[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"consumer-news-detail-891":3,"consumer-news-interaction-891":40,"consumer-news-related-891":43},{"detail":4,"item":35},{"card":5,"schemaVersion":22,"fields":23,"content":29},{"id":6,"kind":7,"targetType":8,"targetId":9,"subtype":7,"typeLabel":10,"title":11,"subtitle":12,"summary":13,"coverUrl":14,"badgeText":14,"href":15,"sourceName":12,"meta":16,"metrics":19,"tags":20,"resolved":21},"NEWS_ARTICLE:891","news","NEWS_ARTICLE",891,"资讯","K8S接入NFS存储","博客园","本文详细演示了在Kubernetes集群中接入NFS作为默认持久化存储的完整流程。针对容器数据易失问题，文章介绍了如何部署NFS Provisioner，并配置StorageClass将其设为集群默认（default）。通过此方案，实现了PVC的动态自动供给，开发者无需手动创建PV即可为Pod分配存","","\u002Fnews\u002F891",[17,18],"2026","云原生与运维",{},[18],true,"consumer-content-detail-v1",{"sourceName":12,"authorName":24,"categoryName":18,"summary":13,"description":13,"publishTime":25,"updateTime":26,"sourceUrl":27,"language":28},"避凉闲庭","2026-08-31T16:29","2026-09-02T20:37:54","https:\u002F\u002Fwww.cnblogs.com\u002Fblxt\u002Fp\u002F22776709","中文",{"format":30,"policy":31,"normalized":21,"html":32,"text":33,"wordCount":34,"hasBody":21},"HTML","NEWS_CONTENT_V1","\u003Ch2>一、部署NFS服务端\u003C\u002Fh2>\n\u003Ch3>安装NFS服务\u003C\u002Fh3>\n\u003Ch4>Ubuntu\u002FDebian\u003C\u002Fh4>\n\u003Cpre>\u003Ccode>sudo apt update\nsudo apt install nfs-kernel-server -y\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch4>Centos\u002FRHEL \u002F Rocky \u002F AlmaLinux\u003C\u002Fh4>\n\u003Cpre>\u003Ccode>sudo dnf install -y  nfs-utils\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch3>创建共享目录\u003C\u002Fh3>\n\u003Cpre>\u003Ccode>sudo mkdir -p 路径及目录名\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch3>配置NFS配置文件\u003C\u002Fh3>\n\u003Cpre>\u003Ccode>sudo vim \u002Fetc\u002Fexports\n增加以下内容\n\u002Fopt\u002Fnfs x.x.x.x\u002Fxx(rw,sync,no_subtree_check,no_root_squash)   # x.x.x.x\u002Fxx替换为需要访问nfs的网段或地址\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch4>参数说明：\u003C\u002Fh4>\n\u003Ctable>\n \u003Cthead>\n  \u003Ctr>\n   \u003Cth>参数\u003C\u002Fth>\n   \u003Cth>说明\u003C\u002Fth>\n  \u003C\u002Ftr>\n \u003C\u002Fthead>\n \u003Ctbody>\n  \u003Ctr>\n   \u003Ctd>rw\u003C\u002Ftd>\n   \u003Ctd>客户端可读写\u003C\u002Ftd>\n  \u003C\u002Ftr>\n  \u003Ctr>\n   \u003Ctd>ro\u003C\u002Ftd>\n   \u003Ctd>客户端只读\u003C\u002Ftd>\n  \u003C\u002Ftr>\n  \u003Ctr>\n   \u003Ctd>sync\u003C\u002Ftd>\n   \u003Ctd>数据同步写入磁盘，更安全\u003C\u002Ftd>\n  \u003C\u002Ftr>\n  \u003Ctr>\n   \u003Ctd>async\u003C\u002Ftd>\n   \u003Ctd>数据异步写入，性能好但是有一定风险\u003C\u002Ftd>\n  \u003C\u002Ftr>\n  \u003Ctr>\n   \u003Ctd>no_subtree_check\u003C\u002Ftd>\n   \u003Ctd>不检查子目录，推荐开启\u003C\u002Ftd>\n  \u003C\u002Ftr>\n  \u003Ctr>\n   \u003Ctd>root_squash\u003C\u002Ftd>\n   \u003Ctd>客户端 root 用户映射为匿名用户\u003C\u002Ftd>\n  \u003C\u002Ftr>\n  \u003Ctr>\n   \u003Ctd>no_root_squash\u003C\u002Ftd>\n   \u003Ctd>客户端 root 用户保留 root 权限，风险较高\u003C\u002Ftd>\n  \u003C\u002Ftr>\n  \u003Ctr>\n   \u003Ctd>all_squash\u003C\u002Ftd>\n   \u003Ctd>所有用户都映射为匿名用户\u003C\u002Ftd>\n  \u003C\u002Ftr>\n  \u003Ctr>\n   \u003Ctd>anonuid\u002Fanongid\u003C\u002Ftd>\n   \u003Ctd>指定匿名用户 UID\u002FGID\u003C\u002Ftd>\n  \u003C\u002Ftr>\n \u003C\u002Ftbody>\n\u003C\u002Ftable>\n\u003Ch3>应用配置\u003C\u002Fh3>\n\u003Cpre>\u003Ccode>sudo exportfs -rav\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch3>重启服务并设置开机自启动\u003C\u002Fh3>\n\u003Ch4>Ubuntu\u002FDebian\u003C\u002Fh4>\n\u003Cpre>\u003Ccode>sudo systemctl restart nfs-kernel-server\nsudo systemctl enable nfs-kernel-server\nsudo systemctl status nfs-kernel-server\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch4>CentOS \u002F RHEL \u002F Rocky \u002F AlmaLinux\u003C\u002Fh4>\n\u003Cpre>\u003Ccode>sudo systemctl enable --now nfs-server\nsudo systemctl status nfs-server\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch3>安全配置（内网可忽略）\u003C\u002Fh3>\n\u003Ch4>放通防火墙\u003C\u002Fh4>\nUbuntu\u002FDebian\n\u003Cpre>\u003Ccode>sudo ufw allow from 192.168.1.0\u002F24 to any port 2049 proto tcp\nsudo ufw allow from 192.168.1.0\u002F24 to any port 2049 proto udp\nsudo ufw allow from 192.168.1.0\u002F24 to any port 111 proto tcp\nsudo ufw allow from 192.168.1.0\u002F24 to any port 111 proto udp\nsudo ufw allow from 192.168.1.0\u002F24 to any port 20048 proto tcp\nsudo ufw allow from 192.168.1.0\u002F24 to any port 20048 proto udp\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Cp>或者\u003C\u002Fp>\n\u003Cpre>\u003Ccode>sudo ufw allow proto tcp to any port nfs\nsudo ufw allow proto udp to any port nfs\nsudo ufw allow proto tcp to any port rpcbind\nsudo ufw allow proto udp to any port rpcbind\n\u003C\u002Fcode>\u003C\u002Fpre>\nCentOS \u002F RHEL \u002F Rocky \u002F AlmaLinux\n\u003Cpre>\u003Ccode>sudo firewall-cmd --permanent --add-service=nfs\nsudo firewall-cmd --permanent --add-service=mountd\nsudo firewall-cmd --permanent --add-service=rpc-bind\nsudo firewall-cmd --reload\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch4>云服务器安全组中要放开以下端口（可选）\u003C\u002Fh4>\n\u003Cpre>\u003Ccode>TCP 2049\nUDP 2049\nTCP 111\nUDP 111\nTCP 20048\nUDP 20048\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch2>二、K8S接入NFS存储\u003C\u002Fh2>\n\u003Ch3>所有K8S节点安装NFS客户端\u003C\u002Fh3>\n\u003Ch4>Ubuntu \u002F Debian\u003C\u002Fh4>\n\u003Cpre>\u003Ccode>sudo apt update\nsudo apt install -y nfs-common\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch4>CentOS \u002F RHEL \u002F Rocky \u002F