xhci-ring.c 121.4 KB
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// SPDX-License-Identifier: GPL-2.0
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/*
 * xHCI host controller driver
 *
 * Copyright (C) 2008 Intel Corp.
 *
 * Author: Sarah Sharp
 * Some code borrowed from the Linux EHCI driver.
 */

/*
 * Ring initialization rules:
 * 1. Each segment is initialized to zero, except for link TRBs.
 * 2. Ring cycle state = 0.  This represents Producer Cycle State (PCS) or
 *    Consumer Cycle State (CCS), depending on ring function.
 * 3. Enqueue pointer = dequeue pointer = address of first TRB in the segment.
 *
 * Ring behavior rules:
 * 1. A ring is empty if enqueue == dequeue.  This means there will always be at
 *    least one free TRB in the ring.  This is useful if you want to turn that
 *    into a link TRB and expand the ring.
 * 2. When incrementing an enqueue or dequeue pointer, if the next TRB is a
 *    link TRB, then load the pointer with the address in the link TRB.  If the
 *    link TRB had its toggle bit set, you may need to update the ring cycle
 *    state (see cycle bit rules).  You may have to do this multiple times
 *    until you reach a non-link TRB.
 * 3. A ring is full if enqueue++ (for the definition of increment above)
 *    equals the dequeue pointer.
 *
 * Cycle bit rules:
 * 1. When a consumer increments a dequeue pointer and encounters a toggle bit
 *    in a link TRB, it must toggle the ring cycle state.
 * 2. When a producer increments an enqueue pointer and encounters a toggle bit
 *    in a link TRB, it must toggle the ring cycle state.
 *
 * Producer rules:
 * 1. Check if ring is full before you enqueue.
 * 2. Write the ring cycle state to the cycle bit in the TRB you're enqueuing.
 *    Update enqueue pointer between each write (which may update the ring
 *    cycle state).
 * 3. Notify consumer.  If SW is producer, it rings the doorbell for command
 *    and endpoint rings.  If HC is the producer for the event ring,
 *    and it generates an interrupt according to interrupt modulation rules.
 *
 * Consumer rules:
 * 1. Check if TRB belongs to you.  If the cycle bit == your ring cycle state,
 *    the TRB is owned by the consumer.
 * 2. Update dequeue pointer (which may update the ring cycle state) and
 *    continue processing TRBs until you reach a TRB which is not owned by you.
 * 3. Notify the producer.  SW is the consumer for the event ring, and it
 *   updates event ring dequeue pointer.  HC is the consumer for the command and
 *   endpoint rings; it generates events on the event ring for these.
 */

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#include <linux/scatterlist.h>
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#include <linux/slab.h>
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#include <linux/dma-mapping.h>
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#include "xhci.h"
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#include "xhci-trace.h"
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#include "xhci-mtk.h"
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/*
 * Returns zero if the TRB isn't in this segment, otherwise it returns the DMA
 * address of the TRB.
 */
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dma_addr_t xhci_trb_virt_to_dma(struct xhci_segment *seg,
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		union xhci_trb *trb)
{
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	unsigned long segment_offset;
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	if (!seg || !trb || trb < seg->trbs)
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		return 0;
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	/* offset in TRBs */
	segment_offset = trb - seg->trbs;
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	if (segment_offset >= TRBS_PER_SEGMENT)
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		return 0;
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	return seg->dma + (segment_offset * sizeof(*trb));
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}

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static bool trb_is_noop(union xhci_trb *trb)
{
	return TRB_TYPE_NOOP_LE32(trb->generic.field[3]);
}

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static bool trb_is_link(union xhci_trb *trb)
{
	return TRB_TYPE_LINK_LE32(trb->link.control);
}

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static bool last_trb_on_seg(struct xhci_segment *seg, union xhci_trb *trb)
{
	return trb == &seg->trbs[TRBS_PER_SEGMENT - 1];
}

static bool last_trb_on_ring(struct xhci_ring *ring,
			struct xhci_segment *seg, union xhci_trb *trb)
{
	return last_trb_on_seg(seg, trb) && (seg->next == ring->first_seg);
}

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static bool link_trb_toggles_cycle(union xhci_trb *trb)
{
	return le32_to_cpu(trb->link.control) & LINK_TOGGLE;
}

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static bool last_td_in_urb(struct xhci_td *td)
{
	struct urb_priv *urb_priv = td->urb->hcpriv;

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	return urb_priv->num_tds_done == urb_priv->num_tds;
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}

static void inc_td_cnt(struct urb *urb)
{
	struct urb_priv *urb_priv = urb->hcpriv;

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	urb_priv->num_tds_done++;
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}

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static void trb_to_noop(union xhci_trb *trb, u32 noop_type)
{
	if (trb_is_link(trb)) {
		/* unchain chained link TRBs */
		trb->link.control &= cpu_to_le32(~TRB_CHAIN);
	} else {
		trb->generic.field[0] = 0;
		trb->generic.field[1] = 0;
		trb->generic.field[2] = 0;
		/* Preserve only the cycle bit of this TRB */
		trb->generic.field[3] &= cpu_to_le32(TRB_CYCLE);
		trb->generic.field[3] |= cpu_to_le32(TRB_TYPE(noop_type));
	}
}

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/* Updates trb to point to the next TRB in the ring, and updates seg if the next
 * TRB is in a new segment.  This does not skip over link TRBs, and it does not
 * effect the ring dequeue or enqueue pointers.
 */
static void next_trb(struct xhci_hcd *xhci,
		struct xhci_ring *ring,
		struct xhci_segment **seg,
		union xhci_trb **trb)
{
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	if (trb_is_link(*trb)) {
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		*seg = (*seg)->next;
		*trb = ((*seg)->trbs);
	} else {
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		(*trb)++;
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	}
}

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/*
 * See Cycle bit rules. SW is the consumer for the event ring only.
 * Don't make a ring full of link TRBs.  That would be dumb and this would loop.
 */
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void inc_deq(struct xhci_hcd *xhci, struct xhci_ring *ring)
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{
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	/* event ring doesn't have link trbs, check for last trb */
	if (ring->type == TYPE_EVENT) {
		if (!last_trb_on_seg(ring->deq_seg, ring->dequeue)) {
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			ring->dequeue++;
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			goto out;
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		}
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		if (last_trb_on_ring(ring, ring->deq_seg, ring->dequeue))
			ring->cycle_state ^= 1;
		ring->deq_seg = ring->deq_seg->next;
		ring->dequeue = ring->deq_seg->trbs;
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		goto out;
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	}

	/* All other rings have link trbs */
	if (!trb_is_link(ring->dequeue)) {
		ring->dequeue++;
		ring->num_trbs_free++;
	}
	while (trb_is_link(ring->dequeue)) {
		ring->deq_seg = ring->deq_seg->next;
		ring->dequeue = ring->deq_seg->trbs;
	}
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out:
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	trace_xhci_inc_deq(ring);

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	return;
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}

/*
 * See Cycle bit rules. SW is the consumer for the event ring only.
 * Don't make a ring full of link TRBs.  That would be dumb and this would loop.
 *
 * If we've just enqueued a TRB that is in the middle of a TD (meaning the
 * chain bit is set), then set the chain bit in all the following link TRBs.
 * If we've enqueued the last TRB in a TD, make sure the following link TRBs
 * have their chain bit cleared (so that each Link TRB is a separate TD).
 *
 * Section 6.4.4.1 of the 0.95 spec says link TRBs cannot have the chain bit
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 * set, but other sections talk about dealing with the chain bit set.  This was
 * fixed in the 0.96 specification errata, but we have to assume that all 0.95
 * xHCI hardware can't handle the chain bit being cleared on a link TRB.
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 *
 * @more_trbs_coming:	Will you enqueue more TRBs before calling
 *			prepare_transfer()?
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 */
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static void inc_enq(struct xhci_hcd *xhci, struct xhci_ring *ring,
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			bool more_trbs_coming)
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{
	u32 chain;
	union xhci_trb *next;

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	chain = le32_to_cpu(ring->enqueue->generic.field[3]) & TRB_CHAIN;
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	/* If this is not event ring, there is one less usable TRB */
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	if (!trb_is_link(ring->enqueue))
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		ring->num_trbs_free--;
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	next = ++(ring->enqueue);

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	/* Update the dequeue pointer further if that was a link TRB */
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	while (trb_is_link(next)) {
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		/*
		 * If the caller doesn't plan on enqueueing more TDs before
		 * ringing the doorbell, then we don't want to give the link TRB
		 * to the hardware just yet. We'll give the link TRB back in
		 * prepare_ring() just before we enqueue the TD at the top of
		 * the ring.
		 */
		if (!chain && !more_trbs_coming)
			break;
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		/* If we're not dealing with 0.95 hardware or isoc rings on
		 * AMD 0.96 host, carry over the chain bit of the previous TRB
		 * (which may mean the chain bit is cleared).
		 */
		if (!(ring->type == TYPE_ISOC &&
		      (xhci->quirks & XHCI_AMD_0x96_HOST)) &&
		    !xhci_link_trb_quirk(xhci)) {
			next->link.control &= cpu_to_le32(~TRB_CHAIN);
			next->link.control |= cpu_to_le32(chain);
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		}
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		/* Give this link TRB to the hardware */
		wmb();
		next->link.control ^= cpu_to_le32(TRB_CYCLE);

		/* Toggle the cycle bit after the last ring segment. */
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		if (link_trb_toggles_cycle(next))
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			ring->cycle_state ^= 1;

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		ring->enq_seg = ring->enq_seg->next;
		ring->enqueue = ring->enq_seg->trbs;
		next = ring->enqueue;
	}
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	trace_xhci_inc_enq(ring);
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}

/*
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 * Check to see if there's room to enqueue num_trbs on the ring and make sure
 * enqueue pointer will not advance into dequeue segment. See rules above.
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 */
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static inline int room_on_ring(struct xhci_hcd *xhci, struct xhci_ring *ring,
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		unsigned int num_trbs)
{
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	int num_trbs_in_deq_seg;
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	if (ring->num_trbs_free < num_trbs)
		return 0;

	if (ring->type != TYPE_COMMAND && ring->type != TYPE_EVENT) {
		num_trbs_in_deq_seg = ring->dequeue - ring->deq_seg->trbs;
		if (ring->num_trbs_free < num_trbs + num_trbs_in_deq_seg)
			return 0;
	}

	return 1;
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}

/* Ring the host controller doorbell after placing a command on the ring */
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void xhci_ring_cmd_db(struct xhci_hcd *xhci)
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{
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	if (!(xhci->cmd_ring_state & CMD_RING_STATE_RUNNING))
		return;

