%% WARNING: DO NOT EDIT, AUTO-GENERATED CODE! %% See https://github.com/aws-beam/aws-codegen for more details. %% @doc App Mesh is a service mesh based on the Envoy proxy that makes it %% easy to monitor and control microservices. %% %% App Mesh standardizes how your microservices communicate, giving you %% end-to-end visibility and helping to ensure high availability for your %% applications. %% %% App Mesh gives you consistent visibility and network traffic controls for %% every microservice in an application. You can use App Mesh with Amazon Web %% Services Fargate, Amazon ECS, Amazon EKS, Kubernetes on Amazon Web %% Services, and Amazon EC2. %% %% App Mesh supports microservice applications that use service discovery %% naming for their components. For more information about service discovery %% on Amazon ECS, see Service Discovery in the Amazon Elastic Container %% Service Developer Guide. Kubernetes `kube-dns' and `coredns' are %% supported. For more information, see DNS for Services and Pods in the %% Kubernetes documentation. -module(aws_app_mesh). -export([create_gateway_route/4, create_gateway_route/5, create_mesh/2, create_mesh/3, create_route/4, create_route/5, create_virtual_gateway/3, create_virtual_gateway/4, create_virtual_node/3, create_virtual_node/4, create_virtual_router/3, create_virtual_router/4, create_virtual_service/3, create_virtual_service/4, delete_gateway_route/5, delete_gateway_route/6, delete_mesh/3, delete_mesh/4, delete_route/5, delete_route/6, delete_virtual_gateway/4, delete_virtual_gateway/5, delete_virtual_node/4, delete_virtual_node/5, delete_virtual_router/4, delete_virtual_router/5, delete_virtual_service/4, delete_virtual_service/5, describe_gateway_route/4, describe_gateway_route/6, describe_gateway_route/7, describe_mesh/2, describe_mesh/4, describe_mesh/5, describe_route/4, describe_route/6, describe_route/7, describe_virtual_gateway/3, describe_virtual_gateway/5, describe_virtual_gateway/6, describe_virtual_node/3, describe_virtual_node/5, describe_virtual_node/6, describe_virtual_router/3, describe_virtual_router/5, describe_virtual_router/6, describe_virtual_service/3, describe_virtual_service/5, describe_virtual_service/6, list_gateway_routes/3, list_gateway_routes/5, list_gateway_routes/6, list_meshes/1, list_meshes/3, list_meshes/4, list_routes/3, list_routes/5, list_routes/6, list_tags_for_resource/2, list_tags_for_resource/4, list_tags_for_resource/5, list_virtual_gateways/2, list_virtual_gateways/4, list_virtual_gateways/5, list_virtual_nodes/2, list_virtual_nodes/4, list_virtual_nodes/5, list_virtual_routers/2, list_virtual_routers/4, list_virtual_routers/5, list_virtual_services/2, list_virtual_services/4, list_virtual_services/5, tag_resource/2, tag_resource/3, untag_resource/2, untag_resource/3, update_gateway_route/5, update_gateway_route/6, update_mesh/3, update_mesh/4, update_route/5, update_route/6, update_virtual_gateway/4, update_virtual_gateway/5, update_virtual_node/4, update_virtual_node/5, update_virtual_router/4, update_virtual_router/5, update_virtual_service/4, update_virtual_service/5]). -include_lib("hackney/include/hackney_lib.hrl"). %%==================================================================== %% API %%==================================================================== %% @doc Creates a gateway route. %% %% A gateway route is attached to a virtual gateway and routes traffic to an %% existing virtual service. If a route matches a request, it can distribute %% traffic to a target virtual service. %% %% For more information about gateway routes, see Gateway routes. create_gateway_route(Client, MeshName, VirtualGatewayName, Input) -> create_gateway_route(Client, MeshName, VirtualGatewayName, Input, []). create_gateway_route(Client, MeshName, VirtualGatewayName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateway/", aws_util:encode_uri(VirtualGatewayName), "/gatewayRoutes"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a service mesh. %% %% A service mesh is a logical boundary for network traffic between services %% that are represented by resources within the mesh. After you create your %% service mesh, you can create virtual services, virtual nodes, virtual %% routers, and routes to distribute traffic between the applications in your %% mesh. %% %% For more information about service meshes, see Service meshes. create_mesh(Client, Input) -> create_mesh(Client, Input, []). create_mesh(Client, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a route that is associated with a virtual router. %% %% You can route several different protocols and define a retry policy for a %% route. Traffic can be routed to one or more virtual nodes. %% %% For more information about routes, see Routes. create_route(Client, MeshName, VirtualRouterName, Input) -> create_route(Client, MeshName, VirtualRouterName, Input, []). create_route(Client, MeshName, VirtualRouterName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouter/", aws_util:encode_uri(VirtualRouterName), "/routes"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a virtual gateway. %% %% A virtual gateway allows resources outside your mesh to communicate to %% resources that are inside your mesh. The virtual gateway represents an %% Envoy proxy running in an Amazon ECS task, in a Kubernetes service, or on %% an Amazon EC2 instance. Unlike a virtual node, which represents an Envoy %% running