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https://git.code.sf.net/p/quake/quakeforge
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020ada9fb1
clang doesn't like the same variable name being used in nested expression statements, so give the "safety" variables in reused macros semi-meaningful (based on macro name) tails to keep them separate.
374 lines
13 KiB
C
374 lines
13 KiB
C
/*
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darray.h
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Dynamic arrays
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Copyright (C) 2020 Bill Currie <bill@taniwha.org>
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Author: Bill Currie <bill@taniwha.org>
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Date: 2020/02/17
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to:
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Free Software Foundation, Inc.
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59 Temple Place - Suite 330
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Boston, MA 02111-1307, USA
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*/
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#ifndef __QF_darray_h
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#define __QF_darray_h
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#include <stdlib.h>
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#include "QF/sys.h"
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/** \defgroup darray Dynamic Arrays
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\ingroup utils
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Dynamic array container object
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*/
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///@{
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/** The structure defs for a dynamic array with elements of the given type.
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This is just the defs of a struct delcaration: it is useless on its own.
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The intended usage is something like:
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typedef struct dynamic_array_s DARRAY_TYPE(int) dynamic_array_t;
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This allows full flexibility in just how the actual type is used.
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The \a size field is the number of elements currently in the array, and
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the \a maxSize field is the number of elements the array can hold without
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being resized.
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The \a grow field specifies the number of elements by which \a maxSize is
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to grow when the array needs to be resized. Setting this to 0 prevents
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resizing and any attempt to do so is a fatal error.
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\param ele_type The type to use for the element array, which is accessed
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by the \a a field.
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\hideinitializer
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*/
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#define DARRAY_TYPE(ele_type) \
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{ \
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size_t size; \
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size_t maxSize; \
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size_t grow; \
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ele_type *a; \
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}
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#define DARRAY_STATIC_INIT(g) { .grow = g }
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/** Allocate a fixed-size array using the given allocator
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The allocated array is initilized to be ungrowable, and with both size
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and maxSize set to the given size.
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\param array_type Expression acceptable by typeof for determining the
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type of the array.
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\param array_size The size of the array.
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\param alloc Allocator compatible with malloc (eg, alloca).
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\hideinitializer
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*/
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#define DARRAY_ALLOCFIXED(array_type, array_size, alloc) \
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({ \
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__auto_type s = (array_size); \
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typeof (array_type) *ar = alloc (sizeof(*ar) \
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+ s * sizeof (*ar->a)); \
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ar->size = ar->maxSize = s; \
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ar->grow = 0; \
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ar->a = (typeof (ar->a)) (ar + 1); \
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ar; \
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})
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/** Allocate a fixed-size array using the given allocator
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The allocated array is initilized to be ungrowable, and with both size
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and maxSize set to the given size.
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\param array_type Expression acceptable by typeof for determining the
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type of the array.
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\param array_size The size of the array.
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\param alloc Allocator taking (obj, size) where obj is allocator
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specific data (eg, a memory pool).
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\param obj Additional data for the allocator.
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\hideinitializer
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*/
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#define DARRAY_ALLOCFIXED_OBJ(array_type, array_size, alloc, obj) \
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({ \
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__auto_type s = (array_size); \
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typeof (array_type) *ar = alloc ((obj), \
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sizeof(*ar) \
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+ s * sizeof (*ar->a)); \
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ar->size = ar->maxSize = s; \
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ar->grow = 0; \
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ar->a = (typeof (ar->a)) (ar + 1); \
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ar; \
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})
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/** Initialized the array.
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The array will be initialized to be empty but with grow set to the
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specifed value.
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\param growSize Number of elements by which the array is to grow when
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required.
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\hideinitializer
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*/
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#define DARRAY_INIT(array, growSize) \
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do { \
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__auto_type ar = (array); \
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ar->size = ar->maxSize = 0; \
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ar->grow = (growSize); \
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ar->a = 0; \
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} while (0)
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/** Clear the array.
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If the array can grow, its backing will be freed and maxSize and a reset,
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otherwise maxSize and a are left untouched.
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\hideinitializer
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*/
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#define DARRAY_CLEAR(array) \
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do { \
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__auto_type ar = (array); \
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ar->size = 0; \
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if (ar->grow) { \
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free (ar->a); \
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ar->maxSize = 0; \
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ar->a = 0; \
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} \
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} while (0)
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/** Set the size of the array.
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If the new size is greater than maxSize, and the array can grow (grow is
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non-zero), then maxSize will be increased to the smallest multiple of grow
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greater than or equal to size (ie, maxSize >= size, maxSize % grow == 0).
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Attempting to increase maxSize on an array that cannot grow is an error:
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it is assumed that the array struct does not own the backing memory.
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\param newSize The new size of the array: newly opened slots are
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uninitialized, but old slots retain their values.
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\hideinitializer
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*/
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#define DARRAY_RESIZE(array, newSize) \
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do { \
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__auto_type ar_r = (array); \
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size_t ns = (newSize); \
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if (__builtin_expect (ns > ar_r->maxSize, 0)) { \
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if (__builtin_expect (!ar_r->grow, 0)) { \
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Sys_Error ("Attempt to grow fixed-size darray: %s:%d", \
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__FILE__, __LINE__); \
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} \
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ar_r->maxSize = ar_r->grow * ((ns + ar_r->grow - 1) / ar_r->grow);\
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ar_r->a = realloc (ar_r->a, ar_r->maxSize * sizeof (*ar_r->a)); \
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if (__builtin_expect (!ar_r->a, 0)) { \
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Sys_Error ("failed to realloc darray: %s:%d", \
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__FILE__, __LINE__); \
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} \
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} \
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ar_r->size = ns; \
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} while (0)
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/** Append a value to the end of the array.