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	xhci_dbg(xhci, "// Ding dong!\n");
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	writel(DB_VALUE_HOST, &xhci->dba->doorbell[0]);
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	/* Flush PCI posted writes */
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	readl(&xhci->dba->doorbell[0]);
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}

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static bool xhci_mod_cmd_timer(struct xhci_hcd *xhci, unsigned long delay)
{
	return mod_delayed_work(system_wq, &xhci->cmd_timer, delay);
}

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static struct xhci_command *xhci_next_queued_cmd(struct xhci_hcd *xhci)
{
	return list_first_entry_or_null(&xhci->cmd_list, struct xhci_command,
					cmd_list);
}

/*
 * Turn all commands on command ring with status set to "aborted" to no-op trbs.
 * If there are other commands waiting then restart the ring and kick the timer.
 * This must be called with command ring stopped and xhci->lock held.
 */
static void xhci_handle_stopped_cmd_ring(struct xhci_hcd *xhci,
					 struct xhci_command *cur_cmd)
{
	struct xhci_command *i_cmd;

	/* Turn all aborted commands in list to no-ops, then restart */
	list_for_each_entry(i_cmd, &xhci->cmd_list, cmd_list) {

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		if (i_cmd->status != COMP_COMMAND_ABORTED)
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			continue;

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		i_cmd->status = COMP_COMMAND_RING_STOPPED;
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		xhci_dbg(xhci, "Turn aborted command %p to no-op\n",
			 i_cmd->command_trb);
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		trb_to_noop(i_cmd->command_trb, TRB_CMD_NOOP);
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		/*
		 * caller waiting for completion is called when command
		 *  completion event is received for these no-op commands
		 */
	}

	xhci->cmd_ring_state = CMD_RING_STATE_RUNNING;

	/* ring command ring doorbell to restart the command ring */
	if ((xhci->cmd_ring->dequeue != xhci->cmd_ring->enqueue) &&
	    !(xhci->xhc_state & XHCI_STATE_DYING)) {
		xhci->current_cmd = cur_cmd;
		xhci_mod_cmd_timer(xhci, XHCI_CMD_DEFAULT_TIMEOUT);
		xhci_ring_cmd_db(xhci);
	}
}

/* Must be called with xhci->lock held, releases and aquires lock back */
static int xhci_abort_cmd_ring(struct xhci_hcd *xhci, unsigned long flags)
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{
	u64 temp_64;
	int ret;

	xhci_dbg(xhci, "Abort command ring\n");

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	reinit_completion(&xhci->cmd_ring_stop_completion);
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	temp_64 = xhci_read_64(xhci, &xhci->op_regs->cmd_ring);
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	xhci_write_64(xhci, temp_64 | CMD_RING_ABORT,
			&xhci->op_regs->cmd_ring);
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	/* Section 4.6.1.2 of xHCI 1.0 spec says software should also time the
	 * completion of the Command Abort operation. If CRR is not negated in 5
	 * seconds then driver handles it as if host died (-ENODEV).
	 * In the future we should distinguish between -ENODEV and -ETIMEDOUT
	 * and try to recover a -ETIMEDOUT with a host controller reset.
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	 */
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	ret = xhci_handshake(&xhci->op_regs->cmd_ring,
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			CMD_RING_RUNNING, 0, 5 * 1000 * 1000);
	if (ret < 0) {
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		xhci_err(xhci, "Abort failed to stop command ring: %d\n", ret);
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		xhci_halt(xhci);
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		xhci_hc_died(xhci);
		return ret;
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	}
	/*
	 * Writing the CMD_RING_ABORT bit should cause a cmd completion event,
	 * however on some host hw the CMD_RING_RUNNING bit is correctly cleared
	 * but the completion event in never sent. Wait 2 secs (arbitrary
	 * number) to handle those cases after negation of CMD_RING_RUNNING.
	 */
	spin_unlock_irqrestore(&xhci->lock, flags);
	ret = wait_for_completion_timeout(&xhci->cmd_ring_stop_completion,
					  msecs_to_jiffies(2000));
	spin_lock_irqsave(&xhci->lock, flags);
	if (!ret) {
		xhci_dbg(xhci, "No stop event for abort, ring start fail?\n");
		xhci_cleanup_command_queue(xhci);
	} else {
		xhci_handle_stopped_cmd_ring(xhci, xhci_next_queued_cmd(xhci));
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	}
	return 0;
}

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void xhci_ring_ep_doorbell(struct xhci_hcd *xhci,
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		unsigned int slot_id,
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		unsigned int ep_index,
		unsigned int stream_id)
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{
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	__le32 __iomem *db_addr = &xhci->dba->doorbell[slot_id];
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	struct xhci_virt_ep *ep = &xhci->devs[slot_id]->eps[ep_index];
	unsigned int ep_state = ep->ep_state;
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	/* Don't ring the doorbell for this endpoint if there are pending
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	 * cancellations because we don't want to interrupt processing.
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	 * We don't want to restart any stream rings if there's a set dequeue
	 * pointer command pending because the device can choose to start any
	 * stream once the endpoint is on the HW schedule.
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	 */
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	if ((ep_state & EP_STOP_CMD_PENDING) || (ep_state & SET_DEQ_PENDING) ||
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	    (ep_state & EP_HALTED))
		return;
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	writel(DB_VALUE(ep_index, stream_id), db_addr);
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	/* The CPU has better things to do at this point than wait for a
	 * write-posting flush.  It'll get there soon enough.
	 */
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}

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/* Ring the doorbell for any rings with pending URBs */
static void ring_doorbell_for_active_rings(struct xhci_hcd *xhci,
		unsigned int slot_id,
		unsigned int ep_index)
{
	unsigned int stream_id;
	struct xhci_virt_ep *ep;

	ep = &xhci->devs[slot_id]->eps[ep_index];

	/* A ring has pending URBs if its TD list is not empty */
	if (!(ep->ep_state & EP_HAS_STREAMS)) {
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		if (ep->ring && !(list_empty(&ep->ring->td_list)))
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			xhci_ring_ep_doorbell(xhci, slot_id, ep_index, 0);
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		return;
	}

	for (stream_id = 1; stream_id < ep->stream_info->num_streams;
			stream_id++) {
		struct xhci_stream_info *stream_info = ep->stream_info;
		if (!list_empty(&stream_info->stream_rings[stream_id]->td_list))
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			xhci_ring_ep_doorbell(xhci, slot_id, ep_index,
						stream_id);
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	}
}

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/* Get the right ring for the given slot_id, ep_index and stream_id.
 * If the endpoint supports streams, boundary check the URB's stream ID.
 * If the endpoint doesn't support streams, return the singular endpoint ring.
 */
struct xhci_ring *xhci_triad_to_transfer_ring(struct xhci_hcd *xhci,
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		unsigned int slot_id, unsigned int ep_index,
		unsigned int stream_id)
{
	struct xhci_virt_ep *ep;

	ep = &xhci->devs[slot_id]->eps[ep_index];
	/* Common case: no streams */
	if (!(ep->ep_state & EP_HAS_STREAMS))
		return ep->ring;

	if (stream_id == 0) {
		xhci_warn(xhci,
				"WARN: Slot ID %u, ep index %u has streams, "
				"but URB has no stream ID.\n",
				slot_id, ep_index);
		return NULL;
	}

	if (stream_id < ep->stream_info->num_streams)
		return ep->stream_info->stream_rings[stream_id];

	xhci_warn(xhci,
			"WARN: Slot ID %u, ep index %u has "
			"stream IDs 1 to %u allocated, "
			"but stream ID %u is requested.\n",
			slot_id, ep_index,
			ep->stream_info->num_streams - 1,
			stream_id);
	return NULL;
}

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/*
 * Get the hw dequeue pointer xHC stopped on, either directly from the
 * endpoint context, or if streams are in use from the stream context.
 * The returned hw_dequeue contains the lowest four bits with cycle state
 * and possbile stream context type.
 */
static u64 xhci_get_hw_deq(struct xhci_hcd *xhci, struct xhci_virt_device *vdev,
			   unsigned int ep_index, unsigned int stream_id)
{
	struct xhci_ep_ctx *ep_ctx;
	struct xhci_stream_ctx *st_ctx;
	struct xhci_virt_ep *ep;

	ep = &vdev->eps[ep_index];

	if (ep->ep_state & EP_HAS_STREAMS) {
		st_ctx = &ep->stream_info->stream_ctx_array[stream_id];
		return le64_to_cpu(st_ctx->stream_ring);
	}
	ep_ctx = xhci_get_ep_ctx(xhci, vdev->out_ctx, ep_index);
	return le64_to_cpu(ep_ctx->deq);
}

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/*
 * Move the xHC's endpoint ring dequeue pointer past cur_td.
 * Record the new state of the xHC's endpoint ring dequeue segment,
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 * dequeue pointer, stream id, and new consumer cycle state in state.
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 * Update our internal representation of the ring's dequeue pointer.
 *
 * We do this in three jumps:
 *  - First we update our new ring state to be the same as when the xHC stopped.
 *  - Then we traverse the ring to find the segment that contains
 *    the last TRB in the TD.  We toggle the xHC's new cycle state when we pass
 *    any link TRBs with the toggle cycle bit set.
 *  - Finally we move the dequeue state one TRB further, toggling the cycle bit
 *    if we've moved it past a link TRB with the toggle cycle bit set.
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 *
 * Some of the uses of xhci_generic_trb are grotty, but if they're done
 * with correct __le32 accesses they should work fine.  Only users of this are
 * in here.
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 */
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void xhci_find_new_dequeue_state(struct xhci_hcd *xhci,
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		unsigned int slot_id, unsigned int ep_index,
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		unsigned int stream_id, struct xhci_td *cur_td,
		struct xhci_dequeue_state *state)
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{
	struct xhci_virt_device *dev = xhci->devs[slot_id];
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	struct xhci_virt_ep *ep = &dev->eps[ep_index];
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	struct xhci_ring *ep_ring;
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	struct xhci_segment *new_seg;
	union xhci_trb *new_deq;
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	dma_addr_t addr;
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	u64 hw_dequeue;
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	bool cycle_found = false;
	bool td_last_trb_found = false;
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	ep_ring = xhci_triad_to_transfer_ring(xhci, slot_id,
			ep_index, stream_id);
	if (!ep_ring) {
		xhci_warn(xhci, "WARN can't find new dequeue state "
				"for invalid stream ID %u.\n",
				stream_id);
		return;
	}
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	/* Dig out the cycle state saved by the xHC during the stop ep cmd */
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	xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
			"Finding endpoint context");
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	hw_dequeue = xhci_get_hw_deq(xhci, dev, ep_index, stream_id);
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	new_seg = ep_ring->deq_seg;
	new_deq = ep_ring->dequeue;
	state->new_cycle_state = hw_dequeue & 0x1;
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	state->stream_id = stream_id;
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	/*
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	 * We want to find the pointer, segment and cycle state of the new trb
	 * (the one after current TD's last_trb). We know the cycle state at
	 * hw_dequeue, so walk the ring until both hw_dequeue and last_trb are
	 * found.
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	 */
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	do {
		if (!cycle_found && xhci_trb_virt_to_dma(new_seg, new_deq)
		    == (dma_addr_t)(hw_dequeue & ~0xf)) {
			cycle_found = true;
			if (td_last_trb_found)
				break;
		}
		if (new_deq == cur_td->last_trb)
			td_last_trb_found = true;
562

