%% WARNING: DO NOT EDIT, AUTO-GENERATED CODE! %% See https://github.com/aws-beam/aws-codegen for more details. %% @doc Amazon EMR on EKS provides a deployment option for Amazon EMR that %% allows %% you to run open-source big data frameworks on Amazon Elastic Kubernetes %% Service (Amazon EKS). %% %% With this deployment option, you can focus on running analytics workloads %% while Amazon EMR on EKS builds, configures, and manages containers for %% open-source applications. %% For more information about Amazon EMR on EKS concepts and tasks, see What %% is %% Amazon EMR on EKS: %% https://docs.aws.amazon.com/emr/latest/EMR-on-EKS-DevelopmentGuide/emr-eks.html. %% %% Amazon EMR containers is the API name for Amazon EMR on EKS. The %% `emr-containers' prefix is used in the following %% scenarios: %% %% It is the prefix in the CLI commands for Amazon EMR on EKS. For example, %% `aws emr-containers start-job-run'. %% %% It is the prefix before IAM policy actions for Amazon EMR on EKS. For %% example, `"Action": [ %% "emr-containers:StartJobRun"]'. For more %% information, see Policy actions for Amazon EMR on EKS: %% https://docs.aws.amazon.com/emr/latest/EMR-on-EKS-DevelopmentGuide/security_iam_service-with-iam.html#security_iam_service-with-iam-id-based-policies-actions. %% %% It is the prefix used in Amazon EMR on EKS service endpoints. For example, %% `emr-containers.us-east-2.amazonaws.com'. For more information, see %% Amazon EMR on EKSService Endpoints: %% https://docs.aws.amazon.com/emr/latest/EMR-on-EKS-DevelopmentGuide/service-quotas.html#service-endpoints. -module(aws_emr_containers). -export([cancel_job_run/4, cancel_job_run/5, create_job_template/2, create_job_template/3, create_managed_endpoint/3, create_managed_endpoint/4, create_security_configuration/2, create_security_configuration/3, create_virtual_cluster/2, create_virtual_cluster/3, delete_job_template/3, delete_job_template/4, delete_managed_endpoint/4, delete_managed_endpoint/5, delete_virtual_cluster/3, delete_virtual_cluster/4, describe_job_run/3, describe_job_run/5, describe_job_run/6, describe_job_template/2, describe_job_template/4, describe_job_template/5, describe_managed_endpoint/3, describe_managed_endpoint/5, describe_managed_endpoint/6, describe_security_configuration/2, describe_security_configuration/4, describe_security_configuration/5, describe_virtual_cluster/2, describe_virtual_cluster/4, describe_virtual_cluster/5, get_managed_endpoint_session_credentials/4, get_managed_endpoint_session_credentials/5, list_job_runs/2, list_job_runs/4, list_job_runs/5, list_job_templates/1, list_job_templates/3, list_job_templates/4, list_managed_endpoints/2, list_managed_endpoints/4, list_managed_endpoints/5, list_security_configurations/1, list_security_configurations/3, list_security_configurations/4, list_tags_for_resource/2, list_tags_for_resource/4, list_tags_for_resource/5, list_virtual_clusters/1, list_virtual_clusters/3, list_virtual_clusters/4, start_job_run/3, start_job_run/4, tag_resource/3, tag_resource/4, untag_resource/3, untag_resource/4]). -include_lib("hackney/include/hackney_lib.hrl"). %% Example: %% encryption_configuration() :: #{ %% <<"inTransitEncryptionConfiguration">> => in_transit_encryption_configuration() %% } -type encryption_configuration() :: #{binary() => any()}. %% Example: %% tag_resource_request() :: #{ %% <<"tags">> := map() %% } -type tag_resource_request() :: #{binary() => any()}. %% Example: %% create_job_template_response() :: #{ %% <<"arn">> => string(), %% <<"createdAt">> => non_neg_integer(), %% <<"id">> => string(), %% <<"name">> => string() %% } -type create_job_template_response() :: #{binary() => any()}. %% Example: %% s3_monitoring_configuration() :: #{ %% <<"logUri">> => string() %% } -type s3_monitoring_configuration() :: #{binary() => any()}. %% Example: %% delete_job_template_response() :: #{ %% <<"id">> => string() %% } -type delete_job_template_response() :: #{binary() => any()}. %% Example: %% list_security_configurations_request() :: #{ %% <<"createdAfter">> => non_neg_integer(), %% <<"createdBefore">> => non_neg_integer(), %% <<"maxResults">> => integer(), %% <<"nextToken">> => string() %% } -type list_security_configurations_request() :: #{binary() => any()}. %% Example: %% job_run() :: #{ %% <<"arn">> => string(), %% <<"clientToken">> => string(), %% <<"configurationOverrides">> => configuration_overrides(), %% <<"createdAt">> => non_neg_integer(), %% <<"createdBy">> => string(), %% <<"executionRoleArn">> => string(), %% <<"failureReason">> => list(any()), %% <<"finishedAt">> => non_neg_integer(), %% <<"id">> => string(), %% <<"jobDriver">> => job_driver(), %% <<"name">> => string(), %% <<"releaseLabel">> => string(), %% <<"retryPolicyConfiguration">> => retry_policy_configuration(), %% <<"retryPolicyExecution">> => retry_policy_execution(), %% <<"state">> => list(any()), %% <<"stateDetails">> => string(), %% <<"tags">> => map(), %% <<"virtualClusterId">> => string() %% } -type job_run() :: #{binary() => any()}. %% Example: %% untag_resource_response() :: #{} -type untag_resource_response() :: #{}. %% Example: %% describe_job_run_response() :: #{ %% <<"jobRun">> => job_run() %% } -type describe_job_run_response() :: #{binary() => any()}. %% Example: %% cloud_watch_monitoring_configuration() :: #{ %% <<"logGroupName">> => string(), %% <<"logStreamNamePrefix">> => string() %% } -type cloud_watch_monitoring_configuration() :: #{binary() => any()}. %% Example: %% list_job_runs_request() :: #{ %% <<"createdAfter">> => non_neg_integer(), %% <<"createdBefore">> => non_neg_integer(), %% <<"maxResults">> => integer(), %% <<"name">> => string(), %% <<"nextToken">> => string(), %% <<"states">> => list(list(any())()) %% } -type list_job_runs_request() :: #{binary() => any()}. %% Example: %% create_security_configuration_request() :: #{ %% <<"clientToken">> := string(), %% <<"name">> := string(), %% <<"securityConfigurationData">> := security_configuration_data(), %% <<"tags">> => map() %% } -type create_security_configuration_request() :: #{binary() => any()}. %% Example: %% job_template() :: #{ %% <<"arn">> => string(), %% <<"createdAt">> => non_neg_integer(), %% <<"createdBy">> => string(), %% <<"decryptionError">> => string(), %% <<"id">> => string(), %% <<"jobTemplateData">> => job_template_data(), %% <<"kmsKeyArn">> => string(), %% <<"name">> => string(), %% <<"tags">> => map() %% } -type job_template() :: #{binary() => any()}. %% Example: %% configuration() :: #{ %% <<"classification">> => string(), %% <<"configurations">> => list(configuration()), %% <<"properties">> => map() %% } -type configuration() :: #{binary() => any()}. %% Example: %% parametric_cloud_watch_monitoring_configuration() :: #{ %% <<"logGroupName">> => string(), %% <<"logStreamNamePrefix">> => string() %% } -type parametric_cloud_watch_monitoring_configuration() :: #{binary() => any()}. %% Example: %% describe_managed_endpoint_response() :: #{ %% <<"endpoint">> => endpoint() %% } -type describe_managed_endpoint_response() :: #{binary() => any()}. %% Example: %% monitoring_configuration() :: #{ %% <<"cloudWatchMonitoringConfiguration">> => cloud_watch_monitoring_configuration(), %% <<"containerLogRotationConfiguration">> => container_log_rotation_configuration(), %% <<"managedLogs">> => managed_logs(), %% <<"persistentAppUI">> => list(any()), %% <<"s3MonitoringConfiguration">> => s3_monitoring_configuration() %% } -type monitoring_configuration() :: #{binary() => any()}. %% Example: %% untag_resource_request() :: #{ %% <<"tagKeys">> := list(string()) %% } -type untag_resource_request() :: #{binary() => any()}. %% Example: %% create_managed_endpoint_response() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"name">> => string(), %% <<"virtualClusterId">> => string() %% } -type create_managed_endpoint_response() :: #{binary() => any()}. %% Example: %% secure_namespace_info() :: #{ %% <<"clusterId">> => string(), %% <<"namespace">> => string() %% } -type secure_namespace_info() :: #{binary() => any()}. %% Example: %% virtual_cluster() :: #{ %% <<"arn">> => string(), %% <<"containerProvider">> => container_provider(), %% <<"createdAt">> => non_neg_integer(), %% <<"id">> => string(), %% <<"name">> => string(), %% <<"securityConfigurationId">> => string(), %% <<"state">> => list(any()), %% <<"tags">> => map() %% } -type virtual_cluster() :: #{binary() => any()}. %% Example: %% delete_job_template_request() :: #{} -type delete_job_template_request() :: #{}. %% Example: %% parametric_s3_monitoring_configuration() :: #{ %% <<"logUri">> => string() %% } -type parametric_s3_monitoring_configuration() :: #{binary() => any()}. %% Example: %% eks_info() :: #{ %% <<"namespace">> => string() %% } -type eks_info() :: #{binary() => any()}. %% Example: %% describe_job_run_request() :: #{} -type describe_job_run_request() :: #{}. %% Example: %% describe_virtual_cluster_request() :: #{} -type describe_virtual_cluster_request() :: #{}. %% Example: %% resource_not_found_exception() :: #{ %% <<"message">> => string() %% } -type resource_not_found_exception() :: #{binary() => any()}. %% Example: %% start_job_run_response() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"name">> => string(), %% <<"virtualClusterId">> => string() %% } -type start_job_run_response() :: #{binary() => any()}. %% Example: %% cancel_job_run_response() :: #{ %% <<"id">> => string(), %% <<"virtualClusterId">> => string() %% } -type cancel_job_run_response() :: #{binary() => any()}. %% Example: %% get_managed_endpoint_session_credentials_response() :: #{ %% <<"credentials">> => list(), %% <<"expiresAt">> => non_neg_integer(), %% <<"id">> => string() %% } -type get_managed_endpoint_session_credentials_response() :: #{binary() => any()}. %% Example: %% template_parameter_configuration() :: #{ %% <<"defaultValue">> => string(), %% <<"type">> => list(any()) %% } -type template_parameter_configuration() :: #{binary() => any()}. %% Example: %% describe_job_template_request() :: #{} -type describe_job_template_request() :: #{}. %% Example: %% managed_logs() :: #{ %% <<"allowAWSToRetainLogs">> => list(any()), %% <<"encryptionKeyArn">> => string() %% } -type managed_logs() :: #{binary() => any()}. %% Example: %% create_managed_endpoint_request() :: #{ %% <<"certificateArn">> => string(), %% <<"clientToken">> := string(), %% <<"configurationOverrides">> => configuration_overrides(), %% <<"executionRoleArn">> := string(), %% <<"name">> := string(), %% <<"releaseLabel">> := string(), %% <<"tags">> => map(), %% <<"type">> := string() %% } -type create_managed_endpoint_request() :: #{binary() => any()}. %% Example: %% list_job_runs_response() :: #{ %% <<"jobRuns">> => list(job_run()), %% <<"nextToken">> => string() %% } -type list_job_runs_response() :: #{binary() => any()}. %% Example: %% delete_managed_endpoint_response() :: #{ %% <<"id">> => string(), %% <<"virtualClusterId">> => string() %% } -type delete_managed_endpoint_response() :: #{binary() => any()}. %% Example: %% list_tags_for_resource_response() :: #{ %% <<"tags">> => map() %% } -type list_tags_for_resource_response() :: #{binary() => any()}. %% Example: %% describe_job_template_response() :: #{ %% <<"jobTemplate">> => job_template() %% } -type describe_job_template_response() :: #{binary() => any()}. %% Example: %% container_log_rotation_configuration() :: #{ %% <<"maxFilesToKeep">> => integer(), %% <<"rotationSize">> => string() %% } -type container_log_rotation_configuration() :: #{binary() => any()}. %% Example: %% create_security_configuration_response() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"name">> => string() %% } -type create_security_configuration_response() :: #{binary() => any()}. %% Example: %% container_provider() :: #{ %% <<"id">> => string(), %% <<"info">> => list(), %% <<"type">> => list(any()) %% } -type container_provider() :: #{binary() => any()}. %% Example: %% e_k_s_request_throttled_exception() :: #{ %% <<"message">> => string() %% } -type e_k_s_request_throttled_exception() :: #{binary() => any()}. %% Example: %% endpoint() :: #{ %% <<"arn">> => string(), %% <<"certificateArn">> => string(), %% <<"certificateAuthority">> => certificate(), %% <<"configurationOverrides">> => configuration_overrides(), %% <<"createdAt">> => non_neg_integer(), %% <<"executionRoleArn">> => string(), %% <<"failureReason">> => list(any()), %% <<"id">> => string(), %% <<"name">> => string(), %% <<"releaseLabel">> => string(), %% <<"securityGroup">> => string(), %% <<"serverUrl">> => string(), %% <<"state">> => list(any()), %% <<"stateDetails">> => string(), %% <<"subnetIds">> => list(string()), %% <<"tags">> => map(), %% <<"type">> => string(), %% <<"virtualClusterId">> => string() %% } -type endpoint() :: #{binary() => any()}. %% Example: %% parametric_configuration_overrides() :: #{ %% <<"applicationConfiguration">> => list(configuration()), %% <<"monitoringConfiguration">> => parametric_monitoring_configuration() %% } -type parametric_configuration_overrides() :: #{binary() => any()}. %% Example: %% create_virtual_cluster_response() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"name">> => string() %% } -type create_virtual_cluster_response() :: #{binary() => any()}. %% Example: %% internal_server_exception() :: #{ %% <<"message">> => string() %% } -type internal_server_exception() :: #{binary() => any()}. %% Example: %% certificate() :: #{ %% <<"certificateArn">> => string(), %% <<"certificateData">> => string() %% } -type certificate() :: #{binary() => any()}. %% Example: %% start_job_run_request() :: #{ %% <<"clientToken">> := string(), %% <<"configurationOverrides">> => configuration_overrides(), %% <<"executionRoleArn">> => string(), %% <<"jobDriver">> => job_driver(), %% <<"jobTemplateId">> => string(), %% <<"jobTemplateParameters">> => map(), %% <<"name">> => string(), %% <<"releaseLabel">> => string(), %% <<"retryPolicyConfiguration">> => retry_policy_configuration(), %% <<"tags">> => map() %% } -type start_job_run_request() :: #{binary() => any()}. %% Example: %% create_virtual_cluster_request() :: #{ %% <<"clientToken">> := string(), %% <<"containerProvider">> := container_provider(), %% <<"name">> := string(), %% <<"securityConfigurationId">> => string(), %% <<"tags">> => map() %% } -type create_virtual_cluster_request() :: #{binary() => any()}. %% Example: %% list_job_templates_request() :: #{ %% <<"createdAfter">> => non_neg_integer(), %% <<"createdBefore">> => non_neg_integer(), %% <<"maxResults">> => integer(), %% <<"nextToken">> => string() %% } -type