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// Code generated by software.amazon.smithy.rust.codegen.smithy-rs. DO NOT EDIT.
/// Orchestration and serialization glue logic for `Invoke`.
#[derive(::std::clone::Clone, ::std::default::Default, ::std::fmt::Debug)]
#[non_exhaustive]
pub struct Invoke;
impl Invoke {
    /// Creates a new `Invoke`
    pub fn new() -> Self {
        Self
    }
    pub(crate) async fn orchestrate(
        runtime_plugins: &::aws_smithy_runtime_api::client::runtime_plugin::RuntimePlugins,
        input: crate::operation::invoke::InvokeInput,
    ) -> ::std::result::Result<
        crate::operation::invoke::InvokeOutput,
        ::aws_smithy_runtime_api::client::result::SdkError<
            crate::operation::invoke::InvokeError,
            ::aws_smithy_runtime_api::client::orchestrator::HttpResponse,
        >,
    > {
        let map_err =
            |err: ::aws_smithy_runtime_api::client::result::SdkError<
                ::aws_smithy_runtime_api::client::interceptors::context::Error,
                ::aws_smithy_runtime_api::client::orchestrator::HttpResponse,
            >| { err.map_service_error(|err| err.downcast::<crate::operation::invoke::InvokeError>().expect("correct error type")) };
        let context = Self::orchestrate_with_stop_point(runtime_plugins, input, ::aws_smithy_runtime::client::orchestrator::StopPoint::None)
            .await
            .map_err(map_err)?;
        let output = context.finalize().map_err(map_err)?;
        ::std::result::Result::Ok(output.downcast::<crate::operation::invoke::InvokeOutput>().expect("correct output type"))
    }

    pub(crate) async fn orchestrate_with_stop_point(
        runtime_plugins: &::aws_smithy_runtime_api::client::runtime_plugin::RuntimePlugins,
        input: crate::operation::invoke::InvokeInput,
        stop_point: ::aws_smithy_runtime::client::orchestrator::StopPoint,
    ) -> ::std::result::Result<
        ::aws_smithy_runtime_api::client::interceptors::context::InterceptorContext,
        ::aws_smithy_runtime_api::client::result::SdkError<
            ::aws_smithy_runtime_api::client::interceptors::context::Error,
            ::aws_smithy_runtime_api::client::orchestrator::HttpResponse,
        >,
    > {
        let input = ::aws_smithy_runtime_api::client::interceptors::context::Input::erase(input);
        ::aws_smithy_runtime::client::orchestrator::invoke_with_stop_point("lambda", "Invoke", input, runtime_plugins, stop_point).await
    }

    pub(crate) fn operation_runtime_plugins(
        client_runtime_plugins: ::aws_smithy_runtime_api::client::runtime_plugin::RuntimePlugins,
        client_config: &crate::config::Config,
        config_override: ::std::option::Option<crate::config::Builder>,
    ) -> ::aws_smithy_runtime_api::client::runtime_plugin::RuntimePlugins {
        let mut runtime_plugins = client_runtime_plugins.with_operation_plugin(Self::new());
        runtime_plugins = runtime_plugins.with_client_plugin(crate::auth_plugin::DefaultAuthOptionsPlugin::new(vec![
            ::aws_runtime::auth::sigv4::SCHEME_ID,
        ]));
        if let ::std::option::Option::Some(config_override) = config_override {
            for plugin in config_override.runtime_plugins.iter().cloned() {
                runtime_plugins = runtime_plugins.with_operation_plugin(plugin);
            }
            runtime_plugins = runtime_plugins.with_operation_plugin(crate::config::ConfigOverrideRuntimePlugin::new(
                config_override,
                client_config.config.clone(),
                &client_config.runtime_components,
            ));
        }
        runtime_plugins
    }
}
impl ::aws_smithy_runtime_api::client::runtime_plugin::RuntimePlugin for Invoke {
    fn config(&self) -> ::std::option::Option<::aws_smithy_types::config_bag::FrozenLayer> {
        let mut cfg = ::aws_smithy_types::config_bag::Layer::new("Invoke");

        cfg.store_put(::aws_smithy_runtime_api::client::ser_de::SharedRequestSerializer::new(
            InvokeRequestSerializer,
        ));
        cfg.store_put(::aws_smithy_runtime_api::client::ser_de::SharedResponseDeserializer::new(
            InvokeResponseDeserializer,
        ));

