ehci-sched.c 62.4 KB
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/*
 * Copyright (c) 2001-2004 by David Brownell
 * Copyright (c) 2003 Michal Sojka, for high-speed iso transfers
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 *
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 * This program is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License as published by the
 * Free Software Foundation; either version 2 of the License, or (at your
 * option) any later version.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
 * or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software Foundation,
 * Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
 */

/* this file is part of ehci-hcd.c */

/*-------------------------------------------------------------------------*/

/*
 * EHCI scheduled transaction support:  interrupt, iso, split iso
 * These are called "periodic" transactions in the EHCI spec.
 *
 * Note that for interrupt transfers, the QH/QTD manipulation is shared
 * with the "asynchronous" transaction support (control/bulk transfers).
 * The only real difference is in how interrupt transfers are scheduled.
 *
 * For ISO, we make an "iso_stream" head to serve the same role as a QH.
 * It keeps track of every ITD (or SITD) that's linked, and holds enough
 * pre-calculated schedule data to make appending to the queue be quick.
 */

static int ehci_get_frame (struct usb_hcd *hcd);

/*
 * periodic_next_shadow - return "next" pointer on shadow list
 * @periodic: host pointer to qh/itd/sitd
 * @tag: hardware tag for type of this record
 */
static union ehci_shadow *
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periodic_next_shadow(struct ehci_hcd *ehci, union ehci_shadow *periodic,
		__hc32 tag)
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{
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	switch (hc32_to_cpu(ehci, tag)) {
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	case Q_TYPE_QH:
		return &periodic->qh->qh_next;
	case Q_TYPE_FSTN:
		return &periodic->fstn->fstn_next;
	case Q_TYPE_ITD:
		return &periodic->itd->itd_next;
	// case Q_TYPE_SITD:
	default:
		return &periodic->sitd->sitd_next;
	}
}

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static __hc32 *
shadow_next_periodic(struct ehci_hcd *ehci, union ehci_shadow *periodic,
		__hc32 tag)
{
	switch (hc32_to_cpu(ehci, tag)) {
	/* our ehci_shadow.qh is actually software part */
	case Q_TYPE_QH:
		return &periodic->qh->hw->hw_next;
	/* others are hw parts */
	default:
		return periodic->hw_next;
	}
}

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/* caller must hold ehci->lock */
static void periodic_unlink (struct ehci_hcd *ehci, unsigned frame, void *ptr)
{
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	union ehci_shadow	*prev_p = &ehci->pshadow[frame];
	__hc32			*hw_p = &ehci->periodic[frame];
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	union ehci_shadow	here = *prev_p;

	/* find predecessor of "ptr"; hw and shadow lists are in sync */
	while (here.ptr && here.ptr != ptr) {
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		prev_p = periodic_next_shadow(ehci, prev_p,
				Q_NEXT_TYPE(ehci, *hw_p));
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		hw_p = shadow_next_periodic(ehci, &here,
				Q_NEXT_TYPE(ehci, *hw_p));
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		here = *prev_p;
	}
	/* an interrupt entry (at list end) could have been shared */
	if (!here.ptr)
		return;

	/* update shadow and hardware lists ... the old "next" pointers
	 * from ptr may still be in use, the caller updates them.
	 */
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	*prev_p = *periodic_next_shadow(ehci, &here,
			Q_NEXT_TYPE(ehci, *hw_p));
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	if (!ehci->use_dummy_qh ||
	    *shadow_next_periodic(ehci, &here, Q_NEXT_TYPE(ehci, *hw_p))
			!= EHCI_LIST_END(ehci))
		*hw_p = *shadow_next_periodic(ehci, &here,
				Q_NEXT_TYPE(ehci, *hw_p));
	else
		*hw_p = ehci->dummy->qh_dma;
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}

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static void bandwidth_dbg(struct ehci_hcd *ehci, int sign, char *type,
		struct ehci_per_sched *ps)
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{
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	dev_dbg(&ps->udev->dev,
			"ep %02x: %s %s @ %u+%u (%u.%u+%u) [%u/%u us] mask %04x\n",
			ps->ep->desc.bEndpointAddress,
			(sign >= 0 ? "reserve" : "release"), type,
			(ps->bw_phase << 3) + ps->phase_uf, ps->bw_uperiod,
			ps->phase, ps->phase_uf, ps->period,
			ps->usecs, ps->c_usecs, ps->cs_mask);
}
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static void reserve_release_intr_bandwidth(struct ehci_hcd *ehci,
		struct ehci_qh *qh, int sign)
{
	unsigned		start_uf;
	unsigned		i, j, m;
	int			usecs = qh->ps.usecs;
	int			c_usecs = qh->ps.c_usecs;
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	if (qh->ps.phase == NO_FRAME)	/* Bandwidth wasn't reserved */
		return;
	start_uf = qh->ps.bw_phase << 3;
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	bandwidth_dbg(ehci, sign, "intr", &qh->ps);

	if (sign < 0) {		/* Release bandwidth */
		usecs = -usecs;
		c_usecs = -c_usecs;
	}

	/* Entire transaction (high speed) or start-split (full/low speed) */
	for (i = start_uf + qh->ps.phase_uf; i < EHCI_BANDWIDTH_SIZE;
			i += qh->ps.bw_uperiod)
		ehci->bandwidth[i] += usecs;

	/* Complete-split (full/low speed) */
	if (qh->ps.c_usecs) {
		/* NOTE: adjustments needed for FSTN */
		for (i = start_uf; i < EHCI_BANDWIDTH_SIZE;
				i += qh->ps.bw_uperiod) {
			for ((j = 2, m = 1 << (j+8)); j < 8; (++j, m <<= 1)) {
				if (qh->ps.cs_mask & m)
					ehci->bandwidth[i+j] += c_usecs;
			}
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		}
	}
}

/*-------------------------------------------------------------------------*/

static int same_tt (struct usb_device *dev1, struct usb_device *dev2)
{
	if (!dev1->tt || !dev2->tt)
		return 0;
	if (dev1->tt != dev2->tt)
		return 0;
	if (dev1->tt->multi)
		return dev1->ttport == dev2->ttport;
	else
		return 1;
}

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#ifdef CONFIG_USB_EHCI_TT_NEWSCHED

/* Which uframe does the low/fullspeed transfer start in?
 *
 * The parameter is the mask of ssplits in "H-frame" terms
 * and this returns the transfer start uframe in "B-frame" terms,
 * which allows both to match, e.g. a ssplit in "H-frame" uframe 0
 * will cause a transfer in "B-frame" uframe 0.  "B-frames" lag
 * "H-frames" by 1 uframe.  See the EHCI spec sec 4.5 and figure 4.7.
 */
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static inline unsigned char tt_start_uframe(struct ehci_hcd *ehci, __hc32 mask)
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{
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	unsigned char smask = QH_SMASK & hc32_to_cpu(ehci, mask);
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	if (!smask) {
		ehci_err(ehci, "invalid empty smask!\n");
		/* uframe 7 can't have bw so this will indicate failure */
		return 7;
	}
	return ffs(smask) - 1;
}

static const unsigned char
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max_tt_usecs[] = { 125, 125, 125, 125, 125, 125, 30, 0 };
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/* carryover low/fullspeed bandwidth that crosses uframe boundries */
static inline void carryover_tt_bandwidth(unsigned short tt_usecs[8])
{
	int i;
	for (i=0; i<7; i++) {
		if (max_tt_usecs[i] < tt_usecs[i]) {
			tt_usecs[i+1] += tt_usecs[i] - max_tt_usecs[i];
			tt_usecs[i] = max_tt_usecs[i];
		}
	}
}

/* How many of the tt's periodic downstream 1000 usecs are allocated?
 *
 * While this measures the bandwidth in terms of usecs/uframe,
 * the low/fullspeed bus has no notion of uframes, so any particular
 * low/fullspeed transfer can "carry over" from one uframe to the next,
 * since the TT just performs downstream transfers in sequence.
 *
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 * For example two separate 100 usec transfers can start in the same uframe,
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 * and the second one would "carry over" 75 usecs into the next uframe.
 */
static void
periodic_tt_usecs (
	struct ehci_hcd *ehci,
	struct usb_device *dev,
	unsigned frame,
	unsigned short tt_usecs[8]
)
{
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	__hc32			*hw_p = &ehci->periodic [frame];
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	union ehci_shadow	*q = &ehci->pshadow [frame];
	unsigned char		uf;

	memset(tt_usecs, 0, 16);

	while (q->ptr) {
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		switch (hc32_to_cpu(ehci, Q_NEXT_TYPE(ehci, *hw_p))) {
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		case Q_TYPE_ITD:
			hw_p = &q->itd->hw_next;
			q = &q->itd->itd_next;
			continue;
		case Q_TYPE_QH:
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			if (same_tt(dev, q->qh->ps.udev)) {
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				uf = tt_start_uframe(ehci, q->qh->hw->hw_info2);
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				tt_usecs[uf] += q->qh->ps.tt_usecs;
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			}
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			hw_p = &q->qh->hw->hw_next;
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			q = &q->qh->qh_next;
			continue;
		case Q_TYPE_SITD:
			if (same_tt(dev, q->sitd->urb->dev)) {
				uf = tt_start_uframe(ehci, q->sitd->hw_uframe);
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				tt_usecs[uf] += q->sitd->stream->ps.tt_usecs;
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			}
			hw_p = &q->sitd->hw_next;
			q = &q->sitd->sitd_next;
			continue;
		// case Q_TYPE_FSTN:
		default:
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			ehci_dbg(ehci, "ignoring periodic frame %d FSTN\n",
					frame);
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			hw_p = &q->fstn->hw_next;
			q = &q->fstn->fstn_next;
		}
	}

	carryover_tt_bandwidth(tt_usecs);

	if (max_tt_usecs[7] < tt_usecs[7])
		ehci_err(ehci, "frame %d tt sched overrun: %d usecs\n",
			frame, tt_usecs[7] - max_tt_usecs[7]);
}

/*
 * Return true if the device's tt's downstream bus is available for a
 * periodic transfer of the specified length (usecs), starting at the
 * specified frame/uframe.  Note that (as summarized in section 11.19
 * of the usb 2.0 spec) TTs can buffer multiple transactions for each
 * uframe.
 *
 * The uframe parameter is when the fullspeed/lowspeed transfer
 * should be executed in "B-frame" terms, which is the same as the
 * highspeed ssplit's uframe (which is in "H-frame" terms).  For example
 * a ssplit in "H-frame" 0 causes a transfer in "B-frame" 0.
 * See the EHCI spec sec 4.5 and fig 4.7.
 *
 * This checks if the full/lowspeed bus, at the specified starting uframe,
 * has the specified bandwidth available, according to rules listed
 * in USB 2.0 spec section 11.18.1 fig 11-60.
 *
 * This does not check if the transfer would exceed the max ssplit
 * limit of 16, specified in USB 2.0 spec section 11.18.4 requirement #4,
 * since proper scheduling limits ssplits to less than 16 per uframe.
 */
static int tt_available (
	struct ehci_hcd		*ehci,
	unsigned		period,
	struct usb_device	*dev,
	unsigned		frame,
	unsigned		uframe,
	u16			usecs
)
{
	if ((period == 0) || (uframe >= 7))	/* error */
		return 0;

	for (; frame < ehci->periodic_size; frame += period) {
		unsigned short tt_usecs[8];

		periodic_tt_usecs (ehci, dev, frame, tt_usecs);

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		if (max_tt_usecs[uframe] <= tt_usecs[uframe])
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			return 0;

