First commit
This commit is contained in:
1
.gitignore
vendored
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1
.gitignore
vendored
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@@ -0,0 +1 @@
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build
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111
include/DynArray.h
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111
include/DynArray.h
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@@ -0,0 +1,111 @@
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#ifndef DYN_ARRAY_H_
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#define DYN_ARRAY_H_
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#include <stddef.h>
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#include <string.h>
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// #define SCUFCONT_BOUNDS_CHECK
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#ifdef SCUFCONT_BOUNDS_CHECK
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#include <stdio.h>
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#include <stdlib.h>
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#endif // SCUFCONT_BOUNDS_CHECK
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#define DYN_ARRAY_EXPANDER(macro, type, type_name, func_name) macro(type, DynArray_##type_name, DynArray_##type_name##_##func_name);
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#define DYN_ARRAY_IMPL(type, type_name) \
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DYN_ARRAY_EXPANDER(DYN_ARRAY_ALLOC, type, type_name, alloc) \
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DYN_ARRAY_EXPANDER(DYN_ARRAY_IS_NULL, type, type_name, is_null) \
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DYN_ARRAY_EXPANDER(DYN_ARRAY_PUSH_BACK, type, type_name, push_back) \
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DYN_ARRAY_EXPANDER(DYN_ARRAY_AT, type, type_name, at)
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#define DYN_ARRAY_HEADER(type, type_name) \
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DYN_ARRAY_STRUCT(type, type_name) \
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DYN_ARRAY_SIGS(type, type_name)
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#define DYN_ARRAY_SIGS(type, type_name) \
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DYN_ARRAY_EXPANDER(DYN_ARRAY_ALLOC_SIG, type, type_name, alloc) \
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DYN_ARRAY_EXPANDER(DYN_ARRAY_IS_NULL_SIG, type, type_name, is_null) \
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DYN_ARRAY_EXPANDER(DYN_ARRAY_PUSH_BACK_SIG, type, type_name, push_back) \
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DYN_ARRAY_EXPANDER(DYN_ARRAY_AT_SIG, type, type_name, at)
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// DYN_ARRAY_ALLOC_SIG(type, DynArray_##type_name, DynArray_##type_name##_alloc); \
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// DYN_ARRAY_PUSH_BACK_SIG(type, DynArray_##type_name, DynArray_##type_name##_push_back);
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#define DYN_ARRAY_STRUCT(type, type_name) \
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typedef struct { \
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type* data; \
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size_t len; \
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size_t capacity; \
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} DynArray_##type_name;
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// DYN_ARRAY_STRUCT(int);
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#define DYN_ARRAY_ALLOC_SIG(type, type_name, func_name) bool func_name(type_name* darr)
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#define DYN_ARRAY_ALLOC(type, type_name, func_name) \
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DYN_ARRAY_ALLOC_SIG(type, type_name, func_name) { \
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darr->data = (type*) calloc(1, sizeof(type)); \
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if (darr->data == NULL) { \
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return false; \
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} \
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darr->len = 0; \
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darr->capacity = 1; \
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return true; \
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}
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#define DYN_ARRAY_IS_NULL_SIG(type, type_name, func_name) bool func_name(const type_name* darr)
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#define DYN_ARRAY_IS_NULL(type, type_name, func_name) \
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DYN_ARRAY_IS_NULL_SIG(type, type_name, func_name) { \
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return darr->data == NULL; \
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}
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// DYN_ARRAY_ALLOC(int, DynArray_int, DynArray_int_alloc);
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#define DYN_ARRAY_PUSH_BACK_SIG(type, type_name, func_name) int func_name(type_name* darr, const type* new_elem)
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#define DYN_ARRAY_PUSH_BACK(type, type_name, func_name) \
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DYN_ARRAY_PUSH_BACK_SIG(type, type_name, func_name) { \
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if (darr->len + 1 > darr->capacity) { \
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darr->capacity *= 2; \
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darr->data = (type*) realloc(darr->data, darr->capacity * sizeof(type)); \
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if (darr->data == NULL) { \
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return -1; \
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} \
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} \
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memcpy(darr->data + darr->len, new_elem, sizeof(type)); \
