uttt/uttt.c

624 行
15 KiB
C
Raw 通常表示 履歴

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#include <stddef.h>
#include <stdbool.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
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#include <curses.h>
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#include <signal.h>
#include <sys/socket.h>
#include <netinet/in.h>
#include <arpa/inet.h>
#include <string.h>
#include <errno.h>
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#include <sys/stat.h>
#include <fcntl.h>
#include <unistd.h>
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#include <stdarg.h>
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struct ut_state
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{
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char tiles[9][9];
char boards[3][3];
int playBoard;
char player;
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};
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const struct ut_state ut_initial = {
.boards = {0},
.tiles = {0},
.playBoard = -1,
.player = 'X'
};
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const char *arg_host = "--host";
const char *arg_join = "--join";
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char ut_turn(char player)
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{
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switch(player)
{
case 'X': return 'O';
case 'O': return 'X';
default: return '\0';
}
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}
#define T(r, c) (tiles[offset + stride * r + c])
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char ut_winner(const char *tiles, int offset, int stride) {
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// whoreizontal wins
for (int y = 0; y < 3; y++)
{
char tile = T(y, 0);
if (tile == '\0') {continue;}
if (tile == T(y, 1) && tile == T(y, 2)) {return tile;}
}
// vertical wins
for (int x = 0; x < 3; x++)
{
char tile = T(0, x);
if (tile == '\0') {continue;}
if (tile == T(1, x) && tile == T(2, x)) {return tile;}
}
// diagonalz
char tile = T(1, 1);
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if (tile != '\0')
{
if (tile == T(0, 0) && tile == T(2, 2)) {return tile;}
if (tile == T(2, 0) && tile == T(0, 2)) {return tile;}
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}
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for(int y = 0; y < 3; y++)
{
for(int x = 0; x < 3; x++)
{
if(T(y, x) == '\0') {return '\0';} // in progress
}
}
return ' '; // draw
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}
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int ut_move(struct ut_state *new_state, const struct ut_state *old_state, int row, int col)
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{
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// bad move - out of bounds
if(row < 0 || row >= 9 || col < 0 || col >= 9) {return 1;}
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// state->playBoard == -1 means all boards playable; otherwise only one board is playable
if (old_state->playBoard != -1 && old_state->playBoard != 3 * (row / 3) + (col / 3)) {return 1;}
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// bad move - tile is occupied
if(old_state->tiles[row][col] != '\0') {return 1;}
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// bad move - board is finished
if(old_state->boards[row / 3][col / 3] != '\0') {return 1;}
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// copy old_state->{tiles,boards} to new_state->{tiles,boards}
memmove(new_state->tiles, old_state->tiles, sizeof(old_state->tiles));
memmove(new_state->boards, old_state->boards, sizeof(old_state->boards));
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// do move
new_state->tiles[row][col] = old_state->player;
new_state->boards[row / 3][col / 3] = ut_winner((char *)new_state->tiles, 27 * (row / 3) + 3 * (col / 3), 9);
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// next play board - if next play board is not playable, play any board
new_state->playBoard = new_state->boards[row % 3][col % 3] == '\0' ? 3 * (row % 3) + (col % 3) : -1;
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new_state->player = ut_turn(old_state->player);
return 0;
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}
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void ut_drawBoard(const char *tiles, int offset, int stride, int iy, int ix, char winner, bool highlight)
{
// 5x5 board display
/*
* X|X|X
* -+-+-
* X|X|X
* -+-+-
* X|X|X
*/
for(int r = 0; r < 3; r++)
for(int c = 0; c < 3; c++)
mvaddch(iy + 2 * r, ix + 2 * c, T(r, c) != '\0' ? T(r, c) : ' ');
//char info = winner != '\0' ? winner : highlight ? '*' : ' ';
for(int r = 0; r < 3; r++)
for(int c = 0; c < 2; c++)
mvaddch(iy + 2 * r, ix + 2 * c + 1, winner != '\0' ? winner : '|');
for(int r = 0; r < 2; r++)
for(int c = 0; c < 3; c++)
mvaddch(iy + 2 * r + 1, ix + 2 * c, winner != '\0' ? winner : '-');
for(int r = 0; r < 2; r++)
for(int c = 0; c < 2; c++)
mvaddch(iy + 2 * r + 1, ix + 2 * c + 1, winner != '\0' ? winner : highlight ? '*' : '+');
}
void ut_draw(const struct ut_state *state)
{
for(int r = 0; r < 3; r++)
for(int c = 0; c < 3; c++)
ut_drawBoard((char *)state->tiles,
27 * r + 3 * c, 9,
7 * r + 1, 7 * c + 1,
state->boards[r][c],
state->playBoard == -1 || state->playBoard == 3 * r + c);
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//refresh();
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}
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int ut_click(const struct ut_state *state, int *r, int *c)
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{
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#define P(r, c, d) ((state->playBoard == -1 || state->playBoard == 3 * (r / 3) + (c / 3)) && \
(state->boards[r / 3][c / 3] == '\0' || d % 3 == 1))
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MEVENT event;
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mvaddstr(21, 0, "Select move with arrow keys or mouse.");
if(state->playBoard == -1)
{
*r = 3 * (*r / 3) + 1;
*c = 3 * (*c / 3) + 1;
}
else
{
*r = 3 * (state->playBoard / 3) + 1;
*c = 3 * (state->playBoard % 3) + 1;
}
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for(;;)
{
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/*if(state->boards[*r / 3][*c / 3] != '\0')
{
*r = 3 * (*r / 3) + 1;
*c = 3 * (*c / 3) + 1;
}*/
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move((7 * (*r / 3) + 1) + (2 * (*r % 3)),
(7 * (*c / 3) + 1) + (2 * (*c % 3)));
refresh();
switch(getch())
{
case KEY_MOUSE:
if(getmouse(&event) == OK && (event.bstate & BUTTON1_CLICKED))
{
if(event.y < 0 || event.y >= 21) {break;}
if(event.x < 0 || event.x >= 21) {break;}
*r = (event.y % 7 - 1) / 2 + 3 * (event.y / 7);
*c = (event.x % 7 - 1) / 2 + 3 * (event.x / 7);
if(((event.y % 7) - 1) % 2 != 0) {break;}
if(((event.x % 7) - 1) % 2 != 0) {break;}
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return 0;
}
break;
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case 'k': /* FALLTHROUGH */
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case 'w': /* FALLTHROUGH */
case KEY_UP:
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//*r = (((*r - 1) % 9) + 9) % 9;
for(int i = 0; i < 9 + 1; i++)
{
*r = (*r + 9 - 1) % 9;
if(P(*r, *c, *r)) {break;}
}
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break;
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case 'h': /* FALLTHROUGH */
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case 'a': /* FALLTHROUGH */
case KEY_LEFT:
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//*c = (((*c - 1) % 9) + 9) % 9;
for(int i = 0; i < 9 + 1; i++)
{
*c = (*c + 9 - 1) % 9;
if(P(*r, *c, *c)) {break;}
}
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break;
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case 'j': /* FALLTHROUGH */
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case 's': /* FALLTHROUGH */
case KEY_DOWN:
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//*r = (*r + 1) % 9;
for(int i = 0; i < 9 + 1; i++)
{
*r = (*r + 1) % 9;
if(P(*r, *c, *r)) {break;}
}
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break;
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case 'l': /* FALLTHROUGH */
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case 'd': /* FALLTHROUGH */
case KEY_RIGHT:
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//*c = (*c + 1) % 9;
for(int i = 0; i < 9 + 1; i++)
{
*c = (*c + 1) % 9;
if(P(*r, *c, *c)) {break;}
}
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break;
case ' ': /* FALLTHROUGH */
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case '\r': /* FALLTHROUGH */
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case KEY_ENTER:
return 0;
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case ERR: /* FALLTHROUGH */
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default:
break;
}
}
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#undef P
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}
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int info_line; // set this to 21 and reset it on erase TODO
void ut_info(const char *str, int n)
{
mvaddnstr(info_line, 0, str, n);
// info_line++; // depends on str not containing newlines
int y, x;
getyx(stdscr, y, x);
info_line = y + 1;
}
int readfill(int fd, char *x, size_t l)
{
while(l > 0)
{
int r = read(fd, x, l);
if(r < 0)
{
if(errno == EAGAIN || errno == EWOULDBLOCK || errno == EINTR) {continue;}
else {return 1;}
}
else if(r == 0) {return 2;}
x += r; l -= r;
}
return 0;
}
#define MAX_LINE 128
int ut_dprintf(int fd, const char *restrict format, ...)
{
char line[MAX_LINE];
va_list ap;
va_start(ap, format);
int n = vsnprintf(line, MAX_LINE, format, ap);
va_end(ap);
if(n < 0 || n > MAX_LINE - 1) {return -1;}
if(readfill(fd, line, n)) {return -1;}
return n;
}
int ut_cursprintf(const char *restrict format, ...)
