fix efka_client

This commit is contained in:
anlicheng 2026-04-20 15:00:18 +08:00
parent e7e3746486
commit 4bc88e5022
6 changed files with 131 additions and 325 deletions

View File

@ -54,7 +54,7 @@ deploy(TaskId, ContainerDir, Params = #'ContainerDeployParams'{
case docker_commands:check_container_exist(ContainerName) of case docker_commands:check_container_exist(ContainerName) of
true -> true ->
trace_log(TaskId, <<"info">>, <<"本地容器已经存在:"/utf8, ContainerName/binary>>), trace_log(TaskId, <<"info">>, <<"本地容器已经存在:"/utf8, ContainerName/binary>>),
efka_remote_agent:close_task_event_stream(TaskId, ?TASK_FAIL); efka_client:close_task_event_stream(TaskId, ?TASK_FAIL);
false -> false ->
Image = normalize_image(Image0), Image = normalize_image(Image0),
@ -92,15 +92,15 @@ deploy(TaskId, ContainerDir, Params = #'ContainerDeployParams'{
ShortContainerId = binary:part(ContainerId, 1, 12), ShortContainerId = binary:part(ContainerId, 1, 12),
trace_log(TaskId, <<"info">>, <<"容器创建成功: "/utf8, ShortContainerId/binary>>), trace_log(TaskId, <<"info">>, <<"容器创建成功: "/utf8, ShortContainerId/binary>>),
trace_log(TaskId, <<"info">>, <<"任务完成"/utf8>>), trace_log(TaskId, <<"info">>, <<"任务完成"/utf8>>),
efka_remote_agent:close_task_event_stream(TaskId, ?TASK_SUCCESS); efka_client:close_task_event_stream(TaskId, ?TASK_SUCCESS);
{error, Reason} -> {error, Reason} ->
trace_log(TaskId, <<"error">>, <<"容器创建失败: "/utf8, Reason/binary>>), trace_log(TaskId, <<"error">>, <<"容器创建失败: "/utf8, Reason/binary>>),
trace_log(TaskId, <<"error">>, <<"任务失败"/utf8>>), trace_log(TaskId, <<"error">>, <<"任务失败"/utf8>>),
efka_remote_agent:close_task_event_stream(TaskId, ?TASK_FAIL) efka_client:close_task_event_stream(TaskId, ?TASK_FAIL)
end; end;
{error, Reason} -> {error, Reason} ->
trace_log(TaskId, <<"error">>, <<"镜像拉取失败: "/utf8, Reason/binary>>), trace_log(TaskId, <<"error">>, <<"镜像拉取失败: "/utf8, Reason/binary>>),
efka_remote_agent:close_task_event_stream(TaskId, ?TASK_FAIL) efka_client:close_task_event_stream(TaskId, ?TASK_FAIL)
end end
end. end.
@ -116,6 +116,6 @@ normalize_image(Image) when is_binary(Image) ->
-spec trace_log(TaskId :: integer(), Level :: binary(), Msg :: binary()) -> no_return(). -spec trace_log(TaskId :: integer(), Level :: binary(), Msg :: binary()) -> no_return().
trace_log(TaskId, Level, Msg) when is_integer(TaskId), is_binary(Level), is_binary(Msg) -> trace_log(TaskId, Level, Msg) when is_integer(TaskId), is_binary(Level), is_binary(Msg) ->
efka_remote_agent:task_event_stream(TaskId, Level, Msg), efka_client:task_event_stream(TaskId, Level, Msg),
Info = iolist_to_binary([<<"task_id=">>, integer_to_binary(TaskId), <<" ">>, Level, <<" ">>, Msg]), Info = iolist_to_binary([<<"task_id=">>, integer_to_binary(TaskId), <<" ">>, Level, <<" ">>, Msg]),
efka_logger:write(Info). efka_logger:write(Info).

View File

@ -208,8 +208,8 @@ handle_info({'DOWN', _Ref, process, TaskPid, Reason}, State = #state{task_map =
ok; ok;
Error0 -> Error0 ->
Error = iolist_to_binary(io_lib:format("~p", [Error0])), Error = iolist_to_binary(io_lib:format("~p", [Error0])),
efka_remote_agent:task_event_stream(TaskId, <<"error">>, <<"任务失败: "/utf8, Error/binary>>), efka_client:task_event_stream(TaskId, <<"error">>, <<"任务失败: "/utf8, Error/binary>>),
efka_remote_agent:close_task_event_stream(TaskId, <<"task exited">>), efka_client:close_task_event_stream(TaskId, <<"task exited">>),
logger:notice("[docker_manager] task_id: ~p, exit with error: ~p", [TaskId, Error]), logger:notice("[docker_manager] task_id: ~p, exit with error: ~p", [TaskId, Error]),
ok ok
end, end,

View File

@ -4,9 +4,9 @@
%%% @doc %%% @doc
%%% %%%
%%% @end %%% @end
%%% Created : 21. 5 2025 18:38 %%% Created : 20. 4 2026 00:00
%%%------------------------------------------------------------------- %%%-------------------------------------------------------------------
-module(efka_remote_agent). -module(efka_client).
-author("anlicheng"). -author("anlicheng").
-include("message.hrl"). -include("message.hrl").
-include("message_pb.hrl"). -include("message_pb.hrl").
@ -25,7 +25,6 @@
%% agent的状态 activated %% agent的状态 activated
-define(STATE_DENIED, denied). -define(STATE_DENIED, denied).
