Implement nonblocking IO in IPC server
Added client write buffer and handler for writable status on client socket.
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e12d1cf003
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1c5a96c112
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@ -40,11 +40,15 @@ static const char ipc_magic[] = {'i', '3', '-', 'i', 'p', 'c'};
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struct ipc_client {
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struct ipc_client {
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struct wlc_event_source *event_source;
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struct wlc_event_source *event_source;
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struct wlc_event_source *writable_event_source;
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int fd;
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int fd;
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uint32_t payload_length;
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uint32_t payload_length;
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uint32_t security_policy;
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uint32_t security_policy;
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enum ipc_command_type current_command;
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enum ipc_command_type current_command;
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enum ipc_command_type subscribed_events;
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enum ipc_command_type subscribed_events;
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size_t write_buffer_len;
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size_t write_buffer_size;
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char *write_buffer;
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};
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};
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static list_t *ipc_get_pixel_requests = NULL;
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static list_t *ipc_get_pixel_requests = NULL;
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@ -58,6 +62,7 @@ struct get_pixels_request {
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struct sockaddr_un *ipc_user_sockaddr(void);
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struct sockaddr_un *ipc_user_sockaddr(void);
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int ipc_handle_connection(int fd, uint32_t mask, void *data);
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int ipc_handle_connection(int fd, uint32_t mask, void *data);
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int ipc_client_handle_readable(int client_fd, uint32_t mask, void *data);
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int ipc_client_handle_readable(int client_fd, uint32_t mask, void *data);
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int ipc_client_handle_writable(int client_fd, uint32_t mask, void *data);
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void ipc_client_disconnect(struct ipc_client *client);
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void ipc_client_disconnect(struct ipc_client *client);
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void ipc_client_handle_command(struct ipc_client *client);
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void ipc_client_handle_command(struct ipc_client *client);
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bool ipc_send_reply(struct ipc_client *client, const char *payload, uint32_t payload_length);
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bool ipc_send_reply(struct ipc_client *client, const char *payload, uint32_t payload_length);
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@ -168,6 +173,12 @@ int ipc_handle_connection(int fd, uint32_t mask, void *data) {
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close(client_fd);
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close(client_fd);
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return 0;
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return 0;
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}
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}
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if ((flags = fcntl(client_fd, F_GETFL)) == -1
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|| fcntl(client_fd, F_SETFL, flags|O_NONBLOCK) == -1) {
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sway_log_errno(L_ERROR, "Unable to set NONBLOCK on IPC client socket");
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close(client_fd);
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return 0;
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}
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struct ipc_client* client = malloc(sizeof(struct ipc_client));
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struct ipc_client* client = malloc(sizeof(struct ipc_client));
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if (!client) {
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if (!client) {
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@ -179,10 +190,22 @@ int ipc_handle_connection(int fd, uint32_t mask, void *data) {
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client->fd = client_fd;
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client->fd = client_fd;
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client->subscribed_events = 0;
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client->subscribed_events = 0;
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client->event_source = wlc_event_loop_add_fd(client_fd, WLC_EVENT_READABLE, ipc_client_handle_readable, client);
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client->event_source = wlc_event_loop_add_fd(client_fd, WLC_EVENT_READABLE, ipc_client_handle_readable, client);
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client->writable_event_source = NULL;
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client->write_buffer_size = 128;
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client->write_buffer_len = 0;
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client->write_buffer = malloc(client->write_buffer_size);
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if (!client->write_buffer) {
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sway_log(L_ERROR, "Unable to allocate ipc client write buffer");
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close(client_fd);
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return 0;
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}
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pid_t pid = get_client_pid(client->fd);
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pid_t pid = get_client_pid(client->fd);
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client->security_policy = get_ipc_policy_mask(pid);
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client->security_policy = get_ipc_policy_mask(pid);
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sway_log(L_DEBUG, "New client: fd %d, pid %d", client_fd, pid);
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list_add(ipc_client_list, client);
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list_add(ipc_client_list, client);
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return 0;
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return 0;
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@ -205,6 +228,8 @@ int ipc_client_handle_readable(int client_fd, uint32_t mask, void *data) {
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return 0;
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return 0;
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}
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}
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sway_log(L_DEBUG, "Client %d readable", client->fd);
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int read_available;
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int read_available;
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if (ioctl(client_fd, FIONREAD, &read_available) == -1) {
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if (ioctl(client_fd, FIONREAD, &read_available) == -1) {
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sway_log_errno(L_INFO, "Unable to read IPC socket buffer size");
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sway_log_errno(L_INFO, "Unable to read IPC socket buffer size");
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@ -226,6 +251,7 @@ int ipc_client_handle_readable(int client_fd, uint32_t mask, void *data) {
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uint8_t buf[ipc_header_size];
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uint8_t buf[ipc_header_size];
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uint32_t *buf32 = (uint32_t*)(buf + sizeof(ipc_magic));
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uint32_t *buf32 = (uint32_t*)(buf + sizeof(ipc_magic));
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// Should be fully available, because read_available >= ipc_header_size
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ssize_t received = recv(client_fd, buf, ipc_header_size, 0);
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ssize_t received = recv(client_fd, buf, ipc_header_size, 0);
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if (received == -1) {
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if (received == -1) {
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sway_log_errno(L_INFO, "Unable to receive header from IPC client");
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sway_log_errno(L_INFO, "Unable to receive header from IPC client");
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@ -249,6 +275,48 @@ int ipc_client_handle_readable(int client_fd, uint32_t mask, void *data) {
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return 0;
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return 0;
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}