        cfg.store_put(::aws_smithy_runtime_api::client::auth::AuthSchemeOptionResolverParams::new(
            ::aws_smithy_runtime_api::client::auth::static_resolver::StaticAuthSchemeOptionResolverParams::new(),
        ));

        cfg.store_put(::aws_smithy_runtime_api::client::orchestrator::SensitiveOutput);
        cfg.store_put(::aws_smithy_runtime_api::client::orchestrator::Metadata::new("Invoke", "lambda"));
        let mut signing_options = ::aws_runtime::auth::SigningOptions::default();
        signing_options.double_uri_encode = true;
        signing_options.content_sha256_header = false;
        signing_options.normalize_uri_path = true;
        signing_options.payload_override = None;

        cfg.store_put(::aws_runtime::auth::SigV4OperationSigningConfig {
            signing_options,
            ..::std::default::Default::default()
        });

        ::std::option::Option::Some(cfg.freeze())
    }

    fn runtime_components(
        &self,
        _: &::aws_smithy_runtime_api::client::runtime_components::RuntimeComponentsBuilder,
    ) -> ::std::borrow::Cow<'_, ::aws_smithy_runtime_api::client::runtime_components::RuntimeComponentsBuilder> {
        #[allow(unused_mut)]
        let mut rcb = ::aws_smithy_runtime_api::client::runtime_components::RuntimeComponentsBuilder::new("Invoke")
            .with_interceptor(
                ::aws_smithy_runtime::client::stalled_stream_protection::StalledStreamProtectionInterceptor::new(
                    ::aws_smithy_runtime::client::stalled_stream_protection::StalledStreamProtectionInterceptorKind::ResponseBody,
                ),
            )
            .with_interceptor(InvokeEndpointParamsInterceptor)
            .with_retry_classifier(::aws_smithy_runtime::client::retries::classifiers::TransientErrorClassifier::<
                crate::operation::invoke::InvokeError,
            >::new())
            .with_retry_classifier(::aws_smithy_runtime::client::retries::classifiers::ModeledAsRetryableClassifier::<
                crate::operation::invoke::InvokeError,
            >::new())
            .with_retry_classifier(::aws_runtime::retries::classifiers::AwsErrorCodeClassifier::<
                crate::operation::invoke::InvokeError,
            >::new());