-define(STATE_CONNECTING, connecting).
-define(STATE_AUTH, auth). -define(STATE_AUTH, auth).
%% %%
-define(STATE_RESTRICTED, restricted). -define(STATE_RESTRICTED, restricted).
@ -33,8 +32,7 @@
-define(STATE_ACTIVATED, activated). -define(STATE_ACTIVATED, activated).
-record(state, { -record(state, {
transport_pid :: undefined | pid(), socket :: undefined | ssl:sslsocket()
transport_ref :: undefined | reference()
}). }).
%%%=================================================================== %%%===================================================================
@ -57,9 +55,6 @@ close_task_event_stream(TaskId, Reason) when is_integer(TaskId), is_binary(Reaso
ping(AdCode, BootTime, Province, City, EfkaVersion, KernelArch, Ips, CpuCore, CpuLoad, CpuTemperature, Disk, Memory, Interfaces) -> ping(AdCode, BootTime, Province, City, EfkaVersion, KernelArch, Ips, CpuCore, CpuLoad, CpuTemperature, Disk, Memory, Interfaces) ->
gen_statem:cast(?SERVER, {ping, AdCode, BootTime, Province, City, EfkaVersion, KernelArch, Ips, CpuCore, CpuLoad, CpuTemperature, Disk, Memory, Interfaces}). gen_statem:cast(?SERVER, {ping, AdCode, BootTime, Province, City, EfkaVersion, KernelArch, Ips, CpuCore, CpuLoad, CpuTemperature, Disk, Memory, Interfaces}).
%% @doc Creates a gen_statem process which calls Module:init/1 to
%% initialize. To ensure a synchronized start-up procedure, this
%% function does not return until Module:init/1 has returned.
start_link() -> start_link() ->
gen_statem:start_link({local, ?SERVER}, ?MODULE, [], []). gen_statem:start_link({local, ?SERVER}, ?MODULE, [], []).
@ -67,31 +62,19 @@ start_link() ->
%%% gen_statem callbacks %%% gen_statem callbacks
%%%=================================================================== %%%===================================================================
%% @private
%% @doc Whenever a gen_statem is started using gen_statem:start/[3,4] or
%% gen_statem:start_link/[3,4], this function is called by the new
%% process to initialize.
init([]) -> init([]) ->
erlang:start_timer(0, self(), create_transport), erlang:start_timer(0, self(), create_transport),
{ok, ?STATE_DENIED, #state{}}. {ok, ?STATE_DENIED, #state{socket = undefined}}.
%% @private
%% @doc This function is called by a gen_statem when it needs to find out
%% the callback mode of the callback module.
callback_mode() -> callback_mode() ->
handle_event_function. handle_event_function.
%% @private
%% @doc If callback_mode is handle_event_function, then whenever a
%% gen_statem receives an event from call/2, cast/2, or as a normal
%% process message, this function is called.
%% , mnesia %% , mnesia
handle_event(cast, {metric_data, RouteKey, Metric}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> handle_event(cast, {metric_data, RouteKey, Metric}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
Packet = message_pb:encode_msg(#'CastFrame'{ Packet = message_pb:encode_msg(#'CastFrame'{
body = {data, #'Data'{route_key = RouteKey, metric = Metric}} body = {data, #'Data'{route_key = RouteKey, metric = Metric}}
}), }),
efka_transport:send(TransportPid, Packet), send_packet(Socket, Packet),
{keep_state, State}; {keep_state, State};
handle_event(cast, {metric_data, RouteKey, Metric}, _, State) -> handle_event(cast, {metric_data, RouteKey, Metric}, _, State) ->
@ -101,98 +84,73 @@ handle_event(cast, {metric_data, RouteKey, Metric}, _, State) ->
ok = cache_model:insert(Packet), ok = cache_model:insert(Packet),
{keep_state, State}; {keep_state, State};
handle_event(cast, {task_event_stream, TaskId, Type, Stream}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> handle_event(cast, {task_event_stream, TaskId, Type, Stream}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
logger:debug("[efka_remote_agent] event_stream task_id: ~p, stream: ~ts", [TaskId, Stream]), logger:debug("[efka_client] event_stream task_id: ~p, stream: ~ts", [TaskId, Stream]),
EventPacket = message_pb:encode_msg(#'CastFrame'{ EventPacket = message_pb:encode_msg(#'CastFrame'{
body = {event_stream, #'TaskEventStream'{task_id = TaskId, type = Type, stream = Stream}} body = {event_stream, #'TaskEventStream'{task_id = TaskId, type = Type, stream = Stream}}
}), }),
efka_transport:send(TransportPid, EventPacket), send_packet(Socket, EventPacket),
{keep_state, State}; {keep_state, State};
handle_event(cast, {close_task_event_stream, TaskId, Reason}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> handle_event(cast, {close_task_event_stream, TaskId, Reason}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
EventPacket = message_pb:encode_msg(#'CastFrame'{ EventPacket = message_pb:encode_msg(#'CastFrame'{
body = {event_stream, #'TaskEventStream'{task_id = TaskId, type = <<"close">>, stream = Reason}} body = {event_stream, #'TaskEventStream'{task_id = TaskId, type = <<"close">>, stream = Reason}}
}), }),
efka_transport:send(TransportPid, EventPacket), send_packet(Socket, EventPacket),
{keep_state, State}; {keep_state, State};
%% %%
handle_event(cast, {task_event_stream, _TaskId, _Stream}, _, State = #state{}) -> handle_event(cast, {task_event_stream, _TaskId, _Stream}, _, State = #state{}) ->
{keep_state, State}; {keep_state, State};
%handle_event(cast, {ping, AdCode, BootTime, Province, City, EfkaVersion, KernelArch, Ips, CpuCore, CpuLoad, CpuTemperature, Disk, Memory, Interfaces}, ?STATE_ACTIVATED,
% State = #state{transport_pid = TransportPid}) ->
%
% Ping = message_pb:encode_msg(#ping{
% adcode = AdCode,
% boot_time = BootTime,
% province = Province,
% city = City,
% efka_version = EfkaVersion,
% kernel_arch = KernelArch,
% ips = Ips,
% cpu_core = CpuCore,