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}
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int ipc_client_handle_writable(int client_fd, uint32_t mask, void *data) {
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struct ipc_client *client = data;
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if (mask & WLC_EVENT_ERROR) {
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sway_log(L_ERROR, "IPC Client socket error, removing client");
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ipc_client_disconnect(client);
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return 0;
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}
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if (mask & WLC_EVENT_HANGUP) {
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sway_log(L_DEBUG, "Client %d hung up", client->fd);
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ipc_client_disconnect(client);
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return 0;
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}
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if (client->write_buffer_len <= 0) {
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return 0;
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}
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sway_log(L_DEBUG, "Client %d writable", client->fd);
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ssize_t written = write(client->fd, client->write_buffer, client->write_buffer_len);
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if (written == -1 && errno == EAGAIN) {
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return 0;
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} else if (written == -1) {
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sway_log_errno(L_INFO, "Unable to send data from queue to IPC client");
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ipc_client_disconnect(client);
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return 0;
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}
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memmove(client->write_buffer, client->write_buffer + written, client->write_buffer_len - written);
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client->write_buffer_len -= written;
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if (client->write_buffer_len == 0 && client->writable_event_source) {
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wlc_event_source_remove(client->writable_event_source);
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client->writable_event_source = NULL;
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}
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return 0;
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}
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void ipc_client_disconnect(struct ipc_client *client) {
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void ipc_client_disconnect(struct ipc_client *client) {
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if (!sway_assert(client != NULL, "client != NULL")) {
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if (!sway_assert(client != NULL, "client != NULL")) {
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return;
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return;
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@ -260,9 +328,13 @@ void ipc_client_disconnect(struct ipc_client *client) {
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sway_log(L_INFO, "IPC Client %d disconnected", client->fd);
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sway_log(L_INFO, "IPC Client %d disconnected", client->fd);
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wlc_event_source_remove(client->event_source);
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wlc_event_source_remove(client->event_source);
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if (client->writable_event_source) {
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wlc_event_source_remove(client->writable_event_source);
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}
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int i = 0;
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int i = 0;
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while (i < ipc_client_list->length && ipc_client_list->items[i] != client) i++;
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while (i < ipc_client_list->length && ipc_client_list->items[i] != client) i++;
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list_del(ipc_client_list, i);
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list_del(ipc_client_list, i);
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free(client->write_buffer);
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close(client->fd);
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close(client->fd);
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free(client);
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free(client);
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}
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}
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@ -334,6 +406,7 @@ void ipc_client_handle_command(struct ipc_client *client) {
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return;
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return;
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}
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}
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if (client->payload_length > 0) {
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if (client->payload_length > 0) {
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// Payload should be fully available
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ssize_t received = recv(client->fd, buf, client->payload_length, 0);
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ssize_t received = recv(client->fd, buf, client->payload_length, 0);
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if (received == -1)
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if (received == -1)
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{
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{
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@ -590,17 +663,35 @@ bool ipc_send_reply(struct ipc_client *client, const char *payload, uint32_t pay
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data32[0] = payload_length;
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data32[0] = payload_length;
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data32[1] = client->current_command;
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data32[1] = client->current_command;
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if (write(client->fd, data, ipc_header_size) == -1) {
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while (client->write_buffer_len + ipc_header_size + payload_length >=
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sway_log_errno(L_INFO, "Unable to send header to IPC client");
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client->write_buffer_size) {
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client->write_buffer_size *= 2;
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}
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if (client->write_buffer_size > (1 << 22)) { // 4 MB
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sway_log(L_ERROR, "Client write buffer too big, disconnecting client");
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ipc_client_disconnect(client);
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return false;
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return false;
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}
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}
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if (write(client->fd, payload, payload_length) == -1) {
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char *new_buffer = realloc(client->write_buffer, client->write_buffer_size);
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sway_log_errno(L_INFO, "Unable to send payload to IPC client");
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if (!new_buffer) {
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sway_log(L_ERROR, "Unable to reallocate ipc client write buffer");
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ipc_client_disconnect(client);
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return false;
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return false;
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}
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}
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client->write_buffer = new_buffer;
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sway_log(L_DEBUG, "Send IPC reply: %s", payload);
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memcpy(client->write_buffer + client->write_buffer_len, data, ipc_header_size);
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client->write_buffer_len += ipc_header_size;
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memcpy(client->write_buffer + client->write_buffer_len, payload, payload_length);
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client->write_buffer_len += payload_length;
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if (!client->writable_event_source) {
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client->writable_event_source = wlc_event_loop_add_fd(client->fd, WLC_EVENT_WRITABLE, ipc_client_handle_writable, client);
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}
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sway_log(L_DEBUG, "Added IPC reply to client %d queue: %s", client->fd, payload);
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return true;
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return true;
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}
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}
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