aws-sdk-computeoptimizerautomation 1.5.0

AWS SDK for Compute Optimizer Automation
Documentation
// Code generated by software.amazon.smithy.rust.codegen.smithy-rs. DO NOT EDIT.
pub use crate::operation::update_automation_rule::_update_automation_rule_input::UpdateAutomationRuleInputBuilder;

pub use crate::operation::update_automation_rule::_update_automation_rule_output::UpdateAutomationRuleOutputBuilder;

impl crate::operation::update_automation_rule::builders::UpdateAutomationRuleInputBuilder {
    /// Sends a request with this input using the given client.
    pub async fn send_with(
        self,
        client: &crate::Client,
    ) -> ::std::result::Result<
        crate::operation::update_automation_rule::UpdateAutomationRuleOutput,
        ::aws_smithy_runtime_api::client::result::SdkError<
            crate::operation::update_automation_rule::UpdateAutomationRuleError,
            ::aws_smithy_runtime_api::client::orchestrator::HttpResponse,
        >,
    > {
        let mut fluent_builder = client.update_automation_rule();
        fluent_builder.inner = self;
        fluent_builder.send().await
    }
}
/// Fluent builder constructing a request to `UpdateAutomationRule`.
///
/// <p>Updates an existing automation rule.</p>
#[derive(::std::clone::Clone, ::std::fmt::Debug)]
pub struct UpdateAutomationRuleFluentBuilder {
    handle: ::std::sync::Arc<crate::client::Handle>,
    inner: crate::operation::update_automation_rule::builders::UpdateAutomationRuleInputBuilder,
    config_override: ::std::option::Option<crate::config::Builder>,
}
impl
    crate::client::customize::internal::CustomizableSend<
        crate::operation::update_automation_rule::UpdateAutomationRuleOutput,
        crate::operation::update_automation_rule::UpdateAutomationRuleError,
    > for UpdateAutomationRuleFluentBuilder
{
    fn send(
        self,
        config_override: crate::config::Builder,
    ) -> crate::client::customize::internal::BoxFuture<
        crate::client::customize::internal::SendResult<
            crate::operation::update_automation_rule::UpdateAutomationRuleOutput,
            crate::operation::update_automation_rule::UpdateAutomationRuleError,
        >,
    > {
        ::std::boxed::Box::pin(async move { self.config_override(config_override).send().await })
    }
}
impl UpdateAutomationRuleFluentBuilder {
    /// Creates a new `UpdateAutomationRuleFluentBuilder`.
    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 UpdateAutomationRule as a reference.
    pub fn as_input(&self) -> &crate::operation::update_automation_rule::builders::UpdateAutomationRuleInputBuilder {
        &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::update_automation_rule::UpdateAutomationRuleOutput,
        ::aws_smithy_runtime_api::client::result::SdkError<
            crate::operation::update_automation_rule::UpdateAutomationRuleError,
            ::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::update_automation_rule::UpdateAutomationRule::operation_runtime_plugins(
            self.handle.runtime_plugins.clone(),
            &self.handle.conf,
            self.config_override,
        );
        crate::operation::update_automation_rule::UpdateAutomationRule::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::update_automation_rule::UpdateAutomationRuleOutput,
        crate::operation::update_automation_rule::UpdateAutomationRuleError,
        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>The ARN of the rule to update.</p>
    pub fn rule_arn(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
        self.inner = self.inner.rule_arn(input.into());
        self
    }
    /// <p>The ARN of the rule to update.</p>
    pub fn set_rule_arn(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
        self.inner = self.inner.set_rule_arn(input);
        self
    }
    /// <p>The ARN of the rule to update.</p>
    pub fn get_rule_arn(&self) -> &::std::option::Option<::std::string::String> {
        self.inner.get_rule_arn()
    }
    /// <p>The revision number of the rule to update.</p>
    pub fn rule_revision(mut self, input: i64) -> Self {
        self.inner = self.inner.rule_revision(input);
        self
    }
    /// <p>The revision number of the rule to update.</p>
    pub fn set_rule_revision(mut self, input: ::std::option::Option<i64>) -> Self {
        self.inner = self.inner.set_rule_revision(input);
        self
    }
    /// <p>The revision number of the rule to update.</p>
    pub fn get_rule_revision(&self) -> &::std::option::Option<i64> {
        self.inner.get_rule_revision()
    }
    /// <p>The updated name of the automation rule. Must be 1-128 characters long and contain only alphanumeric characters, underscores, and hyphens.</p>
