2010-12-06 03:51:58 +01:00
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#include <sys/socket.h>
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#include <sys/uio.h>
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#include <signal.h>
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#include <stdio.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <libubox/blob.h>
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#include <libubox/uloop.h>
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#include <libubox/usock.h>
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#include <libubox/list.h>
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#include "ubusd.h"
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static struct avl_tree clients;
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static struct ubus_msg_buf *ubus_msg_unshare(struct ubus_msg_buf *ub)
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{
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ub = realloc(ub, sizeof(*ub) + ub->len);
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if (!ub)
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return NULL;
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ub->refcount = 1;
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memcpy(ub + 1, ub->data, ub->len);
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ub->data = (void *) (ub + 1);
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return ub;
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}
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struct ubus_msg_buf *ubus_msg_ref(struct ubus_msg_buf *ub)
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{
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if (ub->refcount == ~0)
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return ubus_msg_unshare(ub);
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ub->refcount++;
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return ub;
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}
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struct ubus_msg_buf *ubus_msg_new(void *data, int len, bool shared)
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{
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struct ubus_msg_buf *ub;
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int buflen = sizeof(*ub);
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if (!shared)
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buflen += len;
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ub = calloc(1, buflen);
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if (!ub)
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return NULL;
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if (shared) {
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ub->refcount = ~0;
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ub->data = data;
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} else {
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ub->refcount = 1;
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ub->data = (void *) (ub + 1);
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if (data)
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memcpy(ub + 1, data, len);
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}
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ub->len = len;
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return ub;
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}
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void ubus_msg_free(struct ubus_msg_buf *ub)
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{
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switch (ub->refcount) {
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case 1:
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case ~0:
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free(ub);
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break;
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default:
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ub->refcount--;
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break;
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}
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}
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static int ubus_msg_writev(int fd, struct ubus_msg_buf *ub, int offset)
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{
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struct iovec iov[2];
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if (offset < sizeof(ub->hdr)) {
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iov[0].iov_base = ((char *) &ub->hdr) + offset;
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iov[0].iov_len = sizeof(ub->hdr) - offset;
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iov[1].iov_base = (char *) ub->data;
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iov[1].iov_len = ub->len;
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return writev(fd, iov, 2);
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} else {
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offset -= sizeof(ub->hdr);
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return write(fd, ((char *) ub->data) + offset, ub->len - offset);
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}
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}
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2011-02-05 20:50:08 +01:00
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static void ubus_msg_enqueue(struct ubus_client *cl, struct ubus_msg_buf *ub)
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{
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if (cl->tx_queue[cl->txq_tail])
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return;
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2011-02-06 01:45:21 +01:00
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cl->tx_queue[cl->txq_tail] = ubus_msg_ref(ub);
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2011-02-05 20:50:08 +01:00
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cl->txq_tail = (cl->txq_tail + 1) % ARRAY_SIZE(cl->tx_queue);
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}
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2010-12-06 03:51:58 +01:00
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/* takes the msgbuf reference */
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2011-02-05 20:50:08 +01:00
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void ubus_msg_send(struct ubus_client *cl, struct ubus_msg_buf *ub, bool free)
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2010-12-06 03:51:58 +01:00
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{
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int written;
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2011-02-05 20:50:08 +01:00
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if (!cl->tx_queue[cl->txq_cur]) {
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written = ubus_msg_writev(cl->sock.fd, ub, 0);
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if (written >= ub->len + sizeof(ub->hdr))
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goto out;
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if (written < 0)
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written = 0;
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2010-12-06 03:51:58 +01:00
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2011-02-05 20:50:08 +01:00
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cl->txq_ofs = written;
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2010-12-06 03:51:58 +01:00
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/* get an event once we can write to the socket again */
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uloop_fd_add(&cl->sock, ULOOP_READ | ULOOP_WRITE | ULOOP_EDGE_TRIGGER);
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}
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2011-02-05 20:50:08 +01:00
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ubus_msg_enqueue(cl, ub);
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2010-12-06 03:51:58 +01:00
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2011-02-05 20:50:08 +01:00
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out:
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if (free)
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ubus_msg_free(ub);
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}
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2010-12-06 03:51:58 +01:00
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2011-02-05 20:50:08 +01:00
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static struct ubus_msg_buf *ubus_msg_head(struct ubus_client *cl)
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{
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return cl->tx_queue[cl->txq_cur];
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}
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static void ubus_msg_dequeue(struct ubus_client *cl)
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{
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struct ubus_msg_buf *ub = ubus_msg_head(cl);
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if (!ub)
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return;
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ubus_msg_free(ub);
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cl->txq_ofs = 0;
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cl->tx_queue[cl->txq_cur] = NULL;
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cl->txq_cur = (cl->txq_cur + 1) % ARRAY_SIZE(cl->tx_queue);
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2010-12-06 03:51:58 +01:00
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}
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static void handle_client_disconnect(struct ubus_client *cl)
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{
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struct ubus_object *obj;
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while (!list_empty(&cl->objects)) {
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obj = list_first_entry(&cl->objects, struct ubus_object, list);
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ubusd_free_object(obj);
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}
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2011-02-05 20:50:08 +01:00
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while (ubus_msg_head(cl))
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ubus_msg_dequeue(cl);
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2010-12-06 03:51:58 +01:00
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ubus_free_id(&clients, &cl->id);
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uloop_fd_delete(&cl->sock);
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close(cl->sock.fd);
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free(cl);
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}
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static void client_cb(struct uloop_fd *sock, unsigned int events)
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{
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struct ubus_client *cl = container_of(sock, struct ubus_client, sock);
