serialize.h 41 KB

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  1. // This file is part of libigl, a simple c++ geometry processing library.
  2. //
  3. // Copyright (C) 2014 Christian Schüller <schuellchr@gmail.com>
  4. //
  5. // This Source Code Form is subject to the terms of the Mozilla Public License
  6. // v. 2.0. If a copy of the MPL was not distributed with this file, You can
  7. // obtain one at http://mozilla.org/MPL/2.0/.
  8. #ifndef IGL_SERIALIZE_H
  9. #define IGL_SERIALIZE_H
  10. // -----------------------------------------------------------------------------
  11. // Functions to save and load a serialization of fundamental c++ data types to
  12. // and from a binary file. STL containers, Eigen matrix types and nested data
  13. // structures are also supported. To serialize a user defined class implement
  14. // the interface Serializable or SerializableBase.
  15. //
  16. // See also: xml/serialize_xml.h
  17. // -----------------------------------------------------------------------------
  18. // TODOs:
  19. // * arbitrary pointer graph structures
  20. // -----------------------------------------------------------------------------
  21. // Known issues: This is not written in libigl-style so it isn't (easily)
  22. // "dualized" into the static library.
  23. //
  24. #include <type_traits>
  25. #include <iostream>
  26. #include <fstream>
  27. #include <cstdint>
  28. #include <numeric>
  29. #include <vector>
  30. #include <set>
  31. #include <map>
  32. #include <memory>
  33. #include <cstdint>
  34. #include <list>
  35. #include <Eigen/Dense>
  36. #include <Eigen/Sparse>
  37. #include "igl_inline.h"
  38. // non-intrusive serialization helper macros
  39. #define SERIALIZE_TYPE(Type,Params) \
  40. namespace igl { namespace serialization { \
  41. void _serialization(bool s,Type& obj,std::vector<char>& buffer) {Params} \
  42. template<> inline void serialize(const Type& obj,std::vector<char>& buffer) { \
  43. _serialization(true,const_cast<Type&>(obj),buffer); \
  44. } \
  45. template<> inline void deserialize(Type& obj,const std::vector<char>& buffer) { \
  46. _serialization(false,obj,const_cast<std::vector<char>&>(buffer)); \
  47. } \
  48. }}
  49. #define SERIALIZE_TYPE_SOURCE(Type,Params) \
  50. namespace igl { namespace serialization { \
  51. void _serialization(bool s,Type& obj,std::vector<char>& buffer) {Params} \
  52. void _serialize(const Type& obj,std::vector<char>& buffer) { \
  53. _serialization(true,const_cast<Type&>(obj),buffer); \
  54. } \
  55. void _deserialize(Type& obj,const std::vector<char>& buffer) { \
  56. _serialization(false,obj,const_cast<std::vector<char>&>(buffer)); \
  57. } \
  58. }}
  59. #define SERIALIZE_MEMBER(Object) igl::serializer(s,obj.Object,std::string(#Object),buffer);
  60. #define SERIALIZE_MEMBER_NAME(Object,Name) igl::serializer(s,obj.Object,std::string(Name),buffer);
  61. namespace igl
  62. {
  63. struct IndexedPointerBase;
  64. // Serializes the given object either to a file or to a provided buffer
  65. // Templates:
  66. // T type of the object to serialize
  67. // Inputs:
  68. // obj object to serialize
  69. // objectName unique object name,used for the identification
  70. // overwrite set to true to overwrite an existing file
  71. // filename name of the file containing the serialization
  72. // Outputs:
  73. // buffer binary serialization
  74. //
  75. template <typename T>
  76. inline bool serialize(const T& obj,const std::string& filename);
  77. template <typename T>
  78. inline bool serialize(const T& obj,const std::string& objectName,const std::string& filename,bool overwrite = false);
  79. template <typename T>
  80. inline bool serialize(const T& obj,const std::string& objectName,std::vector<char>& buffer);
  81. template <typename T>
  82. inline bool serialize(const T& obj,const std::string& objectName,std::vector<char>& buffer);
  83. // Deserializes the given data from a file or buffer back to the provided object
  84. //
  85. // Templates:
  86. // T type of the object to serialize
  87. // Inputs:
  88. // buffer binary serialization
  89. // objectName unique object name, used for the identification
  90. // filename name of the file containing the serialization
  91. // Outputs:
  92. // obj object to load back serialization to
  93. //
  94. template <typename T>
  95. inline bool deserialize(T& obj,const std::string& filename);
  96. template <typename T>
  97. inline bool deserialize(T& obj,const std::string& objectName,const std::string& filename);
  98. template <typename T>
  99. inline bool deserialize(T& obj,const std::string& objectName,const std::vector<char>& buffer);
  100. // Wrapper to expose both, the de- and serialization as one function
  101. //
  102. template <typename T>
  103. inline bool serializer(bool serialize,T& obj,const std::string& filename);
  104. template <typename T>
  105. inline bool serializer(bool serialize,T& obj,const std::string& objectName,const std::string& filename,bool overwrite = false);
  106. template <typename T>
  107. inline bool serializer(bool serialize,T& obj,const std::string& objectName,std::vector<char>& buffer);
  108. // User defined types have to either overload the function igl::serialization::serialize()
  109. // and igl::serialization::deserialize() for their type (non-intrusive serialization):
  110. //
  111. // namespace igl { namespace serialization