        ::std::borrow::Cow::Owned(rcb)
    }
}

#[derive(Debug)]
struct InvokeResponseDeserializer;
impl ::aws_smithy_runtime_api::client::ser_de::DeserializeResponse for InvokeResponseDeserializer {
    fn deserialize_nonstreaming(
        &self,
        response: &::aws_smithy_runtime_api::client::orchestrator::HttpResponse,
    ) -> ::aws_smithy_runtime_api::client::interceptors::context::OutputOrError {
        let (success, status) = (response.status().is_success(), response.status().as_u16());
        let headers = response.headers();
        let body = response.body().bytes().expect("body loaded");
        #[allow(unused_mut)]
        let mut force_error = false;
        ::tracing::debug!(request_id = ?::aws_types::request_id::RequestId::request_id(response));
        let parse_result = if !success && status != 200 || force_error {
            crate::protocol_serde::shape_invoke::de_invoke_http_error(status, headers, body)
        } else {
            crate::protocol_serde::shape_invoke::de_invoke_http_response(status, headers, body)
        };
        crate::protocol_serde::type_erase_result(parse_result)
    }
}
#[derive(Debug)]
struct InvokeRequestSerializer;
impl ::aws_smithy_runtime_api::client::ser_de::SerializeRequest for InvokeRequestSerializer {
    #[allow(unused_mut, clippy::let_and_return, clippy::needless_borrow, clippy::useless_conversion)]
    fn serialize_input(
        &self,
        input: ::aws_smithy_runtime_api::client::interceptors::context::Input,
        _cfg: &mut ::aws_smithy_types::config_bag::ConfigBag,
    ) -> ::std::result::Result<::aws_smithy_runtime_api::client::orchestrator::HttpRequest, ::aws_smithy_runtime_api::box_error::BoxError> {
        let input = input.downcast::<crate::operation::invoke::InvokeInput>().expect("correct type");
        let _header_serialization_settings = _cfg
            .load::<crate::serialization_settings::HeaderSerializationSettings>()
            .cloned()
            .unwrap_or_default();
        let mut request_builder = {
            fn uri_base(
                _input: &crate::operation::invoke::InvokeInput,
                output: &mut ::std::string::String,
            ) -> ::std::result::Result<(), ::aws_smithy_types::error::operation::BuildError> {
                use ::std::fmt::Write as _;
                let input_1 = &_input.function_name;
                let input_1 = input_1
                    .as_ref()
                    .ok_or_else(|| ::aws_smithy_types::error::operation::BuildError::missing_field("function_name", "cannot be empty or unset"))?;
                let function_name = ::aws_smithy_http::label::fmt_string(input_1, ::aws_smithy_http::label::EncodingStrategy::Default);
                if function_name.is_empty() {
                    return ::std::result::Result::Err(::aws_smithy_types::error::operation::BuildError::missing_field(
                        "function_name",
                        "cannot be empty or unset",
                    ));
                }
                ::std::write!(output, "/2015-03-31/functions/{FunctionName}/invocations", FunctionName = function_name)
                    .expect("formatting should succeed");
                ::std::result::Result::Ok(())
            }
            fn uri_query(
                _input: &crate::operation::invoke::InvokeInput,
                mut output: &mut ::std::string::String,
            ) -> ::std::result::Result<(), ::aws_smithy_types::error::operation::BuildError> {
                let mut query = ::aws_smithy_http::query::Writer::new(output);
                if let ::std::option::Option::Some(inner_2) = &_input.qualifier {
                    {
                        query.push_kv("Qualifier", &::aws_smithy_http::query::fmt_string(inner_2));
                    }
                }
                ::std::result::Result::Ok(())
            }
            #[allow(clippy::unnecessary_wraps)]
            fn update_http_builder(
                input: &crate::operation::invoke::InvokeInput,
                builder: ::http::request::Builder,
            ) -> ::std::result::Result<::http::request::Builder, ::aws_smithy_types::error::operation::BuildError> {
                let mut uri = ::std::string::String::new();
                uri_base(input, &mut uri)?;
                uri_query(input, &mut uri)?;
                let builder = crate::protocol_serde::shape_invoke::ser_invoke_headers(input, builder)?;
                ::std::result::Result::Ok(builder.method("POST").uri(uri))
            }
            let mut builder = update_http_builder(&input, ::http::request::Builder::new())?;
            builder = _header_serialization_settings.set_default_header(builder, ::http::header::CONTENT_TYPE, "application/octet-stream");
            builder
        };
        let body = ::aws_smithy_types::body::SdkBody::from(crate::protocol_serde::shape_invoke_input::ser_payload_http_payload(input.payload)?);
        if let Some(content_length) = body.content_length() {
            let content_length = content_length.to_string();
            request_builder = _header_serialization_settings.set_default_header(request_builder, ::http::header::CONTENT_LENGTH, &content_length);
        }
        ::std::result::Result::Ok(request_builder.body(body).expect("valid request").try_into().unwrap())
    }
}
#[derive(Debug)]
struct InvokeEndpointParamsInterceptor;

impl ::aws_smithy_runtime_api::client::interceptors::Intercept for InvokeEndpointParamsInterceptor {
    fn name(&self) -> &'static str {
        "InvokeEndpointParamsInterceptor"
    }

    fn read_before_execution(
        &self,
        context: &::aws_smithy_runtime_api::client::interceptors::context::BeforeSerializationInterceptorContextRef<
            '_,
            ::aws_smithy_runtime_api::client::interceptors::context::Input,
            ::aws_smithy_runtime_api::client::interceptors::context::Output,
            ::aws_smithy_runtime_api::client::interceptors::context::Error,
        >,
        cfg: &mut ::aws_smithy_types::config_bag::ConfigBag,
    ) -> ::std::result::Result<(), ::aws_smithy_runtime_api::box_error::BoxError> {
        let _input = context.input().downcast_ref::<InvokeInput>().ok_or("failed to downcast to InvokeInput")?;

        let params = crate::config::endpoint::Params::builder()
            .set_region(cfg.load::<::aws_types::region::Region>().map(|r| r.as_ref().to_owned()))
            .set_use_dual_stack(cfg.load::<::aws_types::endpoint_config::UseDualStack>().map(|ty| ty.0))
            .set_use_fips(cfg.load::<::aws_types::endpoint_config::UseFips>().map(|ty| ty.0))
            .set_endpoint(cfg.load::<::aws_types::endpoint_config::EndpointUrl>().map(|ty| ty.0.clone()))
            .build()
            .map_err(|err| {
                ::aws_smithy_runtime_api::client::interceptors::error::ContextAttachedError::new("endpoint params could not be built", err)
            })?;
        cfg.interceptor_state()
            .store_put(::aws_smithy_runtime_api::client::endpoint::EndpointResolverParams::new(params));
        ::std::result::Result::Ok(())
    }
}

