mirror of
https://github.com/fumiama/simple-dict.git
synced 2026-06-05 18:20:26 +08:00
427 lines
13 KiB
C
427 lines
13 KiB
C
#include <sys/types.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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#include <sys/signal.h>
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#include <sys/file.h>
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#include <netinet/in.h>
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#include <arpa/inet.h>
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#include <netdb.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <pthread.h>
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#include <time.h>
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#define PASSWORD "fumiama"
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int fd;
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//ssize_t numbytes;
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socklen_t struct_len = sizeof(struct sockaddr_in);
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struct sockaddr_in server_addr;
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//char buff[BUFSIZ];
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char *file_path;
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pthread_t accept_threads[8];
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#define MAXWAITSEC 10
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struct THREADTIMER {
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pthread_t *thread;
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time_t touch;
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int accept_fd;
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ssize_t numbytes;
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char *data;
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char status;
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char is_open;
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FILE *fp;
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};
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typedef struct THREADTIMER THREADTIMER;
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#define DATASIZE 64
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struct DICTBLK{
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char key[(DATASIZE-1)];
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u_char keysize;
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char data[(DATASIZE-1)];
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u_char datasize;
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};
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typedef struct DICTBLK DICTBLK;
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#define DICTBLKSZ sizeof(DICTBLK)
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DICTBLK dict;
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#define showUsage(program) printf("Usage: %s [-d] listen_port try_times dict_file\n\t-d: As daemon\n", program)
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void acceptClient();
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void acceptTimer(void *p);
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int bindServer(uint16_t port, u_int try_times);
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int checkBuffer(THREADTIMER *timer);
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int freeAfterSend(int accept_fd, char *data, size_t length);
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void closeDict(FILE *fp);
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int closeDictAndSend(THREADTIMER *timer, char *data, size_t numbytes);
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off_t fileSize(const char* fname);
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void handleAccept(void *accept_fd_p);
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void handle_pipe(int signo);
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void handle_quit(int signo);
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int listenSocket(u_int try_times);
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FILE *openDict(int lock_type);
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int sendAll(THREADTIMER *timer);
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int sendData(int accept_fd, char *data, size_t length);
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int sm1_pwd(THREADTIMER *timer);
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int s0_init(THREADTIMER *timer);
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int s1_get(THREADTIMER *timer);
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int s2_set(THREADTIMER *timer);
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int s3_setData(THREADTIMER *timer);
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int s4_del(THREADTIMER *timer);
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int s5_list(THREADTIMER *timer);
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int bindServer(uint16_t port, u_int try_times) {
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int fail_count = 0;
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int result = -1;
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server_addr.sin_family = AF_INET;
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server_addr.sin_port = htons(port);
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server_addr.sin_addr.s_addr = INADDR_ANY;
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bzero(&(server_addr.sin_zero), 8);
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fd = socket(AF_INET, SOCK_STREAM, 0);
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while(!~(result = bind(fd, (struct sockaddr *)&server_addr, struct_len)) && fail_count++ < try_times) sleep(1);
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if(!~result && fail_count >= try_times) {
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puts("Bind server failure!");
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return 0;
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} else{
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puts("Bind server success!");
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return 1;
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}
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}
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int listenSocket(u_int try_times) {
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int fail_count = 0;
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int result = -1;
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while(!~(result = listen(fd, 10)) && fail_count++ < try_times) sleep(1);
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if(!~result && fail_count >= try_times) {
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puts("Listen failed!");
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return 0;
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} else{
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puts("Listening....");
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return 1;
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}
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}
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int freeAfterSend(int accept_fd, char *data, size_t length) {
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int re = sendData(accept_fd, data, length);
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free(data);\
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return re;
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}
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int sendData(int accept_fd, char *data, size_t length) {
