initial list.h commit
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@@ -1,6 +1,6 @@
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CC := gcc
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CFLAGS := -Wall -Werror
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LIBS := -lvector -lfile
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LIBS := -lvector -lfile -llist
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LIBSPATH := -L/usr/lib/odweta/
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INCLUDEDIR := -I/usr/include/odweta/
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PATCH := -Wl,-rpath=/usr/lib/odweta/
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@@ -9,7 +9,7 @@ PATCH := -Wl,-rpath=/usr/lib/odweta/
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default: demo
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demo: demo.c libvector.so libfile.so
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demo: demo.c libvector.so libfile.so liblist.so
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sudo $(CC) $(CFLAGS) -o $@ $< $(PATCH) $(INCLUDEDIR) $(LIBSPATH) $(LIBS)
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libvector.so: src/vector.c
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@@ -20,15 +20,18 @@ libfile.so: src/file.c
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sudo $(CC) -c -fpic $< -o /usr/lib/odweta/file.o
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sudo $(CC) -shared -o /usr/lib/odweta/$@ /usr/lib/odweta/file.o
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liblist.so: src/list.c
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sudo $(CC) -c -fpic $< -o /usr/lib/odweta/list.o
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sudo $(CC) -shared -o /usr/lib/odweta/$@ /usr/lib/odweta/list.o
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install:
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sudo mkdir -p /usr/include/odweta/
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sudo mkdir -p /usr/lib/odweta/
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sudo cp src/vector.c src/file.c include/vector.h include/file.h /usr/include/odweta/
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sudo make libvector.so libfile.so
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sudo cp src/vector.c src/file.c src/list.c include/vector.h include/file.h include/list.h /usr/include/odweta/
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sudo make libvector.so libfile.so liblist.so
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sudo ldconfig # update ldconfig cache
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clean:
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sudo rm -f main /usr/lib/odweta/vector.o /usr/lib/odweta/file.o /usr/lib/odweta/libvector.so /usr/lib/odweta/libfile.so
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sudo rm -f main /usr/lib/odweta/vector.o /usr/lib/odweta/file.o /usr/lib/odweta/libvector.so /usr/lib/odweta/libfile.so /usr/lib/odweta/list.o /usr/lib/odweta/liblist.so
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cleanrepo:
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rm -fr ./demo
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@@ -36,11 +36,19 @@ I got bored with having to use complicated checking and stuff when working with
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#### What works so far:
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+ not yet implemented
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+ Creating a list
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+ Pushing into a list
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+ Printing a list
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+ Cleanup of a list
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#### TODO:
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+ everything
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+ Inserting at a given index
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+ Verify multi-dimensional lists working
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+ Get/set at a given index
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+ Popping
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+ Remove at a given index
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+ Verify vectors working inside of lists
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## Installation
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@@ -1,16 +1,15 @@
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#include <odweta/vector.h>
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#include <odweta/list.h>
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int main(int argc, char **argv) {
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vector_t *v = vectorInit(VECTOR);
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list_t *l = listInit();
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vector_t *floatv = vectorInit(FLOAT);
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listPush(l, FLOAT, &(float){3.14});
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listPush(l, CHAR, &(char){'x'});
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listPush(l, INT, &(int){123});
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vectorPush(floatv, &(float){3.14});
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vectorPush(floatv, &(float){55.5});
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listPrint(l);
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vectorPush(v, floatv);
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vectorPrint(v);
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listCleanup(l);
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return 0;
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}
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@@ -0,0 +1,26 @@
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/*
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* What is this?
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*
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* A list (as I interpret it in this library)
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* is a `vector_t` of other `vector_t`s, where
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* every inner `vector_t` can be of any type ->
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* this means a Python-like list
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*/
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#include <odweta/vector.h>
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typedef long unsigned int size_t;
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typedef struct {
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size_t size; // number of elements that are inside the list
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size_t capacity; // how many elements can be put inside
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vector_t* data; // vector of vectors
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} list_t;
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list_t* listInit(); // returns a new list
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void listPush(list_t* l, dataType_e type, void* element); // appends an element at the end of a list
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void listPrint(list_t* l); // prints a list
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void listCleanup(list_t* l); // freeing pointers
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@@ -51,4 +51,10 @@ vectorToString(vector_t* v); // convert the vector into a regular string
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void*
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vectorGetAt(vector_t* v, int index); // get an element at the given index
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void _printVectorRecursive(vector_t* v, int depth);
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#endif
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+108
@@ -0,0 +1,108 @@
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#include <odweta/list.h>
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#include <odweta/vector.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#define init_error_exit(l) fprintf(stderr, "could not init list\n"); free(l); exit(EXIT_FAILURE)
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list_t*
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listInit() {
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list_t* l = malloc(sizeof(list_t));
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if (!l) {
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init_error_exit(l);
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}
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l->data = (vector_t *)vectorInit(VECTOR);
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if (!l->data) {
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init_error_exit(l);
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}
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l->size = 0;
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l->capacity = 1;
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return l;
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}
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void
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listPush(list_t* l, dataType_e type, void* element) {
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vector_t* newVec;
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switch (type) {
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case INT:
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newVec = vectorInit(INT);
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vectorPush(newVec, element);
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vectorPush((vector_t *)l->data, newVec);
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break;
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case FLOAT:
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newVec = vectorInit(FLOAT);
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vectorPush(newVec, element);
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vectorPush((vector_t *)l->data, newVec);
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break;
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case CHAR:
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newVec = vectorInit(CHAR);
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vectorPush(newVec, element);
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vectorPush((vector_t *)l->data, newVec);
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break;
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case VECTOR:
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// Instead of reallocating memory for vector_t pointers, allocate memory for the vector data
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if (l->size == 0) {
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// Allocate memory for the vector data for the first time
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l->data = malloc(sizeof(vector_t) * l->capacity);
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} else {
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// Reallocate memory for the vector data
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l->data = realloc((vector_t *)l->data, sizeof(vector_t) * l->capacity);
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}
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if (!l->data) {
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perror("failed to allocate memory for vector data\n");
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exit(EXIT_FAILURE);
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}
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// Copy the vector data from the element to the vector
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memcpy((vector_t *)(l->data) + l->size, (vector_t *)element, sizeof(vector_t));
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break;
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default:
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perror("specify a valid vector type\n");
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exit(EXIT_FAILURE);
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}
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l->size += 1;
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if (l->size == l->capacity) {
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l->capacity *= 2;
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}
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}
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void
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listPrint(list_t* l) {
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fprintf(stdout, "[");
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int i;
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for (i = 0; i < l->size; i++) {
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vector_t *ithVec = (vector_t *)vectorGetAt((vector_t *)l->data, i);
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switch (ithVec->type) {
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case INT:
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printf("%d", *((int *)vectorGetAt(ithVec, 0)));
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break;
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case FLOAT:
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printf("%f", *((float *)vectorGetAt(ithVec, 0)));
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break;
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case CHAR:
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printf("'%c'", *((char *)vectorGetAt(ithVec, 0)));
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break;
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case VECTOR:
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_printVectorRecursive((vector_t *)l->data, 0);
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break;
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}
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if (i < l->size - 1) {
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fprintf(stdout, ", ");
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}
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}
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fprintf(stdout, "]\n");
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}
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void
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listCleanup(list_t* l) {
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vectorCleanup((vector_t *)l->data);
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free(l);
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}
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