 的是 hermes)
if [ ! -e "$HERMES_REAL_HOME/hermes" ] && [ ! -L "$HERMES_REAL_HOME/hermes" ]; then
ln -s "$HERMES_PKG_PATH" "$HERMES_REAL_HOME/hermes"
echo " ✅ hermes 模块链接已创建 → $HERMES_PKG_PATH"
fi
# 设置 PYTHONPATH,确保 bridge 脚本能找到 hermes 包
PYTHON_SITE_PACKAGES=$(python3 -c "import site; print(site.getsitepackages()[0])" 2>/dev/null)
if [ -n "$PYTHON_SITE_PACKAGES" ]; then
export PYTHONPATH="${PYTHONPATH:+$PYTHONPATH:}$PYTHON_SITE_PACKAGES"
echo " ✅ PYTHONPATH 已设置: $PYTHONPATH"
fi
# 诊断:尝试运行 bridge 脚本查看具体错误
echo "🔍 测试 bridge 脚本..."
if [ -f "$BRIDGE_SCRIPT" ]; then
python3 "$BRIDGE_SCRIPT" --help 2>&1 | head -5 || echo " ⚠️ bridge 脚本测试失败"
fi
else
echo " ❌ 所有方法都无法找到 hermes 包路径!"
echo " 📋 诊断信息:"
echo " Python site-packages:"
python3 -c "import site; [print(' ', p) for p in site.getsitepackages()]" 2>/dev/null || true
echo " sys.path:"
python3 -c "import sys; [print(' ', p) for p in sys.path if __import__('os').path.isdir(p)]" 2>/dev/null || true
echo " pip list | grep hermes:"
python3 -m pip list 2>/dev/null | grep -i hermes || echo " (无结果)"
echo " which hermes: $(which hermes 2>/dev/null || echo '未找到')"
fi
# ==================== 启动 Web UI (BFF Server) ====================
echo "🌐 启动 Hermes Web UI..."
echo " BFF Server: http://0.0.0.0:7860"
echo " Upstream: http://127.0.0.1:8642"
echo ""
# 确保运行时环境变量设置完毕
export PORT=7860
export UPSTREAM=http://127.0.0.1:8642
export HERMES_BIN=/usr/local/bin/hermes
export HERMES_HOME=/data/.hermes
# 优雅关闭
cleanup() {
echo ""
echo "🛑 执行清理..."
# 备份数据
if [ -n "$HF_DATASET_REPO" ]; then
echo " 💾 执行最终数据备份..."
python -m src.data_sync backup --force 2>/dev/null || echo " ⚠️ 备份失败"
fi
# 停止各进程(顺序:BFF → Gateway → Sync)
if [ -n "$BFF_PID" ] && kill -0 $BFF_PID 2>/dev/null; then
echo " 🛑 停止 Web UI..."
kill $BFF_PID 2>/dev/null || true
wait $BFF_PID 2>/dev/null || true
fi
if [ -n "$GATEWAY_PID" ] && kill -0 $GATEWAY_PID 2>/dev/null; then
echo " 🛑 停止 Gateway..."
kill $GATEWAY_PID 2>/dev/null || true
wait $GATEWAY_PID 2>/dev/null || true
fi
if kill -0 $SYNC_PID 2>/dev/null; then
echo " 🛑 停止数据同步..."
kill $SYNC_PID 2>/dev/null || true
wait $SYNC_PID 2>/dev/null || true
fi
echo "👋 再见!"
exit 0
}
trap cleanup SIGTERM SIGINT
# 启动 BFF Server (替代 hermes dashboard,内部端口 7861)
PORT=7861 node /opt/hermes-web-ui/dist/server/index.js &
BFF_PID=$!
# 等待 BFF 就绪
echo " ⏳ 等待 Web UI 就绪..."
BFF_READY=false
for i in $(seq 1 20); do
if curl -sf http://localhost:7861/health > /dev/null 2>&1; then
BFF_READY=true
break
fi
sleep 1
done
if [ "$BFF_READY" = true ]; then
echo " ✅ Web UI 已就绪 → http://localhost:7861"
else
echo " ⚠️ Web UI 未在 20 秒内就绪,请查看日志"
fi
# 启动 Image Proxy (对外端口 7860, HF Spaces 入口)
echo "🖼️ 启动 Image Proxy..."
BFF_PORT=7861 LISTEN_PORT=7860 IMAGE_DIR=/data/.hermes/image_cache \
node /app/image-proxy.js &
PROXY_PID=$!
# 等待 Image Proxy 就绪
PROXY_READY=false
for i in $(seq 1 10); do
if curl -sf http://localhost:7860/health > /dev/null 2>&1; then
PROXY_READY=true
break
fi
sleep 1
done
if [ "$PROXY_READY" = true ]; then
echo " ✅ Media Proxy 已就绪 → http://localhost:7860/files/"
else
echo " ⚠️ Image Proxy 未就绪,但继续运行"
fi
# 再次验证模型配置(BFF 启动可能修改 config.yaml)
# 只锁定 model.default,不动 provider/base_url/custom_providers
if [ -f "$CONFIG_FILE" ] && command -v yq &>/dev/null; then
ACTUAL_MODEL=$(yq '.model.default' "$CONFIG_FILE" 2>/dev/null)
if [ -n "$ACTUAL_MODEL" ] && [ "$ACTUAL_MODEL" != "$MAIN_MODEL" ] && [ "$ACTUAL_MODEL" != "null" ]; then
echo " ⚠️ model.default 不匹配! 修正为: $MAIN_MODEL"
yq -i ".model.default = \"$MAIN_MODEL\"" "$CONFIG_FILE"
fi
fi
# 等待 BFF 主进程(前台阻塞,容器生命周期由 BFF 控制)
wait $BFF_PID
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