/// Error type for the `InvokeError` operation.
#[non_exhaustive]
#[derive(::std::fmt::Debug)]
pub enum InvokeError {
    /// <p>Need additional permissions to configure VPC settings.</p>
    Ec2AccessDeniedException(crate::types::error::Ec2AccessDeniedException),
    /// <p>Amazon EC2 throttled Lambda during Lambda function initialization using the execution role provided for the function.</p>
    Ec2ThrottledException(crate::types::error::Ec2ThrottledException),
    /// <p>Lambda received an unexpected Amazon EC2 client exception while setting up for the Lambda function.</p>
    Ec2UnexpectedException(crate::types::error::Ec2UnexpectedException),
    /// <p>An error occurred when reading from or writing to a connected file system.</p>
    EfsioException(crate::types::error::EfsioException),
    /// <p>The Lambda function couldn't make a network connection to the configured file system.</p>
    EfsMountConnectivityException(crate::types::error::EfsMountConnectivityException),
    /// <p>The Lambda function couldn't mount the configured file system due to a permission or configuration issue.</p>
    EfsMountFailureException(crate::types::error::EfsMountFailureException),
    /// <p>The Lambda function made a network connection to the configured file system, but the mount operation timed out.</p>
    EfsMountTimeoutException(crate::types::error::EfsMountTimeoutException),
    /// <p>Lambda couldn't create an elastic network interface in the VPC, specified as part of Lambda function configuration, because the limit for network interfaces has been reached. For more information, see <a href="https://docs.aws.amazon.com/lambda/latest/dg/gettingstarted-limits.html">Lambda quotas</a>.</p>
    EniLimitReachedException(crate::types::error::EniLimitReachedException),
    /// <p>One of the parameters in the request is not valid.</p>
    InvalidParameterValueException(crate::types::error::InvalidParameterValueException),
    /// <p>The request body could not be parsed as JSON.</p>
    InvalidRequestContentException(crate::types::error::InvalidRequestContentException),
    /// <p>The runtime or runtime version specified is not supported.</p>
    InvalidRuntimeException(crate::types::error::InvalidRuntimeException),
    /// <p>The security group ID provided in the Lambda function VPC configuration is not valid.</p>
    InvalidSecurityGroupIdException(crate::types::error::InvalidSecurityGroupIdException),
    /// <p>The subnet ID provided in the Lambda function VPC configuration is not valid.</p>
    InvalidSubnetIdException(crate::types::error::InvalidSubnetIdException),
    /// <p>Lambda could not unzip the deployment package.</p>
    InvalidZipFileException(crate::types::error::InvalidZipFileException),
    /// <p>Lambda couldn't decrypt the environment variables because KMS access was denied. Check the Lambda function's KMS permissions.</p>
    KmsAccessDeniedException(crate::types::error::KmsAccessDeniedException),
    /// <p>Lambda couldn't decrypt the environment variables because the KMS key used is disabled. Check the Lambda function's KMS key settings.</p>
    KmsDisabledException(crate::types::error::KmsDisabledException),
    /// <p>Lambda couldn't decrypt the environment variables because the state of the KMS key used is not valid for Decrypt. Check the function's KMS key settings.</p>
    KmsInvalidStateException(crate::types::error::KmsInvalidStateException),
    /// <p>Lambda couldn't decrypt the environment variables because the KMS key was not found. Check the function's KMS key settings.</p>
    KmsNotFoundException(crate::types::error::KmsNotFoundException),