  112. // {
  113. // template<>
  114. // inline void serialize(const UserType& obj,std::vector<char>& buffer) {
  115. // ::igl::serialize(obj.var,"var",buffer);
  116. // }
  117. //
  118. // template<>
  119. // inline void deserialize(UserType& obj,const std::vector<char>& buffer) {
  120. // ::igl::deserialize(obj.var,"var",buffer);
  121. // }
  122. // }}
  123. //
  124. // or use this macro for convenience:
  125. //
  126. // SERIALIZE_TYPE(UserType,
  127. // SERIALIZE_MEMBER(var)
  128. // )
  129. //
  130. // or to derive from the class Serializable and add their the members
  131. // in InitSerialization like the following:
  132. //
  133. // class UserType : public igl::Serializable {
  134. //
  135. // int var;
  136. //
  137. // void InitSerialization() {
  138. // this->Add(var,"var");
  139. // }
  140. // };
  141. // Base interface for user defined types
  142. struct SerializableBase
  143. {
  144. virtual void Serialize(std::vector<char>& buffer) const = 0;
  145. virtual void Deserialize(const std::vector<char>& buffer) = 0;
  146. };
  147. // Convenient interface for user defined types
  148. class Serializable: public SerializableBase
  149. {
  150. private:
  151. template <typename T>
  152. struct SerializationObject : public SerializableBase
  153. {
  154. bool Binary;
  155. std::string Name;
  156. std::unique_ptr<T> Object;
  157. void Serialize(std::vector<char>& buffer) const override {
  158. igl::serialize(*Object,Name,buffer);
  159. }
  160. void Deserialize(const std::vector<char>& buffer) override {
  161. igl::deserialize(*Object,Name,buffer);
  162. }
  163. };
  164. mutable bool initialized;
  165. mutable std::vector<SerializableBase*> objects;
  166. public:
  167. // You **MUST** Override this function to add your member variables which
  168. // should be serialized
  169. //
  170. // http://stackoverflow.com/a/6634382/148668
  171. virtual void InitSerialization() = 0;
  172. // Following functions can be overridden to handle the specific events.
  173. // Return false to prevent the de-/serialization of an object.
  174. inline virtual bool PreSerialization() const;
  175. inline virtual void PostSerialization() const;
  176. inline virtual bool PreDeserialization();
  177. inline virtual void PostDeserialization();
  178. // Default implementation of SerializableBase interface
  179. inline void Serialize(std::vector<char>& buffer) const override final;
  180. inline void Deserialize(const std::vector<char>& buffer) override final;
  181. // Default constructor, destructor, assignment and copy constructor
  182. inline Serializable();
  183. inline Serializable(const Serializable& obj);
  184. inline ~Serializable();
  185. inline Serializable& operator=(const Serializable& obj);
  186. // Use this function to add your variables which should be serialized
  187. template <typename T>
  188. inline void Add(T& obj,std::string name,bool binary = false);
  189. };
  190. // structure for pointer handling
  191. struct IndexedPointerBase
  192. {
  193. enum { BEGIN,END } Type;
  194. size_t Index;
  195. };
  196. template<typename T>
  197. struct IndexedPointer: public IndexedPointerBase
  198. {
  199. const T* Object;
  200. };
  201. // internal functions
  202. namespace serialization
  203. {
  204. // compile time type checks
  205. template <typename T>
  206. struct is_stl_container { static const bool value = false; };
  207. template <typename T1,typename T2>
  208. struct is_stl_container<std::pair<T1,T2> > { static const bool value = true; };
  209. template <typename T1,typename T2>
  210. struct is_stl_container<std::vector<T1,T2> > { static const bool value = true; };
  211. template <typename T>
  212. struct is_stl_container<std::set<T> > { static const bool value = true; };
  213. template <typename T1,typename T2>
  214. struct is_stl_container<std::map<T1,T2> > { static const bool value = true; };
  215. template <typename T>
  216. struct is_stl_container<std::list<T> > { static const bool value = true; };
  217. template <typename T>
  218. struct is_eigen_type { static const bool value = false; };
  219. template <typename T,int R,int C,int P,int MR,int MC>
  220. struct is_eigen_type<Eigen::Matrix<T,R,C,P,MR,MC> > { static const bool value = true; };
  221. template <typename T,int P,typename I>
  222. struct is_eigen_type<Eigen::SparseMatrix<T,P,I> > { static const bool value = true; };
  223. template <typename T>
  224. struct is_smart_ptr { static const bool value = false; };
  225. template <typename T>
  226. struct is_smart_ptr<std::shared_ptr<T> > { static const bool value = true; };
  227. template <typename T>
  228. struct is_smart_ptr<std::unique_ptr<T> > { static const bool value = true; };
  229. template <typename T>
  230. struct is_smart_ptr<std::weak_ptr<T> > { static const bool value = true; };
  231. template <typename T>
  232. struct is_serializable {
  233. static const bool value = std::is_fundamental<T>::value || std::is_same<std::string,T>::value || std::is_enum<T>::value || std::is_base_of<SerializableBase,T>::value
  234. || is_stl_container<T>::value || is_eigen_type<T>::value || std::is_pointer<T>::value || serialization::is_smart_ptr<T>::value;
  235. };
  236. // non serializable types
  237. template <typename T>
  238. inline typename std::enable_if<!is_serializable<T>::value,size_t>::type getByteSize(const T& obj);