list_job_templates_request() :: #{binary() => any()}. %% Example: %% parametric_monitoring_configuration() :: #{ %% <<"cloudWatchMonitoringConfiguration">> => parametric_cloud_watch_monitoring_configuration(), %% <<"persistentAppUI">> => string(), %% <<"s3MonitoringConfiguration">> => parametric_s3_monitoring_configuration() %% } -type parametric_monitoring_configuration() :: #{binary() => any()}. %% Example: %% retry_policy_execution() :: #{ %% <<"currentAttemptCount">> => integer() %% } -type retry_policy_execution() :: #{binary() => any()}. %% Example: %% in_transit_encryption_configuration() :: #{ %% <<"tlsCertificateConfiguration">> => t_l_s_certificate_configuration() %% } -type in_transit_encryption_configuration() :: #{binary() => any()}. %% Example: %% t_l_s_certificate_configuration() :: #{ %% <<"certificateProviderType">> => list(any()), %% <<"privateCertificateSecretArn">> => string(), %% <<"publicCertificateSecretArn">> => string() %% } -type t_l_s_certificate_configuration() :: #{binary() => any()}. %% Example: %% create_job_template_request() :: #{ %% <<"clientToken">> := string(), %% <<"jobTemplateData">> := job_template_data(), %% <<"kmsKeyArn">> => string(), %% <<"name">> := string(), %% <<"tags">> => map() %% } -type create_job_template_request() :: #{binary() => any()}. %% Example: %% describe_managed_endpoint_request() :: #{} -type describe_managed_endpoint_request() :: #{}. %% Example: %% tag_resource_response() :: #{} -type tag_resource_response() :: #{}. %% Example: %% security_configuration() :: #{ %% <<"arn">> => string(), %% <<"createdAt">> => non_neg_integer(), %% <<"createdBy">> => string(), %% <<"id">> => string(), %% <<"name">> => string(), %% <<"securityConfigurationData">> => security_configuration_data(), %% <<"tags">> => map() %% } -type security_configuration() :: #{binary() => any()}. %% Example: %% describe_security_configuration_response() :: #{ %% <<"securityConfiguration">> => security_configuration() %% } -type describe_security_configuration_response() :: #{binary() => any()}. %% Example: %% job_template_data() :: #{ %% <<"configurationOverrides">> => parametric_configuration_overrides(), %% <<"executionRoleArn">> => string(), %% <<"jobDriver">> => job_driver(), %% <<"jobTags">> => map(), %% <<"parameterConfiguration">> => map(), %% <<"releaseLabel">> => string() %% } -type job_template_data() :: #{binary() => any()}. %% Example: %% list_managed_endpoints_response() :: #{ %% <<"endpoints">> => list(endpoint()), %% <<"nextToken">> => string() %% } -type list_managed_endpoints_response() :: #{binary() => any()}. %% Example: %% request_throttled_exception() :: #{ %% <<"message">> => string() %% } -type request_throttled_exception() :: #{binary() => any()}. %% Example: %% delete_managed_endpoint_request() :: #{} -type delete_managed_endpoint_request() :: #{}. %% Example: %% list_managed_endpoints_request() :: #{ %% <<"createdAfter">> => non_neg_integer(), %% <<"createdBefore">> => non_neg_integer(), %% <<"maxResults">> => integer(), %% <<"nextToken">> => string(), %% <<"states">> => list(list(any())()), %% <<"types">> => list(string()) %% } -type list_managed_endpoints_request() :: #{binary() => any()}. %% Example: %% security_configuration_data() :: #{ %% <<"authorizationConfiguration">> => authorization_configuration() %% } -type security_configuration_data() :: #{binary() => any()}. %% Example: %% validation_exception() :: #{ %% <<"message">> => string() %% } -type validation_exception() :: #{binary() => any()}. %% Example: %% delete_virtual_cluster_response() :: #{ %% <<"id">> => string() %% } -type delete_virtual_cluster_response() :: #{binary() => any()}. %% Example: %% list_tags_for_resource_request() :: #{} -type list_tags_for_resource_request() :: #{}. %% Example: %% configuration_overrides() :: #{ %% <<"applicationConfiguration">> => list(configuration()), %% <<"monitoringConfiguration">> => monitoring_configuration() %% } -type configuration_overrides() :: #{binary() => any()}. %% Example: %% get_managed_endpoint_session_credentials_request() :: #{ %% <<"clientToken">> => string(), %% <<"credentialType">> := string(), %% <<"durationInSeconds">> => integer(), %% <<"executionRoleArn">> := string(), %% <<"logContext">> => string() %% } -type get_managed_endpoint_session_credentials_request() :: #{binary() => any()}. %% Example: %% spark_sql_job_driver() :: #{ %% <<"entryPoint">> => string(), %% <<"sparkSqlParameters">> => string() %% } -type spark_sql_job_driver() :: #{binary() => any()}. %% Example: %% list_security_configurations_response() :: #{ %% <<"nextToken">> => string(), %% <<"securityConfigurations">> => list(security_configuration()) %% } -type list_security_configurations_response() :: #{binary() => any()}. %% Example: %% describe_virtual_cluster_response() :: #{ %% <<"virtualCluster">> => virtual_cluster() %% } -type describe_virtual_cluster_response() :: #{binary() => any()}. %% Example: %% job_driver() :: #{ %% <<"sparkSqlJobDriver">> => spark_sql_job_driver(), %% <<"sparkSubmitJobDriver">> => spark_submit_job_driver() %% } -type job_driver() :: #{binary() => any()}. %% Example: %% cancel_job_run_request() :: #{} -type cancel_job_run_request() :: #{}. %% Example: %% describe_security_configuration_request() :: #{} -type describe_security_configuration_request() :: #{}. %% Example: %% list_job_templates_response() :: #{ %% <<"nextToken">> => string(), %% <<"templates">> => list(job_template()) %% } -type list_job_templates_response() :: #{binary() => any()}. %% Example: %% retry_policy_configuration() :: #{ %% <<"maxAttempts">> => integer() %% } -type retry_policy_configuration() :: #{binary() => any()}. %% Example: %% authorization_configuration() :: #{ %% <<"encryptionConfiguration">> => encryption_configuration(), %% <<"lakeFormationConfiguration">> => lake_formation_configuration() %% } -type authorization_configuration() :: #{binary() => any()}. %% Example: %% list_virtual_clusters_response() :: #{ %% <<"nextToken">> => string(), %% <<"virtualClusters">> => list(virtual_cluster()) %% } -type list_virtual_clusters_response() :: #{binary() => any()}. %% Example: %% delete_virtual_cluster_request() :: #{} -type delete_virtual_cluster_request() :: #{}. %% Example: %% lake_formation_configuration() :: #{ %% <<"authorizedSessionTagValue">> => string(), %% <<"queryEngineRoleArn">> => string(), %% <<"secureNamespaceInfo">> => secure_namespace_info() %% } -type lake_formation_configuration() :: #{binary() => any()}. %% Example: %% spark_submit_job_driver() :: #{ %% <<"entryPoint">> => string(), %% <<"entryPointArguments">> => list(string()), %% <<"sparkSubmitParameters">> => string() %% } -type spark_submit_job_driver() :: #{binary() => any()}. %% Example: %% list_virtual_clusters_request() :: #{ %% <<"containerProviderId">> => string(), %% <<"containerProviderType">> => list(any()), %% <<"createdAfter">> => non_neg_integer(), %% <<"createdBefore">> => non_neg_integer(), %% <<"eksAccessEntryIntegrated">> => boolean(), %% <<"maxResults">> => integer(), %% <<"nextToken">> => string(), %% <<"states">> => list(list(any())()) %% } -type list_virtual_clusters_request() :: #{binary() => any()}. -type cancel_job_run_errors() :: validation_exception() | internal_server_exception(). -type