return ret;
}
+static struct ipath_portdata *create_portdata0(struct ipath_devdata *dd)
+{
+ struct ipath_portdata *pd = NULL;
+
+ pd = kzalloc(sizeof(*pd), GFP_KERNEL);
+ if (pd) {
+ pd->port_dd = dd;
+ pd->port_cnt = 1;
+ /* The port 0 pkey table is used by the layer interface. */
+ pd->port_pkeys[0] = IPATH_DEFAULT_P_KEY;
+ }
+ return pd;
+}
+
static int init_chip_first(struct ipath_devdata *dd,
struct ipath_portdata **pdp)
{
goto done;
}
- dd->ipath_pd[0] = kzalloc(sizeof(*pd), GFP_KERNEL);
+ pd = create_portdata0(dd);
- if (!dd->ipath_pd[0]) {
+ if (!pd) {
ipath_dev_err(dd, "Unable to allocate portdata for port "
"0, failing\n");
ret = -ENOMEM;
goto done;
}
- pd = dd->ipath_pd[0];
- pd->port_dd = dd;
- pd->port_port = 0;
- pd->port_cnt = 1;
- /* The port 0 pkey table is used by the layer interface. */
- pd->port_pkeys[0] = IPATH_DEFAULT_P_KEY;
+ dd->ipath_pd[0] = pd;
+
dd->ipath_rcvtidcnt =
ipath_read_kreg32(dd, dd->ipath_kregs->kr_rcvtidcnt);
dd->ipath_rcvtidbase =
* Set up the port 0 (kernel) rcvhdr q and egr TIDs. If doing
* re-init, the simplest way to handle this is to free
* existing, and re-allocate.
+ * Need to re-create rest of port 0 portdata as well.
*/
if (reinit) {
- struct ipath_portdata *pd = dd->ipath_pd[0];
- dd->ipath_pd[0] = NULL;
- ipath_free_pddata(dd, pd);
+ /* Alloc and init new ipath_portdata for port0,
+ * Then free old pd. Could lead to fragmentation, but also
+ * makes later support for hot-swap easier.
+ */
+ struct ipath_portdata *npd;
+ npd = create_portdata0(dd);
+ if (npd) {
+ ipath_free_pddata(dd, pd);
+ dd->ipath_pd[0] = pd = npd;
+ } else {
+ ipath_dev_err(dd, "Unable to allocate portdata for"
+ " port 0, failing\n");
+ ret = -ENOMEM;
+ goto done;
+ }
}
dd->ipath_f_tidtemplate(dd);
ret = ipath_create_rcvhdrq(dd, pd);