  239. template <typename T>
  240. inline typename std::enable_if<!is_serializable<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  241. template <typename T>
  242. inline typename std::enable_if<!is_serializable<T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter);
  243. // fundamental types
  244. template <typename T>
  245. inline typename std::enable_if<std::is_fundamental<T>::value,size_t>::type getByteSize(const T& obj);
  246. template <typename T>
  247. inline typename std::enable_if<std::is_fundamental<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  248. template <typename T>
  249. inline typename std::enable_if<std::is_fundamental<T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter);
  250. // std::string
  251. inline size_t getByteSize(const std::string& obj);
  252. inline void serialize(const std::string& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  253. inline void deserialize(std::string& obj,std::vector<char>::const_iterator& iter);
  254. // enum types
  255. template <typename T>
  256. inline typename std::enable_if<std::is_enum<T>::value,size_t>::type getByteSize(const T& obj);
  257. template <typename T>
  258. inline typename std::enable_if<std::is_enum<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  259. template <typename T>
  260. inline typename std::enable_if<std::is_enum<T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter);
  261. // SerializableBase
  262. template <typename T>
  263. inline typename std::enable_if<std::is_base_of<SerializableBase,T>::value,size_t>::type getByteSize(const T& obj);
  264. template <typename T>
  265. inline typename std::enable_if<std::is_base_of<SerializableBase,T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  266. template <typename T>
  267. inline typename std::enable_if<std::is_base_of<SerializableBase,T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter);
  268. // stl containers
  269. // std::pair
  270. template <typename T1,typename T2>
  271. inline size_t getByteSize(const std::pair<T1,T2>& obj);
  272. template <typename T1,typename T2>
  273. inline void serialize(const std::pair<T1,T2>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  274. template <typename T1,typename T2>
  275. inline void deserialize(std::pair<T1,T2>& obj,std::vector<char>::const_iterator& iter);
  276. // std::vector
  277. template <typename T1,typename T2>
  278. inline size_t getByteSize(const std::vector<T1,T2>& obj);
  279. template <typename T1,typename T2>
  280. inline void serialize(const std::vector<T1,T2>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  281. template <typename T1,typename T2>
  282. inline void deserialize(std::vector<T1,T2>& obj,std::vector<char>::const_iterator& iter);
  283. template <typename T2>
  284. inline void deserialize(std::vector<bool,T2>& obj,std::vector<char>::const_iterator& iter);
  285. // std::set
  286. template <typename T>
  287. inline size_t getByteSize(const std::set<T>& obj);
  288. template <typename T>
  289. inline void serialize(const std::set<T>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  290. template <typename T>
  291. inline void deserialize(std::set<T>& obj,std::vector<char>::const_iterator& iter);
  292. // std::map
  293. template <typename T1,typename T2>
  294. inline size_t getByteSize(const std::map<T1,T2>& obj);
  295. template <typename T1,typename T2>
  296. inline void serialize(const std::map<T1,T2>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  297. template <typename T1,typename T2>
  298. inline void deserialize(std::map<T1,T2>& obj,std::vector<char>::const_iterator& iter);
  299. // std::list
  300. template <typename T>
  301. inline size_t getByteSize(const std::list<T>& obj);
  302. template <typename T>
  303. inline void serialize(const std::list<T>& obj, std::vector<char>& buffer, std::vector<char>::iterator& iter);
  304. template <typename T>
  305. inline void deserialize(std::list<T>& obj, std::vector<char>::const_iterator& iter);
  306. // Eigen types
  307. template<typename T,int R,int C,int P,int MR,int MC>
  308. inline size_t getByteSize(const Eigen::Matrix<T,R,C,P,MR,MC>& obj);
  309. template<typename T,int R,int C,int P,int MR,int MC>
  310. inline void serialize(const Eigen::Matrix<T,R,C,P,MR,MC>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  311. template<typename T,int R,int C,int P,int MR,int MC>
  312. inline void deserialize(Eigen::Matrix<T,R,C,P,MR,MC>& obj,std::vector<char>::const_iterator& iter);
  313. template<typename T,int P,typename I>
  314. inline size_t getByteSize(const Eigen::SparseMatrix<T,P,I>& obj);
  315. template<typename T,int P,typename I>
  316. inline void serialize(const Eigen::SparseMatrix<T,P,I>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  317. template<typename T,int P,typename I>
  318. inline void deserialize(Eigen::SparseMatrix<T,P,I>& obj,std::vector<char>::const_iterator& iter);
  319. template<typename T,int P>
  320. inline size_t getByteSize(const Eigen::Quaternion<T,P>& obj);
  321. template<typename T,int P>
  322. inline void serialize(const Eigen::Quaternion<T,P>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  323. template<typename T,int P>
  324. inline void deserialize(Eigen::Quaternion<T,P>& obj,std::vector<char>::const_iterator& iter);
  325. // raw pointers
  326. template <typename T>
