* feat: tab results * feat: more colors * style: norm * fix: patch a spacing bug * fix: patch a small issue * fix: patch some leaks * style: norm
112 lines
3.1 KiB
C
112 lines
3.1 KiB
C
/* ************************************************************************** */
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/* */
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/* ::: :::::::: */
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/* libunit_logger.c :+: :+: :+: */
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/* +:+ +:+ +:+ */
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/* By: elagouch <elagouch@student.42lyon.fr> +#+ +:+ +#+ */
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/* +#+#+#+#+#+ +#+ */
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/* Created: 2026/01/25 14:26:54 by elagouch #+# #+# */
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/* Updated: 2026/01/25 17:35:53 by elagouch ### ########.fr */
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/* */
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/* ************************************************************************** */
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#include "libunit.h"
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#include <stdio.h>
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static void print_tabbed(int fd1, int fd2, char *s, size_t expected_len)
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{
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size_t i;
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size_t l;
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l = ft_strlen(s);
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ft_putstr_fd(s, fd1);
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ft_putstr_fd(s, fd2);
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i = 0;
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while (l <= expected_len && i < (expected_len - l))
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{
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ft_putchar_fd(' ', fd1);
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ft_putchar_fd(' ', fd2);
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i++;
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}
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}
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static void print_wtermsig(int ffd, int signal)
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{
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static char *sigs[15];
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char *msg;
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sigs[6] = "SIGABRT";
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sigs[7] = "SIGBUS";
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sigs[8] = "SIGFPE";
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sigs[9] = "SIGKILL";
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sigs[11] = "SIGSEGV";
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sigs[13] = "SIGPIPE";
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sigs[14] = "TIMEOUT";
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ft_putstr_fd("[\x1B[33m", 1);
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ft_putstr_fd("[", ffd);
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if ((signal >= 6 && signal <= 9) || signal == 11 || (signal >= 13
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&& signal <= 14))
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msg = sigs[signal];
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else
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msg = "UNKNOWN";
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ft_putstr_fd(msg, 1);
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ft_putstr_fd(msg, ffd);
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ft_putstr_fd("\x1B[0m]\n", 1);
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ft_putstr_fd("]\n", ffd);
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}
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static void interpret_status_print(const char *fn_name, int ffd,
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char *test_name, size_t max_len)
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{
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ft_putstr_fd("\x1B[94m", 1);
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ft_putstr_fd((char *)fn_name, 1);
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ft_putstr_fd((char *)fn_name, ffd);
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ft_putstr_fd("\x1B[90m : \x1B[0m", 1);
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ft_putstr_fd(" : ", ffd);
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print_tabbed(1, ffd, test_name, max_len);
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ft_putstr_fd("\x1B[90m : \x1B[0m", 1);
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ft_putstr_fd(": ", ffd);
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}
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size_t interpret_status(int ffdst[2], const char *fn_name, char *test_name,
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size_t max_len)
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{
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interpret_status_print(fn_name, ffdst[0], test_name, max_len);
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if (WIFEXITED(ffdst[1]))
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{
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if (WEXITSTATUS(ffdst[1]))
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{
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ft_putstr_fd("[\x1B[31m\x1B[1mKO\x1B[0m]\n", 1);
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ft_putstr_fd("[KO]\n", ffdst[0]);
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}
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else
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{
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ft_putstr_fd("[\x1B[32mOK\x1B[0m]\n", 1);
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ft_putstr_fd("[OK]\n", ffdst[0]);
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return (1);
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}
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}
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else if (WIFSIGNALED(ffdst[1]))
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print_wtermsig(ffdst[0], WTERMSIG(ffdst[1]));
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return (0);
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}
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void print_passed_test(int ffd, size_t ok_tests, t_unit_test *test_list)
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{
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size_t total;
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total = count_tests(test_list);
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if (ok_tests == total)
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ft_putstr_fd("\x1B[32m", 1);
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else
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ft_putstr_fd("\x1B[31m", 1);
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ft_putnbr_fd(ok_tests, 1);
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ft_putnbr_fd(ok_tests, ffd);
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ft_putchar_fd('/', 1);
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ft_putchar_fd('/', ffd);
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ft_putnbr_fd((int)total, 1);
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ft_putnbr_fd((int)total, ffd);
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ft_putstr_fd("\x1B[0m tests passed\n\n", 1);
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ft_putstr_fd(" tests passed\n\n", ffd);
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}
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