aws-sdk-elementalinference 1.17.0

AWS SDK for AWS Elemental Inference
Documentation
// Code generated by software.amazon.smithy.rust.codegen.smithy-rs. DO NOT EDIT.
pub use crate::operation::create_feed::_create_feed_input::CreateFeedInputBuilder;

pub use crate::operation::create_feed::_create_feed_output::CreateFeedOutputBuilder;

impl crate::operation::create_feed::builders::CreateFeedInputBuilder {
    /// Sends a request with this input using the given client.
    pub async fn send_with(
        self,
        client: &crate::Client,
    ) -> ::std::result::Result<
        crate::operation::create_feed::CreateFeedOutput,
        ::aws_smithy_runtime_api::client::result::SdkError<
            crate::operation::create_feed::CreateFeedError,
            ::aws_smithy_runtime_api::client::orchestrator::HttpResponse,
        >,
    > {
        let mut fluent_builder = client.create_feed();
        fluent_builder.inner = self;
        fluent_builder.send().await
    }
}
/// Fluent builder constructing a request to `CreateFeed`.
///
/// <p>Creates a feed. The feed is the target for the live media stream that is being sent by the calling application. An example of a calling application is AWS Elemental MediaLive.</p>
/// <p>The key contents of the feed is an array of outputs. Each output represents an Elemental Inference feature. After you create the feed, you must associate a resource with the feed. At that point, you will have a useable feed: resource - feed - output or outputs.</p>
#[derive(::std::clone::Clone, ::std::fmt::Debug)]
pub struct CreateFeedFluentBuilder {
    handle: ::std::sync::Arc<crate::client::Handle>,
    inner: crate::operation::create_feed::builders::CreateFeedInputBuilder,
    config_override: ::std::option::Option<crate::config::Builder>,
}
impl
    crate::client::customize::internal::CustomizableSend<
        crate::operation::create_feed::CreateFeedOutput,
        crate::operation::create_feed::CreateFeedError,
    > for CreateFeedFluentBuilder
{
    fn send(
        self,
        config_override: crate::config::Builder,
    ) -> crate::client::customize::internal::BoxFuture<
        crate::client::customize::internal::SendResult<
            crate::operation::create_feed::CreateFeedOutput,
            crate::operation::create_feed::CreateFeedError,
        >,
    > {
        ::std::boxed::Box::pin(async move { self.config_override(config_override).send().await })
    }
}
impl CreateFeedFluentBuilder {
    /// Creates a new `CreateFeedFluentBuilder`.
    pub(crate) fn new(handle: ::std::sync::Arc<crate::client::Handle>) -> Self {
        Self {
            handle,
            inner: ::std::default::Default::default(),
            config_override: ::std::option::Option::None,
        }
    }
    /// Access the CreateFeed as a reference.
    pub fn as_input(&self) -> &crate::operation::create_feed::builders::CreateFeedInputBuilder {
        &self.inner
    }
    /// Sends the request and returns the response.
    ///
    /// If an error occurs, an `SdkError` will be returned with additional details that
    /// can be matched against.
    ///
    /// By default, any retryable failures will be retried twice. Retry behavior
    /// is configurable with the [RetryConfig](aws_smithy_types::retry::RetryConfig), which can be
    /// set when configuring the client.
    pub async fn send(
        self,
    ) -> ::std::result::Result<
        crate::operation::create_feed::CreateFeedOutput,
        ::aws_smithy_runtime_api::client::result::SdkError<
            crate::operation::create_feed::CreateFeedError,
            ::aws_smithy_runtime_api::client::orchestrator::HttpResponse,
        >,
    > {
        let input = self
            .inner
            .build()
            .map_err(::aws_smithy_runtime_api::client::result::SdkError::construction_failure)?;
        let runtime_plugins = crate::operation::create_feed::CreateFeed::operation_runtime_plugins(
            self.handle.runtime_plugins.clone(),
            &self.handle.conf,
            self.config_override,
        );
        crate::operation::create_feed::CreateFeed::orchestrate(&runtime_plugins, input).await
    }

