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yassl template instantiation - don't do too much
mysys/my_access.c: remove incorrect fix comments extra/yassl/taocrypt/src/integer.cpp: yassl template instantiation - don't do too much extra/yassl/taocrypt/src/template_instnt.cpp: yassl template instantiation - don't do too much mysys/my_access.c: remove incorrect fix sql/item_func.cc: a couple of comment. assert added.
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4 changed files with 24 additions and 22 deletions
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@ -3940,9 +3940,10 @@ Integer CRT(const Integer &xp, const Integer &p, const Integer &xq,
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}
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#ifdef __GNUC__
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template unsigned int DivideThreeWordsByTwo<unsigned int, DWord>(unsigned int*, unsigned int, unsigned int, DWord*);
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template unsigned int DivideThreeWordsByTwo<unsigned int, Word>(unsigned int*, unsigned int, unsigned int, Word*);
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template unsigned long long DivideThreeWordsByTwo<unsigned long long, DWord>(unsigned long long*, unsigned long long, unsigned long long, DWord*);
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#ifndef TAOCRYPT_NATIVE_DWORD_AVAILABLE
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template hword DivideThreeWordsByTwo<hword, Word>(hword*, hword, hword, Word*);
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#endif
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template word DivideThreeWordsByTwo<word, DWord>(word*, word, word, DWord*);
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#endif
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} // namespace
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@ -9,29 +9,27 @@ namespace TaoCrypt {
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#if defined(SSE2_INTRINSICS_AVAILABLE)
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template AlignedAllocator<unsigned int>::pointer StdReallocate<unsigned int, AlignedAllocator<unsigned int> >(AlignedAllocator<unsigned int>&, unsigned int*, AlignedAllocator<unsigned int>::size_type, AlignedAllocator<unsigned int>::size_type, bool);
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#endif
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template AllocatorWithCleanup<unsigned char>::pointer StdReallocate<unsigned char, AllocatorWithCleanup<unsigned char> >(AllocatorWithCleanup<unsigned char>&, unsigned char*, AllocatorWithCleanup<unsigned char>::size_type, AllocatorWithCleanup<unsigned char>::size_type, bool);
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template AllocatorWithCleanup<unsigned int>::pointer StdReallocate<unsigned int, AllocatorWithCleanup<unsigned int> >(AllocatorWithCleanup<unsigned int>&, unsigned int*, AllocatorWithCleanup<unsigned int>::size_type, AllocatorWithCleanup<unsigned int>::size_type, bool);
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template AllocatorWithCleanup<unsigned long long>::pointer StdReallocate<unsigned long long, AllocatorWithCleanup<unsigned long long> >(AllocatorWithCleanup<unsigned long long>&, unsigned long long*, AllocatorWithCleanup<unsigned long long>::size_type, AllocatorWithCleanup<unsigned long long>::size_type, bool);
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template class RSA_Decryptor<RSA_BlockType2>;
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template class RSA_Encryptor<RSA_BlockType1>;
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template class RSA_Encryptor<RSA_BlockType2>;
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template void tcDelete<HASH>(HASH*);
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template void tcArrayDelete<byte>(byte*);
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template AllocatorWithCleanup<byte>::pointer StdReallocate<byte, AllocatorWithCleanup<byte> >(AllocatorWithCleanup<byte>&, byte*, AllocatorWithCleanup<byte>::size_type, AllocatorWithCleanup<byte>::size_type, bool);
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template void tcArrayDelete<word>(word*);
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template AllocatorWithCleanup<word>::pointer StdReallocate<word, AllocatorWithCleanup<word> >(AllocatorWithCleanup<word>&, word*, AllocatorWithCleanup<word>::size_type, AllocatorWithCleanup<word>::size_type, bool);
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#ifndef TAOCRYPT_SLOW_WORD64 // defined when word != word32
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template void tcArrayDelete<word32>(word32*);
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template AllocatorWithCleanup<word32>::pointer StdReallocate<word32, AllocatorWithCleanup<word32> >(AllocatorWithCleanup<word32>&, word32*, AllocatorWithCleanup<word32>::size_type, AllocatorWithCleanup<word32>::size_type, bool);
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#endif
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template void tcArrayDelete<char>(char*);
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}
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namespace mySTL {
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template vector<TaoCrypt::Integer>* uninit_fill_n<vector<TaoCrypt::Integer>*, unsigned int, vector<TaoCrypt::Integer> >(vector<TaoCrypt::Integer>*, unsigned int, vector<TaoCrypt::Integer> const&);