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if(!~send(accept_fd, data, length, 0)) {
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puts("Send data error");
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return 0;
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} else {
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printf("Send data: ");
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if(length > 64) length = 64;
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while(length--) putchar(*data++);
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putchar('\n');
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return 1;
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}
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}
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int sendAll(THREADTIMER *timer) {
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int re = 1;
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FILE *fp = openDict(LOCK_SH);
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size_t numbytes;
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if(fp) {
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timer->fp = fp;
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timer->is_open = 1;
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sprintf(timer->data, "%zd", fileSize(file_path));
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re = sendData(timer->accept_fd, timer->data, strlen(timer->data));
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while(re && (numbytes = fread(timer->data, 1, BUFSIZ, fp)) > 0)
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re = sendData(timer->accept_fd, timer->data, numbytes);
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closeDict(fp);
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timer->is_open = 0;
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}
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return re;
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}
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int sm1_pwd(THREADTIMER *timer) {
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if(!strcmp(PASSWORD, timer->data)) timer->status = 0;
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return !timer->status;
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}
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int s0_init(THREADTIMER *timer) {
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if(!strcmp("get", timer->data)) timer->status = 1;
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else if(!strcmp("set", timer->data)) timer->status = 2;
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else if(!strcmp("del", timer->data)) timer->status = 4;
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else if(!strcmp("lst", timer->data)) timer->status = 5;
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else if(!strcmp("cat", timer->data)) return sendAll(timer);
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else if(!strcmp("quit", timer->data)) return 0;
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return sendData(timer->accept_fd, timer->data, timer->numbytes);
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}
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int s1_get(THREADTIMER *timer) {
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FILE *fp = openDict(LOCK_SH);
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DICTBLK dict;
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timer->status = 0;
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if(fp) {
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timer->fp = fp;
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timer->is_open = 1;
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while(fread(&dict, DICTBLKSZ, 1, fp) > 0) {
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u_char ks = dict.keysize;
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dict.key[ks] = 0;
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//printf("[%s] Look key: (%d)%s\n", timer->data, ks, dict.key);
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if(!strcmp(timer->data, dict.key))
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return closeDictAndSend(timer, dict.data, dict.datasize);
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}
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}
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return closeDictAndSend(timer, "null", 4);
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}
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#define copyKey() {\
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dict.keysize = (timer->numbytes >= (DATASIZE-1))?(DATASIZE-1):timer->numbytes;\
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strncpy(dict.key, timer->data, (DATASIZE-1));\
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}
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int s2_set(THREADTIMER *timer) {
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FILE *fp = openDict(LOCK_EX);
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if(fp) {
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timer->status = 3;
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timer->fp = fp;
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timer->is_open = 1;
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while(fread(&dict, DICTBLKSZ, 1, fp) > 0) {
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u_char ks = dict.keysize;
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dict.key[ks] = 0;
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//printf("[%zd] Key size: %d\n", timer->numbytes, ks);
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if(!dict.keysize || !strcmp(timer->data, dict.key)) {
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copyKey();
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fseek(fp, -DICTBLKSZ, SEEK_CUR);
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return sendData(timer->accept_fd, "data", 4);
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}
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}
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copyKey();
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fseek(fp, 0, SEEK_END);
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return sendData(timer->accept_fd, "data", 4);
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} else {
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timer->status = 0;
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return sendData(timer->accept_fd, "erro", 4);
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}
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}
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int s3_setData(THREADTIMER *timer) {
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timer->status = 0;
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dict.datasize = (timer->numbytes >= (DATASIZE-1))?(DATASIZE-1):timer->numbytes;
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printf("Set data size: %d\n", dict.datasize);
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memcpy(dict.data, timer->data, dict.datasize);
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puts("Data copy to dict succ");
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if(fwrite(&dict, DICTBLKSZ, 1, timer->fp) != 1) {
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printf("Error set data: dict[%s]=%s\n", dict.key, timer->data);
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return closeDictAndSend(timer, "erro", 4);
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} else {
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printf("Set data: dict[%s]=%s\n", dict.key, timer->data);