    /// <p>Lambda has detected your function being invoked in a recursive loop with other Amazon Web Services resources and stopped your function's invocation.</p>
    RecursiveInvocationException(crate::types::error::RecursiveInvocationException),
    /// <p>The request payload exceeded the <code>Invoke</code> request body JSON input quota. For more information, see <a href="https://docs.aws.amazon.com/lambda/latest/dg/gettingstarted-limits.html">Lambda quotas</a>.</p>
    RequestTooLargeException(crate::types::error::RequestTooLargeException),
    /// <p>The resource already exists, or another operation is in progress.</p>
    ResourceConflictException(crate::types::error::ResourceConflictException),
    /// <p>The resource specified in the request does not exist.</p>
    ResourceNotFoundException(crate::types::error::ResourceNotFoundException),
    /// <p>The function is inactive and its VPC connection is no longer available. Wait for the VPC connection to reestablish and try again.</p>
    ResourceNotReadyException(crate::types::error::ResourceNotReadyException),
    /// <p>The Lambda service encountered an internal error.</p>
    ServiceException(crate::types::error::ServiceException),
    /// <p>The <code>afterRestore()</code> <a href="https://docs.aws.amazon.com/lambda/latest/dg/snapstart-runtime-hooks.html">runtime hook</a> encountered an error. For more information, check the Amazon CloudWatch logs.</p>
    SnapStartException(crate::types::error::SnapStartException),
    /// <p>Lambda is initializing your function. You can invoke the function when the <a href="https://docs.aws.amazon.com/lambda/latest/dg/functions-states.html">function state</a> becomes <code>Active</code>.</p>
    SnapStartNotReadyException(crate::types::error::SnapStartNotReadyException),
    /// <p>Lambda couldn't restore the snapshot within the timeout limit.</p>
    SnapStartTimeoutException(crate::types::error::SnapStartTimeoutException),
    /// <p>Lambda couldn't set up VPC access for the Lambda function because one or more configured subnets has no available IP addresses.</p>
    SubnetIpAddressLimitReachedException(crate::types::error::SubnetIpAddressLimitReachedException),
    /// <p>The request throughput limit was exceeded. For more information, see <a href="https://docs.aws.amazon.com/lambda/latest/dg/gettingstarted-limits.html#api-requests">Lambda quotas</a>.</p>
    TooManyRequestsException(crate::types::error::TooManyRequestsException),
    /// <p>The content type of the <code>Invoke</code> request body is not JSON.</p>
    UnsupportedMediaTypeException(crate::types::error::UnsupportedMediaTypeException),
    /// An unexpected error occurred (e.g., invalid JSON returned by the service or an unknown error code).
    #[deprecated(note = "Matching `Unhandled` directly is not forwards compatible. Instead, match using a \
    variable wildcard pattern and check `.code()`:
     \
    &nbsp;&nbsp;&nbsp;`err if err.code() == Some(\"SpecificExceptionCode\") => { /* handle the error */ }`
     \
    See [`ProvideErrorMetadata`](#impl-ProvideErrorMetadata-for-InvokeError) for what information is available for the error.")]
    Unhandled(crate::error::sealed_unhandled::Unhandled),
}
impl InvokeError {
    /// Creates the `InvokeError::Unhandled` variant from any error type.
    pub fn unhandled(
        err: impl ::std::convert::Into<::std::boxed::Box<dyn ::std::error::Error + ::std::marker::Send + ::std::marker::Sync + 'static>>,
    ) -> Self {
        Self::Unhandled(crate::error::sealed_unhandled::Unhandled {
            source: err.into(),
            meta: ::std::default::Default::default(),
        })
    }