% cpu_load = CpuLoad,
% cpu_temperature = CpuTemperature,
% disk = Disk,
% memory = Memory,
% interfaces = Interfaces
% }),
% efka_transport:send(TransportPid, Ping),
% {keep_state, State};
%% %%
handle_event(info, {timeout, _, create_transport}, ?STATE_DENIED, State) -> handle_event(info, {timeout, _, create_transport}, ?STATE_DENIED, State) ->
{ok, Props} = application:get_env(efka, tls_server), case connect_socket() of
Host = proplists:get_value(host, Props), {ok, Socket} ->
Port = proplists:get_value(port, Props),
{ok, {TransportPid, TransportRef}} = efka_transport:start_monitor(self(), Host, Port),
efka_transport:connect(TransportPid),
{next_state, ?STATE_CONNECTING, State#state{transport_pid = TransportPid, transport_ref = TransportRef}};
handle_event(info, {connect_reply, Reply}, ?STATE_CONNECTING, State = #state{transport_pid = TransportPid}) ->
case Reply of
ok ->
AuthPacket = auth_packet(), AuthPacket = auth_packet(),
efka_transport:send(TransportPid, AuthPacket), send_packet(Socket, AuthPacket),
{next_state, ?STATE_AUTH, State, [{state_timeout, 5000, auth_timeout}]}; {next_state, ?STATE_AUTH, State#state{socket = Socket}, [{state_timeout, 5000, auth_timeout}]};
{error, Reason} -> {error, Reason} ->
logger:debug("[efka_remote_agent] connect failed, error: ~p, pid: ~p", [Reason, TransportPid]), logger:debug("[efka_client] connect failed, error: ~p", [Reason]),
efka_transport:stop(TransportPid), schedule_reconnect(),
{next_state, ?STATE_DENIED, State#state{transport_pid = undefined}} {keep_state, State#state{socket = undefined}}
end; end;
handle_event(info, {timeout, _, create_transport}, _, State) ->
{keep_state, State};
handle_event(info, {server_packet, PacketBin}, ?STATE_AUTH, State = #state{transport_pid = TransportPid}) -> handle_event(info, {ssl, Socket, PacketBin}, ?STATE_AUTH, State = #state{socket = Socket}) ->
#'ResponseFrame'{packet_id = 1, body = {auth_reply, #'AuthReply'{code = Code, payload = Message}}} = #'ResponseFrame'{packet_id = 1, body = {auth_reply, #'AuthReply'{code = Code, payload = Message}}} =
message_pb:decode_msg(PacketBin, 'ResponseFrame'), message_pb:decode_msg(PacketBin, 'ResponseFrame'),
case Code of case Code of
0 -> 0 ->
logger:debug("[efka_remote_agent] auth success, message: ~p", [Message]), logger:debug("[efka_client] auth success, message: ~p", [Message]),
{next_state, ?STATE_ACTIVATED, State, [{next_event, info, flush_cache}]}; {next_state, ?STATE_ACTIVATED, State, [{next_event, info, flush_cache}]};
1 -> 1 ->
logger:debug("[efka_remote_agent] auth denied, message: ~p", [Message]), logger:debug("[efka_client] auth denied, message: ~p", [Message]),
{next_state, ?STATE_RESTRICTED, State}; {next_state, ?STATE_RESTRICTED, State};
2 -> 2 ->
logger:debug("[efka_remote_agent] auth failed, message: ~p", [Message]), logger:debug("[efka_client] auth failed, message: ~p", [Message]),
efka_transport:stop(TransportPid), disconnect(Socket),
{next_state, ?STATE_DENIED, State#state{transport_pid = undefined}}; schedule_reconnect(),
{next_state, ?STATE_DENIED, State#state{socket = undefined}};
_ -> _ ->
logger:debug("[efka_remote_agent] auth failed, invalid message"), logger:debug("[efka_client] auth failed, invalid message"),
efka_transport:stop(TransportPid), disconnect(Socket),
{next_state, ?STATE_DENIED, State#state{transport_pid = undefined}} schedule_reconnect(),
{next_state, ?STATE_DENIED, State#state{socket = undefined}}
end; end;
handle_event(state_timeout, auth_timeout, ?STATE_AUTH, State = #state{transport_pid = TransportPid}) -> handle_event(state_timeout, auth_timeout, ?STATE_AUTH, State = #state{socket = Socket}) ->
logger:debug("[efka_remote_agent] auth request timeout"), logger:debug("[efka_client] auth request timeout"),
efka_transport:stop(TransportPid), disconnect(Socket),
{next_state, ?STATE_DENIED, State#state{transport_pid = undefined}}; schedule_reconnect(),
{next_state, ?STATE_DENIED, State#state{socket = undefined}};
%% %%
handle_event(info, flush_cache, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> handle_event(info, flush_cache, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
case cache_model:fetch_next() of case cache_model:fetch_next() of
{ok, {Id, Packet}} -> {ok, {Id, Packet}} ->
efka_transport:send(TransportPid, Packet), send_packet(Socket, Packet),
cache_model:delete(Id), cache_model:delete(Id),
{keep_state, State, [{next_event, info, flush_cache}]}; {keep_state, State, [{next_event, info, flush_cache}]};
error -> error ->
@ -201,7 +159,7 @@ handle_event(info, flush_cache, ?STATE_ACTIVATED, State = #state{transport_pid =
handle_event(info, flush_cache, _, State) -> handle_event(info, flush_cache, _, State) ->
{keep_state, State}; {keep_state, State};
handle_event(info, {server_packet, <<8, _/binary>> = PacketBin}, StateName, State) handle_event(info, {ssl, Socket, <<8, _/binary>> = PacketBin}, StateName, State = #state{socket = Socket})
when StateName =:= ?STATE_ACTIVATED; StateName =:= ?STATE_RESTRICTED -> when StateName =:= ?STATE_ACTIVATED; StateName =:= ?STATE_RESTRICTED ->
#'RequestFrame'{packet_id = PacketId, body = Body} = message_pb:decode_msg(PacketBin, 'RequestFrame'), #'RequestFrame'{packet_id = PacketId, body = Body} = message_pb:decode_msg(PacketBin, 'RequestFrame'),
true = is_integer(PacketId) andalso PacketId > 0, true = is_integer(PacketId) andalso PacketId > 0,
@ -211,25 +169,22 @@ handle_event(info, {server_packet, <<8, _/binary>> = PacketBin}, StateName, Stat
{container_request, Request} -> {container_request, Request} ->
{keep_state, State, [{next_event, info, {container_request, PacketId, Request}}]} {keep_state, State, [{next_event, info, {container_request, PacketId, Request}}]}
