272 lines
5.8 KiB
C
272 lines
5.8 KiB
C
/* SPDX-License-Identifier: GPL-2.0-only */
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#include <string.h>
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#include <stdlib.h>
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#include <stdint.h>
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#include <stddef.h>
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#include <tests/test.h>
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#include <stdio.h>
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/*
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* Important note: In every particular test, don't use any string-related
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* functions other than function under test. We are linking against
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* src/lib/string.c not the standard library. This is important for proper test
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* isolation.
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*/
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struct string_pairs_t {
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char *dst;
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char *src;
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} string_pairs[] = {
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{"Hello ", "world!"},
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{"He\0llo ", "world"},
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{"", "world!"},
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{"", ""},
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};
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const char *strings[] = {
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"coreboot",
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"is\0very",
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"nice\n"
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};
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/* Used to test atol */
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struct str_with_l_val_t {
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char *str;
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long value;
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} str_with_l_val[] = {
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{"42", 42},
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{"four42", 0},
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{"42five5", 42},
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{"4\02", 4},
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{"+42", 42},
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{"-42", -42},
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{"\t\n\r\f\v-42", -42},
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};
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/* Used to test skip_atoi */
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struct str_with_u_val_t {
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char *str;
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uint32_t value;
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uint32_t offset;
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} str_with_u_val[] = {
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{"42aa", 42, 2},
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{"a", 0, 0},
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{"0", 0, 1},
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{"4a2", 4, 1},
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};
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static void test_strdup(void **state)
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{
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char str[] = "Hello coreboot\n";
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char *duplicate = strdup(str);
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/* There is a more suitable Cmocka's function 'assert_string_equal()', but it
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is using strcmp() internally. */
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assert_int_equal(0, memcmp(str, duplicate, __builtin_strlen(str)));
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free(duplicate);
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}
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static void test_strconcat(void **state)
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{
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int i;
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size_t str_len, str2_len, res_len;
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char *result;
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for (i = 0; i < ARRAY_SIZE(string_pairs); i++) {
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str_len = __builtin_strlen(string_pairs[i].dst);
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str2_len = __builtin_strlen(string_pairs[i].src);
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result = strconcat(string_pairs[i].dst, string_pairs[i].src);
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res_len = __builtin_strlen(result);
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assert_int_equal(res_len, str_len + str2_len);
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assert_int_equal(0, memcmp(string_pairs[i].dst, result, str_len));
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assert_int_equal(0, memcmp(string_pairs[i].src, result + str_len, str2_len));
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free(result);
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}
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}
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static void test_strnlen(void **state)
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{
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int i, n = 5;
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size_t str_len, limited_len;
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for (i = 0; i < ARRAY_SIZE(strings); i++) {
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str_len = __builtin_strlen(strings[i]);
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limited_len = MIN(n, str_len);
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assert_int_equal(limited_len, strnlen(strings[i], n));
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}
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}
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static void test_strlen(void **state)
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{
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int i;
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for (i = 0; i < ARRAY_SIZE(strings); i++)
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assert_int_equal(__builtin_strlen(strings[i]), strlen(strings[i]));
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}
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static void test_strchr(void **state)
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{
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char str[] = "Abracadabra!\n";
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assert_ptr_equal(str, strchr(str, 'A'));
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assert_ptr_equal(str + 3, strchr(str, 'a'));
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assert_ptr_equal(str + 12, strchr(str, '\n'));
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assert_null(strchr(str, 'z'));
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}
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static void test_strrchr(void **state)
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{
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char str[] = "Abracadabra!\n";
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assert_ptr_equal(str, strrchr(str, 'A'));
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assert_ptr_equal(str + 9, strrchr(str, 'r'));
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assert_ptr_equal(str + 12, strrchr(str, '\n'));
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assert_null(strrchr(str, 'z'));
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}
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static void test_strncpy(void **state)