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The array is grown by one and the value written to the newly opened slot.
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If the new array size is greater than maxSize and the array can be grown,
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the array backing will be resized to the next multiple of grow.
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Attempting to grow an array that cannot grow is an error: it is assumed
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that the array struct does not own the backing memory.
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\param value The value to be appended to the array. Must be of a type
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compatible with that used for creating the array struct.
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\return The appended value: can be assigned to another compatible
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value.
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\hideinitializer
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*/
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#define DARRAY_APPEND(array, value) \
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({ \
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__auto_type ar = (array); \
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typeof(ar->a[0]) ob = (value); \
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size_t sz = ar->size; \
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DARRAY_RESIZE (ar, ar->size + 1); \
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ar->a[sz] = ob; \
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})
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/** Open a hole in the array for bulk copying of data.
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The array is grown by the requested size, opening a hole at the specified
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index. Values beyond the index are copied to just after the newly opened
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hole.
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If the new array size is greater than maxSize and the array can be grown,
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the array backing will be resized to the next multiple of grow.
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Attempting to grow an array that cannot grow is an error: it is assumed
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that the array struct does not own the backing memory.
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\param index The index at which the hole will begin.
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\param space The sized of the hole to be opened, in array elements.
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\return The *address* of the newly opened hole: can be passed to
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memcpy and friends.
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memcpy (DARRAY_OPEN_AT(array, index, size), data,
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size * sizeof (*data));
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\hideinitializer
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*/
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#define DARRAY_OPEN_AT(array, index, space) \
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({ \
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__auto_type ar_o = (array); \
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size_t po = (index); \
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size_t sp = (space); \
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if (__builtin_expect (po > ar_o->size, 0)) { \
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Sys_Error ("Attempt to insert elements outside darray: " \
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"%s:%d", __FILE__, __LINE__); \
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} \
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DARRAY_RESIZE (ar_o, ar_o->size + sp); \
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memmove (&ar_o->a[po + sp], &ar_o->a[po], \
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(ar_o->size - po - sp) * sizeof (*ar_o->a)); \
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&ar_o->a[po]; \
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})
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/** Insert a value into the array at the specified index.
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The array is grown by one at the specified index and the value written
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to the newly opened slot. Values beyond the index are copied to just
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after the newly opened slot.
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If the new array size is greater than maxSize and the array can be grown,
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the array backing will be resized to the next multiple of grow.
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Attempting to grow an array that cannot grow is an error: it is assumed
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that the array struct does not own the backing memory.
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Attempting to insert a value beyond one past the end of the array is an
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error (inserting at index = size is valid).
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\param value The value to be inserted into the array. Must be of a type
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compatible with that used for creating the array struct.
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\param index The index at which the value will be inserted
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\return The inserted value: can be assigned to another compatible
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value.
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\hideinitializer
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*/
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#define DARRAY_INSERT_AT(array, value, index) \
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({ \
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__auto_type ar = (array); \
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typeof(ar->a[0]) ob = (value); \
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*DARRAY_OPEN_AT (ar, index, 1) = ob; \
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})
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/** Close a segment of an array.
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The values beyond the segment are copied to the beginning of the segment
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and the array size reduced by the size of the segment. All but the first
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one of the values previously in the segment are lost and gone forever.
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Attempting to close a segment that extends outside the array is an error.
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\param index The index of the beginning of the segment.
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\param count The number of values in the segment.
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\return The single value at the beginning of the segment: can be
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assigned to another compatible value.
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\hideinitializer
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*/
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#define DARRAY_CLOSE_AT(array, index, count) \
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({ \
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__auto_type ar_c = (array); \
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size_t po = (index); \
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size_t co = (count); \
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if (__builtin_expect (po + co > ar_c->size \
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|| po >= ar_c->size, 0)) { \
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Sys_Error ("Attempt to remove elements outside darray: " \
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"%s:%d", __FILE__, __LINE__); \
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} \
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__auto_type ob = ar_c->a[po]; \
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memmove (&ar_c->a[po], &ar_c->a[po + co], \
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(ar_c->size - po - co) * sizeof (ob)); \
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ar_c->size -= co; \
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ob; \
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})
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/** Remove a value from an array at the specified index.
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The values beyond the index are moved down to fill the hole left by the
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single value and the array size reduced by one.
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Attempting to remove a value from beyond the array is an error.
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\param index The index of the value to be removed.
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\return The removed value: can be assigned to another compatible
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value.
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\hideinitializer
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*/
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#define DARRAY_REMOVE_AT(array, index) \
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({ \
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__auto_type ar = (array); \
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DARRAY_CLOSE_AT (ar, index, 1); \
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})
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/** Remove (pop) a value from the end of an array.
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The size of the array size reduced by one.
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Attempting to remove a value from an empty array is an error.
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\param array *Address* of the array to be modified (ie, pointer to the
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array struct instance, not the instance itself: use & for
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static instances of the array struct).
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\return The removed value: can be assigned to another compatible
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value.
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\hideinitializer
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*/
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#define DARRAY_REMOVE(array) \
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({ \
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__auto_type ar = (array); \
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DARRAY_CLOSE_AT (ar, ar->size - 1, 1); \
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})
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///@}
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#endif//__QF_darray_h
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