end; end;
handle_event(info, {server_packet, <<10, _/binary>> = PacketBin}, ?STATE_ACTIVATED, State) -> handle_event(info, {ssl, Socket, <<10, _/binary>> = PacketBin}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
#'CastFrame'{body = {pub, Pub}} = message_pb:decode_msg(PacketBin, 'CastFrame'), #'CastFrame'{body = {pub, Pub}} = message_pb:decode_msg(PacketBin, 'CastFrame'),
{keep_state, State, [{next_event, info, {server_cast, Pub}}]}; {keep_state, State, [{next_event, info, {server_cast, Pub}}]};
handle_event(info, {server_packet, <<18, _/binary>> = PacketBin}, ?STATE_ACTIVATED, State) -> handle_event(info, {ssl, Socket, <<18, _/binary>> = PacketBin}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
#'CastFrame'{body = {command, Command}} = message_pb:decode_msg(PacketBin, 'CastFrame'), #'CastFrame'{body = {command, Command}} = message_pb:decode_msg(PacketBin, 'CastFrame'),
{keep_state, State, [{next_event, info, {server_cast, Command}}]}; {keep_state, State, [{next_event, info, {server_cast, Command}}]};
handle_event(info, {server_packet, <<10, _/binary>> = PacketBin}, ?STATE_RESTRICTED, State) -> handle_event(info, {ssl, Socket, <<10, _/binary>> = PacketBin}, ?STATE_RESTRICTED, State = #state{socket = Socket}) ->
#'CastFrame'{body = {pub, Pub}} = message_pb:decode_msg(PacketBin, 'CastFrame'), #'CastFrame'{body = {pub, Pub}} = message_pb:decode_msg(PacketBin, 'CastFrame'),
{keep_state, State, [{next_event, info, {server_cast, Pub}}]}; {keep_state, State, [{next_event, info, {server_cast, Pub}}]};
handle_event(info, {server_packet, <<18, _/binary>> = PacketBin}, ?STATE_RESTRICTED, State) -> handle_event(info, {ssl, Socket, <<18, _/binary>> = PacketBin}, ?STATE_RESTRICTED, State = #state{socket = Socket}) ->
#'CastFrame'{body = {command, Command}} = message_pb:decode_msg(PacketBin, 'CastFrame'), #'CastFrame'{body = {command, Command}} = message_pb:decode_msg(PacketBin, 'CastFrame'),
{keep_state, State, [{next_event, info, {server_cast, Command}}]}; {keep_state, State, [{next_event, info, {server_cast, Command}}]};
%%
%%
%% %%
handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {list, #'ContainerRequest.List'{all = _All}}}}, handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {list, #'ContainerRequest.List'{all = _All}}}},
?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
case docker_manager:get_containers() of case docker_manager:get_containers() of
{ok, Containers} -> {ok, Containers} ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
@ -238,7 +193,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {l
reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(Containers)}} reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(Containers)}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet); send_packet(Socket, Packet);
{error, Reason} when is_binary(Reason) -> {error, Reason} when is_binary(Reason) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
@ -246,14 +201,14 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {l
reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}} reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet) send_packet(Socket, Packet)
end, end,
{keep_state, State}; {keep_state, State};
handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {deploy, #'ContainerRequest.Deploy'{ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {deploy, #'ContainerRequest.Deploy'{
task_id = TaskId, task_id = TaskId,
params = Params params = Params
}}}}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> }}}}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
case docker_manager:deploy(TaskId, Params) of case docker_manager:deploy(TaskId, Params) of
ok -> ok ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
@ -262,7 +217,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {d
reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}} reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet); send_packet(Socket, Packet);
{error, Reason} when is_binary(Reason) -> {error, Reason} when is_binary(Reason) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
@ -270,12 +225,12 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {d
reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}} reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet) send_packet(Socket, Packet)
end, end,
{keep_state, State}; {keep_state, State};
handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {start, #'ContainerRequest.Start'{target = Target}}}}, handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {start, #'ContainerRequest.Start'{target = Target}}}},
?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
ContainerTarget = container_target(Target), ContainerTarget = container_target(Target),
case docker_manager:start_container(ContainerTarget) of case docker_manager:start_container(ContainerTarget) of
ok -> ok ->
@ -285,7 +240,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {s
reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}} reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet); send_packet(Socket, Packet);
{error, Reason} when is_binary(Reason) -> {error, Reason} when is_binary(Reason) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
@ -293,14 +248,14 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {s
reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}} reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet) send_packet(Socket, Packet)
end, end,
{keep_state, State}; {keep_state, State};
handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {stop, #'ContainerRequest.Stop'{ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {stop, #'ContainerRequest.Stop'{
