#include <linux/usb.h>
#include <linux/usb/ch11.h>
#include <linux/usb/hcd.h>
#include "usb.h"
struct usb_hub {
struct device *intfdev;
struct usb_device *hdev;
struct kref kref;
struct urb *urb;
u8 (*buffer)[8];
union {
struct usb_hub_status hub;
struct usb_port_status port;
} *status;
struct mutex status_mutex;
int error;
int nerrors;
unsigned long event_bits[1];
unsigned long change_bits[1];
unsigned long removed_bits[1];
unsigned long wakeup_bits[1];
unsigned long power_bits[1];
unsigned long child_usage_bits[1];
unsigned long warm_reset_bits[1];
#if USB_MAXCHILDREN > 31 /* 8*sizeof(unsigned long) - 1 */
#error event_bits[] is too short!
#endif
struct usb_hub_descriptor *descriptor;
struct usb_tt tt;
unsigned mA_per_port;
#ifdef CONFIG_PM
unsigned wakeup_enabled_descendants;
#endif
unsigned limited_power:1;
unsigned quiescing:1;
unsigned disconnected:1;
unsigned in_reset:1;
unsigned quirk_disable_autosuspend:1;
unsigned quirk_check_port_auto_suspend:1;
unsigned has_indicators:1;
u8 indicator[USB_MAXCHILDREN];
struct delayed_work leds;
struct delayed_work init_work;
struct work_struct events;
spinlock_t irq_urb_lock;
struct timer_list irq_urb_retry;
struct usb_port **ports;
struct list_head onboard_hub_devs;
};
struct usb_port {
struct usb_device *child;
struct device dev;
struct usb_dev_state *port_owner;
struct usb_port *peer;
struct dev_pm_qos_request *req;
enum usb_port_connect_type connect_type;
enum usb_device_state state;
struct kernfs_node *state_kn;
usb_port_location_t location;
struct mutex status_lock;
u32 over_current_count;
u8 portnum;
u32 quirks;
unsigned int early_stop:1;
unsigned int ignore_event:1;
unsigned int is_superspeed:1;
unsigned int usb3_lpm_u1_permit:1;
unsigned int usb3_lpm_u2_permit:1;
};
#define to_usb_port(_dev) \
container_of(_dev, struct usb_port, dev)
extern int usb_hub_create_port_device(struct usb_hub *hub,
int port1);
extern void usb_hub_remove_port_device(struct usb_hub *hub,
int port1);
extern int usb_hub_set_port_power(struct usb_device *hdev, struct usb_hub *hub,
int port1, bool set);
extern struct usb_hub *usb_hub_to_struct_hub(struct usb_device *hdev);
extern int hub_port_debounce(struct usb_hub *hub, int port1,
bool must_be_connected);
extern int usb_clear_port_feature(struct usb_device *hdev,
int port1, int feature);
extern int usb_hub_port_status(struct usb_hub *hub, int port1,
u16 *status, u16 *change);
extern int usb_port_is_power_on(struct usb_hub *hub, unsigned int portstatus);
static inline bool hub_is_port_power_switchable(struct usb_hub *hub)
{
__le16 hcs;
if (!hub)
return false;
hcs = hub->descriptor->wHubCharacteristics;
return (le16_to_cpu(hcs) & HUB_CHAR_LPSM) < HUB_CHAR_NO_LPSM;
}
static inline int hub_is_superspeed(struct usb_device *hdev)
{
return hdev->descriptor.bDeviceProtocol == USB_HUB_PR_SS;
}
static inline int hub_is_superspeedplus(struct usb_device *hdev)
{
return (hdev->descriptor.bDeviceProtocol == USB_HUB_PR_SS &&
le16_to_cpu(hdev->descriptor.bcdUSB) >= 0x0310 &&
hdev->bos && hdev->bos->ssp_cap);
}
static inline unsigned hub_power_on_good_delay(struct usb_hub *hub)
{
unsigned delay = hub->descriptor->bPwrOn2PwrGood * 2;
if (!hub->hdev->parent)
return delay;
else
return max(delay, 100U);
}
static inline int hub_port_debounce_be_connected(struct usb_hub *hub,
int port1)
{
return hub_port_debounce(hub, port1, true);
}
static inline int hub_port_debounce_be_stable(struct usb_hub *hub,
int port1)
{
return hub_port_debounce(hub, port1, false);
}