    /// Creates the `InvokeError::Unhandled` variant from an [`ErrorMetadata`](::aws_smithy_types::error::ErrorMetadata).
    pub fn generic(err: ::aws_smithy_types::error::ErrorMetadata) -> Self {
        Self::Unhandled(crate::error::sealed_unhandled::Unhandled {
            source: err.clone().into(),
            meta: err,
        })
    }
    ///
    /// Returns error metadata, which includes the error code, message,
    /// request ID, and potentially additional information.
    ///
    pub fn meta(&self) -> &::aws_smithy_types::error::ErrorMetadata {
        match self {
            Self::Ec2AccessDeniedException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::Ec2ThrottledException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::Ec2UnexpectedException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::EfsioException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::EfsMountConnectivityException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::EfsMountFailureException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::EfsMountTimeoutException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::EniLimitReachedException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::InvalidParameterValueException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::InvalidRequestContentException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::InvalidRuntimeException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::InvalidSecurityGroupIdException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::InvalidSubnetIdException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::InvalidZipFileException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::KmsAccessDeniedException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::KmsDisabledException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::KmsInvalidStateException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::KmsNotFoundException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::RecursiveInvocationException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::RequestTooLargeException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::ResourceConflictException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::ResourceNotFoundException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::ResourceNotReadyException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::ServiceException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::SnapStartException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::SnapStartNotReadyException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::SnapStartTimeoutException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::SubnetIpAddressLimitReachedException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::TooManyRequestsException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::UnsupportedMediaTypeException(e) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(e),
            Self::Unhandled(e) => &e.meta,
        }
    }
    /// Returns `true` if the error kind is `InvokeError::Ec2AccessDeniedException`.
    pub fn is_ec2_access_denied_exception(&self) -> bool {
        matches!(self, Self::Ec2AccessDeniedException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::Ec2ThrottledException`.
    pub fn is_ec2_throttled_exception(&self) -> bool {
        matches!(self, Self::Ec2ThrottledException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::Ec2UnexpectedException`.
    pub fn is_ec2_unexpected_exception(&self) -> bool {
        matches!(self, Self::Ec2UnexpectedException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::EfsioException`.
    pub fn is_efsio_exception(&self) -> bool {
        matches!(self, Self::EfsioException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::EfsMountConnectivityException`.
    pub fn is_efs_mount_connectivity_exception(&self) -> bool {
        matches!(self, Self::EfsMountConnectivityException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::EfsMountFailureException`.
    pub fn is_efs_mount_failure_exception(&self) -> bool {
        matches!(self, Self::EfsMountFailureException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::EfsMountTimeoutException`.
    pub fn is_efs_mount_timeout_exception(&self) -> bool {
        matches!(self, Self::EfsMountTimeoutException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::EniLimitReachedException`.
    pub fn is_eni_limit_reached_exception(&self) -> bool {
        matches!(self, Self::EniLimitReachedException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::InvalidParameterValueException`.
    pub fn is_invalid_parameter_value_exception(&self) -> bool {
        matches!(self, Self::InvalidParameterValueException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::InvalidRequestContentException`.
    pub fn is_invalid_request_content_exception(&self) -> bool {
        matches!(self, Self::InvalidRequestContentException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::InvalidRuntimeException`.
    pub fn is_invalid_runtime_exception(&self) -> bool {
        matches!(self, Self::InvalidRuntimeException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::InvalidSecurityGroupIdException`.
    pub fn is_invalid_security_group_id_exception(&self) -> bool {
        matches!(self, Self::InvalidSecurityGroupIdException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::InvalidSubnetIdException`.
    pub fn is_invalid_subnet_id_exception(&self) -> bool {
        matches!(self, Self::InvalidSubnetIdException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::InvalidZipFileException`.
    pub fn is_invalid_zip_file_exception(&self) -> bool {
        matches!(self, Self::InvalidZipFileException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::KmsAccessDeniedException`.
    pub fn is_kms_access_denied_exception(&self) -> bool {
        matches!(self, Self::KmsAccessDeniedException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::KmsDisabledException`.
    pub fn is_kms_disabled_exception(&self) -> bool {