		/* special case for isoc transfers larger than 125us:
		 * the first and each subsequent fully used uframe
		 * must be empty, so as to not illegally delay
		 * already scheduled transactions
		 */
		if (125 < usecs) {
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			int ufs = (usecs / 125);
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			int i;
			for (i = uframe; i < (uframe + ufs) && i < 8; i++)
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				if (0 < tt_usecs[i])
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					return 0;
		}

		tt_usecs[uframe] += usecs;

		carryover_tt_bandwidth(tt_usecs);

		/* fail if the carryover pushed bw past the last uframe's limit */
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		if (max_tt_usecs[7] < tt_usecs[7])
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			return 0;
	}

	return 1;
}

#else

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/* return true iff the device's transaction translator is available
 * for a periodic transfer starting at the specified frame, using
 * all the uframes in the mask.
 */
static int tt_no_collision (
	struct ehci_hcd		*ehci,
	unsigned		period,
	struct usb_device	*dev,
	unsigned		frame,
	u32			uf_mask
)
{
	if (period == 0)	/* error */
		return 0;

	/* note bandwidth wastage:  split never follows csplit
	 * (different dev or endpoint) until the next uframe.
	 * calling convention doesn't make that distinction.
	 */
	for (; frame < ehci->periodic_size; frame += period) {
		union ehci_shadow	here;
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		__hc32			type;
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		struct ehci_qh_hw	*hw;
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		here = ehci->pshadow [frame];
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		type = Q_NEXT_TYPE(ehci, ehci->periodic [frame]);
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		while (here.ptr) {
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			switch (hc32_to_cpu(ehci, type)) {
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			case Q_TYPE_ITD:
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				type = Q_NEXT_TYPE(ehci, here.itd->hw_next);
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				here = here.itd->itd_next;
				continue;
			case Q_TYPE_QH:
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				hw = here.qh->hw;
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				if (same_tt(dev, here.qh->ps.udev)) {
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					u32		mask;

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					mask = hc32_to_cpu(ehci,
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							hw->hw_info2);
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					/* "knows" no gap is needed */
					mask |= mask >> 8;
					if (mask & uf_mask)
						break;
				}
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				type = Q_NEXT_TYPE(ehci, hw->hw_next);
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				here = here.qh->qh_next;
				continue;
			case Q_TYPE_SITD:
				if (same_tt (dev, here.sitd->urb->dev)) {
					u16		mask;

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					mask = hc32_to_cpu(ehci, here.sitd
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								->hw_uframe);
					/* FIXME assumes no gap for IN! */
					mask |= mask >> 8;
					if (mask & uf_mask)
						break;
				}
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				type = Q_NEXT_TYPE(ehci, here.sitd->hw_next);
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				here = here.sitd->sitd_next;
				continue;
			// case Q_TYPE_FSTN:
			default:
				ehci_dbg (ehci,
					"periodic frame %d bogus type %d\n",
					frame, type);
			}

			/* collision or error */
			return 0;
		}
	}

	/* no collision */
	return 1;
}

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#endif /* CONFIG_USB_EHCI_TT_NEWSCHED */

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/*-------------------------------------------------------------------------*/

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static void enable_periodic(struct ehci_hcd *ehci)
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{
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	if (ehci->periodic_count++)
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		return;
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	/* Stop waiting to turn off the periodic schedule */
	ehci->enabled_hrtimer_events &= ~BIT(EHCI_HRTIMER_DISABLE_PERIODIC);
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	/* Don't start the schedule until PSS is 0 */
	ehci_poll_PSS(ehci);
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	turn_on_io_watchdog(ehci);
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}

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static void disable_periodic(struct ehci_hcd *ehci)
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{
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	if (--ehci->periodic_count)
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		return;
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	/* Don't turn off the schedule until PSS is 1 */
	ehci_poll_PSS(ehci);
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}

/*-------------------------------------------------------------------------*/

/* periodic schedule slots have iso tds (normal or split) first, then a
 * sparse tree for active interrupt transfers.
 *
 * this just links in a qh; caller guarantees uframe masks are set right.
 * no FSTN support (yet; ehci 0.96+)
 */
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static void qh_link_periodic(struct ehci_hcd *ehci, struct ehci_qh *qh)
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{
	unsigned	i;
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	unsigned	period = qh->ps.period;
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	dev_dbg(&qh->ps.udev->dev,
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		"link qh%d-%04x/%p start %d [%d/%d us]\n",
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		period, hc32_to_cpup(ehci, &qh->hw->hw_info2)
			& (QH_CMASK | QH_SMASK),
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		qh, qh->ps.phase, qh->ps.usecs, qh->ps.c_usecs);
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	/* high bandwidth, or otherwise every microframe */
	if (period == 0)
		period = 1;

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	for (i = qh->ps.phase; i < ehci->periodic_size; i += period) {
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		union ehci_shadow	*prev = &ehci->pshadow[i];
		__hc32			*hw_p = &ehci->periodic[i];
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		union ehci_shadow	here = *prev;
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		__hc32			type = 0;
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		/* skip the iso nodes at list head */
		while (here.ptr) {
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			type = Q_NEXT_TYPE(ehci, *hw_p);
			if (type == cpu_to_hc32(ehci, Q_TYPE_QH))
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				break;
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			prev = periodic_next_shadow(ehci, prev, type);
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			hw_p = shadow_next_periodic(ehci, &here, type);
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			here = *prev;
		}

		/* sorting each branch by period (slow-->fast)
		 * enables sharing interior tree nodes
		 */
		while (here.ptr && qh != here.qh) {
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			if (qh->ps.period > here.qh->ps.period)
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				break;
			prev = &here.qh->qh_next;
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			hw_p = &here.qh->hw->hw_next;
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			here = *prev;
		}
		/* link in this qh, unless some earlier pass did that */
		if (qh != here.qh) {
			qh->qh_next = here;
			if (here.qh)
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				qh->hw->hw_next = *hw_p;
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			wmb ();
			prev->qh = qh;
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			*hw_p = QH_NEXT (ehci, qh->qh_dma);
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		}
	}
	qh->qh_state = QH_STATE_LINKED;
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	qh->xacterrs = 0;
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	qh->exception = 0;
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	/* update per-qh bandwidth for debugfs */
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	ehci_to_hcd(ehci)->self.bandwidth_allocated += qh->ps.bw_period
		? ((qh->ps.usecs + qh->ps.c_usecs) / qh->ps.bw_period)
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		: (qh->ps.usecs * 8);
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	list_add(&qh->intr_node, &ehci->intr_qh_list);

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	/* maybe enable periodic schedule processing */
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	++ehci->intr_count;
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	enable_periodic(ehci);
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}

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static void qh_unlink_periodic(struct ehci_hcd *ehci, struct ehci_qh *qh)
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{
	unsigned	i;
	unsigned	period;

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	/*
	 * If qh is for a low/full-speed device, simply unlinking it
	 * could interfere with an ongoing split transaction.  To unlink
	 * it safely would require setting the QH_INACTIVATE bit and
	 * waiting at least one frame, as described in EHCI 4.12.2.5.
	 *
	 * We won't bother with any of this.  Instead, we assume that the
	 * only reason for unlinking an interrupt QH while the current URB
	 * is still active is to dequeue all the URBs (flush the whole
	 * endpoint queue).
	 *
	 * If rebalancing the periodic schedule is ever implemented, this
	 * approach will no longer be valid.
	 */
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	/* high bandwidth, or otherwise part of every microframe */
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	period = qh->ps.period ? : 1;
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	for (i = qh->ps.phase; i < ehci->periodic_size; i += period)
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		periodic_unlink (ehci, i, qh);

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	/* update per-qh bandwidth for debugfs */
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	ehci_to_hcd(ehci)->self.bandwidth_allocated -= qh->ps.bw_period
		? ((qh->ps.usecs + qh->ps.c_usecs) / qh->ps.bw_period)
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		: (qh->ps.usecs * 8);
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547
	dev_dbg(&qh->ps.udev->dev,
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		"unlink qh%d-%04x/%p start %d [%d/%d us]\n",
549
		qh->ps.period,
550
		hc32_to_cpup(ehci, &qh->hw->hw_info2) & (QH_CMASK | QH_SMASK),
551
		qh, qh->ps.phase, qh->ps.usecs, qh->ps.c_usecs);
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	/* qh->qh_next still "live" to HC */
	qh->qh_state = QH_STATE_UNLINK;
	qh->qh_next.ptr = NULL;
556 557 558 559 560

	if (ehci->qh_scan_next == qh)
		ehci->qh_scan_next = list_entry(qh->intr_node.next,
				struct ehci_qh, intr_node);
	list_del(&qh->intr_node);
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}

563 564 565 566 567 568 569 570 571 572 573 574 575 576
static void cancel_unlink_wait_intr(struct ehci_hcd *ehci, struct ehci_qh *qh)
{
	if (qh->qh_state != QH_STATE_LINKED ||
			list_empty(&qh->unlink_node))
		return;

	list_del_init(&qh->unlink_node);

	/*
	 * TODO: disable the event of EHCI_HRTIMER_START_UNLINK_INTR for
	 * avoiding unnecessary CPU wakeup
	 */
}

577
static void start_unlink_intr(struct ehci_hcd *ehci, struct ehci_qh *qh)
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{
579 580
	/* If the QH isn't linked then there's nothing we can do. */
	if (qh->qh_state != QH_STATE_LINKED)
581
		return;
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583 584 585
	/* if the qh is waiting for unlink, cancel it now */
	cancel_unlink_wait_intr(ehci, qh);

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	qh_unlink_periodic (ehci, qh);

588 589 590 591 592 593 594
	/* Make sure the unlinks are visible before starting the timer */
	wmb();

	/*
	 * The EHCI spec doesn't say how long it takes the controller to
	 * stop accessing an unlinked interrupt QH.  The timer delay is
	 * 9 uframes; presumably that will be long enough.
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	 */
596 597 598
	qh->unlink_cycle = ehci->intr_unlink_cycle;

	/* New entries go at the end of the intr_unlink list */
599
	list_add_tail(&qh->unlink_node, &ehci->intr_unlink);
600 601 602 603 604

	if (ehci->intr_unlinking)
		;	/* Avoid recursive calls */
	else if (ehci->rh_state < EHCI_RH_RUNNING)
		ehci_handle_intr_unlinks(ehci);
605
	else if (ehci->intr_unlink.next == &qh->unlink_node) {
606 607 608 609 610
		ehci_enable_event(ehci, EHCI_HRTIMER_UNLINK_INTR, true);
		++ehci->intr_unlink_cycle;
	}
}

611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631
/*
 * It is common only one intr URB is scheduled on one qh, and
 * given complete() is run in tasklet context, introduce a bit
 * delay to avoid unlink qh too early.
 */
static void start_unlink_intr_wait(struct ehci_hcd *ehci,
				   struct ehci_qh *qh)
{
	qh->unlink_cycle = ehci->intr_unlink_wait_cycle;

	/* New entries go at the end of the intr_unlink_wait list */
	list_add_tail(&qh->unlink_node, &ehci->intr_unlink_wait);

	if (ehci->rh_state < EHCI_RH_RUNNING)
		ehci_handle_start_intr_unlinks(ehci);
	else if (ehci->intr_unlink_wait.next == &qh->unlink_node) {
		ehci_enable_event(ehci, EHCI_HRTIMER_START_UNLINK_INTR, true);
		++ehci->intr_unlink_wait_cycle;
	}
}

632 633 634 635
static void end_unlink_intr(struct ehci_hcd *ehci, struct ehci_qh *qh)
{
	struct ehci_qh_hw	*hw = qh->hw;
	int			rc;
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	qh->qh_state = QH_STATE_IDLE;
638
	hw->hw_next = EHCI_LIST_END(ehci);
639