target = Target, target = Target,
timeout_seconds = TimeoutSeconds timeout_seconds = TimeoutSeconds
}}}}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> }}}}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
ContainerTarget = container_target(Target), ContainerTarget = container_target(Target),
case docker_manager:stop_container(ContainerTarget, TimeoutSeconds) of case docker_manager:stop_container(ContainerTarget, TimeoutSeconds) of
ok -> ok ->
@ -310,7 +265,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {s
reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}} reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet); send_packet(Socket, Packet);
{error, Reason} when is_binary(Reason) -> {error, Reason} when is_binary(Reason) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
@ -318,14 +273,14 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {s
reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}} reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet) send_packet(Socket, Packet)
end, end,
{keep_state, State}; {keep_state, State};
handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {kill, #'ContainerRequest.Kill'{ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {kill, #'ContainerRequest.Kill'{
target = Target, target = Target,
signal = Signal signal = Signal
}}}}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> }}}}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
ContainerTarget = container_target(Target), ContainerTarget = container_target(Target),
case docker_manager:kill_container(ContainerTarget, to_binary(Signal)) of case docker_manager:kill_container(ContainerTarget, to_binary(Signal)) of
ok -> ok ->
@ -335,7 +290,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {k
reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}} reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet); send_packet(Socket, Packet);
{error, Reason} when is_binary(Reason) -> {error, Reason} when is_binary(Reason) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
@ -343,7 +298,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {k
reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}} reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet) send_packet(Socket, Packet)
end, end,
{keep_state, State}; {keep_state, State};
@ -351,7 +306,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {r
target = Target, target = Target,
force = Force, force = Force,
remove_volumes = RemoveVolumes remove_volumes = RemoveVolumes
}}}}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> }}}}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
ContainerTarget = container_target(Target), ContainerTarget = container_target(Target),
case docker_manager:remove_container(ContainerTarget, to_bool(Force), to_bool(RemoveVolumes)) of case docker_manager:remove_container(ContainerTarget, to_bool(Force), to_bool(RemoveVolumes)) of
ok -> ok ->
@ -361,7 +316,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {r
reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}} reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet); send_packet(Socket, Packet);
{error, Reason} when is_binary(Reason) -> {error, Reason} when is_binary(Reason) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
@ -369,14 +324,14 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {r
reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}} reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet) send_packet(Socket, Packet)
end, end,
{keep_state, State}; {keep_state, State};
handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {config, #'ContainerRequest.Config'{ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {config, #'ContainerRequest.Config'{
target = Target, target = Target,
config = Config config = Config
}}}}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> }}}}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
ContainerTarget = container_target(Target), ContainerTarget = container_target(Target),
case docker_manager:config_container(ContainerTarget, iolist_to_binary(Config)) of case docker_manager:config_container(ContainerTarget, iolist_to_binary(Config)) of
ok -> ok ->
@ -386,7 +341,7 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {c
reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}} reply = {result, #'RpcReply.RpcResult'{data = encode_rpc_payload(<<"ok">>)}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet); send_packet(Socket, Packet);
{error, Reason} -> {error, Reason} ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
@ -394,111 +349,89 @@ handle_event(info, {container_request, PacketId, #'ContainerRequest'{action = {c
reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}} reply = {error, #'RpcReply.RpcError'{code = -1, message = Reason}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet) send_packet(Socket, Packet)
end, end,
{keep_state, State}; {keep_state, State};
handle_event(info, {container_request, PacketId, _Request}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> handle_event(info, {container_request, PacketId, _Request}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
body = {rpc_reply, #'RpcReply'{ body = {rpc_reply, #'RpcReply'{
reply = {error, #'RpcReply.RpcError'{code = -1, message = <<"unsupported container request">>}} reply = {error, #'RpcReply.RpcError'{code = -1, message = <<"unsupported container request">>}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet), send_packet(Socket, Packet),
{keep_state, State}; {keep_state, State};