create_job_template_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type create_managed_endpoint_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type create_security_configuration_errors() :: validation_exception() | internal_server_exception(). -type create_virtual_cluster_errors() :: validation_exception() | internal_server_exception() | e_k_s_request_throttled_exception() | resource_not_found_exception(). -type delete_job_template_errors() :: validation_exception() | internal_server_exception(). -type delete_managed_endpoint_errors() :: validation_exception() | internal_server_exception(). -type delete_virtual_cluster_errors() :: validation_exception() | internal_server_exception(). -type describe_job_run_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type describe_job_template_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type describe_managed_endpoint_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type describe_security_configuration_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type describe_virtual_cluster_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type get_managed_endpoint_session_credentials_errors() :: validation_exception() | request_throttled_exception() | internal_server_exception() | resource_not_found_exception(). -type list_job_runs_errors() :: validation_exception() | internal_server_exception(). -type list_job_templates_errors() :: validation_exception() | internal_server_exception(). -type list_managed_endpoints_errors() :: validation_exception() | internal_server_exception(). -type list_security_configurations_errors() :: validation_exception() | internal_server_exception(). -type list_tags_for_resource_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type list_virtual_clusters_errors() :: validation_exception() | internal_server_exception(). -type start_job_run_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type tag_resource_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). -type untag_resource_errors() :: validation_exception() | internal_server_exception() | resource_not_found_exception(). %%==================================================================== %% API %%==================================================================== %% @doc Cancels a job run. %% %% A job run is a unit of work, such as a Spark jar, PySpark script, or %% SparkSQL query, that you submit to Amazon EMR on EKS. -spec cancel_job_run(aws_client:aws_client(), binary() | list(), binary() | list(), cancel_job_run_request()) -> {ok, cancel_job_run_response(), tuple()} | {error, any()} | {error, cancel_job_run_errors(), tuple()}. cancel_job_run(Client, Id, VirtualClusterId, Input) -> cancel_job_run(Client, Id, VirtualClusterId, Input, []). -spec cancel_job_run(aws_client:aws_client(), binary() | list(), binary() | list(), cancel_job_run_request(), proplists:proplist()) -> {ok, cancel_job_run_response(), tuple()} | {error, any()} | {error, cancel_job_run_errors(), tuple()}. cancel_job_run(Client, Id, VirtualClusterId, Input0, Options0) -> Method = delete, Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterId), "/jobruns/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a job template. %% %% Job template stores values of StartJobRun API request in a %% template and can be used to start a job run. Job template allows two use %% cases: avoid %% repeating recurring StartJobRun API request values, enforcing certain %% values in StartJobRun %% API request. -spec create_job_template(aws_client:aws_client(), create_job_template_request()) -> {ok, create_job_template_response(), tuple()} | {error, any()} | {error, create_job_template_errors(), tuple()}. create_job_template(Client, Input) -> create_job_template(Client, Input, []). -spec create_job_template(aws_client:aws_client(), create_job_template_request(), proplists:proplist()) -> {ok, create_job_template_response(), tuple()} | {error, any()} | {error, create_job_template_errors(), tuple()}. create_job_template(Client, Input0, Options0) -> Method = post, Path = ["/jobtemplates"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a managed endpoint. %% %% A managed endpoint is a gateway that connects Amazon EMR Studio to Amazon %% EMR on EKS so that Amazon EMR Studio can %% communicate with your virtual cluster. -spec create_managed_endpoint(aws_client:aws_client(), binary() | list(), create_managed_endpoint_request()) -> {ok, create_managed_endpoint_response(), tuple()} | {error, any()} | {error, create_managed_endpoint_errors(), tuple()}. create_managed_endpoint(Client, VirtualClusterId, Input) -> create_managed_endpoint(Client, VirtualClusterId, Input, []). -spec create_managed_endpoint(aws_client:aws_client(), binary() | list(), create_managed_endpoint_request(), proplists:proplist()) -> {ok, create_managed_endpoint_response(), tuple()} | {error, any()} | {error, create_managed_endpoint_errors(), tuple()}. create_managed_endpoint(Client, VirtualClusterId, Input0, Options0) -> Method = post, Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterId), "/endpoints"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a security configuration. %% %% Security configurations in Amazon EMR on EKS are %% templates for different security setups. You can use security %% configurations to configure %% the Lake Formation integration setup. You can also create a security %% configuration %% to re-use a security setup each time you create a virtual cluster. -spec create_security_configuration(aws_client:aws_client(), create_security_configuration_request()) -> {ok, create_security_configuration_response(), tuple()} | {error, any()} | {error, create_security_configuration_errors(), tuple()}. create_security_configuration(Client, Input) -> create_security_configuration(Client, Input, []). -spec create_security_configuration(aws_client:aws_client(), create_security_configuration_request(), proplists:proplist()) -> {ok, create_security_configuration_response(), tuple()} | {error, any()} | {error, create_security_configuration_errors(), tuple()}. create_security_configuration(Client, Input0, Options0) -> Method = post, Path = ["/securityconfigurations"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a virtual cluster. %% %% Virtual cluster is a managed entity on Amazon EMR on EKS. You can create, %% describe, list and delete virtual clusters. They do not consume any %% additional resource in your system. A single virtual cluster maps to a %% single Kubernetes %% namespace. Given this relationship, you can model virtual clusters the %% same way you model %% Kubernetes namespaces to meet your requirements. -spec create_virtual_cluster(aws_client:aws_client(), create_virtual_cluster_request()) -> {ok, create_virtual_cluster_response(), tuple()} | {error, any()} | {error, create_virtual_cluster_errors(), tuple()}. create_virtual_cluster(Client, Input) -> create_virtual_cluster(Client, Input, []). -spec create_virtual_cluster(aws_client:aws_client(), create_virtual_cluster_request(), proplists:proplist()) -> {ok, create_virtual_cluster_response(), tuple()} | {error, any()} | {error, create_virtual_cluster_errors(), tuple()}. create_virtual_cluster(Client, Input0, Options0) -> Method = post, Path = ["/virtualclusters"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes a job template. %% %% Job template stores values of StartJobRun API request in a %% template and can be used to start a job run. Job template allows two use %% cases: avoid %% repeating recurring StartJobRun API request values, enforcing certain %% values in StartJobRun %% API request. -spec delete_job_template(aws_client:aws_client(), binary() | list(), delete_job_template_request()) -> {ok, delete_job_template_response(), tuple()} | {error, any()} | {error, delete_job_template_errors(), tuple()}. delete_job_template(Client, Id, Input) -> delete_job_template(Client, Id, Input, []). -spec delete_job_template(aws_client:aws_client(), binary() | list(), delete_job_template_request(), proplists:proplist()) -> {ok, delete_job_template_response(), tuple()} | {error, any()} | {error, delete_job_template_errors(), tuple()}. delete_job_template(Client, Id, Input0, Options0) -> Method = delete, Path = ["/jobtemplates/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes a managed endpoint. %% %% A managed endpoint is a gateway that connects Amazon EMR Studio to Amazon %% EMR on EKS so that Amazon EMR Studio can %% communicate with your virtual cluster. -spec delete_managed_endpoint(aws_client:aws_client(), binary() | list(), binary() | list(), delete_managed_endpoint_request()) -> {ok, delete_managed_endpoint_response(), tuple()} | {error, any()} | {error, delete_managed_endpoint_errors(), tuple()}. delete_managed_endpoint(Client, Id, VirtualClusterId, Input) -> delete_managed_endpoint(Client, Id, VirtualClusterId, Input, []). -spec delete_managed_endpoint(aws_client:aws_client(), binary() | list(), binary() | list(), delete_managed_endpoint_request(), proplists:proplist()) -> {ok, delete_managed_endpoint_response(), tuple()} | {error, any()} | {error, delete_managed_endpoint_errors(), tuple()}. delete_managed_endpoint(Client, Id, VirtualClusterId, Input0, Options0) -> Method = delete, Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterId), "/endpoints/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes a virtual cluster. %% %% Virtual cluster is a managed entity on Amazon EMR on EKS. You can create, %% describe, list and delete virtual clusters. They do not consume any %% additional resource in your system. A single virtual cluster maps to a %% single Kubernetes %% namespace. Given this relationship, you can model virtual clusters the %% same way you model %% Kubernetes namespaces to meet your requirements. -spec delete_virtual_cluster(aws_client:aws_client(), binary() | list(), delete_virtual_cluster_request()) -> {ok, delete_virtual_cluster_response(), tuple()} | {error, any()} | {error, delete_virtual_cluster_errors(), tuple()}. delete_virtual_cluster(Client, Id, Input) -> delete_virtual_cluster(Client, Id, Input, []). -spec delete_virtual_cluster(aws_client:aws_client(), binary() | list(), delete_virtual_cluster_request(), proplists:proplist()) -> {ok, delete_virtual_cluster_response(), tuple()} | {error, any()} | {error, delete_virtual_cluster_errors(), tuple()}. delete_virtual_cluster(Client, Id, Input0, Options0) -> Method = delete, Path = ["/virtualclusters/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Displays detailed information about a job run. %% %% A job run is a unit of work, such as a %% Spark jar, PySpark script, or SparkSQL query, that you submit to Amazon %% EMR on EKS. -spec describe_job_run(aws_client:aws_client(), binary() | list(), binary() | list()) -> {ok, describe_job_run_response(), tuple()} | {error, any()} | {error, describe_job_run_errors(), tuple()}. describe_job_run(Client, Id, VirtualClusterId) when is_map(Client) -> describe_job_run(Client, Id, VirtualClusterId, #{}, #{}). -spec describe_job_run(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map()) -> {ok, describe_job_run_response(), tuple()} | {error, any()} | {error, describe_job_run_errors(), tuple()}. describe_job_run(Client, Id, VirtualClusterId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_job_run(Client, Id, VirtualClusterId, QueryMap, HeadersMap, []). -spec describe_job_run(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, describe_job_run_response(), tuple()} | {error, any()} | {error, describe_job_run_errors(), tuple()}. describe_job_run(Client, Id, VirtualClusterId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterId), "/jobruns/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query_ = [], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Displays detailed information about a specified job template. %% %% Job template stores values %% of StartJobRun API request in a template and can be used to start a job %% run. Job template %% allows two use cases: avoid repeating recurring StartJobRun API request %% values, enforcing %% certain values in StartJobRun API request. -spec describe_job_template(aws_client:aws_client(), binary() | list()) -> {ok, describe_job_template_response(), tuple()} | {error, any()} | {error, describe_job_template_errors(), tuple()}. describe_job_template(Client, Id) when is_map(Client) -> describe_job_template(Client, Id, #{}, #{}). -spec describe_job_template(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, describe_job_template_response(), tuple()} | {error, any()} | {error, describe_job_template_errors(), tuple()}. describe_job_template(Client, Id, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_job_template(Client, Id, QueryMap, HeadersMap, []). -spec describe_job_template(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, describe_job_template_response(), tuple()} | {error, any()} | {error, describe_job_template_errors(), tuple()}. describe_job_template(Client, Id, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/jobtemplates/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query_ = [], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Displays detailed information about a managed endpoint. %% %% A managed endpoint is a gateway %% that connects Amazon EMR Studio to Amazon EMR on EKS so that Amazon EMR %% Studio can communicate with your virtual cluster. -spec describe_managed_endpoint(aws_client:aws_client(), binary() | list(), binary() | list()) -> {ok, describe_managed_endpoint_response(), tuple()} | {error, any()} | {error, describe_managed_endpoint_errors(), tuple()}. describe_managed_endpoint(Client, Id, VirtualClusterId) when is_map(Client) -> describe_managed_endpoint(Client, Id, VirtualClusterId, #{}, #{}). -spec describe_managed_endpoint(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map()) -> {ok, describe_managed_endpoint_response(), tuple()} | {error, any()} | {error, describe_managed_endpoint_errors(), tuple()}. describe_managed_endpoint(Client, Id, VirtualClusterId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_managed_endpoint(Client, Id, VirtualClusterId, QueryMap, HeadersMap, []). -spec describe_managed_endpoint(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, describe_managed_endpoint_response(), tuple()} | {error, any()} | {error, describe_managed_endpoint_errors(), tuple()}. describe_managed_endpoint(Client, Id, VirtualClusterId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterId), "/endpoints/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query_ = [], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Displays