AlmaLinux\u003C\u002Fh4>\n\u003Cpre>\u003Ccode>sudo dnf install -y nfs-utils\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch4>测试节点是否可以挂载\u003C\u002Fh4>\n\u003Cpre>\u003Ccode>showmount -e nfs-ip\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Cp>输出内容类似下面这些\u003C\u002Fp>\n\u003Cblockquote>\n \u003Cp>Export list for 192.168.1.10:\u003C\u002Fp>\n \u003Cp>\u002Fsrv\u002Fnfs\u002Fk8s 192.168.1.0\u002F24\u003C\u002Fp>\n\u003C\u002Fblockquote>\n\u003Ch3>Master节点安装helm\u003C\u002Fh3>\n\u003Cpre>\u003Ccode>curl -fsSL https:\u002F\u002Fraw.githubusercontent.com\u002Fhelm\u002Fhelm\u002Fmain\u002Fscripts\u002Fget-helm-3 | sudo bash\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Cp>如果下载超时可以先在外面下载好再上传到服务器上\u003C\u002Fp>\n\u003Cblockquote>\n \u003Cp>\u003Ca href=\"https:\u002F\u002Fraw.githubusercontent.com\u002Fhelm\u002Fhelm\u002Fmain\u002Fscripts\u002Fget-helm-3\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">https:\u002F\u002Fraw.githubusercontent.com\u002Fhelm\u002Fhelm\u002Fmain\u002Fscripts\u002Fget-helm-3\u003C\u002Fa>\u003C\u002Fp>\n\u003C\u002Fblockquote>\n\u003Cp>然后执行bash\u003C\u002Fp>\n\u003Cpre>\u003Ccode>bash helm3-filename \t# helm3-filename下载的文件名\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Cp>测试是否安装成功\u003C\u002Fp>\n\u003Cpre>\u003Ccode>helm version\t\t# 如果有输出版本信息即安装成功，提示无次命令安装失败\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch3>Master节点下载chart包\u003C\u002Fh3>\n\u003Cp>下载地址：\u003C\u002Fp>\n\u003Cblockquote>\n \u003Cp>\u003Ca href=\"https:\u002F\u002Fgithub.com\u002Fkubernetes-sigs\u002Fnfs-subdir-external-provisioner\u002Freleases\u002Fdownload\u002Fnfs-subdir-external-provisioner-4.0.18\u002Fnfs-subdir-external-provisioner-4.0.18.tgz\" target=\"_blank\" rel=\"noopener noreferrer nofollow\">https:\u002F\u002Fgithub.com\u002Fkubernetes-sigs\u002Fnfs-subdir-external-provisioner\u002Freleases\u002Fdownload\u002Fnfs-subdir-external-provisioner-4.0.18\u002Fnfs-subdir-external-provisioner-4.0.18.tgz\u003C\u002Fa> # 由于github下载需要再外网下载好传输到服务器中\u003C\u002Fp>\n\u003C\u002Fblockquote>\n\u003Ch3>安装chart\u003C\u002Fh3>\n\u003Cpre>\u003Ccode>helm install nfs-provisioner .\u002Fnfs-subdir-external-provisioner-4.0.18.tgz \\\n  --namespace nfs-provisioner --create-namespace \\\n  --set nfs.server=nfs-ip \\\t\t\t\t\t\t# 此处nfs-ip改成NFS服务器的IP地址\n  --set nfs.path=nfs-filename \\\t\t\t\t# 此处nfs-filename改成NFS共享目录\n  --set storageClass.name=nfs \\\n  --set storageClass.defaultClass=true \\\n  --set storageClass.reclaimPolicy=Retain \\\n  --set storageClass.archiveOnDelete=true\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Ch3>验证状态\u003C\u002Fh3>\n\u003Cpre>\u003Ccode>kubectl get pods -n nfs-provisioner\t\t# 