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darr->len++; \
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return 1; \
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}
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#define DYN_ARRAY_AT_SIG(type, type_name, func_name) type* func_name(type_name* darr, const size_t i)
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// DYN_ARRAY_PUSH_BACK(int, DynArray_int, DynArray_int_push_back);
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#ifdef SCUFCONT_BOUNDS_CHECK
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#define DYN_ARRAY_AT(type, type_name, func_name) \
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DYN_ARRAY_AT_SIG(type, type_name, func_name) { \
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if (i < 0 || i > darr->len) { \
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fprintf(stderr, #func_name " out-of-bounds. i: %zu, len: %zu", i, darr->len); \
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exit(1); \
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} \
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\
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return darr->data + i; \
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}
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#else
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#define DYN_ARRAY_AT(type, type_name, func_name) \
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DYN_ARRAY_AT_SIG(type, type_name, func_name) { \
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return darr->data + i; \
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}
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#endif // SCUFCONT_BOUNDS_CHECK
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// DYN_ARRAY_AT(char*, DynArray_charp, DynArray_charp_at)
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#endif // DYN_ARRAY_H_
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51
include/DynString.h
Normal file
51
include/DynString.h
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@@ -0,0 +1,51 @@
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#ifndef DYN_STRING_H_
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#define DYN_STRING_H_
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#include <stdbool.h>
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#include <stddef.h>
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#include "scufcont.h"
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#define DYN_STRING_FMT(dstr) (int) (dstr).len, (dstr).data
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#define DynString_is_null(dstr) ((dstr)->data == NULL)
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#define DynString_c_str(dstr) ((dstr)->data)
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typedef struct {
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char* data;
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size_t len;
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size_t capacity;
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} DynString;
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ScufContResult DynString_alloc(DynString* dstr, const char* str, const size_t len);
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ScufContResult DynString_reserve(DynString* dstr, const size_t new_capacity);
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void DynString_free(DynString* dstr);
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bool DynString_equal(const DynString* s1, const DynString* s2);
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bool DynString_equal_c_str(const DynString* s1, const char* s2);
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bool DynString_equal_next_chars_c_str(
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const DynString* dstr,
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const char* str,
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const size_t str_len,
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const size_t s
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);
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ScufContResult DynString_concat_c_str(
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DynString* dstr,
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const char* str,
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const size_t str_len
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);
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ScufContResult DynString_alloc_concat_c_strs(
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DynString* dstr,
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const char* s1,
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const size_t s1_len,
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const char* s2,
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const size_t s2_len
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);
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ScufContResult DynString_split(
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const DynString* dstr,
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const char* delim,
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DynString** split_arr,
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size_t* arr_len
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);
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void DynString_split_arr_free(DynString** arr, const size_t arr_len);
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#endif // DYN_STRING_H_
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11
include/scufcont.h
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11
include/scufcont.h
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@@ -0,0 +1,11 @@
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#ifndef SCUFCONT_H_
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#define SCUFCONT_H_
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typedef enum {
