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nasal_runtime.h Normal file
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#ifndef __NASAL_RUNTIME_H__
#define __NASAL_RUNTIME_H__
class var
{
private:
int type;
std::string name;
double number;
std::string str;
std::list<var> var_list;
std::list<var> var_hash;
abstract_syntax_tree function;
public:
var()
{
type=0;
name="";
number=0;
str="";
function.set_clear();
}
var(const var& p)
{
type=p.type;
name=p.name;
number=p.number;
str=p.str;
function=p.function;
}
var& operator=(const var& p)
{
type=p.type;
name=p.name;
number=p.number;
str=p.str;
function=p.function;
return *this;
}
void print_information()
{
std::cout<<"[ type: ";print_token(type);std::cout<<" ]";
std::cout<<"[ name: "<<name<<" ]";
std::cout<<"[ number: "<<number<<" ]";
std::cout<<"[ string: "<<str<<" ]";
std::cout<<std::endl;
return;
}
void set_type(const int var_type)
{
type=var_type;
return;
}
void set_name(std::string var_name_str)
{
name=var_name_str;
return;
}
void set_number(const double var_number)
{
number=var_number;
return;
}
void set_string(std::string s)
{
str=s;
return;
}
void set_function(abstract_syntax_tree func)
{
function=func;
return;
}
void set_list(std::list<var> p)
{
var_list=p;
return;
}
void append_list(var p)
{
var_list.push_back(p);
return;
}
void set_hash(std::list<var> p)
{
var_hash=p;
return;
}
void append_hash(var p)
{
var_hash.push_back(p);
return;
}
int get_type()
{
return type;
}
std::string get_name()
{
return name;
}
double get_number()
{
return number;
}
std::string get_string()
{
return str;
}
abstract_syntax_tree get_function()
{
return function;
}
std::list<var> get_list()
{
return var_list;
}
std::list<var> get_hash()
{
return var_hash;
}
};
class var_scope_manager
{
private:
std::list<std::list<var>> scope_list;
var error_var;
public:
var_scope_manager()
{
scope_list.clear();
std::string str="__nas_strc_error_ret";
error_var.set_name(str);
error_var.set_type(__null_type);
return;
}
void set_clear()
{
scope_list.clear();
return;
}
var& search_var(std::string str)
{
for(std::list<std::list<var>>::iterator i=scope_list.begin();i!=scope_list.end();++i)
for(std::list<var>::iterator j=i->begin();j!=i->end();++j)
if(j->get_name()==str)
return *j;
return error_var;
}
void add_var(var new_var)
{
for(std::list<std::list<var>>::iterator i=scope_list.begin();i!=scope_list.end();++i)
for(std::list<var>::iterator j=i->begin();j!=i->end();++j)
if(j->get_name()==new_var.get_name())
{
std::cout<<">>[Runtime] redeclaration of var '"<<new_var.get_name()<<"' ."<<std::endl;
return;
}
if(!scope_list.empty())
{
std::list<std::list<var>>::iterator i=scope_list.end();
--i;
i->push_back(new_var);
}
else
std::cout<<">>[Runtime] empty scope list."<<std::endl;
return;
}
void add_new_scope()
{
std::list<var> new_list;
scope_list.push_back(new_list);
return;
}
void pop_last_scope()
{
if(!scope_list.empty())
scope_list.pop_back();
else
std::cout<<">>[Runtime] scope poped empty thing."<<std::endl;
return;
}
};
class parameter_list
{
private:
std::list<var> parameters;
var error_var;
public:
parameter_list()
{
parameters.clear();
std::string str="__nas_strc_error_ret";
error_var.set_name(str);
error_var.set_type(__null_type);
return;
}
parameter_list(const parameter_list& p)
{
parameters=p.parameters;
error_var=p.error_var;
return;
}
void set_clear()
{
parameters.clear();
return;
}
var& search_var(std::string str)
{
// parameters have nothing to do with scope_list so
// if there is a var whose name appeared in scope_list,
// the var will be called only in this function area.
