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cpp_language.cpp
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/*******************************************************************\
Module: C++ Language Module
Author: Daniel Kroening, [email protected]
\*******************************************************************/
/// \file
/// C++ Language Module
#include "cpp_language.h"
#include <util/config.h>
#include <util/get_base_name.h>
#include <util/symbol_table.h>
#include <ansi-c/ansi_c_entry_point.h>
#include <ansi-c/c_preprocess.h>
#include <linking/linking.h>
#include <linking/remove_internal_symbols.h>
#include "cpp_internal_additions.h"
#include "cpp_parser.h"
#include "cpp_type2name.h"
#include "cpp_typecheck.h"
#include "expr2cpp.h"
#include <cstring>
#include <fstream>
std::set<std::string> cpp_languaget::extensions() const
{
std::set<std::string> s;
s.insert("cpp");
s.insert("CPP");
s.insert("cc");
s.insert("cp");
s.insert("c++");
s.insert("ii");
s.insert("cxx");
#ifndef _WIN32
s.insert("C");
#endif
return s;
}
void cpp_languaget::modules_provided(std::set<std::string> &modules)
{
modules.insert(get_base_name(parse_path, true));
}
/// ANSI-C preprocessing
bool cpp_languaget::preprocess(
std::istream &instream,
const std::string &path,
std::ostream &outstream,
message_handlert &message_handler)
{
if(path.empty())
return c_preprocess(instream, outstream, message_handler);
// check extension
const char *ext=strrchr(path.c_str(), '.');
if(ext!=nullptr && std::string(ext)==".ipp")
{
std::ifstream infile(path);
char ch;
while(infile.read(&ch, 1))
outstream << ch;
return false;
}
return c_preprocess(path, outstream, message_handler);
}
bool cpp_languaget::parse(
std::istream &instream,
const std::string &path,
message_handlert &message_handler)
{
// store the path
parse_path=path;
// preprocessing
std::ostringstream o_preprocessed;
cpp_internal_additions(o_preprocessed);
if(preprocess(instream, path, o_preprocessed, message_handler))
return true;
std::istringstream i_preprocessed(o_preprocessed.str());
// parsing
cpp_parsert cpp_parser{message_handler};
cpp_parser.set_file(path);
cpp_parser.in=&i_preprocessed;
cpp_parser.mode=config.ansi_c.mode;
bool result=cpp_parser.parse();
// save result
cpp_parse_tree.swap(cpp_parser.parse_tree);
return result;
}
bool cpp_languaget::typecheck(
symbol_table_baset &symbol_table,
const std::string &module,
message_handlert &message_handler)
{
if(module.empty())
return false;
symbol_tablet new_symbol_table;
if(cpp_typecheck(cpp_parse_tree, new_symbol_table, module, message_handler))
return true;
remove_internal_symbols(new_symbol_table, message_handler, false);
return linking(symbol_table, new_symbol_table, message_handler);
}
bool cpp_languaget::generate_support_functions(
symbol_table_baset &symbol_table,
message_handlert &message_handler)
{
return ansi_c_entry_point(
symbol_table, message_handler, object_factory_params);
}
void cpp_languaget::show_parse(std::ostream &out, message_handlert &)
{
for(const auto &i : cpp_parse_tree.items)
show_parse(out, i);
}
void cpp_languaget::show_parse(
std::ostream &out,
const cpp_itemt &item)
{
if(item.is_linkage_spec())
{
const cpp_linkage_spect &linkage_spec=
item.get_linkage_spec();
out << "LINKAGE " << linkage_spec.linkage().get(ID_value) << ":\n";
for(const auto &i : linkage_spec.items())
show_parse(out, i);
out << '\n';
}
else if(item.is_namespace_spec())
{
const cpp_namespace_spect &namespace_spec=
item.get_namespace_spec();
out << "NAMESPACE " << namespace_spec.get_namespace()
<< ":\n";
for(const auto &i : namespace_spec.items())
show_parse(out, i);
out << '\n';
}
else if(item.is_using())
{
const cpp_usingt &cpp_using=item.get_using();
out << "USING ";
if(cpp_using.get_namespace())
out << "NAMESPACE ";
out << cpp_using.name().pretty() << '\n';
out << '\n';
}
else if(item.is_declaration())
{
item.get_declaration().output(out);
}
else
out << "UNKNOWN: " << item.pretty() << '\n';
}
std::unique_ptr<languaget> new_cpp_language()
{
return std::make_unique<cpp_languaget>();
}
bool cpp_languaget::from_expr(
const exprt &expr,
std::string &code,
const namespacet &ns)
{
code=expr2cpp(expr, ns);
return false;
}
bool cpp_languaget::from_type(
const typet &type,
std::string &code,
const namespacet &ns)
{
code=type2cpp(type, ns);
return false;
}
bool cpp_languaget::type_to_name(
const typet &type,
std::string &name,
const namespacet &)
{
name=cpp_type2name(type);
return false;
}
bool cpp_languaget::to_expr(
const std::string &code,
const std::string &,
exprt &expr,
const namespacet &ns,
message_handlert &message_handler)
{
expr.make_nil();
// no preprocessing yet...
std::istringstream i_preprocessed(code);
// parsing
cpp_parsert cpp_parser{message_handler};
cpp_parser.set_file(irep_idt());
cpp_parser.in=&i_preprocessed;
bool result=cpp_parser.parse();
if(cpp_parser.parse_tree.items.empty())
result=true;
else
{
// TODO
// expr.swap(cpp_parser.parse_tree.declarations.front());
// typecheck it
result = cpp_typecheck(expr, message_handler, ns);
}
return result;
}
cpp_languaget::~cpp_languaget()
{
}