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SCUFCONT_SUCCESS,
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SCUFCONT_OUT_OF_MEMORY
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} ScufContResult;
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extern const char* SCUFCONT_VERSION;
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#endif // SCUFCONT_H_
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37
meson.build
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37
meson.build
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@@ -0,0 +1,37 @@
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project(
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'scufcont',
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'c',
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version: '0.0.1',
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default_options: {
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'buildtype': 'release'
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}
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)
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c_args = [
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'-std=c99',
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'-Wall',
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'-Wextra',
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'-pedantic'
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]
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cmocka_dep = dependency('cmocka')
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scufcont_include = include_directories('include')
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scufcont_lib = library(
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'scufcont',
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'src/DynString.c',
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'src/scufcont.c',
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include_directories: [
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'include'
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],
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c_args: [
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c_args,
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'-D_SCUFCONT_VERSION="' + meson.project_version() + '"',
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]
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)
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if get_option('SCUFCONT_BUILD_TESTS') == true
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subdir('tests')
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endif
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1
meson_options.txt
Normal file
1
meson_options.txt
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@@ -0,0 +1 @@
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option('SCUFCONT_BUILD_TESTS', type: 'boolean', value: false)
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198
src/DynString.c
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198
src/DynString.c
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@@ -0,0 +1,198 @@
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#include <errno.h>
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#include <stdbool.h>
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#include <stdlib.h>
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#include <string.h>
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#include "scufcont.h"
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#include "DynString.h"
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ScufContResult DynString_alloc(DynString* dstr, const char* str, const size_t len) {
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dstr->data = (char*) malloc(sizeof(char) * (len + 1));
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dstr->len = len;
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dstr->capacity = len + 1;
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if (dstr->data == NULL) {
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return SCUFCONT_OUT_OF_MEMORY;
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}
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dstr->data = memcpy(dstr->data, str, len);
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dstr->data[len] = '\0';
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return SCUFCONT_SUCCESS;
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}
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ScufContResult DynString_reserve(DynString* dstr, const size_t new_capacity) {
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if (dstr->capacity < new_capacity) {
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errno = 0;
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dstr->data = (char*) realloc(dstr->data, sizeof(char) * new_capacity);
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if (errno != 0) {
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return SCUFCONT_OUT_OF_MEMORY;
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}
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dstr->capacity = new_capacity;
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}
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return SCUFCONT_SUCCESS;
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}
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void DynString_free(DynString* dstr) {
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if (dstr->data != NULL) {
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free(dstr->data);
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dstr->data = NULL;
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}
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dstr->len = 0;
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dstr->capacity = 0;
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}
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bool DynString_equal(const DynString* s1, const DynString* s2) {
