#ifndef PHILO_HEADER_H # define PHILO_HEADER_H # define _SLEEP_STEP 50 # include # include # include # include # include # include # include # define _SEM_NAME_FORKS "pSemForks" # define _SEM_WRITE_LOCK "write" typedef struct s_philo_data t_philo_data; typedef struct s_all { int number_of_philosophers; time_t time_to_die; time_t time_to_eat; time_t time_to_sleep; int number_of_times_each_philosopher_must_eat; time_t start_time; t_philo_data *data_philo; sem_t *write; int smert; int opt; } t_all; typedef struct s_philo { unsigned worked:1; unsigned can_run_simulation:1; pthread_t thread; int count_eat; time_t time_to_die; int died; int nbr_philo; time_t last_eat; time_t limit; t_all *all_struct; int is_eat; sem_t *eat_sem; char *name; } t_philo; typedef struct s_philo_data { sem_t *sems; t_philo *philors; } t_philo_data; void *ft_calloc(size_t num, size_t size); t_all *structalloc_and_bzero(void); int parse_and_check_values(char **argv, int quantity); int ft_atoi(const char *str); int check_f(char ch); int runner(t_all *all); int return_big(int a, int b); int return_less(int a, int b); time_t ft_get_time(void); void *run_trhead(t_philo *philo); int prepare_resources(t_all *all); int check_all_run(t_all *all); void run_simulation(t_all *all); void run_all_phils(t_all *all); void messages(t_all *all, t_philo *philo, char *str); void cycle(t_philo *philo); void ft_msleep(time_t interval_ms); void my_usleep(long time); void ft_exit(t_all *all); char *ft_itoa(int n); char *ft_strjoin(char const *s1, char const *s2); sem_t *reopen_sem(const char *name, int value); char *sem_set_name(char *str, int i); size_t ft_strlcpy(char *dst, const char *src, size_t size); size_t ft_strlcat(char *dst, const char *src, size_t size); int ft_strlen(char *str); void get_data_for_philo(t_all *all); #endif