563 564
		if (cycle_found && trb_is_link(new_deq) &&
		    link_trb_toggles_cycle(new_deq))
565 566 567 568 569 570 571 572 573 574 575 576 577
			state->new_cycle_state ^= 0x1;

		next_trb(xhci, ep_ring, &new_seg, &new_deq);

		/* Search wrapped around, bail out */
		if (new_deq == ep->ring->dequeue) {
			xhci_err(xhci, "Error: Failed finding new dequeue state\n");
			state->new_deq_seg = NULL;
			state->new_deq_ptr = NULL;
			return;
		}

	} while (!cycle_found || !td_last_trb_found);
578

579 580
	state->new_deq_seg = new_seg;
	state->new_deq_ptr = new_deq;
581

582
	/* Don't update the ring cycle state for the producer (us). */
583 584
	xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
			"Cycle state = 0x%x", state->new_cycle_state);
585

586 587
	xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
			"New dequeue segment = %p (virtual)",
588 589
			state->new_deq_seg);
	addr = xhci_trb_virt_to_dma(state->new_deq_seg, state->new_deq_ptr);
590 591
	xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
			"New dequeue pointer = 0x%llx (DMA)",
592
			(unsigned long long) addr);
593 594
}

595 596 597 598
/* flip_cycle means flip the cycle bit of all but the first and last TRB.
 * (The last TRB actually points to the ring enqueue pointer, which is not part
 * of this TD.)  This is used to remove partially enqueued isoc TDs from a ring.
 */
599
static void td_to_noop(struct xhci_hcd *xhci, struct xhci_ring *ep_ring,
600
		       struct xhci_td *td, bool flip_cycle)
601
{
602 603 604 605
	struct xhci_segment *seg	= td->start_seg;
	union xhci_trb *trb		= td->first_trb;

	while (1) {
606 607
		trb_to_noop(trb, TRB_TR_NOOP);

608 609 610 611 612
		/* flip cycle if asked to */
		if (flip_cycle && trb != td->first_trb && trb != td->last_trb)
			trb->generic.field[3] ^= cpu_to_le32(TRB_CYCLE);

		if (trb == td->last_trb)
613
			break;
614 615

		next_trb(xhci, ep_ring, &seg, &trb);
616 617 618
	}
}

619
static void xhci_stop_watchdog_timer_in_irq(struct xhci_hcd *xhci,
620 621
		struct xhci_virt_ep *ep)
{
622
	ep->ep_state &= ~EP_STOP_CMD_PENDING;
623 624
	/* Can't del_timer_sync in interrupt */
	del_timer(&ep->stop_cmd_timer);
625 626
}

627 628 629 630
/*
 * Must be called with xhci->lock held in interrupt context,
 * releases and re-acquires xhci->lock
 */
631
static void xhci_giveback_urb_in_irq(struct xhci_hcd *xhci,
632
				     struct xhci_td *cur_td, int status)
633
{
634 635 636 637 638 639 640 641 642
	struct urb	*urb		= cur_td->urb;
	struct urb_priv	*urb_priv	= urb->hcpriv;
	struct usb_hcd	*hcd		= bus_to_hcd(urb->dev->bus);

	if (usb_pipetype(urb->pipe) == PIPE_ISOCHRONOUS) {
		xhci_to_hcd(xhci)->self.bandwidth_isoc_reqs--;
		if (xhci_to_hcd(xhci)->self.bandwidth_isoc_reqs	== 0) {
			if (xhci->quirks & XHCI_AMD_PLL_FIX)
				usb_amd_quirk_pll_enable();
A
Andiry Xu 已提交
643
		}
644
	}
645
	xhci_urb_free_priv(urb_priv);
646
	usb_hcd_unlink_urb_from_ep(hcd, urb);
647
	spin_unlock(&xhci->lock);
648
	trace_xhci_urb_giveback(urb);
649
	usb_hcd_giveback_urb(hcd, urb, status);
650 651 652
	spin_lock(&xhci->lock);
}

W
Wei Yongjun 已提交
653 654
static void xhci_unmap_td_bounce_buffer(struct xhci_hcd *xhci,
		struct xhci_ring *ring, struct xhci_td *td)
655 656 657 658 659
{
	struct device *dev = xhci_to_hcd(xhci)->self.controller;
	struct xhci_segment *seg = td->bounce_seg;
	struct urb *urb = td->urb;

660
	if (!ring || !seg || !urb)
661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677
		return;

	if (usb_urb_dir_out(urb)) {
		dma_unmap_single(dev, seg->bounce_dma, ring->bounce_buf_len,
				 DMA_TO_DEVICE);
		return;
	}

	/* for in tranfers we need to copy the data from bounce to sg */
	sg_pcopy_from_buffer(urb->sg, urb->num_mapped_sgs, seg->bounce_buf,
			     seg->bounce_len, seg->bounce_offs);
	dma_unmap_single(dev, seg->bounce_dma, ring->bounce_buf_len,
			 DMA_FROM_DEVICE);
	seg->bounce_len = 0;
	seg->bounce_offs = 0;
}

678 679 680 681 682 683 684 685 686 687
/*
 * When we get a command completion for a Stop Endpoint Command, we need to
 * unlink any cancelled TDs from the ring.  There are two ways to do that:
 *
 *  1. If the HW was in the middle of processing the TD that needs to be
 *     cancelled, then we must move the ring's dequeue pointer past the last TRB
 *     in the TD with a Set Dequeue Pointer Command.
 *  2. Otherwise, we turn all the TRBs in the TD into No-op TRBs (with the chain
 *     bit cleared) so that the HW will skip over them.
 */
688
static void xhci_handle_cmd_stop_ep(struct xhci_hcd *xhci, int slot_id,
689
		union xhci_trb *trb, struct xhci_event_cmd *event)
690 691 692
{
	unsigned int ep_index;
	struct xhci_ring *ep_ring;
693
	struct xhci_virt_ep *ep;
694
	struct xhci_td *cur_td = NULL;
695
	struct xhci_td *last_unlinked_td;
696 697
	struct xhci_ep_ctx *ep_ctx;
	struct xhci_virt_device *vdev;
698
	u64 hw_deq;
699
	struct xhci_dequeue_state deq_state;
700

701
	if (unlikely(TRB_TO_SUSPEND_PORT(le32_to_cpu(trb->generic.field[3])))) {
702
		if (!xhci->devs[slot_id])
703 704 705 706 707 708
			xhci_warn(xhci, "Stop endpoint command "
				"completion for disabled slot %u\n",
				slot_id);
		return;
	}

709
	memset(&deq_state, 0, sizeof(deq_state));
M
Matt Evans 已提交
710
	ep_index = TRB_TO_EP_INDEX(le32_to_cpu(trb->generic.field[3]));
711 712 713 714 715

	vdev = xhci->devs[slot_id];
	ep_ctx = xhci_get_ep_ctx(xhci, vdev->out_ctx, ep_index);
	trace_xhci_handle_cmd_stop_ep(ep_ctx);

716
	ep = &xhci->devs[slot_id]->eps[ep_index];
717 718
	last_unlinked_td = list_last_entry(&ep->cancelled_td_list,
			struct xhci_td, cancelled_td_list);
719

720
	if (list_empty(&ep->cancelled_td_list)) {
721
		xhci_stop_watchdog_timer_in_irq(xhci, ep);
722
		ring_doorbell_for_active_rings(xhci, slot_id, ep_index);
723
		return;
724
	}
725 726 727 728 729 730

	/* Fix up the ep ring first, so HW stops executing cancelled TDs.
	 * We have the xHCI lock, so nothing can modify this list until we drop
	 * it.  We're also in the event handler, so we can't get re-interrupted
	 * if another Stop Endpoint command completes
	 */
731
	list_for_each_entry(cur_td, &ep->cancelled_td_list, cancelled_td_list) {
732 733
		xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
				"Removing canceled TD starting at 0x%llx (dma).",
734 735
				(unsigned long long)xhci_trb_virt_to_dma(
					cur_td->start_seg, cur_td->first_trb));
736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754
		ep_ring = xhci_urb_to_transfer_ring(xhci, cur_td->urb);
		if (!ep_ring) {
			/* This shouldn't happen unless a driver is mucking
			 * with the stream ID after submission.  This will
			 * leave the TD on the hardware ring, and the hardware
			 * will try to execute it, and may access a buffer
			 * that has already been freed.  In the best case, the
			 * hardware will execute it, and the event handler will
			 * ignore the completion event for that TD, since it was
			 * removed from the td_list for that endpoint.  In
			 * short, don't muck with the stream ID after
			 * submission.
			 */
			xhci_warn(xhci, "WARN Cancelled URB %p "
					"has invalid stream ID %u.\n",
					cur_td->urb,
					cur_td->urb->stream_id);
			goto remove_finished_td;
		}
755 756 757 758
		/*
		 * If we stopped on the TD we need to cancel, then we have to
		 * move the xHC endpoint ring dequeue pointer past this TD.
		 */
759 760 761 762 763 764
		hw_deq = xhci_get_hw_deq(xhci, vdev, ep_index,
					 cur_td->urb->stream_id);
		hw_deq &= ~0xf;

		if (trb_in_td(xhci, cur_td->start_seg, cur_td->first_trb,
			      cur_td->last_trb, hw_deq, false)) {
765
			xhci_find_new_dequeue_state(xhci, slot_id, ep_index,
766 767 768
						    cur_td->urb->stream_id,
						    cur_td, &deq_state);
		} else {
769
			td_to_noop(xhci, ep_ring, cur_td, false);
770 771
		}