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if (s1->data == NULL || s2->data == NULL) {
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return false;
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}
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if (s1->len != s2->len) {
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return false;
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}
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for (size_t i = 0; i < s1->len; i++) {
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if (s1->data[i] != s2->data[i]) {
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return false;
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}
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}
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return true;
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}
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bool DynString_equal_c_str(const DynString* s1, const char* s2) {
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if (s1->data == NULL || s2 == NULL) {
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return false;
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}
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if (s1->len != strlen(s2)) {
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return false;
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}
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for (size_t i = 0; i < s1->len; i++) {
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if (s1->data[i] != s2[i]) {
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return false;
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}
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}
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return true;
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}
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bool DynString_equal_next_chars_c_str(
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const DynString* dstr,
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const char* str,
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const size_t str_len,
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size_t s
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) {
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if (dstr->len < s || dstr->len < s + str_len) {
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return false;
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}
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const size_t e = s + str_len;
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for (size_t i = 0; s < e; s++, i++) {
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if (dstr->data[s] != str[i]) {
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return false;
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}
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}
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return true;
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}
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ScufContResult DynString_concat_c_str(
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DynString* dstr,
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const char* str,
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const size_t str_len
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) {
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const size_t new_len = dstr->len + str_len;
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if (new_len > dstr->capacity) {
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ScufContResult res = DynString_reserve(dstr, new_len + 1);
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if (res != SCUFCONT_SUCCESS) {
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return res;
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}
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}
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strncpy(dstr->data + dstr->len, str, str_len);
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dstr->data[new_len] = '\0';
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dstr->len = new_len;
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return SCUFCONT_SUCCESS;
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}
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ScufContResult DynString_alloc_concat_c_strs(
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DynString* dstr,
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const char* s1,
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const size_t s1_len,
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const char* s2,
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const size_t s2_len
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) {
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ScufContResult res = DynString_alloc(dstr, s1, s1_len);
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if (res != SCUFCONT_SUCCESS) {
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return res;
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}
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res = DynString_concat_c_str(dstr, s2, s2_len);
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if (res != SCUFCONT_SUCCESS) {
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return res;
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}
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return SCUFCONT_SUCCESS;
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}
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ScufContResult DynString_split(
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const DynString* dstr,
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const char* delim,
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DynString** split_arr,
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size_t* arr_len
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) {
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ScufContResult ret = SCUFCONT_SUCCESS;
