729 lines
14 KiB
C++
729 lines
14 KiB
C++
#include "bbsys.hpp"
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#include <map>
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#include <stdutil.hpp>
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//how many strings allocated
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static int stringCnt;
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//how many objects new'd but not deleted
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static int objCnt;
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//how many objects deleted but not released
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static int unrelObjCnt;
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//how many objects to alloc per block
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static const int OBJ_NEW_INC = 512;
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//how many strings to alloc per block
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static const int STR_NEW_INC = 512;
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//current data ptr
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static BBData* dataPtr;
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//chunks of mem - WHAT THE FUCK WAS I ON?!?!?!?
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//static list<char*> memBlks;
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//strings
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static BBStr usedStrs, freeStrs;
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//object handle number
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static int next_handle;
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//object<->handle maps
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static std::map<int, BBObj*> handle_map;
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static std::map<BBObj*, int> object_map;
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static BBType _bbIntType(BBTYPE_INT);
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static BBType _bbFltType(BBTYPE_FLT);
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static BBType _bbStrType(BBTYPE_STR);
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static BBType _bbCStrType(BBTYPE_CSTR);
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static void* bbMalloc(int size)
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{
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return malloc(size);
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/*
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char *c=new char[ size ];
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memBlks.push_back( c );
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return c;
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*/
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}
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static void bbFree(void* q)
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{
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free(q);
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/*
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if( !q ) return;
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char *c=(char*)q;
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memBlks.remove( c );
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delete [] c;
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*/
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}
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static void removeStr(BBStr* str)
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{
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str->next->prev = str->prev;
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str->prev->next = str->next;
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}
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static void insertStr(BBStr* str, BBStr* next)
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{
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str->next = next;
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str->prev = next->prev;
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str->prev->next = str;
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next->prev = str;
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}
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void* BBStr::operator new(size_t size)
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{
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if (freeStrs.next == &freeStrs) {
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BBStr* t = (BBStr*)bbMalloc(sizeof(BBStr) * STR_NEW_INC);
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for (int k = 0; k < STR_NEW_INC; ++k)
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insertStr(t++, &freeStrs);
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}
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BBStr* t = freeStrs.next;
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removeStr(t);
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insertStr(t, &usedStrs);
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return t;
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}
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void BBStr::operator delete(void* q)
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{
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if (!q)
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return;
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BBStr* t = (BBStr*)q;
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removeStr(t);
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insertStr(t, &freeStrs);
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}
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BBStr::BBStr()
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{
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++stringCnt;
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}
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BBStr::BBStr(const char* s) : std::string(s)
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{
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++stringCnt;
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}
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BBStr::BBStr(const char* s, int n) : std::string(s, n)
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{
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++stringCnt;
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}
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BBStr::BBStr(const BBStr& s) : std::string(s)
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{
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++stringCnt;
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}
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BBStr::BBStr(const std::string& s) : std::string(s)
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{
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++stringCnt;
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}
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BBStr& BBStr::operator=(const char* s)
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{
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std::string::operator=(s);
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return *this;
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}
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BBStr& BBStr::operator=(const BBStr& s)
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{
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std::string::operator=(s);
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return *this;
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}
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BBStr& BBStr::operator=(const std::string& s)
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{
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std::string::operator=(s);
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return *this;
