* Added a generic vector implementation (dynamic array) based on defines.
git-svn-id: https://svn.code.sf.net/p/rathena/svn/trunk@11972 54d463be-8e91-2dee-dedb-b68131a5f0ec
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@ -4,6 +4,7 @@ AS OF SVN REV. 5091, WE ARE NOW USING TRUNK. ALL UNTESTED BUGFIXES/FEATURES GO
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IF YOU HAVE A WORKING AND TESTED BUGFIX PUT IT INTO STABLE AS WELL AS TRUNK.
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IF YOU HAVE A WORKING AND TESTED BUGFIX PUT IT INTO STABLE AS WELL AS TRUNK.
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2007/12/23
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2007/12/23
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* Added a generic vector implementation (dynamic array) based on defines. [FlavioJS]
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* Fixed horrible handling of skill_abra_db which leads to memory corruption
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* Fixed horrible handling of skill_abra_db which leads to memory corruption
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(depending on the contents of yor abra_db.txt file) [Skotlex]
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(depending on the contents of yor abra_db.txt file) [Skotlex]
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2007/12/22
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2007/12/22
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286
src/common/db.h
286
src/common/db.h
@ -848,4 +848,290 @@ void linkdb_final ( struct linkdb_node** head );
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/////////////////////////////////////////////////////////////////////
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// Vector library based on defines. (dynamic array)
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// uses aMalloc, aRealloc, aFree
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/// Declares a named vector struct.
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///
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/// @param __name Structure name
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/// @param __type Type of data
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#define VECTOR_STRUCT(__name,__type) \
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struct __name { \
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size_t _max_; \
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size_t _len_; \
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__type* _data_; \
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}
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/// Declares a named vector struct variable.
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///
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/// @param __name Structure name
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/// @param __var Variable name
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#define VECTOR_STRUCT_VAR(__name,__var) \
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struct __name __var = {0,0,NULL}
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/// Declares a vector variable with an anonymous struct.
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///
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/// @param __type Type of data
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/// @param __var Variable name
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#define VECTOR_VAR(__type,__var) \
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struct { \
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size_t _max_; \
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size_t _len_; \
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__type* _data_; \
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} __var = {0,0,NULL}
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/// Returns the internal array of values.
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///
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/// @param __vec Vector
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/// @return Array of values
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#define VECTOR_DATA(__vec) \
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( (__vec)._data_ )
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/// Returns the length of the vector.
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///
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/// @param __vec Vector
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/// @return Length
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#define VECTOR_LENGTH(__vec) \
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( (__vec)._len_ )
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/// Returns the capacity of the vector.
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///
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/// @param __vec Vector
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/// @return Capacity
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#define VECTOR_CAPACITY(__vec) \
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( (__vec)._max_ )
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/// Returns the value at the target index.
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/// Assumes the index exists.
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///
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/// @param __vec Vector
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/// @param __idx Index
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/// @return Value
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#define VECTOR_INDEX(__vec,__idx) \
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( VECTOR_DATA(__vec)[__idx] )
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/// Returns the first value of the vector.
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/// Assumes the array is not empty.
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///
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/// @param __vec Vector
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/// @return First value
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#define VECTOR_FIRST(__vec) \
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( VECTOR_INDEX(__vec,0) )
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/// Returns the last value of the vector.
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/// Assumes the array is not empty.
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///
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/// @param __vec Vector
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/// @return Last value
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#define VECTOR_LAST(__vec) \
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( VECTOR_INDEX(__vec,VECTOR_LENGTH(__vec)-1) )
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/// Resizes the vector.
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/// Excess values are discarded, new positions are zeroed.
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///
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/// @param __vec Vector
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/// @param __n Size
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#define VECTOR_RESIZE(__vec,__n) \
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do{ \
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if( (__n) > VECTOR_CAPACITY(__vec) ) \
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{ /* increase size */ \
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if( VECTOR_CAPACITY(__vec) == 0 ) VECTOR_DATA(__vec) = aMalloc((__n)*sizeof(VECTOR_FIRST(__vec))); /* allocate new */ \
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else VECTOR_DATA(__vec) = aRealloc(VECTOR_DATA(__vec),(__n)*sizeof(VECTOR_FIRST(__vec))); /* reallocate */ \
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memset(VECTOR_DATA(__vec)+VECTOR_LENGTH(__vec), 0, (VECTOR_CAPACITY(__vec)-VECTOR_LENGTH(__vec))*sizeof(VECTOR_FIRST(__vec))); /* clear new data */ \
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VECTOR_CAPACITY(__vec) = (__n); /* update capacity */ \
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} \
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else if( (__n) == 0 && VECTOR_CAPACITY(__vec) ) \
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{ /* clear vector */ \
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aFree(VECTOR_DATA(__vec)); VECTOR_DATA(__vec) = NULL; /* free data */ \
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VECTOR_CAPACITY(__vec) = 0; /* clear capacity */ \
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VECTOR_LENGTH(__vec) = 0; /* clear length */ \
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} \
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else if( (__n) < VECTOR_CAPACITY(__vec) ) \
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{ /* reduce size */ \
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VECTOR_DATA(__vec) = aRealloc(VECTOR_DATA(__vec),(__n)*sizeof(VECTOR_FIRST(__vec))); /* reallocate */ \
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VECTOR_CAPACITY(__vec) = (__n); /* update capacity */ \
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if( VECTOR_LENGTH(__vec) > (__n) ) VECTOR_LENGTH(__vec) = (__n); /* update length */ \
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} \
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}while(0)
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/// Ensures that the array has the target number of empty positions.
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/// Increases the capacity in multiples of __step.
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///
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/// @param __vec Vector
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/// @param __n Empty positions
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/// @param __step Increase
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#define VECTOR_ENSURE(__vec,__n,__step) \
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do{ \
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size_t _empty_ = VECTOR_CAPACITY(__vec)-VECTOR_LENGTH(__vec); \
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while( (__n) > _empty_ ) _empty_ += (__step); \
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if( _empty_ != VECTOR_CAPACITY(__vec)-VECTOR_LENGTH(__vec) ) VECTOR_RESIZE(__vec,_empty_+VECTOR_LENGTH(__vec)); \
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}while(0)
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/// Inserts a value in the target index. (using the '=' operator)
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/// Assumes the index is valid and there is enough capacity.
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///
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/// @param __vec Vector
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/// @param __idx Index
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/// @param __val Value
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#define VECTOR_INSERT(__vec,__idx,__val) \
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do{ \
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if( (__idx) < VECTOR_LENGTH(__vec) ) /* move data */ \
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memmove(&VECTOR_INDEX(__vec,(__idx)+1),&VECTOR_INDEX(__vec,__idx),(VECTOR_LENGTH(__vec)-(__idx))*sizeof(VECTOR_FIRST(__vec))); \
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VECTOR_INDEX(__vec,__idx) = (__val); /* set value */ \
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++VECTOR_LENGTH(__vec); /* increase length */ \
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}while(0)
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/// Inserts a value in the target index. (using memcpy)
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/// Assumes the index is valid and there is enough capacity.
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///
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/// @param __vec Vector
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/// @param __idx Index
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/// @param __val Value
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#define VECTOR_INSERTCOPY(__vec,__idx,__val) \
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VECTOR_INSERTARRAY(__vec,__idx,&(__val),1)
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/// Inserts the values of the array in the target index. (using memcpy)
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/// Assumes the index is valid and there is enough capacity.
