#include #include #include #include #include #include #include int main(int argc, char** argv) { const char kDirPath[] = "rewinddir_test_dir"; const char kFileBasename[] = "rewinddir_test_file"; // Create the test directory. if (mkdir(kDirPath, 0755) < 0) { err(1, "mkdir(%s)", kDirPath); } // The test directory should initially be empty. DIR* dir = opendir(kDirPath); if (!dir) { err(1, "opendir(%s)", kDirPath); } int failed = 0; while (1) { errno = 0; struct dirent* d = readdir(dir); if (!d) { if (errno != 0) { err(1, "readdir"); } break; } if (strcmp(d->d_name, ".") != 0 && strcmp(d->d_name, "..") != 0) { warnx("unexpected file %s in new directory", d->d_name); failed = 1; } } // Create a file in the test directory. char* file_path = malloc(strlen(kDirPath) + 1 + strlen(kFileBasename)); if (!file_path) { errx(1, "malloc"); } strcpy(file_path, kDirPath); file_path[strlen(kDirPath)] = '/'; strcpy(file_path + strlen(kDirPath) + 1, kFileBasename); if (mknod(file_path, 0644, 0) < 0) { err(1, "mknod(%s)", file_path); } // After rewinddir(), re-reading the directory stream should yield the new // file. rewinddir(dir); size_t found_file = 0; while (1) { errno = 0; struct dirent* d = readdir(dir); if (!d) { if (errno != 0) { err(1, "readdir"); } break; } if (strcmp(d->d_name, kFileBasename) == 0) { found_file++; } else if (strcmp(d->d_name, ".") != 0 && strcmp(d->d_name, "..") != 0) { warnx("unexpected file %s in new directory", d->d_name); failed = 1; } } if (found_file != 1) { warnx("readdir returned file %s %zu times, wanted 1", kFileBasename, found_file); failed = 1; } return failed; }