Commit 393e2146 authored by Aaro Koskinen's avatar Aaro Koskinen Committed by Greg Kroah-Hartman

staging: octeon-usb: call port change callback directly

Call port change callback directly.
Signed-off-by: default avatarAaro Koskinen <aaro.koskinen@iki.fi>
Signed-off-by: default avatarGreg Kroah-Hartman <gregkh@linuxfoundation.org>
parent 29a202fa
......@@ -213,18 +213,11 @@ struct cvmx_usb_iso_packet {
* if the transfer fails or is canceled.
* The status parameter will contain
* details of why he callback was called.
* @CVMX_USB_CALLBACK_PORT_CHANGED: The status of the port changed. For
* example, someone may have plugged a
* device in. The status parameter
* contains CVMX_USB_COMPLETE_SUCCESS. Use
* cvmx_usb_get_status() to get the new
* port status.
* @__CVMX_USB_CALLBACK_END: Do not use. Used internally for array
* bounds.
*/
enum cvmx_usb_callback {
CVMX_USB_CALLBACK_TRANSFER_COMPLETE,
CVMX_USB_CALLBACK_PORT_CHANGED,
__CVMX_USB_CALLBACK_END
};
......@@ -245,8 +238,8 @@ struct cvmx_usb_state;
* with a transfer.
* - Actual number of bytes transfer.
* - user_data = The user pointer supplied to the
* function cvmx_usb_submit() or
* cvmx_usb_register_callback() */
* function cvmx_usb_submit().
*/
typedef void (*cvmx_usb_callback_func_t)(struct cvmx_usb_state *usb,
enum cvmx_usb_callback reason,
enum cvmx_usb_complete status,
......@@ -490,8 +483,6 @@ struct cvmx_usb_tx_fifo {
* free_transaction_tail: List of free transactions tail.
* pipe: Storage for pipes.
* transaction: Storage for transactions.
* callback: User global callbacks.
* callback_data: User data for each callback.
* indent: Used by debug output to indent functions.
* port_status: Last port status used for change notification.
* free_pipes: List of all pipes that are currently closed.
......@@ -510,8 +501,6 @@ struct cvmx_usb_state {
struct cvmx_usb_transaction *free_transaction_tail;
struct cvmx_usb_pipe pipe[MAX_PIPES];
struct cvmx_usb_transaction transaction[MAX_TRANSACTIONS];
cvmx_usb_callback_func_t callback[__CVMX_USB_CALLBACK_END];
void *callback_data[__CVMX_USB_CALLBACK_END];
int indent;
struct cvmx_usb_port_status port_status;
struct cvmx_usb_pipe_list free_pipes;
......@@ -2202,8 +2191,8 @@ static void __cvmx_usb_perform_callback(struct cvmx_usb_state *usb,
enum cvmx_usb_callback reason,
enum cvmx_usb_complete complete_code)
{
cvmx_usb_callback_func_t callback = usb->callback[reason];
void *user_data = usb->callback_data[reason];
cvmx_usb_callback_func_t callback = NULL;
void *user_data;
int submit_handle = -1;
int pipe_handle = -1;
int bytes_transferred = 0;
......@@ -2408,10 +2397,8 @@ static int __cvmx_usb_submit_transaction(struct cvmx_usb_state *usb,
* function isn't an error, then this function
* is guaranteed to be called when the
* transaction completes. If this parameter is
* NULL, then the generic callback registered
* through cvmx_usb_register_callback is
* called. If both are NULL, then there is no
* way to know when a transaction completes.
* NULL, then there is no way to know when a transaction
* completes.
* @user_data: User supplied data returned when the
* callback is called. This is only used if
* callback in not NULL.
......@@ -2464,10 +2451,8 @@ static int cvmx_usb_submit_bulk(struct cvmx_usb_state *usb, int pipe_handle,
* function isn't an error, then this function
* is guaranteed to be called when the
* transaction completes. If this parameter is
* NULL, then the generic callback registered
* through cvmx_usb_register_callback is
* called. If both are NULL, then there is no
* way to know when a transaction completes.
* NULL, then there is no way to know when a transaction
* completes.
* @user_data: User supplied data returned when the
* callback is called. This is only used if
* callback in not NULL.
......@@ -2525,10 +2510,8 @@ static int cvmx_usb_submit_interrupt(struct cvmx_usb_state *usb,
* function isn't an error, then this function
* is guaranteed to be called when the
* transaction completes. If this parameter is
* NULL, then the generic callback registered
* through cvmx_usb_register_callback is
* called. If both are NULL, then there is no
* way to know when a transaction completes.
* NULL, then there is no way to know when a transaction
* completes.
* @user_data: User supplied data returned when the
* callback is called. This is only used if
* callback in not NULL.
......@@ -2600,10 +2583,8 @@ static int cvmx_usb_submit_control(struct cvmx_usb_state *usb,
* function isn't an error, then this function
* is guaranteed to be called when the
* transaction completes. If this parameter is
* NULL, then the generic callback registered
* through cvmx_usb_register_callback is
* called. If both are NULL, then there is no
* way to know when a transaction completes.