772
remove_finished_td:
773 774 775 776 777
		/*
		 * The event handler won't see a completion for this TD anymore,
		 * so remove it from the endpoint ring's TD list.  Keep it in
		 * the cancelled TD list for URB completion later.
		 */
778
		list_del_init(&cur_td->td_list);
779
	}
780

781
	xhci_stop_watchdog_timer_in_irq(xhci, ep);
782 783 784

	/* If necessary, queue a Set Transfer Ring Dequeue Pointer command */
	if (deq_state.new_deq_ptr && deq_state.new_deq_seg) {
785
		xhci_queue_new_dequeue_state(xhci, slot_id, ep_index,
786
					     &deq_state);
787
		xhci_ring_cmd_db(xhci);
788
	} else {
789 790
		/* Otherwise ring the doorbell(s) to restart queued transfers */
		ring_doorbell_for_active_rings(xhci, slot_id, ep_index);
791
	}
792

793 794 795 796 797 798 799
	/*
	 * Drop the lock and complete the URBs in the cancelled TD list.
	 * New TDs to be cancelled might be added to the end of the list before
	 * we can complete all the URBs for the TDs we already unlinked.
	 * So stop when we've completed the URB for the last TD we unlinked.
	 */
	do {
800
		cur_td = list_first_entry(&ep->cancelled_td_list,
801
				struct xhci_td, cancelled_td_list);
802
		list_del_init(&cur_td->cancelled_td_list);
803 804 805 806 807

		/* Clean up the cancelled URB */
		/* Doesn't matter what we pass for status, since the core will
		 * just overwrite it (because the URB has been unlinked).
		 */
A
Arnd Bergmann 已提交
808
		ep_ring = xhci_urb_to_transfer_ring(xhci, cur_td->urb);
809
		xhci_unmap_td_bounce_buffer(xhci, ep_ring, cur_td);
810 811 812
		inc_td_cnt(cur_td->urb);
		if (last_td_in_urb(cur_td))
			xhci_giveback_urb_in_irq(xhci, cur_td, 0);
813

814 815 816 817 818
		/* Stop processing the cancelled list if the watchdog timer is
		 * running.
		 */
		if (xhci->xhc_state & XHCI_STATE_DYING)
			return;
819 820 821 822 823
	} while (cur_td != last_unlinked_td);

	/* Return to the event handler with xhci->lock re-acquired */
}

824 825 826
static void xhci_kill_ring_urbs(struct xhci_hcd *xhci, struct xhci_ring *ring)
{
	struct xhci_td *cur_td;
827
	struct xhci_td *tmp;
828

829
	list_for_each_entry_safe(cur_td, tmp, &ring->td_list, td_list) {
830
		list_del_init(&cur_td->td_list);
831

832 833
		if (!list_empty(&cur_td->cancelled_td_list))
			list_del_init(&cur_td->cancelled_td_list);
834

835
		xhci_unmap_td_bounce_buffer(xhci, ring, cur_td);
836 837 838 839

		inc_td_cnt(cur_td->urb);
		if (last_td_in_urb(cur_td))
			xhci_giveback_urb_in_irq(xhci, cur_td, -ESHUTDOWN);
840 841 842 843 844 845 846
	}
}

static void xhci_kill_endpoint_urbs(struct xhci_hcd *xhci,
		int slot_id, int ep_index)
{
	struct xhci_td *cur_td;
847
	struct xhci_td *tmp;
848 849 850 851
	struct xhci_virt_ep *ep;
	struct xhci_ring *ring;

	ep = &xhci->devs[slot_id]->eps[ep_index];
852 853 854 855
	if ((ep->ep_state & EP_HAS_STREAMS) ||
			(ep->ep_state & EP_GETTING_NO_STREAMS)) {
		int stream_id;

856
		for (stream_id = 1; stream_id < ep->stream_info->num_streams;
857
				stream_id++) {
858 859 860 861
			ring = ep->stream_info->stream_rings[stream_id];
			if (!ring)
				continue;

862 863
			xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
					"Killing URBs for slot ID %u, ep index %u, stream %u",
864 865
					slot_id, ep_index, stream_id);
			xhci_kill_ring_urbs(xhci, ring);
866 867 868 869 870 871 872 873 874 875
		}
	} else {
		ring = ep->ring;
		if (!ring)
			return;
		xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
				"Killing URBs for slot ID %u, ep index %u",
				slot_id, ep_index);
		xhci_kill_ring_urbs(xhci, ring);
	}
876

877 878 879
	list_for_each_entry_safe(cur_td, tmp, &ep->cancelled_td_list,
			cancelled_td_list) {
		list_del_init(&cur_td->cancelled_td_list);
880
		inc_td_cnt(cur_td->urb);
881

882 883
		if (last_td_in_urb(cur_td))
			xhci_giveback_urb_in_irq(xhci, cur_td, -ESHUTDOWN);
884 885 886
	}
}

887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920
/*
 * host controller died, register read returns 0xffffffff
 * Complete pending commands, mark them ABORTED.
 * URBs need to be given back as usb core might be waiting with device locks
 * held for the URBs to finish during device disconnect, blocking host remove.
 *
 * Call with xhci->lock held.
 * lock is relased and re-acquired while giving back urb.
 */
void xhci_hc_died(struct xhci_hcd *xhci)
{
	int i, j;

	if (xhci->xhc_state & XHCI_STATE_DYING)
		return;

	xhci_err(xhci, "xHCI host controller not responding, assume dead\n");
	xhci->xhc_state |= XHCI_STATE_DYING;

	xhci_cleanup_command_queue(xhci);

	/* return any pending urbs, remove may be waiting for them */
	for (i = 0; i <= HCS_MAX_SLOTS(xhci->hcs_params1); i++) {
		if (!xhci->devs[i])
			continue;
		for (j = 0; j < 31; j++)
			xhci_kill_endpoint_urbs(xhci, i, j);
	}

	/* inform usb core hc died if PCI remove isn't already handling it */
	if (!(xhci->xhc_state & XHCI_STATE_REMOVING))
		usb_hc_died(xhci_to_hcd(xhci));
}

921 922 923 924 925 926 927 928 929 930 931 932 933 934
/* Watchdog timer function for when a stop endpoint command fails to complete.
 * In this case, we assume the host controller is broken or dying or dead.  The
 * host may still be completing some other events, so we have to be careful to
 * let the event ring handler and the URB dequeueing/enqueueing functions know
 * through xhci->state.
 *
 * The timer may also fire if the host takes a very long time to respond to the
 * command, and the stop endpoint command completion handler cannot delete the
 * timer before the timer function is called.  Another endpoint cancellation may
 * sneak in before the timer function can grab the lock, and that may queue
 * another stop endpoint command and add the timer back.  So we cannot use a
 * simple flag to say whether there is a pending stop endpoint command for a
 * particular endpoint.
 *
935 936
 * Instead we use a combination of that flag and checking if a new timer is
 * pending.
937
 */
938
void xhci_stop_endpoint_command_watchdog(struct timer_list *t)
939
{
940 941
	struct xhci_virt_ep *ep = from_timer(ep, t, stop_cmd_timer);
	struct xhci_hcd *xhci = ep->xhci;
942
	unsigned long flags;
943

944
	spin_lock_irqsave(&xhci->lock, flags);
945

946 947 948
	/* bail out if cmd completed but raced with stop ep watchdog timer.*/
	if (!(ep->ep_state & EP_STOP_CMD_PENDING) ||
	    timer_pending(&ep->stop_cmd_timer)) {
949
		spin_unlock_irqrestore(&xhci->lock, flags);
950
		xhci_dbg(xhci, "Stop EP timer raced with cmd completion, exit");
951 952 953 954
		return;
	}

	xhci_warn(xhci, "xHCI host not responding to stop endpoint command.\n");
955 956
	ep->ep_state &= ~EP_STOP_CMD_PENDING;

957
	xhci_halt(xhci);
958

959 960 961 962 963 964
	/*
	 * handle a stop endpoint cmd timeout as if host died (-ENODEV).
	 * In the future we could distinguish between -ENODEV and -ETIMEDOUT
	 * and try to recover a -ETIMEDOUT with a host controller reset
	 */
	xhci_hc_died(xhci);
965

966
	spin_unlock_irqrestore(&xhci->lock, flags);
967 968
	xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
			"xHCI host controller is dead.");
969 970
}

971 972 973 974 975 976 977 978 979 980 981 982
static void update_ring_for_set_deq_completion(struct xhci_hcd *xhci,
		struct xhci_virt_device *dev,
		struct xhci_ring *ep_ring,
		unsigned int ep_index)
{
	union xhci_trb *dequeue_temp;
	int num_trbs_free_temp;
	bool revert = false;

	num_trbs_free_temp = ep_ring->num_trbs_free;
	dequeue_temp = ep_ring->dequeue;

983 984 985 986 987 988
	/* If we get two back-to-back stalls, and the first stalled transfer
	 * ends just before a link TRB, the dequeue pointer will be left on
	 * the link TRB by the code in the while loop.  So we have to update
	 * the dequeue pointer one segment further, or we'll jump off
	 * the segment into la-la-land.
	 */
989
	if (trb_is_link(ep_ring->dequeue)) {
990 991 992 993
		ep_ring->deq_seg = ep_ring->deq_seg->next;
		ep_ring->dequeue = ep_ring->deq_seg->trbs;
	}

994 995 996 997
	while (ep_ring->dequeue != dev->eps[ep_index].queued_deq_ptr) {
		/* We have more usable TRBs */
		ep_ring->num_trbs_free++;
		ep_ring->dequeue++;
998
		if (trb_is_link(ep_ring->dequeue)) {
999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016
			if (ep_ring->dequeue ==
					dev->eps[ep_index].queued_deq_ptr)
				break;
			ep_ring->deq_seg = ep_ring->deq_seg->next;
			ep_ring->dequeue = ep_ring->deq_seg->trbs;
		}
		if (ep_ring->dequeue == dequeue_temp) {
			revert = true;
			break;
		}
	}

	if (revert) {
		xhci_dbg(xhci, "Unable to find new dequeue pointer\n");
		ep_ring->num_trbs_free = num_trbs_free_temp;
	}
}

