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#include "DFTJsonParser.h"
#include <iostream>
#include <fstream>
#include <boost/algorithm/string.hpp>
#include <boost/lexical_cast.hpp>
#include <boost/algorithm/string/replace.hpp>
#include "storm/exceptions/NotImplementedException.h"
#include "storm/exceptions/FileIoException.h"
#include "storm/exceptions/NotSupportedException.h"
#include "storm/utility/macros.h"
#include "storm/utility/file.h"
namespace storm {
namespace parser {
template<typename ValueType>
storm::storage::DFT<ValueType> DFTJsonParser<ValueType>::parseJsonFromFile(std::string const& filename) {
STORM_LOG_DEBUG("Parsing from JSON file");
std::ifstream file;
storm::utility::openFile(filename, file);
json jsonInput;
jsonInput << file;
storm::utility::closeFile(file);
return parseJson(jsonInput);
}
template<typename ValueType>
storm::storage::DFT<ValueType> DFTJsonParser<ValueType>::parseJsonFromString(std::string const& jsonString) {
STORM_LOG_DEBUG("Parsing from JSON string");
json jsonInput = json::parse(jsonString);
return parseJson(jsonInput);
}
template<typename ValueType>
storm::storage::DFT<ValueType> DFTJsonParser<ValueType>::parseJson(json const& jsonInput) {
// Try to parse parameters
if (jsonInput.find("parameters") != jsonInput.end()) {
json parameters = jsonInput.at("parameters");
STORM_LOG_THROW(parameters.empty() || (std::is_same<ValueType, storm::RationalFunction>::value), storm::exceptions::NotSupportedException, "Parameters only allowed when using rational functions.");
for (auto it = parameters.begin(); it != parameters.end(); ++it) {
std::string parameter = it.key();
storm::expressions::Variable var = manager->declareRationalVariable(parameter);
identifierMapping.emplace(var.getName(), var);
parser.setIdentifierMapping(identifierMapping);
STORM_LOG_TRACE("Added parameter: " << var.getName());
}
}
json nodes = jsonInput.at("nodes");
// Start by building mapping from ids to their unique names
std::map<std::string, std::string> nameMapping;
for (auto& element : nodes) {
json data = element.at("data");
std::string id = data.at("id");
nameMapping[id] = generateUniqueName(id, data.at("name"));
}
// Parse nodes
for (auto& element : nodes) {
STORM_LOG_TRACE("Parsing: " << element);
bool success = true;
json data = element.at("data");
std::string name = generateUniqueName(data.at("id"), data.at("name"));
std::vector<std::string> childNames;
if (data.count("children") > 0) {
for (std::string const& child : data.at("children")) {
childNames.push_back(nameMapping[child]);
}
}
std::string type = data.at("type");
if(type == "and") {
success = builder.addAndElement(name, childNames);
} else if (type == "or") {
success = builder.addOrElement(name, childNames);
} else if (type == "vot") {
std::string votThreshold = parseJsonNumber(data.at("voting"));
success = builder.addVotElement(name, boost::lexical_cast<unsigned>(votThreshold), childNames);
} else if (type == "pand") {
success = builder.addPandElement(name, childNames);
} else if (type == "por") {
success = builder.addPorElement(name, childNames);
} else if (type == "spare") {
success = builder.addSpareElement(name, childNames);
} else if (type == "seq") {
success = builder.addSequenceEnforcer(name, childNames);
} else if (type== "fdep") {
success = builder.addDepElement(name, childNames, storm::utility::one<ValueType>());
} else if (type== "pdep") {
ValueType probability = parseRationalExpression(parseJsonNumber(data.at("prob")));
success = builder.addDepElement(name, childNames, probability);
} else if (type == "be") {
ValueType failureRate = parseRationalExpression(parseJsonNumber(data.at("rate")));
ValueType dormancyFactor = parseRationalExpression(parseJsonNumber(data.at("dorm")));
bool transient = false;
if (data.count("transient") > 0) {
transient = data.at("transient");
}
success = builder.addBasicElement(name, failureRate, dormancyFactor, transient);
} else {
STORM_LOG_THROW(false, storm::exceptions::NotSupportedException, "Type name: " << type << " not recognized.");
success = false;
}
// Try to set layout information
if (element.find("position") != element.end()) {
// Do not set layout for dependencies
// This does not work because dependencies might be splitted
// TODO: do splitting later in rewriting step
if (type != "fdep" && type != "pdep") {
// Set layout positions
json position = element.at("position");
double x = position.at("x");
double y = position.at("y");
builder.addLayoutInfo(name, x / 7, y / 7);
}
}
STORM_LOG_THROW(success, storm::exceptions::FileIoException, "Error while adding element '" << element << "'.");
}
std::string toplevelName = nameMapping[parseJsonNumber(jsonInput.at("toplevel"))];
if(!builder.setTopLevel(toplevelName)) {
STORM_LOG_THROW(false, storm::exceptions::FileIoException, "Top level id unknown.");
}
// Build DFT
storm::storage::DFT<ValueType> dft = builder.build();
STORM_LOG_DEBUG("Elements:" << std::endl << dft.getElementsString());
STORM_LOG_DEBUG("Spare Modules:" << std::endl << dft.getSpareModulesString());
return dft;
}
template<typename ValueType>
std::string DFTJsonParser<ValueType>::generateUniqueName(std::string const& id, std::string const& name) {
std::string newId = name;
std::replace(newId.begin(), newId.end(), ' ', '_');
std::replace(newId.begin(), newId.end(), '-', '_');
return newId + "_" + id;
}
template<typename ValueType>
std::string DFTJsonParser<ValueType>::parseJsonNumber(json number) {
if (number.is_string()) {
return number.get<std::string>();
} else {
std::stringstream stream;
stream << number;
return stream.str();
}
}
template<typename ValueType>
ValueType DFTJsonParser<ValueType>::parseRationalExpression(std::string const& expr) {
STORM_LOG_ASSERT(false, "Specialized method should be called.");
return 0;
}
template<>
double DFTJsonParser<double>::parseRationalExpression(std::string const& expr) {
return boost::lexical_cast<double>(expr);
}
template<>
storm::RationalFunction DFTJsonParser<storm::RationalFunction>::parseRationalExpression(std::string const& expr) {
STORM_LOG_TRACE("Translating expression: " << expr);
storm::expressions::Expression expression = parser.parseFromString(expr);
STORM_LOG_TRACE("Expression: " << expression);
storm::RationalFunction rationalFunction = evaluator.asRational(expression);
STORM_LOG_TRACE("Parsed expression: " << rationalFunction);
return rationalFunction;
}
// Explicitly instantiate the class.
template class DFTJsonParser<double>;
template class DFTJsonParser<RationalFunction>;
}
}