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template vector<TaoCrypt::Integer>* uninit_fill_n<vector<TaoCrypt::Integer>*, unsigned long, vector<TaoCrypt::Integer> >(vector<TaoCrypt::Integer>*, unsigned long, vector<TaoCrypt::Integer> const&);
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template vector<TaoCrypt::Integer>* uninit_fill_n<vector<TaoCrypt::Integer>*, size_t, vector<TaoCrypt::Integer> >(vector<TaoCrypt::Integer>*, size_t, vector<TaoCrypt::Integer> const&);
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template void destroy<vector<TaoCrypt::Integer>*>(vector<TaoCrypt::Integer>*, vector<TaoCrypt::Integer>*);
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template TaoCrypt::Integer* uninit_copy<TaoCrypt::Integer*, TaoCrypt::Integer*>(TaoCrypt::Integer*, TaoCrypt::Integer*, TaoCrypt::Integer*);
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template TaoCrypt::Integer* uninit_fill_n<TaoCrypt::Integer*, unsigned int, TaoCrypt::Integer>(TaoCrypt::Integer*, unsigned int, TaoCrypt::Integer const&);
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template TaoCrypt::Integer* uninit_fill_n<TaoCrypt::Integer*, unsigned long, TaoCrypt::Integer>(TaoCrypt::Integer*, unsigned long, TaoCrypt::Integer const&);
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template TaoCrypt::Integer* uninit_fill_n<TaoCrypt::Integer*, size_t, TaoCrypt::Integer>(TaoCrypt::Integer*, size_t, TaoCrypt::Integer const&);
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template void destroy<TaoCrypt::Integer*>(TaoCrypt::Integer*, TaoCrypt::Integer*);
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}
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namespace TaoCrypt {
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template void tcDelete<HASH>(HASH*);
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template void tcArrayDelete<unsigned>(unsigned*);
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template void tcArrayDelete<unsigned long long>(unsigned long long*);
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template void tcArrayDelete<unsigned char>(unsigned char*);
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template void tcArrayDelete<char>(char*);
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}
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#endif
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@ -44,7 +44,7 @@ int my_access(const char *path, int amode)
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result= GetFileAttributesEx(path, GetFileExInfoStandard, &fileinfo);
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if (! result ||
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(fileinfo.dwFileAttributes & FILE_ATTRIBUTE_READONLY) && (amode & F_OK))
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(fileinfo.dwFileAttributes & FILE_ATTRIBUTE_READONLY) && (amode & W_OK))
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{
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my_errno= errno= EACCES;
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return -1;
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@ -695,8 +695,8 @@ String *Item_int_func::val_str(String *str)
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/*
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Check arguments here to determine result's type for function with two
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arguments.
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Check arguments here to determine result's type for a numeric
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function of two arguments.
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SYNOPSIS
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Item_num_op::find_num_type()
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@ -722,8 +722,9 @@ void Item_num_op::find_num_type(void)
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hybrid_type= DECIMAL_RESULT;
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result_precision();
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}
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else if (r0 == INT_RESULT && r1 == INT_RESULT)
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else
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{
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DBUG_ASSERT(r0 == INT_RESULT && r1 == INT_RESULT);
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decimals= 0;
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hybrid_type=INT_RESULT;
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result_precision();
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@ -738,7 +739,9 @@ void Item_num_op::find_num_type(void)
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/*
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Set result type of function if it (type) is depends only on first argument
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Set result type for a numeric function of one argument
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(can be also used by a numeric function of many arguments, if the result
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type depends only on the first argument)
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SYNOPSIS
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Item_func_num1::find_num_type()
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