640 641
	if (!list_empty(&qh->qtd_list))
		qh_completions(ehci, qh);
642 643

	/* reschedule QH iff another request is queued */
644
	if (!list_empty(&qh->qtd_list) && ehci->rh_state == EHCI_RH_RUNNING) {
645
		rc = qh_schedule(ehci, qh);
646 647 648 649
		if (rc == 0) {
			qh_refresh(ehci, qh);
			qh_link_periodic(ehci, qh);
		}
650 651 652 653 654 655 656

		/* An error here likely indicates handshake failure
		 * or no space left in the schedule.  Neither fault
		 * should happen often ...
		 *
		 * FIXME kill the now-dysfunctional queued urbs
		 */
657
		else {
658 659
			ehci_err(ehci, "can't reschedule qh %p, err %d\n",
					qh, rc);
660
		}
661
	}
662 663

	/* maybe turn off periodic schedule */
664
	--ehci->intr_count;
665
	disable_periodic(ehci);
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}

/*-------------------------------------------------------------------------*/

static int check_period (
671
	struct ehci_hcd *ehci,
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	unsigned	frame,
	unsigned	uframe,
674
	unsigned	uperiod,
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	unsigned	usecs
) {
	/* complete split running into next frame?
	 * given FSTN support, we could sometimes check...
	 */
	if (uframe >= 8)
		return 0;

683 684
	/* convert "usecs we need" to "max already claimed" */
	usecs = ehci->uframe_periodic_max - usecs;
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686 687 688 689
	for (uframe += frame << 3; uframe < EHCI_BANDWIDTH_SIZE;
			uframe += uperiod) {
		if (ehci->bandwidth[uframe] > usecs)
			return 0;
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	}

	// success!
	return 1;
}

static int check_intr_schedule (
697
	struct ehci_hcd		*ehci,
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	unsigned		frame,
	unsigned		uframe,
	const struct ehci_qh	*qh,
701
	__hc32			*c_maskp
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)
{
704
	int		retval = -ENOSPC;
705
	u8		mask = 0;
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706

707
	if (qh->ps.c_usecs && uframe >= 6)	/* FSTN territory? */
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		goto done;

710
	if (!check_period(ehci, frame, uframe, qh->ps.bw_uperiod, qh->ps.usecs))
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711
		goto done;
712
	if (!qh->ps.c_usecs) {
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		retval = 0;
		*c_maskp = 0;
		goto done;
	}

718
#ifdef CONFIG_USB_EHCI_TT_NEWSCHED
719
	if (tt_available(ehci, qh->ps.bw_period, qh->ps.udev, frame, uframe,
720
				qh->ps.tt_usecs)) {
721 722 723
		unsigned i;

		/* TODO : this may need FSTN for SSPLIT in uframe 5. */
724
		for (i = uframe+2; i < 8 && i <= uframe+4; i++)
725
			if (!check_period(ehci, frame, i,
726
					qh->ps.bw_uperiod, qh->ps.c_usecs))
727 728 729 730 731 732
				goto done;
			else
				mask |= 1 << i;

		retval = 0;

733
		*c_maskp = mask;
734 735
	}
#else
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	/* Make sure this tt's buffer is also available for CSPLITs.
	 * We pessimize a bit; probably the typical full speed case
	 * doesn't need the second CSPLIT.
739
	 *
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	 * NOTE:  both SPLIT and CSPLIT could be checked in just
	 * one smart pass...
	 */
	mask = 0x03 << (uframe + qh->gap_uf);
744
	*c_maskp = mask;
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	mask |= 1 << uframe;
747
	if (tt_no_collision(ehci, qh->ps.bw_period, qh->ps.udev, frame, mask)) {
748
		if (!check_period(ehci, frame, uframe + qh->gap_uf + 1,
749
				qh->ps.bw_uperiod, qh->ps.c_usecs))
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			goto done;
751
		if (!check_period(ehci, frame, uframe + qh->gap_uf,
752
				qh->ps.bw_uperiod, qh->ps.c_usecs))
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			goto done;
		retval = 0;
	}
756
#endif
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done:
	return retval;
}

/* "first fit" scheduling policy used the first time through,
 * or when the previous schedule slot can't be re-used.
 */
764
static int qh_schedule(struct ehci_hcd *ehci, struct ehci_qh *qh)
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{
766
	int		status;
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	unsigned	uframe;
768
	unsigned	c_mask;
769
	struct ehci_qh_hw	*hw = qh->hw;
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771
	hw->hw_next = EHCI_LIST_END(ehci);
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	/* reuse the previous schedule slots, if we can */
774 775 776
	if (qh->ps.phase != NO_FRAME) {
		ehci_dbg(ehci, "reused qh %p schedule\n", qh);
		return 0;
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	}

779 780 781 782
	uframe = 0;
	c_mask = 0;
	status = -ENOSPC;

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	/* else scan the schedule to find a group of slots such that all
	 * uframes have enough periodic bandwidth available.
	 */
786 787 788 789 790 791 792 793 794 795 796 797
	/* "normal" case, uframing flexible except with splits */
	if (qh->ps.bw_period) {
		int		i;
		unsigned	frame;

		for (i = qh->ps.bw_period; status && i > 0; --i) {
			frame = ++ehci->random_frame & (qh->ps.bw_period - 1);
			for (uframe = 0; uframe < 8; uframe++) {
				status = check_intr_schedule(ehci,
						frame, uframe, qh, &c_mask);
				if (status == 0)
					break;
798
			}
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		}

801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818
	/* qh->ps.bw_period == 0 means every uframe */
	} else {
		status = check_intr_schedule(ehci, 0, 0, qh, &c_mask);
	}
	if (status)
		goto done;
	qh->ps.phase = (qh->ps.period ? ehci->random_frame &
			(qh->ps.period - 1) : 0);
	qh->ps.bw_phase = qh->ps.phase & (qh->ps.bw_period - 1);
	qh->ps.phase_uf = uframe;
	qh->ps.cs_mask = qh->ps.period ?
			(c_mask << 8) | (1 << uframe) :
			QH_SMASK;

	/* reset S-frame and (maybe) C-frame masks */
	hw->hw_info2 &= cpu_to_hc32(ehci, ~(QH_CMASK | QH_SMASK));
	hw->hw_info2 |= cpu_to_hc32(ehci, qh->ps.cs_mask);
	reserve_release_intr_bandwidth(ehci, qh, 1);
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done:
	return status;
}

static int intr_submit (
	struct ehci_hcd		*ehci,
	struct urb		*urb,
	struct list_head	*qtd_list,
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	gfp_t			mem_flags
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) {
	unsigned		epnum;
	unsigned long		flags;
	struct ehci_qh		*qh;
833
	int			status;
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	struct list_head	empty;

	/* get endpoint and transfer/schedule data */
837
	epnum = urb->ep->desc.bEndpointAddress;
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	spin_lock_irqsave (&ehci->lock, flags);

841
	if (unlikely(!HCD_HW_ACCESSIBLE(ehci_to_hcd(ehci)))) {
842
		status = -ESHUTDOWN;
843
		goto done_not_linked;
844
	}
845 846 847
	status = usb_hcd_link_urb_to_ep(ehci_to_hcd(ehci), urb);
	if (unlikely(status))
		goto done_not_linked;
848

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	/* get qh and force any scheduling errors */
	INIT_LIST_HEAD (&empty);
851
	qh = qh_append_tds(ehci, urb, &empty, epnum, &urb->ep->hcpriv);
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	if (qh == NULL) {
		status = -ENOMEM;
		goto done;
	}
	if (qh->qh_state == QH_STATE_IDLE) {
		if ((status = qh_schedule (ehci, qh)) != 0)
			goto done;
	}

	/* then queue the urb's tds to the qh */
862
	qh = qh_append_tds(ehci, urb, qtd_list, epnum, &urb->ep->hcpriv);
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	BUG_ON (qh == NULL);

865 866 867 868
	/* stuff into the periodic schedule */
	if (qh->qh_state == QH_STATE_IDLE) {
		qh_refresh(ehci, qh);
		qh_link_periodic(ehci, qh);
869 870 871
	} else {
		/* cancel unlink wait for the qh */
		cancel_unlink_wait_intr(ehci, qh);
872 873
	}

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	/* ... update usbfs periodic stats */
	ehci_to_hcd(ehci)->self.bandwidth_int_reqs++;

done:
878 879 880
	if (unlikely(status))
		usb_hcd_unlink_urb_from_ep(ehci_to_hcd(ehci), urb);
done_not_linked:
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	spin_unlock_irqrestore (&ehci->lock, flags);
	if (status)
		qtd_list_free (ehci, urb, qtd_list);

	return status;
}

888 889 890 891 892 893
static void scan_intr(struct ehci_hcd *ehci)
{
	struct ehci_qh		*qh;

	list_for_each_entry_safe(qh, ehci->qh_scan_next, &ehci->intr_qh_list,
			intr_node) {
894

895 896 897 898 899 900 901 902 903 904 905 906
		/* clean any finished work for this qh */
		if (!list_empty(&qh->qtd_list)) {
			int temp;

			/*
			 * Unlinks could happen here; completion reporting
			 * drops the lock.  That's why ehci->qh_scan_next
			 * always holds the next qh to scan; if the next qh
			 * gets unlinked then ehci->qh_scan_next is adjusted
			 * in qh_unlink_periodic().
			 */
			temp = qh_completions(ehci, qh);
907
			if (unlikely(temp))
908
				start_unlink_intr(ehci, qh);
909 910 911
			else if (unlikely(list_empty(&qh->qtd_list) &&
					qh->qh_state == QH_STATE_LINKED))
				start_unlink_intr_wait(ehci, qh);
912 913 914 915
		}
	}
}

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/*-------------------------------------------------------------------------*/

/* ehci_iso_stream ops work with both ITD and SITD */

static struct ehci_iso_stream *
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iso_stream_alloc (gfp_t mem_flags)
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{
	struct ehci_iso_stream *stream;

925
	stream = kzalloc(sizeof *stream, mem_flags);
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	if (likely (stream != NULL)) {
		INIT_LIST_HEAD(&stream->td_list);
		INIT_LIST_HEAD(&stream->free_list);
929
		stream->next_uframe = NO_FRAME;
930
		stream->ps.phase = NO_FRAME;
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	}
	return stream;
}

static void
iso_stream_init (
	struct ehci_hcd		*ehci,
	struct ehci_iso_stream	*stream,
939
	struct urb		*urb
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)
{
	static const u8 smask_out [] = { 0x01, 0x03, 0x07, 0x0f, 0x1f, 0x3f };

944
	struct usb_device	*dev = urb->dev;
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	u32			buf1;
	unsigned		epnum, maxp;
	int			is_input;
948
	unsigned		tmp;
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	/*
	 * this might be a "high bandwidth" highspeed endpoint,
	 * as encoded in the ep descriptor's wMaxPacket field
	 */
954 955 956
	epnum = usb_pipeendpoint(urb->pipe);
	is_input = usb_pipein(urb->pipe) ? USB_DIR_IN : 0;
	maxp = usb_endpoint_maxp(&urb->ep->desc);
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	if (is_input) {
		buf1 = (1 << 11);
	} else {
		buf1 = 0;
	}

	/* knows about ITD vs SITD */
	if (dev->speed == USB_SPEED_HIGH) {
		unsigned multi = hb_mult(maxp);

		stream->highspeed = 1;

		maxp = max_packet(maxp);
		buf1 |= maxp;
		maxp *= multi;

973 974 975
		stream->buf0 = cpu_to_hc32(ehci, (epnum << 8) | dev->devnum);
		stream->buf1 = cpu_to_hc32(ehci, buf1);
		stream->buf2 = cpu_to_hc32(ehci, multi);
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		/* usbfs wants to report the average usecs per frame tied up
		 * when transfers on this endpoint are scheduled ...
		 */
980 981
		stream->ps.usecs = HS_USECS_ISO(maxp);