查看容器运行状态\nkubectl get  storageclass\t\t# 查看存储类\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Cp>创建PVC，新建yaml文件添加以下内容\u003C\u002Fp>\n\u003Cpre>\u003Ccode>apiVersion: v1\nkind: PersistentVolumeClaim\nmetadata:\n  name: tmp-pvc\n  namespace: default\nspec:\n  accessModes:\n    - ReadWriteOnce\n  resources:\n    requests:\n      storage: 1Gi\n\u003C\u002Fcode>\u003C\u002Fpre>\n\u003Cp>执行yaml文件\u003C\u002Fp>\n\u003Cpre>\u003Ccode>kubectl apply -f xxx.yaml\t\t# xxx.yaml替换成上面创建的yaml文件\nkubectl get pvc\t\t# 查看PVC是否创建\nkubectl delete pvc pvc-name\t\t# 删除PVC，PVC-name替换为你的PVC名称\n\u003C\u002Fcode>\u003C\u002Fpre>","一、部署NFS服务端 安装NFS服务 Ubuntu\u002FDebian sudo apt update sudo apt install nfs-kernel-server -y Centos\u002FRHEL \u002F Rocky \u002F AlmaLinux sudo dnf install -y nfs-utils 创建共享目录 sudo mkdir -p 路径及目录名 配置NFS配置文件 sudo vim \u002Fetc\u002Fexports 增加以下内容 \u002Fopt\u002Fnfs x.x.x.x\u002Fxx(rw,sync,no_subtree_check,no_root_squash) # x.x.x.x\u002Fxx替换为需要访问nfs的网段或地址 参数说明： 参数 说明 rw 客户端可读写 ro 客户端只读 sync 数据同步写入磁盘，更安全 async 数据异步写入，性能好但是有一定风险 no_subtree_check 不检查子目录，推荐开启 root_squash 客户端 root 用户映射为匿名用户 no_root_squash 客户端 root 用户保留 root 权限，风险较高 all_squash 所有用户都映射为匿名用户 anonuid\u002Fanongid 指定匿名用户 UID\u002FGID 应用配置 sudo exportfs -rav 重启服务并设置开机自启动 Ubuntu\u002FDebian sudo systemctl restart nfs-kernel-server sudo systemctl enable nfs-kernel-server sudo systemctl status nfs-kernel-server CentOS \u002F RHEL \u002F Rocky \u002F AlmaLinux sudo systemctl enable --now nfs-server sudo systemctl status nfs-server 安全配置（内网可忽略） 放通防火墙 Ubuntu\u002FDebian sudo ufw allow from 192.168.1.0\u002F24 to any port 2049 proto tcp sudo ufw allow from 192.168.1.0\u002F24 to any port 2049 proto udp sudo ufw allow from 192.168.1.0\u002F24 to any port 111 proto tcp sudo ufw allow from 192.168.1.0\u002F24 to any port 111 proto udp sudo ufw allow from 192.168.1.0\u002F24 to any port 20048 proto tcp sudo ufw allow from 192.168.1.0\u002F24 to any port 20048 proto udp 或者 sudo ufw allow proto tcp to any port nfs sudo ufw allow proto udp to any port nfs sudo ufw allow proto tcp to any port rpcbind sudo ufw allow proto udp to any port rpcbind CentOS \u002F RHEL \u002F Rocky \u002F AlmaLinux sudo firewall-cmd --permanent --add-service=nfs sudo firewall-cmd --permanent --add-service=mountd sudo firewall-cmd --permanent --add-service=rpc-bind sudo firewall-cmd --reload 云服务器安全组中要放开以下端口（可选） TCP 2049 UDP 2049 TCP 111 UDP 111 TCP 20048 UDP 20048 二、K8S接入NFS存储 所有K8S节点安装NFS客户端 Ubuntu \u002F Debian sudo apt update sudo apt install -y nfs-common CentOS \u002F RHEL \u002F Rocky \u002F AlmaLinux sudo dnf install -y nfs-utils 测试节点是否可以挂载 showmount -e nfs-ip 输出内容类似下面这些 Export list for 192.168.1.10: \u002Fsrv\u002Fnfs\u002Fk8s 