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}
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BBStr::~BBStr()
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{
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--stringCnt;
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}
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BBStr* _bbStrLoad(BBStr** var)
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{
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return *var ? new BBStr(**var) : new BBStr();
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}
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void _bbStrRelease(BBStr* str)
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{
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delete str;
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}
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void _bbStrStore(BBStr** var, BBStr* str)
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{
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_bbStrRelease(*var);
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*var = str;
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}
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BBStr* _bbStrConcat(BBStr* s1, BBStr* s2)
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{
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*s1 += *s2;
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delete s2;
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return s1;
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}
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int _bbStrCompare(BBStr* lhs, BBStr* rhs)
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{
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int n = lhs->compare(*rhs);
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delete lhs;
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delete rhs;
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return n;
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}
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int _bbStrToInt(BBStr* s)
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{
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int n = atoi(*s);
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delete s;
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return n;
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}
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BBStr* _bbStrFromInt(int n)
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{
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return new BBStr(itoa(n));
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}
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float _bbStrToFloat(BBStr* s)
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{
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float n = (float)atof(*s);
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delete s;
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return n;
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}
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BBStr* _bbStrFromFloat(float n)
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{
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return new BBStr(ftoa(n));
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}
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BBStr* _bbStrConst(const char* s)
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{
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return new BBStr(s);
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}
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void* _bbVecAlloc(BBVecType* type)
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{
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void* vec = bbMalloc(type->size * 4);
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memset(vec, 0, type->size * 4);
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return vec;
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}
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void _bbVecFree(void* vec, BBVecType* type)
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{
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if (type->elementType->type == BBTYPE_STR) {
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BBStr** p = (BBStr**)vec;
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for (int k = 0; k < type->size; ++p, ++k) {
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if (*p)
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_bbStrRelease(*p);
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}
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} else if (type->elementType->type == BBTYPE_OBJ) {
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BBObj** p = (BBObj**)vec;
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for (int k = 0; k < type->size; ++p, ++k) {
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if (*p)
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_bbObjRelease(*p);
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}
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}
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bbFree(vec);
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}
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void _bbVecBoundsEx()
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{
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ThrowRuntimeException("Blitz array index out of bounds");
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}
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void _bbUndimArray(BBArray* array)
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{
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if (void* t = array->data) {
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if (array->elementType == BBTYPE_STR) {
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BBStr** p = (BBStr**)t;
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int size = array->scales[array->dims - 1];
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for (int k = 0; k < size; ++p, ++k) {
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if (*p)
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_bbStrRelease(*p);
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}
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} else if (array->elementType == BBTYPE_OBJ) {
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BBObj** p = (BBObj**)t;
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int size = array->scales[array->dims - 1];
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for (int k = 0; k < size; ++p, ++k) {
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if (*p)
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_bbObjRelease(*p);
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}
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}
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bbFree(t);
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array->data = 0;
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}
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}
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void _bbDimArray(BBArray* array)
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{
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int k;
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for (k = 0; k < array->dims; ++k)
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++array->scales[k];
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for (k = 1; k < array->dims; ++k) {
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array->scales[k] *= array->scales[k - 1];
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}
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int size = array->scales[array->dims - 1];
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array->data = bbMalloc(size * 4);
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memset(array->data, 0, size * 4);
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}