        matches!(self, Self::KmsDisabledException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::KmsInvalidStateException`.
    pub fn is_kms_invalid_state_exception(&self) -> bool {
        matches!(self, Self::KmsInvalidStateException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::KmsNotFoundException`.
    pub fn is_kms_not_found_exception(&self) -> bool {
        matches!(self, Self::KmsNotFoundException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::RecursiveInvocationException`.
    pub fn is_recursive_invocation_exception(&self) -> bool {
        matches!(self, Self::RecursiveInvocationException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::RequestTooLargeException`.
    pub fn is_request_too_large_exception(&self) -> bool {
        matches!(self, Self::RequestTooLargeException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::ResourceConflictException`.
    pub fn is_resource_conflict_exception(&self) -> bool {
        matches!(self, Self::ResourceConflictException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::ResourceNotFoundException`.
    pub fn is_resource_not_found_exception(&self) -> bool {
        matches!(self, Self::ResourceNotFoundException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::ResourceNotReadyException`.
    pub fn is_resource_not_ready_exception(&self) -> bool {
        matches!(self, Self::ResourceNotReadyException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::ServiceException`.
    pub fn is_service_exception(&self) -> bool {
        matches!(self, Self::ServiceException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::SnapStartException`.
    pub fn is_snap_start_exception(&self) -> bool {
        matches!(self, Self::SnapStartException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::SnapStartNotReadyException`.
    pub fn is_snap_start_not_ready_exception(&self) -> bool {
        matches!(self, Self::SnapStartNotReadyException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::SnapStartTimeoutException`.
    pub fn is_snap_start_timeout_exception(&self) -> bool {
        matches!(self, Self::SnapStartTimeoutException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::SubnetIpAddressLimitReachedException`.
    pub fn is_subnet_ip_address_limit_reached_exception(&self) -> bool {
        matches!(self, Self::SubnetIpAddressLimitReachedException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::TooManyRequestsException`.
    pub fn is_too_many_requests_exception(&self) -> bool {
        matches!(self, Self::TooManyRequestsException(_))
    }
    /// Returns `true` if the error kind is `InvokeError::UnsupportedMediaTypeException`.
    pub fn is_unsupported_media_type_exception(&self) -> bool {
        matches!(self, Self::UnsupportedMediaTypeException(_))
    }
}
impl ::std::error::Error for InvokeError {
    fn source(&self) -> ::std::option::Option<&(dyn ::std::error::Error + 'static)> {
        match self {
            Self::Ec2AccessDeniedException(_inner) => ::std::option::Option::Some(_inner),
            Self::Ec2ThrottledException(_inner) => ::std::option::Option::Some(_inner),
            Self::Ec2UnexpectedException(_inner) => ::std::option::Option::Some(_inner),
            Self::EfsioException(_inner) => ::std::option::Option::Some(_inner),
            Self::EfsMountConnectivityException(_inner) => ::std::option::Option::Some(_inner),
            Self::EfsMountFailureException(_inner) => ::std::option::Option::Some(_inner),
            Self::EfsMountTimeoutException(_inner) => ::std::option::Option::Some(_inner),
            Self::EniLimitReachedException(_inner) => ::std::option::Option::Some(_inner),
            Self::InvalidParameterValueException(_inner) => ::std::option::Option::Some(_inner),
            Self::InvalidRequestContentException(_inner) => ::std::option::Option::Some(_inner),
            Self::InvalidRuntimeException(_inner) => ::std::option::Option::Some(_inner),
            Self::InvalidSecurityGroupIdException(_inner) => ::std::option::Option::Some(_inner),
            Self::InvalidSubnetIdException(_inner) => ::std::option::Option::Some(_inner),
            Self::InvalidZipFileException(_inner) => ::std::option::Option::Some(_inner),
            Self::KmsAccessDeniedException(_inner) => ::std::option::Option::Some(_inner),
            Self::KmsDisabledException(_inner) => ::std::option::Option::Some(_inner),
            Self::KmsInvalidStateException(_inner) => ::std::option::Option::Some(_inner),
            Self::KmsNotFoundException(_inner) => ::std::option::Option::Some(_inner),
            Self::RecursiveInvocationException(_inner) => ::std::option::Option::Some(_inner),
            Self::RequestTooLargeException(_inner) => ::std::option::Option::Some(_inner),
            Self::ResourceConflictException(_inner) => ::std::option::Option::Some(_inner),
            Self::ResourceNotFoundException(_inner) => ::std::option::Option::Some(_inner),
            Self::ResourceNotReadyException(_inner) => ::std::option::Option::Some(_inner),
            Self::ServiceException(_inner) => ::std::option::Option::Some(_inner),
            Self::SnapStartException(_inner) => ::std::option::Option::Some(_inner),
            Self::SnapStartNotReadyException(_inner) => ::std::option::Option::Some(_inner),
            Self::SnapStartTimeoutException(_inner) => ::std::option::Option::Some(_inner),
            Self::SubnetIpAddressLimitReachedException(_inner) => ::std::option::Option::Some(_inner),
            Self::TooManyRequestsException(_inner) => ::std::option::Option::Some(_inner),
            Self::UnsupportedMediaTypeException(_inner) => ::std::option::Option::Some(_inner),
            Self::Unhandled(_inner) => ::std::option::Option::Some(&*_inner.source),
        }
    }
}
impl ::std::fmt::Display for InvokeError {
    fn fmt(&self, f: &mut ::std::fmt::Formatter<'_>) -> ::std::fmt::Result {
        match self {
            Self::Ec2AccessDeniedException(_inner) => _inner.fmt(f),
            Self::Ec2ThrottledException(_inner) => _inner.fmt(f),
            Self::Ec2UnexpectedException(_inner) => _inner.fmt(f),
