亚洲国产日韩欧美一区二区三区,精品亚洲国产成人av在线,国产99视频精品免视看7,99国产精品久久久久久久成人热,欧美日韩亚洲国产综合乱

目錄 搜索
Compose About versions and upgrading (Compose) ASP.NET Core + SQL Server on Linux (Compose) CLI environment variables (Compose) Command-line completion (Compose) Compose(組成) Compose command-line reference(組合命令行參考) Control startup order (Compose) Django and PostgreSQL (Compose) Docker stacks and distributed application bundles (Compose) docker-compose build(docker-compose構(gòu)建) docker-compose bundle docker-compose config docker-compose create docker-compose down docker-compose events docker-compose exec docker-compose help docker-compose images docker-compose kill docker-compose logs docker-compose pause docker-compose port docker-compose ps docker-compose pull docker-compose push docker-compose restart docker-compose rm docker-compose run docker-compose scale docker-compose start docker-compose stop docker-compose top docker-compose unpause docker-compose up Environment file (Compose) Environment variables in Compose Extend services in Compose Frequently asked questions (Compose) Getting started (Compose) Install Compose Link environment variables (deprecated) (Compose) Networking in Compose Overview of Docker Compose Overview of docker-compose CLI Quickstart: Compose and WordPress Rails and PostgreSQL (Compose) Sample apps with Compose Using Compose in production Using Compose with Swarm Engine .NET Core application (Engine) About images, containers, and storage drivers (Engine) Add nodes to the swarm (Engine) Apply custom metadata (Engine) Apply rolling updates (Engine) apt-cacher-ng Best practices for writing Dockerfiles (Engine) Binaries (Engine) Bind container ports to the host (Engine) Breaking changes (Engine) Build your own bridge (Engine) Configure container DNS (Engine) Configure container DNS in user-defined networks (Engine) CouchDB (Engine) Create a base image (Engine) Create a swarm (Engine) Customize the docker0 bridge (Engine) Debian (Engine) Default bridge network Delete the service (Engine) Deploy a service (Engine) Deploy services to a swarm (Engine) Deprecated Engine features Docker container networking (Engine) Docker overview (Engine) Docker run reference (Engine) Dockerfile reference (Engine) Dockerize an application Drain a node (Engine) Engine FAQ (Engine) Fedora (Engine) Get started (Engine) Get started with macvlan network driver (Engine) Get started with multi-host networking (Engine) How nodes work (Engine) How services work (Engine) Image management (Engine) Inspect the service (Engine) Install Docker (Engine) IPv6 with Docker (Engine) Join nodes to a swarm (Engine) Legacy container links (Engine) Lock your swarm (Engine) Manage nodes in a swarm (Engine) Manage sensitive data with Docker secrets (Engine) Manage swarm security with PKI (Engine) Manage swarm service networks (Engine) Migrate to Engine 1.10 Optional Linux post-installation steps (Engine) Overview (Engine) PostgreSQL (Engine) Raft consensus in swarm mode (Engine) Riak (Engine) Run Docker Engine in swarm mode Scale the service (Engine) SDKs (Engine) Select a storage driver (Engine) Set up for the tutorial (Engine) SSHd (Engine) Storage driver overview (Engine) Store service configuration data (Engine) Swarm administration guide (Engine) Swarm mode key concepts (Engine) Swarm mode overlay network security model (Engine) Swarm mode overview (Engine) Understand container communication (Engine) Use multi-stage builds (Engine) Use swarm mode routing mesh (Engine) Use the AUFS storage driver (Engine) Use the Btrfs storage driver (Engine) Use the Device mapper storage driver (Engine) Use the OverlayFS storage driver (Engine) Use the VFS storage driver (Engine) Use the ZFS storage driver (Engine) Engine: Admin Guide Amazon CloudWatch logs logging driver (Engine) Bind mounts (Engine) Collect Docker metrics with Prometheus (Engine) Configuring and running Docker (Engine) Configuring logging drivers (Engine) Control and configure Docker with systemd (Engine) ETW logging driver (Engine) Fluentd logging driver (Engine) Format command and log output (Engine) Google Cloud logging driver (Engine) Graylog Extended Format (GELF) logging driver (Engine) Journald logging driver (Engine) JSON File logging driver (Engine) Keep containers alive during daemon downtime (Engine) Limit a container's resources (Engine) Link via an ambassador container (Engine) Log tags for logging driver (Engine) Logentries logging driver (Engine) PowerShell DSC usage (Engine) Prune unused Docker objects (Engine) Run multiple services in a container (Engine) Runtime metrics (Engine) Splunk logging driver (Engine) Start containers automatically (Engine) Storage overview (Engine) Syslog logging driver (Engine) tmpfs mounts Troubleshoot volume problems (Engine) Use a logging driver plugin (Engine) Using Ansible (Engine) Using Chef (Engine) Using Puppet (Engine) View a container's logs (Engine) Volumes (Engine) Engine: CLI Daemon CLI reference (dockerd) (Engine) docker docker attach docker build docker checkpoint docker checkpoint create docker checkpoint ls docker checkpoint rm docker commit docker config docker config create docker config inspect docker config ls docker config