for(std::list<var>::iterator i=parameters.begin();i!=parameters.end();++i)
if(i->get_name()==str)
return *i;
return error_var;
}
void add_var(var new_var)
{
for(std::list<var>::iterator i=parameters.begin();i!=parameters.end();++i)
if(i->get_name()==new_var.get_name())
{
std::cout<<">>[Runtime] redeclaration of var '"<<new_var.get_name()<<"' ."<<std::endl;
return;
}
parameters.push_back(new_var);
return;
}
};
class nasal_runtime
{
private:
abstract_syntax_tree root;
var_scope_manager scope;
public:
nasal_runtime()
{
root.set_clear();
return;
}
void run()
{
std::cout<<">>[Runtime] process begins."<<std::endl;
int time_beg,time_end;
time_beg=time(NULL);
run_root(root);
time_end=time(NULL);
std::cout<<">>[Runtime] process exited after "<<time_beg-time_end<<" sec(s)."<<std::endl;
return;
}
void set_root(abstract_syntax_tree& tree)
{
root.set_clear();
root=tree;
std::cout<<">>[Runtime] runtime got the ast-root: "<<((void *)&tree)<<"->"<<((void *)&root)<<"."<<std::endl;
return;
}
void run_definition(abstract_syntax_tree& tree);
void run_assignment(abstract_syntax_tree& tree);
void run_loop(abstract_syntax_tree& tree);
void run_if_else(abstract_syntax_tree& tree);
void run_block(abstract_syntax_tree& tree,int run_type,parameter_list paras);
void run_root(abstract_syntax_tree& tree);
var run_calculation(abstract_syntax_tree& tree);
var run_function(abstract_syntax_tree& tree);
var list_generation(abstract_syntax_tree& tree);
var hash_generation(abstract_syntax_tree& tree);
var identifier_call(abstract_syntax_tree& tree,parameter_list paras);
var scalar_call(abstract_syntax_tree& tree);
};
void nasal_runtime::run_root(abstract_syntax_tree& tree)
{
scope.add_new_scope();
parameter_list null_para;
if(!tree.get_children().empty())
{
for(std::list<abstract_syntax_tree>::iterator i=tree.get_children().begin();i!=tree.get_children().end();++i)
{
switch(i->get_type())
{
case __add_operator:
case __sub_operator:
case __mul_operator:
case __div_operator:
case __link_operator:
case __and_operator:
case __or_operator:
case __nor_operator:
case __cmp_equal:
case __cmp_not_equal:
case __cmp_less:
case __cmp_less_or_equal:
case __cmp_more:
case __cmp_more_or_equal:
run_calculation(*i);
break;
case __definition:
run_definition(*i);
break;
case __assignment:
run_assignment(*i);
break;
case __while:
case __for:
case __forindex:
case __foreach:
run_loop(*i);
break;
case __ifelse:
run_if_else(*i);
break;
case __call_function:
run_function(*i);
break;
case __id:
case __hash_search:
case __list_search:
identifier_call(*i,null_para);
break;
case __number:
case __string:
scalar_call(*i);
break;
default:
std::cout<<">>[Debug] error occurred."<<std::endl;
scope.pop_last_scope();
return;
break;
}
}
}
scope.pop_last_scope();
return;
}
void nasal_runtime::run_definition(abstract_syntax_tree& tree)
{
var new_var;
std::list<abstract_syntax_tree>::iterator iter=tree.get_children().begin();
std::string var_name=iter->get_var_name();
++iter;
if(iter==tree.get_children().end())
{
new_var.set_type(__null_type);
new_var.set_name(var_name);
scope.add_var(new_var);
return;
}
else
{
switch(iter->get_type())
{
case __add_operator:
case __sub_operator:
case __mul_operator:
case __div_operator:
case __link_operator:
case __and_operator:
case __or_operator:
case __nor_operator:
case __cmp_equal:
case __cmp_not_equal:
case __cmp_less:
case __cmp_less_or_equal:
case __cmp_more:
case __cmp_more_or_equal:
new_var=run_calculation(*iter);
break;
case __call_function:
new_var=run_function(*iter);
break;
case __id:
case __hash_search:
case __list_search:
break;
case __number:
case __string:
new_var=scalar_call(*iter);
break;
case __function:
new_var.set_type(__function);
new_var.set_function(*iter);
break;
case __list:
break;
case __hash:
break;
default:
std::cout<<">>[Debug] error occurred."<<std::endl;
return;
break;
}
new_var.set_name(var_name);
scope.add_var(new_var);
}
return;
}
void nasal_runtime::run_assignment(abstract_syntax_tree& tree)
{
return;
}
void nasal_runtime::run_loop(abstract_syntax_tree& tree)
{
return;
}
void nasal_runtime::run_if_else(abstract_syntax_tree& tree)
{
return;
}
void nasal_runtime::run_block(abstract_syntax_tree& tree,int run_type,parameter_list paras)
{
scope.add_new_scope();
scope.pop_last_scope();
return;
}
var nasal_runtime::run_calculation(abstract_syntax_tree& tree)
{
var ret_var;
switch(tree.get_type())
{
case __or_operator:
case __and_operator:
break;
case __add_operator:
case __mul_operator:
case __div_operator:
case __link_operator:
break;
case __nor_operator:
case __sub_operator:
break;
case __cmp_equal:
case __cmp_not_equal:
case __cmp_less:
case __cmp_less_or_equal:
case __cmp_more:
case __cmp_more_or_equal:
break;
}
return ret_var;
}
var nasal_runtime::run_function(abstract_syntax_tree& tree)
{
var null_var;
return null_var;
}
var nasal_runtime::list_generation(abstract_syntax_tree& tree)
{
var new_list;
new_list.set_type(__list);
return new_list;
}
var nasal_runtime::hash_generation(abstract_syntax_tree& tree)
{
var new_hash;
new_hash.set_type(__hash);
return new_hash;
}
var nasal_runtime::identifier_call(abstract_syntax_tree& tree,parameter_list paras)
{
var ret_var;
ret_var=paras.search_var(tree.get_var_name());
if(ret_var.get_type()==__null_type)
ret_var=scope.search_var(tree.get_var_name());
if(ret_var.get_type()==__number)
std::cout<<ret_var.get_number()<<std::endl;
else if(ret_var.get_type()==__string)
std::cout<<ret_var.get_string()<<std::endl;
return ret_var;
}
var nasal_runtime::scalar_call(abstract_syntax_tree& tree)
{
var ret_var;
if(tree.get_type()==__number)
{
ret_var.set_type(__number);
ret_var.set_number(tree.get_var_number());
}
else if(tree.get_type()==__string)
{
ret_var.set_type(__string);
ret_var.set_string(tree.get_var_string());
}
return ret_var;
}
#endif