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aws_sdk_transfer/
lib.rs

1#![allow(deprecated)]
2#![allow(unknown_lints)]
3#![allow(clippy::module_inception)]
4#![allow(clippy::upper_case_acronyms)]
5#![allow(clippy::large_enum_variant)]
6#![allow(clippy::wrong_self_convention)]
7#![allow(clippy::should_implement_trait)]
8#![allow(clippy::disallowed_names)]
9#![allow(clippy::vec_init_then_push)]
10#![allow(clippy::type_complexity)]
11#![allow(clippy::needless_return)]
12#![allow(clippy::derive_partial_eq_without_eq)]
13#![allow(clippy::result_large_err)]
14#![allow(clippy::unnecessary_map_on_constructor)]
15#![allow(clippy::useless_conversion)]
16#![allow(clippy::deprecated_semver)]
17#![allow(rustdoc::bare_urls)]
18#![allow(rustdoc::redundant_explicit_links)]
19#![allow(rustdoc::broken_intra_doc_links)]
20#![allow(rustdoc::invalid_html_tags)]
21#![forbid(unsafe_code)]
22#![warn(missing_docs)]
23#![cfg_attr(docsrs, feature(doc_cfg))]
24//! Transfer Family offers fully managed support for the transfer of files over SFTP, AS2, FTPS, FTP, and web browser-based transfers directly into and out of Amazon Web Services storage services.
25//!
26//! File transfer protocols are used in data exchange workflows across different industries such as financial services, healthcare, advertising, and retail, among others. Transfer Family simplifies the migration of file transfer workflows to Amazon Web Services.
27//!
28//! To use the Transfer Family service, you instantiate a server in the Amazon Web Services Region of your choice. You can create the server, list available servers, and update and delete servers. The server is the entity that requests file operations from Transfer Family. Servers have a number of important properties. The server is a named instance as identified by a system assigned ServerId identifier. You can optionally assign a hostname, or even a custom hostname to a server. The service bills for any instantiated servers (even ones OFFLINE), and for the amount of data transferred.
29//!
30//! Users must be known to the server that requests file operations. A user as identified by their username is assigned to a server. Usernames are used to authenticate requests. A server can have only one authentication method: AWS_DIRECTORY_SERVICE, SERVICE_MANAGED, AWS_LAMBDA, or API_GATEWAY.
31//!
32//! Transfer Family also supports web applications that provide browser-based file transfer capabilities. Web applications can be configured with VPC endpoints to enable secure, private connectivity within your Virtual Private Cloud (VPC). This allows you to control network access and route traffic through your VPC infrastructure while maintaining the managed benefits of Transfer Family.
33//!
34//! This API interface reference for Transfer Family contains documentation for a programming interface that you can use to manage Transfer Family. The reference structure is as follows:
35//!   - For the alphabetical list of API actions, see .
36//!   - For the alphabetical list of data types, see .
37//!   - For a list of common query parameters, see CommonParameters.
38//!   - For descriptions of the error codes, see CommonErrors.
39//!
40//! ## Getting Started
41//!
42//! > Examples are available for many services and operations, check out the
43//! > [usage examples](https://github.com/awsdocs/aws-doc-sdk-examples/tree/main/rustv1).
44//!
45//! The SDK provides one crate per AWS service. You must add [Tokio](https://crates.io/crates/tokio)
46//! as a dependency within your Rust project to execute asynchronous code. To add `aws-sdk-transfer` to
47//! your project, add the following to your **Cargo.toml** file:
48//!
49//! ```toml
50//! [dependencies]
51//! aws-config = { version = "1.1.7", features = ["behavior-version-latest"] }
52//! aws-sdk-transfer = "1.130.0"
53//! tokio = { version = "1", features = ["full"] }
54//! ```
55//!
56//! Then in code, a client can be created with the following:
57//!
58//! ```rust,no_run
59//! use aws_sdk_transfer as transfer;
60//!