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*arr_len = 0;
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DynString elem;
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ScufContResult res = DynString_alloc(&elem, "", 0);
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if (res != SCUFCONT_SUCCESS) {
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return res;
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}
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const size_t delim_len = strlen(delim);
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for (size_t i = 0; i < dstr->len; i++) {
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if (DynString_equal_next_chars_c_str(dstr, delim, delim_len, i)) {
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*arr_len += 1;
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*split_arr = realloc(*split_arr, sizeof(DynString) * (*arr_len));
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if (split_arr == NULL) {
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ret = SCUFCONT_OUT_OF_MEMORY;
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break;
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}
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(*split_arr)[(*arr_len) - 1] = elem;
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res = DynString_alloc(&elem, "", 0);
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if (res != SCUFCONT_SUCCESS) {
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ret = res;
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break;
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}
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i += delim_len - 1;
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} else {
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DynString_concat_c_str(&elem, dstr->data + i, 1);
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}
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}
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||||
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if (ret == SCUFCONT_SUCCESS) {
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||||
*split_arr = realloc(*split_arr, sizeof(DynString) * (*arr_len + 1));
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if (split_arr != NULL) {
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(*split_arr)[*arr_len] = elem;
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*arr_len += 1;
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||||
return ret;
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||||
}
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||||
ret = SCUFCONT_OUT_OF_MEMORY;
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||||
}
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||||
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||||
for (size_t i = 0; i < *arr_len; i++) {
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DynString_free((*split_arr) + i);
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||||
}
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||||
free(*split_arr);
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||||
*split_arr = NULL;
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||||
DynString_free(&elem);
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||||
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||||
return ret;
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||||
}
|
||||
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||||
void DynString_split_arr_free(DynString** arr, const size_t arr_len) {
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for (size_t i = 0; i < arr_len; i++) {
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DynString_free((*arr) + i);
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||||
}
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||||
free(*arr);
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||||
*arr = NULL;
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||||
}
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||||
3
src/scufcont.c
Normal file
3
src/scufcont.c
Normal file
@@ -0,0 +1,3 @@
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#include "scufcont.h"
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||||
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||||
const char* SCUFCONT_VERSION = _SCUFCONT_VERSION;
|
||||
167
tests/cmocka/main.c
Normal file
167
tests/cmocka/main.c
Normal file
@@ -0,0 +1,167 @@
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||||
#include <string.h>
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||||
#include <stdlib.h>
|
||||
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||||
#include <cmocka.h>
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||||
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||||
#include "scufcont.h"
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#include "DynString.h"
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||||
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||||
void test_DynString_alloc(void** state) {
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||||
(void) state;
|
||||
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||||
const char* c_str = "Hello";
|
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const size_t c_str_len = strlen(c_str);
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||||
DynString dstr;
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assert_true(DynString_alloc(&dstr, c_str, c_str_len) == SCUFCONT_SUCCESS);
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||||
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||||
assert_memory_equal(dstr.data, c_str, c_str_len + 1);
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assert_true(dstr.len == c_str_len);
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assert_true(dstr.capacity == c_str_len + 1);
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||||
|
||||
free(dstr.data);
|
||||
}
|
||||
|
||||
void test_DynString_free(void** state) {