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return closeDictAndSend(timer, "succ", 4);
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}
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}
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int s4_del(THREADTIMER *timer) {
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FILE *fp = openDict(LOCK_EX);
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DICTBLK dict;
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timer->status = 0;
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if(fp) {
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timer->fp = fp;
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timer->is_open = 1;
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while(fread(&dict, DICTBLKSZ, 1, fp) > 0) {
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dict.key[dict.keysize] = 0;
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if(!strcmp(timer->data, dict.key)) {
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fseek(fp, -DICTBLKSZ+(DATASIZE-1), SEEK_CUR);
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fputc(0, fp);
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return closeDictAndSend(timer, "succ", 4);
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}
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}
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}
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return closeDictAndSend(timer, "null", 4);
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}
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off_t fileSize(const char* fname) {
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struct stat statbuf;
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if(stat(fname, &statbuf)==0) return statbuf.st_size;
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else return -1;
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}
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int s5_list(THREADTIMER *timer) {
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timer->status = 0;
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off_t size = fileSize(file_path) / DICTBLKSZ;
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char *keys = calloc(size, DATASIZE);
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DICTBLK dict;
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FILE *fp = openDict(LOCK_SH);
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if(keys && fp) {
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timer->fp = fp;
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timer->is_open = 1;
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keys[0] = 0;
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while(fread(&dict, DICTBLKSZ, 1, fp) > 0) {
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u_char ks = dict.keysize;
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dict.key[ks] = 0;
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//printf("[%s] Look key: (%d)%s\n", timer->data, ks, dict.key);
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if(strstr(dict.key, timer->data)) {
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strcat(keys, dict.key);
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strcat(keys, "\n");
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}
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}
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int len = strlen(keys);
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closeDict(fp);
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timer->is_open = 0;
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if(len > 0) return freeAfterSend(timer->accept_fd, keys, len);
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else return sendData(timer->accept_fd, "null", 4);
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} else {
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if(fp) closeDict(fp);
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timer->is_open = 0;
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return sendData(timer->accept_fd, "erro", 4);
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}
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}
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int checkBuffer(THREADTIMER *timer) {
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printf("Status: %d\n", timer->status);
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switch(timer->status) {
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case -1: return sm1_pwd(timer); break;
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case 0: return s0_init(timer); break;
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case 1: return s1_get(timer); break;
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case 2: return s2_set(timer); break;
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case 3: return s3_setData(timer); break;
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case 4: return s4_del(timer); break;
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case 5: return s5_list(timer); break;
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default: return -1; break;
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}
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}
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void handle_quit(int signo) {
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printf("Handle sig %d\n", signo);
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pthread_exit(NULL);
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}
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#define timerPointerOf(x) ((THREADTIMER*)(x))
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#define touchTimer(x) timerPointerOf(x)->touch = time(NULL)
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void acceptTimer(void *p) {
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THREADTIMER *timer = timerPointerOf(p);
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signal(SIGQUIT, handle_pipe);
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signal(SIGPIPE, handle_pipe);
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while(*timer->thread && !pthread_kill(*timer->thread, 0)) {
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sleep(MAXWAITSEC);
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puts("Check accept status");
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if(time(NULL) - timer->touch > MAXWAITSEC) {
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pthread_kill(*timer->thread, SIGQUIT);
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close(timer->accept_fd);
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if(timer->data) free(timer->data);
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if(timer->is_open) closeDict(timer->fp);
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*timer->thread = 0;
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}
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}
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free(p);
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}
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void handle_pipe(int signo) {
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puts("Pipe error");
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}
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void handleAccept(void *p) {
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int accept_fd = timerPointerOf(p)->accept_fd;
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if(accept_fd > 0) {
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puts("Connected to the client.");
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signal(SIGQUIT, handle_quit);
