usbcore: remove unused bandwith-related code
This patch (as841) removes from usbcore a couple of support routines meant to help with bandwidth allocation. With the changes to uhci-hcd in the previous patch, these routines are no longer used anywhere. Also removed is the CONFIG_USB_BANDWIDTH option; it no longer does anything and is no longer needed since the HCDs now handle bandwidth issues correctly. Signed-off-by: Alan Stern <stern@rowland.harvard.edu> Signed-off-by: David Brownell <dbrownell@users.sourceforge.net> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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@ -33,19 +33,6 @@ config USB_DEVICEFS
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Most users want to say Y here.
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config USB_BANDWIDTH
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bool "Enforce USB bandwidth allocation (EXPERIMENTAL)"
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depends on USB && EXPERIMENTAL
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help
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If you say Y here, the USB subsystem enforces USB bandwidth
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allocation and will prevent some device opens from succeeding
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if they would cause USB bandwidth usage to go above 90% of
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the bus bandwidth.
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If you say N here, these conditions will cause warning messages
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about USB bandwidth usage to be logged and some devices or
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drivers may not work correctly.
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config USB_DYNAMIC_MINORS
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bool "Dynamic USB minor allocation (EXPERIMENTAL)"
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depends on USB && EXPERIMENTAL
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@ -45,8 +45,6 @@
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#include "hub.h"
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// #define USB_BANDWIDTH_MESSAGES
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/*-------------------------------------------------------------------------*/
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/*
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@ -891,136 +889,6 @@ long usb_calc_bus_time (int speed, int is_input, int isoc, int bytecount)
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}
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EXPORT_SYMBOL (usb_calc_bus_time);
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/*
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* usb_check_bandwidth():
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*
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* old_alloc is from host_controller->bandwidth_allocated in microseconds;
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* bustime is from calc_bus_time(), but converted to microseconds.
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*
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* returns <bustime in us> if successful,
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* or -ENOSPC if bandwidth request fails.
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*
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* FIXME:
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* This initial implementation does not use Endpoint.bInterval
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* in managing bandwidth allocation.
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* It probably needs to be expanded to use Endpoint.bInterval.
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* This can be done as a later enhancement (correction).
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*
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* This will also probably require some kind of
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* frame allocation tracking...meaning, for example,
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* that if multiple drivers request interrupts every 10 USB frames,
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* they don't all have to be allocated at
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* frame numbers N, N+10, N+20, etc. Some of them could be at
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* N+11, N+21, N+31, etc., and others at
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* N+12, N+22, N+32, etc.
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*
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* Similarly for isochronous transfers...
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*
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* Individual HCDs can schedule more directly ... this logic
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* is not correct for high speed transfers.
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*/
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int usb_check_bandwidth (struct usb_device *dev, struct urb *urb)
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{
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unsigned int pipe = urb->pipe;
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long bustime;
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int is_in = usb_pipein (pipe);
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int is_iso = usb_pipeisoc (pipe);
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int old_alloc = dev->bus->bandwidth_allocated;
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int new_alloc;
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bustime = NS_TO_US (usb_calc_bus_time (dev->speed, is_in, is_iso,
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usb_maxpacket (dev, pipe, !is_in)));
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if (is_iso)
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bustime /= urb->number_of_packets;
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new_alloc = old_alloc + (int) bustime;
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if (new_alloc > FRAME_TIME_MAX_USECS_ALLOC) {
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#ifdef DEBUG
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char *mode =
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#ifdef CONFIG_USB_BANDWIDTH
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"";
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#else
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"would have ";
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#endif
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dev_dbg (&dev->dev, "usb_check_bandwidth %sFAILED: %d + %ld = %d usec\n",
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mode, old_alloc, bustime, new_alloc);
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#endif
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#ifdef CONFIG_USB_BANDWIDTH
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bustime = -ENOSPC; /* report error */
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#endif
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}
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return bustime;
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}
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EXPORT_SYMBOL (usb_check_bandwidth);
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/**
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* usb_claim_bandwidth - records bandwidth for a periodic transfer
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* @dev: source/target of request
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* @urb: request (urb->dev == dev)
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* @bustime: bandwidth consumed, in (average) microseconds per frame
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* @isoc: true iff the request is isochronous
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*
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* Bus bandwidth reservations are recorded purely for diagnostic purposes.
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* HCDs are expected not to overcommit periodic bandwidth, and to record such
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* reservations whenever endpoints are added to the periodic schedule.
