mirror of
https://github.com/fumiama/simple-dict.git
synced 2026-06-27 07:20:25 +08:00
优化代码结构
This commit is contained in:
78
server.c
78
server.c
@@ -25,11 +25,9 @@
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#ifdef LISTEN_ON_IPV6
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#ifdef LISTEN_ON_IPV6
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static socklen_t struct_len = sizeof(struct sockaddr_in6);
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static socklen_t struct_len = sizeof(struct sockaddr_in6);
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static struct sockaddr_in6 server_addr;
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static struct sockaddr_in6 server_addr;
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static struct sockaddr_in6 client_addr;
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#else
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#else
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static socklen_t struct_len = sizeof(struct sockaddr_in);
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static socklen_t struct_len = sizeof(struct sockaddr_in);
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static struct sockaddr_in server_addr;
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static struct sockaddr_in server_addr;
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static struct sockaddr_in client_addr;
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#endif
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#endif
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struct THREADTIMER {
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struct THREADTIMER {
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@@ -43,7 +41,7 @@ struct THREADTIMER {
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typedef struct THREADTIMER THREADTIMER;
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typedef struct THREADTIMER THREADTIMER;
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static THREADTIMER timers[THREADCNT];
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static THREADTIMER timers[THREADCNT];
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#define timer_pointer_of(x) ((THREADTIMER*)(x))
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#define timer_pointer_of(x) ((THREADTIMER*)(x))
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#define touch_timer(x) timer_pointer_of(x)->touch = time(NULL)
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#define touch_timer(x) (timer_pointer_of(x)->touch = time(NULL))
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static int fd; // server fd
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static int fd; // server fd
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static pthread_t accept_threads[THREADCNT];
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static pthread_t accept_threads[THREADCNT];
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@@ -131,7 +129,7 @@ static int send_data(int accept_fd, int index, enum SERVERACK cmd, char *data, s
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cmdpacket_encrypt(p, index, cfg.pwd);
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cmdpacket_encrypt(p, index, cfg.pwd);
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int total = CMDPACKET_HEAD_LEN+p->datalen;
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int total = CMDPACKET_HEAD_LEN+p->datalen;
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if(!~send(accept_fd, buf, total, 0)) {
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if(!~send(accept_fd, buf, total, 0)) {
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puts("Send data error");
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perror("Send data error: ");
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return 0;
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return 0;
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} else {
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} else {
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printf("Send %d bytes data: ", total);
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printf("Send %d bytes data: ", total);
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@@ -302,7 +300,7 @@ static int s3_set_data(THREADTIMER *timer) {
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memcpy(setdict->data, timer->dat, datasize);
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memcpy(setdict->data, timer->dat, datasize);
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if(!set_pb(get_dict_fp_wr(), items_len, sizeof(DICT), setdict)) {
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if(!set_pb(get_dict_fp_wr(), items_len, sizeof(DICT), setdict)) {
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printf("Error set data: dict[%s]=%s\n", setdict->key, timer->dat);
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fprintf(stderr, "Error set data: dict[%s]=%s\n", setdict->key, timer->dat);
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return close_and_send(timer, ACKERRO, "erro", 4);
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return close_and_send(timer, ACKERRO, "erro", 4);
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} else {
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} else {
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printf("Set data: dict[%s]=%s\n", setdict->key, timer->dat);
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printf("Set data: dict[%s]=%s\n", setdict->key, timer->dat);
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@@ -431,18 +429,21 @@ static void kill_thread(THREADTIMER* timer) {
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}
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}
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static void handle_pipe(int signo) {
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static void handle_pipe(int signo) {
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printf("Pipe error: %d\n", signo);
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fprintf(stderr, "Pipe error: %d\n", signo);
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pthread_exit(NULL);
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pthread_exit(NULL);
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}
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}
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static void handle_accept(void *p) {
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static void handle_accept(void *p) {
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int accept_fd = timer_pointer_of(p)->accept_fd;
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puts("\nConnected to the client, handling accept...");
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if(accept_fd > 0) {
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puts("\nConnected to the client");
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pthread_t thread;
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pthread_t thread;
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if (pthread_create(&thread, &attr, (void *)&accept_timer, p)) {
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perror("Error creating timer thread: ");
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kill_thread(timer_pointer_of(p));
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return;
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}
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puts("Creating timer thread succeeded");
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pthread_cleanup_push((void*)&kill_thread, p);
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pthread_cleanup_push((void*)&kill_thread, p);
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if (pthread_create(&thread, &attr, (void *)&accept_timer, p)) puts("Error creating timer thread");
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int accept_fd = timer_pointer_of(p)->accept_fd;
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else puts("Creating timer thread succeeded");
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uint32_t index = timer_pointer_of(p)->index;
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uint32_t index = timer_pointer_of(p)->index;
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char *buff = malloc(BUFSIZ*sizeof(char));
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char *buff = malloc(BUFSIZ*sizeof(char));
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if(buff) {
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if(buff) {
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@@ -543,10 +544,9 @@ static void handle_accept(void *p) {
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#endif
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#endif
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}
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}
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CONV_END: puts("Conversation end");
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CONV_END: puts("Conversation end");
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} else puts("Error allocating buffer");
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} else perror("Error allocating buffer: ");
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pthread_cleanup_pop(1);
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pthread_cleanup_pop(1);
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puts("Thread exited normally");
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puts("Thread exited normally");
