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// Code generated by software.amazon.smithy.rust.codegen.smithy-rs. DO NOT EDIT.
pub use crate::operation::list_entity_events::_list_entity_events_input::ListEntityEventsInputBuilder;
pub use crate::operation::list_entity_events::_list_entity_events_output::ListEntityEventsOutputBuilder;
impl crate::operation::list_entity_events::builders::ListEntityEventsInputBuilder {
/// Sends a request with this input using the given client.
pub async fn send_with(
self,
client: &crate::Client,
) -> ::std::result::Result<
crate::operation::list_entity_events::ListEntityEventsOutput,
::aws_smithy_runtime_api::client::result::SdkError<
crate::operation::list_entity_events::ListEntityEventsError,
::aws_smithy_runtime_api::client::orchestrator::HttpResponse,
>,
> {
let mut fluent_builder = client.list_entity_events();
fluent_builder.inner = self;
fluent_builder.send().await
}
}
/// Fluent builder constructing a request to `ListEntityEvents`.
///
/// <p>Returns a list of change events for a specific entity, such as deployments, configuration changes, or other state-changing activities. This operation helps track the history of changes that may have affected service performance.</p>
#[derive(::std::clone::Clone, ::std::fmt::Debug)]
pub struct ListEntityEventsFluentBuilder {
handle: ::std::sync::Arc<crate::client::Handle>,
inner: crate::operation::list_entity_events::builders::ListEntityEventsInputBuilder,
config_override: ::std::option::Option<crate::config::Builder>,
}
impl
crate::client::customize::internal::CustomizableSend<
crate::operation::list_entity_events::ListEntityEventsOutput,
crate::operation::list_entity_events::ListEntityEventsError,
> for ListEntityEventsFluentBuilder
{
fn send(
self,
config_override: crate::config::Builder,
) -> crate::client::customize::internal::BoxFuture<
crate::client::customize::internal::SendResult<
crate::operation::list_entity_events::ListEntityEventsOutput,
crate::operation::list_entity_events::ListEntityEventsError,
>,
> {
::std::boxed::Box::pin(async move { self.config_override(config_override).send().await })
}
}
impl ListEntityEventsFluentBuilder {
/// Creates a new `ListEntityEventsFluentBuilder`.
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 ListEntityEvents as a reference.
pub fn as_input(&self) -> &crate::operation::list_entity_events::builders::ListEntityEventsInputBuilder {
&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::list_entity_events::ListEntityEventsOutput,
::aws_smithy_runtime_api::client::result::SdkError<
crate::operation::list_entity_events::ListEntityEventsError,
::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::list_entity_events::ListEntityEvents::operation_runtime_plugins(
self.handle.runtime_plugins.clone(),
&self.handle.conf,
self.config_override,
);
crate::operation::list_entity_events::ListEntityEvents::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::list_entity_events::ListEntityEventsOutput,
crate::operation::list_entity_events::ListEntityEventsError,
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
}
/// Create a paginator for this request
///
/// Paginators are used by calling [`send().await`](crate::operation::list_entity_events::paginator::ListEntityEventsPaginator::send) which returns a [`PaginationStream`](aws_smithy_async::future::pagination_stream::PaginationStream).
pub fn into_paginator(self) -> crate::operation::list_entity_events::paginator::ListEntityEventsPaginator {
crate::operation::list_entity_events::paginator::ListEntityEventsPaginator::new(self.handle, self.inner)
}
///
/// Adds a key-value pair to `Entity`.
///
/// To override the contents of this collection use [`set_entity`](Self::set_entity).