    /// Consumes this builder, creating a customizable operation that can be modified before being sent.
    pub fn customize(
        self,
    ) -> crate::client::customize::CustomizableOperation<
        crate::operation::create_feed::CreateFeedOutput,
        crate::operation::create_feed::CreateFeedError,
        Self,
    > {
        crate::client::customize::CustomizableOperation::new(self)
    }
    pub(crate) fn config_override(mut self, config_override: impl ::std::convert::Into<crate::config::Builder>) -> Self {
        self.set_config_override(::std::option::Option::Some(config_override.into()));
        self
    }

    pub(crate) fn set_config_override(&mut self, config_override: ::std::option::Option<crate::config::Builder>) -> &mut Self {
        self.config_override = config_override;
        self
    }
    /// <p>A user-friendly name for this feed.</p>
    pub fn name(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
        self.inner = self.inner.name(input.into());
        self
    }
    /// <p>A user-friendly name for this feed.</p>
    pub fn set_name(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
        self.inner = self.inner.set_name(input);
        self
    }
    /// <p>A user-friendly name for this feed.</p>
    pub fn get_name(&self) -> &::std::option::Option<::std::string::String> {
        self.inner.get_name()
    }
    /// <p>The ARN of an IAM role that Elemental Inference assumes to access resources in your account on your behalf. For example, the smart crop feature uses this role to read graphics-compositing templates from your Amazon S3 bucket. You specify one access role for each feed.</p>
    pub fn access_role_arn(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
        self.inner = self.inner.access_role_arn(input.into());
        self
    }
    /// <p>The ARN of an IAM role that Elemental Inference assumes to access resources in your account on your behalf. For example, the smart crop feature uses this role to read graphics-compositing templates from your Amazon S3 bucket. You specify one access role for each feed.</p>
    pub fn set_access_role_arn(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
        self.inner = self.inner.set_access_role_arn(input);
        self
    }
    /// <p>The ARN of an IAM role that Elemental Inference assumes to access resources in your account on your behalf. For example, the smart crop feature uses this role to read graphics-compositing templates from your Amazon S3 bucket. You specify one access role for each feed.</p>
    pub fn get_access_role_arn(&self) -> &::std::option::Option<::std::string::String> {
        self.inner.get_access_role_arn()
    }
    ///
    /// Appends an item to `outputs`.
    ///
    /// To override the contents of this collection use [`set_outputs`](Self::set_outputs).
    ///
    /// <p>An array of outputs for this feed. Each output represents a specific Elemental Inference feature. For example, there is one output type for the smart crop feature. You must specify at least one output, but you can later add outputs using AssociateFeed, or add, modify, and delete outputs using UpdateFeed.</p>
    pub fn outputs(mut self, input: crate::types::CreateOutput) -> Self {
        self.inner = self.inner.outputs(input);
        self
    }
    /// <p>An array of outputs for this feed. Each output represents a specific Elemental Inference feature. For example, there is one output type for the smart crop feature. You must specify at least one output, but you can later add outputs using AssociateFeed, or add, modify, and delete outputs using UpdateFeed.</p>
    pub fn set_outputs(mut self, input: ::std::option::Option<::std::vec::Vec<crate::types::CreateOutput>>) -> Self {
        self.inner = self.inner.set_outputs(input);
        self
    }
    /// <p>An array of outputs for this feed. Each output represents a specific Elemental Inference feature. For example, there is one output type for the smart crop feature. You must specify at least one output, but you can later add outputs using AssociateFeed, or add, modify, and delete outputs using UpdateFeed.</p>
    pub fn get_outputs(&self) -> &::std::option::Option<::std::vec::Vec<crate::types::CreateOutput>> {
        self.inner.get_outputs()
    }
    ///
    /// Adds a key-value pair to `tags`.
    ///
    /// To override the contents of this collection use [`set_tags`](Self::set_tags).
    ///
    /// <p>Optional tags. You can also add tags later, using TagResource.</p>
    pub fn tags(mut self, k: impl ::std::convert::Into<::std::string::String>, v: impl ::std::convert::Into<::std::string::String>) -> Self {
        self.inner = self.inner.tags(k.into(), v.into());
        self
    }
    /// <p>Optional tags. You can also add tags later, using TagResource.</p>
    pub fn set_tags(mut self, input: ::std::option::Option<::std::collections::HashMap<::std::string::String, ::std::string::String>>) -> Self {
        self.inner = self.inner.set_tags(input);
        self
    }
    /// <p>Optional tags. You can also add tags later, using TagResource.</p>
    pub fn get_tags(&self) -> &::std::option::Option<::std::collections::HashMap<::std::string::String, ::std::string::String>> {
        self.inner.get_tags()
    }
}