handle_event(info, {container_request, PacketId, _Request}, ?STATE_RESTRICTED, State = #state{transport_pid = TransportPid}) -> handle_event(info, {container_request, PacketId, _Request}, ?STATE_RESTRICTED, State = #state{socket = Socket}) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
body = {rpc_reply, #'RpcReply'{ body = {rpc_reply, #'RpcReply'{
reply = {error, #'RpcReply.RpcError'{code = -1, message = <<"agent restricted">>}} reply = {error, #'RpcReply.RpcError'{code = -1, message = <<"agent restricted">>}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet), send_packet(Socket, Packet),
{keep_state, State}; {keep_state, State};
handle_event(info, {server_rpc, PacketId, #'RpcRequest'{method = Method}}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) -> handle_event(info, {server_rpc, PacketId, #'RpcRequest'{method = Method}}, ?STATE_ACTIVATED, State = #state{socket = Socket}) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
body = {rpc_reply, #'RpcReply'{ body = {rpc_reply, #'RpcReply'{
reply = {error, #'RpcReply.RpcError'{code = -1, message = <<"unsupported rpc request: ", Method/binary>>}} reply = {error, #'RpcReply.RpcError'{code = -1, message = <<"unsupported rpc request: ", Method/binary>>}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet), send_packet(Socket, Packet),
{keep_state, State}; {keep_state, State};
handle_event(info, {server_rpc, PacketId, _Request}, ?STATE_RESTRICTED, State = #state{transport_pid = TransportPid}) -> handle_event(info, {server_rpc, PacketId, _Request}, ?STATE_RESTRICTED, State = #state{socket = Socket}) ->
Packet = message_pb:encode_msg(#'ResponseFrame'{ Packet = message_pb:encode_msg(#'ResponseFrame'{
packet_id = PacketId, packet_id = PacketId,
body = {rpc_reply, #'RpcReply'{ body = {rpc_reply, #'RpcReply'{
reply = {error, #'RpcReply.RpcError'{code = -1, message = <<"agent restricted">>}} reply = {error, #'RpcReply.RpcError'{code = -1, message = <<"agent restricted">>}}
}} }}
}), }),
efka_transport:send(TransportPid, Packet), send_packet(Socket, Packet),
{keep_state, State}; {keep_state, State};
%% task_log
%handle_event(info, {server_async_call, PacketId, <<?PUSH_TASK_LOG:8, TaskLogBin/binary>>}, ?STATE_ACTIVATED, State = #state{transport_pid = TransportPid}) ->
% #fetch_task_log{task_id = TaskId} = message_pb:decode_msg(TaskLogBin, fetch_task_log),
% logger:debug("[efka_remote_agent] get task_log request: ~p", [TaskId]),
% {ok, Logs} = efka_inetd_task_log:get_logs(TaskId),
% Reply = case length(Logs) > 0 of
% true ->
% Result = iolist_to_binary(jiffy:encode(Logs, [force_utf8])),
% #async_call_reply{code = 1, result = Result};
% false ->
% #async_call_reply{code = 1, result = <<"[]">>}
% end,
% efka_transport:send(TransportPid, message_pb:encode_msg(Reply)),
%
% {keep_state, State};
%% %%
handle_event(info, {server_cast, #'Command'{command_type = ?COMMAND_AUTH, command = Auth0}}, StateName, State = #state{transport_pid = TransportPid}) -> handle_event(info, {server_cast, #'Command'{command_type = ?COMMAND_AUTH, command = Auth0}}, StateName,
State = #state{socket = Socket}) ->
Auth = binary_to_integer(Auth0), Auth = binary_to_integer(Auth0),
case {Auth, StateName} of case {Auth, StateName} of
{1, ?STATE_ACTIVATED} -> {1, ?STATE_ACTIVATED} ->
{keep_state, State}; {keep_state, State};
{1, ?STATE_DENIED} -> {1, _} ->
%% ,
AuthPacket = auth_packet(), AuthPacket = auth_packet(),
efka_transport:send(TransportPid, AuthPacket), send_packet(Socket, AuthPacket),
{next_state, ?STATE_AUTH, State, [{state_timeout, 5000, auth_timeout}]}; {next_state, ?STATE_AUTH, State, [{state_timeout, 5000, auth_timeout}]};
{0, _} -> {0, _} ->
%%
{next_state, ?STATE_RESTRICTED, State} {next_state, ?STATE_RESTRICTED, State}
end; end;
%% Pub/Sub机制 %% Pub/Sub机制
handle_event(info, {server_cast, #'Pub'{topic = Topic, qos = Qos, content = Content}}, ?STATE_ACTIVATED, State) -> handle_event(info, {server_cast, #'Pub'{topic = Topic, qos = Qos, content = Content}}, ?STATE_ACTIVATED, State) ->
logger:debug("[efka_remote_agent] get pub topic: ~p, qos: ~p, content: ~p", [Topic, Qos, Content]), logger:debug("[efka_client] get pub topic: ~p, qos: ~p, content: ~p", [Topic, Qos, Content]),
%%
efka_subscription:publish(Topic, Qos, Content), efka_subscription:publish(Topic, Qos, Content),
{keep_state, State}; {keep_state, State};
%% transport进程退出 handle_event(info, {ssl_error, Socket, Reason}, _, State = #state{socket = Socket}) ->
handle_event(info, {'DOWN', MRef, process, TransportPid, Reason}, _, State = #state{transport_ref = MRef}) -> logger:debug("[efka_client] ssl error: ~p", [Reason]),
logger:debug("[efka_remote_agent] transport pid: ~p, exit with reason: ~p", [TransportPid, Reason]), disconnect(Socket),
erlang:start_timer(5000, self(), create_transport), schedule_reconnect(),
{next_state, ?STATE_DENIED, State#state{transport_pid = undefined, transport_ref = undefined}}. {next_state, ?STATE_DENIED, State#state{socket = undefined}};
%% @private handle_event(info, {ssl_closed, Socket}, _, State = #state{socket = Socket}) ->
%% @doc This function is called by a gen_statem when it is about to schedule_reconnect(),
%% terminate. It should be the opposite of Module:init/1 and do any {next_state, ?STATE_DENIED, State#state{socket = undefined}};
%% necessary cleaning up. When it returns, the gen_statem terminates with
%% Reason. The return value is ignored. handle_event(info, Info, _, State = #state{}) ->
terminate(_Reason, _StateName, _State = #state{transport_pid = TransportPid}) -> logger:notice("[efka_client] get unknown info: ~p", [Info]),
case is_pid(TransportPid) andalso is_process_alive(TransportPid) of {keep_state, State}.