61//! #[::tokio::main]
62//! async fn main() -> Result<(), transfer::Error> {
63//!     let config = aws_config::load_from_env().await;
64//!     let client = aws_sdk_transfer::Client::new(&config);
65//!
66//!     // ... make some calls with the client
67//!
68//!     Ok(())
69//! }
70//! ```
71//!
72//! See the [client documentation](https://docs.rs/aws-sdk-transfer/latest/aws_sdk_transfer/client/struct.Client.html)
73//! for information on what calls can be made, and the inputs and outputs for each of those calls.
74//!
75//! ## Using the SDK
76//!
77//! Until the SDK is released, we will be adding information about using the SDK to the
78//! [Developer Guide](https://docs.aws.amazon.com/sdk-for-rust/latest/dg/welcome.html). Feel free to suggest
79//! additional sections for the guide by opening an issue and describing what you are trying to do.
80//!
81//! ## Getting Help
82//!
83//! * [GitHub discussions](https://github.com/awslabs/aws-sdk-rust/discussions) - For ideas, RFCs & general questions
84//! * [GitHub issues](https://github.com/awslabs/aws-sdk-rust/issues/new/choose) - For bug reports & feature requests
85//! * [Generated Docs (latest version)](https://awslabs.github.io/aws-sdk-rust/)
86//! * [Usage examples](https://github.com/awsdocs/aws-doc-sdk-examples/tree/main/rustv1)
87//!
88//!
89//! # Crate Organization
90//!
91//! The entry point for most customers will be [`Client`], which exposes one method for each API
92//! offered by AWS Transfer Family. The return value of each of these methods is a "fluent builder",
93//! where the different inputs for that API are added by builder-style function call chaining,
94//! followed by calling `send()` to get a [`Future`](std::future::Future) that will result in
95//! either a successful output or a [`SdkError`](crate::error::SdkError).
96//!
97//! Some of these API inputs may be structs or enums to provide more complex structured information.
98//! These structs and enums live in [`types`](crate::types). There are some simpler types for
99//! representing data such as date times or binary blobs that live in [`primitives`](crate::primitives).
100//!
101//! All types required to configure a client via the [`Config`](crate::Config) struct live
102//! in [`config`](crate::config).
103//!
104//! The [`operation`](crate::operation) module has a submodule for every API, and in each submodule
105//! is the input, output, and error type for that API, as well as builders to construct each of those.
106//!
107//! There is a top-level [`Error`](crate::Error) type that encompasses all the errors that the
108//! client can return. Any other error type can be converted to this `Error` type via the
109//! [`From`](std::convert::From) trait.
110//!
111//! The other modules within this crate are not required for normal usage.
112
113// Code generated by software.amazon.smithy.rust.codegen.smithy-rs. DO NOT EDIT.
114pub use error_meta::Error;
115
116#[doc(inline)]
117pub use config::Config;
118
119/// Client for calling AWS Transfer Family.
120/// ## Constructing a `Client`
121///
122/// A [`Config`] is required to construct a client. For most use cases, the [`aws-config`]
123/// crate should be used to automatically resolve this config using
124/// [`aws_config::load_from_env()`], since this will resolve an [`SdkConfig`] which can be shared
125/// across multiple different AWS SDK clients. This config resolution process can be customized
126/// by calling [`aws_config::from_env()`] instead, which returns a [`ConfigLoader`] that uses
127/// the [builder pattern] to customize the default config.
128///
129/// In the simplest case, creating a client looks as follows:
130/// ```rust,no_run
131/// # async fn wrapper() {
132/// let config = aws_config::load_from_env().await;
133/// let client = aws_sdk_transfer::Client::new(&config);
134/// # }
135/// ```
136///
137/// Occasionally, SDKs may have additional service-specific values that can be set on the [`Config`] that
138/// is absent from [`SdkConfig`], or slightly different settings for a specific client may be desired.
