12#ifndef RTCTK_COMPONENTFRAMEWORK_OPTIMISABLE_HPP
13#define RTCTK_COMPONENTFRAMEWORK_OPTIMISABLE_HPP
42 explicit OptimiseContext(
const rad::cii::Request<std::string, std::string>& request)
43 : m_logger(
GetLogger(
"rtctk")), m_request(request), m_arg() {
44 m_arg = JsonPayload::parse(m_request.GetRequestPayload());
63 }
catch (
const std::exception& exception) {
65 m_logger,
"OptimiseContext::SendReply: Failed to send reply: " << exception.what());
69 "OptimiseContext::SendReply: Failed to send reply with unknown exception.");
86 log4cplus::Logger& m_logger;
89 rad::cii::Request<std::string, std::string> m_request;
126template <
typename Super>
128 static_assert(std::is_base_of_v<RtcComponent, Super>,
"'Optimisable' requires 'RtcComponent'");
169 using Super::InputStage::InputStage;
172 Super::InputStage::Start();
189 this->m_engine.PostEvent(std::make_unique<events::OptimiseDone>());
193 this->m_engine.PostEvent(std::make_unique<events::OptimiseError>(std::move(eptr)));
198 this->m_no_disable_in_states.emplace_back(
"On::Operational:Optimise:Busy");
202 this->m_no_update_in_states.emplace_back(
"On::Operational:Optimise:Busy");
211 "GuardOptimisingAllowed", [
this](
const events::Optimise& ev) ->
bool {
220 auto act_state = this->m_engine.GetState();
222 if (act_state.find(s) != std::string::npos) {
228 .GuardOptimisingAllowed(ctx.
GetArg())) {
242 "ActivityOptimising",
253 [
this](
const events::OptimiseDone&) {
260 "ActionOptimisingFailed", [
this](
const events::OptimiseError& ev) {
280 this->mm.ModStateType(
"On::Operational",
Parallel);
282 this->mm.AddState(
Composite,
"On::Operational:Optimise:",
"On::Operational");
283 this->mm.AddState(
Initial,
"On::Operational:Optimise:Initial",
"On::Operational:Optimise:");
284 this->mm.AddState(
Simple,
"On::Operational:Optimise:Idle",
"On::Operational:Optimise:");
285 this->mm.AddState(
Simple,
"On::Operational:Optimise:Busy",
"On::Operational:Optimise:",
"ActivityOptimising");
287 this->mm.AddTrans(
"On::Operational:Optimise:Initial" ,
"On::Operational:Optimise:Idle" );
288 this->mm.AddTrans(
"On::Operational:Optimise:Idle" ,
"On::Operational:Optimise:Busy", events::Optimise::ID,
"GuardOptimisingAllowed");
289 this->mm.AddTrans(
"On::Operational:Optimise:Busy" ,
"On::Operational:Optimise:Idle", events::OptimiseDone::ID,
"",
"ActionOptimisingDone");
290 this->mm.AddTrans(
"On::Operational:Optimise:Busy" ,
"On::Operational:Optimise:Idle", events::OptimiseError::ID,
"",
"ActionOptimisingFailed");
Adapter object intended to be used in contexts without direct access to the output-stream object.
Definition exceptions.hpp:168
static void Register(CommandReplier &replier, StateMachineEngine &engine)
Definition optCmdsImpl.hpp:36
Business logic interface for Optimisable mixin.
Definition optimisable.hpp:134
virtual bool GuardOptimisingAllowed(const JsonPayload &arg)
Determines if optimising is possible at this time with the provided argument.
Definition optimisable.hpp:159
virtual void ActivityOptimising(StopToken st, const JsonPayload &arg)
Activity executed in its own thread that performs the requested optimisation.
Definition optimisable.hpp:148
ModelBuilder(StateMachineEngine &engine)
Definition optimisable.hpp:278
std::optional< detail::OptimiseContext > m_optimise_ctx
Definition optimisable.hpp:267
OutputStage(StateMachineEngine &engine, BizLogicIf &bl)
Definition optimisable.hpp:183
std::function< void()> m_optimise_success_handler
Definition optimisable.hpp:268
std::function< void(std::exception_ptr)> m_optimise_error_handler
Definition optimisable.hpp:269
std::list< std::string > m_no_optimise_in_states
Definition optimisable.hpp:270
Thrown if the command was accepted but the task to run failed.
Definition rtcComponent.hpp:52
Thrown if a command is not allowed in current state or guard.
Definition rtcComponent.hpp:39
Definition stateMachineEngine.hpp:34
void RegisterGuardStatic(const std::string &id, std::function< bool(const Event &)> guard)
Register guard for statically known event type.
Definition stateMachineEngine.hpp:125
void RegisterRejectHandler(const std::string &id, RejectMethod reject)
Register reject handler.
Definition stateMachineEngine.cpp:128
void RegisterActivity(const std::string &id, ActivityMethod activity, SuccessMethod on_success, FailureMethod on_failure)
Register activity.
Definition stateMachineEngine.cpp:120
void RegisterActionStatic(const std::string &id, std::function< void(const Event &)> action)
Register action for statically known event type.
Definition stateMachineEngine.hpp:92
Holds context necessary for processing a optimise request to completion.
Definition optimisable.hpp:34
const JsonPayload & GetArg() const noexcept
Definition optimisable.hpp:51
void SendErrorReply(std::exception_ptr eptr) noexcept
Send exceptional reply.
Definition optimisable.hpp:78
OptimiseContext(OptimiseContext &&) noexcept=default
void SendReply() noexcept
Sends hardcoded string reply.
Definition optimisable.hpp:60
OptimiseContext(const rad::cii::Request< std::string, std::string > &request)
Construct context with provided request.
Definition optimisable.hpp:42
Provides macros and utilities for exception handling.
log4cplus::Logger & GetLogger(const std::string &name="app")
Get handle to a specific logger.
Definition logger.cpp:191
Defines the JSON payload type JsonPayload.
Logging Support Library based on log4cplus.
Definition measurable.hpp:25
Definition commandReplier.cpp:21
@ Simple
Definition model.hpp:22
@ Composite
Definition model.hpp:22
@ Parallel
Definition model.hpp:22
@ Initial
Definition model.hpp:22
rad::StopToken StopToken
Definition stopToken.hpp:19
const std::string STD_OK_REPLY
Definition stdComponent.hpp:85
nlohmann::json JsonPayload
Type requirements:
Definition jsonPayload.hpp:24
Implementation of MAL commands for layer 'Optimisable'.
Lifecycle of a basic 'RtcComponent'.
Life cycle extension to make RtcComponent Optimisable.
Definition optimisable.hpp:127