    pub fn name(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
        self.inner = self.inner.name(input.into());
        self
    }
    /// <p>The updated name of the automation rule. Must be 1-128 characters long and contain only alphanumeric characters, underscores, and hyphens.</p>
    pub fn set_name(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
        self.inner = self.inner.set_name(input);
        self
    }
    /// <p>The updated name of the automation rule. Must be 1-128 characters long and contain only alphanumeric characters, underscores, and hyphens.</p>
    pub fn get_name(&self) -> &::std::option::Option<::std::string::String> {
        self.inner.get_name()
    }
    /// <p>The updated description of the automation rule. Can be up to 1024 characters long and contain alphanumeric characters, underscores, hyphens, spaces, and certain special characters.</p>
    pub fn description(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
        self.inner = self.inner.description(input.into());
        self
    }
    /// <p>The updated description of the automation rule. Can be up to 1024 characters long and contain alphanumeric characters, underscores, hyphens, spaces, and certain special characters.</p>
    pub fn set_description(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
        self.inner = self.inner.set_description(input);
        self
    }
    /// <p>The updated description of the automation rule. Can be up to 1024 characters long and contain alphanumeric characters, underscores, hyphens, spaces, and certain special characters.</p>
    pub fn get_description(&self) -> &::std::option::Option<::std::string::String> {
        self.inner.get_description()
    }
    /// <p>The updated type of automation rule. Can be either OrganizationRule for organization-wide rules or AccountRule for account-specific rules.</p>
    pub fn rule_type(mut self, input: crate::types::RuleType) -> Self {
        self.inner = self.inner.rule_type(input);
        self
    }
    /// <p>The updated type of automation rule. Can be either OrganizationRule for organization-wide rules or AccountRule for account-specific rules.</p>
    pub fn set_rule_type(mut self, input: ::std::option::Option<crate::types::RuleType>) -> Self {
        self.inner = self.inner.set_rule_type(input);
        self
    }
    /// <p>The updated type of automation rule. Can be either OrganizationRule for organization-wide rules or AccountRule for account-specific rules.</p>
    pub fn get_rule_type(&self) -> &::std::option::Option<crate::types::RuleType> {
        self.inner.get_rule_type()
    }
    /// <p>Updated configuration settings for organization-wide rules, including rule application order and target account IDs.</p>
    pub fn organization_configuration(mut self, input: crate::types::OrganizationConfiguration) -> Self {
        self.inner = self.inner.organization_configuration(input);
        self
    }
    /// <p>Updated configuration settings for organization-wide rules, including rule application order and target account IDs.</p>
    pub fn set_organization_configuration(mut self, input: ::std::option::Option<crate::types::OrganizationConfiguration>) -> Self {
        self.inner = self.inner.set_organization_configuration(input);
        self
    }
    /// <p>Updated configuration settings for organization-wide rules, including rule application order and target account IDs.</p>
    pub fn get_organization_configuration(&self) -> &::std::option::Option<crate::types::OrganizationConfiguration> {
        self.inner.get_organization_configuration()
    }
    /// <p>The updated priority level of the automation rule, used to determine execution order when multiple rules apply to the same resource.</p>
    pub fn priority(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
        self.inner = self.inner.priority(input.into());
        self
    }
    /// <p>The updated priority level of the automation rule, used to determine execution order when multiple rules apply to the same resource.</p>
    pub fn set_priority(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
        self.inner = self.inner.set_priority(input);
        self
    }
    /// <p>The updated priority level of the automation rule, used to determine execution order when multiple rules apply to the same resource.</p>
    pub fn get_priority(&self) -> &::std::option::Option<::std::string::String> {
        self.inner.get_priority()
    }
    ///
    /// Appends an item to `recommendedActionTypes`.
    ///
    /// To override the contents of this collection use [`set_recommended_action_types`](Self::set_recommended_action_types).