detailed information about a specified security %% configuration. %% %% Security %% configurations in Amazon EMR on EKS are templates for different security %% setups. You %% can use security configurations to configure the Lake Formation %% integration setup. %% You can also create a security configuration to re-use a security setup %% each time you %% create a virtual cluster. -spec describe_security_configuration(aws_client:aws_client(), binary() | list()) -> {ok, describe_security_configuration_response(), tuple()} | {error, any()} | {error, describe_security_configuration_errors(), tuple()}. describe_security_configuration(Client, Id) when is_map(Client) -> describe_security_configuration(Client, Id, #{}, #{}). -spec describe_security_configuration(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, describe_security_configuration_response(), tuple()} | {error, any()} | {error, describe_security_configuration_errors(), tuple()}. describe_security_configuration(Client, Id, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_security_configuration(Client, Id, QueryMap, HeadersMap, []). -spec describe_security_configuration(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, describe_security_configuration_response(), tuple()} | {error, any()} | {error, describe_security_configuration_errors(), tuple()}. describe_security_configuration(Client, Id, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/securityconfigurations/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query_ = [], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Displays detailed information about a specified virtual cluster. %% %% Virtual cluster is a %% managed entity on Amazon EMR on EKS. You can create, describe, list and %% delete virtual %% clusters. They do not consume any additional resource in your system. A %% single virtual %% cluster maps to a single Kubernetes namespace. Given this relationship, %% you can model %% virtual clusters the same way you model Kubernetes namespaces to meet your %% requirements. -spec describe_virtual_cluster(aws_client:aws_client(), binary() | list()) -> {ok, describe_virtual_cluster_response(), tuple()} | {error, any()} | {error, describe_virtual_cluster_errors(), tuple()}. describe_virtual_cluster(Client, Id) when is_map(Client) -> describe_virtual_cluster(Client, Id, #{}, #{}). -spec describe_virtual_cluster(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, describe_virtual_cluster_response(), tuple()} | {error, any()} | {error, describe_virtual_cluster_errors(), tuple()}. describe_virtual_cluster(Client, Id, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_virtual_cluster(Client, Id, QueryMap, HeadersMap, []). -spec describe_virtual_cluster(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, describe_virtual_cluster_response(), tuple()} | {error, any()} | {error, describe_virtual_cluster_errors(), tuple()}. describe_virtual_cluster(Client, Id, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/virtualclusters/", aws_util:encode_uri(Id), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query_ = [], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Generate a session token to connect to a managed endpoint. -spec get_managed_endpoint_session_credentials(aws_client:aws_client(), binary() | list(), binary() | list(), get_managed_endpoint_session_credentials_request()) -> {ok, get_managed_endpoint_session_credentials_response(), tuple()} | {error, any()} | {error, get_managed_endpoint_session_credentials_errors(), tuple()}. get_managed_endpoint_session_credentials(Client, EndpointIdentifier, VirtualClusterIdentifier, Input) -> get_managed_endpoint_session_credentials(Client, EndpointIdentifier, VirtualClusterIdentifier, Input, []). -spec get_managed_endpoint_session_credentials(aws_client:aws_client(), binary() | list(), binary() | list(), get_managed_endpoint_session_credentials_request(), proplists:proplist()) -> {ok, get_managed_endpoint_session_credentials_response(), tuple()} | {error, any()} | {error, get_managed_endpoint_session_credentials_errors(), tuple()}. get_managed_endpoint_session_credentials(Client, EndpointIdentifier, VirtualClusterIdentifier, Input0, Options0) -> Method = post, Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterIdentifier), "/endpoints/", aws_util:encode_uri(EndpointIdentifier), "/credentials"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Lists job runs based on a set of parameters. %% %% A job run is a unit of work, such as a %% Spark jar, PySpark script, or SparkSQL query, that you submit to Amazon %% EMR on EKS. -spec list_job_runs(aws_client:aws_client(), binary() | list()) -> {ok, list_job_runs_response(), tuple()} | {error, any()} | {error, list_job_runs_errors(), tuple()}. list_job_runs(Client, VirtualClusterId) when is_map(Client) -> list_job_runs(Client, VirtualClusterId, #{}, #{}). -spec list_job_runs(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, list_job_runs_response(), tuple()} | {error, any()} | {error, list_job_runs_errors(), tuple()}. list_job_runs(Client, VirtualClusterId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_job_runs(Client, VirtualClusterId, QueryMap, HeadersMap, []). -spec list_job_runs(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, list_job_runs_response(), tuple()} | {error, any()} | {error, list_job_runs_errors(), tuple()}. list_job_runs(Client, VirtualClusterId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterId), "/jobruns"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query0_ = [ {<<"createdAfter">>, maps:get(<<"createdAfter">>, QueryMap, undefined)}, {<<"createdBefore">>, maps:get(<<"createdBefore">>, QueryMap, undefined)}, {<<"maxResults">>, maps:get(<<"maxResults">>, QueryMap, undefined)}, {<<"name">>, maps:get(<<"name">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)}, {<<"states">>, maps:get(<<"states">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists job templates based on a set of parameters. %% %% Job template stores values of %% StartJobRun API request in a template and can be used to start a job run. %% Job template %% allows two use cases: avoid repeating recurring StartJobRun API request %% values, enforcing %% certain values in StartJobRun API request. -spec list_job_templates(aws_client:aws_client()) -> {ok, list_job_templates_response(), tuple()} | {error, any()} | {error, list_job_templates_errors(), tuple()}. list_job_templates(Client) when is_map(Client) -> list_job_templates(Client, #{}, #{}). -spec list_job_templates(aws_client:aws_client(), map(), map()) -> {ok, list_job_templates_response(), tuple()} | {error, any()} | {error, list_job_templates_errors(), tuple()}. list_job_templates(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_job_templates(Client, QueryMap, HeadersMap, []). -spec list_job_templates(aws_client:aws_client(), map(), map(), proplists:proplist()) -> {ok, list_job_templates_response(), tuple()} | {error, any()} | {error, list_job_templates_errors(), tuple()}. list_job_templates(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/jobtemplates"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query0_ = [ {<<"createdAfter">>, maps:get(<<"createdAfter">>, QueryMap, undefined)}, {<<"createdBefore">>, maps:get(<<"createdBefore">>, QueryMap, undefined)}, {<<"maxResults">>, maps:get(<<"maxResults">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists managed endpoints based on a set of parameters. %% %% A managed endpoint is a gateway %% that connects Amazon EMR Studio to Amazon EMR on EKS so that Amazon EMR %% Studio can communicate with your virtual cluster. -spec list_managed_endpoints(aws_client:aws_client(), binary() | list()) -> {ok, list_managed_endpoints_response(), tuple()} | {error, any()} | {error, list_managed_endpoints_errors(), tuple()}. list_managed_endpoints(Client, VirtualClusterId) when is_map(Client) -> list_managed_endpoints(Client, VirtualClusterId, #{}, #{}). -spec list_managed_endpoints(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, list_managed_endpoints_response(), tuple()} | {error, any()} | {error, list_managed_endpoints_errors(), tuple()}. list_managed_endpoints(Client, VirtualClusterId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_managed_endpoints(Client, VirtualClusterId, QueryMap, HeadersMap, []). -spec list_managed_endpoints(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, list_managed_endpoints_response(), tuple()} | {error, any()} | {error, list_managed_endpoints_errors(), tuple()}. list_managed_endpoints(Client, VirtualClusterId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterId), "/endpoints"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query0_ = [ {<<"createdAfter">>, maps:get(<<"createdAfter">>, QueryMap, undefined)}, {<<"createdBefore">>, maps:get(<<"createdBefore">>, QueryMap, undefined)}, {<<"maxResults">>, maps:get(<<"maxResults">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)}, {<<"states">>, maps:get(<<"states">>, QueryMap, undefined)}, {<<"types">>, maps:get(<<"types">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists security configurations based on a set of parameters. %% %% Security configurations in %% Amazon EMR on EKS are templates for different security setups. You can use %% security %% configurations to configure the Lake Formation integration setup. You can %% also %% create a security configuration to re-use a security setup each time you %% create a virtual %% cluster. -spec list_security_configurations(aws_client:aws_client()) -> {ok, list_security_configurations_response(), tuple()} | {error, any()} | {error, list_security_configurations_errors(), tuple()}. list_security_configurations(Client) when is_map(Client) -> list_security_configurations(Client, #{}, #{}). -spec list_security_configurations(aws_client:aws_client(), map(), map()) -> {ok, list_security_configurations_response(), tuple()} | {error, any()} | {error, list_security_configurations_errors(), tuple()}. list_security_configurations(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_security_configurations(Client, QueryMap, HeadersMap, []). -spec list_security_configurations(aws_client:aws_client(), map(), map(), proplists:proplist()) -> {ok, list_security_configurations_response(), tuple()} | {error, any()} | {error, list_security_configurations_errors(), tuple()}. list_security_configurations(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/securityconfigurations"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query0_ = [ {<<"createdAfter">>, maps:get(<<"createdAfter">>, QueryMap, undefined)}, {<<"createdBefore">>, maps:get(<<"createdBefore">>, QueryMap, undefined)}, {<<"maxResults">>, maps:get(<<"maxResults">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists the tags assigned to the resources. -spec list_tags_for_resource(aws_client:aws_client(), binary() | list()) -> {ok, list_tags_for_resource_response(), tuple()} | {error, any()} | {error, list_tags_for_resource_errors(), tuple()}. list_tags_for_resource(Client, ResourceArn) when is_map(Client) -> list_tags_for_resource(Client, ResourceArn, #{}, #{}). -spec list_tags_for_resource(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, list_tags_for_resource_response(), tuple()} | {error, any()} | {error, list_tags_for_resource_errors(), tuple()}. list_tags_for_resource(Client, ResourceArn, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_tags_for_resource(Client, ResourceArn, QueryMap, HeadersMap, []). -spec list_tags_for_resource(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, list_tags_for_resource_response(), tuple()} | {error, any()} | {error, list_tags_for_resource_errors(), tuple()}. list_tags_for_resource(Client, ResourceArn, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/tags/", aws_util:encode_uri(ResourceArn), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query_ = [], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists information about the specified virtual cluster. %% %% Virtual cluster is a managed %% entity on Amazon EMR on EKS. You can create, describe, list and delete %% virtual %% clusters. They do not consume any additional resource in your system. A %% single virtual %% cluster maps to a single Kubernetes namespace. Given this relationship, %% you can model %% virtual clusters the same way you model Kubernetes namespaces to meet your %% requirements. -spec list_virtual_clusters(aws_client:aws_client()) -> {ok, list_virtual_clusters_response(), tuple()} | {error, any()} | {error, list_virtual_clusters_errors(), tuple()}. list_virtual_clusters(Client) when is_map(Client) -> list_virtual_clusters(Client, #{}, #{}). -spec list_virtual_clusters(aws_client:aws_client(), map(), map()) -> {ok, list_virtual_clusters_response(), tuple()} | {error, any()} | {error, list_virtual_clusters_errors(), tuple()}. list_virtual_clusters(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_virtual_clusters(Client, QueryMap, HeadersMap, []). -spec list_virtual_clusters(aws_client:aws_client(), map(), map(), proplists:proplist()) -> {ok, list_virtual_clusters_response(), tuple()} | {error, any()} | {error, list_virtual_clusters_errors(), tuple()}. list_virtual_clusters(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/virtualclusters"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary} | Options2], Headers = [], Query0_ = [ {<<"containerProviderId">>, maps:get(<<"containerProviderId">>, QueryMap, undefined)}, {<<"containerProviderType">>, maps:get(<<"containerProviderType">>, QueryMap, undefined)}, {<<"createdAfter">>, maps:get(<<"createdAfter">>, QueryMap, undefined)}, {<<"createdBefore">>, maps:get(<<"createdBefore">>, QueryMap, undefined)}, {<<"eksAccessEntryIntegrated">>, maps:get(<<"eksAccessEntryIntegrated">>, QueryMap, undefined)}, {<<"maxResults">>, maps:get(<<"maxResults">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)}, {<<"states">>, maps:get(<<"states">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Starts a job run. %% %% A job run is a unit of work, such as a Spark jar, PySpark script, or %% SparkSQL query, that you submit to Amazon EMR on EKS. -spec start_job_run(aws_client:aws_client(), binary() | list(), start_job_run_request()) -> {ok, start_job_run_response(), tuple()} | {error, any()} | {error, start_job_run_errors(), tuple()}. start_job_run(Client, VirtualClusterId, Input) -> start_job_run(Client, VirtualClusterId, Input, []). -spec