|
||||
(void) state;
|
||||
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||||
DynString dstr;
|
||||
assert_true(DynString_alloc(&dstr, "Hello", strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
|
||||
DynString_free(&dstr);
|
||||
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||||
assert_null(dstr.data);
|
||||
assert_true(dstr.len == 0);
|
||||
assert_true(dstr.capacity == 0);
|
||||
}
|
||||
|
||||
void test_DynString_equal(void** state) {
|
||||
(void) state;
|
||||
|
||||
DynString s1;
|
||||
assert_true(DynString_alloc(&s1, "Hello", strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
DynString s2;
|
||||
assert_true(DynString_alloc(&s2, "Hello", strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
assert_true(DynString_equal(&s1, &s2));
|
||||
DynString_free(&s1);
|
||||
DynString_free(&s2);
|
||||
|
||||
assert_true(DynString_alloc(&s1, "Hello", strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
assert_true(DynString_alloc(&s2, "Hell0", strlen("Hell0")) == SCUFCONT_SUCCESS);
|
||||
assert_false(DynString_equal(&s1, &s2));
|
||||
DynString_free(&s1);
|
||||
DynString_free(&s2);
|
||||
|
||||
assert_true(DynString_alloc(&s1, "Hello World", strlen("Hello World")) == SCUFCONT_SUCCESS);
|
||||
assert_true(DynString_alloc(&s2, "Hello", strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
assert_false(DynString_equal(&s1, &s2));
|
||||
DynString_free(&s1);
|
||||
DynString_free(&s2);
|
||||
}
|
||||
|
||||
void test_DynString_equal_c_str(void** state) {
|
||||
(void) state;
|
||||
|
||||
DynString s1;
|
||||
assert_true(DynString_alloc(&s1,"Hello", strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
char* s2 = "Hello";
|
||||
assert_true(DynString_equal_c_str(&s1, s2));
|
||||
DynString_free(&s1);
|
||||
|
||||
assert_true(DynString_alloc(&s1, "Hello", strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
s2 = "Hell0";
|
||||
assert_false(DynString_equal_c_str(&s1, s2));
|
||||
DynString_free(&s1);
|
||||
|
||||
assert_true(DynString_alloc(&s1, "Hello World", strlen("Hello World")) == SCUFCONT_SUCCESS);
|
||||
s2 = "Hello";
|
||||
assert_false(DynString_equal_c_str(&s1, s2));
|
||||
DynString_free(&s1);
|
||||
}
|
||||
|
||||
void test_DynString_equal_next_chars_c_str(void** state) {
|
||||
(void) state;
|
||||
|
||||
DynString dstr;
|
||||
assert_true(DynString_alloc(&dstr, "Hello", strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
char* str = "ll";
|
||||
size_t str_len = strlen(str);
|
||||
assert_true(DynString_equal_next_chars_c_str(&dstr, str, str_len, 2));
|
||||
assert_false(DynString_equal_next_chars_c_str(&dstr, str, str_len, 1));
|
||||
DynString_free(&dstr);
|
||||
}
|
||||
|
||||
void test_DynString_concat_c_str(void** state) {
|
||||
(void) state;
|
||||
|
||||
const char* dstr_c_str = "Hello";
|
||||
const char* c_str = " World";
|
||||
const size_t combined_length = strlen(dstr_c_str) + strlen(c_str);
|
||||
|
||||
DynString dstr;
|
||||
assert_true(DynString_alloc(&dstr, dstr_c_str, strlen("Hello")) == SCUFCONT_SUCCESS);
|
||||
DynString_concat_c_str(&dstr, c_str, strlen(c_str));
|
||||
|
||||
assert_memory_equal(dstr.data, (void*) "Hello World\0", strlen("Hello World") + 1);
|
||||
assert_true(dstr.len == combined_length);
|
||||
assert_true(dstr.capacity == combined_length + 1);
|
||||
|
||||
DynString_free(&dstr);
|
||||
}
|
||||
|
||||
void test_DynString_c_str(void** state) {
|
||||
(void) state;
|
||||
|
||||
const char* c_str = "Hello";
|
||||
DynString dstr;
|
||||
assert_true(DynString_alloc(&dstr, c_str, strlen(c_str)) == SCUFCONT_SUCCESS);
|
||||
|
||||
assert_string_equal(c_str, DynString_c_str(&dstr));
|
||||
|
||||
DynString_concat_c_str(&dstr, " World", strlen(" World"));
|
||||
|
||||
assert_string_equal("Hello World", DynString_c_str(&dstr));
|
||||
}
|
||||
|
||||
void test_DynString_split(void** state) {
|
||||
(void) state;
|
||||
|
||||
DynString dstr;
|
||||
assert_true(DynString_alloc(&dstr, "Hello World", strlen("Hello World")) == SCUFCONT_SUCCESS);
|
||||
size_t arr_len = 0;
|
||||
DynString* arr = NULL;
|
||||
ScufContResult res = DynString_split(&dstr, " ", &arr, &arr_len);
|
||||
assert_true(res == SCUFCONT_SUCCESS);
|
||||
assert_true(arr_len == 2);
|
||||
assert_string_equal(DynString_c_str(arr), "Hello");
|
||||
assert_string_equal(DynString_c_str(arr + 1), "World");
|
||||
DynString_free(&dstr);
|
||||
DynString_split_arr_free(&arr, arr_len);
|
||||
assert_true(arr == NULL);
|
||||
|
||||
assert_true(DynString_alloc(&dstr, " Hello World", strlen(" Hello World")) == SCUFCONT_SUCCESS);
|
||||
arr_len = 0;
|
||||
res = DynString_split(&dstr, " ", &arr, &arr_len);
|
||||
assert_true(arr_len == 3);
|
||||
assert_string_equal(DynString_c_str(arr), "");
|
||||
assert_string_equal(DynString_c_str(arr + 1), "Hello");
|
||||
assert_string_equal(DynString_c_str(arr + 2), "World");
|
||||
DynString_free(&dstr);
|
||||
DynString_split_arr_free(&arr, arr_len);
|
||||
assert_true(arr == NULL);
|
||||
}
|
||||
|
||||
int main(void) {
|
||||
const struct CMUnitTest tests[] = {
|
||||
cmocka_unit_test(test_DynString_alloc),
|
||||
cmocka_unit_test(test_DynString_free),
|
||||
cmocka_unit_test(test_DynString_equal),
|
||||
cmocka_unit_test(test_DynString_equal_c_str),
|
||||
cmocka_unit_test(test_DynString_equal_next_chars_c_str),
|
||||
cmocka_unit_test(test_DynString_concat_c_str),
|
||||
cmocka_unit_test(test_DynString_c_str),
|
||||
cmocka_unit_test(test_DynString_split),
|
||||
};
|
||||
|
||||
return cmocka_run_group_tests(tests, NULL, NULL);
|
||||
}
|
||||
|
||||
18
tests/cmocka/meson.build
Normal file
18
tests/cmocka/meson.build
Normal file
@@ -0,0 +1,18 @@
|
||||
cmocka_tests = executable(
|
||||
'cmocka_tests',
|
||||
'main.c',
|
||||
include_directories: [
|
||||
scufcont_include
|
||||
],
|
||||
c_args: [
|
||||
c_args,
|
||||
'-ggdb',
|
||||
'-O0'
|
||||
],
|
||||
dependencies: [
|
||||
cmocka_dep
|
||||
],
|
||||
link_with: [ scufcont_lib ]
|
||||
)
|
||||
|
||||
test('cmocka', cmocka_tests)
|
||||
1
tests/meson.build
Normal file
1
tests/meson.build
Normal file
@@ -0,0 +1 @@
|
||||
subdir('cmocka')
|
||||
Reference in New Issue
Block a user