1017 1018 1019 1020 1021 1022 1023
/*
 * When we get a completion for a Set Transfer Ring Dequeue Pointer command,
 * we need to clear the set deq pending flag in the endpoint ring state, so that
 * the TD queueing code can ring the doorbell again.  We also need to ring the
 * endpoint doorbell to restart the ring, but only if there aren't more
 * cancellations pending.
 */
1024
static void xhci_handle_cmd_set_deq(struct xhci_hcd *xhci, int slot_id,
1025
		union xhci_trb *trb, u32 cmd_comp_code)
1026 1027
{
	unsigned int ep_index;
1028
	unsigned int stream_id;
1029 1030
	struct xhci_ring *ep_ring;
	struct xhci_virt_device *dev;
1031
	struct xhci_virt_ep *ep;
1032 1033
	struct xhci_ep_ctx *ep_ctx;
	struct xhci_slot_ctx *slot_ctx;
1034

M
Matt Evans 已提交
1035 1036
	ep_index = TRB_TO_EP_INDEX(le32_to_cpu(trb->generic.field[3]));
	stream_id = TRB_TO_STREAM_ID(le32_to_cpu(trb->generic.field[2]));
1037
	dev = xhci->devs[slot_id];
1038
	ep = &dev->eps[ep_index];
1039 1040 1041

	ep_ring = xhci_stream_id_to_ring(dev, ep_index, stream_id);
	if (!ep_ring) {
O
Oliver Neukum 已提交
1042
		xhci_warn(xhci, "WARN Set TR deq ptr command for freed stream ID %u\n",
1043 1044
				stream_id);
		/* XXX: Harmless??? */
1045
		goto cleanup;
1046 1047
	}

1048 1049
	ep_ctx = xhci_get_ep_ctx(xhci, dev->out_ctx, ep_index);
	slot_ctx = xhci_get_slot_ctx(xhci, dev->out_ctx);
1050 1051
	trace_xhci_handle_cmd_set_deq(slot_ctx);
	trace_xhci_handle_cmd_set_deq_ep(ep_ctx);
1052

1053
	if (cmd_comp_code != COMP_SUCCESS) {
1054 1055 1056
		unsigned int ep_state;
		unsigned int slot_state;

1057
		switch (cmd_comp_code) {
1058
		case COMP_TRB_ERROR:
O
Oliver Neukum 已提交
1059
			xhci_warn(xhci, "WARN Set TR Deq Ptr cmd invalid because of stream ID configuration\n");
1060
			break;
1061
		case COMP_CONTEXT_STATE_ERROR:
O
Oliver Neukum 已提交
1062
			xhci_warn(xhci, "WARN Set TR Deq Ptr cmd failed due to incorrect slot or ep state.\n");
1063
			ep_state = GET_EP_CTX_STATE(ep_ctx);
M
Matt Evans 已提交
1064
			slot_state = le32_to_cpu(slot_ctx->dev_state);
1065
			slot_state = GET_SLOT_STATE(slot_state);
1066 1067
			xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
					"Slot state = %u, EP state = %u",
1068 1069
					slot_state, ep_state);
			break;
1070
		case COMP_SLOT_NOT_ENABLED_ERROR:
O
Oliver Neukum 已提交
1071 1072
			xhci_warn(xhci, "WARN Set TR Deq Ptr cmd failed because slot %u was not enabled.\n",
					slot_id);
1073 1074
			break;
		default:
O
Oliver Neukum 已提交
1075 1076
			xhci_warn(xhci, "WARN Set TR Deq Ptr cmd with unknown completion code of %u.\n",
					cmd_comp_code);
1077 1078 1079 1080 1081 1082 1083 1084 1085
			break;
		}
		/* OK what do we do now?  The endpoint state is hosed, and we
		 * should never get to this point if the synchronization between
		 * queueing, and endpoint state are correct.  This might happen
		 * if the device gets disconnected after we've finished
		 * cancelling URBs, which might not be an error...
		 */
	} else {
1086 1087 1088 1089 1090 1091 1092 1093 1094
		u64 deq;
		/* 4.6.10 deq ptr is written to the stream ctx for streams */
		if (ep->ep_state & EP_HAS_STREAMS) {
			struct xhci_stream_ctx *ctx =
				&ep->stream_info->stream_ctx_array[stream_id];
			deq = le64_to_cpu(ctx->stream_ring) & SCTX_DEQ_MASK;
		} else {
			deq = le64_to_cpu(ep_ctx->deq) & ~EP_CTX_CYCLE_MASK;
		}
1095
		xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
1096 1097 1098
			"Successful Set TR Deq Ptr cmd, deq = @%08llx", deq);
		if (xhci_trb_virt_to_dma(ep->queued_deq_seg,
					 ep->queued_deq_ptr) == deq) {
1099 1100 1101
			/* Update the ring's dequeue segment and dequeue pointer
			 * to reflect the new position.
			 */
1102 1103
			update_ring_for_set_deq_completion(xhci, dev,
				ep_ring, ep_index);
1104
		} else {
O
Oliver Neukum 已提交
1105
			xhci_warn(xhci, "Mismatch between completed Set TR Deq Ptr command & xHCI internal state.\n");
1106
			xhci_warn(xhci, "ep deq seg = %p, deq ptr = %p\n",
1107
				  ep->queued_deq_seg, ep->queued_deq_ptr);
1108
		}
1109 1110
	}

1111
cleanup:
1112
	dev->eps[ep_index].ep_state &= ~SET_DEQ_PENDING;
1113 1114
	dev->eps[ep_index].queued_deq_seg = NULL;
	dev->eps[ep_index].queued_deq_ptr = NULL;
1115 1116
	/* Restart any rings with pending URBs */
	ring_doorbell_for_active_rings(xhci, slot_id, ep_index);
1117 1118
}

1119
static void xhci_handle_cmd_reset_ep(struct xhci_hcd *xhci, int slot_id,
1120
		union xhci_trb *trb, u32 cmd_comp_code)
1121
{
1122 1123
	struct xhci_virt_device *vdev;
	struct xhci_ep_ctx *ep_ctx;
1124 1125
	unsigned int ep_index;

M
Matt Evans 已提交
1126
	ep_index = TRB_TO_EP_INDEX(le32_to_cpu(trb->generic.field[3]));
1127 1128 1129 1130
	vdev = xhci->devs[slot_id];
	ep_ctx = xhci_get_ep_ctx(xhci, vdev->out_ctx, ep_index);
	trace_xhci_handle_cmd_reset_ep(ep_ctx);

1131 1132 1133
	/* This command will only fail if the endpoint wasn't halted,
	 * but we don't care.
	 */
1134
	xhci_dbg_trace(xhci, trace_xhci_dbg_reset_ep,
1135
		"Ignoring reset ep completion code of %u", cmd_comp_code);
1136

1137 1138 1139 1140 1141
	/* HW with the reset endpoint quirk needs to have a configure endpoint
	 * command complete before the endpoint can be used.  Queue that here
	 * because the HW can't handle two commands being queued in a row.
	 */
	if (xhci->quirks & XHCI_RESET_EP_QUIRK) {
1142
		struct xhci_command *command;
1143

1144
		command = xhci_alloc_command(xhci, false, GFP_ATOMIC);
1145
		if (!command)
1146
			return;
1147

1148 1149
		xhci_dbg_trace(xhci, trace_xhci_dbg_quirks,
				"Queueing configure endpoint command");
1150
		xhci_queue_configure_endpoint(xhci, command,
1151 1152
				xhci->devs[slot_id]->in_ctx->dma, slot_id,
				false);
1153 1154
		xhci_ring_cmd_db(xhci);
	} else {
1155
		/* Clear our internal halted state */
1156
		xhci->devs[slot_id]->eps[ep_index].ep_state &= ~EP_HALTED;
1157
	}
1158
}
1159

1160
static void xhci_handle_cmd_enable_slot(struct xhci_hcd *xhci, int slot_id,
1161
		struct xhci_command *command, u32 cmd_comp_code)
1162 1163
{
	if (cmd_comp_code == COMP_SUCCESS)
1164
		command->slot_id = slot_id;
1165
	else
1166
		command->slot_id = 0;
1167 1168
}

1169 1170 1171
static void xhci_handle_cmd_disable_slot(struct xhci_hcd *xhci, int slot_id)
{
	struct xhci_virt_device *virt_dev;
1172
	struct xhci_slot_ctx *slot_ctx;
1173 1174 1175 1176

	virt_dev = xhci->devs[slot_id];
	if (!virt_dev)
		return;
1177 1178 1179 1180

	slot_ctx = xhci_get_slot_ctx(xhci, virt_dev->out_ctx);
	trace_xhci_handle_cmd_disable_slot(slot_ctx);

1181 1182 1183 1184 1185 1186
	if (xhci->quirks & XHCI_EP_LIMIT_QUIRK)
		/* Delete default control endpoint resources */
		xhci_free_device_endpoint_resources(xhci, virt_dev, true);
	xhci_free_virt_device(xhci, slot_id);
}

1187 1188 1189 1190 1191
static void xhci_handle_cmd_config_ep(struct xhci_hcd *xhci, int slot_id,
		struct xhci_event_cmd *event, u32 cmd_comp_code)
{
	struct xhci_virt_device *virt_dev;
	struct xhci_input_control_ctx *ctrl_ctx;
1192
	struct xhci_ep_ctx *ep_ctx;
1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204
	unsigned int ep_index;
	unsigned int ep_state;
	u32 add_flags, drop_flags;

	/*
	 * Configure endpoint commands can come from the USB core
	 * configuration or alt setting changes, or because the HW
	 * needed an extra configure endpoint command after a reset
	 * endpoint command or streams were being configured.
	 * If the command was for a halted endpoint, the xHCI driver
	 * is not waiting on the configure endpoint command.
	 */
1205
	virt_dev = xhci->devs[slot_id];
1206
	ctrl_ctx = xhci_get_input_control_ctx(virt_dev->in_ctx);
1207 1208 1209 1210 1211 1212 1213 1214 1215 1216
	if (!ctrl_ctx) {
		xhci_warn(xhci, "Could not get input context, bad type.\n");
		return;
	}

	add_flags = le32_to_cpu(ctrl_ctx->add_flags);
	drop_flags = le32_to_cpu(ctrl_ctx->drop_flags);
	/* Input ctx add_flags are the endpoint index plus one */
	ep_index = xhci_last_valid_endpoint(add_flags) - 1;

1217 1218 1219
	ep_ctx = xhci_get_ep_ctx(xhci, virt_dev->out_ctx, ep_index);
	trace_xhci_handle_cmd_config_ep(ep_ctx);

1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230
	/* A usb_set_interface() call directly after clearing a halted
	 * condition may race on this quirky hardware.  Not worth
	 * worrying about, since this is prototype hardware.  Not sure
	 * if this will work for streams, but streams support was
	 * untested on this prototype.
	 */
	if (xhci->quirks & XHCI_RESET_EP_QUIRK &&
			ep_index != (unsigned int) -1 &&
			add_flags - SLOT_FLAG == drop_flags) {
		ep_state = virt_dev->eps[ep_index].ep_state;
		if (!(ep_state & EP_HALTED))
1231
			return;
1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243
		xhci_dbg_trace(xhci, trace_xhci_dbg_quirks,
				"Completed config ep cmd - "
				"last ep index = %d, state = %d",
				ep_index, ep_state);
		/* Clear internal halted state and restart ring(s) */
		virt_dev->eps[ep_index].ep_state &= ~EP_HALTED;
		ring_doorbell_for_active_rings(xhci, slot_id, ep_index);
		return;
	}
	return;
}

1244 1245 1246 1247 1248 1249 1250 1251 1252 1253
static void xhci_handle_cmd_addr_dev(struct xhci_hcd *xhci, int slot_id)
{
	struct xhci_virt_device *vdev;
	struct xhci_slot_ctx *slot_ctx;

	vdev = xhci->devs[slot_id];
	slot_ctx = xhci_get_slot_ctx(xhci, vdev->out_ctx);
	trace_xhci_handle_cmd_addr_dev(slot_ctx);
}

1254 1255 1256
static void xhci_handle_cmd_reset_dev(struct xhci_hcd *xhci, int slot_id,
		struct xhci_event_cmd *event)
{
1257 1258 1259 1260 1261 1262 1263
	struct xhci_virt_device *vdev;
	struct xhci_slot_ctx *slot_ctx;

	vdev = xhci->devs[slot_id];
	slot_ctx = xhci_get_slot_ctx(xhci, vdev->out_ctx);
	trace_xhci_handle_cmd_reset_dev(slot_ctx);

1264
	xhci_dbg(xhci, "Completed reset device command.\n");
1265
	if (!xhci->devs[slot_id])
1266 1267 1268 1269
		xhci_warn(xhci, "Reset device command completion "
				"for disabled slot %u\n", slot_id);
}

1270 1271 1272 1273
static void xhci_handle_cmd_nec_get_fw(struct xhci_hcd *xhci,
		struct xhci_event_cmd *event)
{
	if (!(xhci->quirks & XHCI_NEC_HOST)) {
L
Lu Baolu 已提交
1274
		xhci_warn(xhci, "WARN NEC_GET_FW command on non-NEC host\n");
1275 1276 1277 1278 1279 1280 1281 1282
		return;
	}
	xhci_dbg_trace(xhci, trace_xhci_dbg_quirks,
			"NEC firmware version %2x.%02x",
			NEC_FW_MAJOR(le32_to_cpu(event->status)),
			NEC_FW_MINOR(le32_to_cpu(event->status)));
}

1283
static void xhci_complete_del_and_free_cmd(struct xhci_command *cmd, u32 status)
M
Mathias Nyman 已提交
1284 1285
{
	list_del(&cmd->cmd_list);
1286 1287 1288 1289 1290

	if (cmd->completion) {
		cmd->status = status;
		complete(cmd->completion);
	} else {
M
Mathias Nyman 已提交
1291
		kfree(cmd);
1292
	}
M
Mathias Nyman 已提交
1293 1294 1295 1296 1297
}

void xhci_cleanup_command_queue(struct xhci_hcd *xhci)
{
	struct xhci_command *cur_cmd, *tmp_cmd;
1298
	xhci->current_cmd = NULL;
M
Mathias Nyman 已提交
1299
	list_for_each_entry_safe(cur_cmd, tmp_cmd, &xhci->cmd_list, cmd_list)
1300
		xhci_complete_del_and_free_cmd(cur_cmd, COMP_COMMAND_ABORTED);
M
Mathias Nyman 已提交
1301 1302
}

1303
void xhci_handle_command_timeout(struct work_struct *work)
1304 1305 1306 1307
{
	struct xhci_hcd *xhci;
	unsigned long flags;
	u64 hw_ring_state;
1308 1309

	xhci = container_of(to_delayed_work(work), struct xhci_hcd, cmd_timer);
1310 1311

	spin_lock_irqsave(&xhci->lock, flags);
L
Lu Baolu 已提交
1312

1313 1314 1315 1316
	/*
	 * If timeout work is pending, or current_cmd is NULL, it means we
	 * raced with command completion. Command is handled so just return.
	 */
1317
	if (!xhci->current_cmd || delayed_work_pending(&xhci->cmd_timer)) {
L
Lu Baolu 已提交
1318 1319
		spin_unlock_irqrestore(&xhci->lock, flags);
		return;
1320
	}
L
Lu Baolu 已提交
1321
	/* mark this command to be cancelled */
1322
	xhci->current_cmd->status = COMP_COMMAND_ABORTED;
L
Lu Baolu 已提交
1323

1324 1325
	/* Make sure command ring is running before aborting it */
	hw_ring_state = xhci_read_64(xhci, &xhci->op_regs->cmd_ring);
1326 1327 1328 1329 1330
	if (hw_ring_state == ~(u64)0) {
		xhci_hc_died(xhci);
		goto time_out_completed;
	}

1331 1332
	if ((xhci->cmd_ring_state & CMD_RING_STATE_RUNNING) &&
	    (hw_ring_state & CMD_RING_RUNNING))  {
1333 1334
		/* Prevent new doorbell, and start command abort */
		xhci->cmd_ring_state = CMD_RING_STATE_ABORTED;
1335
		xhci_dbg(xhci, "Command timeout\n");
1336
		xhci_abort_cmd_ring(xhci, flags);
1337
		goto time_out_completed;
1338
	}
1339

1340 1341 1342
	/* host removed. Bail out */
	if (xhci->xhc_state & XHCI_STATE_REMOVING) {
		xhci_dbg(xhci, "host removed, ring start fail?\n");
1343
		xhci_cleanup_command_queue(xhci);
1344 1345

		goto time_out_completed;
1346 1347
	}

1348 1349 1350
	/* command timeout on stopped ring, ring can't be aborted */
	xhci_dbg(xhci, "Command timeout on stopped ring\n");
	xhci_handle_stopped_cmd_ring(xhci, xhci->current_cmd);
1351 1352

time_out_completed:
1353 1354 1355 1356
	spin_unlock_irqrestore(&xhci->lock, flags);
	return;
}

1357 1358 1359
static void handle_cmd_completion(struct xhci_hcd *xhci,
		struct xhci_event_cmd *event)
{
M
Matt Evans 已提交
1360
	int slot_id = TRB_TO_SLOT_ID(le32_to_cpu(event->flags));
1361 1362
	u64 cmd_dma;
	dma_addr_t cmd_dequeue_dma;
1363
	u32 cmd_comp_code;
1364
	union xhci_trb *cmd_trb;
M
Mathias Nyman 已提交
1365
	struct xhci_command *cmd;
1366
	u32 cmd_type;
1367

M
Matt Evans 已提交
1368
	cmd_dma = le64_to_cpu(event->cmd_trb);
1369
	cmd_trb = xhci->cmd_ring->dequeue;
1370 1371 1372

	trace_xhci_handle_command(xhci->cmd_ring, &cmd_trb->generic);

1373
	cmd_dequeue_dma = xhci_trb_virt_to_dma(xhci->cmd_ring->deq_seg,
1374
			cmd_trb);
L
Lu Baolu 已提交
1375 1376 1377 1378 1379 1380 1381
	/*
	 * Check whether the completion event is for our internal kept
	 * command.
	 */
	if (!cmd_dequeue_dma || cmd_dma != (u64)cmd_dequeue_dma) {
		xhci_warn(xhci,
			  "ERROR mismatched command completion event\n");
1382 1383
		return;
	}
1384

1385
	cmd = list_first_entry(&xhci->cmd_list, struct xhci_command, cmd_list);
M
Mathias Nyman 已提交
1386

1387
	cancel_delayed_work(&xhci->cmd_timer);
1388

1389
	cmd_comp_code = GET_COMP_CODE(le32_to_cpu(event->status));
1390 1391

	/* If CMD ring stopped we own the trbs between enqueue and dequeue */
1392
	if (cmd_comp_code == COMP_COMMAND_RING_STOPPED) {
1393
		complete_all(&xhci->cmd_ring_stop_completion);
1394 1395
		return;
	}
1396 1397 1398 1399 1400 1401 1402

	if (cmd->command_trb != xhci->cmd_ring->dequeue) {
		xhci_err(xhci,
			 "Command completion event does not match command\n");
		return;
	}

1403 1404 1405 1406 1407 1408
	/*
	 * Host aborted the command ring, check if the current command was
	 * supposed to be aborted, otherwise continue normally.
	 * The command ring is stopped now, but the xHC will issue a Command
	 * Ring Stopped event which will cause us to restart it.
	 */
1409
	if (cmd_comp_code == COMP_COMMAND_ABORTED) {
1410
		xhci->cmd_ring_state = CMD_RING_STATE_STOPPED;
1411
		if (cmd->status == COMP_COMMAND_ABORTED) {
1412 1413
			if (xhci->current_cmd == cmd)
				xhci->current_cmd = NULL;
1414
			goto event_handled;
1415
		}
1416 1417
	}