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*
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* FIXME averaging per-frame is suboptimal. Better to sum over the HCD's
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* entire periodic schedule ... 32 frames for OHCI, 1024 for UHCI, settable
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* for EHCI (256/512/1024 frames, default 1024) and have the bus expose how
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* large its periodic schedule is.
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*/
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void usb_claim_bandwidth (struct usb_device *dev, struct urb *urb, int bustime, int isoc)
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{
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dev->bus->bandwidth_allocated += bustime;
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if (isoc)
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dev->bus->bandwidth_isoc_reqs++;
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else
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dev->bus->bandwidth_int_reqs++;
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urb->bandwidth = bustime;
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#ifdef USB_BANDWIDTH_MESSAGES
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dev_dbg (&dev->dev, "bandwidth alloc increased by %d (%s) to %d for %d requesters\n",
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bustime,
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isoc ? "ISOC" : "INTR",
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dev->bus->bandwidth_allocated,
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dev->bus->bandwidth_int_reqs + dev->bus->bandwidth_isoc_reqs);
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#endif
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}
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EXPORT_SYMBOL (usb_claim_bandwidth);
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/**
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* usb_release_bandwidth - reverses effect of usb_claim_bandwidth()
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* @dev: source/target of request
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* @urb: request (urb->dev == dev)
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* @isoc: true iff the request is isochronous
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*
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* This records that previously allocated bandwidth has been released.
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* Bandwidth is released when endpoints are removed from the host controller's
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* periodic schedule.
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*/
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void usb_release_bandwidth (struct usb_device *dev, struct urb *urb, int isoc)
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{
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dev->bus->bandwidth_allocated -= urb->bandwidth;
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if (isoc)
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dev->bus->bandwidth_isoc_reqs--;
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else
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dev->bus->bandwidth_int_reqs--;
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#ifdef USB_BANDWIDTH_MESSAGES
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dev_dbg (&dev->dev, "bandwidth alloc reduced by %d (%s) to %d for %d requesters\n",
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urb->bandwidth,
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isoc ? "ISOC" : "INTR",
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dev->bus->bandwidth_allocated,
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dev->bus->bandwidth_int_reqs + dev->bus->bandwidth_isoc_reqs);
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#endif
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urb->bandwidth = 0;
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}
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EXPORT_SYMBOL (usb_release_bandwidth);
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/*-------------------------------------------------------------------------*/
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@ -1034,11 +902,6 @@ static void urb_unlink (struct urb *urb)
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{
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unsigned long flags;
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/* Release any periodic transfer bandwidth */
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if (urb->bandwidth)
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usb_release_bandwidth (urb->dev, urb,
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usb_pipeisoc (urb->pipe));
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/* clear all state linking urb to this dev (and hcd) */
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spin_lock_irqsave (&hcd_data_lock, flags);
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@ -308,10 +308,6 @@ extern void usb_destroy_configuration(struct usb_device *dev);
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#define NS_TO_US(ns) ((ns + 500L) / 1000L)
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/* convert & round nanoseconds to microseconds */
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extern void usb_claim_bandwidth (struct usb_device *dev, struct urb *urb,
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int bustime, int isoc);
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extern void usb_release_bandwidth (struct usb_device *dev, struct urb *urb,
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int isoc);
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/*
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* Full/low speed bandwidth allocation constants/support.
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@ -324,8 +320,6 @@ extern void usb_release_bandwidth (struct usb_device *dev, struct urb *urb,
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#define FRAME_TIME_MAX_BITS_ALLOC (90L * FRAME_TIME_BITS / 100L)
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#define FRAME_TIME_MAX_USECS_ALLOC (90L * FRAME_TIME_USECS / 100L)
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extern int usb_check_bandwidth (struct usb_device *dev, struct urb *urb);
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/*
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* Ceiling [nano/micro]seconds (typical) for that many bytes at high speed
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* ISO is a bit less, no ACK ... from USB 2.0 spec, 5.11.3 (and needed
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@ -235,7 +235,6 @@ int usb_submit_urb(struct urb *urb, gfp_t mem_flags)
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urb->status = -EINPROGRESS;
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urb->actual_length = 0;
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urb->bandwidth = 0;
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/* Lots of sanity checks, so HCDs can rely on clean data
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* and don't need to duplicate tests
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@ -1110,7 +1110,6 @@ struct urb
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struct kref kref; /* reference count of the URB */
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spinlock_t lock; /* lock for the URB */
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void *hcpriv; /* private data for host controller */
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int bandwidth; /* bandwidth for INT/ISO request */
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atomic_t use_count; /* concurrent submissions counter */
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u8 reject; /* submissions will fail */
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