* NULL, then there is no way to know when a transaction
* completes.
* @user_data: User supplied data returned when the
* callback is called. This is only used if
* callback in not NULL.
......@@ -2776,34 +2757,6 @@ static int cvmx_usb_close_pipe(struct cvmx_usb_state *usb, int pipe_handle)
return 0;
}
/**
* Register a function to be called when various USB events occur.
*
* @usb: USB device state populated by cvmx_usb_initialize().
* @reason: Which event to register for.
* @callback: Function to call when the event occurs.
* @user_data: User data parameter to the function.
*
* Returns: 0 or a negative error code.
*/
static int cvmx_usb_register_callback(struct cvmx_usb_state *usb,
enum cvmx_usb_callback reason,
cvmx_usb_callback_func_t callback,
void *user_data)
{
if (unlikely(reason >= __CVMX_USB_CALLBACK_END))
return -EINVAL;
if (unlikely(!callback))
return -EINVAL;
usb->callback[reason] = callback;
usb->callback_data[reason] = user_data;
return 0;
}
/**
* Get the current USB protocol level frame number. The frame
* number is always in the range of 0-0x7ff.
......@@ -3264,6 +3217,24 @@ static int __cvmx_usb_poll_channel(struct cvmx_usb_state *usb, int channel)
return 0;
}
static inline struct octeon_hcd *cvmx_usb_to_octeon(struct cvmx_usb_state *p)
{
return container_of(p, struct octeon_hcd, usb);
}
static inline struct usb_hcd *octeon_to_hcd(struct octeon_hcd *p)
{
return container_of((void *)p, struct usb_hcd, hcd_priv);
}
static void octeon_usb_port_callback(struct cvmx_usb_state *usb)
{
struct octeon_hcd *priv = cvmx_usb_to_octeon(usb);
spin_unlock(&priv->lock);
usb_hcd_poll_rh_status(octeon_to_hcd(priv));
spin_lock(&priv->lock);
}
/**
* Poll the USB block for status and call all needed callback
......@@ -3331,9 +3302,7 @@ static int cvmx_usb_poll(struct cvmx_usb_state *usb)
*
* Call the user's port callback
*/
__cvmx_usb_perform_callback(usb, NULL, NULL,
CVMX_USB_CALLBACK_PORT_CHANGED,
CVMX_USB_COMPLETE_SUCCESS);
octeon_usb_port_callback(usb);
/* Clear the port change bits */
usbc_hprt.u32 = __cvmx_usb_read_csr32(usb, CVMX_USBCX_HPRT(usb->index));
usbc_hprt.s.prtena = 0;
......@@ -3374,16 +3343,6 @@ static inline struct octeon_hcd *hcd_to_octeon(struct usb_hcd *hcd)
return (struct octeon_hcd *)(hcd->hcd_priv);
}
static inline struct usb_hcd *octeon_to_hcd(struct octeon_hcd *p)
{
return container_of((void *)p, struct usb_hcd, hcd_priv);
}
static inline struct octeon_hcd *cvmx_usb_to_octeon(struct cvmx_usb_state *p)
{
return container_of(p, struct octeon_hcd, usb);
}
static irqreturn_t octeon_usb_irq(struct usb_hcd *hcd)
{
struct octeon_hcd *priv = hcd_to_octeon(hcd);
......@@ -3395,43 +3354,14 @@ static irqreturn_t octeon_usb_irq(struct usb_hcd *hcd)
return IRQ_HANDLED;
}
static void octeon_usb_port_callback(struct cvmx_usb_state *usb,
enum cvmx_usb_callback reason,
enum cvmx_usb_complete status,
int pipe_handle,
int submit_handle,
int bytes_transferred,
void *user_data)
{
struct octeon_hcd *priv = cvmx_usb_to_octeon(usb);
spin_unlock(&priv->lock);
usb_hcd_poll_rh_status(octeon_to_hcd(priv));
spin_lock(&priv->lock);
}
static int octeon_usb_start(struct usb_hcd *hcd)
{
struct octeon_hcd *priv = hcd_to_octeon(hcd);
unsigned long flags;
hcd->state = HC_STATE_RUNNING;
spin_lock_irqsave(&priv->lock, flags);
cvmx_usb_register_callback(&priv->usb, CVMX_USB_CALLBACK_PORT_CHANGED,
octeon_usb_port_callback, NULL);
spin_unlock_irqrestore(&priv->lock, flags);
return 0;
}
static void octeon_usb_stop(struct usb_hcd *hcd)
{
struct octeon_hcd *priv = hcd_to_octeon(hcd);
unsigned long flags;
spin_lock_irqsave(&priv->lock, flags);
cvmx_usb_register_callback(&priv->usb, CVMX_USB_CALLBACK_PORT_CHANGED,
NULL, NULL);
spin_unlock_irqrestore(&priv->lock, flags);
hcd->state = HC_STATE_HALT;
}
......
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