for (port = 0; port < uhci->rh_numports; ++port)
outw(0, uhci->io_addr + USBPORTSC1 + (port * 2));
- uhci->port_c_suspend = uhci->suspended_ports =
- uhci->resuming_ports = 0;
+ uhci->port_c_suspend = uhci->resuming_ports = 0;
uhci->rh_state = UHCI_RH_RESET;
uhci->is_stopped = UHCI_IS_STOPPED;
uhci_to_hcd(uhci)->state = HC_STATE_HALT;
{
int status;
- if (test_bit(port, &uhci->suspended_ports)) {
+ if (inw(port_addr) & (USBPORTSC_SUSP | USBPORTSC_RD)) {
CLR_RH_PORTSTAT(USBPORTSC_SUSP | USBPORTSC_RD);
- clear_bit(port, &uhci->suspended_ports);
- clear_bit(port, &uhci->resuming_ports);
- set_bit(port, &uhci->port_c_suspend);
+ if (test_bit(port, &uhci->resuming_ports))
+ set_bit(port, &uhci->port_c_suspend);
/* The controller won't actually turn off the RD bit until
* it has had a chance to send a low-speed EOP sequence,
* slightly longer for good luck. */
udelay(4);
}
+ clear_bit(port, &uhci->resuming_ports);
}
/* Wait for the UHCI controller in HP's iLO2 server management chip.
wPortChange |= USB_PORT_STAT_C_SUSPEND;
lstatus |= 1;
}
- if (test_bit(port, &uhci->suspended_ports))
- lstatus |= 2;
if (test_bit(port, &uhci->resuming_ports))
lstatus |= 4;
switch (wValue) {
case USB_PORT_FEAT_SUSPEND:
- set_bit(port, &uhci->suspended_ports);
SET_RH_PORTSTAT(USBPORTSC_SUSP);
OK(0);
case USB_PORT_FEAT_RESET:
CLR_RH_PORTSTAT(USBPORTSC_PEC);
OK(0);
case USB_PORT_FEAT_SUSPEND:
- if (test_bit(port, &uhci->suspended_ports) &&
- !test_and_set_bit(port,
+ if (!(inw(port_addr) & USBPORTSC_SUSP)) {
+
+ /* Make certain the port isn't suspended */
+ uhci_finish_suspend(uhci, port, port_addr);
+ } else if (!test_and_set_bit(port,
&uhci->resuming_ports)) {
SET_RH_PORTSTAT(USBPORTSC_RD);