Files
Sourcetrail/src/lib/data/graph/Node.cpp
T
malte_langkabel 63407c2c81 data: basic template parsing
* Implemented basic parsing and storage of template parameter types, template classes and template functions
* Added template specialization edge.
* Implemented handling of partial specializations. Needs some more tweaking.
* Added a lot of test code for template stuff (still needs some cases to be tested)
* Removed the isTemplateParameterType from DataType, since it shouldn't be needed
* Function qualTypeToDataType uses clang PrintingPolicy to fetch the desired format.
* Merged a lot of code for getting the correct names and name hierarchies of definitions
* Removed TokenComponentDataType
* Merged both of the Storage::addTypeEdge(...) functions
* Added "-fno-delayed-template-parsing" flag to parser for parsing test code.
2014-11-24 16:50:31 +01:00

350 lines
6.5 KiB
C++

#include "data/graph/Node.h"
#include <sstream>
#include "data/graph/token_component/TokenComponentAbstraction.h"
#include "data/graph/token_component/TokenComponentConst.h"
#include "data/graph/token_component/TokenComponentName.h"
#include "data/graph/token_component/TokenComponentStatic.h"
#include "data/graph/token_component/TokenComponentSignature.h"
#include "utility/logging/logging.h"
Node::Node(NodeType type, const std::string& name)
: m_type(type)
, m_nameComponent(std::make_shared<TokenComponentNameCached>(name))
{
}
Node::Node(NodeType type, std::shared_ptr<TokenComponentName> nameComponent)
: m_type(type)
, m_nameComponent(nameComponent)
{
}
Node::Node(const Node& other)
: Token(other)
, m_type(other.m_type)
, m_nameComponent(other.m_nameComponent->copyComponentName())
{
}
Node::~Node()
{
}
Node::NodeType Node::getType() const
{
return m_type;
}
void Node::setType(NodeType type)
{
if (!isType(type | NODE_UNDEFINED | NODE_UNDEFINED_FUNCTION | NODE_UNDEFINED_VARIABLE | NODE_UNDEFINED_TYPE))
{
LOG_WARNING(
"Cannot change NodeType after it was already set from " + getTypeString() + " to " + getTypeString(type)
);
return;
}
m_type = type;
}
bool Node::isType(NodeTypeMask mask) const
{
return (m_type & mask) > 0;
}
std::string Node::getName() const
{
return m_nameComponent->getName();
}
std::string Node::getFullName() const
{
return m_nameComponent->getFullName();
}
const TokenComponentName* Node::getTokenComponentName() const
{
if (m_nameComponent)
{
return m_nameComponent.get();
}
return nullptr;
}
const std::vector<Edge*>& Node::getEdges() const
{
return m_edges;
}
void Node::addEdge(Edge* edge)
{
m_edges.push_back(edge);
}
void Node::removeEdge(Edge* edge)
{
m_edges.erase(find(m_edges.begin(), m_edges.end(), edge));
}
Node* Node::getParentNode() const
{
Edge* edge = getMemberEdge();
if (edge)
{
return edge->getFrom();
}
return nullptr;
}
Node* Node::getLastParentNode()
{
Node* parent = getParentNode();
if (parent)
{
return parent->getLastParentNode();
}
return this;
}
Edge* Node::getMemberEdge() const
{
return findEdgeOfType(Edge::EDGE_MEMBER,
[this](Edge* e)
{
return e->getTo() == this;
}
);
}
Edge* Node::findEdge(std::function<bool(Edge*)> func) const
{
std::vector<Edge*>::const_iterator it = find_if(m_edges.begin(), m_edges.end(), func);
if (it != m_edges.end())
{
return *it;
}
return nullptr;
}
Edge* Node::findEdgeOfType(Edge::EdgeType type) const
{
return findEdgeOfType(type, [](Edge* e){ return true; });
}
Edge* Node::findEdgeOfType(Edge::EdgeType type, std::function<bool(Edge*)> func) const
{
std::vector<Edge*>::const_iterator it = find_if(m_edges.begin(), m_edges.end(),
[type, func](Edge* e)
{
if (e->getType() == type)
{
return func(e);
}
return false;
}
);
