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xhci: use port structures instead of port arrays in xhci.c functions
get rid of port iomem arrays and use port structures in the following functions: xhci_find_raw_port_number() xhci_disable_port_wake_on_bits() xhci_set_usb2_hardware_lpm() xhci_all_ports_seen_u0() compliance_mode_recovery() Signed-off-by: Mathias Nyman <mathias.nyman@linux.intel.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -400,13 +400,15 @@ static void compliance_mode_recovery(struct timer_list *t)
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{
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struct xhci_hcd *xhci;
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struct usb_hcd *hcd;
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struct xhci_hub *rhub;
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u32 temp;
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int i;
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xhci = from_timer(xhci, t, comp_mode_recovery_timer);
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rhub = &xhci->usb3_rhub;
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for (i = 0; i < xhci->num_usb3_ports; i++) {
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temp = readl(xhci->usb3_ports[i]);
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for (i = 0; i < rhub->num_ports; i++) {
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temp = readl(rhub->ports[i]->addr);
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if ((temp & PORT_PLS_MASK) == USB_SS_PORT_LS_COMP_MOD) {
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/*
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* Compliance Mode Detected. Letting USB Core
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@ -426,7 +428,7 @@ static void compliance_mode_recovery(struct timer_list *t)
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}
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}
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if (xhci->port_status_u0 != ((1 << xhci->num_usb3_ports)-1))
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if (xhci->port_status_u0 != ((1 << rhub->num_ports) - 1))
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mod_timer(&xhci->comp_mode_recovery_timer,
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jiffies + msecs_to_jiffies(COMP_MODE_RCVRY_MSECS));
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}
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@ -483,7 +485,7 @@ static bool xhci_compliance_mode_recovery_timer_quirk_check(void)
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static int xhci_all_ports_seen_u0(struct xhci_hcd *xhci)
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{
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return (xhci->port_status_u0 == ((1 << xhci->num_usb3_ports)-1));
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return (xhci->port_status_u0 == ((1 << xhci->usb3_rhub.num_ports) - 1));
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}
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@ -812,33 +814,33 @@ static void xhci_clear_command_ring(struct xhci_hcd *xhci)
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static void xhci_disable_port_wake_on_bits(struct xhci_hcd *xhci)
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{
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struct xhci_port **ports;
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int port_index;
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__le32 __iomem **port_array;
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unsigned long flags;
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u32 t1, t2;
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spin_lock_irqsave(&xhci->lock, flags);
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/* disable usb3 ports Wake bits */
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port_index = xhci->num_usb3_ports;
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port_array = xhci->usb3_ports;
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port_index = xhci->usb3_rhub.num_ports;
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ports = xhci->usb3_rhub.ports;
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while (port_index--) {
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t1 = readl(port_array[port_index]);
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t1 = readl(ports[port_index]->addr);
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t1 = xhci_port_state_to_neutral(t1);
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t2 = t1 & ~PORT_WAKE_BITS;
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if (t1 != t2)
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writel(t2, port_array[port_index]);
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writel(t2, ports[port_index]->addr);
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}
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/* disable usb2 ports Wake bits */
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port_index = xhci->num_usb2_ports;
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port_array = xhci->usb2_ports;
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port_index = xhci->usb2_rhub.num_ports;
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ports = xhci->usb2_rhub.ports;
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while (port_index--) {
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t1 = readl(port_array[port_index]);
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t1 = readl(ports[port_index]->addr);
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t1 = xhci_port_state_to_neutral(t1);
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t2 = t1 & ~PORT_WAKE_BITS;
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if (t1 != t2)
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writel(t2, port_array[port_index]);
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writel(t2, ports[port_index]->addr);
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}
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spin_unlock_irqrestore(&xhci->lock, flags);
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@ -3976,18 +3978,10 @@ static int xhci_enable_device(struct usb_hcd *hcd, struct usb_device *udev)
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*/
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int xhci_find_raw_port_number(struct usb_hcd *hcd, int port1)
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{
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struct xhci_hcd *xhci = hcd_to_xhci(hcd);
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__le32 __iomem *base_addr = &xhci->op_regs->port_status_base;
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__le32 __iomem *addr;
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int raw_port;
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struct xhci_hub *rhub;
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if (hcd->speed < HCD_USB3)
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addr = xhci->usb2_ports[port1 - 1];
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else
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addr = xhci->usb3_ports[port1 - 1];
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raw_port = (addr - base_addr)/NUM_PORT_REGS + 1;
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return raw_port;
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rhub = xhci_get_rhub(hcd);
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return rhub->ports[port1 - 1]->hw_portnum + 1;
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}
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/*
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@ -4120,7 +4114,7 @@ static int xhci_set_usb2_hardware_lpm(struct usb_hcd *hcd,
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struct usb_device *udev, int enable)
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{
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struct xhci_hcd *xhci = hcd_to_xhci(hcd);
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__le32 __iomem **port_array;
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struct xhci_port **ports;
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__le32 __iomem *pm_addr, *hlpm_addr;
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u32 pm_val, hlpm_val, field;
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unsigned int port_num;
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@ -4141,11 +4135,11 @@ static int xhci_set_usb2_hardware_lpm(struct usb_hcd *hcd,
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spin_lock_irqsave(&xhci->lock, flags);
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port_array = xhci->usb2_ports;
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ports = xhci->usb2_rhub.ports;
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port_num = udev->portnum - 1;
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pm_addr = port_array[port_num] + PORTPMSC;
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pm_addr = ports[port_num]->addr + PORTPMSC;
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pm_val = readl(pm_addr);
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hlpm_addr = port_array[port_num] + PORTHLPMC;
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hlpm_addr = ports[port_num]->addr + PORTHLPMC;
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field = le32_to_cpu(udev->bos->ext_cap->bmAttributes);
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xhci_dbg(xhci, "%s port %d USB2 hardware LPM\n",
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