return p;
}
-static void bufp_alloc(USBRedirDevice *dev, uint8_t *data, uint16_t len,
+static int bufp_alloc(USBRedirDevice *dev, uint8_t *data, uint16_t len,
uint8_t status, uint8_t ep, void *free_on_destroy)
{
struct buf_packet *bufp;
if (dev->endpoint[EP2I(ep)].bufpq_size >
dev->endpoint[EP2I(ep)].bufpq_target_size) {
free(data);
- return;
+ return -1;
}
dev->endpoint[EP2I(ep)].bufpq_dropping_packets = 0;
}
bufp->free_on_destroy = free_on_destroy;
QTAILQ_INSERT_TAIL(&dev->endpoint[EP2I(ep)].bufpq, bufp, next);
dev->endpoint[EP2I(ep)].bufpq_size++;
+ return 0;
}
static void bufp_free(USBRedirDevice *dev, struct buf_packet *bufp,
status = usb_redir_success;
free_on_destroy = NULL;
for (i = 0; i < data_len; i += len) {
+ int r;
if (len >= (data_len - i)) {
len = data_len - i;
status = buffered_bulk_packet->status;
free_on_destroy = data;
}
/* bufp_alloc also adds the packet to the ep queue */
- bufp_alloc(dev, data + i, len, status, ep, free_on_destroy);
+ r = bufp_alloc(dev, data + i, len, status, ep, free_on_destroy);
+ if (r) {
+ break;
+ }
}
if (dev->endpoint[EP2I(ep)].pending_async_packet) {