if (it != m_edges.end())
{
return *it;
}
return nullptr;
}
Node* Node::findChildNode(std::function<bool(Node*)> func) const
{
std::vector<Edge*>::const_iterator it = find_if(m_edges.begin(), m_edges.end(),
[&func](Edge* e)
{
if (e->getType() == Edge::EDGE_MEMBER)
{
return func(e->getTo());
}
return false;
}
);
if (it != m_edges.end())
{
return (*it)->getTo();
}
return nullptr;
}
void Node::forEachEdge(std::function<void(Edge*)> func) const
{
for_each(m_edges.begin(), m_edges.end(), func);
}
void Node::forEachEdgeOfType(Edge::EdgeType type, std::function<void(Edge*)> func) const
{
for_each(m_edges.begin(), m_edges.end(),
[type, func](Edge* e)
{
if (e->getType() == type)
{
func(e);
}
}
);
}
void Node::forEachChildNode(std::function<void(Node*)> func) const
{
forEachEdgeOfType(Edge::EDGE_MEMBER,
[func, this](Edge* e)
{
if (this != e->getTo())
{
func(e->getTo());
}
}
);
}
bool Node::isNode() const
{
return true;
}
bool Node::isEdge() const
{
return false;
}
void Node::addComponentAbstraction(std::shared_ptr<TokenComponentAbstraction> component)
{
if (getComponent<TokenComponentAbstraction>())
{
LOG_ERROR("TokenComponentAbstraction has been set before!");
}
else if (!isType(NODE_METHOD))
{
LOG_ERROR("TokenComponentAbstraction can't be set on node of type: " + getTypeString());
}
else
{
addComponent(component);
}
}
void Node::addComponentConst(std::shared_ptr<TokenComponentConst> component)
{
if (getComponent<TokenComponentConst>())
{
LOG_ERROR("TokenComponentConst has been set before!");
}
else if (!isType(NODE_METHOD))
{
LOG_ERROR("TokenComponentConst can't be set on node of type: " + getTypeString());
}
else
{
addComponent(component);
}
}
void Node::addComponentStatic(std::shared_ptr<TokenComponentStatic> component)
{
if (getComponent<TokenComponentStatic>())
{
LOG_ERROR("TokenComponentStatic has been set before!");
}
else if (!isType(NODE_GLOBAL_VARIABLE | NODE_FIELD | NODE_FUNCTION | NODE_METHOD))
{
LOG_ERROR("TokenComponentStatic can't be set on node of type: " + getTypeString());
}
else
{
addComponent(component);
}
}
void Node::addComponentSignature(std::shared_ptr<TokenComponentSignature> component)
{
if (getComponent<TokenComponentSignature>())
{
LOG_ERROR("TokenComponentSignature has been set before!");
}
else if (!isType(NODE_UNDEFINED_FUNCTION | NODE_FUNCTION | NODE_METHOD))
{
LOG_ERROR("TokenComponentSignature can't be set on node of type: " + getTypeString());
}
else
{
addComponent(component);
}
}
std::string Node::getTypeString(NodeType type) const
{
switch (type)
{
case NODE_UNDEFINED:
return "undefined";
case NODE_UNDEFINED_FUNCTION:
return "undefined_function";
case NODE_UNDEFINED_VARIABLE:
return "undefined_variable";
case NODE_UNDEFINED_TYPE:
return "undefined_type";
case NODE_CLASS:
return "class";
case NODE_STRUCT:
return "struct";
case NODE_GLOBAL_VARIABLE:
return "global";
case NODE_FIELD:
return "field";
case NODE_FUNCTION:
return "function";
case NODE_METHOD:
return "method";
case NODE_NAMESPACE:
return "namespace";
case NODE_ENUM:
return "enum";
case NODE_TYPEDEF:
return "typedef";
case NODE_TEMPLATE_PARAMETER_TYPE:
return "template parameter type";
}
return "";
}
std::string Node::getTypeString() const
{
return getTypeString(m_type);
}
std::string Node::getAsString() const
{
std::stringstream str;
str << "[" << getId() << "] " << getTypeString() << ": " << "\"" << getName() << "\"";
if (getComponent<TokenComponentStatic>())
{
str << " static";
}
if (getComponent<TokenComponentConst>())
{
str << " const";
}
return str.str();
}
std::ostream& operator<<(std::ostream& ostream, const Node& node)
{
ostream << node.getAsString();
return ostream;
}