with an application, a virtual gateway represents Envoy deployed %% by itself. %% %% For more information about virtual gateways, see Virtual gateways. create_virtual_gateway(Client, MeshName, Input) -> create_virtual_gateway(Client, MeshName, Input, []). create_virtual_gateway(Client, MeshName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateways"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a virtual node within a service mesh. %% %% A virtual node acts as a logical pointer to a particular task group, such %% as an Amazon ECS service or a Kubernetes deployment. When you create a %% virtual node, you can specify the service discovery information for your %% task group, and whether the proxy running in a task group will communicate %% with other proxies using Transport Layer Security (TLS). %% %% You define a `listener' for any inbound traffic that your virtual node %% expects. Any virtual service that your virtual node expects to communicate %% to is specified as a `backend'. %% %% The response metadata for your new virtual node contains the `arn' that is %% associated with the virtual node. Set this value to the full ARN; for %% example, %% `arn:aws:appmesh:us-west-2:123456789012:myMesh/default/virtualNode/myApp') %% as the `APPMESH_RESOURCE_ARN' environment variable for your task group's %% Envoy proxy container in your task definition or pod spec. This is then %% mapped to the `node.id' and `node.cluster' Envoy parameters. %% %% By default, App Mesh uses the name of the resource you specified in %% `APPMESH_RESOURCE_ARN' when Envoy is referring to itself in metrics and %% traces. You can override this behavior by setting the %% `APPMESH_RESOURCE_CLUSTER' environment variable with your own name. %% %% For more information about virtual nodes, see Virtual nodes. You must be %% using `1.15.0' or later of the Envoy image when setting these variables. %% For more information aboutApp Mesh Envoy variables, see Envoy image in the %% App Mesh User Guide. create_virtual_node(Client, MeshName, Input) -> create_virtual_node(Client, MeshName, Input, []). create_virtual_node(Client, MeshName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualNodes"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a virtual router within a service mesh. %% %% Specify a `listener' for any inbound traffic that your virtual router %% receives. Create a virtual router for each protocol and port that you need %% to route. Virtual routers handle traffic for one or more virtual services %% within your mesh. After you create your virtual router, create and %% associate routes for your virtual router that direct incoming requests to %% different virtual nodes. %% %% For more information about virtual routers, see Virtual routers. create_virtual_router(Client, MeshName, Input) -> create_virtual_router(Client, MeshName, Input, []). create_virtual_router(Client, MeshName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouters"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Creates a virtual service within a service mesh. %% %% A virtual service is an abstraction of a real service that is provided by %% a virtual node directly or indirectly by means of a virtual router. %% Dependent services call your virtual service by its `virtualServiceName', %% and those requests are routed to the virtual node or virtual router that %% is specified as the provider for the virtual service. %% %% For more information about virtual services, see Virtual services. create_virtual_service(Client, MeshName, Input) -> create_virtual_service(Client, MeshName, Input, []). create_virtual_service(Client, MeshName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualServices"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes an existing gateway route. delete_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, Input) -> delete_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, Input, []). delete_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, Input0, Options0) -> Method = delete, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateway/", aws_util:encode_uri(VirtualGatewayName), "/gatewayRoutes/", aws_util:encode_uri(GatewayRouteName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes an existing service mesh. %% %% You must delete all resources (virtual services, routes, virtual routers, %% and virtual nodes) in the service mesh before you can delete the mesh %% itself. delete_mesh(Client, MeshName, Input) -> delete_mesh(Client, MeshName, Input, []). delete_mesh(Client, MeshName, Input0, Options0) -> Method = delete, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes an existing route. delete_route(Client, MeshName, RouteName, VirtualRouterName, Input) -> delete_route(Client, MeshName, RouteName, VirtualRouterName, Input, []). delete_route(Client, MeshName, RouteName, VirtualRouterName, Input0, Options0) -> Method = delete, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouter/", aws_util:encode_uri(VirtualRouterName), "/routes/", aws_util:encode_uri(RouteName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes an existing virtual gateway. %% %% You cannot delete a virtual gateway if any gateway routes are associated %% to it. delete_virtual_gateway(Client, MeshName, VirtualGatewayName, Input) -> delete_virtual_gateway(Client, MeshName, VirtualGatewayName, Input, []). delete_virtual_gateway(Client, MeshName, VirtualGatewayName, Input0, Options0) -> Method = delete, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateways/", aws_util:encode_uri(VirtualGatewayName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes an existing virtual node. %% %% You must delete any virtual services that list a virtual node as a service %% provider before you can delete the virtual node itself. delete_virtual_node(Client, MeshName, VirtualNodeName, Input) -> delete_virtual_node(Client, MeshName, VirtualNodeName, Input, []). delete_virtual_node(Client, MeshName, VirtualNodeName, Input0, Options0) -> Method = delete, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualNodes/", aws_util:encode_uri(VirtualNodeName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes an existing virtual router. %% %% You must delete any routes associated with the virtual router before you %% can delete the router itself. delete_virtual_router(Client, MeshName, VirtualRouterName, Input) -> delete_virtual_router(Client, MeshName, VirtualRouterName, Input, []). delete_virtual_router(Client, MeshName, VirtualRouterName, Input0, Options0) -> Method = delete, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouters/", aws_util:encode_uri(VirtualRouterName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes an existing virtual service. delete_virtual_service(Client, MeshName, VirtualServiceName, Input) -> delete_virtual_service(Client, MeshName, VirtualServiceName, Input, []). delete_virtual_service(Client, MeshName, VirtualServiceName, Input0, Options0) -> Method = delete, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualServices/", aws_util:encode_uri(VirtualServiceName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Describes an existing gateway route. describe_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName) when is_map(Client) -> describe_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, #{}, #{}). describe_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, QueryMap, HeadersMap, []). describe_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateway/", aws_util:encode_uri(VirtualGatewayName), "/gatewayRoutes/", aws_util:encode_uri(GatewayRouteName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Describes an existing service mesh. describe_mesh(Client, MeshName) when is_map(Client) -> describe_mesh(Client, MeshName, #{}, #{}). describe_mesh(Client, MeshName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_mesh(Client, MeshName, QueryMap, HeadersMap, []). describe_mesh(Client, MeshName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Describes an existing route. describe_route(Client, MeshName, RouteName, VirtualRouterName) when is_map(Client) -> describe_route(Client, MeshName, RouteName, VirtualRouterName, #{}, #{}). describe_route(Client, MeshName, RouteName, VirtualRouterName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_route(Client, MeshName, RouteName, VirtualRouterName, QueryMap, HeadersMap, []). describe_route(Client, MeshName, RouteName, VirtualRouterName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouter/", aws_util:encode_uri(VirtualRouterName), "/routes/", aws_util:encode_uri(RouteName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Describes an existing virtual gateway. describe_virtual_gateway(Client, MeshName, VirtualGatewayName) when is_map(Client) -> describe_virtual_gateway(Client, MeshName, VirtualGatewayName, #{}, #{}). describe_virtual_gateway(Client, MeshName, VirtualGatewayName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_virtual_gateway(Client, MeshName, VirtualGatewayName, QueryMap, HeadersMap, []). describe_virtual_gateway(Client, MeshName, VirtualGatewayName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateways/", aws_util:encode_uri(VirtualGatewayName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Describes an existing virtual node. describe_virtual_node(Client, MeshName, VirtualNodeName) when is_map(Client) -> describe_virtual_node(Client, MeshName, VirtualNodeName, #{}, #{}). describe_virtual_node(Client, MeshName, VirtualNodeName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_virtual_node(Client, MeshName, VirtualNodeName, QueryMap, HeadersMap, []). describe_virtual_node(Client, MeshName, VirtualNodeName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualNodes/", aws_util:encode_uri(VirtualNodeName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Describes an existing virtual router. describe_virtual_router(Client, MeshName, VirtualRouterName) when is_map(Client) -> describe_virtual_router(Client, MeshName, VirtualRouterName, #{}, #{}). describe_virtual_router(Client, MeshName, VirtualRouterName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_virtual_router(Client, MeshName, VirtualRouterName, QueryMap, HeadersMap, []). describe_virtual_router(Client, MeshName, VirtualRouterName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouters/", aws_util:encode_uri(VirtualRouterName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Describes an existing virtual service. describe_virtual_service(Client, MeshName, VirtualServiceName) when is_map(Client) -> describe_virtual_service(Client, MeshName, VirtualServiceName, #{}, #{}). describe_virtual_service(Client, MeshName, VirtualServiceName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> describe_virtual_service(Client, MeshName, VirtualServiceName, QueryMap, HeadersMap, []). describe_virtual_service(Client, MeshName, VirtualServiceName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualServices/", aws_util:encode_uri(VirtualServiceName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Returns