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{
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int i;
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int n1 = 2, n2 = 8;
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char src[] = "Hello";
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char dst[sizeof(src) + 5];
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size_t src_len = __builtin_strlen(src);
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size_t dst_len = sizeof(dst);
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/* n1 case */
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/* Needed for ensuring that characters behind the limit
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are not overwritten */
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memset(dst, 'x', dst_len);
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strncpy(dst, src, n1);
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assert_int_equal(0, memcmp(dst, src, n1));
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for (i = n1; i < dst_len; i++)
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assert_true(dst[i] == 'x');
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/* n2 case: */
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memset(dst, 'x', dst_len);
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strncpy(dst, src, n2);
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assert_int_equal(0, memcmp(dst, src, src_len));
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for (i = src_len; i < n2; i++)
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assert_true(dst[i] == '\0');
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for (i = n2; i < dst_len; i++)
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assert_true(dst[i] == 'x');
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}
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static void test_strcpy(void **state)
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{
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char src[] = "Hello coreboot\n";
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char dst[sizeof(src)];
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/* Make sure that strcpy() sets '\0' by initializing a whole
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dst array to fixed, non-'\0' value */
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memset(dst, 'x', sizeof(dst));
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strcpy(dst, src);
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assert_int_equal(0, memcmp(dst, src, __builtin_strlen(src) + 1));
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}
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static void test_strcmp(void **state)
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{
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char str[] = "Banana";
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char str2[] = "Banana";
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char str3[] = "Bananas";
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assert_true(strcmp(str, str3) < 0);
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assert_int_equal(0, strcmp(str, str2));
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assert_true(strcmp(str3, str2) > 0);
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}
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static void test_strncmp(void **state)
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{
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char str[] = "Banana";
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char str2[] = "Bananas";
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size_t str2_len = __builtin_strlen(str2);
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assert_true(strncmp(str, str2, str2_len) < 0);
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assert_int_equal(0, strncmp(str, str2, str2_len - 1));
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}
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static void test_skip_atoi(void **state)
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{
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int i;
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char *ptr, *copy;
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for (i = 0; i < ARRAY_SIZE(str_with_u_val); i++) {
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ptr = str_with_u_val[i].str;
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copy = ptr;
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assert_true(str_with_u_val[i].value == skip_atoi(&ptr));
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assert_int_equal(str_with_u_val[i].offset, ptr - copy);
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}
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}
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static void test_strspn(void **state)
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{
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char str[] = "4213401234";
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char str2[] = "01234";
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char str3[] = "1234";
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assert_int_equal(5, strspn(str, str3));
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assert_int_equal(0, strspn(str2, str3));
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}
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static void test_strcspn(void **state)
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{
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char str[] = "12340000";
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char str2[] = "00001234";
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char str3[] = "1234";
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assert_int_equal(0, strcspn(str, str3));
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assert_int_equal(4, strcspn(str2, str3));
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}
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/* Please bear in mind that `atol()` uses `strspn()` internally, so the result
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of `test_atol` is dependent on the result of `test_strspn`. */
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static void test_atol(void **state)
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{
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int i;
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for (i = 0; i < ARRAY_SIZE(str_with_l_val); i++)
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assert_int_equal(str_with_l_val[i].value, atol(str_with_l_val[i].str));
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}
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int main(void)
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{
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const struct CMUnitTest tests[] = {
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cmocka_unit_test(test_strdup),
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cmocka_unit_test(test_strconcat),
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cmocka_unit_test(test_strnlen),
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cmocka_unit_test(test_strlen),
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cmocka_unit_test(test_strchr),
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cmocka_unit_test(test_strrchr),
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cmocka_unit_test(test_strncpy),
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cmocka_unit_test(test_strcpy),
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cmocka_unit_test(test_strcmp),
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cmocka_unit_test(test_strncmp),
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cmocka_unit_test(test_skip_atoi),
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cmocka_unit_test(test_strspn),
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cmocka_unit_test(test_strcspn),
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cmocka_unit_test(test_atol),
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};
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return cb_run_group_tests(tests, NULL, NULL);
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}
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