Docker images contain the following elements: file system layer (root file system, layer), metadata (Manifest file, configuration, tags), network settings (IP address, port mapping), users and groups (user ID , group ID), command (entry point, CMD).
What the Docker image contains
A Docker image is a lightweight, retrievable image that contains software and all its dependencies. Execute package. It provides everything you need to deploy and run applications in any environment. Specifically, a Docker image contains the following elements:
1. File system layer
- Root file system: Application runtime Required root file system image, including binaries, libraries, and configuration files.
- Layers: Separate file system layers that can be accumulated in the image, each layer containing incremental changes to the root file system. This allows images to be stored and updated efficiently.
2. Metadata
- JSON file: Manifest file describing metadata such as image content, size, and tags .
- Configuration: Configuration file that specifies the container's running configuration, such as entry points, environment variables, and volumes.
- Tags: Metadata key-value pairs used to organize and identify images.
3. Network settings
- IP address: The IP address assigned to the container.
- Port mapping: Mapping of external ports exposed inside the container to internal ports.
4. Users and groups
- User ID and group ID:Specify the user and group under which the process in the container runs .
5. Command
- Entry point: Command executed when the container starts.
- CMD: Default parameters for the entry point.
Docker images may also contain other content, such as custom scripts, data, and documentation. These elements provide additional functionality and flexibility, allowing users to tailor the image to specific needs.
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Docker simplifies application deployment and management on Linux. 1) Docker is a containerized platform that packages applications and their dependencies into lightweight and portable containers. 2) On Linux, Docker uses cgroups and namespaces to implement container isolation and resource management. 3) Basic usages include pulling images and running containers. Advanced usages such as DockerCompose can define multi-container applications. 4) Debug commonly used dockerlogs and dockerexec commands. 5) Performance optimization can reduce the image size through multi-stage construction, and keeping the Dockerfile simple is the best practice.

Docker is a Linux container technology-based tool used to package, distribute and run applications to improve application portability and scalability. 1) Dockerbuild and dockerrun commands can be used to build and run Docker containers. 2) DockerCompose is used to define and run multi-container Docker applications to simplify microservice management. 3) Using multi-stage construction can optimize the image size and improve the application startup speed. 4) Viewing container logs is an effective way to debug container problems.

Docker container startup steps: Pull the container image: Run "docker pull [mirror name]". Create a container: Use "docker create [options] [mirror name] [commands and parameters]". Start the container: Execute "docker start [Container name or ID]". Check container status: Verify that the container is running with "docker ps".

The methods to view Docker logs include: using the docker logs command, for example: docker logs CONTAINER_NAME Use the docker exec command to run /bin/sh and view the log file, for example: docker exec -it CONTAINER_NAME /bin/sh ; cat /var/log/CONTAINER_NAME.log Use the docker-compose logs command of Docker Compose, for example: docker-compose -f docker-com

You can query the Docker container name by following the steps: List all containers (docker ps). Filter the container list (using the grep command). Gets the container name (located in the "NAMES" column).

Create a container in Docker: 1. Pull the image: docker pull [mirror name] 2. Create a container: docker run [Options] [mirror name] [Command] 3. Start the container: docker start [Container name]

Four ways to exit Docker container: Use Ctrl D in the container terminal Enter exit command in the container terminal Use docker stop <container_name> Command Use docker kill <container_name> command in the host terminal (force exit)

Methods for copying files to external hosts in Docker: Use the docker cp command: Execute docker cp [Options] <Container Path> <Host Path>. Using data volumes: Create a directory on the host, and use the -v parameter to mount the directory into the container when creating the container to achieve bidirectional file synchronization.


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