%% WARNING: DO NOT EDIT, AUTO-GENERATED CODE! %% See https://github.com/aws-beam/aws-codegen for more details. %% @doc %% Amazon Web Services Telco Network Builder (TNB) is a network automation %% service that helps %% you deploy and manage telecom networks. %% %% AWS TNB helps you with the lifecycle management of %% your telecommunication network functions throughout planning, deployment, %% and %% post-deployment activities. -module(aws_tnb). -export([cancel_sol_network_operation/3, cancel_sol_network_operation/4, create_sol_function_package/2, create_sol_function_package/3, create_sol_network_instance/2, create_sol_network_instance/3, create_sol_network_package/2, create_sol_network_package/3, delete_sol_function_package/3, delete_sol_function_package/4, delete_sol_network_instance/3, delete_sol_network_instance/4, delete_sol_network_package/3, delete_sol_network_package/4, get_sol_function_instance/2, get_sol_function_instance/4, get_sol_function_instance/5, get_sol_function_package/2, get_sol_function_package/4, get_sol_function_package/5, get_sol_function_package_content/3, get_sol_function_package_content/5, get_sol_function_package_content/6, get_sol_function_package_descriptor/3, get_sol_function_package_descriptor/5, get_sol_function_package_descriptor/6, get_sol_network_instance/2, get_sol_network_instance/4, get_sol_network_instance/5, get_sol_network_operation/2, get_sol_network_operation/4, get_sol_network_operation/5, get_sol_network_package/2, get_sol_network_package/4, get_sol_network_package/5, get_sol_network_package_content/3, get_sol_network_package_content/5, get_sol_network_package_content/6, get_sol_network_package_descriptor/2, get_sol_network_package_descriptor/4, get_sol_network_package_descriptor/5, instantiate_sol_network_instance/3, instantiate_sol_network_instance/4, list_sol_function_instances/1, list_sol_function_instances/3, list_sol_function_instances/4, list_sol_function_packages/1, list_sol_function_packages/3, list_sol_function_packages/4, list_sol_network_instances/1, list_sol_network_instances/3, list_sol_network_instances/4, list_sol_network_operations/1, list_sol_network_operations/3, list_sol_network_operations/4, list_sol_network_packages/1, list_sol_network_packages/3, list_sol_network_packages/4, list_tags_for_resource/2, list_tags_for_resource/4, list_tags_for_resource/5, put_sol_function_package_content/3, put_sol_function_package_content/4, put_sol_network_package_content/3, put_sol_network_package_content/4, tag_resource/3, tag_resource/4, terminate_sol_network_instance/3, terminate_sol_network_instance/4, untag_resource/3, untag_resource/4, update_sol_function_package/3, update_sol_function_package/4, update_sol_network_instance/3, update_sol_network_instance/4, update_sol_network_package/3, update_sol_network_package/4, validate_sol_function_package_content/3, validate_sol_function_package_content/4, validate_sol_network_package_content/3, validate_sol_network_package_content/4]). -include_lib("hackney/include/hackney_lib.hrl"). %% Example: %% update_sol_network_package_output() :: #{ %% <<"nsdOperationalState">> => list(any()) %% } -type update_sol_network_package_output() :: #{binary() => any()}. %% Example: %% get_sol_vnf_info() :: #{ %% <<"vnfState">> => list(any()), %% <<"vnfcResourceInfo">> => list(get_sol_vnfc_resource_info()) %% } -type get_sol_vnf_info() :: #{binary() => any()}. %% Example: %% delete_sol_function_package_input() :: #{} -type delete_sol_function_package_input() :: #{}. %% Example: %% delete_sol_network_instance_input() :: #{} -type delete_sol_network_instance_input() :: #{}. %% Example: %% create_sol_network_package_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"nsdOnboardingState">> => list(any()), %% <<"nsdOperationalState">> => list(any()), %% <<"nsdUsageState">> => list(any()), %% <<"tags">> => map() %% } -type create_sol_network_package_output() :: #{binary() => any()}. %% Example: %% get_sol_function_package_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"metadata">> => get_sol_function_package_metadata(), %% <<"onboardingState">> => list(any()), %% <<"operationalState">> => list(any()), %% <<"tags">> => map(), %% <<"usageState">> => list(any()), %% <<"vnfProductName">> => [string()], %% <<"vnfProvider">> => [string()], %% <<"vnfdId">> => [string()], %% <<"vnfdVersion">> => [string()] %% } -type get_sol_function_package_output() :: #{binary() => any()}. %% Example: %% list_sol_function_instance_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()] %% } -type list_sol_function_instance_metadata() :: #{binary() => any()}. %% Example: %% list_sol_function_instances_input() :: #{ %% <<"maxResults">> => [integer()], %% <<"nextToken">> => string() %% } -type list_sol_function_instances_input() :: #{binary() => any()}. %% Example: %% list_sol_network_operations_input() :: #{ %% <<"maxResults">> => [integer()], %% <<"nextToken">> => string(), %% <<"nsInstanceId">> => string() %% } -type list_sol_network_operations_input() :: #{binary() => any()}. %% Example: %% validate_sol_network_package_content_metadata() :: #{ %% <<"nsd">> => network_artifact_meta() %% } -type validate_sol_network_package_content_metadata() :: #{binary() => any()}. %% Example: %% list_sol_network_packages_output() :: #{ %% <<"networkPackages">> => list(list_sol_network_package_info()), %% <<"nextToken">> => string() %% } -type list_sol_network_packages_output() :: #{binary() => any()}. %% Example: %% get_sol_function_instance_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()] %% } -type get_sol_function_instance_metadata() :: #{binary() => any()}. %% Example: %% create_sol_network_package_input() :: #{ %% <<"tags">> => map() %% } -type create_sol_network_package_input() :: #{binary() => any()}. %% Example: %% put_sol_function_package_content_metadata() :: #{ %% <<"vnfd">> => function_artifact_meta() %% } -type put_sol_function_package_content_metadata() :: #{binary() => any()}. %% Example: %% get_sol_network_package_descriptor_input() :: #{} -type get_sol_network_package_descriptor_input() :: #{}. %% Example: %% get_sol_function_package_descriptor_input() :: #{ %% <<"accept">> := list(any()) %% } -type get_sol_function_package_descriptor_input() :: #{binary() => any()}. %% Example: %% get_sol_function_instance_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"instantiatedVnfInfo">> => get_sol_vnf_info(), %% <<"instantiationState">> => list(any()), %% <<"metadata">> => get_sol_function_instance_metadata(), %% <<"nsInstanceId">> => string(), %% <<"tags">> => map(), %% <<"vnfPkgId">> => string(), %% <<"vnfProductName">> => [string()], %% <<"vnfProvider">> => [string()], %% <<"vnfdId">> => string(), %% <<"vnfdVersion">> => [string()] %% } -type get_sol_function_instance_output() :: #{binary() => any()}. %% Example: %% get_sol_network_package_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"metadata">> => get_sol_network_package_metadata(), %% <<"nsdId">> => string(), %% <<"nsdName">> => [string()], %% <<"nsdOnboardingState">> => list(any()), %% <<"nsdOperationalState">> => list(any()), %% <<"nsdUsageState">> => list(any()), %% <<"nsdVersion">> => [string()], %% <<"tags">> => map(), %% <<"vnfPkgIds">> => list(string()) %% } -type get_sol_network_package_output() :: #{binary() => any()}. %% Example: %% error_info() :: #{ %% <<"cause">> => string(), %% <<"details">> => string() %% } -type error_info() :: #{binary() => any()}. %% Example: %% put_sol_function_package_content_output() :: #{ %% <<"id">> => string(), %% <<"metadata">> => put_sol_function_package_content_metadata(), %% <<"vnfProductName">> => [string()], %% <<"vnfProvider">> => [string()], %% <<"vnfdId">> => string(), %% <<"vnfdVersion">> => [string()] %% } -type put_sol_function_package_content_output() :: #{binary() => any()}. %% Example: %% list_tags_for_resource_output() :: #{ %% <<"tags">> => map() %% } -type list_tags_for_resource_output() :: #{binary() => any()}. %% Example: %% get_sol_network_package_input() :: #{} -type get_sol_network_package_input() :: #{}. %% Example: %% list_sol_network_packages_input() :: #{ %% <<"maxResults">> => [integer()], %% <<"nextToken">> => string() %% } -type list_sol_network_packages_input() :: #{binary() => any()}. %% Example: %% validate_sol_network_package_content_input() :: #{ %% <<"contentType">> => list(any()), %% <<"file">> := binary() %% } -type validate_sol_network_package_content_input() :: #{binary() => any()}. %% Example: %% put_sol_network_package_content_input() :: #{ %% <<"contentType">> => list(any()), %% <<"file">> := binary() %% } -type put_sol_network_package_content_input() :: #{binary() => any()}. %% Example: %% list_sol_network_operations_info() :: #{ %% <<"arn">> => string(), %% <<"error">> => problem_details(), %% <<"id">> => string(), %% <<"lcmOperationType">> => list(any()), %% <<"metadata">> => list_sol_network_operations_metadata(), %% <<"nsInstanceId">> => string(), %% <<"operationState">> => list(any()), %% <<"updateType">> => list(any()) %% } -type list_sol_network_operations_info() :: #{binary() => any()}. %% Example: %% terminate_sol_network_instance_input() :: #{ %% <<"tags">> => map() %% } -type terminate_sol_network_instance_input() :: #{binary() => any()}. %% Example: %% resource_not_found_exception() :: #{ %% <<"message">> => [string()] %% } -type resource_not_found_exception() :: #{binary() => any()}. %% Example: %% get_sol_instantiated_vnf_info() :: #{ %% <<"vnfState">> => list(any()) %% } -type get_sol_instantiated_vnf_info() :: #{binary() => any()}. %% Example: %% get_sol_vnfc_resource_info() :: #{ %% <<"metadata">> => get_sol_vnfc_resource_info_metadata() %% } -type get_sol_vnfc_resource_info() :: #{binary() => any()}. %% Example: %% list_sol_network_package_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()] %% } -type list_sol_network_package_metadata() :: #{binary() => any()}. %% Example: %% update_ns_metadata() :: #{ %% <<"additionalParamsForNs">> => [any()], %% <<"nsdInfoId">> => string() %% } -type update_ns_metadata() :: #{binary() => any()}. %% Example: %% put_sol_network_package_content_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"metadata">> => put_sol_network_package_content_metadata(), %% <<"nsdId">> => string(), %% <<"nsdName">> => [string()], %% <<"nsdVersion">> => [string()], %% <<"vnfPkgIds">> => list(string()) %% } -type put_sol_network_package_content_output() :: #{binary() => any()}. %% Example: %% list_sol_network_instances_input() :: #{ %% <<"maxResults">> => [integer()], %% <<"nextToken">> => string() %% } -type list_sol_network_instances_input() :: #{binary() => any()}. %% Example: %% put_sol_network_package_content_metadata() :: #{ %% <<"nsd">> => network_artifact_meta() %% } -type put_sol_network_package_content_metadata() :: #{binary() => any()}. %% Example: %% service_quota_exceeded_exception() :: #{ %% <<"message">> => [string()] %% } -type service_quota_exceeded_exception() :: #{binary() => any()}. %% Example: %% list_sol_network_operations_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()], %% <<"nsdInfoId">> => string(), %% <<"vnfInstanceId">> => string() %% } -type list_sol_network_operations_metadata() :: #{binary() => any()}. %% Example: %% get_sol_network_package_content_output() :: #{ %% <<"contentType">> => list(any()), %% <<"nsdContent">> => [binary()] %% } -type get_sol_network_package_content_output() :: #{binary() => any()}. %% Example: %% update_sol_network_instance_output() :: #{ %% <<"nsLcmOpOccId">> => string(), %% <<"tags">> => map() %% } -type update_sol_network_instance_output() :: #{binary() => any()}. %% Example: %% problem_details() :: #{ %% <<"detail">> => [string()], %% <<"title">> => [string()] %% } -type problem_details() :: #{binary() => any()}. %% Example: %% create_sol_network_instance_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"nsInstanceName">> => [string()], %% <<"nsdInfoId">> => string(), %% <<"tags">> => map() %% } -type create_sol_network_instance_output() :: #{binary() => any()}. %% Example: %% terminate_sol_network_instance_output() :: #{ %% <<"nsLcmOpOccId">> => string(), %% <<"tags">> => map() %% } -type terminate_sol_network_instance_output() :: #{binary() => any()}. %% Example: %% put_sol_function_package_content_input() :: #{ %% <<"contentType">> => list(any()), %% <<"file">> := binary() %% } -type put_sol_function_package_content_input() :: #{binary() => any()}. %% Example: %% instantiate_sol_network_instance_input() :: #{ %% <<"additionalParamsForNs">> => [any()], %% <<"dryRun">> => [boolean()], %% <<"tags">> => map() %% } -type instantiate_sol_network_instance_input() :: #{binary() => any()}. %% Example: %% list_sol_function_packages_output() :: #{ %% <<"functionPackages">> => list(list_sol_function_package_info()), %% <<"nextToken">> => string() %% } -type list_sol_function_packages_output() :: #{binary() => any()}. %% Example: %% create_sol_function_package_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"onboardingState">> => list(any()), %% <<"operationalState">> => list(any()), %% <<"tags">> => map(), %% <<"usageState">> => list(any()) %% } -type create_sol_function_package_output() :: #{binary() => any()}. %% Example: %% cancel_sol_network_operation_input() :: #{} -type cancel_sol_network_operation_input() :: #{}. %% Example: %% tag_resource_input() :: #{ %% <<"tags">> := map() %% } -type tag_resource_input() :: #{binary() => any()}. %% Example: %% update_sol_network_modify() :: #{ %% <<"vnfConfigurableProperties">> => [any()], %% <<"vnfInstanceId">> => string() %% } -type update_sol_network_modify() :: #{binary() => any()}. %% Example: %% update_sol_network_service_data() :: #{ %% <<"additionalParamsForNs">> => [any()], %% <<"nsdInfoId">> => string() %% } -type update_sol_network_service_data() :: #{binary() => any()}. %% Example: %% list_sol_network_instance_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()] %% } -type list_sol_network_instance_metadata() :: #{binary() => any()}. %% Example: %% get_sol_network_instance_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"lcmOpInfo">> => lcm_operation_info(), %% <<"metadata">> => get_sol_network_instance_metadata(), %% <<"nsInstanceDescription">> => [string()], %% <<"nsInstanceName">> => [string()], %% <<"nsState">> => list(any()), %% <<"nsdId">> => string(), %% <<"nsdInfoId">> => string(), %% <<"tags">> => map() %% } -type get_sol_network_instance_output() :: #{binary() => any()}. %% Example: %% tag_resource_output() :: #{} -type tag_resource_output() :: #{}. %% Example: %% modify_vnf_info_metadata() :: #{ %% <<"vnfConfigurableProperties">> => [any()], %% <<"vnfInstanceId">> => string() %% } -type modify_vnf_info_metadata() :: #{binary() => any()}. %% Example: %% internal_server_exception() :: #{ %% <<"message">> => [string()] %% } -type internal_server_exception() :: #{binary() => any()}. %% Example: %% get_sol_function_package_descriptor_output() :: #{ %% <<"contentType">> => list(any()), %% <<"vnfd">> => [binary()] %% } -type get_sol_function_package_descriptor_output() :: #{binary() => any()}. %% Example: %% get_sol_network_instance_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()] %% } -type get_sol_network_instance_metadata() :: #{binary() => any()}. %% Example: %% get_sol_network_package_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()], %% <<"nsd">> => network_artifact_meta() %% } -type get_sol_network_package_metadata() :: #{binary() => any()}. %% Example: %% get_sol_network_operation_input() :: #{} -type get_sol_network_operation_input() :: #{}. %% Example: %% update_sol_network_package_input() :: #{ %% <<"nsdOperationalState">> := list(any()) %% } -type update_sol_network_package_input() :: #{binary() => any()}. %% Example: %% create_sol_function_package_input() :: #{ %% <<"tags">> => map() %% } -type create_sol_function_package_input() :: #{binary() => any()}. %% Example: %% update_sol_function_package_output() :: #{ %% <<"operationalState">> => list(any()) %% } -type update_sol_function_package_output() :: #{binary() => any()}. %% Example: %% access_denied_exception() :: #{ %% <<"message">> => [string()] %% } -type access_denied_exception() :: #{binary() => any()}. %% Example: %% get_sol_network_operation_task_details() :: #{ %% <<"taskContext">> => map(), %% <<"taskEndTime">> => [non_neg_integer()], %% <<"taskErrorDetails">> => error_info(), %% <<"taskName">> => [string()], %% <<"taskStartTime">> => [non_neg_integer()], %% <<"taskStatus">> => list(any()) %% } -type get_sol_network_operation_task_details() :: #{binary() => any()}. %% Example: %% untag_resource_input() :: #{ %% <<"tagKeys">> := list(string()) %% } -type untag_resource_input() :: #{binary() => any()}. %% Example: %% get_sol_network_package_content_input() :: #{ %% <<"accept">> := list(any()) %% } -type get_sol_network_package_content_input() :: #{binary() => any()}. %% Example: %% delete_sol_network_package_input() :: #{} -type delete_sol_network_package_input() :: #{}. %% Example: %% get_sol_function_package_input() :: #{} -type get_sol_function_package_input() :: #{}. %% Example: %% validation_exception() :: #{ %% <<"message">> => [string()] %% } -type validation_exception() :: #{binary() => any()}. %% Example: %% list_tags_for_resource_input() :: #{} -type list_tags_for_resource_input() :: #{}. %% Example: %% validate_sol_network_package_content_output() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"metadata">> => validate_sol_network_package_content_metadata(), %% <<"nsdId">> => string(), %% <<"nsdName">> => [string()], %% <<"nsdVersion">> => [string()], %% <<"vnfPkgIds">> => list(string()) %% } -type validate_sol_network_package_content_output() :: #{binary() => any()}. %% Example: %% untag_resource_output() :: #{} -type untag_resource_output() :: #{}. %% Example: %% get_sol_function_package_content_input() :: #{ %% <<"accept">> := list(any()) %% } -type get_sol_function_package_content_input() :: #{binary() => any()}. %% Example: %% get_sol_function_package_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()], %% <<"vnfd">> => function_artifact_meta() %% } -type get_sol_function_package_metadata() :: #{binary() => any()}. %% Example: %% update_sol_network_instance_input() :: #{ %% <<"modifyVnfInfoData">> => update_sol_network_modify(), %% <<"tags">> => map(), %% <<"updateNs">> => update_sol_network_service_data(), %% <<"updateType">> := list(any()) %% } -type update_sol_network_instance_input() :: #{binary() => any()}. %% Example: %% throttling_exception() :: #{ %% <<"message">> => [string()] %% } -type throttling_exception() :: #{binary() => any()}. %% Example: %% instantiate_sol_network_instance_output() :: #{ %% <<"nsLcmOpOccId">> => string(), %% <<"tags">> => map() %% } -type instantiate_sol_network_instance_output() :: #{binary() => any()}. %% Example: %% tosca_override() :: #{ %% <<"defaultValue">> => [string()], %% <<"name">> => [string()] %% } -type tosca_override() :: #{binary() => any()}. %% Example: %% get_sol_network_operation_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"instantiateMetadata">> => instantiate_metadata(), %% <<"lastModified">> => [non_neg_integer()], %% <<"modifyVnfInfoMetadata">> => modify_vnf_info_metadata(), %% <<"updateNsMetadata">> => update_ns_metadata() %% } -type get_sol_network_operation_metadata() :: #{binary() => any()}. %% Example: %% list_sol_network_operations_output() :: #{ %% <<"networkOperations">> => list(list_sol_network_operations_info()), %% <<"nextToken">> => string() %% } -type list_sol_network_operations_output() :: #{binary() => any()}. %% Example: %% list_sol_function_package_metadata() :: #{ %% <<"createdAt">> => [non_neg_integer()], %% <<"lastModified">> => [non_neg_integer()] %% } -type list_sol_function_package_metadata() :: #{binary() => any()}. %% Example: %% get_sol_function_instance_input() :: #{} -type get_sol_function_instance_input() :: #{}. %% Example: %% get_sol_vnfc_resource_info_metadata() :: #{ %% <<"cluster">> => [string()], %% <<"helmChart">> => [string()], %% <<"nodeGroup">> => [string()] %% } -type get_sol_vnfc_resource_info_metadata() :: #{binary() => any()}. %% Example: %% get_sol_network_instance_input() :: #{} -type get_sol_network_instance_input() :: #{}. %% Example: %% instantiate_metadata() :: #{ %% <<"additionalParamsForNs">> => [any()], %% <<"nsdInfoId">> => string() %% } -type instantiate_metadata() :: #{binary() => any()}. %% Example: %% list_sol_network_instances_output() :: #{ %% <<"networkInstances">> => list(list_sol_network_instance_info()), %% <<"nextToken">> => string() %% } -type list_sol_network_instances_output() :: #{binary() => any()}. %% Example: %% create_sol_network_instance_input() :: #{ %% <<"nsDescription">> => [string()], %% <<"nsName">> := [string()], %% <<"nsdInfoId">> := string(), %% <<"tags">> => map() %% } -type create_sol_network_instance_input() :: #{binary() => any()}. %% Example: %% list_sol_network_instance_info() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"metadata">> => list_sol_network_instance_metadata(), %% <<"nsInstanceDescription">> => [string()], %% <<"nsInstanceName">> => [string()], %% <<"nsState">> => list(any()), %% <<"nsdId">> => string(), %% <<"nsdInfoId">> => string() %% } -type list_sol_network_instance_info() :: #{binary() => any()}. %% Example: %% list_sol_function_package_info() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"metadata">> => list_sol_function_package_metadata(), %% <<"onboardingState">> => list(any()), %% <<"operationalState">> => list(any()), %% <<"usageState">> => list(any()), %% <<"vnfProductName">> => [string()], %% <<"vnfProvider">> => [string()], %% <<"vnfdId">> => [string()], %% <<"vnfdVersion">> => [string()] %% } -type list_sol_function_package_info() :: #{binary() => any()}. %% Example: %% function_artifact_meta() :: #{ %% <<"overrides">> => list(tosca_override()) %% } -type function_artifact_meta() :: #{binary() => any()}. %% Example: %% validate_sol_function_package_content_input() :: #{ %% <<"contentType">> => list(any()), %% <<"file">> := binary() %% } -type validate_sol_function_package_content_input() :: #{binary() => any()}. %% Example: %% validate_sol_function_package_content_output() :: #{ %% <<"id">> => string(), %% <<"metadata">> => validate_sol_function_package_content_metadata(), %% <<"vnfProductName">> => [string()], %% <<"vnfProvider">> => [string()], %% <<"vnfdId">> => string(), %% <<"vnfdVersion">> => [string()] %% } -type validate_sol_function_package_content_output() :: #{binary() => any()}. %% Example: %% get_sol_network_package_descriptor_output() :: #{ %% <<"contentType">> => list(any()), %% <<"nsd">> => [binary()] %% } -type get_sol_network_package_descriptor_output() :: #{binary() => any()}. %% Example: %% validate_sol_function_package_content_metadata() :: #{ %% <<"vnfd">> => function_artifact_meta() %% } -type validate_sol_function_package_content_metadata() :: #{binary() => any()}. %% Example: %% get_sol_function_package_content_output() :: #{ %% <<"contentType">> => list(any()), %% <<"packageContent">> => [binary()] %% } -type get_sol_function_package_content_output() :: #{binary() => any()}. %% Example: %% get_sol_network_operation_output() :: #{ %% <<"arn">> => string(), %% <<"error">> => problem_details(), %% <<"id">> => string(), %% <<"lcmOperationType">> => list(any()), %% <<"metadata">> => get_sol_network_operation_metadata(), %% <<"nsInstanceId">> => string(), %% <<"operationState">> => list(any()), %% <<"tags">> => map(), %% <<"tasks">> => list(get_sol_network_operation_task_details()), %% <<"updateType">> => list(any()) %% } -type get_sol_network_operation_output() :: #{binary() => any()}. %% Example: %% list_sol_function_instance_info() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"instantiatedVnfInfo">> => get_sol_instantiated_vnf_info(), %% <<"instantiationState">> => list(any()), %% <<"metadata">> => list_sol_function_instance_metadata(), %% <<"nsInstanceId">> => string(), %% <<"vnfPkgId">> => string(), %% <<"vnfPkgName">> => [string()] %% } -type list_sol_function_instance_info() :: #{binary() => any()}. %% Example: %% lcm_operation_info() :: #{ %% <<"nsLcmOpOccId">> => string() %% } -type lcm_operation_info() :: #{binary() => any()}. %% Example: %% update_sol_function_package_input() :: #{ %% <<"operationalState">> := list(any()) %% } -type update_sol_function_package_input() :: #{binary() => any()}. %% Example: %% list_sol_function_instances_output() :: #{ %% <<"functionInstances">> => list(list_sol_function_instance_info()), %% <<"nextToken">> => string() %% } -type list_sol_function_instances_output() :: #{binary() => any()}. %% Example: %% list_sol_network_package_info() :: #{ %% <<"arn">> => string(), %% <<"id">> => string(), %% <<"metadata">> => list_sol_network_package_metadata(), %% <<"nsdDesigner">> => [string()], %% <<"nsdId">> => [string()], %% <<"nsdInvariantId">> => [string()], %% <<"nsdName">> => [string()], %% <<"nsdOnboardingState">> => list(any()), %% <<"nsdOperationalState">> => list(any()), %% <<"nsdUsageState">> => list(any()), %% <<"nsdVersion">> => [string()], %% <<"vnfPkgIds">> => list(string()) %% } -type list_sol_network_package_info() :: #{binary() => any()}. %% Example: %% list_sol_function_packages_input() :: #{ %% <<"maxResults">> => [integer()], %% <<"nextToken">> => string() %% } -type list_sol_function_packages_input() :: #{binary() => any()}. %% Example: %% network_artifact_meta() :: #{ %% <<"overrides">> => list(tosca_override()) %% } -type network_artifact_meta() :: #{binary() => any()}. -type cancel_sol_network_operation_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type create_sol_function_package_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | service_quota_exceeded_exception(). -type create_sol_network_instance_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | service_quota_exceeded_exception() | resource_not_found_exception(). -type create_sol_network_package_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | service_quota_exceeded_exception(). -type delete_sol_function_package_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type delete_sol_network_instance_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type delete_sol_network_package_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_function_instance_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_function_package_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_function_package_content_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_function_package_descriptor_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_network_instance_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_network_operation_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_network_package_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_network_package_content_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type get_sol_network_package_descriptor_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type instantiate_sol_network_instance_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | service_quota_exceeded_exception() | resource_not_found_exception(). -type list_sol_function_instances_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception(). -type list_sol_function_packages_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception(). -type list_sol_network_instances_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception(). -type list_sol_network_operations_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception(). -type list_sol_network_packages_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception(). -type list_tags_for_resource_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type put_sol_function_package_content_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type