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struct ubus_msg_buf *ub;
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/* first try to tx more pending data */
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2011-02-05 20:50:08 +01:00
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while ((ub = ubus_msg_head(cl))) {
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2010-12-06 03:51:58 +01:00
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int written;
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2011-02-05 20:50:08 +01:00
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written = ubus_msg_writev(sock->fd, ub, cl->txq_ofs);
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2010-12-06 03:51:58 +01:00
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if (written < 0) {
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switch(errno) {
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case EINTR:
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case EAGAIN:
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break;
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default:
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goto disconnect;
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}
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break;
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}
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2011-02-05 20:50:08 +01:00
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cl->txq_ofs += written;
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if (cl->txq_ofs < ub->len + sizeof(ub->hdr))
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2010-12-06 03:51:58 +01:00
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break;
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2011-02-05 20:50:08 +01:00
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ubus_msg_dequeue(cl);
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2010-12-06 03:51:58 +01:00
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}
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/* prevent further ULOOP_WRITE events if we don't have data
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* to send anymore */
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2011-02-05 20:50:08 +01:00
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if (!ubus_msg_head(cl) && (events & ULOOP_WRITE))
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2010-12-06 03:51:58 +01:00
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uloop_fd_add(sock, ULOOP_READ | ULOOP_EDGE_TRIGGER);
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retry:
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if (!sock->eof && cl->pending_msg_offset < sizeof(cl->hdrbuf)) {
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int offset = cl->pending_msg_offset;
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int bytes;
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bytes = read(sock->fd, (char *)&cl->hdrbuf + offset, sizeof(cl->hdrbuf) - offset);
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if (bytes < 0)
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goto out;
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cl->pending_msg_offset += bytes;
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if (cl->pending_msg_offset < sizeof(cl->hdrbuf))
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goto out;
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if (blob_len(&cl->hdrbuf.data) + sizeof(cl->hdrbuf) > UBUS_MAX_MSGLEN)
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goto disconnect;
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cl->pending_msg = ubus_msg_new(NULL, blob_raw_len(&cl->hdrbuf.data), false);
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if (!cl->pending_msg)
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goto disconnect;
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memcpy(&cl->pending_msg->hdr, &cl->hdrbuf.hdr, sizeof(cl->hdrbuf.hdr));
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memcpy(cl->pending_msg->data, &cl->hdrbuf.data, sizeof(cl->hdrbuf.data));
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}
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ub = cl->pending_msg;
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if (ub) {
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int offset = cl->pending_msg_offset - sizeof(ub->hdr);
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int len = blob_raw_len(ub->data) - offset;
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int bytes = 0;
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if (len > 0) {
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bytes = read(sock->fd, (char *) ub->data + offset, len);
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if (bytes <= 0)
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goto out;
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}
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if (bytes < len) {
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cl->pending_msg_offset += bytes;
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goto out;
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}
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/* accept message */
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cl->pending_msg_offset = 0;
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cl->pending_msg = NULL;
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ubusd_receive_message(cl, ub);
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goto retry;
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}
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out:
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2011-02-05 20:50:08 +01:00
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if (!sock->eof || ubus_msg_head(cl))
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2010-12-06 03:51:58 +01:00
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return;
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disconnect:
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handle_client_disconnect(cl);
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}
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struct ubus_client *ubusd_get_client_by_id(uint32_t id)
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{
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struct ubus_id *clid;
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clid = ubus_find_id(&clients, id);
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if (!clid)
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return NULL;
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return container_of(clid, struct ubus_client, id);
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}
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static bool get_next_connection(int fd)
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{
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struct ubus_client *cl;
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int client_fd;
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client_fd = accept(fd, NULL, 0);
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if (client_fd < 0) {
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switch (errno) {
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case ECONNABORTED:
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case EINTR:
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return true;
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default:
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return false;
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}
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}
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cl = calloc(1, sizeof(*cl));
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cl->sock.fd = client_fd;
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INIT_LIST_HEAD(&cl->objects);
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2011-02-05 00:21:27 +01:00
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if (!ubus_alloc_id(&clients, &cl->id, 0))
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2010-12-06 03:51:58 +01:00
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goto error;
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cl->sock.cb = client_cb;
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uloop_fd_add(&cl->sock, ULOOP_READ | ULOOP_EDGE_TRIGGER);
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if (!ubusd_send_hello(cl))
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goto error_free;
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return true;
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error_free:
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ubus_free_id(&clients, &cl->id);
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error:
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close(cl->sock.fd);
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free(cl);
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return true;
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}
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static void server_cb(struct uloop_fd *fd, unsigned int events)
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{
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bool next;
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do {
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next = get_next_connection(fd->fd);
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} while (next);
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}
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static struct uloop_fd server_fd = {
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.cb = server_cb,
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};
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int main(int argc, char **argv)
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{
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int ret = 0;
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signal(SIGPIPE, SIG_IGN);
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ubus_init_id_tree(&clients);
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uloop_init();
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unlink(UBUS_UNIX_SOCKET);
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server_fd.fd = usock(USOCK_UNIX | USOCK_SERVER | USOCK_NONBLOCK, UBUS_UNIX_SOCKET, NULL);
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if (server_fd.fd < 0) {
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perror("usock");
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ret = -1;
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goto out;
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}
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uloop_fd_add(&server_fd, ULOOP_READ | ULOOP_EDGE_TRIGGER);
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uloop_run();
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out:
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uloop_done();
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return ret;
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}
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