1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152
// Code generated by software.amazon.smithy.rust.codegen.smithy-rs. DO NOT EDIT.
pub use crate::operation::create_global_cluster::_create_global_cluster_output::CreateGlobalClusterOutputBuilder;
pub use crate::operation::create_global_cluster::_create_global_cluster_input::CreateGlobalClusterInputBuilder;
/// Fluent builder constructing a request to `CreateGlobalCluster`.
///
/// <p>Creates an Amazon DocumentDB global cluster that can span multiple multiple Amazon Web Services Regions. The global cluster contains one primary cluster with read-write capability, and up-to give read-only secondary clusters. Global clusters uses storage-based fast replication across regions with latencies less than one second, using dedicated infrastructure with no impact to your workload’s performance.</p>
/// <p></p>
/// <p>You can create a global cluster that is initially empty, and then add a primary and a secondary to it. Or you can specify an existing cluster during the create operation, and this cluster becomes the primary of the global cluster. </p> <note>
/// <p>This action only applies to Amazon DocumentDB clusters.</p>
/// </note>
#[derive(std::clone::Clone, std::fmt::Debug)]
pub struct CreateGlobalClusterFluentBuilder {
handle: std::sync::Arc<crate::client::Handle>,
inner: crate::operation::create_global_cluster::builders::CreateGlobalClusterInputBuilder,
}
impl CreateGlobalClusterFluentBuilder {
/// Creates a new `CreateGlobalCluster`.
pub(crate) fn new(handle: std::sync::Arc<crate::client::Handle>) -> Self {
Self {
handle,
inner: Default::default(),
}
}
/// Consume this builder, creating a customizable operation that can be modified before being
/// sent. The operation's inner [http::Request] can be modified as well.
pub async fn customize(
self,
) -> std::result::Result<
crate::client::customize::CustomizableOperation<
crate::operation::create_global_cluster::CreateGlobalCluster,
aws_http::retry::AwsResponseRetryClassifier,
>,
aws_smithy_http::result::SdkError<
crate::operation::create_global_cluster::CreateGlobalClusterError,
>,
> {
let handle = self.handle.clone();
let operation = self
.inner
.build()
.map_err(aws_smithy_http::result::SdkError::construction_failure)?
.make_operation(&handle.conf)
.await
.map_err(aws_smithy_http::result::SdkError::construction_failure)?;
Ok(crate::client::customize::CustomizableOperation { handle, operation })
}
/// 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_global_cluster::CreateGlobalClusterOutput,
aws_smithy_http::result::SdkError<
crate::operation::create_global_cluster::CreateGlobalClusterError,
>,
> {
let op = self
.inner
.build()
.map_err(aws_smithy_http::result::SdkError::construction_failure)?
.make_operation(&self.handle.conf)
.await
.map_err(aws_smithy_http::result::SdkError::construction_failure)?;
self.handle.client.call(op).await
}
/// <p>The cluster identifier of the new global cluster.</p>
pub fn global_cluster_identifier(mut self, input: impl Into<std::string::String>) -> Self {
self.inner = self.inner.global_cluster_identifier(input.into());
self
}
/// <p>The cluster identifier of the new global cluster.</p>
pub fn set_global_cluster_identifier(
mut self,
input: std::option::Option<std::string::String>,
) -> Self {
self.inner = self.inner.set_global_cluster_identifier(input);
self
}
/// <p>The Amazon Resource Name (ARN) to use as the primary cluster of the global cluster. This parameter is optional.</p>
pub fn source_db_cluster_identifier(mut self, input: impl Into<std::string::String>) -> Self {
self.inner = self.inner.source_db_cluster_identifier(input.into());
self
}
/// <p>The Amazon Resource Name (ARN) to use as the primary cluster of the global cluster. This parameter is optional.</p>
pub fn set_source_db_cluster_identifier(
mut self,
input: std::option::Option<std::string::String>,
) -> Self {
self.inner = self.inner.set_source_db_cluster_identifier(input);
self
}
/// <p>The name of the database engine to be used for this cluster.</p>
pub fn engine(mut self, input: impl Into<std::string::String>) -> Self {
self.inner = self.inner.engine(input.into());
self
}
/// <p>The name of the database engine to be used for this cluster.</p>
pub fn set_engine(mut self, input: std::option::Option<std::string::String>) -> Self {
self.inner = self.inner.set_engine(input);
self
}
/// <p>The engine version of the global cluster.</p>
pub fn engine_version(mut self, input: impl Into<std::string::String>) -> Self {
self.inner = self.inner.engine_version(input.into());
self
}
/// <p>The engine version of the global cluster.</p>
pub fn set_engine_version(mut self, input: std::option::Option<std::string::String>) -> Self {
self.inner = self.inner.set_engine_version(input);
self
}
/// <p>The deletion protection setting for the new global cluster. The global cluster can't be deleted when deletion protection is enabled. </p>
pub fn deletion_protection(mut self, input: bool) -> Self {
self.inner = self.inner.deletion_protection(input);
self
}
/// <p>The deletion protection setting for the new global cluster. The global cluster can't be deleted when deletion protection is enabled. </p>
pub fn set_deletion_protection(mut self, input: std::option::Option<bool>) -> Self {
self.inner = self.inner.set_deletion_protection(input);
self
}
/// <p>The name for your database of up to 64 alpha-numeric characters. If you do not provide a name, Amazon DocumentDB will not create a database in the global cluster you are creating.</p>
pub fn database_name(mut self, input: impl Into<std::string::String>) -> Self {
self.inner = self.inner.database_name(input.into());
self
}
/// <p>The name for your database of up to 64 alpha-numeric characters. If you do not provide a name, Amazon DocumentDB will not create a database in the global cluster you are creating.</p>
pub fn set_database_name(mut self, input: std::option::Option<std::string::String>) -> Self {
self.inner = self.inner.set_database_name(input);
self
}
/// <p>The storage encryption setting for the new global cluster. </p>
pub fn storage_encrypted(mut self, input: bool) -> Self {
self.inner = self.inner.storage_encrypted(input);
self
}
/// <p>The storage encryption setting for the new global cluster. </p>
pub fn set_storage_encrypted(mut self, input: std::option::Option<bool>) -> Self {
self.inner = self.inner.set_storage_encrypted(input);
self
}
}