put_sol_network_package_content_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type tag_resource_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type terminate_sol_network_instance_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | service_quota_exceeded_exception() | resource_not_found_exception(). -type untag_resource_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type update_sol_function_package_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type update_sol_network_instance_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | service_quota_exceeded_exception() | resource_not_found_exception(). -type update_sol_network_package_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type validate_sol_function_package_content_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). -type validate_sol_network_package_content_errors() :: throttling_exception() | validation_exception() | access_denied_exception() | internal_server_exception() | resource_not_found_exception(). %%==================================================================== %% API %%==================================================================== %% @doc Cancels a network operation. %% %% A network operation is any operation that is done to your network, such as %% network instance instantiation or termination. -spec cancel_sol_network_operation(aws_client:aws_client(), binary() | list(), cancel_sol_network_operation_input()) -> {ok, undefined, tuple()} | {error, any()} | {error, cancel_sol_network_operation_errors(), tuple()}. cancel_sol_network_operation(Client, NsLcmOpOccId, Input) -> cancel_sol_network_operation(Client, NsLcmOpOccId, Input, []). -spec cancel_sol_network_operation(aws_client:aws_client(), binary() | list(), cancel_sol_network_operation_input(), proplists:proplist()) -> {ok, undefined, tuple()} | {error, any()} | {error, cancel_sol_network_operation_errors(), tuple()}. cancel_sol_network_operation(Client, NsLcmOpOccId, Input0, Options0) -> Method = post, Path = ["/sol/nslcm/v1/ns_lcm_op_occs/", aws_util:encode_uri(NsLcmOpOccId), "/cancel"], SuccessStatusCode = 202, {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 function package. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network. For more %% information, see Function packages: %% https://docs.aws.amazon.com/tnb/latest/ug/function-packages.html in the %% Amazon Web Services Telco Network Builder User Guide. %% %% Creating a function package is the first step for creating a network in %% AWS TNB. This %% request creates an empty container with an ID. The next step is to upload %% the actual CSAR %% zip file into that empty container. To upload function package content, %% see PutSolFunctionPackageContent: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_PutSolFunctionPackageContent.html. -spec create_sol_function_package(aws_client:aws_client(), create_sol_function_package_input()) -> {ok, create_sol_function_package_output(), tuple()} | {error, any()} | {error, create_sol_function_package_errors(), tuple()}. create_sol_function_package(Client, Input) -> create_sol_function_package(Client, Input, []). -spec create_sol_function_package(aws_client:aws_client(), create_sol_function_package_input(), proplists:proplist()) -> {ok, create_sol_function_package_output(), tuple()} | {error, any()} | {error, create_sol_function_package_errors(), tuple()}. create_sol_function_package(Client, Input0, Options0) -> Method = post, Path = ["/sol/vnfpkgm/v1/vnf_packages"], SuccessStatusCode = 201, {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 network instance. %% %% A network instance is a single network created in Amazon Web Services TNB %% that can be deployed and on which life-cycle operations (like terminate, %% update, and delete) can be performed. Creating a network instance is the %% third step after creating a network %% package. For more information about network instances, Network instances: %% https://docs.aws.amazon.com/tnb/latest/ug/network-instances.html in the %% Amazon Web Services Telco Network Builder User Guide. %% %% Once you create a network instance, you can instantiate it. To instantiate %% a network, %% see InstantiateSolNetworkInstance: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_InstantiateSolNetworkInstance.html. -spec create_sol_network_instance(aws_client:aws_client(), create_sol_network_instance_input()) -> {ok, create_sol_network_instance_output(), tuple()} | {error, any()} | {error, create_sol_network_instance_errors(), tuple()}. create_sol_network_instance(Client, Input) -> create_sol_network_instance(Client, Input, []). -spec create_sol_network_instance(aws_client:aws_client(), create_sol_network_instance_input(), proplists:proplist()) -> {ok, create_sol_network_instance_output(), tuple()} | {error, any()} | {error, create_sol_network_instance_errors(), tuple()}. create_sol_network_instance(Client, Input0, Options0) -> Method = post, Path = ["/sol/nslcm/v1/ns_instances"], SuccessStatusCode = 201, {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 network package. %% %% A network package is a .zip file in CSAR (Cloud Service Archive) format %% defines the function packages you want to deploy and the Amazon Web %% Services infrastructure you want to deploy them on. For more information, %% see Network instances: %% https://docs.aws.amazon.com/tnb/latest/ug/network-instances.html in the %% Amazon Web Services Telco Network Builder User Guide. %% %% A network package consists of a network service descriptor (NSD) file %% (required) and any %% additional files (optional), such as scripts specific to your needs. For %% example, if you %% have multiple function packages in your network package, you can use the %% NSD to define %% which network functions should run in certain VPCs, subnets, or EKS %% clusters. %% %% This request creates an empty network package container with an ID. Once %% you create a %% network package, you can upload the network package content using %% PutSolNetworkPackageContent: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_PutSolNetworkPackageContent.html. -spec create_sol_network_package(aws_client:aws_client(), create_sol_network_package_input()) -> {ok, create_sol_network_package_output(), tuple()} | {error, any()} | {error, create_sol_network_package_errors(), tuple()}. create_sol_network_package(Client, Input) -> create_sol_network_package(Client, Input, []). -spec create_sol_network_package(aws_client:aws_client(), create_sol_network_package_input(), proplists:proplist()) -> {ok, create_sol_network_package_output(), tuple()} | {error, any()} | {error, create_sol_network_package_errors(), tuple()}. create_sol_network_package(Client, Input0, Options0) -> Method = post, Path = ["/sol/nsd/v1/ns_descriptors"], SuccessStatusCode = 201, {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 function package. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network. %% %% To delete a function package, the package must be in a disabled state. To %% disable a %% function package, see UpdateSolFunctionPackage: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_UpdateSolFunctionPackage.html. -spec delete_sol_function_package(aws_client:aws_client(), binary() | list(), delete_sol_function_package_input()) -> {ok, undefined, tuple()} | {error, any()} | {error, delete_sol_function_package_errors(), tuple()}. delete_sol_function_package(Client, VnfPkgId, Input) -> delete_sol_function_package(Client, VnfPkgId, Input, []). -spec delete_sol_function_package(aws_client:aws_client(), binary() | list(), delete_sol_function_package_input(), proplists:proplist()) -> {ok, undefined, tuple()} | {error, any()} | {error, delete_sol_function_package_errors(), tuple()}. delete_sol_function_package(Client, VnfPkgId, Input0, Options0) -> Method = delete, Path = ["/sol/vnfpkgm/v1/vnf_packages/", aws_util:encode_uri(VnfPkgId), ""], SuccessStatusCode = 204, {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 network instance. %% %% A network instance is a single network created in Amazon Web Services TNB %% that can be deployed and on which life-cycle operations (like terminate, %% update, and delete) can be performed. %% %% To delete a network instance, the instance must be in a stopped or %% terminated state. To %% terminate a network instance, see TerminateSolNetworkInstance: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_TerminateSolNetworkInstance.html. -spec delete_sol_network_instance(aws_client:aws_client(), binary() | list(), delete_sol_network_instance_input()) -> {ok, undefined, tuple()} | {error, any()} | {error, delete_sol_network_instance_errors(), tuple()}. delete_sol_network_instance(Client, NsInstanceId, Input) -> delete_sol_network_instance(Client, NsInstanceId, Input, []). -spec delete_sol_network_instance(aws_client:aws_client(), binary() | list(), delete_sol_network_instance_input(), proplists:proplist()) -> {ok, undefined, tuple()} | {error, any()} | {error, delete_sol_network_instance_errors(), tuple()}. delete_sol_network_instance(Client, NsInstanceId, Input0, Options0) -> Method = delete, Path = ["/sol/nslcm/v1/ns_instances/", aws_util:encode_uri(NsInstanceId), ""], SuccessStatusCode = 