true ->
efka_transport:stop(TransportPid); terminate(_Reason, _StateName, _State = #state{socket = Socket}) ->
false -> disconnect(Socket),
ok
end,
ok. ok.
%% @private
%% @doc Convert process state when code is changed
code_change(_OldVsn, StateName, State = #state{}, _Extra) -> code_change(_OldVsn, StateName, State = #state{}, _Extra) ->
{ok, StateName, State}. {ok, StateName, State}.
@ -508,7 +441,6 @@ code_change(_OldVsn, StateName, State = #state{}, _Extra) ->
-spec auth_packet() -> binary(). -spec auth_packet() -> binary().
auth_packet() -> auth_packet() ->
%% ,
{ok, AuthInfo} = application:get_env(efka, auth), {ok, AuthInfo} = application:get_env(efka, auth),
UUID = proplists:get_value(uuid, AuthInfo), UUID = proplists:get_value(uuid, AuthInfo),
Username = proplists:get_value(username, AuthInfo), Username = proplists:get_value(username, AuthInfo),
@ -525,6 +457,34 @@ auth_packet() ->
}} }}
}). }).
-spec connect_socket() -> {ok, ssl:sslsocket()} | {error, term()}.
connect_socket() ->
{ok, Props} = application:get_env(efka, tls_server),
Host = proplists:get_value(host, Props),
Port = proplists:get_value(port, Props),
SslOptions = [
binary,
{active, true},
{packet, 4},
{verify, verify_none}
],
ssl:connect(Host, Port, SslOptions, 5000).
-spec send_packet(ssl:sslsocket(), binary()) -> ok.
send_packet(Socket, Packet) when is_binary(Packet) ->
ok = ssl:send(Socket, Packet).
-spec disconnect(undefined | ssl:sslsocket()) -> ok.
disconnect(undefined) ->
ok;
disconnect(Socket) ->
catch ssl:close(Socket),
ok.
-spec schedule_reconnect() -> reference().
schedule_reconnect() ->
erlang:start_timer(5000, self(), create_transport).
-spec encode_rpc_payload(any()) -> binary(). -spec encode_rpc_payload(any()) -> binary().
encode_rpc_payload(Payload) -> encode_rpc_payload(Payload) ->
jiffy:encode(Payload, [force_utf8]). jiffy:encode(Payload, [force_utf8]).

View File

@ -104,7 +104,7 @@ handle_call(_Request, _From, State = #state{}) ->
{stop, Reason :: term(), NewState :: #state{}}). {stop, Reason :: term(), NewState :: #state{}}).
handle_cast({metric_data, RouteKey, Metric}, State = #state{service_id = ServiceId}) -> handle_cast({metric_data, RouteKey, Metric}, State = #state{service_id = ServiceId}) ->
logger:debug("[efka_service] metric_data service_id: ~p, route_key: ~p, metric data: ~p", [ServiceId, RouteKey, Metric]), logger:debug("[efka_service] metric_data service_id: ~p, route_key: ~p, metric data: ~p", [ServiceId, RouteKey, Metric]),
efka_remote_agent:metric_data(RouteKey, Metric), efka_client:metric_data(RouteKey, Metric),
{noreply, State}; {noreply, State};
handle_cast(_Request, State = #state{}) -> handle_cast(_Request, State = #state{}) ->

View File

@ -92,12 +92,12 @@ init([]) ->
}, },
#{ #{
id => 'efka_remote_agent', id => 'efka_client',
start => {'efka_remote_agent', start_link, []}, start => {'efka_client', start_link, []},
restart => permanent, restart => permanent,
shutdown => 2000, shutdown => 2000,
type => worker, type => worker,
modules => ['efka_remote_agent'] modules => ['efka_client']
} }
], ],
@ -105,4 +105,3 @@ init([]) ->
{ok, {SupFlags, ChildSpecs}}. {ok, {SupFlags, ChildSpecs}}.
%% internal functions %% internal functions

View File

@ -1,153 +0,0 @@
%%%-------------------------------------------------------------------
%%% @author anlicheng
%%% @copyright (C) 2025, <COMPANY>
%%% @doc
%%%
%%% @end
%%% Created : 20. 4 2025 18:47
%%%-------------------------------------------------------------------
-module(efka_transport).
-author("anlicheng").
-behaviour(gen_server).
%% API
-export([start_monitor/3]).
-export([connect/1, send/2, stop/1]).
