struct message * processes = NULL;
+/**
+ * Message queue variables
+ */
+key_t qkey;
+int qid_input;
+
+int qid_output1;
+int qid_output2;
+
+struct queue_message {
+ int signo;
+};
+
/**
* Handler for signals.
*/
{
fprintf(stderr, "[%s] Received %s!\n", "process1", strsignal(signo));
if (signo == SIGUSR1) {
+ fprintf(stderr, "[%s] > Notified!\n", "process3");
}
else if (signo == SIGTERM) {
int i = 0;
+ struct queue_message msg;
+ msg.signo = signo;
+
fprintf(stderr, "[%s] > Releasing resources\n", "process1");
close(write_pipe);
unlink(write_pipe);
buffer = NULL;
}
for (; i < 3; i++) {
- fprintf(stderr, "[%s] Process %d, PID: %d\n", "process3", i, processes->pids[i]);
+ pid_t pid = processes->pids[i];
+ fprintf(stderr, "[%s] Process %d, PID: %d\n", "process3", i, pid);
+ // Bleh
+ if (i != 0) {
+ msgsnd(pid, &msg, sizeof(msg));
+ kill(pid, SIGUSR1);
+ }
}
exit(0);
}
processes = (struct message *)shmat(shmid, NULL, 0);
processes->pids[0] = getpid();
+ fprintf(stderr, "[%s] Shared pid: %d\n", "process1", getpid());
+
+ sleep(1);
+ /**
+ * Register message queue to communicate with other processes
+ */
+ qkey = getpid();
+ qid_input = msgget(qkey, IPC_CREAT | 0666);
+
+ qid_output1 = msgget(processes->pids[1], IPC_CREAT | 0666);
+ qid_output2 = msgget(processes->pids[2], IPC_CREAT | 0666);
+
mkfifo(write_pipe, 0666);
file_descriptor = open(write_pipe, O_WRONLY);
struct message * processes = NULL;
+/**
+ * Message queue variables
+ */
+key_t qkey;
+int qid_input;
+
+int qid_output1;
+int qid_output2;
+
+struct queue_message {
+ int signo;
+};
/**
* Handler for signals.
{
fprintf(stderr, "[%s] Received %s!\n", "process2", strsignal(signo));
if (signo == SIGUSR1) {
+ fprintf(stderr, "[%s] > Notified!\n", "process2");
}
else if (signo == SIGTERM) {
int i = 0;
+ struct queue_message msg;
+ msg.signo = signo;
+
fprintf(stderr, "[%s] > Releasing resources\n", "process2");
close(read_descriptor);
close(write_descriptor);
unlink(write_descriptor);
for (; i < 3; i++) {
- fprintf(stderr, "[%s] Process %d, PID: %d\n", "process3", i, processes->pids[i]);
+ pid_t pid = processes->pids[i];
+ fprintf(stderr, "[%s] Process %d, PID: %d\n", "process2", i, pid);
+ // Bleh
+ if (i != 1) {
+ msgsnd(pid, &msg, sizeof(msg));
+ kill(pid, SIGUSR1);
+ }
}
exit(0);
}
processes = (struct message *)shmat(shmid, NULL, 0);
processes->pids[1] = getpid();
+ fprintf(stderr, "[%s] Shared pid: %d\n", "process2", getpid());
+
+ sleep(1);
+ /**
+ * Register message queue to communicate with other processes
+ */
+ qkey = getpid();
+ qid_input = msgget(qkey, IPC_CREAT | 0666);
+
+ qid_output1 = msgget(processes->pids[1], IPC_CREAT | 0666);
+ qid_output2 = msgget(processes->pids[2], IPC_CREAT | 0666);
+
/* Reading from process1 */
read_descriptor = open(read_pipe, O_RDONLY);
struct message * processes = NULL;
+/**
+ * Message queue variables
+ */
+key_t qkey;
+int qid_input;
+
+int qid_output1;
+int qid_output2;
+
+struct queue_message {
+ int signo;
+};
/**
* Handler for signals.
{
fprintf(stderr, "[%s] Received %s!\n", "process3", strsignal(signo));
if (signo == SIGUSR1) {
+ fprintf(stderr, "[%s] > Notified!\n", "process3");
}
else if (signo == SIGTERM) {
int i = 0;
+ struct queue_message msg;
+ msg.signo = signo;
+
fprintf(stderr, "[%s] > Releasing resources\n", "process3");
close(read_descriptor);
for (; i < 3; i++) {
- fprintf(stderr, "[%s] Process %d, PID: %d\n", "process3", i, processes->pids[i]);
+ pid_t pid = processes->pids[i];
+ fprintf(stderr, "[%s] Process %d, PID: %d\n", "process3", i, pid);
+ // Bleh
+ if (i != 2) {
+ msgsnd(pid, &msg, sizeof(msg));
+ kill(pid, SIGUSR1);
+ }
}
exit(0);
}
processes = (struct message *)shmat(shmid, NULL, 0);
processes->pids[2] = getpid();
+ fprintf(stderr, "[%s] Shared pid: %d\n", "process3", getpid());
+
+ sleep(1);
+ /**
+ * Register message queue to communicate with other processes
+ */
+ qkey = getpid();
+ qid_input = msgget(qkey, IPC_CREAT | 0666);
+
+ qid_output1 = msgget(processes->pids[1], IPC_CREAT | 0666);
+ qid_output2 = msgget(processes->pids[2], IPC_CREAT | 0666);
+
/* Reading from process2 */
read_descriptor = open(read_pipe, O_RDONLY);