982 983 984 985 986 987 988 989 990 991 992
		/* period for bandwidth allocation */
		tmp = min_t(unsigned, EHCI_BANDWIDTH_SIZE,
				1 << (urb->ep->desc.bInterval - 1));

		/* Allow urb->interval to override */
		stream->ps.bw_uperiod = min_t(unsigned, tmp, urb->interval);

		stream->uperiod = urb->interval;
		stream->ps.period = urb->interval >> 3;
		stream->bandwidth = stream->ps.usecs * 8 /
				stream->ps.bw_uperiod;
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	} else {
		u32		addr;
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996
		int		think_time;
997
		int		hs_transfers;
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		addr = dev->ttport << 24;
		if (!ehci_is_TDI(ehci)
				|| (dev->tt->hub !=
					ehci_to_hcd(ehci)->self.root_hub))
			addr |= dev->tt->hub->devnum << 16;
		addr |= epnum << 8;
		addr |= dev->devnum;
1006
		stream->ps.usecs = HS_USECS_ISO(maxp);
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		think_time = dev->tt ? dev->tt->think_time : 0;
1008
		stream->ps.tt_usecs = NS_TO_US(think_time + usb_calc_bus_time(
D
david-b@pacbell.net 已提交
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				dev->speed, is_input, 1, maxp));
1010
		hs_transfers = max (1u, (maxp + 187) / 188);
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		if (is_input) {
			u32	tmp;

			addr |= 1 << 31;
1015 1016
			stream->ps.c_usecs = stream->ps.usecs;
			stream->ps.usecs = HS_USECS_ISO(1);
1017
			stream->ps.cs_mask = 1;
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1019 1020
			/* c-mask as specified in USB 2.0 11.18.4 3.c */
			tmp = (1 << (hs_transfers + 2)) - 1;
1021
			stream->ps.cs_mask |= tmp << (8 + 2);
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		} else
1023
			stream->ps.cs_mask = smask_out[hs_transfers - 1];
1024

1025 1026 1027 1028 1029 1030 1031 1032 1033 1034
		/* period for bandwidth allocation */
		tmp = min_t(unsigned, EHCI_BANDWIDTH_FRAMES,
				1 << (urb->ep->desc.bInterval - 1));

		/* Allow urb->interval to override */
		stream->ps.bw_period = min_t(unsigned, tmp, urb->interval);
		stream->ps.bw_uperiod = stream->ps.bw_period << 3;

		stream->ps.period = urb->interval;
		stream->uperiod = urb->interval << 3;
1035
		stream->bandwidth = (stream->ps.usecs + stream->ps.c_usecs) /
1036
				stream->ps.bw_period;
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1038
		/* stream->splits gets created from cs_mask later */
1039
		stream->address = cpu_to_hc32(ehci, addr);
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	}

1042 1043
	stream->ps.udev = dev;
	stream->ps.ep = urb->ep;
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	stream->bEndpointAddress = is_input | epnum;
	stream->maxp = maxp;
}

static struct ehci_iso_stream *
iso_stream_find (struct ehci_hcd *ehci, struct urb *urb)
{
	unsigned		epnum;
	struct ehci_iso_stream	*stream;
	struct usb_host_endpoint *ep;
	unsigned long		flags;

	epnum = usb_pipeendpoint (urb->pipe);
	if (usb_pipein(urb->pipe))
		ep = urb->dev->ep_in[epnum];
	else
		ep = urb->dev->ep_out[epnum];

	spin_lock_irqsave (&ehci->lock, flags);
	stream = ep->hcpriv;

	if (unlikely (stream == NULL)) {
		stream = iso_stream_alloc(GFP_ATOMIC);
		if (likely (stream != NULL)) {
			ep->hcpriv = stream;
1070
			iso_stream_init(ehci, stream, urb);
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		}

1073 1074
	/* if dev->ep [epnum] is a QH, hw is set */
	} else if (unlikely (stream->hw != NULL)) {
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		ehci_dbg (ehci, "dev %s ep%d%s, not iso??\n",
			urb->dev->devpath, epnum,
			usb_pipein(urb->pipe) ? "in" : "out");
		stream = NULL;
	}

	spin_unlock_irqrestore (&ehci->lock, flags);
	return stream;
}

/*-------------------------------------------------------------------------*/

/* ehci_iso_sched ops can be ITD-only or SITD-only */

static struct ehci_iso_sched *
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iso_sched_alloc (unsigned packets, gfp_t mem_flags)
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{
	struct ehci_iso_sched	*iso_sched;
	int			size = sizeof *iso_sched;

	size += packets * sizeof (struct ehci_iso_packet);
1096
	iso_sched = kzalloc(size, mem_flags);
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	if (likely (iso_sched != NULL)) {
		INIT_LIST_HEAD (&iso_sched->td_list);
	}
	return iso_sched;
}

static inline void
1104 1105
itd_sched_init(
	struct ehci_hcd		*ehci,
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	struct ehci_iso_sched	*iso_sched,
	struct ehci_iso_stream	*stream,
	struct urb		*urb
)
{
	unsigned	i;
	dma_addr_t	dma = urb->transfer_dma;

	/* how many uframes are needed for these transfers */
1115
	iso_sched->span = urb->number_of_packets * stream->uperiod;
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	/* figure out per-uframe itd fields that we'll need later
	 * when we fit new itds into the schedule.
	 */
	for (i = 0; i < urb->number_of_packets; i++) {
		struct ehci_iso_packet	*uframe = &iso_sched->packet [i];
		unsigned		length;
		dma_addr_t		buf;
		u32			trans;

		length = urb->iso_frame_desc [i].length;
		buf = dma + urb->iso_frame_desc [i].offset;

		trans = EHCI_ISOC_ACTIVE;
		trans |= buf & 0x0fff;
		if (unlikely (((i + 1) == urb->number_of_packets))
				&& !(urb->transfer_flags & URB_NO_INTERRUPT))
			trans |= EHCI_ITD_IOC;
		trans |= length << 16;
1135
		uframe->transaction = cpu_to_hc32(ehci, trans);
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1137
		/* might need to cross a buffer page within a uframe */
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		uframe->bufp = (buf & ~(u64)0x0fff);
		buf += length;
		if (unlikely ((uframe->bufp != (buf & ~(u64)0x0fff))))
			uframe->cross = 1;
	}
}

static void
iso_sched_free (
	struct ehci_iso_stream	*stream,
	struct ehci_iso_sched	*iso_sched
)
{
	if (!iso_sched)
		return;
	// caller must hold ehci->lock!
	list_splice (&iso_sched->td_list, &stream->free_list);
	kfree (iso_sched);
}

static int
itd_urb_transaction (
	struct ehci_iso_stream	*stream,
	struct ehci_hcd		*ehci,
	struct urb		*urb,
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	gfp_t			mem_flags
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)
{
	struct ehci_itd		*itd;
	dma_addr_t		itd_dma;
	int			i;
	unsigned		num_itds;
	struct ehci_iso_sched	*sched;
	unsigned long		flags;

	sched = iso_sched_alloc (urb->number_of_packets, mem_flags);
	if (unlikely (sched == NULL))
		return -ENOMEM;

1177
	itd_sched_init(ehci, sched, stream, urb);
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	if (urb->interval < 8)
		num_itds = 1 + (sched->span + 7) / 8;
	else
		num_itds = urb->number_of_packets;

	/* allocate/init ITDs */
	spin_lock_irqsave (&ehci->lock, flags);
	for (i = 0; i < num_itds; i++) {

1188 1189 1190
		/*
		 * Use iTDs from the free list, but not iTDs that may
		 * still be in use by the hardware.
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		 */
1192 1193
		if (likely(!list_empty(&stream->free_list))) {
			itd = list_first_entry(&stream->free_list,
1194
					struct ehci_itd, itd_list);
1195
			if (itd->frame == ehci->now_frame)
1196
				goto alloc_itd;
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			list_del (&itd->itd_list);
			itd_dma = itd->itd_dma;
1199
		} else {
1200
 alloc_itd:
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			spin_unlock_irqrestore (&ehci->lock, flags);
			itd = dma_pool_alloc (ehci->itd_pool, mem_flags,
					&itd_dma);
			spin_lock_irqsave (&ehci->lock, flags);
1205 1206 1207 1208 1209
			if (!itd) {
				iso_sched_free(stream, sched);
				spin_unlock_irqrestore(&ehci->lock, flags);
				return -ENOMEM;
			}
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		}

		memset (itd, 0, sizeof *itd);
		itd->itd_dma = itd_dma;
1214
		itd->frame = NO_FRAME;
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		list_add (&itd->itd_list, &sched->td_list);
	}
	spin_unlock_irqrestore (&ehci->lock, flags);

	/* temporarily store schedule info in hcpriv */
	urb->hcpriv = sched;
	urb->error_count = 0;
	return 0;
}

/*-------------------------------------------------------------------------*/

1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269
static void reserve_release_iso_bandwidth(struct ehci_hcd *ehci,
		struct ehci_iso_stream *stream, int sign)
{
	unsigned		uframe;
	unsigned		i, j;
	unsigned		s_mask, c_mask, m;
	int			usecs = stream->ps.usecs;
	int			c_usecs = stream->ps.c_usecs;

	if (stream->ps.phase == NO_FRAME)	/* Bandwidth wasn't reserved */
		return;
	uframe = stream->ps.bw_phase << 3;

	bandwidth_dbg(ehci, sign, "iso", &stream->ps);

	if (sign < 0) {		/* Release bandwidth */
		usecs = -usecs;
		c_usecs = -c_usecs;
	}

	if (!stream->splits) {		/* High speed */
		for (i = uframe + stream->ps.phase_uf; i < EHCI_BANDWIDTH_SIZE;
				i += stream->ps.bw_uperiod)
			ehci->bandwidth[i] += usecs;

	} else {			/* Full speed */
		s_mask = stream->ps.cs_mask;
		c_mask = s_mask >> 8;

		/* NOTE: adjustment needed for frame overflow */
		for (i = uframe; i < EHCI_BANDWIDTH_SIZE;
				i += stream->ps.bw_uperiod) {
			for ((j = stream->ps.phase_uf, m = 1 << j); j < 8;
					(++j, m <<= 1)) {
				if (s_mask & m)
					ehci->bandwidth[i+j] += usecs;
				else if (c_mask & m)
					ehci->bandwidth[i+j] += c_usecs;
			}
		}
	}
}

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static inline int
itd_slot_ok (
	struct ehci_hcd		*ehci,
1273 1274
	struct ehci_iso_stream	*stream,
	unsigned		uframe
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)
{
1277 1278 1279 1280
	unsigned		usecs;

	/* convert "usecs we need" to "max already claimed" */
	usecs = ehci->uframe_periodic_max - stream->ps.usecs;
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1282 1283 1284 1285 1286
	for (uframe &= stream->ps.bw_uperiod - 1; uframe < EHCI_BANDWIDTH_SIZE;
			uframe += stream->ps.bw_uperiod) {
		if (ehci->bandwidth[uframe] > usecs)
			return 0;
	}
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	return 1;
}

static inline int
sitd_slot_ok (
	struct ehci_hcd		*ehci,
	struct ehci_iso_stream	*stream,
1294 1295
	unsigned		uframe,
	struct ehci_iso_sched	*sched
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)
{
1298 1299
	unsigned		mask, tmp;
	unsigned		frame, uf;
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1301
	mask = stream->ps.cs_mask << (uframe & 7);
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1303
	/* for OUT, don't wrap SSPLIT into H-microframe 7 */
1304
	if (((stream->ps.cs_mask & 0xff) << (uframe & 7)) >= (1 << 7))
1305 1306
		return 0;

