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input_socket.c
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input_socket.c
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#include "input_socket.h"
#include <sys/socket.h>
#include <sys/types.h>
#include <netdb.h>
#include <sys/un.h>
#include <unistd.h>
#include <errno.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#define PROGRAM_NAME "wmemulator"
static bool input_socket_init_from_addrinfo(struct addrinfo *addrinfo);
static int sock;
static char buf[512];
static size_t buf_len;
void input_socket_init_unix_at_path(char const *path)
{
struct sockaddr_un address = {
.sun_family = AF_UNIX
};
strncpy(address.sun_path, path, sizeof address.sun_path);
unlink(path);
input_socket_init((struct sockaddr *)&address, sizeof address);
}
void input_socket_init_ip_on_port(char const *port)
{
struct addrinfo hints = {
.ai_family = AF_UNSPEC,
.ai_socktype = SOCK_DGRAM,
.ai_flags = AI_PASSIVE
};
struct addrinfo *result_info;
int ret = getaddrinfo(NULL, port, &hints, &result_info);
if (ret)
{
printf(PROGRAM_NAME ": getaddrinfo: %s\n", gai_strerror(ret));
exit(1);
}
for (struct addrinfo *info = result_info; info; info = info->ai_next)
{
if (input_socket_init_from_addrinfo(info))
{
freeaddrinfo(result_info);
printf(PROGRAM_NAME ": successfully bound to port %s\n", port);
return;
}
}
printf(PROGRAM_NAME ": fatal: can't bind to port %s\n", port);
exit(1);
}
void input_socket_init(struct sockaddr *socket_address, socklen_t socket_address_size)
{
sock = socket(socket_address->sa_family, SOCK_DGRAM | SOCK_NONBLOCK, 0);
if (sock == -1)
{
perror(PROGRAM_NAME);
exit(1);
}
if (bind(sock, socket_address, socket_address_size))
{
perror(PROGRAM_NAME);
exit(1);
}
}
static bool input_socket_init_from_addrinfo(struct addrinfo *addrinfo)
{
sock = socket(addrinfo->ai_family, addrinfo->ai_socktype | SOCK_NONBLOCK, addrinfo->ai_protocol);
if (sock == -1)
{
return false;
}
if (bind(sock, addrinfo->ai_addr, addrinfo->ai_addrlen))
{
close(sock);
return false;
}
return true;
}
static void input_socket_unload(void)
{
if (close(sock))
{
perror(PROGRAM_NAME);
}
}
static bool input_socket_poll_event(struct input_event *event)
{
if (!buf_len)
{
buf_len = recv(sock, buf, sizeof(buf) - 1, 0);
if (buf_len == -1)
{
buf_len = 0;
if (!(errno == EAGAIN || errno == EWOULDBLOCK))
{
perror(PROGRAM_NAME);
}
return false;
}
}
buf[buf_len] = '\0';
//printf("received %d bytes: %s\n", buf_len, buf);
event->type = INPUT_EVENT_TYPE_BUTTON;
char event_type_s[32], event_param_s[32];
int event_status;
if (sscanf(buf, "%32s %d %32s", event_type_s, &event_status, event_param_s) == EOF)
{
printf(PROGRAM_NAME ": received input in invalid format\n");
buf_len = 0;
return false;
}
if (strcmp(event_type_s, "emulator_control") == 0)
{
event->type = INPUT_EVENT_TYPE_EMULATOR_CONTROL;
if (strcmp(event_param_s, "quit") == 0)
{