a list of existing gateway routes that are associated to a %% virtual gateway. list_gateway_routes(Client, MeshName, VirtualGatewayName) when is_map(Client) -> list_gateway_routes(Client, MeshName, VirtualGatewayName, #{}, #{}). list_gateway_routes(Client, MeshName, VirtualGatewayName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_gateway_routes(Client, MeshName, VirtualGatewayName, QueryMap, HeadersMap, []). list_gateway_routes(Client, MeshName, VirtualGatewayName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateway/", aws_util:encode_uri(VirtualGatewayName), "/gatewayRoutes"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"limit">>, maps:get(<<"limit">>, QueryMap, undefined)}, {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Returns a list of existing service meshes. list_meshes(Client) when is_map(Client) -> list_meshes(Client, #{}, #{}). list_meshes(Client, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_meshes(Client, QueryMap, HeadersMap, []). list_meshes(Client, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"limit">>, maps:get(<<"limit">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Returns a list of existing routes in a service mesh. list_routes(Client, MeshName, VirtualRouterName) when is_map(Client) -> list_routes(Client, MeshName, VirtualRouterName, #{}, #{}). list_routes(Client, MeshName, VirtualRouterName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_routes(Client, MeshName, VirtualRouterName, QueryMap, HeadersMap, []). list_routes(Client, MeshName, VirtualRouterName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouter/", aws_util:encode_uri(VirtualRouterName), "/routes"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"limit">>, maps:get(<<"limit">>, QueryMap, undefined)}, {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc List the tags for an App Mesh resource. list_tags_for_resource(Client, ResourceArn) when is_map(Client) -> list_tags_for_resource(Client, ResourceArn, #{}, #{}). 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, []). list_tags_for_resource(Client, ResourceArn, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/tags"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"limit">>, maps:get(<<"limit">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)}, {<<"resourceArn">>, ResourceArn} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Returns a list of existing virtual gateways in a service mesh. list_virtual_gateways(Client, MeshName) when is_map(Client) -> list_virtual_gateways(Client, MeshName, #{}, #{}). list_virtual_gateways(Client, MeshName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_virtual_gateways(Client, MeshName, QueryMap, HeadersMap, []). list_virtual_gateways(Client, MeshName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateways"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"limit">>, maps:get(<<"limit">>, QueryMap, undefined)}, {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Returns a list of existing virtual nodes. list_virtual_nodes(Client, MeshName) when is_map(Client) -> list_virtual_nodes(Client, MeshName, #{}, #{}). list_virtual_nodes(Client, MeshName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_virtual_nodes(Client, MeshName, QueryMap, HeadersMap, []). list_virtual_nodes(Client, MeshName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualNodes"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"limit">>, maps:get(<<"limit">>, QueryMap, undefined)}, {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Returns a list of existing virtual routers in a service mesh. list_virtual_routers(Client, MeshName) when is_map(Client) -> list_virtual_routers(Client, MeshName, #{}, #{}). list_virtual_routers(Client, MeshName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_virtual_routers(Client, MeshName, QueryMap, HeadersMap, []). list_virtual_routers(Client, MeshName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouters"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"limit">>, maps:get(<<"limit">>, QueryMap, undefined)}, {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Returns a list of existing virtual services in a service mesh. list_virtual_services(Client, MeshName) when is_map(Client) -> list_virtual_services(Client, MeshName, #{}, #{}). list_virtual_services(Client, MeshName, QueryMap, HeadersMap) when is_map(Client), is_map(QueryMap), is_map(HeadersMap) -> list_virtual_services(Client, MeshName, QueryMap, HeadersMap, []). list_virtual_services(Client, MeshName, QueryMap, HeadersMap, Options0) when is_map(Client), is_map(QueryMap), is_map(HeadersMap), is_list(Options0) -> Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualServices"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Query0_ = [ {<<"limit">>, maps:get(<<"limit">>, QueryMap, undefined)}, {<<"meshOwner">>, maps:get(<<"meshOwner">>, QueryMap, undefined)}, {<<"nextToken">>, maps:get(<<"nextToken">>, QueryMap, undefined)} ], Query_ = [H || {_, V} = H <- Query0_, V =/= undefined], request(Client, get, Path, Query_, Headers, undefined, Options, SuccessStatusCode). %% @doc Associates the specified tags to a resource with the specified %% `resourceArn'. %% %% If existing tags on a resource aren't specified