by::endExpr Class Reference

End blockExpr for function cleanup. More...

#include <endExpr.hpp>

Inheritance diagram for by::endExpr:
by::blockExpr by::expr by::node by::instance by::frameInteractable by::typeProvidable by::clonable

Public Member Functions

str getEval () const override
 
- Public Member Functions inherited from by::blockExpr
template<typename... Es>
 blockExpr (const Es &... elems)
 
str run (const args &a) override
 
void setEval (const node &newEval)
 
void setEval (const node *it) BY_SIDE_FUNC(setEval)
 
const narrgetStmts () const BY_CONST_FUNC(getStmts()) narr &getStmts()
 
void rel () override
 
void inFrame (const bicontainable *args) const override
 
void outFrame () const override
 
void onCloneDeep (const clonable &from) override
 
nbool isAbstract () const
 
- Public Member Functions inherited from by::expr
scopesubs () override
 
nbool isImpli (const type &to) const override
 
priorType prioritize (const args &a) const override
 
const srcgetSrc () const override
 
- Public Member Functions inherited from by::node
me & operator[] (const std::string &name)
 
const me & operator[] (const std::string &name) const BY_CONST_FUNC(operator[](name))
 
me & operator[] (const std::string *it)
 
const me & operator[] (const std::string *it) const BY_CONST_FUNC(operator[](it))
 
me & operator[] (const nchar *name)
 
const me & operator[] (const nchar *name) const BY_CONST_FUNC(operator[](name))
 
nbool in (const node &elem) const
 
nbool in (const node *elem) const
 
const scopesubs () const BY_CONST_FUNC(subs()) virtual tstr< nbicontainer > mySubs() const
 
const nodededuce (const node &it) const
 
const nodededuce (const node *it) const BY_SIDE_FUNC(deduce)
 
template<typename T >
T * sub (std::function< nbool(const std::string &, const T &)> l)
 
template<typename T >
const T * sub (std::function< nbool(const std::string &, const T &)> l) const BY_CONST_FUNC(sub< T >(l)) template< typename T
 
template<typename T = me>
const T * sub () const BY_CONST_FUNC(sub< T >()) template< typename T
 
template<typename T = me>
T * sub (const std::string *it) BY_SIDE_FUNC(sub)
 
template<typename T = me>
const T * sub (const std::string &name) const BY_CONST_FUNC(sub< T >(name)) template< typename T
 
template<typename T = me>
T * sub (const std::string *name, const args &a) BY_SIDE_FUNC(name
 
template<typename T = me>
const T * sub (const std::string &name, const args &a) const BY_CONST_FUNC(sub< T >(name
 
template<typename T = me>
const T a const T * sub (const std::string *name, const args &a) const BY_CONST_FUNC(sub< T >(name
 
template<typename T >
const T a const T a tnarr< T, strTacticsubAll (std::function< nbool(const std::string &, const T &)> l) const
 
template<typename T = me>
tnarr< T, strTacticsubAll () const
 
template<typename T = me>
tpriorities< T > subAll (const std::string &name) const
 
template<typename T = me>
tpriorities< T > subAll (const std::string *it) const BY_SIDE_FUNC(subAll< T >) template< typename T
 
template<typename T = me>
tpriorities< T > subAll (const std::string &name, const args &a) const
 
template<typename T = me>
tpriorities< T > subAll (const std::string *name, const args *a) const BY_SIDE_FUNC(name
 
tpriorities< T > subAll< T > tpriorities ())
 
template<typename T = me>
tpriorities< T > subAll (const std::string *name, const args &a) const BY_SIDE_FUNC(name
 
tpriorities< T > subAll< T > tpriorities ())
 
bool canRun (const args &a) const
 
priorType prioritize (const args *it) const BY_SIDE_FUNC(it
 
str run (const args *it) BY_SIDE_FUNC(run)
 
str run (const std::string &name, const args &a)
 
str run (const std::string &name, const args *a) BY_SIDE_FUNC(a
 
str run (name, a)
 
str str ())
 
str run (const std::string *name, const args &a) BY_SIDE_FUNC(name
 
str run str ())
 
str run (const std::string *name, const args *a) BY_SIDE_FUNC(name &&a
 
str run str ())
 
str run (const std::string &name)
 
str run (const std::string *it) BY_SIDE_FUNC(run)
 
str run ()
 
template<typename T >
nbool is () const
 
nbool is (const typeProvidable &to) const
 
nbool is (const typeProvidable *it) const BY_SIDE_FUNC(is)
 