  327. inline typename std::enable_if<std::is_pointer<T>::value,size_t>::type getByteSize(const T& obj);
  328. template <typename T>
  329. inline typename std::enable_if<std::is_pointer<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  330. template <typename T>
  331. inline typename std::enable_if<std::is_pointer<T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter);
  332. // std::shared_ptr and std::unique_ptr
  333. template <typename T>
  334. inline typename std::enable_if<serialization::is_smart_ptr<T>::value,size_t>::type getByteSize(const T& obj);
  335. template <typename T>
  336. inline typename std::enable_if<serialization::is_smart_ptr<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  337. template <template<typename> class T0, typename T1>
  338. inline typename std::enable_if<serialization::is_smart_ptr<T0<T1> >::value>::type deserialize(T0<T1>& obj,std::vector<char>::const_iterator& iter);
  339. // std::weak_ptr
  340. template <typename T>
  341. inline size_t getByteSize(const std::weak_ptr<T>& obj);
  342. template <typename T>
  343. inline void serialize(const std::weak_ptr<T>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter);
  344. template <typename T>
  345. inline void deserialize(std::weak_ptr<T>& obj,std::vector<char>::const_iterator& iter);
  346. // functions to overload for non-intrusive serialization
  347. template <typename T>
  348. inline void serialize(const T& obj,std::vector<char>& buffer);
  349. template <typename T>
  350. inline void deserialize(T& obj,const std::vector<char>& buffer);
  351. // helper functions
  352. template <typename T>
  353. inline void updateMemoryMap(T& obj,size_t size);
  354. }
  355. }
  356. // Always include inlines for these functions
  357. // IMPLEMENTATION
  358. namespace igl
  359. {
  360. template <typename T>
  361. inline bool serialize(const T& obj,const std::string& filename)
  362. {
  363. return serialize(obj,"obj",filename,true);
  364. }
  365. template <typename T>
  366. inline bool serialize(const T& obj,const std::string& objectName,const std::string& filename,bool overwrite)
  367. {
  368. bool success = false;
  369. std::vector<char> buffer;
  370. std::ios_base::openmode mode = std::ios::out | std::ios::binary;
  371. if(overwrite)
  372. mode |= std::ios::trunc;
  373. else
  374. mode |= std::ios::app;
  375. std::ofstream file(filename.c_str(),mode);
  376. if(file.is_open())
  377. {
  378. serialize(obj,objectName,buffer);
  379. file.write(&buffer[0],buffer.size());
  380. file.close();
  381. success = true;
  382. }
  383. else
  384. {
  385. std::cerr << "serialization: file " << filename << " not found!" << std::endl;
  386. }
  387. return success;
  388. }
  389. template <typename T>
  390. inline bool serialize(const T& obj,const std::string& objectName,std::vector<char>& buffer)
  391. {
  392. // serialize object data
  393. size_t size = serialization::getByteSize(obj);
  394. std::vector<char> tmp(size);
  395. auto it = tmp.begin();
  396. serialization::serialize(obj,tmp,it);
  397. std::string objectType(typeid(obj).name());
  398. size_t newObjectSize = tmp.size();
  399. size_t newHeaderSize = serialization::getByteSize(objectName) + serialization::getByteSize(objectType) + sizeof(size_t);
  400. size_t curSize = buffer.size();
  401. size_t newSize = curSize + newHeaderSize + newObjectSize;
  402. buffer.resize(newSize);
  403. std::vector<char>::iterator iter = buffer.begin()+curSize;
  404. // serialize object header (name/type/size)
  405. serialization::serialize(objectName,buffer,iter);
  406. serialization::serialize(objectType,buffer,iter);
  407. serialization::serialize(newObjectSize,buffer,iter);
  408. // copy serialized data to buffer
  409. iter = std::copy(tmp.begin(),tmp.end(),iter);
  410. return true;
  411. }
  412. template <typename T>
  413. inline bool deserialize(T& obj,const std::string& filename)
  414. {
  415. return deserialize(obj,"obj",filename);
  416. }
  417. template <typename T>
  418. inline bool deserialize(T& obj,const std::string& objectName,const std::string& filename)
  419. {
  420. bool success = false;
  421. std::ifstream file(filename.c_str(),std::ios::binary);
  422. if(file.is_open())
  423. {
  424. file.seekg(0,std::ios::end);
  425. std::streamoff size = file.tellg();
  426. file.seekg(0,std::ios::beg);
  427. std::vector<char> buffer(size);
  428. file.read(&buffer[0],size);
  429. success = deserialize(obj, objectName, buffer);
  430. file.close();
  431. }
  432. else
  433. {
  434. std::cerr << "serialization: file " << filename << " not found!" << std::endl;
  435. }
  436. return success;
  437. }
  438. template <typename T>
  439. inline bool deserialize(T& obj,const std::string& objectName,const std::vector<char>& buffer)
  440. {
  441. bool success = false;
  442. // find suitable object header
  443. auto objectIter = buffer.cend();
  444. auto iter = buffer.cbegin();
  445. while(iter != buffer.end())
  446. {
  447. std::string name;
  448. std::string type;
  449. size_t size;
  450. serialization::deserialize(name,iter);
  451. serialization::deserialize(type,iter);
  452. serialization::deserialize(size,iter);
  453. if(name == objectName && type == typeid(obj).name())
  454. {
  455. objectIter = iter;
  456. //break; // find first suitable object header
  457. }
  458. iter+=size;
  459. }
  460. if(objectIter != buffer.end())
  461. {
  462. serialization::deserialize(obj,objectIter);
  463. success = true;
  464. }
  465. else
  466. {
  467. obj = T();
  468. }
  469. return success;
  470. }
  471. // Wrapper function which combines both, de- and serialization
  472. template <typename T>
  473. inline bool serializer(bool s,T& obj,const std::string& filename)
  474. {
  475. return s ? serialize(obj,filename) : deserialize(obj,filename);
  476. }
  477. template <typename T>
  478. inline bool serializer(bool s,T& obj,const std::string& objectName,const std::string& filename,bool overwrite)
  479. {
  480. return s ? serialize(obj,objectName,filename,overwrite) : deserialize(obj,objectName,filename);
  481. }
  482. template <typename T>
  483. inline bool serializer(bool s,T& obj,const std::string& objectName,std::vector<char>& buffer)
  484. {
  485. return s ? serialize(obj,objectName,buffer) : deserialize(obj,objectName,buffer);
  486. }
  487. inline bool Serializable::PreSerialization() const
  488. {
  489. return true;
  490. }
  491. inline void Serializable::PostSerialization() const
  492. {
  493. }
  494. inline bool Serializable::PreDeserialization()
  495. {
  496. return true;
  497. }
  498. inline void Serializable::PostDeserialization()
  499. {
  500. }
  501. inline void Serializable::Serialize(std::vector<char>& buffer) const
  502. {
  503. if(this->PreSerialization())
  504. {
  505. if(initialized == false)
  506. {
  507. objects.clear();
  508. (const_cast<Serializable*>(this))->InitSerialization();
  509. initialized = true;
  510. }
  511. for(const auto& v : objects)
  512. {
  513. v->Serialize(buffer);
  514. }
  515. this->PostSerialization();
  516. }
  517. }
  518. inline void Serializable::Deserialize(const std::vector<char>& buffer)
  519. {
  520. if(this->PreDeserialization())
  521. {
  522. if(initialized == false)
  523. {
  524. objects.clear();
  525. (const_cast<Serializable*>(this))->InitSerialization();
  526. initialized = true;
  527. }
  528. for(auto& v : objects)
  529. {
  530. v->Deserialize(buffer);
  531. }
  532. this->PostDeserialization();
  533. }
  534. }
  535. inline Serializable::Serializable()
  536. {
  537. initialized = false;
  538. }
  539. inline Serializable::Serializable(const Serializable& obj)
  540. {
  541. initialized = false;
  542. objects.clear();
  543. }
  544. inline Serializable::~Serializable()
  545. {
  546. initialized = false;
  547. objects.clear();
  548. }
  549. inline Serializable& Serializable::operator=(const Serializable& obj)
  550. {
  551. if(this != &obj)
  552. {
  553. if(initialized)
  554. {
  555. initialized = false;
  556. objects.clear();
  557. }
  558. }
  559. return *this;
  560. }
  561. template <typename T>
  562. inline void Serializable::Add(T& obj,const std::string name,bool binary)
  563. {
  564. auto object = new SerializationObject<T>();
  565. object->Binary = binary;
  566. object->Name = name;
  567. object->Object = std::unique_ptr<T>(&obj);
  568. objects.push_back(object);
  569. }
  570. namespace serialization
  571. {
  572. template <typename T>
  573. inline typename std::enable_if<!is_serializable<T>::value,size_t>::type getByteSize(const T& obj)
  574. {
  575. return sizeof(std::vector<char>::size_type);
  576. }
  577. template <typename T>
  578. inline typename std::enable_if<!is_serializable<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  579. {
  580. // data
  581. std::vector<char> tmp;
  582. serialize<>(obj,tmp);
  583. // size
  584. size_t size = buffer.size();
  585. serialization::serialize(tmp.size(),buffer,iter);
  586. size_t cur = iter - buffer.begin();
  587. buffer.resize(size+tmp.size());
  588. iter = buffer.begin()+cur;
  589. iter = std::copy(tmp.begin(),tmp.end(),iter);
  590. }
  591. template <typename T>
  592. inline typename std::enable_if<!is_serializable<T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter)
  593. {
  594. std::vector<char>::size_type size;
  595. serialization::deserialize<>(size,iter);
  596. std::vector<char> tmp;
  597. tmp.resize(size);
  598. std::copy(iter,iter+size,tmp.begin());
  599. deserialize<>(obj,tmp);
  600. iter += size;
  601. }
  602. // fundamental types
  603. template <typename T>
  604. inline typename std::enable_if<std::is_fundamental<T>::value,size_t>::type getByteSize(const T& obj)
  605. {
  606. return sizeof(T);
  607. }
  608. template <typename T>
  609. inline typename std::enable_if<std::is_fundamental<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  610. {
  611. //serialization::updateMemoryMap(obj,sizeof(T));
  612. const uint8_t* ptr = reinterpret_cast<const uint8_t*>(&obj);
  613. iter = std::copy(ptr,ptr+sizeof(T),iter);
  614. }
  615. template <typename T>
  616. inline typename std::enable_if<std::is_fundamental<T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter)
  617. {
  618. uint8_t* ptr = reinterpret_cast<uint8_t*>(&obj);
  619. std::copy(iter,iter+sizeof(T),ptr);
  620. iter += sizeof(T);
  621. }
  622. // std::string
  623. inline size_t getByteSize(const std::string& obj)
  624. {
  625. return getByteSize(obj.length())+obj.length()*sizeof(uint8_t);
  626. }
  627. inline void serialize(const std::string& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  628. {
  629. serialization::serialize(obj.length(),buffer,iter);
  630. for(const auto& cur : obj)
  631. {
  632. serialization::serialize(cur,buffer,iter);
  633. }
  634. }
  635. inline void deserialize(std::string& obj,std::vector<char>::const_iterator& iter)
  636. {
  637. size_t size;
  638. serialization::deserialize(size,iter);
  639. std::string str(size,'\0');
  640. for(size_t i=0; i<size; ++i)
  641. {
  642. serialization::deserialize(str.at(i),iter);
  643. }
  644. obj = str;
  645. }
  646. // enum types
  647. template <typename T>
  648. inline typename std::enable_if<std::is_enum<T>::value,size_t>::type getByteSize(const T& obj)
  649. {
  650. return sizeof(T);
  651. }
  652. template <typename T>
  653. inline typename std::enable_if<std::is_enum<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  654. {
  655. const uint8_t* ptr = reinterpret_cast<const uint8_t*>(&obj);
  656. iter = std::copy(ptr,ptr+sizeof(T),iter);
  657. }
  658. template <typename T>
  659. inline typename std::enable_if<std::is_enum<T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter)
  660. {
  661. uint8_t* ptr = reinterpret_cast<uint8_t*>(&obj);
  662. std::copy(iter,iter+sizeof(T),ptr);
  663. iter += sizeof(T);
  664. }
  665. // SerializableBase
  666. template <typename T>
  667. inline typename std::enable_if<std::is_base_of<SerializableBase,T>::value,size_t>::type getByteSize(const T& obj)
  668. {
  669. return sizeof(std::vector<char>::size_type);
  670. }
  671. template <typename T>
  672. inline typename std::enable_if<std::is_base_of<SerializableBase,T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  673. {
  674. // data
  675. std::vector<char> tmp;
  676. obj.Serialize(tmp);
  677. // size
  678. size_t size = buffer.size();
  679. serialization::serialize(tmp.size(),buffer,iter);
  680. size_t cur = iter - buffer.begin();
  681. buffer.resize(size+tmp.size());
  682. iter = buffer.begin()+cur;
  683. iter = std::copy(tmp.begin(),tmp.end(),iter);
  684. }
  685. template <typename T>
  686. inline typename std::enable_if<std::is_base_of<SerializableBase,T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter)
  687. {
  688. std::vector<char>::size_type size;
  689. serialization::deserialize(size,iter);
  690. std::vector<char> tmp;
  691. tmp.resize(size);
  692. std::copy(iter,iter+size,tmp.begin());
  693. obj.Deserialize(tmp);
  694. iter += size;
  695. }
  696. // STL containers
  697. // std::pair
  698. template <typename T1,typename T2>
  699. inline size_t getByteSize(const std::pair<T1,T2>& obj)
  700. {
  701. return getByteSize(obj.first)+getByteSize(obj.second);
  702. }
  703. template <typename T1,typename T2>
  704. inline void serialize(const std::pair<T1,T2>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  705. {
  706. serialization::serialize(obj.first,buffer,iter);
  707. serialization::serialize(obj.second,buffer,iter);
  708. }
  709. template <typename T1,typename T2>
  710. inline void deserialize(std::pair<T1,T2>& obj,std::vector<char>::const_iterator& iter)
  711. {
  712. serialization::deserialize(obj.first,iter);
  713. serialization::deserialize(obj.second,iter);
  714. }
  715. // std::vector
  716. template <typename T1,typename T2>
  717. inline size_t getByteSize(const std::vector<T1,T2>& obj)
  718. {
  719. return std::accumulate(obj.begin(),obj.end(),sizeof(size_t),[](const size_t& acc,const T1& cur) { return acc+getByteSize(cur); });
  720. }
  721. template <typename T1,typename T2>
  722. inline void serialize(const std::vector<T1,T2>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  723. {
  724. size_t size = obj.size();
  725. serialization::serialize(size,buffer,iter);
  726. for(const T1& cur : obj)
  727. {
  728. serialization::serialize(cur,buffer,iter);
  729. }
  730. }
  731. template <typename T1,typename T2>
  732. inline void deserialize(std::vector<T1,T2>& obj,std::vector<char>::const_iterator& iter)
  733. {
  734. size_t size;
  735. serialization::deserialize(size,iter);
  736. obj.resize(size);
  737. for(T1& v : obj)
  738. {
  739. serialization::deserialize(v,iter);
  740. }
  741. }
  742. template <typename T2>
  743. inline void deserialize(std::vector<bool,T2>& obj,std::vector<char>::const_iterator& iter)
  744. {
  745. size_t size;
  746. serialization::deserialize(size,iter);
  747. obj.resize(size);
  748. for(int i=0;i<obj.size();i++)
  749. {
  750. bool val;
  751. serialization::deserialize(val,iter);
  752. obj[i] = val;
  753. }
  754. }
  755. //std::set
  756. template <typename T>
  757. inline size_t getByteSize(const std::set<T>& obj)
  758. {
  759. return std::accumulate(obj.begin(),obj.end(),getByteSize(obj.size()),[](const size_t& acc,const T& cur) { return acc+getByteSize(cur); });
  760. }
  761. template <typename T>
  762. inline void serialize(const std::set<T>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  763. {
  764. serialization::serialize(obj.size(),buffer,iter);
  765. for(const T& cur : obj)
  766. {
  767. serialization::serialize(cur,buffer,iter);
  768. }
  769. }
  770. template <typename T>
  771. inline void deserialize(std::set<T>& obj,std::vector<char>::const_iterator& iter)
  772. {
  773. size_t size;
  774. serialization::deserialize(size,iter);
  775. obj.clear();
  776. for(size_t i=0; i<size; ++i)
  777. {
  778. T val;
  779. serialization::deserialize(val,iter);
  780. obj.insert(val);
  781. }
  782. }
  783. // std::map
  784. template <typename T1,typename T2>
  785. inline size_t getByteSize(const std::map<T1,T2>& obj)
  786. {
  787. return std::accumulate(obj.begin(),obj.end(),sizeof(size_t),[](const size_t& acc,const std::pair<T1,T2>& cur) { return acc+getByteSize(cur); });
  788. }
  789. template <typename T1,typename T2>
  790. inline void serialize(const std::map<T1,T2>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  791. {
  792. serialization::serialize(obj.size(),buffer,iter);
  793. for(const auto& cur : obj)
  794. {
  795. serialization::serialize(cur,buffer,iter);
  796. }
  797. }
  798. template <typename T1,typename T2>
  799. inline void deserialize(std::map<T1,T2>& obj,std::vector<char>::const_iterator& iter)
  800. {
  801. size_t size;
  802. serialization::deserialize(size,iter);
  803. obj.clear();
  804. for(size_t i=0; i<size; ++i)
  805. {
  806. std::pair<T1,T2> pair;
  807. serialization::deserialize(pair,iter);
  808. obj.insert(pair);
  809. }
  810. }
  811. //std::list
  812. template <typename T>
  813. inline size_t getByteSize(const std::list<T>& obj)
  814. {
  815. return std::accumulate(obj.begin(), obj.end(), getByteSize(obj.size()), [](const size_t& acc, const T& cur) { return acc + getByteSize(cur); });
  816. }
  817. template <typename T>
  818. inline void serialize(const std::list<T>& obj, std::vector<char>& buffer, std::vector<char>::iterator& iter)
  819. {
  820. serialization::serialize(obj.size(), buffer, iter);
  821. for (const T& cur : obj)
  822. {
  823. serialization::serialize(cur, buffer, iter);
  824. }
  825. }
  826. template <typename T>
  827. inline void deserialize(std::list<T>& obj, std::vector<char>::const_iterator& iter)
  828. {
  829. size_t size;
  830. serialization::deserialize(size, iter);
  831. obj.clear();
  832. for (size_t i = 0; i < size; ++i)
  833. {
  834. T val;
  835. serialization::deserialize(val, iter);
  836. obj.emplace_back(val);
  837. }
  838. }
  839. // Eigen types
  840. template<typename T,int R,int C,int P,int MR,int MC>
  841. inline size_t getByteSize(const Eigen::Matrix<T,R,C,P,MR,MC>& obj)
  842. {
  843. // space for numbers of rows,cols and data
  844. return 2*sizeof(typename Eigen::Matrix<T,R,C,P,MR,MC>::Index)+sizeof(T)*obj.rows()*obj.cols();
  845. }
  846. template<typename T,int R,int C,int P,int MR,int MC>
  847. inline void serialize(const Eigen::Matrix<T,R,C,P,MR,MC>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  848. {
  849. serialization::serialize(obj.rows(),buffer,iter);
  850. serialization::serialize(obj.cols(),buffer,iter);
  851. size_t size = sizeof(T)*obj.rows()*obj.cols();
  852. auto ptr = reinterpret_cast<const uint8_t*>(obj.data());
  853. iter = std::copy(ptr,ptr+size,iter);
  854. }
  855. template<typename T,int R,int C,int P,int MR,int MC>
  856. inline void deserialize(Eigen::Matrix<T,R,C,P,MR,MC>& obj,std::vector<char>::const_iterator& iter)
  857. {
  858. typename Eigen::Matrix<T,R,C,P,MR,MC>::Index rows,cols;
  859. serialization::deserialize(rows,iter);
  860. serialization::deserialize(cols,iter);
  861. size_t size = sizeof(T)*rows*cols;
  862. obj.resize(rows,cols);
  863. auto ptr = reinterpret_cast<uint8_t*>(obj.data());
  864. std::copy(iter,iter+size,ptr);
  865. iter+=size;
  866. }
  867. template<typename T,int P,typename I>
  868. inline size_t getByteSize(const Eigen::SparseMatrix<T,P,I>& obj)
  869. {
  870. // space for numbers of rows,cols,nonZeros and tripplets with data (rowIdx,colIdx,value)
  871. size_t size = sizeof(typename Eigen::SparseMatrix<T,P,I>::Index);
  872. return 3*size+(sizeof(T)+2*size)*obj.nonZeros();
  873. }
  874. template<typename T,int P,typename I>
  875. inline void serialize(const Eigen::SparseMatrix<T,P,I>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  876. {
  877. serialization::serialize(obj.rows(),buffer,iter);
  878. serialization::serialize(obj.cols(),buffer,iter);
  879. serialization::serialize(obj.nonZeros(),buffer,iter);
  880. for(int k=0;k<obj.outerSize();++k)
  881. {
  882. for(typename Eigen::SparseMatrix<T,P,I>::InnerIterator it(obj,k);it;++it)
  883. {
  884. serialization::serialize(it.row(),buffer,iter);
  885. serialization::serialize(it.col(),buffer,iter);
  886. serialization::serialize(it.value(),buffer,iter);
  887. }
  888. }
  889. }
  890. template<typename T,int P,typename I>
  891. inline void deserialize(Eigen::SparseMatrix<T,P,I>& obj,std::vector<char>::const_iterator& iter)
  892. {
  893. typename Eigen::SparseMatrix<T,P,I>::Index rows,cols,nonZeros;
  894. serialization::deserialize(rows,iter);
  895. serialization::deserialize(cols,iter);
  896. serialization::deserialize(nonZeros,iter);
  897. obj.resize(rows,cols);
  898. obj.setZero();
  899. std::vector<Eigen::Triplet<T,I> > triplets;
  900. for(int i=0;i<nonZeros;i++)
  901. {
  902. typename Eigen::SparseMatrix<T,P,I>::Index rowId,colId;
  903. serialization::deserialize(rowId,iter);
  904. serialization::deserialize(colId,iter);
  905. T value;
  906. serialization::deserialize(value,iter);
  907. triplets.push_back(Eigen::Triplet<T,I>(rowId,colId,value));
  908. }
  909. obj.setFromTriplets(triplets.begin(),triplets.end());
  910. }
  911. template<typename T,int P>
  912. inline size_t getByteSize(const Eigen::Quaternion<T,P>& obj)
  913. {
  914. return sizeof(T)*4;
  915. }
  916. template<typename T,int P>
  917. inline void serialize(const Eigen::Quaternion<T,P>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  918. {
  919. serialization::serialize(obj.w(),buffer,iter);