192.168.1.0\u002F24 Master节点安装helm curl -fsSL https:\u002F\u002Fraw.githubusercontent.com\u002Fhelm\u002Fhelm\u002Fmain\u002Fscripts\u002Fget-helm-3 | sudo bash 如果下载超时可以先在外面下载好再上传到服务器上 https:\u002F\u002Fraw.githubusercontent.com\u002Fhelm\u002Fhelm\u002Fmain\u002Fscripts\u002Fget-helm-3 然后执行bash bash helm3-filename # helm3-filename下载的文件名 测试是否安装成功 helm version # 如果有输出版本信息即安装成功，提示无次命令安装失败 Master节点下载chart包 下载地址： https:\u002F\u002Fgithub.com\u002Fkubernetes-sigs\u002Fnfs-subdir-external-provisioner\u002Freleases\u002Fdownload\u002Fnfs-subdir-external-provisioner-4.0.18\u002Fnfs-subdir-external-provisioner-4.0.18.tgz # 由于github下载需要再外网下载好传输到服务器中 安装chart helm install nfs-provisioner .\u002Fnfs-subdir-external-provisioner-4.0.18.tgz \\ --namespace nfs-provisioner --create-namespace \\ --set nfs.server=nfs-ip \\ # 此处nfs-ip改成NFS服务器的IP地址 --set nfs.path=nfs-filename \\ # 此处nfs-filename改成NFS共享目录 --set storageClass.name=nfs \\ --set storageClass.defaultClass=true \\ --set storageClass.reclaimPolicy=Retain \\ --set storageClass.archiveOnDelete=true 验证状态 kubectl get pods -n nfs-provisioner # 查看容器运行状态 kubectl get storageclass # 查看存储类 创建PVC，新建yaml文件添加以下内容 apiVersion: v1 kind: PersistentVolumeClaim metadata: name: tmp-pvc namespace: default spec: accessModes: - ReadWriteOnce resources: requests: storage: 1Gi 执行yaml文件 kubectl apply -f xxx.yaml # xxx.yaml替换成上面创建的yaml文件 kubectl get pvc # 查看PVC是否创建 kubectl delete pvc pvc-name # 删除PVC，PVC-name替换为你的PVC名称",2870,{"id":6,"kind":7,"title":11,"summary":13,"image":14,"href":15,"meta":36,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":39},"2026 · 云原生与运维","#2563eb","16 \u002F 10",[18],{"targetType":8,"targetId":9,"likedByMe":41,"likeCount":42,"commentCount":42,"contentLikeCount":42,"contentCommentCount":42,"sourceLikeCount":42,"sourceCommentCount":42},false,0,[44,50,57,64,73,79,86,94],{"id":45,"kind":7,"title":46,"summary":47,"image":14,"href":48,"meta":36,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":49},"NEWS_ARTICLE:839","Nginx 1.30.4 编译安装与参数调优","Nginx 是一款轻量级、高性能、高并发的开源Web服务器、反向代理与负载均衡软件，凭借低资源占用、高稳定性的核心优势，成为当下互联网行业主流的服务部署组件，广泛应用于各类网站及业务系统的Web服务、反向代理、负载均衡场景。其基于宽松的类BSD开源协议发布，可免费商用。本文将完整展示 Nginx 1","\u002Fnews\u002F839",[18],{"id":51,"kind":7,"title":52,"summary":53,"image":54,"href":55,"meta":36,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":56},"NEWS_ARTICLE:885","【Azure Redis】中国区创建和连接 Azure Managed Redis 的两个注意事项","Azure Managed Redis 介绍 Azure Managed Redis 是微软新一代全托管 Redis 服务，基于 Redis Enterprise 构建，为现代云应用提供低延迟、高吞吐的数据访问能力。