204, {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 network package. %% %% A network package is a .zip file in CSAR (Cloud Service Archive) format %% defines the function packages you want to deploy and the Amazon Web %% Services infrastructure you want to deploy them on. %% %% To delete a network package, the package must be in a disable state. To %% disable a %% network package, see UpdateSolNetworkPackage: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_UpdateSolNetworkPackage.html. -spec delete_sol_network_package(aws_client:aws_client(), binary() | list(), delete_sol_network_package_input()) -> {ok, undefined, tuple()} | {error, any()} | {error, delete_sol_network_package_errors(), tuple()}. delete_sol_network_package(Client, NsdInfoId, Input) -> delete_sol_network_package(Client, NsdInfoId, Input, []). -spec delete_sol_network_package(aws_client:aws_client(), binary() | list(), delete_sol_network_package_input(), proplists:proplist()) -> {ok, undefined, tuple()} | {error, any()} | {error, delete_sol_network_package_errors(), tuple()}. delete_sol_network_package(Client, NsdInfoId, Input0, Options0) -> Method = delete, Path = ["/sol/nsd/v1/ns_descriptors/", aws_util:encode_uri(NsdInfoId), ""], SuccessStatusCode = 204, {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 Gets the details of a network function instance, including the %% instantiation state and %% metadata from the function package descriptor in the network function %% package. %% %% A network function instance is a function in a function package . -spec get_sol_function_instance(aws_client:aws_client(), binary() | list()) -> {ok, get_sol_function_instance_output(), tuple()} | {error, any()} | {error, get_sol_function_instance_errors(), tuple()}. get_sol_function_instance(Client, VnfInstanceId) when is_map(Client) -> get_sol_function_instance(Client, VnfInstanceId, #{}, #{}). -spec get_sol_function_instance(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, get_sol_function_instance_output(), tuple()} | {error, any()} | {error, get_sol_function_instance_errors(), tuple()}. get_sol_function_instance(Client, VnfInstanceId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_function_instance(Client, VnfInstanceId, QueryMap, HeadersMap, []). -spec get_sol_function_instance(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_function_instance_output(), tuple()} | {error, any()} | {error, get_sol_function_instance_errors(), tuple()}. get_sol_function_instance(Client, VnfInstanceId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/vnflcm/v1/vnf_instances/", aws_util:encode_uri(VnfInstanceId), ""], 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 Gets the details of an individual function package, such as the %% operational state and %% whether the package is in use. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network.. -spec get_sol_function_package(aws_client:aws_client(), binary() | list()) -> {ok, get_sol_function_package_output(), tuple()} | {error, any()} | {error, get_sol_function_package_errors(), tuple()}. get_sol_function_package(Client, VnfPkgId) when is_map(Client) -> get_sol_function_package(Client, VnfPkgId, #{}, #{}). -spec get_sol_function_package(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, get_sol_function_package_output(), tuple()} | {error, any()} | {error, get_sol_function_package_errors(), tuple()}. get_sol_function_package(Client, VnfPkgId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_function_package(Client, VnfPkgId, QueryMap, HeadersMap, []). -spec get_sol_function_package(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_function_package_output(), tuple()} | {error, any()} | {error, get_sol_function_package_errors(), tuple()}. get_sol_function_package(Client, VnfPkgId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/vnfpkgm/v1/vnf_packages/", aws_util:encode_uri(VnfPkgId), ""], 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 Gets the contents of a function package. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network. -spec get_sol_function_package_content(aws_client:aws_client(), binary() | list(), binary() | list()) -> {ok, get_sol_function_package_content_output(), tuple()} | {error, any()} | {error, get_sol_function_package_content_errors(), tuple()}. get_sol_function_package_content(Client, VnfPkgId, Accept) when is_map(Client) -> get_sol_function_package_content(Client, VnfPkgId, Accept, #{}, #{}). -spec get_sol_function_package_content(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map()) -> {ok, get_sol_function_package_content_output(), tuple()} | {error, any()} | {error, get_sol_function_package_content_errors(), tuple()}. get_sol_function_package_content(Client, VnfPkgId, Accept, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_function_package_content(Client, VnfPkgId, Accept, QueryMap, HeadersMap, []). -spec get_sol_function_package_content(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_function_package_content_output(), tuple()} | {error, any()} | {error, get_sol_function_package_content_errors(), tuple()}. get_sol_function_package_content(Client, VnfPkgId, Accept, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/vnfpkgm/v1/vnf_packages/", aws_util:encode_uri(VnfPkgId), "/package_content"], 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], Headers0 = [ {<<"Accept">>, Accept} ], Headers = [H || {_, V} = H <- Headers0, V =/= undefined], Query_ = [], case request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode) of {ok, Body0, {_, ResponseHeaders, _} = Response} -> ResponseHeadersParams = [ {<<"Content-Type">>, <<"contentType">>} ], FoldFun = fun({Name_, Key_}, Acc_) -> case lists:keyfind(Name_, 1, ResponseHeaders) of false -> Acc_; {_, Value_} -> Acc_#{Key_ => Value_} end end, Body = lists:foldl(FoldFun, Body0, ResponseHeadersParams), {ok, Body, Response}; Result -> Result end. %% @doc Gets a function package descriptor in a function package. %% %% A function package descriptor is a .yaml file in a function package that %% uses the TOSCA standard to describe how the network function in the %% function package should run on your network. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network. -spec get_sol_function_package_descriptor(aws_client:aws_client(), binary() | list(), binary() | list()) -> {ok, get_sol_function_package_descriptor_output(), tuple()} | {error, any()} | {error, get_sol_function_package_descriptor_errors(), tuple()}. get_sol_function_package_descriptor(Client, VnfPkgId, Accept) when is_map(Client) -> get_sol_function_package_descriptor(Client, VnfPkgId, Accept, #{}, #{}). -spec get_sol_function_package_descriptor(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map()) -> {ok, get_sol_function_package_descriptor_output(), tuple()} | {error, any()} | {error, get_sol_function_package_descriptor_errors(), tuple()}. get_sol_function_package_descriptor(Client, VnfPkgId, Accept, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_function_package_descriptor(Client, VnfPkgId, Accept, QueryMap, HeadersMap, []). -spec get_sol_function_package_descriptor(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_function_package_descriptor_output(), tuple()} | {error, any()} | {error, get_sol_function_package_descriptor_errors(), tuple()}. get_sol_function_package_descriptor(Client, VnfPkgId, Accept, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/vnfpkgm/v1/vnf_packages/", aws_util:encode_uri(VnfPkgId), "/vnfd"], 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], Headers0 = [ {<<"Accept">>, Accept} ], Headers = [H || {_, V} = H <- Headers0, V =/= undefined], Query_ = [], case request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode) of {ok, Body0, {_, ResponseHeaders, _} = Response} -> ResponseHeadersParams = [ {<<"Content-Type">>, <<"contentType">>} ], FoldFun = fun({Name_, Key_}, Acc_) -> case lists:keyfind(Name_, 1, ResponseHeaders) of false -> Acc_; {_, Value_} -> Acc_#{Key_ => Value_} end end, Body = lists:foldl(FoldFun, Body0, ResponseHeadersParams), {ok, Body, Response}; Result -> Result end. %% @doc Gets the details of the network instance. %% %% A network instance is a single network created in Amazon Web Services TNB %% that can be deployed and on which life-cycle operations (like terminate, %% update, and delete) can be performed. -spec get_sol_network_instance(aws_client:aws_client(), binary() | list()) -> {ok, get_sol_network_instance_output(), tuple()} | {error, any()} | {error, get_sol_network_instance_errors(), tuple()}. get_sol_network_instance(Client, NsInstanceId) when is_map(Client) -> get_sol_network_instance(Client, NsInstanceId, #{}, #{}). -spec get_sol_network_instance(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, get_sol_network_instance_output(), tuple()} | {error, any()} | {error, get_sol_network_instance_errors(), tuple()}. get_sol_network_instance(Client, NsInstanceId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_network_instance(Client, NsInstanceId, QueryMap, HeadersMap, []). -spec get_sol_network_instance(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_network_instance_output(), tuple()} | {error, any()} | {error, get_sol_network_instance_errors(), tuple()}. get_sol_network_instance(Client, NsInstanceId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/nslcm/v1/ns_instances/", aws_util:encode_uri(NsInstanceId), ""], 