  920. serialization::serialize(obj.x(),buffer,iter);
  921. serialization::serialize(obj.y(),buffer,iter);
  922. serialization::serialize(obj.z(),buffer,iter);
  923. }
  924. template<typename T,int P>
  925. inline void deserialize(Eigen::Quaternion<T,P>& obj,std::vector<char>::const_iterator& iter)
  926. {
  927. serialization::deserialize(obj.w(),iter);
  928. serialization::deserialize(obj.x(),iter);
  929. serialization::deserialize(obj.y(),iter);
  930. serialization::deserialize(obj.z(),iter);
  931. }
  932. // pointers
  933. template <typename T>
  934. inline typename std::enable_if<std::is_pointer<T>::value,size_t>::type getByteSize(const T& obj)
  935. {
  936. size_t size = sizeof(bool);
  937. if(obj)
  938. size += getByteSize(*obj);
  939. return size;
  940. }
  941. template <typename T>
  942. inline typename std::enable_if<std::is_pointer<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  943. {
  944. serialization::serialize(obj == nullptr,buffer,iter);
  945. if(obj)
  946. serialization::serialize(*obj,buffer,iter);
  947. }
  948. template <typename T>
  949. inline typename std::enable_if<std::is_pointer<T>::value>::type deserialize(T& obj,std::vector<char>::const_iterator& iter)
  950. {
  951. bool isNullPtr;
  952. serialization::deserialize(isNullPtr,iter);
  953. if(isNullPtr)
  954. {
  955. if(obj)
  956. {
  957. std::cout << "serialization: possible memory leak in serialization for '" << typeid(obj).name() << "'" << std::endl;
  958. obj = nullptr;
  959. }
  960. }
  961. else
  962. {
  963. if(obj)
  964. {
  965. std::cout << "serialization: possible memory corruption in deserialization for '" << typeid(obj).name() << "'" << std::endl;
  966. }
  967. else
  968. {
  969. obj = new typename std::remove_pointer<T>::type();
  970. }
  971. serialization::deserialize(*obj,iter);
  972. }
  973. }
  974. // std::shared_ptr and std::unique_ptr
  975. template <typename T>
  976. inline typename std::enable_if<serialization::is_smart_ptr<T>::value,size_t>::type getByteSize(const T& obj)
  977. {
  978. return getByteSize(obj.get());
  979. }
  980. template <typename T>
  981. inline typename std::enable_if<serialization::is_smart_ptr<T>::value>::type serialize(const T& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  982. {
  983. serialize(obj.get(),buffer,iter);
  984. }
  985. template <template<typename> class T0,typename T1>
  986. inline typename std::enable_if<serialization::is_smart_ptr<T0<T1> >::value>::type deserialize(T0<T1>& obj,std::vector<char>::const_iterator& iter)
  987. {
  988. bool isNullPtr;
  989. serialization::deserialize(isNullPtr,iter);
  990. if(isNullPtr)
  991. {
  992. obj.reset();
  993. }
  994. else
  995. {
  996. obj = T0<T1>(new T1());
  997. serialization::deserialize(*obj,iter);
  998. }
  999. }
  1000. // std::weak_ptr
  1001. template <typename T>
  1002. inline size_t getByteSize(const std::weak_ptr<T>& obj)
  1003. {
  1004. return sizeof(size_t);
  1005. }
  1006. template <typename T>
  1007. inline void serialize(const std::weak_ptr<T>& obj,std::vector<char>& buffer,std::vector<char>::iterator& iter)
  1008. {
  1009. }
  1010. template <typename T>
  1011. inline void deserialize(std::weak_ptr<T>& obj,std::vector<char>::const_iterator& iter)
  1012. {
  1013. }
  1014. // functions to overload for non-intrusive serialization
  1015. template <typename T>
  1016. inline void serialize(const T& obj,std::vector<char>& buffer)
  1017. {
  1018. std::cerr << typeid(obj).name() << " is not serializable: derive from igl::Serializable or spezialize the template function igl::serialization::serialize(const T& obj,std::vector<char>& buffer)" << std::endl;
  1019. }
  1020. template <typename T>
  1021. inline void deserialize(T& obj,const std::vector<char>& buffer)
  1022. {
  1023. std::cerr << typeid(obj).name() << " is not deserializable: derive from igl::Serializable or spezialize the template function igl::serialization::deserialize(T& obj, const std::vector<char>& buffer)" << std::endl;
  1024. }
  1025. // helper functions
  1026. template <typename T>
  1027. inline void updateMemoryMap(T& obj,size_t size,std::map<std::uintptr_t,IndexedPointerBase*>& memoryMap)
  1028. {
  1029. // check if object is already serialized
  1030. auto startPtr = new IndexedPointer<T>();
  1031. startPtr->Object = &obj;
  1032. auto startBasePtr = static_cast<IndexedPointerBase*>(startPtr);
  1033. startBasePtr->Type = IndexedPointerBase::BEGIN;
  1034. auto startAddress = reinterpret_cast<std::uintptr_t>(&obj);
  1035. auto p = std::pair<std::uintptr_t,IndexedPointerBase*>(startAddress,startBasePtr);
  1036. auto el = memoryMap.insert(p);
  1037. auto iter = ++el.first; // next elememt
  1038. if(el.second && (iter == memoryMap.end() || iter->second->Type != IndexedPointerBase::END))
  1039. {
  1040. // not yet serialized
  1041. auto endPtr = new IndexedPointer<T>();
  1042. auto endBasePtr = static_cast<IndexedPointerBase*>(endPtr);
  1043. endBasePtr->Type = IndexedPointerBase::END;
  1044. auto endAddress = reinterpret_cast<std::uintptr_t>(&obj) + size - 1;
  1045. auto p = std::pair<std::uintptr_t,IndexedPointerBase*>(endAddress,endBasePtr);
  1046. // insert end address
  1047. memoryMap.insert(el.first,p);
  1048. }
  1049. else
  1050. {
  1051. // already serialized
  1052. // remove inserted address
  1053. memoryMap.erase(el.first);
  1054. }
  1055. }
  1056. }
  1057. }
  1058. #endif