rm docker container docker container attach docker container commit docker container cp docker container create docker container diff docker container exec docker container export docker container inspect docker container kill docker container logs docker container ls docker container pause docker container port docker container prune docker container rename docker container restart docker container rm docker container run docker container start docker container stats docker container stop docker container top docker container unpause docker container update docker container wait docker cp docker create docker deploy docker diff docker events docker exec docker export docker history docker image docker image build docker image history docker image import docker image inspect docker image load docker image ls docker image prune docker image pull docker image push docker image rm docker image save docker image tag docker images docker import docker info docker inspect docker kill docker load docker login docker logout docker logs docker network docker network connect docker network create docker network disconnect docker network inspect docker network ls docker network prune docker network rm docker node docker node demote docker node inspect docker node ls docker node promote docker node ps docker node rm docker node update docker pause docker plugin docker plugin create docker plugin disable docker plugin enable docker plugin inspect docker plugin install docker plugin ls docker plugin push docker plugin rm docker plugin set docker plugin upgrade docker port docker ps docker pull docker push docker rename docker restart docker rm docker rmi docker run docker save docker search docker secret docker secret create docker secret inspect docker secret ls docker secret rm docker service docker service create docker service inspect docker service logs docker service ls docker service ps docker service rm docker service scale docker service update docker stack docker stack deploy docker stack ls docker stack ps docker stack rm docker stack services docker start docker stats docker stop docker swarm docker swarm ca docker swarm init docker swarm join docker swarm join-token docker swarm leave docker swarm unlock docker swarm unlock-key docker swarm update docker system docker system df docker system events docker system info docker system prune docker tag docker top docker unpause docker update docker version docker volume docker volume create docker volume inspect docker volume ls docker volume prune docker volume rm docker wait Use the Docker command line (Engine) Engine: Extend Access authorization plugin (Engine) Docker log driver plugins Docker network driver plugins (Engine) Extending Engine with plugins Managed plugin system (Engine) Plugin configuration (Engine) Plugins API (Engine) Volume plugins (Engine) Engine: Security AppArmor security profiles for Docker (Engine) Automation with content trust (Engine) Content trust in Docker (Engine) Delegations for content trust (Engine) Deploying Notary (Engine) Docker security (Engine) Docker security non-events (Engine) Isolate containers with a user namespace (Engine) Manage keys for content trust (Engine) Play in a content trust sandbox (Engine) Protect the Docker daemon socket (Engine) Seccomp security profiles for Docker (Engine) Secure Engine Use trusted images Using certificates for repository client verification (Engine) Engine: Tutorials Engine tutorials Network containers (Engine) Get Started Part 1: Orientation Part 2: Containers Part 3: Services Part 4: Swarms Part 5: Stacks Part 6: Deploy your app Machine Amazon Web Services (Machine) Digital Ocean (Machine) docker-machine active docker-machine config docker-machine create docker-machine env docker-machine help docker-machine inspect docker-machine ip docker-machine kill docker-machine ls docker-machine provision docker-machine regenerate-certs docker-machine restart docker-machine rm docker-machine scp docker-machine ssh docker-machine start docker-machine status docker-machine stop docker-machine upgrade docker-machine url Driver options and operating system defaults (Machine) Drivers overview (Machine) Exoscale (Machine) Generic (Machine) Get started with a local VM (Machine) Google Compute Engine (Machine) IBM Softlayer (Machine) Install Machine Machine Machine CLI overview Machine command-line completion Machine concepts and help Machine overview Microsoft Azure (Machine) Microsoft Hyper-V (Machine) Migrate from Boot2Docker to Machine OpenStack (Machine) Oracle VirtualBox (Machine) Provision AWS EC2 instances (Machine) Provision Digital Ocean Droplets (Machine) Provision hosts in the cloud (Machine) Rackspace (Machine) VMware Fusion (Machine) VMware vCloud Air (Machine) VMware vSphere (Machine) Notary Client configuration (Notary) Common Server and signer configurations (Notary) Getting started with Notary Notary changelog Notary configuration files Running a Notary service Server configuration (Notary) Signer configuration (Notary) Understand the service architecture (Notary) Use the Notary client
文字

Google Cloud Logging 驅(qū)動(dòng)程序?qū)⑷萜魅罩景l(fā)送到 Google Cloud Logging Logging。