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} else puts("Error accepting client");
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}
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}
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static pid_t pid;
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static pid_t pid;
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@@ -563,18 +563,25 @@ static void accept_client() {
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pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED);
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pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED);
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init_crypto();
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init_crypto();
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init_dict_pool(get_dict_fp_rd());
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init_dict_pool(get_dict_fp_rd());
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if(pid < 0) puts("Error when forking a subprocess");
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if(pid < 0) perror("Error when forking a subprocess: ");
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else while(1) {
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else while(1) {
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puts("Ready for accept, waitting...");
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puts("Ready for accept, waitting...");
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int p = 0;
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int p = 0;
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while(p < THREADCNT && accept_threads[p] && !pthread_kill(accept_threads[p], 0)) p++;
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while(p < THREADCNT && accept_threads[p] && !pthread_kill(accept_threads[p], 0)) p++;
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if(p < THREADCNT) {
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if(p >= THREADCNT) {
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puts("Max thread cnt exceeded");
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sleep(1);
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continue;
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}
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printf("Thread slot is empty at No.%d\n", p);
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printf("Thread slot is empty at No.%d\n", p);
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THREADTIMER* timer = &timers[p];
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#ifdef LISTEN_ON_IPV6
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timer->accept_fd = accept(fd, (struct sockaddr *)&client_addr, &struct_len);
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struct sockaddr_in6 client_addr;
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if(timer->accept_fd <= 0) {
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#else
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puts("Accept client error");
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struct sockaddr_in client_addr;
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} else {
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#endif
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int accept_fd;
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while((accept_fd=accept(fd, (struct sockaddr *)&client_addr, &struct_len))<=0)
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perror("Accept client error: ");
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#ifdef LISTEN_ON_IPV6
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#ifdef LISTEN_ON_IPV6
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uint16_t port = ntohs(client_addr.sin6_port);
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uint16_t port = ntohs(client_addr.sin6_port);
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struct in6_addr in = client_addr.sin6_addr;
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struct in6_addr in = client_addr.sin6_addr;
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@@ -587,17 +594,18 @@ static void accept_client() {
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inet_ntop(AF_INET, &in, str, sizeof(str));
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inet_ntop(AF_INET, &in, str, sizeof(str));
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#endif
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#endif
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printf("Accept client %s:%u\n", str, port);
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printf("Accept client %s:%u\n", str, port);
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THREADTIMER* timer = &timers[p];
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timer->accept_fd = accept_fd;
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timer->index = p;
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timer->index = p;
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timer->touch = time(NULL);
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timer->touch = time(NULL);
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timer->ptr = NULL;
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timer->ptr = NULL;
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reset_seq(p);
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reset_seq(p);
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if (pthread_create(accept_threads + p, &attr, (void *)&handle_accept, timer)) puts("Error creating thread");
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if (pthread_create(accept_threads + p, &attr, (void *)&handle_accept, timer)) {
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else puts("Creating thread succeeded");
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perror("Error creating thread: ");
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}
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kill_thread(timer);
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} else {
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continue;
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puts("Max thread cnt exceeded");
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sleep(1);
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}
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}
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puts("Creating thread succeeded");
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}
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}
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}
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}
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@@ -652,13 +660,19 @@ int main(int argc, char *argv[]) {
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items_len = align_struct(sizeof(DICT), 2, d.key, d.data);
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items_len = align_struct(sizeof(DICT), 2, d.key, d.data);
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if(items_len) {
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if(items_len) {
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if(bind_server(port, times)) if(listen_socket(times)) accept_client();
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if(bind_server(port, times)) if(listen_socket(times)) accept_client();
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} else puts("Align struct error");
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} else fputs("Align struct error", stderr);
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} else printf("Error opening config file: %s\n", argv[as_daemon?5:4]);
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} else {
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fprintf(stderr, "Error opening config file: %s : ", argv[as_daemon?5:4]);
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perror("");
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}
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}
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} else printf("Error opening dict file: %s\n", argv[as_daemon?4:3]);
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}
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} else puts("Start daemon error");
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} else {
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} else printf("Error times: %d\n", times);
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fprintf(stderr, "Error opening dict file: %s : ", argv[as_daemon?4:3]);
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} else printf("Error port: %d\n", port);
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perror("");
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}
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} else perror("Start daemon error: ");
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} else fprintf(stderr, "Error times: %d\n", times);
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} else fprintf(stderr, "Error port: %d\n", port);
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}
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}
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close(fd);
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close(fd);
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exit(EXIT_FAILURE);
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exit(EXIT_FAILURE);
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