{
char line[MAX_LINE];
va_list ap;
va_start(ap, format);
int n = vsnprintf(line, MAX_LINE, format, ap);
va_end(ap);
if(n < 0 || n > MAX_LINE - 1) {return -1;}
if(ut_info(line)) {return -1;}
return n;
}
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void ut_show(const struct ut_state *state, FILE *file, bool as_comment) {
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#define tiles state->tiles
printf("Turn: %c\nPlay board: %d\n", (int)state->player, state->playBoard);
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int play_board_row = -1;
int play_board_col = -1;
if (state->playBoard != -1) {
play_board_row = state->playBoard / 3;
play_board_col = state->playBoard % 3;
}
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fprintf(file, "%s 012 345 678\n", as_comment ? "| " : "");
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for(int y = 0; y < 9; y++)
{
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if (y == 3 || y == 6) {
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fprintf(file, "%s ---+---+---\n", as_comment ? "| " : "");
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}
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fprintf(file, "%s%d ", as_comment ? "| " : "", y);
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for(int x = 0; x < 9; x++)
{
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if (x == 3 || x == 6) {
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fputc('|', file);
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}
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fputc(tiles[y][x] ? tiles[y][x] : ' ', file);
}
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if (y / 3 == play_board_row || play_board_row == -1) {
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fputc('<', file);
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}
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fputc('\n', file);
}
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if (play_board_col == -1) {
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fprintf(file, "%s ^^^ ^^^ ^^^", as_comment ? "| " : "");
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} else {
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fprintf(file, "%s ", as_comment ? "| " : "");
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for (int i = 0; i < play_board_col; i++) {
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fprintf(file, " ");
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}
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fprintf(file, "^^^");
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}
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fputc('\n', file);
#undef tiles
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}
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void ut_show_boards(const struct ut_state *state) {
for (int j = 0; j < 3; j++) {
for (int i = 0; i < 3; i++) {
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putchar(state->boards[j][i] ? state->boards[j][i] : ' ');
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}
putchar('\n');
}
}
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bool getpos(const struct ut_state *state, int *x, int *y) {
while (true) {
printf("Place token %c at position x,y: ", state->player);
char line[5] = {0};
if (fgets(line, 5, stdin) == NULL)
return false;
// line was too short
if (line[3] == '\0')
continue;
// line was too long
if (line[3] != '\n') {
// consume rest of line
while (true) {
int garbage = getchar();
if (garbage == EOF)
return false;
if (garbage == '\n')
break;
}
continue;
}
int sscanf_result = sscanf(line, "%d,%d", x, y);
if (sscanf_result == EOF)
return false;
if (sscanf_result != 2)
continue;
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break;
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}
return true;
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}
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void getpos_net(const struct ut_state *state, int conn, FILE* conn_file, int *x, int *y) {
const int MAX_LINE_LEN = 120;
char byte;
int n;
while (true) {
n = recv(conn, &byte, 1, 0);
if (n == 0) {goto conn_closed;}
if (byte == '|') {
// ignore this line
for (int i = 0; i < MAX_LINE_LEN; i++) {
n = recv(conn, &byte, 1, 0);
if (n == 0) {goto conn_closed;}
if (byte == '\n') {break;}
}
if (byte != '\n') {
printf("Partner sent too much data in one comment line - exiting\n");
close(conn);
exit(1);
}
} else {
if (byte == '\n') {
printf("Partner ended line before coords were complete - retrying\n");
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fprintf(conn_file, "| Invalid coordinates. Try again: ");
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fflush(conn_file);
continue;
}
*x = byte - 0x30;
n = recv(conn, &byte, 1, 0);
if (n == 0) {goto conn_closed;}
if (byte == '\n') {
printf("Partner ended line before coords were complete - retrying\n");
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fprintf(conn_file, "| Invalid coordinates. Try again: ");
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fflush(conn_file);
continue;
}
n = recv(conn, &byte, 1, 0);
if (n == 0) {goto conn_closed;}
if (byte == '\n') {
printf("Partner ended line before coords were complete - retrying\n");
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fprintf(conn_file, "| Invalid coordinates. Try again: ");
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fflush(conn_file);
continue;
}
*y = byte - 0x30;
n = recv(conn, &byte, 1, 0);
if (n == 0) {goto conn_closed;}
if (byte != '\n') {
printf("Partner sent extra data after coords were complete - ignoring and retrying\n");
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fprintf(conn_file, "| Invalid coordinates. Try again: ");
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fflush(conn_file);
// ignore the rest of this line
for (int i = 0; i < MAX_LINE_LEN; i++) {
n = recv(conn, &byte, 1, 0);
if (n == 0) {goto conn_closed;}
if (byte == '\n') {break;}
}
if (byte != '\n') {
printf("Partner sent too much extra data - exiting\n");
close(conn);
exit(1);
}
continue;
}
break;
}
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}
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printf("x=%d y=%d\n", *x, *y);
return;
conn_closed:
printf("Connection closed.\n");
exit(1);
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}
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void finish(int sig)
{
// putchar('\n');
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endwin();
// other cleanup
exit(0);
}
/*int main(int argc, char *argv[]) {
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signal(SIGINT, finish);
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initscr();
keypad(stdscr, TRUE);
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nonl(); // \r instead of \r\n