用法

要將gcplogs驅(qū)動(dòng)程序用作默認(rèn)日志記錄驅(qū)動(dòng)程序,請(qǐng)將該鍵log-driverlog-opt鍵設(shè)置daemon.json為位于/etc/docker/在Linux主機(jī)上或C:\ProgramData\docker\config\daemon.json在Windows Server 上的文件中的適當(dāng)值。有關(guān) Docker 配置使用daemon.json 的更多信息,請(qǐng)參閱 daemon.json。

以下示例將日志驅(qū)動(dòng)程序設(shè)置為gcplogs并設(shè)置該gcp-meta-name選項(xiàng)。

{  "log-driver": "gcplogs",  "log-opts": {    "gcp-meta-name": "example-instance-12345"  }}

重新啟動(dòng) Docker 以使更改生效。

您可以使用以下--log-driver選項(xiàng)來(lái)設(shè)置docker run特定容器的日志記錄驅(qū)動(dòng)程序:

docker run --log-driver=gcplogs ...

該日志驅(qū)動(dòng)程序沒(méi)有實(shí)現(xiàn)與其docker logs不兼容的閱讀器。

如果 Docker 檢測(cè)到它在 Google Cloud Project 中運(yùn)行,它將從實(shí)例元數(shù)據(jù)服務(wù)中發(fā)現(xiàn)配置。否則,用戶必須使用--gcp-project日志選項(xiàng)指定要登錄的項(xiàng)目,并且 Docker 將嘗試從Google應(yīng)用程序默認(rèn)憑證中獲取憑據(jù)。該--gcp-project標(biāo)志優(yōu)先于從元數(shù)據(jù)服務(wù)器發(fā)現(xiàn)的信息,因此可以覆蓋在 Google 云項(xiàng)目中運(yùn)行的Docker守護(hù)程序以使用--gcp-project登錄到其他 Google 云項(xiàng)目。

Docker 從 Google 云元數(shù)據(jù)服務(wù)器獲取區(qū)域,實(shí)例名稱和實(shí)例 ID 的值。如果元數(shù)據(jù)服務(wù)器不可用,那么可以通過(guò)選項(xiàng)提供這些值。它們不會(huì)覆蓋元數(shù)據(jù)服務(wù)器的值。

gcplogs 選項(xiàng)

您可以使用該--log-opt NAME=VALUE標(biāo)志來(lái)指定這些額外的 Google Cloud Logging 驅(qū)動(dòng)程序選項(xiàng):

選項(xiàng)

需要

描述

gcp-project

可選的

哪個(gè)GCP項(xiàng)目要登錄。默認(rèn)從GCE元數(shù)據(jù)服務(wù)中發(fā)現(xiàn)此值。

gcp-log-cmd

可選的

是否記錄容器啟動(dòng)的命令。默認(rèn)為false。

labels

可選的

如果為容器指定了這些標(biāo)簽,則應(yīng)在消息中包含標(biāo)簽的逗號(hào)分隔列表。

env

可選的

如果為容器指定了這些變量,則應(yīng)該在消息中包含環(huán)境變量的鍵的逗號(hào)分隔列表。

env-regex

可選的

與env類似且兼容。一個(gè)正則表達(dá)式來(lái)匹配與日志相關(guān)的環(huán)境變量。用于高級(jí)日志標(biāo)記選項(xiàng)。

gcp-meta-zone

可選的

實(shí)例的區(qū)域名稱。

gcp-meta-name

可選的

實(shí)例名稱。

gcp-meta-id

可選的

實(shí)例ID。

如果labelenv鍵之間存在沖突,則env優(yōu)先。這兩個(gè)選項(xiàng)都將附加字段添加到日志消息的屬性中。

以下是登錄到通過(guò)查詢 GCE 元數(shù)據(jù)服務(wù)器發(fā)現(xiàn)的默認(rèn)日志記錄目標(biāo)所需的日志記錄選項(xiàng)示例。

docker run --log-driver=gcplogs \    --log-opt labels=location \    --log-opt env=TEST \    --log-opt gcp-log-cmd=true \    --env "TEST=false" \    --label location=west \
    your/application

此配置還指示驅(qū)動(dòng)程序在有效負(fù)載中包含標(biāo)簽location,環(huán)境變量ENV和用于啟動(dòng)容器的命令。

在 GCE 之外運(yùn)行的日志記錄選項(xiàng)示例(守護(hù)程序必須配置為 GOOGLE_APPLICATION_CREDENTIALS):

docker run --log-driver=gcplogs \    --log-opt gcp-project=test-project    --log-opt gcp-meta-zone=west1 \    --log-opt gcp-meta-name=`hostname` \
    your/application
上一篇: 下一篇: