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206 lines
8.2 KiB
206 lines
8.2 KiB
#include "util/OptionParser.h"
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#include "util/MinigridGrammar.h"
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#include "util/Grid.h"
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#include "util/ConfigYaml.h"
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#include <iostream>
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#include <fstream>
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#include <filesystem>
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#include <sstream>
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std::vector<std::string> parseCommaSeparatedString(std::string const& str) {
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std::vector<std::string> result;
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std::stringstream stream(str);
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while(stream.good()) {
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std::string substr;
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getline(stream, substr, ',');
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substr.at(0) = std::toupper(substr.at(0));
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result.push_back(substr);
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}
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return result;
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}
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struct printer {
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typedef boost::spirit::utf8_string string;
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void element(string const& tag, string const& value, int depth) const {
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for (int i = 0; i < (depth*4); ++i) std::cout << ' ';
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std::cout << "tag: " << tag;
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if (value != "") std::cout << ", value: " << value;
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std::cout << std::endl;
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}
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};
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void print_info(boost::spirit::info const& what) {
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using boost::spirit::basic_info_walker;
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printer pr;
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basic_info_walker<printer> walker(pr, what.tag, 0);
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boost::apply_visitor(walker, what.value);
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}
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int main(int argc, char* argv[]) {
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popl::OptionParser optionParser("Allowed options");
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auto helpOption = optionParser.add<popl::Switch>("h", "help", "Print this help message.");
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auto inputFilename = optionParser.add<popl::Value<std::string>>("i", "input-file", "Filename of the input file.");
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auto outputFilename = optionParser.add<popl::Value<std::string>>("o", "output-file", "Filename for the output file.");
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auto agentsToBeConsidered = optionParser.add<popl::Value<std::string>, popl::Attribute::optional>("a", "agents", "Which parsed agents should be considered in the output. WIP.");
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auto viewForAgents = optionParser.add<popl::Value<std::string>, popl::Attribute::optional>("v", "view", "Agents for which the 'view'('direction') variable should be included. WIP.");
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auto probabilisticBehaviourAgents = optionParser.add<popl::Value<std::string>, popl::Attribute::optional>("p", "prob-beh", "Agents for which we want to include probabilistic actions");
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auto probabilities = optionParser.add<popl::Value<std::string>, popl::Attribute::optional>("q", "probs", "The probabilities for which probabilistic actions should be added. WIP");
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auto enforceOneWays = optionParser.add<popl::Switch>("f", "force-oneways", "Enforce encoding of oneways. This entails that slippery tiles do not allow turning and have prob 1 to shift the agent by one and makes turning impossible if in a one tile wide section of the grid.");
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auto configFilename = optionParser.add<popl::Value<std::string>, popl::Attribute::optional>("c", "config-file", "Filename of the predicate configuration file.");
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try {
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optionParser.parse(argc, argv);
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if(helpOption->count() > 0) {
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std::cout << optionParser << std::endl;
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return EXIT_SUCCESS;
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}
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} catch (const popl::invalid_option &e) {
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return io::printPoplException(e);
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} catch (const std::exception &e) {
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std::cerr << "Exception: " << e.what() << "\n";
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return EXIT_FAILURE;
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}
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GridOptions gridOptions = { {}, {} };
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if(agentsToBeConsidered->is_set()) {
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gridOptions.agentsToBeConsidered = parseCommaSeparatedString(agentsToBeConsidered->value(0));
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}
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if(viewForAgents->is_set()) {
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gridOptions.agentsWithView = parseCommaSeparatedString(viewForAgents->value(0));
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}
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if(enforceOneWays->is_set()) {
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gridOptions.enforceOneWays = true;
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}
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if(probabilisticBehaviourAgents->is_set()) {
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gridOptions.agentsWithProbabilisticBehaviour = parseCommaSeparatedString(probabilisticBehaviourAgents->value(0));
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for(auto const& a : gridOptions.agentsWithProbabilisticBehaviour) {
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std::cout << a << std::endl;
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}
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if(probabilities->is_set()) {
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std::vector<std::string> parsedStrings = parseCommaSeparatedString(probabilities->value(0));
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std::transform(parsedStrings.begin(), parsedStrings.end(), std::back_inserter(gridOptions.probabilitiesForActions), [](const std::string& string) {
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return std::stof(string);
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});
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for(auto const& a : gridOptions.probabilitiesForActions) {
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std::cout << a << std::endl;
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}
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} else {
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throw std::logic_error{ "When adding agents with probabilistic behaviour, you also need to specify a list of probabilities via --probs." };
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}
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}
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std::fstream file {outputFilename->value(0), file.trunc | file.out};
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std::fstream infile {inputFilename->value(0), infile.in};
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std::string line, content, background, rewards, properties;
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std::cout << "\n";
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bool parsingBackground = false;
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bool parsingStateRewards = false;
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bool parsingEnvironmentProperties = false;
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while (std::getline(infile, line) && !line.empty()) {
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if(line.at(0) == '-' && line.at(line.size() - 1) == '-' && parsingBackground) {
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parsingStateRewards = true;
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parsingBackground = false;
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continue;
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} else if (line.at(0) == '-' && line.at(line.size() - 1 ) == '-' && parsingStateRewards) {
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parsingStateRewards = false;
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parsingEnvironmentProperties = true;
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continue;
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} else if(line.at(0) == '-' && line.at(line.size() - 1) == '-') {
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parsingBackground = true;
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continue;
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}
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if(!parsingBackground && !parsingStateRewards && !parsingEnvironmentProperties) {
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content += line + "\n";
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} else if (parsingBackground) {
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background += line + "\n";
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} else if(parsingStateRewards) {
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rewards += line + "\n";
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} else if (parsingEnvironmentProperties) {
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properties += line + "\n";
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}
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}
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std::cout << "\n";
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pos_iterator_t contentFirst(content.begin());
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pos_iterator_t contentIter = contentFirst;
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pos_iterator_t contentLast(content.end());
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MinigridParser<pos_iterator_t> contentParser(contentFirst);
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pos_iterator_t backgroundFirst(background.begin());
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pos_iterator_t backgroundIter = backgroundFirst;
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pos_iterator_t backgroundLast(background.end());
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MinigridParser<pos_iterator_t> backgroundParser(backgroundFirst);
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cells contentCells;
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cells backgroundCells;
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std::vector<Configuration> configurations;
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std::map<coordinates, float> stateRewards;
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float faultyProbability = 0.0;
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float probIntended = 0.9;
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try {
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bool ok = phrase_parse(contentIter, contentLast, contentParser, qi::space, contentCells);
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// TODO if(background is not empty) {
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ok &= phrase_parse(backgroundIter, backgroundLast, backgroundParser, qi::space, backgroundCells);
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// TODO }
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if (configFilename->is_set()) {
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YamlConfigParser parser(configFilename->value(0));
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configurations = parser.parseConfiguration();
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}
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boost::escaped_list_separator<char> seps('\\', ';', '\n');
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Tokenizer csvParser(rewards, seps);
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for(auto iter = csvParser.begin(); iter != csvParser.end(); ++iter) {
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int x = std::stoi(*iter);
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int y = std::stoi(*(++iter));
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float reward = std::stof(*(++iter));
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stateRewards[std::make_pair(x,y)] = reward;
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}
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if (!properties.empty()) {
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auto faultProbabilityIdentifier = std::string("FaultProbability:");
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auto start_pos = properties.find(faultProbabilityIdentifier);
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if (start_pos != std::string::npos) {
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auto end_pos = properties.find('\n', start_pos);
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auto value = properties.substr(start_pos + faultProbabilityIdentifier.length(), end_pos - start_pos - faultProbabilityIdentifier.length());
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faultyProbability = std::stod(value);
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}
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}
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if(ok) {
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Grid grid(contentCells, backgroundCells, gridOptions, stateRewards, probIntended, faultyProbability);
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grid.printToPrism(std::cout, configurations , gridOptions.getModelType());
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std::stringstream ss;
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// grid.printToPrism(file, configurations ,prism::ModelType::MDP);
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grid.printToPrism(ss, configurations , gridOptions.getModelType());
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std::string str = ss.str();
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grid.applyOverwrites(str, configurations);
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file << str;
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}
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} catch(qi::expectation_failure<pos_iterator_t> const& e) {
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std::cout << "expected: "; print_info(e.what_);
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std::cout << "got: \"" << std::string(e.first, e.last) << '"' << std::endl;
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std::cout << "Expectation failure: " << e.what() << " at '" << std::string(e.first,e.last) << "'\n";
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} catch(const std::exception& e) {
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std::cerr << "Exception '" << typeid(e).name() << "' caught:" << std::endl;
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std::cerr << "\t" << e.what() << std::endl;
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std::exit(EXIT_FAILURE);
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}
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return 0;
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}
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