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signal(SIGPIPE, handle_pipe);
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pthread_t thread;
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if (pthread_create(&thread, NULL, (void *)&acceptTimer, p)) puts("Error creating timer thread");
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else puts("Creating timer thread succeeded");
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sendData(accept_fd, "Welcome to simple dict server.", 31);
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timerPointerOf(p)->status = -1;
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char *buff = calloc(BUFSIZ, sizeof(char));
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if(buff) {
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timerPointerOf(p)->data = buff;
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while(*timerPointerOf(p)->thread && (timerPointerOf(p)->numbytes = recv(accept_fd, buff, BUFSIZ, 0)) > 0) {
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touchTimer(p);
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buff[timerPointerOf(p)->numbytes] = 0;
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printf("Get %zd bytes: %s\n", timerPointerOf(p)->numbytes, buff);
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puts("Check buffer");
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if(!checkBuffer(timerPointerOf(p))) break;
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}
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printf("Recv %zd bytes\n", timerPointerOf(p)->numbytes);
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} else puts("Error allocating buffer");
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close(accept_fd);
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} else puts("Error accepting client");
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}
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void acceptClient() {
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while(1) {
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puts("Ready for accept, waitting...");
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int p = 0;
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while(p < 8 && accept_threads[p] && !pthread_kill(accept_threads[p], 0)) p++;
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if(p < 8) {
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printf("Run on thread No.%d\n", p);
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THREADTIMER *timer = malloc(sizeof(THREADTIMER));
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if(timer) {
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struct sockaddr_in client_addr;
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timer->accept_fd = accept(fd, (struct sockaddr *)&client_addr, &struct_len);
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timer->thread = &accept_threads[p];
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timer->touch = time(NULL);
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timer->data = NULL;
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if (pthread_create(timer->thread, NULL, (void *)&handleAccept, timer)) puts("Error creating thread");
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else puts("Creating thread succeeded");
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} else puts("Allocate timer error");
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} else {
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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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}
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FILE *openDict(int lock_type) {
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FILE *fp = NULL;
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fp = fopen(file_path, (lock_type == LOCK_SH)?"rb":"rb+");
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if(fp) {
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if(!~flock(fileno(fp), lock_type | LOCK_NB)) {
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printf("Error: ");
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fp = NULL;
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}
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printf("Open dict in mode %d\n", lock_type);
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} else puts("Open dict error");
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return fp;
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}
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int closeDictAndSend(THREADTIMER *timer, char *data, size_t numbytes) {
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closeDict(timer->fp);
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timer->is_open = 0;
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return sendData(timer->accept_fd, data, numbytes);
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}
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void closeDict(FILE *fp) {
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puts("Close dict");
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if(fp) {
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flock(fileno(fp), LOCK_UN);
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fclose(fp);
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}
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}
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int main(int argc, char *argv[]) {
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if(argc != 4 && argc != 5) showUsage(argv[0]);
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else {
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int port = 0;
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int as_daemon = !strcmp("-d", argv[1]);
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sscanf(argv[as_daemon?2:1], "%d", &port);
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if(port > 0 && port < 65536) {
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int times = 0;
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sscanf(argv[as_daemon?3:2], "%d", ×);
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if(times > 0) {
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if(!as_daemon || (as_daemon && (daemon(1, 1) >= 0))) {
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FILE *fp = NULL;
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fp = fopen(argv[as_daemon?4:3], "rb+");
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if(!fp) fp = fopen(argv[as_daemon?4:3], "wb+");
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if(fp) {
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file_path = argv[as_daemon?4:3];
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fclose(fp);
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signal(SIGQUIT, handle_pipe);
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signal(SIGPIPE, handle_pipe);
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if(bindServer(port, times)) if(listenSocket(times)) acceptClient();
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} else printf("Error opening dict file: %s\n", argv[as_daemon?4:3]);
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} else puts("Start daemon error");
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} else printf("Error times: %d\n", times);
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} else printf("Error port: %d\n", port);
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}
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close(fd);
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exit(EXIT_FAILURE);
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}
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