            Self::EfsioException(_inner) => _inner.fmt(f),
            Self::EfsMountConnectivityException(_inner) => _inner.fmt(f),
            Self::EfsMountFailureException(_inner) => _inner.fmt(f),
            Self::EfsMountTimeoutException(_inner) => _inner.fmt(f),
            Self::EniLimitReachedException(_inner) => _inner.fmt(f),
            Self::InvalidParameterValueException(_inner) => _inner.fmt(f),
            Self::InvalidRequestContentException(_inner) => _inner.fmt(f),
            Self::InvalidRuntimeException(_inner) => _inner.fmt(f),
            Self::InvalidSecurityGroupIdException(_inner) => _inner.fmt(f),
            Self::InvalidSubnetIdException(_inner) => _inner.fmt(f),
            Self::InvalidZipFileException(_inner) => _inner.fmt(f),
            Self::KmsAccessDeniedException(_inner) => _inner.fmt(f),
            Self::KmsDisabledException(_inner) => _inner.fmt(f),
            Self::KmsInvalidStateException(_inner) => _inner.fmt(f),
            Self::KmsNotFoundException(_inner) => _inner.fmt(f),
            Self::RecursiveInvocationException(_inner) => _inner.fmt(f),
            Self::RequestTooLargeException(_inner) => _inner.fmt(f),
            Self::ResourceConflictException(_inner) => _inner.fmt(f),
            Self::ResourceNotFoundException(_inner) => _inner.fmt(f),
            Self::ResourceNotReadyException(_inner) => _inner.fmt(f),
            Self::ServiceException(_inner) => _inner.fmt(f),
            Self::SnapStartException(_inner) => _inner.fmt(f),
            Self::SnapStartNotReadyException(_inner) => _inner.fmt(f),
            Self::SnapStartTimeoutException(_inner) => _inner.fmt(f),
            Self::SubnetIpAddressLimitReachedException(_inner) => _inner.fmt(f),
            Self::TooManyRequestsException(_inner) => _inner.fmt(f),
            Self::UnsupportedMediaTypeException(_inner) => _inner.fmt(f),
            Self::Unhandled(_inner) => {
                if let ::std::option::Option::Some(code) = ::aws_smithy_types::error::metadata::ProvideErrorMetadata::code(self) {
                    write!(f, "unhandled error ({code})")
                } else {
                    f.write_str("unhandled error")
                }
            }
        }
    }
}
impl ::aws_smithy_types::retry::ProvideErrorKind for InvokeError {
    fn code(&self) -> ::std::option::Option<&str> {
        ::aws_smithy_types::error::metadata::ProvideErrorMetadata::code(self)
    }
    fn retryable_error_kind(&self) -> ::std::option::Option<::aws_smithy_types::retry::ErrorKind> {
        ::std::option::Option::None
    }
}
impl ::aws_smithy_types::error::metadata::ProvideErrorMetadata for InvokeError {
    fn meta(&self) -> &::aws_smithy_types::error::ErrorMetadata {
        match self {
            Self::Ec2AccessDeniedException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::Ec2ThrottledException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::Ec2UnexpectedException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::EfsioException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::EfsMountConnectivityException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::EfsMountFailureException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::EfsMountTimeoutException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::EniLimitReachedException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::InvalidParameterValueException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::InvalidRequestContentException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::InvalidRuntimeException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::InvalidSecurityGroupIdException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::InvalidSubnetIdException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::InvalidZipFileException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::KmsAccessDeniedException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::KmsDisabledException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::KmsInvalidStateException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::KmsNotFoundException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::RecursiveInvocationException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::RequestTooLargeException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::ResourceConflictException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::ResourceNotFoundException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::ResourceNotReadyException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::ServiceException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::SnapStartException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::SnapStartNotReadyException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::SnapStartTimeoutException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::SubnetIpAddressLimitReachedException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::TooManyRequestsException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::UnsupportedMediaTypeException(_inner) => ::aws_smithy_types::error::metadata::ProvideErrorMetadata::meta(_inner),
            Self::Unhandled(_inner) => &_inner.meta,
        }
    }
}
impl ::aws_smithy_runtime_api::client::result::CreateUnhandledError for InvokeError {
    fn create_unhandled_error(
        source: ::std::boxed::Box<dyn ::std::error::Error + ::std::marker::Send + ::std::marker::Sync + 'static>,
        meta: ::std::option::Option<::aws_smithy_types::error::ErrorMetadata>,
    ) -> Self {
        Self::Unhandled(crate::error::sealed_unhandled::Unhandled {
            source,
            meta: meta.unwrap_or_default(),
        })
    }
}
impl ::aws_types::request_id::RequestId for crate::operation::invoke::InvokeError {
    fn request_id(&self) -> Option<&str> {
        self.meta().request_id()
    }
}

pub use crate::operation::invoke::_invoke_output::InvokeOutput;

pub use crate::operation::invoke::_invoke_input::InvokeInput;

mod _invoke_input;

mod _invoke_output;

/// Builders
pub mod builders;