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 Gets the details of a network operation, including the tasks involved %% in the network %% operation and the status of the tasks. %% %% A network operation is any operation that is done to your network, such as %% network instance instantiation or termination. -spec get_sol_network_operation(aws_client:aws_client(), binary() | list()) -> {ok, get_sol_network_operation_output(), tuple()} | {error, any()} | {error, get_sol_network_operation_errors(), tuple()}. get_sol_network_operation(Client, NsLcmOpOccId) when is_map(Client) -> get_sol_network_operation(Client, NsLcmOpOccId, #{}, #{}). -spec get_sol_network_operation(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, get_sol_network_operation_output(), tuple()} | {error, any()} | {error, get_sol_network_operation_errors(), tuple()}. get_sol_network_operation(Client, NsLcmOpOccId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_network_operation(Client, NsLcmOpOccId, QueryMap, HeadersMap, []). -spec get_sol_network_operation(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_network_operation_output(), tuple()} | {error, any()} | {error, get_sol_network_operation_errors(), tuple()}. get_sol_network_operation(Client, NsLcmOpOccId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/nslcm/v1/ns_lcm_op_occs/", aws_util:encode_uri(NsLcmOpOccId), ""], 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 Gets the details of a network package. %% %% A network package is a .zip file in CSAR (Cloud Service Archive) format %% defines the function packages you want to deploy and the Amazon Web %% Services infrastructure you want to deploy them on. -spec get_sol_network_package(aws_client:aws_client(), binary() | list()) -> {ok, get_sol_network_package_output(), tuple()} | {error, any()} | {error, get_sol_network_package_errors(), tuple()}. get_sol_network_package(Client, NsdInfoId) when is_map(Client) -> get_sol_network_package(Client, NsdInfoId, #{}, #{}). -spec get_sol_network_package(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, get_sol_network_package_output(), tuple()} | {error, any()} | {error, get_sol_network_package_errors(), tuple()}. get_sol_network_package(Client, NsdInfoId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_network_package(Client, NsdInfoId, QueryMap, HeadersMap, []). -spec get_sol_network_package(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_network_package_output(), tuple()} | {error, any()} | {error, get_sol_network_package_errors(), tuple()}. get_sol_network_package(Client, NsdInfoId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/nsd/v1/ns_descriptors/", aws_util:encode_uri(NsdInfoId), ""], 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 Gets the contents of a network package. %% %% A network package is a .zip file in CSAR (Cloud Service Archive) format %% defines the function packages you want to deploy and the Amazon Web %% Services infrastructure you want to deploy them on. -spec get_sol_network_package_content(aws_client:aws_client(), binary() | list(), binary() | list()) -> {ok, get_sol_network_package_content_output(), tuple()} | {error, any()} | {error, get_sol_network_package_content_errors(), tuple()}. get_sol_network_package_content(Client, NsdInfoId, Accept) when is_map(Client) -> get_sol_network_package_content(Client, NsdInfoId, Accept, #{}, #{}). -spec get_sol_network_package_content(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map()) -> {ok, get_sol_network_package_content_output(), tuple()} | {error, any()} | {error, get_sol_network_package_content_errors(), tuple()}. get_sol_network_package_content(Client, NsdInfoId, Accept, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_network_package_content(Client, NsdInfoId, Accept, QueryMap, HeadersMap, []). -spec get_sol_network_package_content(aws_client:aws_client(), binary() | list(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_network_package_content_output(), tuple()} | {error, any()} | {error, get_sol_network_package_content_errors(), tuple()}. get_sol_network_package_content(Client, NsdInfoId, Accept, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/nsd/v1/ns_descriptors/", aws_util:encode_uri(NsdInfoId), "/nsd_content"], 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], Headers0 = [ {<<"Accept">>, Accept} ], Headers = [H || {_, V} = H <- Headers0, V =/= undefined], Query_ = [], case request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode) of {ok, Body0, {_, ResponseHeaders, _} = Response} -> ResponseHeadersParams = [ {<<"Content-Type">>, <<"contentType">>} ], FoldFun = fun({Name_, Key_}, Acc_) -> case lists:keyfind(Name_, 1, ResponseHeaders) of false -> Acc_; {_, Value_} -> Acc_#{Key_ => Value_} end end, Body = lists:foldl(FoldFun, Body0, ResponseHeadersParams), {ok, Body, Response}; Result -> Result end. %% @doc Gets the content of the network service descriptor. %% %% A network service descriptor is a .yaml file in a network package that %% uses the TOSCA standard to describe the network functions you want to %% deploy and the Amazon Web Services infrastructure you want to deploy the %% network functions on. -spec get_sol_network_package_descriptor(aws_client:aws_client(), binary() | list()) -> {ok, get_sol_network_package_descriptor_output(), tuple()} | {error, any()} | {error, get_sol_network_package_descriptor_errors(), tuple()}. get_sol_network_package_descriptor(Client, NsdInfoId) when is_map(Client) -> get_sol_network_package_descriptor(Client, NsdInfoId, #{}, #{}). -spec get_sol_network_package_descriptor(aws_client:aws_client(), binary() | list(), map(), map()) -> {ok, get_sol_network_package_descriptor_output(), tuple()} | {error, any()} | {error, get_sol_network_package_descriptor_errors(), tuple()}. get_sol_network_package_descriptor(Client, NsdInfoId, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> get_sol_network_package_descriptor(Client, NsdInfoId, QueryMap, HeadersMap, []). -spec get_sol_network_package_descriptor(aws_client:aws_client(), binary() | list(), map(), map(), proplists:proplist()) -> {ok, get_sol_network_package_descriptor_output(), tuple()} | {error, any()} | {error, get_sol_network_package_descriptor_errors(), tuple()}. get_sol_network_package_descriptor(Client, NsdInfoId, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/nsd/v1/ns_descriptors/", aws_util:encode_uri(NsdInfoId), "/nsd"], 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_ = [], case request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode) of {ok, Body0, {_, ResponseHeaders, _} = Response} -> ResponseHeadersParams = [ {<<"Content-Type">>, <<"contentType">>} ], FoldFun = fun({Name_, Key_}, Acc_) -> case lists:keyfind(Name_, 1, ResponseHeaders) of false -> Acc_; {_, Value_} -> Acc_#{Key_ => Value_} end end, Body = lists:foldl(FoldFun, Body0, ResponseHeadersParams), {ok, Body, Response}; Result -> Result end. %% @doc Instantiates a network instance. %% %% A network instance is a single network created in Amazon Web Services TNB %% that can be deployed and on which life-cycle operations (like terminate, %% update, and delete) can be performed. %% %% Before you can instantiate a network instance, you have to create a %% network instance. %% For more information, see CreateSolNetworkInstance: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_CreateSolNetworkInstance.html. -spec instantiate_sol_network_instance(aws_client:aws_client(), binary() | list(), instantiate_sol_network_instance_input()) -> {ok, instantiate_sol_network_instance_output(), tuple()} | {error, any()} | {error, instantiate_sol_network_instance_errors(), tuple()}. instantiate_sol_network_instance(Client, NsInstanceId, Input) -> instantiate_sol_network_instance(Client, NsInstanceId, Input, []). -spec instantiate_sol_network_instance(aws_client:aws_client(), binary() | list(), instantiate_sol_network_instance_input(), proplists:proplist()) -> {ok, instantiate_sol_network_instance_output(), tuple()} | {error, any()} | {error, instantiate_sol_network_instance_errors(), tuple()}. instantiate_sol_network_instance(Client, NsInstanceId, Input0, Options0) -> Method = post, Path = ["/sol/nslcm/v1/ns_instances/", aws_util:encode_uri(NsInstanceId), "/instantiate"], SuccessStatusCode = 201, {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 = [ {<<"dry_run">>, <<"dryRun">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Lists network function instances. %% %% A network function instance is a function in a function package . -spec list_sol_function_instances(aws_client:aws_client()) -> {ok, list_sol_function_instances_output(), tuple()} | {error, any()} | {error, list_sol_function_instances_errors(), tuple()}. list_sol_function_instances(Client) when is_map(Client) -> list_sol_function_instances(Client, #{}, #{}). -spec list_sol_function_instances(aws_client:aws_client(), map(), map()) -> {ok, list_sol_function_instances_output(), tuple()} | {error, any()} | {error, list_sol_function_instances_errors(), tuple()}. list_sol_function_instances(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_sol_function_instances(Client, QueryMap, HeadersMap, []). -spec list_sol_function_instances(aws_client:aws_client(), map(), map(), proplists:proplist()) -> {ok, list_sol_function_instances_output(), tuple()} | {error, any()} | {error, list_sol_function_instances_errors(), tuple()}. list_sol_function_instances(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/vnflcm/v1/vnf_instances"], 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_ = [ {<<"max_results">>, maps:get(<<"max_results">>, QueryMap, undefined)}, {<<"nextpage_opaque_marker">>, maps:get(<<"nextpage_opaque_marker">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists information about function packages. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network. -spec list_sol_function_packages(aws_client:aws_client()) -> {ok, list_sol_function_packages_output(), tuple()} | {error, any()} | {error, list_sol_function_packages_errors(), tuple()}. list_sol_function_packages(Client) when is_map(Client) -> list_sol_function_packages(Client, #{}, #{}). -spec list_sol_function_packages(aws_client:aws_client(), map(), map()) -> {ok, list_sol_function_packages_output(), tuple()} | {error, any()} | {error, list_sol_function_packages_errors(), tuple()}. list_sol_function_packages(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_sol_function_packages(Client, QueryMap, HeadersMap, []). -spec list_sol_function_packages(aws_client:aws_client(), map(), map(), proplists:proplist()) -> {ok, list_sol_function_packages_output(), tuple()} | {error, any()} | {error, list_sol_function_packages_errors(), tuple()}. list_sol_function_packages(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/vnfpkgm/v1/vnf_packages"], 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_ = [ {<<"max_results">>, maps:get(<<"max_results">>, QueryMap, undefined)}, {<<"nextpage_opaque_marker">>, maps:get(<<"nextpage_opaque_marker">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists your network instances. %% %% A network instance is a single network created in Amazon Web Services TNB %% that can be deployed and on which life-cycle operations (like terminate, %% update, and delete) can be performed. -spec list_sol_network_instances(aws_client:aws_client()) -> {ok, list_sol_network_instances_output(), tuple()} | {error, any()} | {error, list_sol_network_instances_errors(), tuple()}. list_sol_network_instances(Client) when is_map(Client) -> list_sol_network_instances(Client, #{}, #{}). -spec list_sol_network_instances(aws_client:aws_client(), map(), map()) -> {ok, list_sol_network_instances_output(), tuple()} | {error, any()} | {error, list_sol_network_instances_errors(), tuple()}. list_sol_network_instances(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_sol_network_instances(Client, QueryMap, HeadersMap, []). -spec list_sol_network_instances(aws_client:aws_client(), map(), map(), proplists:proplist()) -> {ok, list_sol_network_instances_output(), tuple()} | {error, any()} | {error, list_sol_network_instances_errors(), tuple()}. list_sol_network_instances(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/nslcm/v1/ns_instances"], 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_ = [ {<<"max_results">>, maps:get(<<"max_results">>, QueryMap, undefined)}, {<<"nextpage_opaque_marker">>, maps:get(<<"nextpage_opaque_marker">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists details for a network operation, including when the operation %% started and the %% status of the operation. %% %% A network operation is any operation that is done to your network, such as %% network instance instantiation or termination. -spec list_sol_network_operations(aws_client:aws_client()) -> {ok, list_sol_network_operations_output(), tuple()} | {error, any()} | {error, list_sol_network_operations_errors(), tuple()}. list_sol_network_operations(Client) when is_map(Client) -> list_sol_network_operations(Client, #{}, #{}). -spec list_sol_network_operations(aws_client:aws_client(), map(), map()) -> {ok, list_sol_network_operations_output(), tuple()} | {error, any()} | {error, list_sol_network_operations_errors(), tuple()}. list_sol_network_operations(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_sol_network_operations(Client, QueryMap, HeadersMap, []). -spec list_sol_network_operations(aws_client:aws_client(), map(), map(), proplists:proplist()) -> {ok, list_sol_network_operations_output(), tuple()} | {error, any()} | {error, list_sol_network_operations_errors(), tuple()}. list_sol_network_operations(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/nslcm/v1/ns_lcm_op_occs"], 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_ = [ {<<"max_results">>, maps:get(<<"max_results">>, QueryMap, undefined)}, {<<"nextpage_opaque_marker">>, maps:get(<<"nextpage_opaque_marker">>, QueryMap, undefined)}, {<<"nsInstanceId">>, maps:get(<<"nsInstanceId">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists network packages. %% %% A network package is a .zip file in CSAR (Cloud Service Archive) format %% defines the function packages you want to deploy and the Amazon Web %% Services infrastructure you want to deploy them on. -spec list_sol_network_packages(aws_client:aws_client()) -> {ok, list_sol_network_packages_output(), tuple()} | {error, any()} | {error, list_sol_network_packages_errors(), tuple()}. list_sol_network_packages(Client) when is_map(Client) -> list_sol_network_packages(Client, #{}, #{}). -spec list_sol_network_packages(aws_client:aws_client(), map(), map()) -> {ok, list_sol_network_packages_output(), tuple()} | {error, any()} | {error, list_sol_network_packages_errors(), tuple()}. list_sol_network_packages(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_sol_network_packages(Client, QueryMap, HeadersMap, []). -spec list_sol_network_packages(aws_client:aws_client(), map(), map(), proplists:proplist()) -> {ok, list_sol_network_packages_output(), tuple()} | {error, any()} | {error, list_sol_network_packages_errors(), tuple()}. list_sol_network_packages(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/sol/nsd/v1/ns_descriptors"], 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_ = [ {<<"max_results">>, maps:get(<<"max_results">>, QueryMap, undefined)}, {<<"nextpage_opaque_marker">>, maps:get(<<"nextpage_opaque_marker">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Lists tags for AWS TNB resources. -spec list_tags_for_resource(aws_client:aws_client(), binary() | list()) -> {ok, list_tags_for_resource_output(), 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_output(), 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_output(), 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 Uploads the contents of a function package. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network. -spec put_sol_function_package_content(aws_client:aws_client(), binary() | list(), put_sol_function_package_content_input()) -> {ok, put_sol_function_package_content_output(), tuple()} | {error, any()} | {error, put_sol_function_package_content_errors(), tuple()}. put_sol_function_package_content(Client, VnfPkgId, Input) -> put_sol_function_package_content(Client, VnfPkgId, Input, []). -spec put_sol_function_package_content(aws_client:aws_client(), binary() | list(), put_sol_function_package_content_input(), proplists:proplist()) -> {ok, put_sol_function_package_content_output(), tuple()} | {error, any()} | {error, put_sol_function_package_content_errors(), tuple()}. put_sol_function_package_content(Client, VnfPkgId, Input0, Options0) -> Method = put, Path = ["/sol/vnfpkgm/v1/vnf_packages/", aws_util:encode_uri(VnfPkgId), "/package_content"], SuccessStatusCode = 202, {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], HeadersMapping = [ {<<"Content-Type">>, <<"contentType">>} ], {Headers, Input1} = aws_request:build_headers(HeadersMapping, Input0), CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Uploads the contents of a network package. %% %% A network package is a .zip file in CSAR (Cloud Service Archive) format %% defines the function packages you want to deploy and the Amazon Web %% Services infrastructure you want to deploy them on. -spec put_sol_network_package_content(aws_client:aws_client(), binary() | list(), put_sol_network_package_content_input()) -> {ok, put_sol_network_package_content_output(), tuple()} | {error, any()} | {error, put_sol_network_package_content_errors(), tuple()}. put_sol_network_package_content(Client, NsdInfoId, Input) -> put_sol_network_package_content(Client, NsdInfoId, Input, []). -spec put_sol_network_package_content(aws_client:aws_client(), binary() | list(), put_sol_network_package_content_input(), proplists:proplist()) -> {ok, put_sol_network_package_content_output(), tuple()} | {error, any()} | {error, put_sol_network_package_content_errors(), tuple()}. put_sol_network_package_content(Client, NsdInfoId, Input0, Options0) -> Method = put, Path = ["/sol/nsd/v1/ns_descriptors/", aws_util:encode_uri(NsdInfoId), "/nsd_content"], 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], HeadersMapping = [ {<<"Content-Type">>, <<"contentType">>} ], {Headers, Input1} = aws_request:build_headers(HeadersMapping, Input0), CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Tags an AWS TNB resource. %% %% A