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cbreak();
noecho();
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mousemask(BUTTON1_CLICKED, NULL);
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struct ut_state state = ut_initial;
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while (true) {
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int r, c, err;
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erase();
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ut_draw(&state);
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char w = ut_winner((char *)state.boards, 0, 3);
if(w)
{
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if(w == ' ')
{
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mvaddstr(21, 0, "Draw!");
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}
else
{
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mvaddch(21, 0, w);
mvaddstr(21, 1, " Wins!");
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}
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mvaddstr(22, 0, "Press any key to exit.");
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refresh();
mousemask(0, NULL);
getch();
break;
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}
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err = ut_click(&state, &r, &c);
if (err) {continue;}
err = ut_move(&state, &state, r, c);
if (err) {continue;}
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}
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finish(0);
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return 0;
}*/
void ut_local_game(struct ut_state *state) { // TODO replace with from ncurses main
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int x, y;
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while (true) {
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ut_show(state, stdout, false);
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ut_show_boards(state);
bool ok = getpos(state, &x, &y);
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if (!ok) {continue;}
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int err = ut_move(state, state, y, x);
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if (err) {continue;}
char w = ut_winner((char *)state->boards, 0, 3);
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if(w)
{
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if(w == ' ')
{
printf("\nDraw!\n");
}
else
{
printf("\n%c wins!\n", (int)w);
}
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}
}
}
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void ut_network_game(struct ut_state *state, int conn, FILE* conn_file, char player) {
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int x, y;
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printf("You play as %c.\n", player);
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while (true) {
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ut_show(state, stdout, false);
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ut_show_boards(state);
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ut_show(state, conn_file, true);
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if (state->player == player) {
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fprintf(conn_file, "| Waiting for game partner ...\n");
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fflush(conn_file);
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bool ok = getpos(state, &x, &y);
if (!ok) {continue;}
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fprintf(conn_file, "%d,%d\n", x, y);
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} else {
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printf("Waiting for game partner ...\n");
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fprintf(conn_file, "| Place token %c in position x,y: ", ut_turn(player));
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fflush(conn_file);
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getpos_net(state, conn, conn_file, &x, &y);
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}
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int err = ut_move(state, state, y, x);
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if (err) {continue;}
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fprintf(conn_file, "|\n");
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char w = ut_winner((char *)state->boards, 0, 3);
if(w)
{
if(w == ' ')
{
printf("\nDraw!\n");
}
else
{
printf("\n%c wins!\n", (int)w);
}
}
}
}
int main(int argc, char **argv) {
signal(SIGINT, finish);
struct ut_state state = ut_initial;
if (argc < 2) {
ut_local_game(&state);
} else if (strncmp(argv[1], arg_host, strlen(arg_host)) == 0) {
int sock = socket(AF_INET, SOCK_STREAM, 0);
if (sock == -1) {
int errsv = errno;
printf("error %d\n", errsv);
return 1;
}
const struct sockaddr_in addr = {
.sin_family = AF_INET,
.sin_port = htons(6669),
.sin_addr = { .s_addr = htonl(0x7f000001) },
};
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setsockopt(sock, SOL_SOCKET, SO_REUSEADDR, &(int){1}, sizeof(int));
if (bind(sock, (struct sockaddr*)&addr, sizeof(addr)) == -1) {
int errsv = errno;
printf("error %d\n", errsv);
return 1;
}
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if (listen(sock, 128) == -1) {
int errsv = errno;
printf("error %d\n", errsv);
return 1;
}
printf("Waiting for game partner at 127.0.0.1:6669 ...\n");
int conn = accept(sock, NULL, NULL);
if (conn == -1) {
int errsv = errno;
printf("error %d\n", errsv);
return 1;
}
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FILE* conn_file = fdopen(conn, "w");
// decide X or O
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int random = open("/dev/urandom", O_RDONLY);
int byte;
read(random, &byte, 1);
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char player = byte % 2 == 0 ? 'X' : 'O';
// tell partner X or O
fprintf(conn_file, "%c\n", ut_turn(player));
ut_network_game(&state, conn, conn_file, player);
} else if (strncmp(argv[1], arg_join, strlen(arg_join)) == 0) {
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int sock = socket(AF_INET, SOCK_STREAM, 0);
if (sock == -1) {
int errsv = errno;
printf("error %d\n", errsv);
return 1;
}
const struct sockaddr_in addr = {
.sin_family = AF_INET,
.sin_port = htons(6669),
.sin_addr = { .s_addr = htonl(0x7f000001) },
};
printf("Connecting to game host at 127.0.0.1:6669 ...\n");
connect(sock, (struct sockaddr*)&addr, sizeof(addr));
FILE* sock_file = fdopen(sock, "w");
char player_buf[2];
if (recv(sock, &player_buf, 2, 0) != 2) {return 1;}
ut_network_game(&state, sock, sock_file, player_buf[0]);
} else {
printf("%s\n", argv[1]);
}
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return 0;
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}