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	/* for IN, don't wrap CSPLIT into the next frame */
	if (mask & ~0xffff)
		return 0;

1311
	/* check bandwidth */
1312
	uframe &= stream->ps.bw_uperiod - 1;
1313 1314 1315 1316 1317 1318 1319
	frame = uframe >> 3;

#ifdef CONFIG_USB_EHCI_TT_NEWSCHED
	/* The tt's fullspeed bus bandwidth must be available.
	 * tt_available scheduling guarantees 10+% for control/bulk.
	 */
	uf = uframe & 7;
1320
	if (!tt_available(ehci, stream->ps.bw_period,
1321
			stream->ps.udev, frame, uf, stream->ps.tt_usecs))
1322 1323 1324 1325 1326
		return 0;
#else
	/* tt must be idle for start(s), any gap, and csplit.
	 * assume scheduling slop leaves 10+% for control/bulk.
	 */
1327
	if (!tt_no_collision(ehci, stream->ps.bw_period,
1328
			stream->ps.udev, frame, mask))
1329 1330 1331
		return 0;
#endif

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	do {
1333 1334
		unsigned	max_used;
		unsigned	i;
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		/* check starts (OUT uses more than one) */
1337
		uf = uframe;
1338
		max_used = ehci->uframe_periodic_max - stream->ps.usecs;
1339 1340
		for (tmp = stream->ps.cs_mask & 0xff; tmp; tmp >>= 1, uf++) {
			if (ehci->bandwidth[uf] > max_used)
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				return 0;
		}

		/* for IN, check CSPLIT */
1345 1346 1347
		if (stream->ps.c_usecs) {
			max_used = ehci->uframe_periodic_max -
					stream->ps.c_usecs;
1348 1349 1350 1351
			uf = uframe & ~7;
			tmp = 1 << (2+8);
			for (i = (uframe & 7) + 2; i < 8; (++i, tmp <<= 1)) {
				if ((stream->ps.cs_mask & tmp) == 0)
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					continue;
1353
				if (ehci->bandwidth[uf+i] > max_used)
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					return 0;
1355
			}
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		}

1358 1359
		uframe += stream->ps.bw_uperiod;
	} while (uframe < EHCI_BANDWIDTH_SIZE);
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1361 1362
	stream->ps.cs_mask <<= uframe & 7;
	stream->splits = cpu_to_hc32(ehci, stream->ps.cs_mask);
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	return 1;
}

/*
 * This scheduler plans almost as far into the future as it has actual
 * periodic schedule slots.  (Affected by TUNE_FLS, which defaults to
 * "as small as possible" to be cache-friendlier.)  That limits the size
 * transfers you can stream reliably; avoid more than 64 msec per urb.
 * Also avoid queue depths of less than ehci's worst irq latency (affected
 * by the per-urb URB_NO_INTERRUPT hint, the log2_irq_thresh module parameter,
 * and other factors); or more than about 230 msec total (for portability,
 * given EHCI_TUNE_FLS and the slop).  Or, write a smarter scheduler!
 */

1377
#define SCHEDULING_DELAY	40	/* microframes */
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static int
iso_stream_schedule (
	struct ehci_hcd		*ehci,
	struct urb		*urb,
	struct ehci_iso_stream	*stream
)
{
1386 1387 1388
	u32			now, base, next, start, period, span, now2;
	u32			wrap = 0, skip = 0;
	int			status = 0;
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	unsigned		mod = ehci->periodic_size << 3;
	struct ehci_iso_sched	*sched = urb->hcpriv;
1391
	bool			empty = list_empty(&stream->td_list);
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1393
	period = stream->uperiod;
1394
	span = sched->span;
1395
	if (!stream->highspeed)
1396 1397
		span <<= 3;

1398
	now = ehci_read_frame_index(ehci) & (mod - 1);
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1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412
	/* Take the isochronous scheduling threshold into account */
	if (ehci->i_thresh)
		next = now + ehci->i_thresh;	/* uframe cache */
	else
		next = (now + 2 + 7) & ~0x07;	/* full frame cache */

	/*
	 * Use ehci->last_iso_frame as the base.  There can't be any
	 * TDs scheduled for earlier than that.
	 */
	base = ehci->last_iso_frame << 3;
	next = (next - base) & (mod - 1);

1413
	/* Start a new isochronous stream? */
1414 1415
	if (unlikely(empty && !hcd_periodic_completion_in_progress(
			ehci_to_hcd(ehci), urb->ep))) {
1416

1417 1418 1419
		/* Schedule the endpoint */
		if (stream->ps.phase == NO_FRAME) {
			int		done = 0;
1420

1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449
			start = (now & ~0x07) + SCHEDULING_DELAY;

			/* find a uframe slot with enough bandwidth.
			 * Early uframes are more precious because full-speed
			 * iso IN transfers can't use late uframes,
			 * and therefore they should be allocated last.
			 */
			next = start;
			start += period;
			do {
				start--;
				/* check schedule: enough space? */
				if (stream->highspeed) {
					if (itd_slot_ok(ehci, stream, start))
						done = 1;
				} else {
					if ((start % 8) >= 6)
						continue;
					if (sitd_slot_ok(ehci, stream, start,
							sched))
						done = 1;
				}
			} while (start > next && !done);

			/* no room in the schedule */
			if (!done) {
				ehci_dbg(ehci, "iso sched full %p", urb);
				status = -ENOSPC;
				goto fail;
1450
			}
1451 1452 1453 1454 1455 1456 1457
			stream->ps.phase = (start >> 3) &
					(stream->ps.period - 1);
			stream->ps.bw_phase = stream->ps.phase &
					(stream->ps.bw_period - 1);
			stream->ps.phase_uf = start & 7;
			reserve_release_iso_bandwidth(ehci, stream, 1);
		}
1458

1459 1460 1461
		/* New stream is already scheduled; use the upcoming slot */
		else {
			start = (stream->ps.phase << 3) + stream->ps.phase_uf;
1462
		}
1463 1464 1465

		start = (start - base) & (mod - 1);
		goto use_start;
1466 1467 1468
	}

	/*
1469
	 * Typical case: reuse current schedule, stream may still be active.
1470
	 * Hopefully there are no gaps from the host falling behind
1471 1472
	 * (irq delays etc).  If there are, the behavior depends on
	 * whether URB_ISO_ASAP is set.
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	 */
1474 1475
	start = (stream->next_uframe - base) & (mod - 1);
	now2 = (now - base) & (mod - 1);
1476

1477 1478 1479 1480 1481 1482 1483
	/* Is the schedule already full? */
	if (unlikely(!empty && start < period)) {
		ehci_dbg(ehci, "iso sched full %p (%u-%u < %u mod %u)\n",
				urb, stream->next_uframe, base, period, mod);
		status = -ENOSPC;
		goto fail;
	}
1484

1485 1486
	/* Is the next packet scheduled after the base time? */
	if (likely(!empty || start <= now2 + period)) {
1487

1488 1489 1490 1491
		/* URB_ISO_ASAP: make sure that start >= next */
		if (unlikely(start < next &&
				(urb->transfer_flags & URB_ISO_ASAP)))
			goto do_ASAP;
1492

1493 1494 1495
		/* Otherwise use start, if it's not in the past */
		if (likely(start >= now2))
			goto use_start;
1496

1497 1498 1499 1500 1501 1502 1503
	/* Otherwise we got an underrun while the queue was empty */
	} else {
		if (urb->transfer_flags & URB_ISO_ASAP)
			goto do_ASAP;
		wrap = mod;
		now2 += mod;
	}
1504

1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521
	/* How many uframes and packets do we need to skip? */
	skip = (now2 - start + period - 1) & -period;
	if (skip >= span) {		/* Entirely in the past? */
		ehci_dbg(ehci, "iso underrun %p (%u+%u < %u) [%u]\n",
				urb, start + base, span - period, now2 + base,
				base);

		/* Try to keep the last TD intact for scanning later */
		skip = span - period;

		/* Will it come before the current scan position? */
		if (empty) {
			skip = span;	/* Skip the entire URB */
			status = 1;	/* and give it back immediately */
			iso_sched_free(stream, sched);
			sched = NULL;
		}
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	}
1523 1524 1525 1526
	urb->error_count = skip / period;
	if (sched)
		sched->first_packet = urb->error_count;
	goto use_start;
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1528 1529 1530 1531 1532
 do_ASAP:
	/* Use the first slot after "next" */
	start = next + ((start - next) & (period - 1));

 use_start:
1533
	/* Tried to schedule too far into the future? */
1534
	if (unlikely(start + span - period >= mod + wrap)) {
1535
		ehci_dbg(ehci, "request %p would overflow (%u+%u >= %u)\n",
1536
				urb, start, span - period, mod + wrap);
1537 1538 1539
		status = -EFBIG;
		goto fail;
	}
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1541 1542
	start += base;
	stream->next_uframe = (start + skip) & (mod - 1);
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	/* report high speed start in uframes; full speed, in frames */
1545
	urb->start_frame = start & (mod - 1);
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	if (!stream->highspeed)
		urb->start_frame >>= 3;
1548 1549 1550

	/* Make sure scan_isoc() sees these */
	if (ehci->isoc_count == 0)
1551
		ehci->last_iso_frame = now >> 3;
1552
	return status;
1553 1554 1555 1556 1557

 fail:
	iso_sched_free(stream, sched);
	urb->hcpriv = NULL;
	return status;
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}

/*-------------------------------------------------------------------------*/

static inline void
1563 1564
itd_init(struct ehci_hcd *ehci, struct ehci_iso_stream *stream,
		struct ehci_itd *itd)
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{
	int i;

1568
	/* it's been recently zeroed */
1569
	itd->hw_next = EHCI_LIST_END(ehci);
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	itd->hw_bufp [0] = stream->buf0;
	itd->hw_bufp [1] = stream->buf1;
	itd->hw_bufp [2] = stream->buf2;

	for (i = 0; i < 8; i++)
		itd->index[i] = -1;

	/* All other fields are filled when scheduling */
}

static inline void
1581 1582
itd_patch(
	struct ehci_hcd		*ehci,
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	struct ehci_itd		*itd,
	struct ehci_iso_sched	*iso_sched,
	unsigned		index,
1586
	u16			uframe
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)
{
	struct ehci_iso_packet	*uf = &iso_sched->packet [index];
	unsigned		pg = itd->pg;

	// BUG_ON (pg == 6 && uf->cross);

	uframe &= 0x07;
	itd->index [uframe] = index;

1597 1598 1599 1600
	itd->hw_transaction[uframe] = uf->transaction;
	itd->hw_transaction[uframe] |= cpu_to_hc32(ehci, pg << 12);
	itd->hw_bufp[pg] |= cpu_to_hc32(ehci, uf->bufp & ~(u32)0);
	itd->hw_bufp_hi[pg] |= cpu_to_hc32(ehci, (u32)(uf->bufp >> 32));
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	/* iso_frame_desc[].offset must be strictly increasing */
1603
	if (unlikely (uf->cross)) {
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		u64	bufp = uf->bufp + 4096;
1605

L
Linus Torvalds 已提交
1606
		itd->pg = ++pg;
1607 1608
		itd->hw_bufp[pg] |= cpu_to_hc32(ehci, bufp & ~(u32)0);
		itd->hw_bufp_hi[pg] |= cpu_to_hc32(ehci, (u32)(bufp >> 32));
L
Linus Torvalds 已提交
1609 1610 1611 1612 1613 1614
	}
}

static inline void
itd_link (struct ehci_hcd *ehci, unsigned frame, struct ehci_itd *itd)
{
C
Clemens Ladisch 已提交
1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632
	union ehci_shadow	*prev = &ehci->pshadow[frame];
	__hc32			*hw_p = &ehci->periodic[frame];
	union ehci_shadow	here = *prev;
	__hc32			type = 0;

