LogicalExpression.h 18 KB

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  1. #pragma once
  2. //FIXME: move some of code into .cpp to avoid this include?
  3. #include "JsonNode.h"
  4. namespace LogicalExpressionDetail
  5. {
  6. /// class that defines required types for logical expressions
  7. template<typename ContainedClass>
  8. class ExpressionBase
  9. {
  10. public:
  11. /// Possible logical operations, mostly needed to create different types for boost::variant
  12. enum EOperations
  13. {
  14. ANY_OF,
  15. ALL_OF,
  16. NONE_OF
  17. };
  18. template<EOperations tag> class Element;
  19. typedef Element<ANY_OF> OperatorAny;
  20. typedef Element<ALL_OF> OperatorAll;
  21. typedef Element<NONE_OF> OperatorNone;
  22. typedef ContainedClass Value;
  23. /// Variant that contains all possible elements from logical expression
  24. typedef boost::variant<
  25. OperatorAll,
  26. OperatorAny,
  27. OperatorNone,
  28. Value
  29. > Variant;
  30. /// Variant element, contains list of expressions to which operation "tag" should be applied
  31. template<EOperations tag>
  32. class Element
  33. {
  34. public:
  35. Element() {}
  36. Element(std::vector<Variant> expressions):
  37. expressions(expressions)
  38. {}
  39. std::vector<Variant> expressions;
  40. bool operator == (const Element & other) const
  41. {
  42. return expressions == other.expressions;
  43. }
  44. template <typename Handler>
  45. void serialize(Handler & h, const int version)
  46. {
  47. h & expressions;
  48. }
  49. };
  50. };
  51. /// Visitor to test result (true/false) of the expression
  52. template <typename ContainedClass>
  53. class TestVisitor : public boost::static_visitor<bool>
  54. {
  55. typedef ExpressionBase<ContainedClass> Base;
  56. std::function<bool(const typename Base::Value &)> classTest;
  57. size_t countPassed(const std::vector<typename Base::Variant> & element) const
  58. {
  59. return boost::range::count_if(element, [&](const typename Base::Variant & expr)
  60. {
  61. return boost::apply_visitor(*this, expr);
  62. });
  63. }
  64. public:
  65. TestVisitor(std::function<bool (const typename Base::Value &)> classTest):
  66. classTest(classTest)
  67. {}
  68. bool operator()(const typename Base::OperatorAny & element) const
  69. {
  70. return countPassed(element.expressions) != 0;
  71. }
  72. bool operator()(const typename Base::OperatorAll & element) const
  73. {
  74. return countPassed(element.expressions) == element.expressions.size();
  75. }
  76. bool operator()(const typename Base::OperatorNone & element) const
  77. {
  78. return countPassed(element.expressions) == 0;
  79. }
  80. bool operator()(const typename Base::Value & element) const
  81. {
  82. return classTest(element);
  83. }
  84. };
  85. template <typename ContainedClass>
  86. class SatisfiabilityVisitor;
  87. template <typename ContainedClass>
  88. class FalsifiabilityVisitor;
  89. template <typename ContainedClass>
  90. class PossibilityVisitor : public boost::static_visitor<bool>
  91. {
  92. typedef ExpressionBase<ContainedClass> Base;
  93. protected:
  94. std::function<bool(const typename Base::Value &)> satisfiabilityTest;
  95. std::function<bool(const typename Base::Value &)> falsifiabilityTest;
  96. SatisfiabilityVisitor<ContainedClass> *satisfiabilityVisitor;
  97. FalsifiabilityVisitor<ContainedClass> *falsifiabilityVisitor;
  98. size_t countSatisfiable(const std::vector<typename Base::Variant> & element) const
  99. {
  100. return boost::range::count_if(element, [&](const typename Base::Variant & expr)
  101. {
  102. return boost::apply_visitor(*satisfiabilityVisitor, expr);
  103. });
  104. }
  105. size_t countFalsifiable(const std::vector<typename Base::Variant> & element) const
  106. {
  107. return boost::range::count_if(element, [&](const typename Base::Variant & expr)
  108. {
  109. return boost::apply_visitor(*falsifiabilityVisitor, expr);
  110. });
  111. }
  112. public:
  113. PossibilityVisitor(std::function<bool (const typename Base::Value &)> satisfiabilityTest,
  114. std::function<bool (const typename Base::Value &)> falsifiabilityTest):