///
/// <p>The entity for which to retrieve change events. This specifies the service, resource, or other entity whose event history you want to examine.</p>
/// <p>This is a string-to-string map. It can include the following fields.</p>
/// <ul>
/// <li>
/// <p><code>Type</code> designates the type of object this is.</p></li>
/// <li>
/// <p><code>ResourceType</code> specifies the type of the resource. This field is used only when the value of the <code>Type</code> field is <code>Resource</code> or <code>AWS::Resource</code>.</p></li>
/// <li>
/// <p><code>Name</code> specifies the name of the object. This is used only if the value of the <code>Type</code> field is <code>Service</code>, <code>RemoteService</code>, or <code>AWS::Service</code>.</p></li>
/// <li>
/// <p><code>Identifier</code> identifies the resource objects of this resource. This is used only if the value of the <code>Type</code> field is <code>Resource</code> or <code>AWS::Resource</code>.</p></li>
/// <li>
/// <p><code>Environment</code> specifies the location where this object is hosted, or what it belongs to.</p></li>
/// <li>
/// <p><code>AwsAccountId</code> specifies the account where this object is in.</p></li>
/// </ul>
/// <p>Below is an example of a service.</p>
/// <p><code>{ "Type": "Service", "Name": "visits-service", "Environment": "petclinic-test" }</code></p>
/// <p>Below is an example of a resource.</p>
/// <p><code>{ "Type": "AWS::Resource", "ResourceType": "AWS::DynamoDB::Table", "Identifier": "Customers" }</code></p>
pub fn entity(mut self, k: impl ::std::convert::Into<::std::string::String>, v: impl ::std::convert::Into<::std::string::String>) -> Self {
self.inner = self.inner.entity(k.into(), v.into());
self
}
/// <p>The entity for which to retrieve change events. This specifies the service, resource, or other entity whose event history you want to examine.</p>
/// <p>This is a string-to-string map. It can include the following fields.</p>
/// <ul>
/// <li>
/// <p><code>Type</code> designates the type of object this is.</p></li>
/// <li>
/// <p><code>ResourceType</code> specifies the type of the resource. This field is used only when the value of the <code>Type</code> field is <code>Resource</code> or <code>AWS::Resource</code>.</p></li>
/// <li>
/// <p><code>Name</code> specifies the name of the object. This is used only if the value of the <code>Type</code> field is <code>Service</code>, <code>RemoteService</code>, or <code>AWS::Service</code>.</p></li>
/// <li>
/// <p><code>Identifier</code> identifies the resource objects of this resource. This is used only if the value of the <code>Type</code> field is <code>Resource</code> or <code>AWS::Resource</code>.</p></li>
/// <li>
/// <p><code>Environment</code> specifies the location where this object is hosted, or what it belongs to.</p></li>
/// <li>
/// <p><code>AwsAccountId</code> specifies the account where this object is in.</p></li>
/// </ul>
/// <p>Below is an example of a service.</p>
/// <p><code>{ "Type": "Service", "Name": "visits-service", "Environment": "petclinic-test" }</code></p>
/// <p>Below is an example of a resource.</p>
/// <p><code>{ "Type": "AWS::Resource", "ResourceType": "AWS::DynamoDB::Table", "Identifier": "Customers" }</code></p>
pub fn set_entity(mut self, input: ::std::option::Option<::std::collections::HashMap<::std::string::String, ::std::string::String>>) -> Self {
self.inner = self.inner.set_entity(input);
self
}
/// <p>The entity for which to retrieve change events. This specifies the service, resource, or other entity whose event history you want to examine.</p>
/// <p>This is a string-to-string map. It can include the following fields.</p>
/// <ul>
/// <li>
/// <p><code>Type</code> designates the type of object this is.</p></li>
/// <li>
/// <p><code>ResourceType</code> specifies the type of the resource. This field is used only when the value of the <code>Type</code> field is <code>Resource</code> or <code>AWS::Resource</code>.</p></li>
/// <li>
/// <p><code>Name</code> specifies the name of the object. This is used only if the value of the <code>Type</code> field is <code>Service</code>, <code>RemoteService</code>, or <code>AWS::Service</code>.</p></li>
/// <li>