start_job_run(aws_client:aws_client(), binary() | list(), start_job_run_request(), proplists:proplist()) -> {ok, start_job_run_response(), tuple()} | {error, any()} | {error, start_job_run_errors(), tuple()}. start_job_run(Client, VirtualClusterId, Input0, Options0) -> Method = post, Path = ["/virtualclusters/", aws_util:encode_uri(VirtualClusterId), "/jobruns"], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Assigns tags to resources. %% %% A tag is a label that you assign to an Amazon Web Services %% resource. Each tag consists of a key and an optional value, both of which %% you define. Tags %% enable you to categorize your Amazon Web Services resources by attributes %% such as purpose, %% owner, or environment. When you have many resources of the same type, you %% can quickly %% identify a specific resource based on the tags you've assigned to it. %% For example, you can %% define a set of tags for your Amazon EMR on EKS clusters to help you track %% each %% cluster's owner and stack level. We recommend that you devise a %% consistent set of tag keys %% for each resource type. You can then search and filter the resources based %% on the tags that %% you add. -spec tag_resource(aws_client:aws_client(), binary() | list(), tag_resource_request()) -> {ok, tag_resource_response(), tuple()} | {error, any()} | {error, tag_resource_errors(), tuple()}. tag_resource(Client, ResourceArn, Input) -> tag_resource(Client, ResourceArn, Input, []). -spec tag_resource(aws_client:aws_client(), binary() | list(), tag_resource_request(), proplists:proplist()) -> {ok, tag_resource_response(), tuple()} | {error, any()} | {error, tag_resource_errors(), tuple()}. tag_resource(Client, ResourceArn, Input0, Options0) -> Method = post, Path = ["/tags/", aws_util:encode_uri(ResourceArn), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Removes tags from resources. -spec untag_resource(aws_client:aws_client(), binary() | list(), untag_resource_request()) -> {ok, untag_resource_response(), tuple()} | {error, any()} | {error, untag_resource_errors(), tuple()}. untag_resource(Client, ResourceArn, Input) -> untag_resource(Client, ResourceArn, Input, []). -spec untag_resource(aws_client:aws_client(), binary() | list(), untag_resource_request(), proplists:proplist()) -> {ok, untag_resource_response(), tuple()} | {error, any()} | {error, untag_resource_errors(), tuple()}. untag_resource(Client, ResourceArn, Input0, Options0) -> Method = delete, Path = ["/tags/", aws_util:encode_uri(ResourceArn), ""], SuccessStatusCode = 200, {SendBodyAsBinary, Options1} = proplists_take(send_body_as_binary, Options0, false), {ReceiveBodyAsBinary, Options2} = proplists_take(receive_body_as_binary, Options1, false), Options = [{send_body_as_binary, SendBodyAsBinary}, {receive_body_as_binary, ReceiveBodyAsBinary}, {append_sha256_content_hash, false} | Options2], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"tagKeys">>, <<"tagKeys">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %%==================================================================== %% Internal functions %%==================================================================== -spec proplists_take(any(), proplists:proplist(), any()) -> {any(), proplists:proplist()}. proplists_take(Key, Proplist, Default) -> Value = proplists:get_value(Key, Proplist, Default), {Value, proplists:delete(Key, Proplist)}. -spec request(aws_client:aws_client(), atom(), iolist(), list(), list(), map() | undefined, list(), pos_integer() | undefined) -> {ok, {integer(), list()}} | {ok, Result, {integer(), list(), hackney:client()}} | {error, Error, {integer(), list(), hackney:client()}} | {error, term()} when Result :: map(), Error :: map(). request(Client, Method, Path, Query, Headers0, Input, Options, SuccessStatusCode) -> RequestFun = fun() -> do_request(Client, Method, Path, Query, Headers0, Input, Options, SuccessStatusCode) end, aws_request:request(RequestFun, Options). do_request(Client, Method, Path, Query, Headers0, Input, Options, SuccessStatusCode) -> Client1 = Client#{service => <<"emr-containers">>}, Host = build_host(<<"emr-containers">>, Client1), URL0 = build_url(Host, Path, Client1), URL = aws_request:add_query(URL0, Query), AdditionalHeaders1 = [ {<<"Host">>, Host} , {<<"Content-Type">>, <<"application/x-amz-json-1.1">>} ], Payload = case proplists:get_value(send_body_as_binary, Options) of true -> maps:get(<<"Body">>, Input, <<"">>); false -> encode_payload(Input) end, AdditionalHeaders = case proplists:get_value(append_sha256_content_hash, Options, false) of true -> add_checksum_hash_header(AdditionalHeaders1, Payload); false -> AdditionalHeaders1 end, Headers1 = aws_request:add_headers(AdditionalHeaders, Headers0), MethodBin = aws_request:method_to_binary(Method), SignedHeaders = aws_request:sign_request(Client1, MethodBin, URL, Headers1, Payload), Response = hackney:request(Method, URL, SignedHeaders, Payload, Options), DecodeBody = not proplists:get_value(receive_body_as_binary, Options), handle_response(Response, SuccessStatusCode, DecodeBody). add_checksum_hash_header(Headers, Body) -> [ {<<"X-Amz-CheckSum-SHA256">>, base64:encode(crypto:hash(sha256, Body))} | Headers ]. handle_response({ok, StatusCode, ResponseHeaders}, SuccessStatusCode, _DecodeBody) when StatusCode =:= 200; StatusCode =:= 202; StatusCode =:= 204; StatusCode =:= 206; StatusCode =:= SuccessStatusCode -> {ok, {StatusCode, ResponseHeaders}}; handle_response({ok, StatusCode, ResponseHeaders}, _, _DecodeBody) -> {error, {StatusCode, ResponseHeaders}}; handle_response({ok, StatusCode, ResponseHeaders, Client}, SuccessStatusCode, DecodeBody) when StatusCode =:= 200; StatusCode =:= 202; StatusCode =:= 204; StatusCode =:= 206; StatusCode =:= SuccessStatusCode -> case hackney:body(Client) of {ok, <<>>} when StatusCode =:= 200; StatusCode =:= SuccessStatusCode -> {ok, #{}, {StatusCode, ResponseHeaders, Client}}; {ok, Body} -> Result = case DecodeBody of true -> try jsx:decode(Body) catch Error:Reason:Stack -> erlang:raise(error, {body_decode_failed, Error, Reason, StatusCode, Body}, Stack) end; false -> #{<<"Body">> => Body} end, {ok, Result, {StatusCode, ResponseHeaders, Client}} end; handle_response({ok, StatusCode, _ResponseHeaders, _Client}, _, _DecodeBody) when StatusCode =:= 503 -> %% Retriable error if retries are enabled {error, service_unavailable}; handle_response({ok, StatusCode, ResponseHeaders, Client}, _, _DecodeBody) -> {ok, Body} = hackney:body(Client), try DecodedError = jsx:decode(Body), {error, DecodedError, {StatusCode, ResponseHeaders, Client}} catch Error:Reason:Stack -> erlang:raise(error, {body_decode_failed, Error, Reason, StatusCode, Body}, Stack) end; handle_response({error, Reason}, _, _DecodeBody) -> {error, Reason}. build_host(_EndpointPrefix, #{region := <<"local">>, endpoint := Endpoint}) -> Endpoint; build_host(_EndpointPrefix, #{region := <<"local">>}) -> <<"localhost">>; build_host(EndpointPrefix, #{region := Region, endpoint := Endpoint}) -> aws_util:binary_join([EndpointPrefix, Region, Endpoint], <<".">>). build_url(Host, Path0, Client) -> Proto = aws_client:proto(Client), Path = erlang:iolist_to_binary(Path0), Port = aws_client:port(Client), aws_util:binary_join([Proto, <<"://">>, Host, <<":">>, Port, Path], <<"">>). -spec encode_payload(undefined | map()) -> binary(). encode_payload(undefined) -> <<>>; encode_payload(Input) -> jsx:encode(Input).