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---
layout: "docs"
page_title: "Plugin Basics"
sidebar_current: "docs-plugins-basics"
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description: |-
This page documents the basics of how the plugin system in Terraform works, and how to setup a basic development environment for plugin development if you're writing a Terraform plugin.
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---
# Plugin Basics
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~> **Advanced topic!** Plugin development is a highly advanced
topic in Terraform, and is not required knowledge for day-to-day usage.
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If you don't plan on writing any plugins, this section of the documentation is
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not necessary to read. For general use of Terraform, please see our
[Intro to Terraform ](/intro/index.html ) and [Getting
Started](/intro/getting-started/install.html) guides.
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This page documents the basics of how the plugin system in Terraform
works, and how to setup a basic development environment for plugin development
if you're writing a Terraform plugin.
## How it Works
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Terraform providers and provisioners are provided via plugins. Each plugin
exposes an implementation for a specific service, such as AWS, or provisioner,
such as bash. Plugins are executed as a separate process and communicate with
the main Terraform binary over an RPC interface.
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More details are available in
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_[Plugin Internals](/docs/internals/internal-plugins.html)_.
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The code within the binaries must adhere to certain interfaces.
The network communication and RPC is handled automatically by higher-level
Terraform libraries. The exact interface to implement is documented
in its respective documentation section.
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## Installing Plugins
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The [provider plugins distributed by HashiCorp ](/docs/providers/index.html ) are
automatically installed by `terraform init` . Third-party plugins (both
providers and provisioners) can be manually installed into the user plugins
directory, located at `<APPLICATION DATA>\terraform.d\plugins` on Windows and
`~/.terraform.d/plugins` on other systems.
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For more information, see:
- [Configuring Providers ](/docs/configuration/providers.html )
- [Configuring Providers: Third-party Plugins ](/docs/configuration/providers.html#third-party-plugins )
For developer-centric documentation, see:
- [How Terraform Works: Plugin Discovery ](/docs/extend/how-terraform-works.html#discovery )
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## Developing a Plugin
Developing a plugin is simple. The only knowledge necessary to write
a plugin is basic command-line skills and basic knowledge of the
[Go programming language ](http://golang.org ).
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-> **Note:** A common pitfall is not properly setting up a
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< code > $GOPATH< / code > . This can lead to strange errors. You can read more about
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this [here ](https://golang.org/doc/code.html ) to familiarize
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yourself.
Create a new Go project somewhere in your `$GOPATH` . If you're a
GitHub user, we recommend creating the project in the directory
`$GOPATH/src/github.com/USERNAME/terraform-NAME` , where `USERNAME`
is your GitHub username and `NAME` is the name of the plugin you're
developing. This structure is what Go expects and simplifies things down
the road.
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The `NAME` should either begin with `provider-` or `provisioner-` ,
depending on what kind of plugin it will be. The repository name will,
by default, be the name of the binary produced by `go install` for
your plugin package.
With the package directory made, create a `main.go` file. This project will
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be a binary so the package is "main":
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```golang
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package main
import (
"github.com/hashicorp/terraform/plugin"
)
func main() {
plugin.Serve(new(MyPlugin))
}
```
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The name `MyPlugin` is a placeholder for the struct type that represents
your plugin's implementation. This must implement either
`terraform.ResourceProvider` or `terraform.ResourceProvisioner` , depending
on the plugin type.
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To test your plugin, the easiest method is to copy your `terraform` binary
to `$GOPATH/bin` and ensure that this copy is the one being used for testing.
`terraform init` will search for plugins within the same directory as the
`terraform` binary, and `$GOPATH/bin` is the directory into which `go install`
will place the plugin executable.