/// <p><code>Identifier</code> identifies the resource objects of this resource. This is used only if the value of the <code>Type</code> field is <code>Resource</code> or <code>AWS::Resource</code>.</p></li>
/// <li>
/// <p><code>Environment</code> specifies the location where this object is hosted, or what it belongs to.</p></li>
/// <li>
/// <p><code>AwsAccountId</code> specifies the account where this object is in.</p></li>
/// </ul>
/// <p>Below is an example of a service.</p>
/// <p><code>{ "Type": "Service", "Name": "visits-service", "Environment": "petclinic-test" }</code></p>
/// <p>Below is an example of a resource.</p>
/// <p><code>{ "Type": "AWS::Resource", "ResourceType": "AWS::DynamoDB::Table", "Identifier": "Customers" }</code></p>
pub fn get_entity(&self) -> &::std::option::Option<::std::collections::HashMap<::std::string::String, ::std::string::String>> {
self.inner.get_entity()
}
/// <p>The start of the time period to retrieve change events for. When used in a raw HTTP Query API, it is formatted as epoch time in seconds. For example: <code>1698778057</code></p>
pub fn start_time(mut self, input: ::aws_smithy_types::DateTime) -> Self {
self.inner = self.inner.start_time(input);
self
}
/// <p>The start of the time period to retrieve change events for. When used in a raw HTTP Query API, it is formatted as epoch time in seconds. For example: <code>1698778057</code></p>
pub fn set_start_time(mut self, input: ::std::option::Option<::aws_smithy_types::DateTime>) -> Self {
self.inner = self.inner.set_start_time(input);
self
}
/// <p>The start of the time period to retrieve change events for. When used in a raw HTTP Query API, it is formatted as epoch time in seconds. For example: <code>1698778057</code></p>
pub fn get_start_time(&self) -> &::std::option::Option<::aws_smithy_types::DateTime> {
self.inner.get_start_time()
}
/// <p>The end of the time period to retrieve change events for. When used in a raw HTTP Query API, it is formatted as epoch time in seconds. For example: <code>1698778057</code></p>
pub fn end_time(mut self, input: ::aws_smithy_types::DateTime) -> Self {
self.inner = self.inner.end_time(input);
self
}
/// <p>The end of the time period to retrieve change events for. When used in a raw HTTP Query API, it is formatted as epoch time in seconds. For example: <code>1698778057</code></p>
pub fn set_end_time(mut self, input: ::std::option::Option<::aws_smithy_types::DateTime>) -> Self {
self.inner = self.inner.set_end_time(input);
self
}
/// <p>The end of the time period to retrieve change events for. When used in a raw HTTP Query API, it is formatted as epoch time in seconds. For example: <code>1698778057</code></p>
pub fn get_end_time(&self) -> &::std::option::Option<::aws_smithy_types::DateTime> {
self.inner.get_end_time()
}
/// <p>The maximum number of change events to return in one operation. If you omit this parameter, the default of 50 is used.</p>
pub fn max_results(mut self, input: i32) -> Self {
self.inner = self.inner.max_results(input);
self
}
/// <p>The maximum number of change events to return in one operation. If you omit this parameter, the default of 50 is used.</p>
pub fn set_max_results(mut self, input: ::std::option::Option<i32>) -> Self {
self.inner = self.inner.set_max_results(input);
self
}
/// <p>The maximum number of change events to return in one operation. If you omit this parameter, the default of 50 is used.</p>
pub fn get_max_results(&self) -> &::std::option::Option<i32> {
self.inner.get_max_results()
}
/// <p>Include this value, if it was returned by the previous operation, to get the next set of change events.</p>
pub fn next_token(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
self.inner = self.inner.next_token(input.into());
self
}
/// <p>Include this value, if it was returned by the previous operation, to get the next set of change events.</p>
pub fn set_next_token(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
self.inner = self.inner.set_next_token(input);
self
}
/// <p>Include this value, if it was returned by the previous operation, to get the next set of change events.</p>
pub fn get_next_token(&self) -> &::std::option::Option<::std::string::String> {
self.inner.get_next_token()
}
}