	/* skip any iso nodes which might belong to previous microframes */
	while (here.ptr) {
		type = Q_NEXT_TYPE(ehci, *hw_p);
		if (type == cpu_to_hc32(ehci, Q_TYPE_QH))
			break;
		prev = periodic_next_shadow(ehci, prev, type);
		hw_p = shadow_next_periodic(ehci, &here, type);
		here = *prev;
	}

	itd->itd_next = here;
	itd->hw_next = *hw_p;
	prev->itd = itd;
L
Linus Torvalds 已提交
1633 1634
	itd->frame = frame;
	wmb ();
C
Clemens Ladisch 已提交
1635
	*hw_p = cpu_to_hc32(ehci, itd->itd_dma | Q_TYPE_ITD);
L
Linus Torvalds 已提交
1636 1637 1638
}

/* fit urb's itds into the selected schedule slot; activate as needed */
A
Alan Stern 已提交
1639
static void itd_link_urb(
L
Linus Torvalds 已提交
1640 1641 1642 1643 1644 1645
	struct ehci_hcd		*ehci,
	struct urb		*urb,
	unsigned		mod,
	struct ehci_iso_stream	*stream
)
{
1646
	int			packet;
L
Linus Torvalds 已提交
1647 1648 1649 1650
	unsigned		next_uframe, uframe, frame;
	struct ehci_iso_sched	*iso_sched = urb->hcpriv;
	struct ehci_itd		*itd;

1651
	next_uframe = stream->next_uframe & (mod - 1);
L
Linus Torvalds 已提交
1652

1653
	if (unlikely (list_empty(&stream->td_list)))
L
Linus Torvalds 已提交
1654 1655
		ehci_to_hcd(ehci)->self.bandwidth_allocated
				+= stream->bandwidth;
1656 1657

	if (ehci_to_hcd(ehci)->self.bandwidth_isoc_reqs == 0) {
1658 1659
		if (ehci->amd_pll_fix == 1)
			usb_amd_quirk_pll_disable();
1660 1661
	}

L
Linus Torvalds 已提交
1662 1663 1664
	ehci_to_hcd(ehci)->self.bandwidth_isoc_reqs++;

	/* fill iTDs uframe by uframe */
1665 1666
	for (packet = iso_sched->first_packet, itd = NULL;
			packet < urb->number_of_packets;) {
L
Linus Torvalds 已提交
1667 1668 1669 1670 1671 1672 1673 1674 1675
		if (itd == NULL) {
			/* ASSERT:  we have all necessary itds */
			// BUG_ON (list_empty (&iso_sched->td_list));

			/* ASSERT:  no itds for this endpoint in this uframe */

			itd = list_entry (iso_sched->td_list.next,
					struct ehci_itd, itd_list);
			list_move_tail (&itd->itd_list, &stream->td_list);
1676
			itd->stream = stream;
1677
			itd->urb = urb;
1678
			itd_init (ehci, stream, itd);
L
Linus Torvalds 已提交
1679 1680 1681 1682 1683
		}

		uframe = next_uframe & 0x07;
		frame = next_uframe >> 3;

1684
		itd_patch(ehci, itd, iso_sched, packet, uframe);
L
Linus Torvalds 已提交
1685

1686
		next_uframe += stream->uperiod;
1687
		next_uframe &= mod - 1;
L
Linus Torvalds 已提交
1688 1689 1690 1691 1692
		packet++;

		/* link completed itds into the schedule */
		if (((next_uframe >> 3) != frame)
				|| packet == urb->number_of_packets) {
1693
			itd_link(ehci, frame & (ehci->periodic_size - 1), itd);
L
Linus Torvalds 已提交
1694 1695 1696 1697 1698 1699 1700
			itd = NULL;
		}
	}
	stream->next_uframe = next_uframe;

	/* don't need that schedule data any more */
	iso_sched_free (stream, iso_sched);
1701
	urb->hcpriv = stream;
L
Linus Torvalds 已提交
1702

1703
	++ehci->isoc_count;
A
Alan Stern 已提交
1704
	enable_periodic(ehci);
L
Linus Torvalds 已提交
1705 1706 1707 1708
}

#define	ISO_ERRS (EHCI_ISOC_BUF_ERR | EHCI_ISOC_BABBLE | EHCI_ISOC_XACTERR)

1709 1710 1711 1712 1713 1714 1715 1716 1717 1718
/* Process and recycle a completed ITD.  Return true iff its urb completed,
 * and hence its completion callback probably added things to the hardware
 * schedule.
 *
 * Note that we carefully avoid recycling this descriptor until after any
 * completion callback runs, so that it won't be reused quickly.  That is,
 * assuming (a) no more than two urbs per frame on this endpoint, and also
 * (b) only this endpoint's completions submit URBs.  It seems some silicon
 * corrupts things if you reuse completed descriptors very quickly...
 */
1719 1720
static bool itd_complete(struct ehci_hcd *ehci, struct ehci_itd *itd)
{
L
Linus Torvalds 已提交
1721 1722 1723 1724 1725 1726 1727
	struct urb				*urb = itd->urb;
	struct usb_iso_packet_descriptor	*desc;
	u32					t;
	unsigned				uframe;
	int					urb_index = -1;
	struct ehci_iso_stream			*stream = itd->stream;
	struct usb_device			*dev;
1728
	bool					retval = false;
L
Linus Torvalds 已提交
1729 1730 1731 1732 1733 1734 1735 1736

	/* for each uframe with a packet */
	for (uframe = 0; uframe < 8; uframe++) {
		if (likely (itd->index[uframe] == -1))
			continue;
		urb_index = itd->index[uframe];
		desc = &urb->iso_frame_desc [urb_index];

1737
		t = hc32_to_cpup(ehci, &itd->hw_transaction [uframe]);
L
Linus Torvalds 已提交
1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752
		itd->hw_transaction [uframe] = 0;

		/* report transfer status */
		if (unlikely (t & ISO_ERRS)) {
			urb->error_count++;
			if (t & EHCI_ISOC_BUF_ERR)
				desc->status = usb_pipein (urb->pipe)
					? -ENOSR  /* hc couldn't read */
					: -ECOMM; /* hc couldn't write */
			else if (t & EHCI_ISOC_BABBLE)
				desc->status = -EOVERFLOW;
			else /* (t & EHCI_ISOC_XACTERR) */
				desc->status = -EPROTO;

			/* HC need not update length with this error */
1753 1754 1755 1756
			if (!(t & EHCI_ISOC_BABBLE)) {
				desc->actual_length = EHCI_ITD_LENGTH(t);
				urb->actual_length += desc->actual_length;
			}
L
Linus Torvalds 已提交
1757 1758
		} else if (likely ((t & EHCI_ISOC_ACTIVE) == 0)) {
			desc->status = 0;
1759 1760
			desc->actual_length = EHCI_ITD_LENGTH(t);
			urb->actual_length += desc->actual_length;
1761 1762
		} else {
			/* URB was too late */
1763
			urb->error_count++;
L
Linus Torvalds 已提交
1764 1765 1766 1767 1768
		}
	}

	/* handle completion now? */
	if (likely ((urb_index + 1) != urb->number_of_packets))
1769
		goto done;
L
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1770 1771 1772 1773 1774 1775

	/* ASSERT: it's really the last itd for this urb
	list_for_each_entry (itd, &stream->td_list, itd_list)
		BUG_ON (itd->urb == urb);
	 */

1776
	/* give urb back to the driver; completion often (re)submits */
1777
	dev = urb->dev;
1778
	ehci_urb_done(ehci, urb, 0);
1779
	retval = true;
L
Linus Torvalds 已提交
1780
	urb = NULL;
1781 1782

	--ehci->isoc_count;
A
Alan Stern 已提交
1783
	disable_periodic(ehci);
L
Linus Torvalds 已提交
1784

1785
	ehci_to_hcd(ehci)->self.bandwidth_isoc_reqs--;
1786
	if (ehci_to_hcd(ehci)->self.bandwidth_isoc_reqs == 0) {
1787 1788
		if (ehci->amd_pll_fix == 1)
			usb_amd_quirk_pll_enable();
1789 1790
	}

1791
	if (unlikely(list_is_singular(&stream->td_list)))
L
Linus Torvalds 已提交
1792 1793
		ehci_to_hcd(ehci)->self.bandwidth_allocated
				-= stream->bandwidth;
K
Karsten Wiese 已提交
1794

1795 1796
done:
	itd->urb = NULL;
1797 1798 1799 1800 1801 1802 1803 1804 1805

	/* Add to the end of the free list for later reuse */
	list_move_tail(&itd->itd_list, &stream->free_list);

	/* Recycle the iTDs when the pipeline is empty (ep no longer in use) */
	if (list_empty(&stream->td_list)) {
		list_splice_tail_init(&stream->free_list,
				&ehci->cached_itd_list);
		start_free_itds(ehci);
K
Karsten Wiese 已提交
1806
	}
1807

1808
	return retval;
L
Linus Torvalds 已提交
1809 1810 1811 1812
}

/*-------------------------------------------------------------------------*/

1813
static int itd_submit (struct ehci_hcd *ehci, struct urb *urb,
A
Al Viro 已提交
1814
	gfp_t mem_flags)
L
Linus Torvalds 已提交
1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825
{
	int			status = -EINVAL;
	unsigned long		flags;
	struct ehci_iso_stream	*stream;

	/* Get iso_stream head */
	stream = iso_stream_find (ehci, urb);
	if (unlikely (stream == NULL)) {
		ehci_dbg (ehci, "can't get iso stream\n");
		return -ENOMEM;
	}
1826
	if (unlikely(urb->interval != stream->uperiod)) {
L
Linus Torvalds 已提交
1827
		ehci_dbg (ehci, "can't change iso interval %d --> %d\n",
1828
			stream->uperiod, urb->interval);
L
Linus Torvalds 已提交
1829 1830 1831 1832 1833 1834
		goto done;
	}

#ifdef EHCI_URB_TRACE
	ehci_dbg (ehci,
		"%s %s urb %p ep%d%s len %d, %d pkts %d uframes [%p]\n",
1835
		__func__, urb->dev->devpath, urb,
L
Linus Torvalds 已提交
1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851
		usb_pipeendpoint (urb->pipe),
		usb_pipein (urb->pipe) ? "in" : "out",
		urb->transfer_buffer_length,
		urb->number_of_packets, urb->interval,
		stream);
#endif

	/* allocate ITDs w/o locking anything */
	status = itd_urb_transaction (stream, ehci, urb, mem_flags);
	if (unlikely (status < 0)) {
		ehci_dbg (ehci, "can't init itds\n");
		goto done;
	}

	/* schedule ... need to lock */
	spin_lock_irqsave (&ehci->lock, flags);
1852
	if (unlikely(!HCD_HW_ACCESSIBLE(ehci_to_hcd(ehci)))) {
1853
		status = -ESHUTDOWN;
1854 1855 1856 1857 1858 1859
		goto done_not_linked;
	}
	status = usb_hcd_link_urb_to_ep(ehci_to_hcd(ehci), urb);
	if (unlikely(status))
		goto done_not_linked;
	status = iso_stream_schedule(ehci, urb, stream);
1860
	if (likely(status == 0)) {
L
Linus Torvalds 已提交
1861
		itd_link_urb (ehci, urb, ehci->periodic_size << 3, stream);
1862 1863 1864 1865
	} else if (status > 0) {
		status = 0;
		ehci_urb_done(ehci, urb, 0);
	} else {
1866
		usb_hcd_unlink_urb_from_ep(ehci_to_hcd(ehci), urb);
1867
	}
1868
 done_not_linked:
L
Linus Torvalds 已提交
1869
	spin_unlock_irqrestore (&ehci->lock, flags);
1870
 done:
L
Linus Torvalds 已提交
1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881
	return status;
}