nbool is (const type &to) const
 
nbool is (const type *it) const BY_SIDE_FUNC(is)
 
template<typename T >
tstr< T > as () const
 
str as (const typeProvidable &to) const
 
str as (const typeProvidable *it) const BY_SIDE_FUNC(as)
 
str as (const type &to) const
 
str as (const type *it) const BY_SIDE_FUNC(as)
 
template<typename T >
nbool isImpli () const
 
nbool isImpli (const typeProvidable &to) const
 
nbool isImpli (const typeProvidable *it) const BY_SIDE_FUNC(isImpli)
 
template<typename T >
tstr< T > asImpli () const
 
virtual str asImpli (const type &to) const
 
str asImpli (const typeProvidable &to) const
 
str asImpli (const typeProvidable *it) const BY_SIDE_FUNC(asImpli)
 
virtual nbool isComplete () const
 
virtual void accept (const visitInfo &i, visitor &v)
 
void inFrame (const bicontainable *args) const override
 
void outFrame () const override
 
virtual const modifiergetModifier () const
 
virtual void inFrame (const bicontainable *args) const=0
 
void inFrame () const
 
virtual void outFrame () const=0
 
- Public Member Functions inherited from by::instance
 instance (id newId)
 
 instance (const me &rhs)
 
me & operator= (const me &rhs)=default
 
void * operator new (size_t sz) noexcept
 
void operator delete (void *pt, size_t sz) noexcept
 
virtual id getId () const
 
virtual nbool isHeap () const
 
const bindTaggetBindTag () const
 
- Public Member Functions inherited from by::typeProvidable
nbool operator== (const me &rhs) const
 
nbool operator!= (const me &rhs) const
 
virtual const typegetType () const =0
 
nbool isSub (const type &it) const
 
nbool isSub (const type *it) const BY_SIDE_FUNC(isSub)
 
nbool isSub (const me &it) const
 
nbool isSub (const me *it) const BY_SIDE_FUNC(isSub)
 
nbool isSuper (const type &it) const
 
nbool isSuper (const type *it) const BY_SIDE_FUNC(isSuper)
 
nbool isSuper (const me &it) const
 
nbool isSuper (const me *it) const BY_SIDE_FUNC(isSuper)
 
template<typename T >
nint isSub () const
 
template<typename T >
nint isSuper () const
 
template<typename T >
T * cast ()
 
template<typename T >
const T * cast () const BY_CONST_FUNC(cast< T >()) virtual void *cast(const type &to)
 
const void * cast (const type &to) const BY_CONST_FUNC(cast(to)) void *cast(const type *it) BY_SIDE_FUNC(cast)
 
- Public Member Functions inherited from by::clonable
virtual me * clone () const =0
 
virtual me * cloneDeep () const
 
virtual void onCloneDeep (const me &from)
 
- Public Member Functions inherited from by::frameInteractable
void inFrame () const
 

Additional Inherited Members

- Public Attributes inherited from by::node
T sub name
 
T sub nullptr
 
tpriorities< T > subAll< T > name
 
priorType prioritize it
 
priorType prioritize NO_MATCH
 
str run name
 
- Protected Member Functions inherited from by::node
virtual str _onRunSub (node &sub, const args &a)
 
void _setSrc (const src *it) BY_SIDE_FUNC(_setSrc)
 
- Protected Member Functions inherited from by::instance
nbool _setId (id new1)
 
- Static Protected Member Functions inherited from by::instance
static instancer_getMgr ()
 
- Protected Attributes inherited from by::expr
tstr< src_src
 
point _pos
 

Detailed Description

End blockExpr for function cleanup.

Represents end blocks that execute after function completion. Used for cleanup operations and finally-like behavior in functions.

Member Function Documentation

◆ getEval()

str by::endExpr::getEval ( ) const
overridevirtual

getType() returns what it is. opposite to it, this returns what this class will represents after evaluation.

for example, the expr class has derived from this node class. and if an user call the funcs to get type of it, class 'ntype' of 'expr' will be returned. but if that user call the 'getEval()' then the 'expr' object evaluate its terms and returns it as a node from the output. it could be an integer if it was addExpr and all terms are constructed with integers.

and also this func requires frames. means that you have to interact frame first before call this func.

Remarks
some derived class of node may require to call this function first by verifier. if you call this function without calling verifier previously will damage then process.

Reimplemented from by::blockExpr.


The documentation for this class was generated from the following file: