--- parser3/src/include/pa_array.h 2001/05/15 15:51:05 1.38 +++ parser3/src/include/pa_array.h 2003/01/23 16:08:00 1.57.2.4 @@ -1,185 +1,181 @@ /** @file - Parser: array class decl. + Parser: Array & Array_iterator classes decls. - Copyright (c) 2001 ArtLebedev Group (http://www.artlebedev.com) - - Author: Alexander Petrosyan (http://design.ru/paf) - - $Id: pa_array.h,v 1.38 2001/05/15 15:51:05 parser Exp $ + Copyright (c) 2001, 2003 ArtLebedev Group (http://www.artlebedev.com) + Author: Alexandr Petrosian (http://paf.design.ru) */ #ifndef PA_ARRAY_H #define PA_ARRAY_H -#include +static const char* IDENT_ARRAY_Y="$Date: 2003/01/23 16:08:00 $"; #include "pa_pool.h" -#include "pa_types.h" -#include "pa_string.h" +//#include "pa_types.h" +#include "pa_exception.h" + +template class Array_iterator; /** - Pooled Array. + Simple Array. - Internal structure: - @verbatim - Array Chunk0 - ====== ======== - head--------------->[ptr] - append_here-------->[ptr] - link_row ........ - . . - . [ptr] - ...........>[link to the next chunk] - @endverbatim */ +template class Array: public PA_Object { -class Array : public Pooled { -public: - - /// Array item type - typedef void Item; + friend class Array_iterator; - /*/// for_each iterator function type, const info - typedef void (*For_each_func_const)(Item *value, const void *info); - */ - - /// for_each iterator function type - typedef void (*For_each_func)(Item *value, void *info); - - /// first_that iterator function type, const info - typedef bool (*First_that_func_const)(Item *value, const void *info); - - /// first_that iterator function type - typedef bool (*First_that_func)(Item *value, void *info); - - enum { - CR_INITIAL_ROWS_DEFAULT=10, ///< default preallocated row count - CR_GROW_COUNT=10 ///< each time the Array chunk_is_full() array expanded() - }; + // allocated size + int fallocated; public: + typedef T element_type; - Array(Pool& apool, int initial_rows=CR_INITIAL_ROWS_DEFAULT); + Array(int initial=3, int delta=1): + fallocated(initial?initial:3), + fdelta(delta), + fused(0) + { + if(fallocated<=0 || fdelta<1) + throw Exception(0, + Exception::undefined_source, + "Array::Array(%d, %d) too small", initial, delta); + + felements=new T[fallocated]; + } + override ~Array() { + T *last=felements+fused; + for(T *current=felements; current(value); } + felements[fused++]=src; - /// dirty hack to allow constant items storage. I long for Array - Array& operator += (const Item *src) { return *this+=const_cast(src); } + return *this; + } /// append other Array portion to this one. starting from offset - Array& append_array(const Array& src, int offset=0); - - /** - quickly gets some item considering... - - these true: - - index increments from 0 to size()-1 - - index>=0 && index=cache_chunk_base - */ - Item *quick_get(int index) const { - // next chunk will be with "index" row - if(!(indexcount)) { - int count=cache_chunk->count; - cache_chunk_base+=count; - cache_chunk=cache_chunk->rows[count].link; + Array& append(const Array& src, int offset=0, int limit=0) { + if(!(offset>=0 && offsetrows[index-cache_chunk_base].item; + // fix limit + { + int m=src.count()-offset; + if(!m || limit<0) + return *this; + if(!limit || limit>m) + limit=m; + } + + int needed=limit-(fallocated-fused); + if(needed>0) + expand(needed); + + memcpy(&felements[fused+=limit], &src.felements[offset], limit*sizeof(T)); + return *this; } - Item *get(int index) const; - int get_int(int index) const { return reinterpret_cast(get(index)); } + /// get index-element + T get(int index) const { + if(!(index>=0 && index - const String *get_string(int index) const { - return const_cast(static_cast(get(index))); + return felements[index]; } - const String *quick_get_string(int index) const { - return const_cast(static_cast(quick_get(index))); + + /// put index-element + void put(int index, T element) { + if(!(index>=0 && index void for_each(void callback(T, I), I info) const { + T *last=felements+fused; + for(T *current=felements; current T *first_that(bool callback(T, I), I info) const { + T *last=felements+fused; + for(T *current=felements; current class Array_iterator { + + const Array& farray; + T *fcurrent; + T *flast; + +public: + + Array_iterator(const Array& aarray) : farray(aarray) { + fcurrent(farray.felements); + flast=farray+farray.count(); + } + + /// there are still elements + bool has_next() { + return fcurrent