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///
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/// @param __vec Vector
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/// @param __idx Index
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/// @param __pval Array of values
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/// @param __n Number of values
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#define VECTOR_INSERTARRAY(__vec,__idx,__pval,__n) \
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do{ \
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if( (__idx) < VECTOR_LENGTH(__vec) ) /* move data */ \
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memmove(&VECTOR_INDEX(__vec,(__idx)+(__n)),&VECTOR_INDEX(__vec,__idx),(VECTOR_LENGTH(__vec)-(__idx))*sizeof(VECTOR_FIRST(__vec))); \
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memcpy(&VECTOR_INDEX(__vec,__idx), (__pval), (__n)*sizeof(VECTOR_FIRST(__vec))); /* set values */ \
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VECTOR_LENGTH(__vec) += (__n); /* increase length */ \
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}while(0)
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/// Inserts a value in the end of the vector. (using the '=' operator)
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/// Assumes there is enough capacity.
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///
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/// @param __vec Vector
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/// @param __val Value
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#define VECTOR_PUSH(__vec,__val) \
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do{ \
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VECTOR_INDEX(__vec,VECTOR_LENGTH(__vec)) = (__val); /* set value */ \
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++VECTOR_LENGTH(__vec); /* increase length */ \
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}while(0)
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/// Inserts a value in the end of the vector. (using memcpy)
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/// Assumes there is enough capacity.
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///
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/// @param __vec Vector
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/// @param __val Value
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#define VECTOR_PUSHCOPY(__vec,__val) \
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VECTOR_PUSHARRAY(__vec,&(__val),1)
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/// Inserts the values of the array in the end of the vector. (using memcpy)
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/// Assumes there is enough capacity.
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///
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/// @param __vec Vector
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/// @param __pval Array of values
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/// @param __n Number of values
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#define VECTOR_PUSHARRAY(__vec,__pval,__n) \
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do{ \
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memcpy(&VECTOR_INDEX(__vec,VECTOR_LENGTH(__vec)), (__pval), (__n)*sizeof(VECTOR_FIRST(__vec))); /* set values */ \
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VECTOR_LENGTH(__vec) += (__n); /* increase length */ \
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}while(0)
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/// Removes and returns the last value of the vector.
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/// Assumes the array is not empty.
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///
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/// @param __vec Vector
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/// @return Removed value
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#define VECTOR_POP(__vec) \
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( VECTOR_INDEX(__vec,--VECTOR_LENGTH(__vec)) )
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/// Removes the last N values of the vector and returns the value of the last pop.
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/// Assumes there are enough values.
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///
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/// @param __vec Vector
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/// @param __n Number of pops
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/// @return Last removed value
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#define VECTOR_POPN(__vec,__n) \
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( VECTOR_INDEX(__vec,(VECTOR_LENGTH(__vec)-=(__n))) )
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/// Removes the target index from the vector.
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/// Assumes the index is valid and there are enough values.
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///
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/// @param __vec Vector
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/// @param __idx Index
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#define VECTOR_ERASE(__vec,__idx) \
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VECTOR_ERASEN(__vec,__idx,1)
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/// Removes N values from the target index of the vector.
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/// Assumes the index is valid and there are enough values.
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///
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/// @param __vec Vector
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/// @param __idx Index
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/// @param __n Number of values
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#define VECTOR_ERASEN(__vec,__idx,__n) \
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do{ \
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if( (__idx) < VECTOR_LENGTH(__vec)-(__n) ) /* move data */ \
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memmove(&VECTOR_INDEX(__vec,__idx),&VECTOR_INDEX(__vec,(__idx)+(__n)),(VECTOR_LENGTH(__vec)-((__idx)+(__n)))*sizeof(VECTOR_FIRST(__vec))); \
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VECTOR_LENGTH(__vec) -= (__n); /* decrease length */ \
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}while(0)
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/// Clears the vector, freeing allocated data.
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///
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/// @param __vec Vector
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#define VECTOR_CLEAR(__vec) \
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do{ \
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if( VECTOR_CAPACITY(__vec) ) \
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{ \
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aFree(VECTOR_DATA(__vec)); VECTOR_DATA(__vec) = NULL; /* clear allocated array */ \
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VECTOR_CAPACITY(__vec) = 0; /* clear capacity */ \
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VECTOR_LENGTH(__vec) = 0; /* clear length */ \
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} \
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}while(0)
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#endif /* _DB_H_ */
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#endif /* _DB_H_ */
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