static struct fdt_usb port[USB_PORTS_MAX]; /* List of valid USB ports */
static unsigned port_count; /* Number of available ports */
-static int port_current; /* Current port (-1 = none) */
/*
* This table has USB timing parameters for each Oscillator frequency we
return 0;
}
-int tegrausb_start_port(unsigned portnum, u32 *hccr, u32 *hcor)
+int tegrausb_start_port(int portnum, u32 *hccr, u32 *hcor)
{
struct usb_ctlr *usbctlr;
if (portnum >= port_count)
return -1;
- tegrausb_stop_port();
set_host_mode(&port[portnum]);
usbctlr = port[portnum].reg;
*hccr = (u32)&usbctlr->cap_length;
*hcor = (u32)&usbctlr->usb_cmd;
- port_current = portnum;
return 0;
}
-int tegrausb_stop_port(void)
+int tegrausb_stop_port(int portnum)
{
struct usb_ctlr *usbctlr;
- if (port_current == -1)
- return -1;
-
- usbctlr = port[port_current].reg;
+ usbctlr = port[portnum].reg;
/* Stop controller */
writel(0, &usbctlr->usb_cmd);
/* Initiate controller reset */
writel(2, &usbctlr->usb_cmd);
udelay(1000);
- port_current = -1;
+
return 0;
}
return -1;
set_host_mode(&config);
}
- port_current = -1;
return 0;
}
* @param hcor returns start address of EHCI HCOR registers
* @return 0 if ok, -1 on error (generally invalid port number)
*/
-int tegrausb_start_port(unsigned portnum, u32 *hccr, u32 *hcor);
+int tegrausb_start_port(int portnum, u32 *hccr, u32 *hcor);
/**
* Stop the current port
*
* @return 0 if ok, -1 if no port was active
*/
-int tegrausb_stop_port(void);
+int tegrausb_stop_port(int portnum);
#endif /* _TEGRA_USB_H_ */
* Select the first port, as we don't have a way of selecting others
* yet
*/
- if (tegrausb_start_port(0, &our_hccr, &our_hcor))
+ if (tegrausb_start_port(index, &our_hccr, &our_hcor))
return -1;
*hccr = (struct ehci_hccr *)our_hccr;
*/
int ehci_hcd_stop(int index)
{
- tegrausb_stop_port();
- return 0;
+ return tegrausb_stop_port(index);
}