bbgc.h 4.2 KB

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  1. #ifndef BB_GC_H
  2. #define BB_GC_H
  3. #include "bbstd.h"
  4. #include "bbtypes.h"
  5. #include "bbmemory.h"
  6. #include "bbfunction.h"
  7. //how much to allocate before a sweep occurs
  8. //#define BBGC_TRIGGER 0
  9. //#define BBGC_TRIGGER 64
  10. //#define BBGC_TRIGGER 256
  11. //#define BBGC_TRIGGER 65536
  12. //#define BBGC_TRIGGER 1*1024*1024
  13. #define BBGC_TRIGGER 4*1024*1024
  14. //#define BBGC_TRIGGER 16*1024*1024
  15. //mark while allocating, slower but smoother...
  16. #define BBGC_INCREMENTAL 1
  17. //reclaim all memory after a sweep, lumpier...
  18. //#define BBGC_AGGRESSIVE 1
  19. //check for use of deleted objects, MUCH leakier...
  20. //#define BBGC_DEBUG 1
  21. #if BBGC_DEBUG
  22. #define BBGC_VALIDATE( P ) \
  23. if( (P) && (P)->flags==3 ){ \
  24. printf( "Attempt to use deleted object %p of type '%s'\n",(P),(P)->typeName() ); \
  25. fflush( stdout ); \
  26. abort(); \
  27. }
  28. #else
  29. #define BBGC_VALIDATE( P )
  30. #endif
  31. struct bbGCNode;
  32. struct bbGCFiber;
  33. struct bbGCFrame;
  34. struct bbGCRoot;
  35. struct bbGCTmp;
  36. namespace bbGC{
  37. extern bbGCRoot *roots;
  38. extern bbGCTmp *freeTmps;
  39. extern bbGCNode *markQueue;
  40. extern bbGCNode *unmarkedList;
  41. extern bbGCFiber *fibers;
  42. extern bbGCFiber *currentFiber;
  43. extern int markedBit;
  44. extern int unmarkedBit;
  45. void init();
  46. void collect();
  47. bbGCNode *alloc( size_t size );
  48. }
  49. struct bbGCNode{
  50. bbGCNode *succ;
  51. bbGCNode *pred;
  52. size_t flags; //0=lonely, 1/2=marked/unmarked; 3=destroyed
  53. bbGCNode(){
  54. }
  55. virtual ~bbGCNode(){
  56. }
  57. virtual void gcMark(){
  58. }
  59. virtual void dbEmit(){
  60. }
  61. virtual const char *typeName()const{
  62. return "bbGCNode";
  63. }
  64. };
  65. struct bbGCFiber{
  66. bbGCFiber *succ;
  67. bbGCFiber *pred;
  68. bbGCFrame *frames;
  69. bbGCNode *ctoring;
  70. bbGCTmp *tmps;
  71. bbFunction<void()> entry;
  72. bbGCFiber():succ( this ),pred( this ),frames( nullptr ),ctoring( nullptr ),tmps( nullptr ){
  73. }
  74. void link(){
  75. succ=bbGC::fibers;
  76. pred=bbGC::fibers->pred;
  77. bbGC::fibers->pred=this;
  78. pred->succ=this;
  79. }
  80. void unlink(){
  81. pred->succ=succ;
  82. succ->pred=pred;
  83. }
  84. };
  85. struct bbGCFrame{
  86. bbGCFrame *succ;
  87. bbGCFrame():succ( bbGC::currentFiber->frames ){
  88. bbGC::currentFiber->frames=this;
  89. }
  90. ~bbGCFrame(){
  91. bbGC::currentFiber->frames=succ;
  92. }
  93. virtual void gcMark(){
  94. }
  95. };
  96. struct bbGCRoot{
  97. bbGCRoot *succ;
  98. bbGCRoot():succ( bbGC::roots ){
  99. bbGC::roots=this;
  100. }
  101. virtual void gcMark(){
  102. }
  103. };
  104. struct bbGCTmp{
  105. bbGCTmp *succ;
  106. bbGCNode *node;
  107. };
  108. namespace bbGC{
  109. inline void insert( bbGCNode *p,bbGCNode *succ ){
  110. p->succ=succ;
  111. p->pred=succ->pred;
  112. p->pred->succ=p;
  113. succ->pred=p;
  114. }
  115. inline void remove( bbGCNode *p ){
  116. p->pred->succ=p->succ;
  117. p->succ->pred=p->pred;
  118. }
  119. inline void enqueue( bbGCNode *p ){
  120. BBGC_VALIDATE( p )
  121. if( !p || p->flags!=unmarkedBit ) return;
  122. remove( p );
  123. p->succ=markQueue;
  124. markQueue=p;
  125. p->flags=markedBit;
  126. }
  127. inline void pushTmp( bbGCNode *p ){
  128. bbGCTmp *tmp=freeTmps;
  129. if( !tmp ) tmp=new bbGCTmp;
  130. tmp->node=p;
  131. tmp->succ=currentFiber->tmps;
  132. currentFiber->tmps=tmp;
  133. // puts( "pushTmp" );
  134. }
  135. inline void popTmps( int n ){
  136. // printf( "popTmps %i\n",n );
  137. while( n-- ){
  138. bbGCTmp *tmp=currentFiber->tmps;
  139. currentFiber->tmps=tmp->succ;
  140. tmp->succ=freeTmps;
  141. freeTmps=tmp;
  142. }
  143. }
  144. template<class T> T *tmp( T *p ){
  145. pushTmp( p );
  146. return p;
  147. }
  148. inline void beginCtor( bbGCNode *p ){
  149. p->succ=currentFiber->ctoring;
  150. currentFiber->ctoring=p;
  151. }
  152. inline void endCtor( bbGCNode *p ){
  153. currentFiber->ctoring=p->succ;
  154. #if BBGC_INCREMENTAL
  155. p->succ=markQueue;
  156. markQueue=p;
  157. p->flags=markedBit;
  158. #else
  159. p->flags=unmarkedBit;
  160. insert( p,unmarkedList );
  161. #endif
  162. }
  163. }
  164. template<class T> struct bbGCVar{
  165. public:
  166. T *_ptr;
  167. void enqueue(){
  168. #if BBGC_INCREMENTAL
  169. bbGC::enqueue( dynamic_cast<bbGCNode*>( _ptr ) );
  170. #endif
  171. }
  172. bbGCVar():_ptr( nullptr ){
  173. }
  174. bbGCVar( T *p ):_ptr( p ){
  175. enqueue();
  176. }
  177. bbGCVar( const bbGCVar &p ):_ptr( p._ptr ){
  178. enqueue();
  179. }
  180. bbGCVar &operator=( T *p ){
  181. _ptr=p;
  182. enqueue();
  183. return *this;
  184. }
  185. bbGCVar &operator=( const bbGCVar &p ){
  186. _ptr=p._ptr;
  187. enqueue();
  188. return *this;
  189. }
  190. T *get()const{
  191. return _ptr;
  192. }
  193. T *operator->()const{
  194. return _ptr;
  195. }
  196. operator T*()const{
  197. return _ptr;
  198. }
  199. };
  200. template<class T> void bbGCMark( T const& ){
  201. }
  202. //inline void bbGCMark(...){
  203. //}
  204. template<class T> void bbGCMark( const bbGCVar<T> &v ){
  205. bbGCMark( v._ptr );
  206. }
  207. #endif