  115. satisfiabilityTest(satisfiabilityTest),
  116. falsifiabilityTest(falsifiabilityTest),
  117. satisfiabilityVisitor(nullptr),
  118. falsifiabilityVisitor(nullptr)
  119. {}
  120. void setSatisfiabilityVisitor(SatisfiabilityVisitor<ContainedClass> *satisfiabilityVisitor)
  121. {
  122. this->satisfiabilityVisitor = satisfiabilityVisitor;
  123. }
  124. void setFalsifiabilityVisitor(FalsifiabilityVisitor<ContainedClass> *falsifiabilityVisitor)
  125. {
  126. this->falsifiabilityVisitor = falsifiabilityVisitor;
  127. }
  128. };
  129. /// Visitor to test whether expression's value can be true
  130. template <typename ContainedClass>
  131. class SatisfiabilityVisitor : public PossibilityVisitor<ContainedClass>
  132. {
  133. typedef ExpressionBase<ContainedClass> Base;
  134. public:
  135. SatisfiabilityVisitor(std::function<bool (const typename Base::Value &)> satisfiabilityTest,
  136. std::function<bool (const typename Base::Value &)> falsifiabilityTest):
  137. PossibilityVisitor<ContainedClass>(satisfiabilityTest, falsifiabilityTest)
  138. {
  139. this->setSatisfiabilityVisitor(this);
  140. }
  141. bool operator()(const typename Base::OperatorAny & element) const
  142. {
  143. return this->countSatisfiable(element.expressions) != 0;
  144. }
  145. bool operator()(const typename Base::OperatorAll & element) const
  146. {
  147. return this->countSatisfiable(element.expressions) == element.expressions.size();
  148. }
  149. bool operator()(const typename Base::OperatorNone & element) const
  150. {
  151. return this->countFalsifiable(element.expressions) == element.expressions.size();
  152. }
  153. bool operator()(const typename Base::Value & element) const
  154. {
  155. return this->satisfiabilityTest(element);
  156. }
  157. };
  158. /// Visitor to test whether expression's value can be false
  159. template <typename ContainedClass>
  160. class FalsifiabilityVisitor : public PossibilityVisitor<ContainedClass>
  161. {
  162. typedef ExpressionBase<ContainedClass> Base;
  163. public:
  164. FalsifiabilityVisitor(std::function<bool (const typename Base::Value &)> satisfiabilityTest,
  165. std::function<bool (const typename Base::Value &)> falsifiabilityTest):
  166. PossibilityVisitor<ContainedClass>(satisfiabilityTest, falsifiabilityTest)
  167. {
  168. this->setFalsifiabilityVisitor(this);
  169. }
  170. bool operator()(const typename Base::OperatorAny & element) const
  171. {
  172. return this->countFalsifiable(element.expressions) == element.expressions.size();
  173. }
  174. bool operator()(const typename Base::OperatorAll & element) const
  175. {
  176. return this->countFalsifiable(element.expressions) != 0;
  177. }
  178. bool operator()(const typename Base::OperatorNone & element) const
  179. {
  180. return this->countSatisfiable(element.expressions) != 0;
  181. }
  182. bool operator()(const typename Base::Value & element) const
  183. {
  184. return this->falsifiabilityTest(element);
  185. }
  186. };
  187. /// visitor that is trying to generates candidates that must be fulfilled
  188. /// to complete this expression
  189. template <typename ContainedClass>
  190. class CandidatesVisitor : public boost::static_visitor<std::vector<ContainedClass> >
  191. {
  192. typedef ExpressionBase<ContainedClass> Base;
  193. typedef std::vector<typename Base::Value> TValueList;
  194. TestVisitor<ContainedClass> classTest;
  195. public:
  196. CandidatesVisitor(std::function<bool(const typename Base::Value &)> classTest):
  197. classTest(classTest)
  198. {}
  199. TValueList operator()(const typename Base::OperatorAny & element) const
  200. {
  201. TValueList ret;
  202. if (!classTest(element))
  203. {
  204. for (auto & elem : element.expressions)
  205. boost::range::copy(boost::apply_visitor(*this, elem), std::back_inserter(ret));
  206. }
  207. return ret;
  208. }
  209. TValueList operator()(const typename Base::OperatorAll & element) const
  210. {
  211. TValueList ret;
  212. if (!classTest(element))
  213. {
  214. for (auto & elem : element.expressions)
  215. boost::range::copy(boost::apply_visitor(*this, elem), std::back_inserter(ret));
  216. }
  217. return ret;
  218. }
  219. TValueList operator()(const typename Base::OperatorNone & element) const
  220. {
  221. return TValueList(); //TODO. Implementing this one is not straightforward, if ever possible
  222. }
  223. TValueList operator()(const typename Base::Value & element) const
  224. {
  225. if (classTest(element))
  226. return TValueList();
  227. else
  228. return TValueList(1, element);
  229. }
  230. };
  231. /// Simple foreach visitor
  232. template <typename ContainedClass>
  233. class ForEachVisitor : public boost::static_visitor<typename ExpressionBase<ContainedClass>::Variant>
  234. {
  235. typedef ExpressionBase<ContainedClass> Base;
  236. std::function<typename Base::Variant(const typename Base::Value &)> visitor;
  237. public:
  238. ForEachVisitor(std::function<typename Base::Variant(const typename Base::Value &)> visitor):
  239. visitor(visitor)
  240. {}
  241. typename Base::Variant operator()(const typename Base::Value & element) const
  242. {
  243. return visitor(element);
  244. }
  245. template <typename Type>
  246. typename Base::Variant operator()(Type element) const
  247. {
  248. for (auto & entry : element.expressions)
  249. entry = boost::apply_visitor(*this, entry);
  250. return element;
  251. }
  252. };
  253. /// Minimizing visitor that removes all redundant elements from variant (e.g. AllOf inside another AllOf can be merged safely)
  254. template <typename ContainedClass>
  255. class MinimizingVisitor : public boost::static_visitor<typename ExpressionBase<ContainedClass>::Variant>
  256. {
  257. typedef ExpressionBase<ContainedClass> Base;
  258. public:
  259. typename Base::Variant operator()(const typename Base::Value & element) const
  260. {
  261. return element;
  262. }
  263. template <typename Type>
  264. typename Base::Variant operator()(const Type & element) const
  265. {
  266. Type ret;
  267. for (auto & entryRO : element.expressions)
  268. {
  269. auto entry = boost::apply_visitor(*this, entryRO);
  270. try
  271. {
  272. // copy entries from child of this type
  273. auto sublist = boost::get<Type>(entry).expressions;
  274. std::move(sublist.begin(), sublist.end(), std::back_inserter(ret.expressions));
  275. }
  276. catch (boost::bad_get &)
  277. {
  278. // different type (e.g. allOf vs oneOf) just copy
  279. ret.expressions.push_back(entry);
  280. }
  281. }
  282. for ( auto it = ret.expressions.begin(); it != ret.expressions.end();)
  283. {
  284. if (std::find(ret.expressions.begin(), it, *it) != it)
  285. it = ret.expressions.erase(it); // erase duplicate
  286. else
  287. it++; // goto next
  288. }
  289. return ret;
  290. }
  291. };
  292. /// Json parser for expressions
  293. template <typename ContainedClass>
  294. class Reader
  295. {
  296. typedef ExpressionBase<ContainedClass> Base;
  297. std::function<typename Base::Value(const JsonNode &)> classParser;
  298. typename Base::Variant readExpression(const JsonNode & node)
  299. {
  300. assert(!node.Vector().empty());
  301. std::string type = node.Vector()[0].String();
  302. if (type == "anyOf")
  303. return typename Base::OperatorAny(readVector(node));
  304. if (type == "allOf")
  305. return typename Base::OperatorAll(readVector(node));
  306. if (type == "noneOf")
  307. return typename Base::OperatorNone(readVector(node));
  308. return classParser(node);
  309. }
  310. std::vector<typename Base::Variant> readVector(const JsonNode & node)
  311. {
  312. std::vector<typename Base::Variant> ret;
  313. ret.reserve(node.Vector().size()-1);
  314. for (size_t i=1; i < node.Vector().size(); i++)
  315. ret.push_back(readExpression(node.Vector()[i]));
  316. return ret;
  317. }
  318. public:
  319. Reader(std::function<typename Base::Value(const JsonNode &)> classParser):
  320. classParser(classParser)
  321. {}
  322. typename Base::Variant operator ()(const JsonNode & node)
  323. {
  324. return readExpression(node);
  325. }
  326. };
  327. /// Serializes expression in JSON format. Part of map format.