1418 1419 1420
	cmd_type = TRB_FIELD_TO_TYPE(le32_to_cpu(cmd_trb->generic.field[3]));
	switch (cmd_type) {
	case TRB_ENABLE_SLOT:
1421
		xhci_handle_cmd_enable_slot(xhci, slot_id, cmd, cmd_comp_code);
1422
		break;
1423
	case TRB_DISABLE_SLOT:
1424
		xhci_handle_cmd_disable_slot(xhci, slot_id);
1425
		break;
1426
	case TRB_CONFIG_EP:
1427 1428 1429
		if (!cmd->completion)
			xhci_handle_cmd_config_ep(xhci, slot_id, event,
						  cmd_comp_code);
1430
		break;
1431
	case TRB_EVAL_CONTEXT:
1432
		break;
1433
	case TRB_ADDR_DEV:
1434
		xhci_handle_cmd_addr_dev(xhci, slot_id);
1435
		break;
1436
	case TRB_STOP_RING:
1437 1438
		WARN_ON(slot_id != TRB_TO_SLOT_ID(
				le32_to_cpu(cmd_trb->generic.field[3])));
1439 1440
		if (!cmd->completion)
			xhci_handle_cmd_stop_ep(xhci, slot_id, cmd_trb, event);
1441
		break;
1442
	case TRB_SET_DEQ:
1443 1444
		WARN_ON(slot_id != TRB_TO_SLOT_ID(
				le32_to_cpu(cmd_trb->generic.field[3])));
1445
		xhci_handle_cmd_set_deq(xhci, slot_id, cmd_trb, cmd_comp_code);
1446
		break;
1447
	case TRB_CMD_NOOP:
1448
		/* Is this an aborted command turned to NO-OP? */
1449 1450
		if (cmd->status == COMP_COMMAND_RING_STOPPED)
			cmd_comp_code = COMP_COMMAND_RING_STOPPED;
1451
		break;
1452
	case TRB_RESET_EP:
1453 1454
		WARN_ON(slot_id != TRB_TO_SLOT_ID(
				le32_to_cpu(cmd_trb->generic.field[3])));
1455
		xhci_handle_cmd_reset_ep(xhci, slot_id, cmd_trb, cmd_comp_code);
1456
		break;
1457
	case TRB_RESET_DEV:
1458 1459 1460 1461 1462
		/* SLOT_ID field in reset device cmd completion event TRB is 0.
		 * Use the SLOT_ID from the command TRB instead (xhci 4.6.11)
		 */
		slot_id = TRB_TO_SLOT_ID(
				le32_to_cpu(cmd_trb->generic.field[3]));
1463
		xhci_handle_cmd_reset_dev(xhci, slot_id, event);
1464
		break;
1465
	case TRB_NEC_GET_FW:
1466
		xhci_handle_cmd_nec_get_fw(xhci, event);
1467
		break;
1468 1469
	default:
		/* Skip over unknown commands on the event ring */
L
Lu Baolu 已提交
1470
		xhci_info(xhci, "INFO unknown command type %d\n", cmd_type);
1471 1472
		break;
	}
M
Mathias Nyman 已提交
1473

1474
	/* restart timer if this wasn't the last command */
1475
	if (!list_is_singular(&xhci->cmd_list)) {
1476 1477
		xhci->current_cmd = list_first_entry(&cmd->cmd_list,
						struct xhci_command, cmd_list);
1478
		xhci_mod_cmd_timer(xhci, XHCI_CMD_DEFAULT_TIMEOUT);
L
Lu Baolu 已提交
1479 1480
	} else if (xhci->current_cmd == cmd) {
		xhci->current_cmd = NULL;
1481 1482 1483
	}

event_handled:
1484
	xhci_complete_del_and_free_cmd(cmd, cmd_comp_code);
M
Mathias Nyman 已提交
1485

A
Andiry Xu 已提交
1486
	inc_deq(xhci, xhci->cmd_ring);
1487 1488
}

1489 1490 1491 1492 1493
static void handle_vendor_event(struct xhci_hcd *xhci,
		union xhci_trb *event)
{
	u32 trb_type;

M
Matt Evans 已提交
1494
	trb_type = TRB_FIELD_TO_TYPE(le32_to_cpu(event->generic.field[3]));
1495 1496 1497 1498 1499
	xhci_dbg(xhci, "Vendor specific event TRB type = %u\n", trb_type);
	if (trb_type == TRB_NEC_CMD_COMP && (xhci->quirks & XHCI_NEC_HOST))
		handle_cmd_completion(xhci, &event->event_cmd);
}

1500 1501 1502 1503
static void handle_device_notification(struct xhci_hcd *xhci,
		union xhci_trb *event)
{
	u32 slot_id;
1504
	struct usb_device *udev;
1505

1506
	slot_id = TRB_TO_SLOT_ID(le32_to_cpu(event->generic.field[3]));
1507
	if (!xhci->devs[slot_id]) {
1508 1509
		xhci_warn(xhci, "Device Notification event for "
				"unused slot %u\n", slot_id);
1510 1511 1512 1513 1514 1515 1516 1517
		return;
	}

	xhci_dbg(xhci, "Device Wake Notification event for slot ID %u\n",
			slot_id);
	udev = xhci->devs[slot_id]->udev;
	if (udev && udev->parent)
		usb_wakeup_notification(udev->parent, udev->portnum);
1518 1519
}

S
Sarah Sharp 已提交
1520 1521 1522
static void handle_port_status(struct xhci_hcd *xhci,
		union xhci_trb *event)
{
1523
	struct usb_hcd *hcd;
S
Sarah Sharp 已提交
1524
	u32 port_id;
1525
	u32 portsc, cmd_reg;
1526
	int max_ports;
1527
	int slot_id;
1528
	unsigned int hcd_portnum;
1529
	struct xhci_bus_state *bus_state;
M
Matt Evans 已提交
1530
	__le32 __iomem **port_array;
1531
	bool bogus_port_status = false;
1532
	struct xhci_port *port;
S
Sarah Sharp 已提交
1533 1534

	/* Port status change events always have a successful completion code */
L
Lu Baolu 已提交
1535 1536 1537 1538
	if (GET_COMP_CODE(le32_to_cpu(event->generic.field[2])) != COMP_SUCCESS)
		xhci_warn(xhci,
			  "WARN: xHC returned failed port status event\n");

M
Matt Evans 已提交
1539
	port_id = GET_PORT_ID(le32_to_cpu(event->generic.field[0]));
S
Sarah Sharp 已提交
1540 1541
	xhci_dbg(xhci, "Port Status Change Event for port %d\n", port_id);

1542 1543
	max_ports = HCS_MAX_PORTS(xhci->hcs_params1);
	if ((port_id <= 0) || (port_id > max_ports)) {
1544
		xhci_warn(xhci, "Invalid port id %d\n", port_id);
P
Peter Chen 已提交
1545 1546
		inc_deq(xhci, xhci->event_ring);
		return;
1547 1548
	}

1549 1550 1551
	port = &xhci->hw_ports[port_id - 1];
	if (!port || !port->rhub || port->hcd_portnum == DUPLICATE_ENTRY) {
		xhci_warn(xhci, "Event for invalid port %u\n", port_id);
1552
		bogus_port_status = true;
1553 1554 1555
		goto cleanup;
	}

1556
	hcd = port->rhub->hcd;
1557
	bus_state = &xhci->bus_state[hcd_index(hcd)];
1558
	if (hcd->speed >= HCD_USB3)
1559 1560 1561
		port_array = xhci->usb3_ports;
	else
		port_array = xhci->usb2_ports;
1562

1563
	hcd_portnum = port->hcd_portnum;
1564
	portsc = readl(port->addr);
1565

1566
	trace_xhci_handle_port_status(hcd_portnum, portsc);
M
Mathias Nyman 已提交
1567

1568
	if (hcd->state == HC_STATE_SUSPENDED) {
1569 1570 1571 1572
		xhci_dbg(xhci, "resume root hub\n");
		usb_hcd_resume_root_hub(hcd);
	}

1573
	if (hcd->speed >= HCD_USB3 && (portsc & PORT_PLS_MASK) == XDEV_INACTIVE)
1574
		bus_state->port_remote_wakeup &= ~(1 << hcd_portnum);
1575

1576
	if ((portsc & PORT_PLC) && (portsc & PORT_PLS_MASK) == XDEV_RESUME) {
1577 1578
		xhci_dbg(xhci, "port resume event for port %d\n", port_id);

1579 1580
		cmd_reg = readl(&xhci->op_regs->command);
		if (!(cmd_reg & CMD_RUN)) {
1581 1582 1583 1584
			xhci_warn(xhci, "xHC is not running.\n");
			goto cleanup;
		}

1585
		if (DEV_SUPERSPEED_ANY(portsc)) {
1586
			xhci_dbg(xhci, "remote wake SS port %d\n", port_id);
1587 1588 1589 1590
			/* Set a flag to say the port signaled remote wakeup,
			 * so we can tell the difference between the end of
			 * device and host initiated resume.
			 */
1591
			bus_state->port_remote_wakeup |= 1 << hcd_portnum;
1592
			xhci_test_and_clear_bit(xhci, port_array,
1593
					hcd_portnum, PORT_PLC);
1594
			xhci_set_link_state(xhci, port, XDEV_U0);
1595 1596 1597 1598 1599
			/* Need to wait until the next link state change
			 * indicates the device is actually in U0.
			 */
			bogus_port_status = true;
			goto cleanup;
1600
		} else if (!test_bit(hcd_portnum, &bus_state->resuming_ports)) {
1601
			xhci_dbg(xhci, "resume HS port %d\n", port_id);
1602
			bus_state->resume_done[hcd_portnum] = jiffies +
1603
				msecs_to_jiffies(USB_RESUME_TIMEOUT);
1604
			set_bit(hcd_portnum, &bus_state->resuming_ports);
1605 1606 1607 1608 1609
			/* Do the rest in GetPortStatus after resume time delay.
			 * Avoid polling roothub status before that so that a
			 * usb device auto-resume latency around ~40ms.
			 */
			set_bit(HCD_FLAG_POLL_RH, &hcd->flags);
1610
			mod_timer(&hcd->rh_timer,
1611
				  bus_state->resume_done[hcd_portnum]);
1612
			bogus_port_status = true;
1613 1614
		}
	}
1615