%% gen_server callbacks
-export([init/1, handle_call/3, handle_cast/2, handle_info/2, terminate/2, code_change/3]).
-define(SERVER, ?MODULE).
-record(state, {
parent_pid :: pid(),
host :: string(),
port :: integer(),
socket :: undefined | ssl:sslsocket()
}).
-spec connect(Pid :: pid()) -> no_return().
connect(Pid) when is_pid(Pid) ->
gen_server:cast(Pid, connect).
-spec send(Pid :: pid(), Packet :: binary()) -> no_return().
send(Pid, Packet) when is_pid(Pid), is_binary(Packet) ->
gen_server:cast(Pid, {send, Packet}).
%% transport进程已经退出了
-spec stop(Pid :: pid() | undefined) -> ok.
stop(undefined) ->
ok;
stop(Pid) when is_pid(Pid) ->
catch gen_server:stop(Pid, normal, 2000).
%% @doc Spawns the server and registers the local name (unique)
-spec(start_monitor(ParentPid :: pid(), Host :: string(), Port :: integer()) ->
{ok, {Pid :: pid(), MRef :: reference()}} | ignore | {error, Reason :: term()}).
start_monitor(ParentPid, Host, Port) when is_pid(ParentPid), is_list(Host), is_integer(Port) ->
gen_server:start_monitor(?MODULE, [ParentPid, Host, Port], []).
%%%===================================================================
%%% gen_server callbacks
%%%===================================================================
%% @private
%% @doc Initializes the server
-spec(init(Args :: term()) ->
{ok, State :: #state{}} | {ok, State :: #state{}, timeout() | hibernate} |
{stop, Reason :: term()} | ignore).
init([ParentPid, Host, Port]) ->
{ok, #state{parent_pid = ParentPid, host = Host, port = Port, socket = undefined}}.
%% @private
%% @doc Handling call messages
-spec(handle_call(Request :: term(), From :: {pid(), Tag :: term()}, State :: #state{}) ->
{reply, Reply :: term(), NewState :: #state{}} |
{reply, Reply :: term(), NewState :: #state{}, timeout() | hibernate} |
{noreply, NewState :: #state{}} |
{noreply, NewState :: #state{}, timeout() | hibernate} |
{stop, Reason :: term(), Reply :: term(), NewState :: #state{}} |
{stop, Reason :: term(), NewState :: #state{}}).
handle_call(_Req, _From, State = #state{}) ->
{reply, ok, State#state{}}.
%% @private
%% @doc Handling cast messages
-spec(handle_cast(Request :: term(), State :: #state{}) ->
{noreply, NewState :: #state{}} |
{noreply, NewState :: #state{}, timeout() | hibernate} |
{stop, Reason :: term(), NewState :: #state{}}).
%%
handle_cast(connect, State = #state{host = Host, port = Port, parent_pid = ParentPid}) ->
SslOptions = [
binary,
{packet, 4},
{verify, verify_none}
],
case ssl:connect(Host, Port, SslOptions, 5000) of
{ok, Socket} ->
ok = ssl:controlling_process(Socket, self()),
ParentPid ! {connect_reply, ok},
ping_ticker(),
{noreply, State#state{socket = Socket}};
{error, Reason} ->
ParentPid ! {connect_reply, {error, Reason}},
{noreply, State#state{socket = undefined}}
end;
handle_cast({send, Packet}, State = #state{socket = Socket}) ->
ok = ssl:send(Socket, Packet),
{noreply, State}.
%% @private
%% @doc Handling all non call/cast messages
-spec(handle_info(Info :: timeout() | term(), State :: #state{}) ->
{noreply, NewState :: #state{}} |
{noreply, NewState :: #state{}, timeout() | hibernate} |
{stop, Reason :: term(), NewState :: #state{}}).
%%
handle_info({ssl, Socket, PacketBin}, State = #state{socket = Socket, parent_pid = ParentPid}) ->
ParentPid ! {server_packet, PacketBin},
{noreply, State};
handle_info({ssl_error, Socket, Reason}, State = #state{socket = Socket}) ->
logger:debug("[efka_transport] ssl error: ~p", [Reason]),
{stop, normal, State};
handle_info({ssl_closed, Socket}, State = #state{socket = Socket}) ->
{stop, normal, State};
handle_info({timeout, _, ping_ticker}, State) ->
ping_ticker(),
{noreply, State};
handle_info(Info, State = #state{}) ->
logger:notice("[efka_transport] get unknown info: ~p", [Info]),
{noreply, State}.
%% @private
%% @doc This function is called by a gen_server when it is about to
%% terminate. It should be the opposite of Module:init/1 and do any
%% necessary cleaning up. When it returns, the gen_server terminates
%% with Reason. The return value is ignored.
-spec(terminate(Reason :: (normal | shutdown | {shutdown, term()} | term()),
State :: #state{}) -> term()).
terminate(Reason, #state{}) ->
logger:notice("[efka_transport] terminate with reason: ~p", [Reason]),
ok.
%% @private
%% @doc Convert process state when code is changed
-spec(code_change(OldVsn :: term() | {down, term()}, State :: #state{},
Extra :: term()) ->
{ok, NewState :: #state{}} | {error, Reason :: term()}).
code_change(_OldVsn, State = #state{}, _Extra) ->
{ok, State}.
%%%===================================================================
%%% Internal functions
%%%===================================================================
ping_ticker() ->
erlang:start_timer(5000, self(), ping_ticker).