  328. template <typename ContainedClass>
  329. class Writer : public boost::static_visitor<JsonNode>
  330. {
  331. typedef ExpressionBase<ContainedClass> Base;
  332. std::function<JsonNode(const typename Base::Value &)> classPrinter;
  333. JsonNode printExpressionList(std::string name, const std::vector<typename Base::Variant> & element) const
  334. {
  335. JsonNode ret;
  336. ret.Vector().resize(1);
  337. ret.Vector().back().String() = name;
  338. for (auto & expr : element)
  339. ret.Vector().push_back(boost::apply_visitor(*this, expr));
  340. return ret;
  341. }
  342. public:
  343. Writer(std::function<JsonNode(const typename Base::Value &)> classPrinter):
  344. classPrinter(classPrinter)
  345. {}
  346. JsonNode operator()(const typename Base::OperatorAny & element) const
  347. {
  348. return printExpressionList("anyOf", element.expressions);
  349. }
  350. JsonNode operator()(const typename Base::OperatorAll & element) const
  351. {
  352. return printExpressionList("allOf", element.expressions);
  353. }
  354. JsonNode operator()(const typename Base::OperatorNone & element) const
  355. {
  356. return printExpressionList("noneOf", element.expressions);
  357. }
  358. JsonNode operator()(const typename Base::Value & element) const
  359. {
  360. return classPrinter(element);
  361. }
  362. };
  363. std::string DLL_LINKAGE getTextForOperator(std::string operation);
  364. /// Prints expression in human-readable format
  365. template <typename ContainedClass>
  366. class Printer : public boost::static_visitor<std::string>
  367. {
  368. typedef ExpressionBase<ContainedClass> Base;
  369. std::function<std::string(const typename Base::Value &)> classPrinter;
  370. std::unique_ptr<TestVisitor<ContainedClass>> statusTest;
  371. mutable std::string prefix;
  372. template<typename Operator>
  373. std::string formatString(std::string toFormat, const Operator & expr) const
  374. {
  375. // highlight not fulfilled expressions, if pretty formatting is on
  376. if (statusTest && !(*statusTest)(expr))
  377. return "{" + toFormat + "}";
  378. return toFormat;
  379. }
  380. std::string printExpressionList(const std::vector<typename Base::Variant> & element) const
  381. {
  382. std::string ret;
  383. prefix.push_back('\t');
  384. for (auto & expr : element)
  385. ret += prefix + boost::apply_visitor(*this, expr) + "\n";
  386. prefix.pop_back();
  387. return ret;
  388. }
  389. public:
  390. Printer(std::function<std::string(const typename Base::Value &)> classPrinter):
  391. classPrinter(classPrinter)
  392. {}
  393. Printer(std::function<std::string(const typename Base::Value &)> classPrinter, std::function<bool(const typename Base::Value &)> toBool):
  394. classPrinter(classPrinter),
  395. statusTest(new TestVisitor<ContainedClass>(toBool))
  396. {}
  397. std::string operator()(const typename Base::OperatorAny & element) const
  398. {
  399. return formatString(getTextForOperator("anyOf"), element) + "\n"
  400. + printExpressionList(element.expressions);
  401. }
  402. std::string operator()(const typename Base::OperatorAll & element) const
  403. {
  404. return formatString(getTextForOperator("allOf"), element) + "\n"
  405. + printExpressionList(element.expressions);
  406. }
  407. std::string operator()(const typename Base::OperatorNone & element) const
  408. {
  409. return formatString(getTextForOperator("noneOf"), element) + "\n"
  410. + printExpressionList(element.expressions);
  411. }
  412. std::string operator()(const typename Base::Value & element) const
  413. {
  414. return formatString(classPrinter(element), element);
  415. }
  416. };
  417. }
  418. ///
  419. /// Class for evaluation of logical expressions generated in runtime
  420. ///
  421. template<typename ContainedClass>
  422. class LogicalExpression
  423. {
  424. typedef LogicalExpressionDetail::ExpressionBase<ContainedClass> Base;
  425. public:
  426. /// Type of values used in expressions, same as ContainedClass
  427. typedef typename Base::Value Value;
  428. /// Operators for use in expressions, all include vectors with operands
  429. typedef typename Base::OperatorAny OperatorAny;
  430. typedef typename Base::OperatorAll OperatorAll;
  431. typedef typename Base::OperatorNone OperatorNone;
  432. /// one expression entry
  433. typedef typename Base::Variant Variant;
  434. private:
  435. Variant data;
  436. public:
  437. /// Base constructor
  438. LogicalExpression()
  439. {}
  440. /// Constructor from variant or (implicitly) from Operator* types
  441. LogicalExpression(const Variant & data):
  442. data(data)
  443. {
  444. }
  445. /// Constructor that receives JsonNode as input and function that can parse Value instances
  446. LogicalExpression(const JsonNode & input, std::function<Value(const JsonNode &)> parser)
  447. {
  448. LogicalExpressionDetail::Reader<Value> reader(parser);
  449. LogicalExpression expr(reader(input));
  450. std::swap(data, expr.data);
  451. }
  452. Variant get() const
  453. {
  454. return data;
  455. }
  456. /// Simple visitor that visits all entries in expression
  457. Variant morph(std::function<Variant(const Value &)> morpher) const
  458. {
  459. LogicalExpressionDetail::ForEachVisitor<Value> visitor(morpher);
  460. return boost::apply_visitor(visitor, data);
  461. }
  462. /// Minimizes expression, removing any redundant elements
  463. void minimize()
  464. {
  465. LogicalExpressionDetail::MinimizingVisitor<Value> visitor;
  466. data = boost::apply_visitor(visitor, data);
  467. }
  468. /// calculates if expression evaluates to "true".