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void _bbArrayBoundsEx()
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{
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ThrowRuntimeException("Array index out of bounds");
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}
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static void unlinkObj(BBObj* obj)
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{
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obj->next->prev = obj->prev;
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obj->prev->next = obj->next;
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}
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static void insertObj(BBObj* obj, BBObj* next)
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{
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obj->next = next;
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obj->prev = next->prev;
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next->prev->next = obj;
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next->prev = obj;
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}
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BBObj* _bbObjNew(BBObjType* type)
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{
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if (type->free.next == &type->free) {
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int obj_size = sizeof(BBObj) + type->fieldCnt * 4;
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BBObj* o = (BBObj*)bbMalloc(obj_size * OBJ_NEW_INC);
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for (int k = 0; k < OBJ_NEW_INC; ++k) {
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insertObj(o, &type->free);
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o = (BBObj*)((char*)o + obj_size);
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}
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}
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BBObj* o = type->free.next;
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unlinkObj(o);
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o->type = type;
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o->ref_cnt = 1;
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o->fields = (BBField*)(o + 1);
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for (int k = 0; k < type->fieldCnt; ++k) {
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switch (type->fieldTypes[k]->type) {
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case BBTYPE_VEC:
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o->fields[k].VEC = _bbVecAlloc((BBVecType*)type->fieldTypes[k]);
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break;
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default:
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o->fields[k].INT = 0;
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}
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}
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insertObj(o, &type->used);
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++unrelObjCnt;
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++objCnt;
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return o;
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}
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void _bbObjDelete(BBObj* obj)
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{
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if (!obj)
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return;
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BBField* fields = obj->fields;
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if (!fields)
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return;
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BBObjType* type = obj->type;
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for (int k = 0; k < type->fieldCnt; ++k) {
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switch (type->fieldTypes[k]->type) {
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case BBTYPE_STR:
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_bbStrRelease(fields[k].STR);
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break;
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case BBTYPE_OBJ:
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_bbObjRelease(fields[k].OBJ);
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break;
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case BBTYPE_VEC:
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_bbVecFree(fields[k].VEC, (BBVecType*)type->fieldTypes[k]);
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break;
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}
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}
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std::map<BBObj*, int>::iterator it = object_map.find(obj);
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if (it != object_map.end()) {
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handle_map.erase(it->second);
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object_map.erase(it);
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}
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obj->fields = 0;
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_bbObjRelease(obj);
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--objCnt;
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}
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void _bbObjDeleteEach(BBObjType* type)
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{
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BBObj* obj = type->used.next;
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while (obj->type) {
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BBObj* next = obj->next;
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if (obj->fields)
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_bbObjDelete(obj);
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obj = next;
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}
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}
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extern void bbDebugLog(BBStr* t);
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extern void bbStop();
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void _bbObjRelease(BBObj* obj)
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{
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if (!obj || --obj->ref_cnt)
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return;
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unlinkObj(obj);
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insertObj(obj, &obj->type->free);
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--unrelObjCnt;
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}
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void _bbObjStore(BBObj** var, BBObj* obj)
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{
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if (obj)
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++obj->ref_cnt; //do this first incase of self-assignment
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_bbObjRelease(*var);
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*var = obj;
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}
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int _bbObjCompare(BBObj* o1, BBObj* o2)
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{
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return (o1 ? o1->fields : 0) != (o2 ? o2->fields : 0);
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}
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BBObj* _bbObjNext(BBObj* obj)
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{
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do {
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obj = obj->next;
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if (!obj->type)
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return 0;
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} while (!obj->fields);