/*-------------------------------------------------------------------------*/

/*
 * "Split ISO TDs" ... used for USB 1.1 devices going through the
 * TTs in USB 2.0 hubs.  These need microframe scheduling.
 */

static inline void
1882 1883
sitd_sched_init(
	struct ehci_hcd		*ehci,
L
Linus Torvalds 已提交
1884 1885 1886 1887 1888 1889 1890 1891 1892
	struct ehci_iso_sched	*iso_sched,
	struct ehci_iso_stream	*stream,
	struct urb		*urb
)
{
	unsigned	i;
	dma_addr_t	dma = urb->transfer_dma;

	/* how many frames are needed for these transfers */
1893
	iso_sched->span = urb->number_of_packets * stream->ps.period;
L
Linus Torvalds 已提交
1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911

	/* figure out per-frame sitd fields that we'll need later
	 * when we fit new sitds into the schedule.
	 */
	for (i = 0; i < urb->number_of_packets; i++) {
		struct ehci_iso_packet	*packet = &iso_sched->packet [i];
		unsigned		length;
		dma_addr_t		buf;
		u32			trans;

		length = urb->iso_frame_desc [i].length & 0x03ff;
		buf = dma + urb->iso_frame_desc [i].offset;

		trans = SITD_STS_ACTIVE;
		if (((i + 1) == urb->number_of_packets)
				&& !(urb->transfer_flags & URB_NO_INTERRUPT))
			trans |= SITD_IOC;
		trans |= length << 16;
1912
		packet->transaction = cpu_to_hc32(ehci, trans);
L
Linus Torvalds 已提交
1913 1914 1915 1916 1917 1918 1919

		/* might need to cross a buffer page within a td */
		packet->bufp = buf;
		packet->buf1 = (buf + length) & ~0x0fff;
		if (packet->buf1 != (buf & ~(u64)0x0fff))
			packet->cross = 1;

1920
		/* OUT uses multiple start-splits */
L
Linus Torvalds 已提交
1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934
		if (stream->bEndpointAddress & USB_DIR_IN)
			continue;
		length = (length + 187) / 188;
		if (length > 1) /* BEGIN vs ALL */
			length |= 1 << 3;
		packet->buf1 |= length;
	}
}

static int
sitd_urb_transaction (
	struct ehci_iso_stream	*stream,
	struct ehci_hcd		*ehci,
	struct urb		*urb,
A
Al Viro 已提交
1935
	gfp_t			mem_flags
L
Linus Torvalds 已提交
1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947
)
{
	struct ehci_sitd	*sitd;
	dma_addr_t		sitd_dma;
	int			i;
	struct ehci_iso_sched	*iso_sched;
	unsigned long		flags;

	iso_sched = iso_sched_alloc (urb->number_of_packets, mem_flags);
	if (iso_sched == NULL)
		return -ENOMEM;

1948
	sitd_sched_init(ehci, iso_sched, stream, urb);
L
Linus Torvalds 已提交
1949 1950 1951 1952 1953 1954 1955 1956 1957 1958

	/* allocate/init sITDs */
	spin_lock_irqsave (&ehci->lock, flags);
	for (i = 0; i < urb->number_of_packets; i++) {

		/* NOTE:  for now, we don't try to handle wraparound cases
		 * for IN (using sitd->hw_backpointer, like a FSTN), which
		 * means we never need two sitds for full speed packets.
		 */

1959 1960 1961
		/*
		 * Use siTDs from the free list, but not siTDs that may
		 * still be in use by the hardware.
L
Linus Torvalds 已提交
1962
		 */
1963 1964
		if (likely(!list_empty(&stream->free_list))) {
			sitd = list_first_entry(&stream->free_list,
L
Linus Torvalds 已提交
1965
					 struct ehci_sitd, sitd_list);
1966
			if (sitd->frame == ehci->now_frame)
1967
				goto alloc_sitd;
L
Linus Torvalds 已提交
1968 1969
			list_del (&sitd->sitd_list);
			sitd_dma = sitd->sitd_dma;
1970
		} else {
1971
 alloc_sitd:
L
Linus Torvalds 已提交
1972 1973 1974 1975
			spin_unlock_irqrestore (&ehci->lock, flags);
			sitd = dma_pool_alloc (ehci->sitd_pool, mem_flags,
					&sitd_dma);
			spin_lock_irqsave (&ehci->lock, flags);
1976 1977 1978 1979 1980
			if (!sitd) {
				iso_sched_free(stream, iso_sched);
				spin_unlock_irqrestore(&ehci->lock, flags);
				return -ENOMEM;
			}
L
Linus Torvalds 已提交
1981 1982 1983 1984
		}

		memset (sitd, 0, sizeof *sitd);
		sitd->sitd_dma = sitd_dma;
1985
		sitd->frame = NO_FRAME;
L
Linus Torvalds 已提交
1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999
		list_add (&sitd->sitd_list, &iso_sched->td_list);
	}

	/* temporarily store schedule info in hcpriv */
	urb->hcpriv = iso_sched;
	urb->error_count = 0;

	spin_unlock_irqrestore (&ehci->lock, flags);
	return 0;
}

/*-------------------------------------------------------------------------*/

static inline void
2000 2001
sitd_patch(
	struct ehci_hcd		*ehci,
L
Linus Torvalds 已提交
2002 2003 2004 2005 2006 2007 2008 2009 2010
	struct ehci_iso_stream	*stream,
	struct ehci_sitd	*sitd,
	struct ehci_iso_sched	*iso_sched,
	unsigned		index
)
{
	struct ehci_iso_packet	*uf = &iso_sched->packet [index];
	u64			bufp = uf->bufp;

2011
	sitd->hw_next = EHCI_LIST_END(ehci);
L
Linus Torvalds 已提交
2012 2013 2014
	sitd->hw_fullspeed_ep = stream->address;
	sitd->hw_uframe = stream->splits;
	sitd->hw_results = uf->transaction;
2015
	sitd->hw_backpointer = EHCI_LIST_END(ehci);
L
Linus Torvalds 已提交
2016 2017

	bufp = uf->bufp;
2018 2019
	sitd->hw_buf[0] = cpu_to_hc32(ehci, bufp);
	sitd->hw_buf_hi[0] = cpu_to_hc32(ehci, bufp >> 32);
L
Linus Torvalds 已提交
2020

2021
	sitd->hw_buf[1] = cpu_to_hc32(ehci, uf->buf1);
L
Linus Torvalds 已提交
2022 2023
	if (uf->cross)
		bufp += 4096;
2024
	sitd->hw_buf_hi[1] = cpu_to_hc32(ehci, bufp >> 32);
L
Linus Torvalds 已提交
2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036
	sitd->index = index;
}

static inline void
sitd_link (struct ehci_hcd *ehci, unsigned frame, struct ehci_sitd *sitd)
{
	/* note: sitd ordering could matter (CSPLIT then SSPLIT) */
	sitd->sitd_next = ehci->pshadow [frame];
	sitd->hw_next = ehci->periodic [frame];
	ehci->pshadow [frame].sitd = sitd;
	sitd->frame = frame;
	wmb ();
2037
	ehci->periodic[frame] = cpu_to_hc32(ehci, sitd->sitd_dma | Q_TYPE_SITD);
L
Linus Torvalds 已提交
2038 2039 2040
}

/* fit urb's sitds into the selected schedule slot; activate as needed */
A
Alan Stern 已提交
2041
static void sitd_link_urb(
L
Linus Torvalds 已提交
2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054
	struct ehci_hcd		*ehci,
	struct urb		*urb,
	unsigned		mod,
	struct ehci_iso_stream	*stream
)
{
	int			packet;
	unsigned		next_uframe;
	struct ehci_iso_sched	*sched = urb->hcpriv;
	struct ehci_sitd	*sitd;

	next_uframe = stream->next_uframe;

2055
	if (list_empty(&stream->td_list))
L
Linus Torvalds 已提交
2056 2057 2058
		/* usbfs ignores TT bandwidth */
		ehci_to_hcd(ehci)->self.bandwidth_allocated
				+= stream->bandwidth;
2059 2060

	if (ehci_to_hcd(ehci)->self.bandwidth_isoc_reqs == 0) {
2061 2062
		if (ehci->amd_pll_fix == 1)
			usb_amd_quirk_pll_disable();
2063 2064
	}

L
Linus Torvalds 已提交
2065 2066 2067
	ehci_to_hcd(ehci)->self.bandwidth_isoc_reqs++;

	/* fill sITDs frame by frame */
2068
	for (packet = sched->first_packet, sitd = NULL;
L
Linus Torvalds 已提交
2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079
			packet < urb->number_of_packets;
			packet++) {

		/* ASSERT:  we have all necessary sitds */
		BUG_ON (list_empty (&sched->td_list));

		/* ASSERT:  no itds for this endpoint in this frame */

		sitd = list_entry (sched->td_list.next,
				struct ehci_sitd, sitd_list);
		list_move_tail (&sitd->sitd_list, &stream->td_list);
2080
		sitd->stream = stream;
2081
		sitd->urb = urb;
L
Linus Torvalds 已提交
2082

2083
		sitd_patch(ehci, stream, sitd, sched, packet);
2084
		sitd_link(ehci, (next_uframe >> 3) & (ehci->periodic_size - 1),
L
Linus Torvalds 已提交
2085 2086
				sitd);

2087
		next_uframe += stream->uperiod;
L
Linus Torvalds 已提交
2088
	}
2089
	stream->next_uframe = next_uframe & (mod - 1);
L
Linus Torvalds 已提交
2090 2091 2092

	/* don't need that schedule data any more */
	iso_sched_free (stream, sched);
2093
	urb->hcpriv = stream;
L
Linus Torvalds 已提交
2094

2095
	++ehci->isoc_count;
A
Alan Stern 已提交
2096
	enable_periodic(ehci);
L
Linus Torvalds 已提交
2097 2098 2099 2100 2101
}

/*-------------------------------------------------------------------------*/

#define	SITD_ERRS (SITD_STS_ERR | SITD_STS_DBE | SITD_STS_BABBLE \
2102
				| SITD_STS_XACT | SITD_STS_MMF)
L
Linus Torvalds 已提交
2103

2104 2105 2106 2107 2108 2109 2110 2111 2112 2113
/* Process and recycle a completed SITD.  Return true iff its urb completed,
 * and hence its completion callback probably added things to the hardware
 * schedule.
 *
 * Note that we carefully avoid recycling this descriptor until after any
 * completion callback runs, so that it won't be reused quickly.  That is,
 * assuming (a) no more than two urbs per frame on this endpoint, and also
 * (b) only this endpoint's completions submit URBs.  It seems some silicon
 * corrupts things if you reuse completed descriptors very quickly...
 */
2114 2115
static bool sitd_complete(struct ehci_hcd *ehci, struct ehci_sitd *sitd)
{
L
Linus Torvalds 已提交
2116 2117 2118 2119 2120 2121
	struct urb				*urb = sitd->urb;
	struct usb_iso_packet_descriptor	*desc;
	u32					t;
	int					urb_index = -1;
	struct ehci_iso_stream			*stream = sitd->stream;
	struct usb_device			*dev;
2122
	bool					retval = false;
L
Linus Torvalds 已提交
2123 2124 2125

	urb_index = sitd->index;
	desc = &urb->iso_frame_desc [urb_index];
2126
	t = hc32_to_cpup(ehci, &sitd->hw_results);
L
Linus Torvalds 已提交
2127 2128

