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5c88803942
Error handling: Array now has sufficiently advanced error handling to remove most, if not all, disable_checks. Extention: With the metaprogramming techniques, new types can be added easily. Speed: With the new changes I've made to Judy, the Array module has far exceeded the speed of any traditional datatype
76 lines
1.9 KiB
C++
76 lines
1.9 KiB
C++
#include "CBinTrie.h"
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void BinTrie::ThrowSearchError(char* type)
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{
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char value[50];
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sprintf(value,"Function attempted to search %s: Judy returned NULL value", type);
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throw JudyEx (value,false);
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}
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cell BinTrie::First( cell Start)
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{
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cell success = Judy1First(Table, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:First");
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return Start;
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}
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cell BinTrie::FirstEmpty( cell Start)
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{
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cell success = Judy1FirstEmpty(Table, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:FirstEmpty");
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return Start;
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}
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cell BinTrie::Next( cell Start)
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{
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cell success = Judy1Next(Table, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:Next");
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return Start;
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}
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cell BinTrie::NextEmpty( cell Start)
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{
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cell success = Judy1NextEmpty(Table, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:NextEmpty");
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return Start;
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}
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cell BinTrie::Prev( cell Start)
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{
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cell success = Judy1Prev(Table, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:Prev");
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return Start;
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}
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cell BinTrie::PrevEmpty( cell Start)
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{
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cell success = Judy1PrevEmpty(Table, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:PrevEmpty");
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return Start;
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}
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cell BinTrie::Last( cell Start)
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{
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cell success = Judy1Last(Table, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:Last");
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return Start;
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}
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cell BinTrie::LastEmpty( cell Start)
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{
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cell success = Judy1LastEmpty(Table, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:LastEmpty");
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return Start;
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}
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cell BinTrie::ByCount(cell n, cell Start)
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{
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cell success = Judy1ByCount(Table, n, reinterpret_cast<unsigned int*>(&Start), PJE0);
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if (success == NULL) ThrowSearchError("Type:Nth");
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return Start;
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} |