in the request parameters, %% they aren't changed. When a resource is deleted, the tags associated with %% that resource are also deleted. tag_resource(Client, Input) -> tag_resource(Client, Input, []). tag_resource(Client, Input0, Options0) -> Method = put, Path = ["/v20190125/tag"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"resourceArn">>, <<"resourceArn">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Deletes specified tags from a resource. untag_resource(Client, Input) -> untag_resource(Client, Input, []). untag_resource(Client, Input0, Options0) -> Method = put, Path = ["/v20190125/untag"], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"resourceArn">>, <<"resourceArn">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Updates an existing gateway route that is associated to a specified %% virtual gateway in a service mesh. update_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, Input) -> update_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, Input, []). update_gateway_route(Client, GatewayRouteName, MeshName, VirtualGatewayName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateway/", aws_util:encode_uri(VirtualGatewayName), "/gatewayRoutes/", aws_util:encode_uri(GatewayRouteName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Updates an existing service mesh. update_mesh(Client, MeshName, Input) -> update_mesh(Client, MeshName, Input, []). update_mesh(Client, MeshName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, Query_ = [], Input = Input2, request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Updates an existing route for a specified service mesh and virtual %% router. update_route(Client, MeshName, RouteName, VirtualRouterName, Input) -> update_route(Client, MeshName, RouteName, VirtualRouterName, Input, []). update_route(Client, MeshName, RouteName, VirtualRouterName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouter/", aws_util:encode_uri(VirtualRouterName), "/routes/", aws_util:encode_uri(RouteName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Updates an existing virtual gateway in a specified service mesh. update_virtual_gateway(Client, MeshName, VirtualGatewayName, Input) -> update_virtual_gateway(Client, MeshName, VirtualGatewayName, Input, []). update_virtual_gateway(Client, MeshName, VirtualGatewayName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualGateways/", aws_util:encode_uri(VirtualGatewayName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Updates an existing virtual node in a specified service mesh. update_virtual_node(Client, MeshName, VirtualNodeName, Input) -> update_virtual_node(Client, MeshName, VirtualNodeName, Input, []). update_virtual_node(Client, MeshName, VirtualNodeName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualNodes/", aws_util:encode_uri(VirtualNodeName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Updates an existing virtual router in a specified service mesh. update_virtual_router(Client, MeshName, VirtualRouterName, Input) -> update_virtual_router(Client, MeshName, VirtualRouterName, Input, []). update_virtual_router(Client, MeshName, VirtualRouterName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualRouters/", aws_util:encode_uri(VirtualRouterName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %% @doc Updates an existing virtual service in a specified service mesh. update_virtual_service(Client, MeshName, VirtualServiceName, Input) -> update_virtual_service(Client, MeshName, VirtualServiceName, Input, []). update_virtual_service(Client, MeshName, VirtualServiceName, Input0, Options0) -> Method = put, Path = ["/v20190125/meshes/", aws_util:encode_uri(MeshName), "/virtualServices/", aws_util:encode_uri(VirtualServiceName), ""], SuccessStatusCode = 200, Options = [{send_body_as_binary, false}, {receive_body_as_binary, false} | Options0], Headers = [], Input1 = Input0, CustomHeaders = [], Input2 = Input1, QueryMapping = [ {<<"meshOwner">>, <<"meshOwner">>} ], {Query_, Input} = aws_request:build_headers(QueryMapping, Input2), request(Client, Method, Path, Query_, CustomHeaders ++ Headers, Input, Options, SuccessStatusCode). %%==================================================================== %% Internal functions %%==================================================================== -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 => <<"appmesh">>}, Host = build_host(<<"appmesh">>, Client1), URL0 = build_url(Host, Path, Client1), URL = aws_request:add_query(URL0, Query), AdditionalHeaders = [ {<<"Host">>, Host} , {<<"Content-Type">>, <<"application/x-amz-json-1.1">>} ], Headers1 = aws_request:add_headers(AdditionalHeaders, Headers0), Payload = case proplists:get_value(send_body_as_binary, Options) of true -> maps:get(<<"Body">>, Input, <<"">>); false -> encode_payload(Input) end, 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). 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 -> jsx:decode(Body); false -> #{<<"Body">> => Body} end, {ok, Result, {StatusCode, ResponseHeaders, Client}} end; handle_response({ok, StatusCode, ResponseHeaders, Client}, _, _DecodeBody) -> {ok, Body} = hackney:body(Client), Error = jsx:decode(Body), {error, Error, {StatusCode, ResponseHeaders, Client}}; 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 = maps:get(proto, Client), Path = erlang:iolist_to_binary(Path0), Port = maps:get(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).