相比传统 Azure Cache for Redis，它采用更高效的多分片架构，并提","https:\u002F\u002Fimg2024.cnblogs.com\u002Fblog\u002F2127802\u002F202608\u002F2127802-20260831195905463-1387904592.png","\u002Fnews\u002F885",[18],{"id":58,"kind":7,"title":59,"summary":60,"image":61,"href":62,"meta":36,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":63},"NEWS_ARTICLE:911","k8s安装metrics-server，以及相关报错排查","背景：有监控node节点pod的CPU等资源，实现自动扩缩容的需要下，需要安装metrics-server k8s版本：1.30.14（kubadm安装） 对应metrics-server版本：0.8x（本文使用0.8.1） 1、下载部署清单 wget https:\u002F\u002Fgithub.com\u002Fkube","https:\u002F\u002Fimg2024.cnblogs.com\u002Fblog\u002F1384371\u002F202608\u002F1384371-20260830185204348-546969162.png","\u002Fnews\u002F911",[18],{"id":65,"kind":7,"title":66,"summary":67,"image":68,"href":69,"meta":70,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":71},"NEWS_ARTICLE:827","MHS 三部曲（下）：谁允许 AI 行动？——权力、合规与中国厂商的答卷","我们总在等待一个像 ChatGPT 那样的机器人时刻。但具身智能真正的拐点，也许先发生在更不起眼的地方：一台陌生设备，第一次能把自己的能力、状态和边界完整告诉 AI；一个 Agent，第一次能把试出来的经验固化成可验证、可复用的机器技能。","https:\u002F\u002Fimg2024.cnblogs.com\u002Fblog\u002F510\u002F202608\u002F510-20260830153745229-1536981088.jpg","\u002Fnews\u002F827","2026 · 人工智能",[72],"人工智能",{"id":74,"kind":7,"title":75,"summary":76,"image":14,"href":77,"meta":17,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":78},"NEWS_ARTICLE:829","我不会美工，用 WorkBuddy 1 分钟做出 4 张海报","先说结果：下面这 4 张海报，从我发出指令到拿到图片，大约 1 分钟。 我不会美工，也没有打开 Photoshop。用的工具，是我之前用 WorkBuddy 做的一个海报生成器。这个生成器本身也没花几分钟，具体开发过程我在上一篇文章里写过。 这次我把海报生成器的网址、产品截图和要求一起发给 Work","\u002Fnews\u002F829",[7,8],{"id":80,"kind":7,"title":81,"summary":82,"image":83,"href":84,"meta":17,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":85},"NEWS_ARTICLE:828","一个人抵一个团队的时代，企业级 AI Agent 还需要做什么？","对于企业而言，真正需要的，不是一个“会聊天”的 Agent，而是一套能被多用户、多场景复用，且权限清晰、过程可审计、成本可控制的 Agent 能力体系。","https:\u002F\u002Fimg2024.cnblogs.com\u002Fblog\u002F2232255\u002F202609\u002F2232255-20260902173524728-659996478.png","\u002Fnews\u002F828",[7,8],{"id":87,"kind":7,"title":88,"summary":89,"image":14,"href":90,"meta":91,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":92},"NEWS_ARTICLE:832","用 runtime-async 写一个支持 async\u002Fawait 的轻量脚本引擎","起因：一个好奇 事情的开头很简单。 给 .NET 做过动态脚本的人大概都碰到过同一堵墙：表达式树也好、Reflection.Emit 也好，都很难支持 async\u002Fawait。原因不在语法，而在 await 的实现方式——C# 编译器要为每个 async 方法生成一个状态机结构体，把方法体切成若干片","\u002Fnews\u002F832","2026 · 软件开发",[93],"软件开发",{"id":95,"kind":7,"title":96,"summary":97,"image":98,"href":99,"meta":17,"badge":10,"author":12,"stats":-1,"accent":37,"coverRatio":38,"tags":100},"NEWS_ARTICLE:831","Agent Sandbox 规模化：JuiceFS 探索与实践","过去一段时间，我们在和云厂商以及 Agent 团队推进 Sandbox 落地时，除了要解决数据如何进入 Sandbox，还需要考虑任务所需的数据和执行过程中产生的数据，如何跨任务、跨阶段持续使用。Sandbox 可以随任务快速创建和销毁，但数据往往需要继续保留、共享和流转。 当 Sandbox 并发","https:\u002F\u002Fimg2024.cnblogs.com\u002Fblog\u002F2544292\u002F202609\u002F2544292-20260902171045357-1907499098.png","\u002Fnews\u002F831",[7,8]]