gri3-wm/i3bar/src/ipc.c

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C
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#include <stdlib.h>
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#include <stdio.h>
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#include <unistd.h>
#include <stdint.h>
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#include <sys/socket.h>
#include <sys/un.h>
#include <i3/ipc.h>
#include <ev.h>
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#include "common.h"
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ev_io *i3_connection;
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typedef void(*handler_t)(char*);
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/*
* Get a connect to the IPC-interface of i3 and return a filedescriptor
*
*/
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int get_ipc_fd(const char *socket_path) {
int sockfd = socket(AF_LOCAL, SOCK_STREAM, 0);
if (sockfd == -1) {
printf("ERROR: Could not create Socket!\n");
exit(EXIT_FAILURE);
}
struct sockaddr_un addr;
memset(&addr, 0, sizeof(struct sockaddr_un));
addr.sun_family = AF_LOCAL;
strcpy(addr.sun_path, socket_path);
if (connect(sockfd, (const struct sockaddr*) &addr, sizeof(struct sockaddr_un)) < 0) {
printf("ERROR: Could not connct to i3\n");
exit(EXIT_FAILURE);
}
return sockfd;
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}
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/*
* Called, when we get a reply to a command from i3.
* Since i3 does not give us much feedback on commands, we do not much
*
*/
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void got_command_reply(char *reply) {
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/* FIXME: Error handling for command-replies */
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}
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/*
* Called, when we get a reply with workspaces-data
*
*/
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void got_workspace_reply(char *reply) {
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printf("Got Workspace-Data!\n");
parse_workspaces_json(reply);
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draw_bars();
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}
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/*
* Called, when we get a reply for a subscription.
* Since i3 does not give us much feedback on commands, we do not much
*
*/
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void got_subscribe_reply(char *reply) {
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printf("Got Subscribe Reply: %s\n", reply);
/* FIXME: Error handling for subscribe-commands */
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}
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/*
* Called, when we get a reply with outputs-data
*
*/
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void got_output_reply(char *reply) {
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printf("Parsing Outputs-JSON...\n");
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parse_outputs_json(reply);
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printf("Reconfiguring Windows...\n");
reconfig_windows();
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}
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/* Data-structure to easily call the reply-handlers later */
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handler_t reply_handlers[] = {
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&got_command_reply,
&got_workspace_reply,
&got_subscribe_reply,
&got_output_reply,
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};
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/*
* Called, when a workspace-event arrives (i.e. the user changed the workspace)
*
*/
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void got_workspace_event(char *event) {
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printf("Got Workspace Event!\n");
i3_send_msg(I3_IPC_MESSAGE_TYPE_GET_WORKSPACES, NULL);
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}
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/*
* Called, when an output-event arrives (i.e. the screen-configuration changed)
*
*/
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void got_output_event(char *event) {
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printf("Got Output Event!\n");
i3_send_msg(I3_IPC_MESSAGE_TYPE_GET_OUTPUTS, NULL);
i3_send_msg(I3_IPC_MESSAGE_TYPE_GET_WORKSPACES, NULL);
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}
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/* Data-structure to easily call the reply-handlers later */
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handler_t event_handlers[] = {
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&got_workspace_event,
&got_output_event
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};
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/*
* Called, when we get a message from i3
*
*/
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void got_data(struct ev_loop *loop, ev_io *watcher, int events) {
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printf("Got data!\n");
int fd = watcher->fd;
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/* First we only read the header, because we know it's length */
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uint32_t header_len = strlen(I3_IPC_MAGIC) + sizeof(uint32_t)*2;
char *header = malloc(header_len);
if (header == NULL) {
printf("ERROR: Could not allocate memory!\n");
exit(EXIT_FAILURE);
}
uint32_t rec = 0;
while (rec < header_len) {
int n = read(fd, header + rec, header_len - rec);
if (n == -1) {
printf("ERROR: read() failed!\n");
exit(EXIT_FAILURE);
}
if (n == 0) {
printf("ERROR: Nothing to read!\n");
exit(EXIT_FAILURE);
}
rec += n;
}
if (strncmp(header, I3_IPC_MAGIC, strlen(I3_IPC_MAGIC))) {
printf("ERROR: Wrong magic code: %.*s\n Expected: %s\n",
(int) strlen(I3_IPC_MAGIC),
header,
I3_IPC_MAGIC);
exit(EXIT_FAILURE);
}
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/* Know we read the rest of the message */
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char *walk = header + strlen(I3_IPC_MAGIC);
uint32_t size = *((uint32_t*) walk);
walk += sizeof(uint32_t);
uint32_t type = *((uint32_t*) walk);
char *buffer = malloc(size + 1);
if (buffer == NULL) {
printf("ERROR: Could not allocate memory!\n");
exit(EXIT_FAILURE);
}
rec = 0;
while (rec < size) {
int n = read(fd, buffer + rec, size - rec);
if (n == -1) {
printf("ERROR: read() failed!\n");
exit(EXIT_FAILURE);
}
if (n == 0) {
printf("ERROR: Nothing to read!\n");
exit(EXIT_FAILURE);
}
rec += n;
}
buffer[size] = '\0';
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/* And call the callback (indexed by the type) */
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if (type & (1 << 31)) {
type ^= 1 << 31;
event_handlers[type](buffer);
} else {
reply_handlers[type](buffer);
}
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FREE(header);
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FREE(buffer);
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}
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/*
* Sends a Message to i3.
* type must be a valid I3_IPC_MESSAGE_TYPE (see i3/ipc.h for further information)
*
*/
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int i3_send_msg(uint32_t type, const char *payload) {
uint32_t len = 0;
if (payload != NULL) {
len = strlen(payload);
}
uint32_t to_write = strlen (I3_IPC_MAGIC) + sizeof(uint32_t)*2 + len;
char *buffer = malloc(to_write);
if (buffer == NULL) {
printf("ERROR: Could not allocate memory\n");
exit(EXIT_FAILURE);
}
char *walk = buffer;
strncpy(buffer, I3_IPC_MAGIC, strlen(I3_IPC_MAGIC));
walk += strlen(I3_IPC_MAGIC);
memcpy(walk, &len, sizeof(uint32_t));
walk += sizeof(uint32_t);
memcpy(walk, &type, sizeof(uint32_t));
walk += sizeof(uint32_t);
strncpy(walk, payload, len);
uint32_t written = 0;
while (to_write > 0) {
int n = write(i3_connection->fd, buffer + written, to_write);
if (n == -1) {
printf("ERROR: write() failed!\n");
exit(EXIT_FAILURE);
}
to_write -= n;
written += n;
}
FREE(buffer);
return 1;
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}
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/*
* Initiate a connection to i3.
* socket-path must be a valid path to the ipc_socket of i3
*
*/
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int init_connection(const char *socket_path) {
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int sockfd = get_ipc_fd(socket_path);
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i3_connection = malloc(sizeof(ev_io));
ev_io_init(i3_connection, &got_data, sockfd, EV_READ);
ev_io_start(main_loop, i3_connection);
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return 1;
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}
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/*
* Subscribe to all the i3-events, we need
*
*/
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void subscribe_events() {
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i3_send_msg(I3_IPC_MESSAGE_TYPE_SUBSCRIBE, "[ \"workspace\", \"output\" ]");
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}