event->emulator_control_event.control = INPUT_EMULATOR_CONTROL_QUIT;
}
else if (strcmp(event_param_s, "power_off") == 0)
{
event->emulator_control_event.control = INPUT_EMULATOR_CONTROL_POWER_OFF;
}
}
else if (strcmp(event_type_s, "hotplug") == 0)
{
event->type = INPUT_EVENT_TYPE_HOTPLUG;
if (event_status == 0)
{
event->hotplug_event.extension = NoExtension;
}
else if (strcmp(event_param_s, "nunchuk") == 0)
{
event->hotplug_event.extension = Nunchuk;
}
else if (strcmp(event_param_s, "classic") == 0)
{
event->hotplug_event.extension = Classic;
}
else if (strcmp(event_param_s, "balance_board") == 0)
{
event->hotplug_event.extension = BalanceBoard;
}
else
{
event->hotplug_event.extension = NoExtension;
}
}
else if (strcmp(event_type_s, "button") == 0)
{
event->type = INPUT_EVENT_TYPE_BUTTON;
event->button_event.pressed = event_status;
#define CHECK(Button) if (strcmp(event_param_s, #Button) == 0) event->button_event.button = INPUT_BUTTON_##Button
CHECK(HOME);
else CHECK(WIIMOTE_UP);
else CHECK(WIIMOTE_DOWN);
else CHECK(WIIMOTE_LEFT);
else CHECK(WIIMOTE_RIGHT);
else CHECK(WIIMOTE_A);
else CHECK(WIIMOTE_B);
else CHECK(WIIMOTE_1);
else CHECK(WIIMOTE_2);
else CHECK(WIIMOTE_PLUS);
else CHECK(WIIMOTE_MINUS);
else CHECK(NUNCHUK_C);
else CHECK(NUNCHUK_Z);
else CHECK(CLASSIC_UP);
else CHECK(CLASSIC_DOWN);
else CHECK(CLASSIC_LEFT);
else CHECK(CLASSIC_RIGHT);
else CHECK(CLASSIC_A);
else CHECK(CLASSIC_B);
else CHECK(CLASSIC_X);
else CHECK(CLASSIC_Y);
else CHECK(CLASSIC_L);
else CHECK(CLASSIC_R);
else CHECK(CLASSIC_ZL);
else CHECK(CLASSIC_ZR);
else CHECK(CLASSIC_PLUS);
else CHECK(CLASSIC_MINUS);
#undef CHECK
else
{
printf(PROGRAM_NAME ": received invalid 'button' parameter: %s\n", event_param_s);
buf_len = 0;
return false;
}
}
else if (strcmp(event_type_s, "analog_motion") == 0)
{
event->type = INPUT_EVENT_TYPE_ANALOG_MOTION;
event->analog_motion_event.moving = event_status;
#define CHECK(Motion) if (strcmp(event_param_s, #Motion) == 0) event->analog_motion_event.motion = INPUT_ANALOG_MOTION_##Motion
CHECK(IR_UP);
else CHECK(IR_DOWN);
else CHECK(IR_LEFT);
else CHECK(IR_RIGHT);
else CHECK(STEER_LEFT);
else CHECK(STEER_RIGHT);
else CHECK(NUNCHUK_UP);
else CHECK(NUNCHUK_DOWN);
else CHECK(NUNCHUK_LEFT);
else CHECK(NUNCHUK_RIGHT);
else CHECK(CLASSIC_LEFT_STICK_UP);
else CHECK(CLASSIC_LEFT_STICK_DOWN);
else CHECK(CLASSIC_LEFT_STICK_LEFT);
else CHECK(CLASSIC_LEFT_STICK_RIGHT);
else CHECK(MOTIONPLUS_UP);
else CHECK(MOTIONPLUS_DOWN);
else CHECK(MOTIONPLUS_LEFT);
else CHECK(MOTIONPLUS_RIGHT);
else CHECK(MOTIONPLUS_SLOW);
#undef CHECK
else
{
printf(PROGRAM_NAME ": received invalid 'analog_motion' parameter: %s\n", event_param_s);
buf_len = 0;
return false;
}
}
else
{
printf(PROGRAM_NAME ": received invalid event type: %s\n", event_type_s);
buf_len = 0;
return false;
}
buf_len = 0;
return true;
}
struct input_source input_source_socket = {
.unload = input_socket_unload,
.poll_event = input_socket_poll_event
};