139/// The [`Builder`](crate::config::Builder) struct implements `From<&SdkConfig>`, so setting these specific settings can be
140/// done as follows:
141///
142/// ```rust,no_run
143/// # async fn wrapper() {
144/// let sdk_config = ::aws_config::load_from_env().await;
145/// let config = aws_sdk_transfer::config::Builder::from(&sdk_config)
146/// # /*
147///     .some_service_specific_setting("value")
148/// # */
149///     .build();
150/// # }
151/// ```
152///
153/// See the [`aws-config` docs] and [`Config`] for more information on customizing configuration.
154///
155/// _Note:_ Client construction is expensive due to connection thread pool initialization, and should
156/// be done once at application start-up.
157///
158/// [`Config`]: crate::Config
159/// [`ConfigLoader`]: https://docs.rs/aws-config/*/aws_config/struct.ConfigLoader.html
160/// [`SdkConfig`]: https://docs.rs/aws-config/*/aws_config/struct.SdkConfig.html
161/// [`aws-config` docs]: https://docs.rs/aws-config/*
162/// [`aws-config`]: https://crates.io/crates/aws-config
163/// [`aws_config::from_env()`]: https://docs.rs/aws-config/*/aws_config/fn.from_env.html
164/// [`aws_config::load_from_env()`]: https://docs.rs/aws-config/*/aws_config/fn.load_from_env.html
165/// [builder pattern]: https://rust-lang.github.io/api-guidelines/type-safety.html#builders-enable-construction-of-complex-values-c-builder
166/// # Using the `Client`
167///
168/// A client has a function for every operation that can be performed by the service.
169/// For example, the [`CreateAccess`](crate::operation::create_access) operation has
170/// a [`Client::create_access`], function which returns a builder for that operation.
171/// The fluent builder ultimately has a `send()` function that returns an async future that
172/// returns a result, as illustrated below:
173///
174/// ```rust,ignore
175/// let result = client.create_access()
176///     .home_directory("example")
177///     .send()
178///     .await;
179/// ```
180///
181/// The underlying HTTP requests that get made by this can be modified with the `customize_operation`
182/// function on the fluent builder. See the [`customize`](crate::client::customize) module for more
183/// information.
184/// # Waiters
185///
186/// This client provides `wait_until` methods behind the [`Waiters`](crate::client::Waiters) trait.
187/// To use them, simply import the trait, and then call one of the `wait_until` methods. This will
188/// return a waiter fluent builder that takes various parameters, which are documented on the builder
189/// type. Once parameters have been provided, the `wait` method can be called to initiate waiting.
190///
191/// For example, if there was a `wait_until_thing` method, it could look like:
192/// ```rust,ignore
193/// let result = client.wait_until_thing()
194///     .thing_id("someId")
195///     .wait(Duration::from_secs(120))
196///     .await;
197/// ```
198pub mod client;
199
200/// Configuration for AWS Transfer Family.
201pub mod config;
202
203/// Common errors and error handling utilities.
204pub mod error;
205
206mod error_meta;
207
208/// Information about this crate.
209pub mod meta;
210
211/// All operations that this crate can perform.
212pub mod operation;
213
214/// Primitives such as `Blob` or `DateTime` used by other types.
215pub mod primitives;
216
217/// Data structures used by operation inputs/outputs.
218pub mod types;
219
220mod observability_feature;
221
222pub(crate) mod protocol_serde;
223
224mod sdk_feature_tracker;
225
226mod serialization_settings;
227
228mod endpoint_lib;
229
230mod lens;
231
232mod serde_util;
233
234/// Supporting types for waiters.
235///
236/// Note: to use waiters, import the [`Waiters`](crate::client::Waiters) trait, which adds methods prefixed with `wait_until` to the client.
237pub mod waiters;
238
239mod json_errors;
240
241#[doc(inline)]
242pub use client::Client;