	/* report transfer status */
2129
	if (unlikely(t & SITD_ERRS)) {
L
Linus Torvalds 已提交
2130 2131 2132 2133 2134 2135 2136 2137 2138
		urb->error_count++;
		if (t & SITD_STS_DBE)
			desc->status = usb_pipein (urb->pipe)
				? -ENOSR  /* hc couldn't read */
				: -ECOMM; /* hc couldn't write */
		else if (t & SITD_STS_BABBLE)
			desc->status = -EOVERFLOW;
		else /* XACT, MMF, etc */
			desc->status = -EPROTO;
2139 2140 2141
	} else if (unlikely(t & SITD_STS_ACTIVE)) {
		/* URB was too late */
		urb->error_count++;
L
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2142 2143
	} else {
		desc->status = 0;
2144 2145
		desc->actual_length = desc->length - SITD_LENGTH(t);
		urb->actual_length += desc->actual_length;
L
Linus Torvalds 已提交
2146 2147 2148 2149
	}

	/* handle completion now? */
	if ((urb_index + 1) != urb->number_of_packets)
2150
		goto done;
L
Linus Torvalds 已提交
2151 2152 2153 2154 2155 2156

	/* ASSERT: it's really the last sitd for this urb
	list_for_each_entry (sitd, &stream->td_list, sitd_list)
		BUG_ON (sitd->urb == urb);
	 */

2157
	/* give urb back to the driver; completion often (re)submits */
2158
	dev = urb->dev;
2159
	ehci_urb_done(ehci, urb, 0);
2160
	retval = true;
L
Linus Torvalds 已提交
2161
	urb = NULL;
2162 2163

	--ehci->isoc_count;
A
Alan Stern 已提交
2164
	disable_periodic(ehci);
L
Linus Torvalds 已提交
2165

2166
	ehci_to_hcd(ehci)->self.bandwidth_isoc_reqs--;
2167
	if (ehci_to_hcd(ehci)->self.bandwidth_isoc_reqs == 0) {
2168 2169
		if (ehci->amd_pll_fix == 1)
			usb_amd_quirk_pll_enable();
2170 2171
	}

2172
	if (list_is_singular(&stream->td_list))
L
Linus Torvalds 已提交
2173 2174
		ehci_to_hcd(ehci)->self.bandwidth_allocated
				-= stream->bandwidth;
2175

2176 2177
done:
	sitd->urb = NULL;
2178 2179 2180 2181 2182 2183 2184 2185 2186

	/* Add to the end of the free list for later reuse */
	list_move_tail(&sitd->sitd_list, &stream->free_list);

	/* Recycle the siTDs when the pipeline is empty (ep no longer in use) */
	if (list_empty(&stream->td_list)) {
		list_splice_tail_init(&stream->free_list,
				&ehci->cached_sitd_list);
		start_free_itds(ehci);
2187
	}
2188

2189
	return retval;
L
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2190 2191 2192
}


2193
static int sitd_submit (struct ehci_hcd *ehci, struct urb *urb,
A
Al Viro 已提交
2194
	gfp_t mem_flags)
L
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2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205
{
	int			status = -EINVAL;
	unsigned long		flags;
	struct ehci_iso_stream	*stream;

	/* Get iso_stream head */
	stream = iso_stream_find (ehci, urb);
	if (stream == NULL) {
		ehci_dbg (ehci, "can't get iso stream\n");
		return -ENOMEM;
	}
2206
	if (urb->interval != stream->ps.period) {
L
Linus Torvalds 已提交
2207
		ehci_dbg (ehci, "can't change iso interval %d --> %d\n",
2208
			stream->ps.period, urb->interval);
L
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2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229
		goto done;
	}

#ifdef EHCI_URB_TRACE
	ehci_dbg (ehci,
		"submit %p dev%s ep%d%s-iso len %d\n",
		urb, urb->dev->devpath,
		usb_pipeendpoint (urb->pipe),
		usb_pipein (urb->pipe) ? "in" : "out",
		urb->transfer_buffer_length);
#endif

	/* allocate SITDs */
	status = sitd_urb_transaction (stream, ehci, urb, mem_flags);
	if (status < 0) {
		ehci_dbg (ehci, "can't init sitds\n");
		goto done;
	}

	/* schedule ... need to lock */
	spin_lock_irqsave (&ehci->lock, flags);
2230
	if (unlikely(!HCD_HW_ACCESSIBLE(ehci_to_hcd(ehci)))) {
2231
		status = -ESHUTDOWN;
2232 2233 2234 2235 2236 2237
		goto done_not_linked;
	}
	status = usb_hcd_link_urb_to_ep(ehci_to_hcd(ehci), urb);
	if (unlikely(status))
		goto done_not_linked;
	status = iso_stream_schedule(ehci, urb, stream);
2238
	if (likely(status == 0)) {
L
Linus Torvalds 已提交
2239
		sitd_link_urb (ehci, urb, ehci->periodic_size << 3, stream);
2240 2241 2242 2243
	} else if (status > 0) {
		status = 0;
		ehci_urb_done(ehci, urb, 0);
	} else {
2244
		usb_hcd_unlink_urb_from_ep(ehci_to_hcd(ehci), urb);
2245
	}
2246
 done_not_linked:
L
Linus Torvalds 已提交
2247
	spin_unlock_irqrestore (&ehci->lock, flags);
2248
 done:
L
Linus Torvalds 已提交
2249 2250 2251 2252 2253
	return status;
}

/*-------------------------------------------------------------------------*/

2254
static void scan_isoc(struct ehci_hcd *ehci)
L
Linus Torvalds 已提交
2255
{
2256 2257 2258
	unsigned	uf, now_frame, frame;
	unsigned	fmask = ehci->periodic_size - 1;
	bool		modified, live;
L
Linus Torvalds 已提交
2259 2260 2261 2262 2263 2264

	/*
	 * When running, scan from last scan point up to "now"
	 * else clean up by scanning everything that's left.
	 * Touches as few pages as possible:  cache-friendly.
	 */
2265
	if (ehci->rh_state >= EHCI_RH_RUNNING) {
2266 2267 2268
		uf = ehci_read_frame_index(ehci);
		now_frame = (uf >> 3) & fmask;
		live = true;
K
Karsten Wiese 已提交
2269
	} else  {
2270
		now_frame = (ehci->last_iso_frame - 1) & fmask;
2271
		live = false;
K
Karsten Wiese 已提交
2272
	}
2273
	ehci->now_frame = now_frame;
L
Linus Torvalds 已提交
2274

2275
	frame = ehci->last_iso_frame;
L
Linus Torvalds 已提交
2276 2277
	for (;;) {
		union ehci_shadow	q, *q_p;
2278
		__hc32			type, *hw_p;
L
Linus Torvalds 已提交
2279 2280 2281 2282 2283 2284

restart:
		/* scan each element in frame's queue for completions */
		q_p = &ehci->pshadow [frame];
		hw_p = &ehci->periodic [frame];
		q.ptr = q_p->ptr;
2285
		type = Q_NEXT_TYPE(ehci, *hw_p);
2286
		modified = false;
L
Linus Torvalds 已提交
2287 2288

		while (q.ptr != NULL) {
2289
			switch (hc32_to_cpu(ehci, type)) {
L
Linus Torvalds 已提交
2290
			case Q_TYPE_ITD:
2291 2292
				/* If this ITD is still active, leave it for
				 * later processing ... check the next entry.
2293 2294
				 * No need to check for activity unless the
				 * frame is current.
2295
				 */
2296
				if (frame == now_frame && live) {
2297 2298 2299 2300 2301 2302 2303 2304 2305 2306
					rmb();
					for (uf = 0; uf < 8; uf++) {
						if (q.itd->hw_transaction[uf] &
							    ITD_ACTIVE(ehci))
							break;
					}
					if (uf < 8) {
						q_p = &q.itd->itd_next;
						hw_p = &q.itd->hw_next;
						type = Q_NEXT_TYPE(ehci,
2307
							q.itd->hw_next);
2308 2309 2310
						q = *q_p;
						break;
					}
L
Linus Torvalds 已提交
2311 2312
				}

2313 2314 2315
				/* Take finished ITDs out of the schedule
				 * and process them:  recycle, maybe report
				 * URB completion.  HC won't cache the
L
Linus Torvalds 已提交
2316 2317 2318
				 * pointer for much longer, if at all.
				 */
				*q_p = q.itd->itd_next;
2319 2320 2321 2322 2323
				if (!ehci->use_dummy_qh ||
				    q.itd->hw_next != EHCI_LIST_END(ehci))
					*hw_p = q.itd->hw_next;
				else
					*hw_p = ehci->dummy->qh_dma;
2324
				type = Q_NEXT_TYPE(ehci, q.itd->hw_next);
L
Linus Torvalds 已提交
2325
				wmb();
2326
				modified = itd_complete (ehci, q.itd);
L
Linus Torvalds 已提交
2327 2328 2329
				q = *q_p;
				break;
			case Q_TYPE_SITD:
2330 2331
				/* If this SITD is still active, leave it for
				 * later processing ... check the next entry.
2332 2333
				 * No need to check for activity unless the
				 * frame is current.
2334
				 */
2335 2336
				if (((frame == now_frame) ||
				     (((frame + 1) & fmask) == now_frame))
2337 2338 2339 2340
				    && live
				    && (q.sitd->hw_results &
					SITD_ACTIVE(ehci))) {

L
Linus Torvalds 已提交
2341 2342
					q_p = &q.sitd->sitd_next;
					hw_p = &q.sitd->hw_next;
2343 2344
					type = Q_NEXT_TYPE(ehci,
							q.sitd->hw_next);
L
Linus Torvalds 已提交
2345 2346 2347
					q = *q_p;
					break;
				}
2348 2349 2350 2351 2352

				/* Take finished SITDs out of the schedule
				 * and process them:  recycle, maybe report
				 * URB completion.
				 */
L
Linus Torvalds 已提交
2353
				*q_p = q.sitd->sitd_next;
2354 2355 2356 2357 2358
				if (!ehci->use_dummy_qh ||
				    q.sitd->hw_next != EHCI_LIST_END(ehci))
					*hw_p = q.sitd->hw_next;
				else
					*hw_p = ehci->dummy->qh_dma;
2359
				type = Q_NEXT_TYPE(ehci, q.sitd->hw_next);
L
Linus Torvalds 已提交
2360
				wmb();
2361
				modified = sitd_complete (ehci, q.sitd);
L
Linus Torvalds 已提交
2362 2363 2364
				q = *q_p;
				break;
			default:
2365
				ehci_dbg(ehci, "corrupt type %d frame %d shadow %p\n",
L
Linus Torvalds 已提交
2366 2367
					type, frame, q.ptr);
				// BUG ();
2368 2369 2370 2371
				/* FALL THROUGH */
			case Q_TYPE_QH:
			case Q_TYPE_FSTN:
				/* End of the iTDs and siTDs */
L
Linus Torvalds 已提交
2372
				q.ptr = NULL;
2373
				break;
L
Linus Torvalds 已提交
2374 2375 2376
			}

			/* assume completion callbacks modify the queue */
2377 2378
			if (unlikely(modified && ehci->isoc_count > 0))
				goto restart;
L
Linus Torvalds 已提交
2379 2380
		}

2381 2382
		/* Stop when we have reached the current frame */
		if (frame == now_frame)
2383
			break;
2384 2385 2386 2387

		/* The last frame may still have active siTDs */
		ehci->last_iso_frame = frame;
		frame = (frame + 1) & fmask;
2388
	}
L
Linus Torvalds 已提交
2389
}