PUMA Library Reference Manual
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Puma::CT_ForStmt Class Reference

#include <Puma/CTree.h>

Inheritance diagram for Puma::CT_ForStmt:

Description

Tree node representing a for-statement.

Example:

for(int i=0; i<10; i++) f(i);

Public Member Functions

 CT_ForStmt (CTree *k, CTree *o, CTree *i, CTree *co, CTree *sc, CTree *e, CTree *c, CTree *stmt)
 Constructor.
const char * NodeName () const
 Get the name of the node.
int Sons () const
 Get the number of sons.
CTree * Son (int n) const
 Get the n-th son.
CTree * InitStmt () const
 Get the loop initializer.
CTree * Condition () const
 Get the loop condition.
CTree * Expr () const
 Get the loop counter expression.
CT_Statement * Statement () const
 Get the controlled statement.
void ReplaceSon (CTree *old_son, CTree *new_son)
 Replace a son.
CSemScope * SemScope () const
 Get the scope opened by the for-statement.
Public Member Functions inherited from Puma::CTree
virtual ~CTree ()
 Destructor.
virtual Token * token () const
 Get the first token of the syntactic construct represented by this sub-tree.
virtual Token * end_token () const
 Get the last token of the syntactic construct represented by this sub-tree.
virtual CT_Token * token_node () const
 Get the CT_Token node of the first token of the syntactic construct represented by this sub-tree.
virtual CT_Token * end_token_node () const
 Get the CT_Token node of the last token of the syntactic construct represented by this sub-tree.
virtual CTree * Parent () const
 Get the parent node.
virtual CTypeInfo * Type () const
 Get the semantic type of the node.
virtual CExprValue * Value () const
 Get the calculated value of the expression.
virtual CSemValue * SemValue () const
 Get the semantic value of the node.
virtual CSemObject * SemObject () const
 Get the semantic information of the node.
virtual CT_SimpleName * IsSimpleName ()
 Get a pointer to CT_SimpleName if the current node represents a name.
virtual CT_String * IsString ()
 Get a pointer to CT_String if the current node represents a string.
virtual CT_Declarator * IsDeclarator ()
 Get a pointer to CT_Declarator if the current node represents a declarator.
virtual CT_Expression * IsExpression ()
 Get a pointer to CT_Expression if the current node represents a expression.
virtual CT_Decl * IsDeclaration ()
 Get a pointer to CT_Decl if the current node represents a declaration.
virtual CT_Call * IsCall ()
 Get a pointer to CT_Call if the current node represents a call expression.
virtual CT_List * IsList ()
 Get a pointer to CT_List if the current node represents a list.
virtual CT_DelayedParse * IsDelayedParse ()
 Get a pointer to CT_DelayedParse if the current node represents a delayed code fragment.
bool HasValueNull () const
 Return true if the tree has the constant value 0.
Public Member Functions inherited from Puma::CSemScope
 CSemScope ()
 Constructor.
void Scope (CStructure *s)
 Set the scope.
CStructure * Scope () const
 Get the scope.

Static Public Member Functions

static const char * NodeId ()
 Get the identifier for this node type.

Additional Inherited Members

Static Public Attributes inherited from Puma::CTree
static int alloc
static int release
Protected Member Functions inherited from Puma::CT_Statement
 CT_Statement ()
 Constructor.
virtual CT_Statement * IsStatement ()
 Get this.
Protected Member Functions inherited from Puma::CTree
CTree * Son (CTree *const *sons, int len, int n) const
 Get the n-th son from given sons array.
int Sons (CTree *const *sons, int len) const
 Get the number of sons in the given sons array.
void ReplaceSon (CTree **sons, int len, CTree *old_son, CTree *new_son)
 Replace a son.
void ReplaceSon (CTree *&son, CTree *old_son, CTree *new_son)
 Replace a son if it equals the given son.
void AddSon (CTree *&son, CTree *new_son)
 Add a new son.
void SetParent (const CTree *parent)
 Set the parent tree node.
void SetParent (CTree *node, const CTree *parent)
 Set the parent tree node of the given tree node.
 CTree ()
 Default constructor.

Constructor & Destructor Documentation

◆ CT_ForStmt()

Puma::CT_ForStmt::CT_ForStmt ( CTree * k,
CTree * o,
CTree * i,
CTree * co,
CTree * sc,
CTree * e,
CTree * c,
CTree * stmt )
inline

Constructor.

Parameters
kThe keyword 'for'.
oLeft parenthesis.
iThe loop initializer statement.
coThe loop condition.
scThe semi-colon behind the loop condition.
eThe loop counter expression.
cRight parenthesis.
stmtThe controlled statement.

Member Function Documentation

◆ Condition()

CTree * Puma::CT_ForStmt::Condition ( ) const
inline

Get the loop condition.

◆ Expr()

CTree * Puma::CT_ForStmt::Expr ( ) const
inline

Get the loop counter expression.

◆ InitStmt()

CTree * Puma::CT_ForStmt::InitStmt ( ) const
inline

Get the loop initializer.

◆ NodeId()

const char * Puma::CT_ForStmt::NodeId ( )
static

Get the identifier for this node type.

Can be compared with NodeName().

◆ NodeName()

const char * Puma::CT_ForStmt::NodeName ( ) const
inlinevirtual

Get the name of the node.

Can be compared with NodeId().

Implements Puma::CTree.

◆ ReplaceSon()

void Puma::CT_ForStmt::ReplaceSon ( CTree * old_son,
CTree * new_son )
inlinevirtual

Replace a son.

Parameters
old_sonThe son to replace.
new_sonThe new son.

Reimplemented from Puma::CTree.

◆ SemScope()

CSemScope * Puma::CT_ForStmt::SemScope ( ) const
inlinevirtual

Get the scope opened by the for-statement.

Reimplemented from Puma::CTree.

◆ Son()

CTree * Puma::CT_ForStmt::Son ( int n) const
inlinevirtual

Get the n-th son.

Parameters
nThe index of the son.
Returns
The n-th son or NULL.

Reimplemented from Puma::CTree.

◆ Sons()

int Puma::CT_ForStmt::Sons ( ) const
inlinevirtual

Get the number of sons.

Implements Puma::CTree.

◆ Statement()

CT_Statement * Puma::CT_ForStmt::Statement ( ) const
inline

Get the controlled statement.