wait_queue_head_t close_wait; /* wait for last close */
struct list_head read_pool;
+ int read_started;
+ int read_allocated;
struct list_head read_queue;
unsigned n_read;
struct tasklet_struct push;
struct list_head write_pool;
+ int write_started;
+ int write_allocated;
struct gs_buf port_write_buf;
wait_queue_head_t drain_wait; /* wait while writes drain */
struct usb_request *req;
int len;
+ if (port->write_started >= QUEUE_SIZE)
+ break;
+
req = list_entry(pool->next, struct usb_request, list);
len = gs_send_packet(port, req->buf, in->maxpacket);
if (len == 0) {
break;
}
+ port->write_started++;
+
/* abort immediately after disconnect */
if (!port->port_usb)
break;
{
struct list_head *pool = &port->read_pool;
struct usb_ep *out = port->port_usb->out;
- unsigned started = 0;
while (!list_empty(pool)) {
struct usb_request *req;
if (!tty)
break;
+ if (port->read_started >= QUEUE_SIZE)
+ break;
+
req = list_entry(pool->next, struct usb_request, list);
list_del(&req->list);
req->length = out->maxpacket;
list_add(&req->list, pool);
break;
}
- started++;
+ port->read_started++;
/* abort immediately after disconnect */
if (!port->port_usb)
break;
}
- return started;
+ return port->read_started;
}
/*
}
recycle:
list_move(&req->list, &port->read_pool);
+ port->read_started--;
}
/* Push from tty to ldisc; without low_latency set this is handled by
spin_lock(&port->port_lock);
list_add(&req->list, &port->write_pool);
+ port->write_started--;
switch (req->status) {
default:
spin_unlock(&port->port_lock);
}
-static void gs_free_requests(struct usb_ep *ep, struct list_head *head)
+static void gs_free_requests(struct usb_ep *ep, struct list_head *head,
+ int *allocated)
{
struct usb_request *req;
req = list_entry(head->next, struct usb_request, list);
list_del(&req->list);
gs_free_req(ep, req);
+ if (allocated)
+ (*allocated)--;
}
}
static int gs_alloc_requests(struct usb_ep *ep, struct list_head *head,
- void (*fn)(struct usb_ep *, struct usb_request *))
+ void (*fn)(struct usb_ep *, struct usb_request *),
+ int *allocated)
{
int i;
struct usb_request *req;
+ int n = allocated ? QUEUE_SIZE - *allocated : QUEUE_SIZE;
/* Pre-allocate up to QUEUE_SIZE transfers, but if we can't
* do quite that many this time, don't fail ... we just won't
* be as speedy as we might otherwise be.
*/
- for (i = 0; i < QUEUE_SIZE; i++) {
+ for (i = 0; i < n; i++) {
req = gs_alloc_req(ep, ep->maxpacket, GFP_ATOMIC);
if (!req)
return list_empty(head) ? -ENOMEM : 0;
req->complete = fn;
list_add_tail(&req->list, head);
+ if (allocated)
+ (*allocated)++;
}
return 0;
}
* configurations may use different endpoints with a given port;
* and high speed vs full speed changes packet sizes too.
*/
- status = gs_alloc_requests(ep, head, gs_read_complete);
+ status = gs_alloc_requests(ep, head, gs_read_complete,
+ &port->read_allocated);
if (status)
return status;
status = gs_alloc_requests(port->port_usb->in, &port->write_pool,
- gs_write_complete);
+ gs_write_complete, &port->write_allocated);
if (status) {
- gs_free_requests(ep, head);
+ gs_free_requests(ep, head, &port->read_allocated);
return status;
}
if (started) {
tty_wakeup(port->port_tty);
} else {
- gs_free_requests(ep, head);
- gs_free_requests(port->port_usb->in, &port->write_pool);
+ gs_free_requests(ep, head, &port->read_allocated);
+ gs_free_requests(port->port_usb->in, &port->write_pool,
+ &port->write_allocated);
status = -EIO;
}
spin_lock_irqsave(&port->port_lock, flags);
if (port->open_count == 0 && !port->openclose)
gs_buf_free(&port->port_write_buf);
- gs_free_requests(gser->out, &port->read_pool);
- gs_free_requests(gser->out, &port->read_queue);
- gs_free_requests(gser->in, &port->write_pool);
+ gs_free_requests(gser->out, &port->read_pool, NULL);
+ gs_free_requests(gser->out, &port->read_queue, NULL);
+ gs_free_requests(gser->in, &port->write_pool, NULL);
+
+ port->read_allocated = port->read_started =
+ port->write_allocated = port->write_started = 0;
+
spin_unlock_irqrestore(&port->port_lock, flags);
}