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vendor/yar.h
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vendor/yar.h
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/* yar - dynamic arrays in C - public domain Nicholas Rixson 2025
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*
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* https://github.com/segcore/yar
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*
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* Licence: see end of file
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Sample usage:
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#define YAR_IMPLEMENTATION
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#include "yar.h"
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int main() {
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// struct { double *items; size_t count; size_t capacity; } numbers = {0};
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yar(double) numbers = {0};
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*yar_append(&numbers) = 3.14159;
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*yar_append(&numbers) = 2.71828;
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*yar_append(&numbers) = 1.61803;
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for(size_t i = 0; i < numbers.count; i++) {
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printf("%f\n", numbers.items[i]);
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}
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yar_free(&numbers);
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}
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*/
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#ifndef YAR_H
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#define YAR_H
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#include <stddef.h> // size_t
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#include <string.h> // strlen
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/*
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* yar(type) - Declare a new basic dynamic array
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*
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* yar_append(array) - Add a new item at the end of the array, and return a pointer to it
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*
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* yar_reserve(array, extra) - Reserve space for `extra` count of items
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*
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* yar_append_many(array, data, num) - Append a copy of existing data
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*
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* yar_append_cstr(array, data) - Append a C string (nul-terminated char array)
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*
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* yar_insert(array, index, num) - Insert items somewhere within the array. Moves items to higher indexes as required. Returns &array[index]
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*
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* yar_remove(array, index, num) - Remove items from somewhere within the array. Moves items to lower indexes as required.
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*
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* yar_reset(array) - Reset the count of elements to 0, to re-use the memory. Does not free the memory.
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*
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* yar_init(array) - Set items, count, and capacity to 0. Can usually be avoided with <declaration> = {0};
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*
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* yar_free(array) - Free items memory, and set the items, count, and capacity to 0.
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*/
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#define yar(type) struct { type *items; size_t count; size_t capacity; }
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#define yar_append(array) ((_yar_append((void**)&(array)->items, &(array)->count, &(array)->capacity, sizeof((array)->items[0])) ? \
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&(array)->items[(array)->count - 1] : NULL))
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#define yar_reserve(array, extra) ((_yar_reserve((void**)&(array)->items, &(array)->count, &(array)->capacity, sizeof((array)->items[0]), (extra)) ? \
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&(array)->items[(array)->count] : NULL))
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#define yar_append_many(array, data, num) ((_yar_append_many((void**)&(array)->items, &(array)->count, &(array)->capacity, sizeof((array)->items[0]), 1 ? (data) : ((array)->items), (num)) ))
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#define yar_append_cstr(array, data) yar_append_many(array, data, strlen(data))
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#define yar_insert(array, index, num) ((_yar_insert((void**)&(array)->items, &(array)->count, &(array)->capacity, sizeof((array)->items[0]), index, num) ))
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#define yar_remove(array, index, num) ((_yar_remove((void**)&(array)->items, &(array)->count, sizeof((array)->items[0]), index, num) ))
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#define yar_reset(array) (((array)->count = 0))
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#define yar_init(array) ((array)->items = NULL, (array)->count = 0, (array)->capacity = 0)
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#define yar_free(array) ((_yar_free((array)->items)), (array)->items = NULL, (array)->count = 0, (array)->capacity = 0)
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#ifndef YARAPI
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#define YARAPI // nothing; overridable if needed.
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#endif
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#ifdef __cplusplus
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extern "C" {
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#endif
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// Implementation functions
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YARAPI void* _yar_append(void** items_pointer, size_t* count, size_t* capacity, size_t item_size);
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YARAPI void* _yar_append_many(void** items_pointer, size_t* count, size_t* capacity, size_t item_size, void* data, size_t extra);
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YARAPI void* _yar_reserve(void** items_pointer, size_t* count, size_t* capacity, size_t item_size, size_t extra);
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YARAPI void* _yar_insert(void** items_pointer, size_t* count, size_t* capacity, size_t item_size, size_t index, size_t extra);
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YARAPI void* _yar_remove(void** items_pointer, size_t* count, size_t item_size, size_t index, size_t remove);
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YARAPI void* _yar_realloc(void* p, size_t new_size);
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YARAPI void _yar_free(void* p);
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#ifdef __cplusplus
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}
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#endif
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#endif // YAR_H
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#if defined(YAR_IMPLEMENTATION)
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#ifndef YAR_MIN_CAP
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#define YAR_MIN_CAP 16
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#endif
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#ifndef YAR_REALLOC
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#define YAR_REALLOC realloc
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#endif
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#ifndef YAR_FREE
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#define YAR_FREE free
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#endif
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#include <string.h> // mem* functions
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YARAPI void* _yar_append(void** items_pointer, size_t* count, size_t* capacity, size_t item_size)
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{
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void* result = _yar_reserve(items_pointer, count, capacity, item_size, 1);
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if (result != NULL) *count += 1;
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return result;
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}
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YARAPI void* _yar_append_many(void** items_pointer, size_t* count, size_t* capacity, size_t item_size, void* data, size_t extra)
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{
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void* result = _yar_reserve(items_pointer, count, capacity, item_size, extra);
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if (result != NULL) {
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memcpy(result, data, item_size * extra);
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*count += extra;
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}
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return result;
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}
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YARAPI void* _yar_reserve(void** items_pointer, size_t* count, size_t* capacity, size_t item_size, size_t extra)
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{
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char* items = *items_pointer;
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size_t newcount = *count + extra;
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if (newcount > *capacity) {
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size_t newcap = (*capacity < YAR_MIN_CAP) ? YAR_MIN_CAP : *capacity * 8 / 5;
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if (newcap < newcount) newcap = newcount;
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void* next = _yar_realloc(items, newcap * item_size);
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if (next == NULL) return NULL;
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items = next;
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*items_pointer = next;
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*capacity = newcap;
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}
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void* result = items + (*count * item_size);
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if (extra && result) memset(result, 0, item_size * extra);
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return result;
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}
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YARAPI void* _yar_insert(void** items_pointer, size_t* count, size_t* capacity, size_t item_size, size_t index, size_t extra)
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{
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void* next = _yar_reserve(items_pointer, count, capacity, item_size, extra);
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if(next == NULL) return NULL;
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char* items = *items_pointer;
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if (index < *count)
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{
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memmove(&items[item_size * (index + extra)], &items[item_size * index], (*count - index) * item_size);
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memset(&items[item_size * index], 0, extra * item_size);
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}
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*count += extra;
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return items + index * item_size;
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}
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YARAPI void* _yar_remove(void** items_pointer, size_t* count, size_t item_size, size_t index, size_t remove)
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{
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if(remove >= *count) {
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*count = 0;
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return *items_pointer;
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}
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if (index >= *count) {
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return *items_pointer;
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}
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char* items = *items_pointer;
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memmove(&items[item_size * index], &items[item_size * (index + remove)], item_size * (*count - (index + remove)));
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*count -= remove;
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return items + item_size * index;
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}
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YARAPI void* _yar_realloc(void* p, size_t new_size)
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{
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// Declaration, so we can call it if the definition is overridden
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extern void* YAR_REALLOC(void *ptr, size_t size);
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return YAR_REALLOC(p, new_size);
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}
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YARAPI void _yar_free(void* p)
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{
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extern void YAR_FREE(void *ptr);
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YAR_FREE(p);
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}
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#endif // YAR_IMPLEMENTATION
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/*
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------------------------------------------------------------------------------
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This software is available under 2 licenses -- choose whichever you prefer.
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------------------------------------------------------------------------------
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ALTERNATIVE A - MIT License
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Copyright (c) 2025 Nicholas Rixson
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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------------------------------------------------------------------------------
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ALTERNATIVE B - Public Domain (www.unlicense.org)
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This is free and unencumbered software released into the public domain.
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Anyone is free to copy, modify, publish, use, compile, sell, or distribute this
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software, either in source code form or as a compiled binary, for any purpose,
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commercial or non-commercial, and by any means.
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In jurisdictions that recognize copyright laws, the author or authors of this
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software dedicate any and all copyright interest in the software to the public
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domain. We make this dedication for the benefit of the public at large and to
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the detriment of our heirs and successors. We intend this dedication to be an
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overt act of relinquishment in perpetuity of all present and future rights to
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this software under copyright law.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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------------------------------------------------------------------------------
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*/
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