tag is a label that you assign to an Amazon Web Services resource. Each %% tag consists of a key and an optional value. You can use tags to search %% and filter your resources or track your Amazon Web Services costs. -spec tag_resource(aws_client:aws_client(), binary() | list(), tag_resource_input()) -> {ok, tag_resource_output(), 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_input(), proplists:proplist()) -> {ok, tag_resource_output(), 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 Terminates a network instance. %% %% A network instance is a single network created in Amazon Web Services TNB %% that can be deployed and on which life-cycle operations (like terminate, %% update, and delete) can be performed. %% %% You must terminate a network instance before you can delete it. -spec terminate_sol_network_instance(aws_client:aws_client(), binary() | list(), terminate_sol_network_instance_input()) -> {ok, terminate_sol_network_instance_output(), tuple()} | {error, any()} | {error, terminate_sol_network_instance_errors(), tuple()}. terminate_sol_network_instance(Client, NsInstanceId, Input) -> terminate_sol_network_instance(Client, NsInstanceId, Input, []). -spec terminate_sol_network_instance(aws_client:aws_client(), binary() | list(), terminate_sol_network_instance_input(), proplists:proplist()) -> {ok, terminate_sol_network_instance_output(), tuple()} | {error, any()} | {error, terminate_sol_network_instance_errors(), tuple()}. terminate_sol_network_instance(Client, NsInstanceId, Input0, Options0) -> Method = post, Path = ["/sol/nslcm/v1/ns_instances/", aws_util:encode_uri(NsInstanceId), "/terminate"], SuccessStatusCode = 201, {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 Untags an AWS TNB resource. %% %% A tag is a label that you assign to an Amazon Web Services resource. Each %% tag consists of a key and an optional value. You can use tags to search %% and filter your resources or track your Amazon Web Services costs. -spec untag_resource(aws_client:aws_client(), binary() | list(), untag_resource_input()) -> {ok, untag_resource_output(), 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_input(), proplists:proplist()) -> {ok, untag_resource_output(), 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). %% @doc Updates the operational state of function package. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network. -spec update_sol_function_package(aws_client:aws_client(), binary() | list(), update_sol_function_package_input()) -> {ok, update_sol_function_package_output(), tuple()} | {error, any()} | {error, update_sol_function_package_errors(), tuple()}. update_sol_function_package(Client, VnfPkgId, Input) -> update_sol_function_package(Client, VnfPkgId, Input, []). -spec update_sol_function_package(aws_client:aws_client(), binary() | list(), update_sol_function_package_input(), proplists:proplist()) -> {ok, update_sol_function_package_output(), tuple()} | {error, any()} | {error, update_sol_function_package_errors(), tuple()}. update_sol_function_package(Client, VnfPkgId, Input0, Options0) -> Method = patch, Path = ["/sol/vnfpkgm/v1/vnf_packages/", aws_util:encode_uri(VnfPkgId), ""], 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 Update a network instance. %% %% A network instance is a single network created in Amazon Web Services TNB %% that can be deployed and on which life-cycle operations (like terminate, %% update, and delete) can be performed. %% %% Choose the updateType parameter to target the necessary update of the %% network instance. -spec update_sol_network_instance(aws_client:aws_client(), binary() | list(), update_sol_network_instance_input()) -> {ok, update_sol_network_instance_output(), tuple()} | {error, any()} | {error, update_sol_network_instance_errors(), tuple()}. update_sol_network_instance(Client, NsInstanceId, Input) -> update_sol_network_instance(Client, NsInstanceId, Input, []). -spec update_sol_network_instance(aws_client:aws_client(), binary() | list(), update_sol_network_instance_input(), proplists:proplist()) -> {ok, update_sol_network_instance_output(), tuple()} | {error, any()} | {error, update_sol_network_instance_errors(), tuple()}. update_sol_network_instance(Client, NsInstanceId, Input0, Options0) -> Method = post, Path = ["/sol/nslcm/v1/ns_instances/", aws_util:encode_uri(NsInstanceId), "/update"], SuccessStatusCode = 201, {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 Updates the operational state of a network package. %% %% A network package is a .zip file in CSAR (Cloud Service Archive) format %% defines the function packages you want to deploy and the Amazon Web %% Services infrastructure you want to deploy them on. %% %% A network service descriptor is a .yaml file in a network package that %% uses the TOSCA standard to describe the network functions you want to %% deploy and the Amazon Web Services infrastructure you want to deploy the %% network functions on. -spec update_sol_network_package(aws_client:aws_client(), binary() | list(), update_sol_network_package_input()) -> {ok, update_sol_network_package_output(), tuple()} | {error, any()} | {error, update_sol_network_package_errors(), tuple()}. update_sol_network_package(Client, NsdInfoId, Input) -> update_sol_network_package(Client, NsdInfoId, Input, []). -spec update_sol_network_package(aws_client:aws_client(), binary() | list(), update_sol_network_package_input(), proplists:proplist()) -> {ok, update_sol_network_package_output(), tuple()} | {error, any()} | {error, update_sol_network_package_errors(), tuple()}. update_sol_network_package(Client, NsdInfoId, Input0, Options0) -> Method = patch, Path = ["/sol/nsd/v1/ns_descriptors/", aws_util:encode_uri(NsdInfoId), ""], 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 Validates function package content. %% %% This can be used as a dry run before uploading %% function package content with PutSolFunctionPackageContent: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_PutSolFunctionPackageContent.html. %% %% A function package is a .zip file in CSAR (Cloud Service Archive) format %% that contains a network function (an ETSI standard telecommunication %% application) and function package descriptor that uses the TOSCA standard %% to describe how the network functions should run on your network. -spec validate_sol_function_package_content(aws_client:aws_client(), binary() | list(), validate_sol_function_package_content_input()) -> {ok, validate_sol_function_package_content_output(), tuple()} | {error, any()} | {error, validate_sol_function_package_content_errors(), tuple()}. validate_sol_function_package_content(Client, VnfPkgId, Input) -> validate_sol_function_package_content(Client, VnfPkgId, Input, []). -spec validate_sol_function_package_content(aws_client:aws_client(), binary() | list(), validate_sol_function_package_content_input(), proplists:proplist()) -> {ok, validate_sol_function_package_content_output(), tuple()} | {error, any()} | {error, validate_sol_function_package_content_errors(), tuple()}. validate_sol_function_package_content(Client, VnfPkgId, Input0, Options0) -> Method = put, Path = ["/sol/vnfpkgm/v1/vnf_packages/", aws_util:encode_uri(VnfPkgId), "/package_content/validate"], SuccessStatusCode = 202, {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], HeadersMapping = [ {<<"Content-Type">>, <<"contentType">>} ], {Headers, Input1} = aws_request:build_headers(HeadersMapping, Input0), CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Validates network package content. %% %% This can be used as a dry run before uploading %% network package content with PutSolNetworkPackageContent: %% https://docs.aws.amazon.com/tnb/latest/APIReference/API_PutSolNetworkPackageContent.html. %% %% A network package is a .zip file in CSAR (Cloud Service Archive) format %% defines the function packages you want to deploy and the Amazon Web %% Services infrastructure you want to deploy them on. -spec validate_sol_network_package_content(aws_client:aws_client(), binary() | list(), validate_sol_network_package_content_input()) -> {ok, validate_sol_network_package_content_output(), tuple()} | {error, any()} | {error, validate_sol_network_package_content_errors(), tuple()}. validate_sol_network_package_content(Client, NsdInfoId, Input) -> validate_sol_network_package_content(Client, NsdInfoId, Input, []). -spec validate_sol_network_package_content(aws_client:aws_client(), binary() | list(), validate_sol_network_package_content_input(), proplists:proplist()) -> {ok, validate_sol_network_package_content_output(), tuple()} | {error, any()} | {error, validate_sol_network_package_content_errors(), tuple()}. validate_sol_network_package_content(Client, NsdInfoId, Input0, Options0) -> Method = put, Path = ["/sol/nsd/v1/ns_descriptors/", aws_util:encode_uri(NsdInfoId), "/nsd_content/validate"], 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], HeadersMapping = [ {<<"Content-Type">>, <<"contentType">>} ], {Headers, Input1} = aws_request:build_headers(HeadersMapping, Input0), CustomHeaders = [], Input2 = Input1, Query_ = [], Input = 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 => <<"tnb">>}, Host = build_host(<<"tnb">>, 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).