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return obj;
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}
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BBObj* _bbObjPrev(BBObj* obj)
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{
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do {
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obj = obj->prev;
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if (!obj->type)
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return 0;
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} while (!obj->fields);
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return obj;
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}
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BBObj* _bbObjFirst(BBObjType* type)
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{
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return _bbObjNext(&type->used);
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}
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BBObj* _bbObjLast(BBObjType* type)
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{
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return _bbObjPrev(&type->used);
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}
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void _bbObjInsBefore(BBObj* o1, BBObj* o2)
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{
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if (o1 == o2)
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return;
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unlinkObj(o1);
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insertObj(o1, o2);
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}
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void _bbObjInsAfter(BBObj* o1, BBObj* o2)
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{
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if (o1 == o2)
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return;
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unlinkObj(o1);
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insertObj(o1, o2->next);
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}
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int _bbObjEachFirst(BBObj** var, BBObjType* type)
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{
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_bbObjStore(var, _bbObjFirst(type));
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return *var != 0;
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}
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int _bbObjEachNext(BBObj** var)
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{
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_bbObjStore(var, _bbObjNext(*var));
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return *var != 0;
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}
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int _bbObjEachFirst2(BBObj** var, BBObjType* type)
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{
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*var = _bbObjFirst(type);
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return *var != 0;
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}
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int _bbObjEachNext2(BBObj** var)
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{
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*var = _bbObjNext(*var);
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return *var != 0;
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}
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BBStr* _bbObjToStr(BBObj* obj)
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{
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if (!obj || !obj->fields)
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return new BBStr("[NULL]");
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static BBObj* root;
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static int recurs_cnt;
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if (obj == root)
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return new BBStr("[ROOT]");
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if (recurs_cnt == 8)
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return new BBStr("....");
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++recurs_cnt;
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BBObj* oldRoot = root;
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if (!root)
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root = obj;
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BBObjType* type = obj->type;
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BBField* fields = obj->fields;
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BBStr * s = new BBStr("["), *t;
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for (int k = 0; k < type->fieldCnt; ++k) {
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if (k)
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*s += ',';
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switch (type->fieldTypes[k]->type) {
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case BBTYPE_INT:
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t = _bbStrFromInt(fields[k].INT);
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*s += *t;
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delete t;
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break;
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case BBTYPE_FLT:
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t = _bbStrFromFloat(fields[k].FLT);
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*s += *t;
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delete t;
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break;
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case BBTYPE_STR:
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if (fields[k].STR)
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*s += '\"' + *fields[k].STR + '\"';
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else
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*s += "\"\"";
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break;
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case BBTYPE_OBJ:
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t = _bbObjToStr(fields[k].OBJ);
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*s += *t;
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delete t;
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break;
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default:
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*s += "???";
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}
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}
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*s += ']';
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root = oldRoot;
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--recurs_cnt;
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return s;
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}
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int _bbObjToHandle(BBObj* obj)
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{
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if (!obj || !obj->fields)
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return 0;
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std::map<BBObj*, int>::const_iterator it = object_map.find(obj);
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if (it != object_map.end())
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return it->second;
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++next_handle;
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object_map[obj] = next_handle;
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handle_map[next_handle] = obj;
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return next_handle;
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}
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BBObj* _bbObjFromHandle(int handle, BBObjType* type)