    ///
    /// <p>Updated list of recommended action types that this rule can execute, such as SnapshotAndDeleteUnattachedEbsVolume or UpgradeEbsVolumeType.</p>
    pub fn recommended_action_types(mut self, input: crate::types::RecommendedActionType) -> Self {
        self.inner = self.inner.recommended_action_types(input);
        self
    }
    /// <p>Updated list of recommended action types that this rule can execute, such as SnapshotAndDeleteUnattachedEbsVolume or UpgradeEbsVolumeType.</p>
    pub fn set_recommended_action_types(mut self, input: ::std::option::Option<::std::vec::Vec<crate::types::RecommendedActionType>>) -> Self {
        self.inner = self.inner.set_recommended_action_types(input);
        self
    }
    /// <p>Updated list of recommended action types that this rule can execute, such as SnapshotAndDeleteUnattachedEbsVolume or UpgradeEbsVolumeType.</p>
    pub fn get_recommended_action_types(&self) -> &::std::option::Option<::std::vec::Vec<crate::types::RecommendedActionType>> {
        self.inner.get_recommended_action_types()
    }
    /// <p>A set of conditions that specify which recommended action qualify for implementation. When a rule is active and a recommended action matches these criteria, Compute Optimizer implements the action at the scheduled run time. You can specify up to 20 conditions per filter criteria and 20 values per condition.</p>
    pub fn criteria(mut self, input: crate::types::Criteria) -> Self {
        self.inner = self.inner.criteria(input);
        self
    }
    /// <p>A set of conditions that specify which recommended action qualify for implementation. When a rule is active and a recommended action matches these criteria, Compute Optimizer implements the action at the scheduled run time. You can specify up to 20 conditions per filter criteria and 20 values per condition.</p>
    pub fn set_criteria(mut self, input: ::std::option::Option<crate::types::Criteria>) -> Self {
        self.inner = self.inner.set_criteria(input);
        self
    }
    /// <p>A set of conditions that specify which recommended action qualify for implementation. When a rule is active and a recommended action matches these criteria, Compute Optimizer implements the action at the scheduled run time. You can specify up to 20 conditions per filter criteria and 20 values per condition.</p>
    pub fn get_criteria(&self) -> &::std::option::Option<crate::types::Criteria> {
        self.inner.get_criteria()
    }
    /// <p>The updated schedule configuration for when the automation rule should execute, including cron expression, timezone, and execution window.</p>
    pub fn schedule(mut self, input: crate::types::Schedule) -> Self {
        self.inner = self.inner.schedule(input);
        self
    }
    /// <p>The updated schedule configuration for when the automation rule should execute, including cron expression, timezone, and execution window.</p>
    pub fn set_schedule(mut self, input: ::std::option::Option<crate::types::Schedule>) -> Self {
        self.inner = self.inner.set_schedule(input);
        self
    }
    /// <p>The updated schedule configuration for when the automation rule should execute, including cron expression, timezone, and execution window.</p>
    pub fn get_schedule(&self) -> &::std::option::Option<crate::types::Schedule> {
        self.inner.get_schedule()
    }
    /// <p>The updated status of the automation rule. Can be Active or Inactive.</p>
    pub fn status(mut self, input: crate::types::RuleStatus) -> Self {
        self.inner = self.inner.status(input);
        self
    }
    /// <p>The updated status of the automation rule. Can be Active or Inactive.</p>
    pub fn set_status(mut self, input: ::std::option::Option<crate::types::RuleStatus>) -> Self {
        self.inner = self.inner.set_status(input);
        self
    }
    /// <p>The updated status of the automation rule. Can be Active or Inactive.</p>
    pub fn get_status(&self) -> &::std::option::Option<crate::types::RuleStatus> {
        self.inner.get_status()
    }
    /// <p>A unique, case-sensitive identifier that you provide to ensure the idempotency of the request. Must be 1-64 characters long and contain only alphanumeric characters, underscores, and hyphens.</p>
    pub fn client_token(mut self, input: impl ::std::convert::Into<::std::string::String>) -> Self {
        self.inner = self.inner.client_token(input.into());
        self
    }
    /// <p>A unique, case-sensitive identifier that you provide to ensure the idempotency of the request. Must be 1-64 characters long and contain only alphanumeric characters, underscores, and hyphens.</p>
    pub fn set_client_token(mut self, input: ::std::option::Option<::std::string::String>) -> Self {
        self.inner = self.inner.set_client_token(input);
        self
    }
    /// <p>A unique, case-sensitive identifier that you provide to ensure the idempotency of the request. Must be 1-64 characters long and contain only alphanumeric characters, underscores, and hyphens.</p>
    pub fn get_client_token(&self) -> &::std::option::Option<::std::string::String> {
        self.inner.get_client_token()
    }
}