  469. /// Note: empty expressions always return true
  470. bool test(std::function<bool(const Value &)> toBool) const
  471. {
  472. LogicalExpressionDetail::TestVisitor<Value> testVisitor(toBool);
  473. return boost::apply_visitor(testVisitor, data);
  474. }
  475. /// calculates if expression can evaluate to "true".
  476. bool satisfiable(std::function<bool(const Value &)> satisfiabilityTest, std::function<bool(const Value &)> falsifiabilityTest) const
  477. {
  478. LogicalExpressionDetail::SatisfiabilityVisitor<Value> satisfiabilityVisitor(satisfiabilityTest, falsifiabilityTest);
  479. LogicalExpressionDetail::FalsifiabilityVisitor<Value> falsifiabilityVisitor(satisfiabilityTest, falsifiabilityTest);
  480. satisfiabilityVisitor.setFalsifiabilityVisitor(&falsifiabilityVisitor);
  481. falsifiabilityVisitor.setSatisfiabilityVisitor(&satisfiabilityVisitor);
  482. return boost::apply_visitor(satisfiabilityVisitor, data);
  483. }
  484. /// calculates if expression can evaluate to "false".
  485. bool falsifiable(std::function<bool(const Value &)> satisfiabilityTest, std::function<bool(const Value &)> falsifiabilityTest) const
  486. {
  487. LogicalExpressionDetail::SatisfiabilityVisitor<Value> satisfiabilityVisitor(satisfiabilityTest);
  488. LogicalExpressionDetail::FalsifiabilityVisitor<Value> falsifiabilityVisitor(falsifiabilityTest);
  489. satisfiabilityVisitor.setFalsifiabilityVisitor(&falsifiabilityVisitor);
  490. falsifiabilityVisitor.setFalsifiabilityVisitor(&satisfiabilityVisitor);
  491. return boost::apply_visitor(falsifiabilityVisitor, data);
  492. }
  493. /// generates list of candidates that can be fulfilled by caller (like AI)
  494. std::vector<Value> getFulfillmentCandidates(std::function<bool(const Value &)> toBool) const
  495. {
  496. LogicalExpressionDetail::CandidatesVisitor<Value> candidateVisitor(toBool);
  497. return boost::apply_visitor(candidateVisitor, data);
  498. }
  499. /// Converts expression in human-readable form
  500. /// Second version will try to do some pretty printing using H3 text formatting "{}"
  501. /// to indicate fulfilled components of an expression
  502. std::string toString(std::function<std::string(const Value &)> toStr) const
  503. {
  504. LogicalExpressionDetail::Printer<Value> printVisitor(toStr);
  505. return boost::apply_visitor(printVisitor, data);
  506. }
  507. std::string toString(std::function<std::string(const Value &)> toStr, std::function<bool(const Value &)> toBool) const
  508. {
  509. LogicalExpressionDetail::Printer<Value> printVisitor(toStr, toBool);
  510. return boost::apply_visitor(printVisitor, data);
  511. }
  512. JsonNode toJson(std::function<JsonNode(const Value &)> toJson) const
  513. {
  514. LogicalExpressionDetail::Writer<Value> writeVisitor(toJson);
  515. return boost::apply_visitor(writeVisitor, data);
  516. }
  517. template <typename Handler>
  518. void serialize(Handler & h, const int version)
  519. {
  520. h & data;
  521. }
  522. };