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{
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std::map<int, BBObj*>::const_iterator it = handle_map.find(handle);
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if (it == handle_map.end())
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return 0;
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BBObj* obj = it->second;
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return obj->type == type ? obj : 0;
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}
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void _bbNullObjEx()
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{
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ThrowRuntimeException("Object does not exist");
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}
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void _bbRestore(BBData* data)
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{
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dataPtr = data;
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}
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int _bbReadInt()
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{
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switch (dataPtr->fieldType) {
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case BBTYPE_END:
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ThrowRuntimeException("Out of data");
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return 0;
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case BBTYPE_INT:
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return dataPtr++->field.INT;
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case BBTYPE_FLT:
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return dataPtr++->field.FLT;
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case BBTYPE_CSTR:
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return atoi(dataPtr++->field.CSTR);
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default:
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ThrowRuntimeException("Bad data type");
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return 0;
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}
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}
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float _bbReadFloat()
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{
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switch (dataPtr->fieldType) {
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case BBTYPE_END:
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ThrowRuntimeException("Out of data");
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return 0;
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case BBTYPE_INT:
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return dataPtr++->field.INT;
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case BBTYPE_FLT:
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return dataPtr++->field.FLT;
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case BBTYPE_CSTR:
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return atof(dataPtr++->field.CSTR);
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default:
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ThrowRuntimeException("Bad data type");
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return 0;
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}
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}
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BBStr* _bbReadStr()
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{
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switch (dataPtr->fieldType) {
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case BBTYPE_END:
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ThrowRuntimeException("Out of data");
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return 0;
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case BBTYPE_INT:
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return new BBStr(itoa(dataPtr++->field.INT));
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case BBTYPE_FLT:
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return new BBStr(ftoa(dataPtr++->field.FLT));
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|
case BBTYPE_CSTR:
|
|
return new BBStr(dataPtr++->field.CSTR);
|
|
default:
|
|
ThrowRuntimeException("Bad data type");
|
|
return 0;
|
|
}
|
|
}
|
|
|
|
int _bbAbs(int n)
|
|
{
|
|
return n >= 0 ? n : -n;
|
|
}
|
|
|
|
int _bbSgn(int n)
|
|
{
|
|
return n > 0 ? 1 : (n < 0 ? -1 : 0);
|
|
}
|
|
|
|
int _bbMod(int x, int y)
|
|
{
|
|
return x % y;
|
|
}
|
|
|
|
float _bbFAbs(float n)
|
|
{
|
|
return n >= 0 ? n : -n;
|
|
}
|
|
|
|
float _bbFSgn(float n)
|
|
{
|
|
return n > 0 ? 1 : (n < 0 ? -1 : 0);
|
|
}
|
|
|
|
float _bbFMod(float x, float y)
|
|
{
|
|
return (float)fmod(x, y);
|
|
}
|
|
|
|
float _bbFPow(float x, float y)
|
|
{
|
|
return (float)pow(x, y);
|
|
}
|
|
|
|
void bbRuntimeStats()
|
|
{
|
|
gx_runtime->debugLog(("Active strings :" + itoa(stringCnt)).c_str());
|
|
gx_runtime->debugLog(("Active objects :" + itoa(objCnt)).c_str());
|
|
gx_runtime->debugLog(("Unreleased objs:" + itoa(unrelObjCnt)).c_str());
|
|
/*
|
|
clog<<"Active strings:"<<stringCnt<<endl;
|
|
clog<<"Active objects:"<<objCnt<<endl;
|
|
clog<<"Unreleased Objects:"<<unrelObjCnt<<endl;
|
|
for( BBStr *t=usedStrs.next;t!=&usedStrs;t=t->next ){
|
|
clog<<"string@"<<(void*)t<<endl;
|
|
}
|
|
*/
|
|
}
|
|
|
|
bool basic_create()
|
|
{
|
|
next_handle = 0;
|
|
// memBlks.clear();
|
|
handle_map.clear();
|
|
object_map.clear();
|
|
stringCnt = objCnt = unrelObjCnt = 0;
|
|
usedStrs.next = usedStrs.prev = &usedStrs;
|
|
freeStrs.next = freeStrs.prev = &freeStrs;
|
|
return true;
|
|
}
|
|
|
|
bool basic_destroy()
|
|
{
|
|
while (usedStrs.next != &usedStrs)
|
|
delete usedStrs.next;
|
|
// while( memBlks.size() ) bbFree( memBlks.back() );
|
|
handle_map.clear();
|
|
object_map.clear();
|
|
return true;
|
|
}
|
|
|
|
void basic_link(void (*rtSym)(const char* sym, void* pc))
|
|
{
|
|
rtSym("_bbIntType", &_bbIntType);
|
|
rtSym("_bbFltType", &_bbFltType);
|
|
rtSym("_bbStrType", &_bbStrType);
|
|
rtSym("_bbCStrType", &_bbCStrType);
|
|
|
|
rtSym("_bbStrLoad", _bbStrLoad);
|
|
rtSym("_bbStrRelease", _bbStrRelease);
|
|
rtSym("_bbStrStore", _bbStrStore);
|
|
rtSym("_bbStrCompare", _bbStrCompare);
|
|
rtSym("_bbStrConcat", _bbStrConcat);
|
|
rtSym("_bbStrToInt", _bbStrToInt);
|
|
rtSym("_bbStrFromInt", _bbStrFromInt);
|
|
rtSym("_bbStrToFloat", _bbStrToFloat);
|
|
rtSym("_bbStrFromFloat", _bbStrFromFloat);
|
|
rtSym("_bbStrConst", _bbStrConst);
|
|
rtSym("_bbDimArray", _bbDimArray);
|
|
rtSym("_bbUndimArray", _bbUndimArray);
|
|
rtSym("_bbArrayBoundsEx", _bbArrayBoundsEx);
|
|
rtSym("_bbVecAlloc", _bbVecAlloc);
|
|
rtSym("_bbVecFree", _bbVecFree);
|
|
rtSym("_bbVecBoundsEx", _bbVecBoundsEx);
|
|
rtSym("_bbObjNew", _bbObjNew);
|
|
rtSym("_bbObjDelete", _bbObjDelete);
|
|
rtSym("_bbObjDeleteEach", _bbObjDeleteEach);
|
|
rtSym("_bbObjRelease", _bbObjRelease);
|
|
rtSym("_bbObjStore", _bbObjStore);
|
|
rtSym("_bbObjCompare", _bbObjCompare);
|
|
rtSym("_bbObjNext", _bbObjNext);
|
|
rtSym("_bbObjPrev", _bbObjPrev);
|
|
rtSym("_bbObjFirst", _bbObjFirst);
|
|
rtSym("_bbObjLast", _bbObjLast);
|
|
rtSym("_bbObjInsBefore", _bbObjInsBefore);
|
|
rtSym("_bbObjInsAfter", _bbObjInsAfter);
|
|
rtSym("_bbObjEachFirst", _bbObjEachFirst);
|
|
rtSym("_bbObjEachNext", _bbObjEachNext);
|
|
rtSym("_bbObjEachFirst2", _bbObjEachFirst2);
|
|
rtSym("_bbObjEachNext2", _bbObjEachNext2);
|
|
rtSym("_bbObjToStr", _bbObjToStr);
|
|
rtSym("_bbObjToHandle", _bbObjToHandle);
|
|
rtSym("_bbObjFromHandle", _bbObjFromHandle);
|
|
rtSym("_bbNullObjEx", _bbNullObjEx);
|
|
rtSym("_bbRestore", _bbRestore);
|
|
rtSym("_bbReadInt", _bbReadInt);
|
|
rtSym("_bbReadFloat", _bbReadFloat);
|
|
rtSym("_bbReadStr", _bbReadStr);
|
|
rtSym("_bbAbs", _bbAbs);
|
|
rtSym("_bbSgn", _bbSgn);
|
|
rtSym("_bbMod", _bbMod);
|
|
rtSym("_bbFAbs", _bbFAbs);
|
|
rtSym("_bbFSgn", _bbFSgn);
|
|
rtSym("_bbFMod", _bbFMod);
|
|
rtSym("_bbFPow", _bbFPow);
|
|
rtSym("RuntimeStats", bbRuntimeStats);
|
|
}
|