1616 1617
	if ((portsc & PORT_PLC) && (portsc & PORT_PLS_MASK) == XDEV_U0 &&
			DEV_SUPERSPEED_ANY(portsc)) {
1618
		xhci_dbg(xhci, "resume SS port %d finished\n", port_id);
1619 1620 1621 1622 1623 1624 1625
		/* We've just brought the device into U0 through either the
		 * Resume state after a device remote wakeup, or through the
		 * U3Exit state after a host-initiated resume.  If it's a device
		 * initiated remote wake, don't pass up the link state change,
		 * so the roothub behavior is consistent with external
		 * USB 3.0 hub behavior.
		 */
1626
		slot_id = xhci_find_slot_id_by_port(hcd, xhci, hcd_portnum + 1);
1627 1628
		if (slot_id && xhci->devs[slot_id])
			xhci_ring_device(xhci, slot_id);
1629 1630
		if (bus_state->port_remote_wakeup & (1 << hcd_portnum)) {
			bus_state->port_remote_wakeup &= ~(1 << hcd_portnum);
1631
			xhci_test_and_clear_bit(xhci, port_array,
1632
					hcd_portnum, PORT_PLC);
1633
			usb_wakeup_notification(hcd->self.root_hub,
1634
					hcd_portnum + 1);
1635 1636 1637
			bogus_port_status = true;
			goto cleanup;
		}
1638
	}
1639

1640 1641 1642 1643 1644
	/*
	 * Check to see if xhci-hub.c is waiting on RExit to U0 transition (or
	 * RExit to a disconnect state).  If so, let the the driver know it's
	 * out of the RExit state.
	 */
1645
	if (!DEV_SUPERSPEED_ANY(portsc) &&
1646
			test_and_clear_bit(hcd_portnum,
1647
				&bus_state->rexit_ports)) {
1648
		complete(&bus_state->rexit_done[hcd_portnum]);
1649 1650 1651 1652
		bogus_port_status = true;
		goto cleanup;
	}

1653
	if (hcd->speed < HCD_USB3)
1654
		xhci_test_and_clear_bit(xhci, port_array, hcd_portnum,
1655 1656
					PORT_PLC);

1657
cleanup:
S
Sarah Sharp 已提交
1658
	/* Update event ring dequeue pointer before dropping the lock */
A
Andiry Xu 已提交
1659
	inc_deq(xhci, xhci->event_ring);
S
Sarah Sharp 已提交
1660

1661 1662 1663 1664 1665 1666 1667
	/* Don't make the USB core poll the roothub if we got a bad port status
	 * change event.  Besides, at that point we can't tell which roothub
	 * (USB 2.0 or USB 3.0) to kick.
	 */
	if (bogus_port_status)
		return;

1668 1669 1670 1671 1672 1673 1674 1675 1676
	/*
	 * xHCI port-status-change events occur when the "or" of all the
	 * status-change bits in the portsc register changes from 0 to 1.
	 * New status changes won't cause an event if any other change
	 * bits are still set.  When an event occurs, switch over to
	 * polling to avoid losing status changes.
	 */
	xhci_dbg(xhci, "%s: starting port polling.\n", __func__);
	set_bit(HCD_FLAG_POLL_RH, &hcd->flags);
S
Sarah Sharp 已提交
1677 1678
	spin_unlock(&xhci->lock);
	/* Pass this up to the core */
1679
	usb_hcd_poll_rh_status(hcd);
S
Sarah Sharp 已提交
1680 1681 1682
	spin_lock(&xhci->lock);
}

1683 1684 1685 1686 1687 1688
/*
 * This TD is defined by the TRBs starting at start_trb in start_seg and ending
 * at end_trb, which may be in another segment.  If the suspect DMA address is a
 * TRB in this TD, this function returns that TRB's segment.  Otherwise it
 * returns 0.
 */
1689 1690
struct xhci_segment *trb_in_td(struct xhci_hcd *xhci,
		struct xhci_segment *start_seg,
1691 1692
		union xhci_trb	*start_trb,
		union xhci_trb	*end_trb,
1693 1694
		dma_addr_t	suspect_dma,
		bool		debug)
1695 1696 1697 1698 1699 1700
{
	dma_addr_t start_dma;
	dma_addr_t end_seg_dma;
	dma_addr_t end_trb_dma;
	struct xhci_segment *cur_seg;

1701
	start_dma = xhci_trb_virt_to_dma(start_seg, start_trb);
1702 1703 1704
	cur_seg = start_seg;

	do {
1705
		if (start_dma == 0)
1706
			return NULL;
1707
		/* We may get an event for a Link TRB in the middle of a TD */
1708
		end_seg_dma = xhci_trb_virt_to_dma(cur_seg,
1709
				&cur_seg->trbs[TRBS_PER_SEGMENT - 1]);
1710
		/* If the end TRB isn't in this segment, this is set to 0 */
1711
		end_trb_dma = xhci_trb_virt_to_dma(cur_seg, end_trb);
1712

1713 1714 1715 1716 1717 1718 1719 1720 1721
		if (debug)
			xhci_warn(xhci,
				"Looking for event-dma %016llx trb-start %016llx trb-end %016llx seg-start %016llx seg-end %016llx\n",
				(unsigned long long)suspect_dma,
				(unsigned long long)start_dma,
				(unsigned long long)end_trb_dma,
				(unsigned long long)cur_seg->dma,
				(unsigned long long)end_seg_dma);

1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736
		if (end_trb_dma > 0) {
			/* The end TRB is in this segment, so suspect should be here */
			if (start_dma <= end_trb_dma) {
				if (suspect_dma >= start_dma && suspect_dma <= end_trb_dma)
					return cur_seg;
			} else {
				/* Case for one segment with
				 * a TD wrapped around to the top
				 */
				if ((suspect_dma >= start_dma &&
							suspect_dma <= end_seg_dma) ||
						(suspect_dma >= cur_seg->dma &&
						 suspect_dma <= end_trb_dma))
					return cur_seg;
			}
1737
			return NULL;
1738 1739 1740 1741 1742 1743
		} else {
			/* Might still be somewhere in this segment */
			if (suspect_dma >= start_dma && suspect_dma <= end_seg_dma)
				return cur_seg;
		}
		cur_seg = cur_seg->next;
1744
		start_dma = xhci_trb_virt_to_dma(cur_seg, &cur_seg->trbs[0]);
1745
	} while (cur_seg != start_seg);
1746

1747
	return NULL;
1748 1749
}

1750 1751
static void xhci_cleanup_halted_endpoint(struct xhci_hcd *xhci,
		unsigned int slot_id, unsigned int ep_index,
1752
		unsigned int stream_id, struct xhci_td *td,
1753
		enum xhci_ep_reset_type reset_type)
1754 1755
{
	struct xhci_virt_ep *ep = &xhci->devs[slot_id]->eps[ep_index];
1756
	struct xhci_command *command;
1757
	command = xhci_alloc_command(xhci, false, GFP_ATOMIC);
1758 1759 1760
	if (!command)
		return;

1761
	ep->ep_state |= EP_HALTED;
1762

1763
	xhci_queue_reset_ep(xhci, command, slot_id, ep_index, reset_type);
1764

1765 1766
	if (reset_type == EP_HARD_RESET) {
		ep->ep_state |= EP_HARD_CLEAR_TOGGLE;
1767
		xhci_cleanup_stalled_ring(xhci, ep_index, stream_id, td);
1768
	}
1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782
	xhci_ring_cmd_db(xhci);
}

/* Check if an error has halted the endpoint ring.  The class driver will
 * cleanup the halt for a non-default control endpoint if we indicate a stall.
 * However, a babble and other errors also halt the endpoint ring, and the class
 * driver won't clear the halt in that case, so we need to issue a Set Transfer
 * Ring Dequeue Pointer command manually.
 */
static int xhci_requires_manual_halt_cleanup(struct xhci_hcd *xhci,
		struct xhci_ep_ctx *ep_ctx,
		unsigned int trb_comp_code)
{
	/* TRB completion codes that may require a manual halt cleanup */
1783 1784 1785
	if (trb_comp_code == COMP_USB_TRANSACTION_ERROR ||
			trb_comp_code == COMP_BABBLE_DETECTED_ERROR ||
			trb_comp_code == COMP_SPLIT_TRANSACTION_ERROR)
1786
		/* The 0.95 spec says a babbling control endpoint
1787 1788 1789 1790 1791
		 * is not halted. The 0.96 spec says it is.  Some HW
		 * claims to be 0.95 compliant, but it halts the control
		 * endpoint anyway.  Check if a babble halted the
		 * endpoint.
		 */
1792
		if (GET_EP_CTX_STATE(ep_ctx) == EP_STATE_HALTED)
1793 1794 1795 1796 1797
			return 1;

	return 0;
}

1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811
int xhci_is_vendor_info_code(struct xhci_hcd *xhci, unsigned int trb_comp_code)
{
	if (trb_comp_code >= 224 && trb_comp_code <= 255) {
		/* Vendor defined "informational" completion code,
		 * treat as not-an-error.
		 */
		xhci_dbg(xhci, "Vendor defined info completion code %u\n",
				trb_comp_code);
		xhci_dbg(xhci, "Treating code as success.\n");
		return 1;
	}
	return 0;
}

1812 1813 1814 1815 1816 1817 1818 1819 1820
static int xhci_td_cleanup(struct xhci_hcd *xhci, struct xhci_td *td,
		struct xhci_ring *ep_ring, int *status)
{
	struct urb *urb = NULL;

	/* Clean up the endpoint's TD list */
	urb = td->urb;

	/* if a bounce buffer was used to align this td then unmap it */
1821
	xhci_unmap_td_bounce_buffer(xhci, ep_ring, td);
1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857

	/* Do one last check of the actual transfer length.
	 * If the host controller said we transferred more data than the buffer
	 * length, urb->actual_length will be a very big number (since it's
	 * unsigned).  Play it safe and say we didn't transfer anything.
	 */
	if (urb->actual_length > urb->transfer_buffer_length) {
		xhci_warn(xhci, "URB req %u and actual %u transfer length mismatch\n",
			  urb->transfer_buffer_length, urb->actual_length);
		urb->actual_length = 0;
		*status = 0;
	}
	list_del_init(&td->td_list);
	/* Was this TD slated to be cancelled but completed anyway? */
	if (!list_empty(&td->cancelled_td_list))
		list_del_init(&td->cancelled_td_list);

	inc_td_cnt(urb);
	/* Giveback the urb when all the tds are completed */
	if (last_td_in_urb(td)) {
		if ((urb->actual_length != urb->transfer_buffer_length &&
		     (urb->transfer_flags & URB_SHORT_NOT_OK)) ||
		    (*status != 0 && !usb_endpoint_xfer_isoc(&urb->ep->desc)))
			xhci_dbg(xhci, "Giveback URB %p, len = %d, expected = %d, status = %d\n",
				 urb, urb->actual_length,
				 urb->transfer_buffer_length, *status);

		/* set isoc urb status to 0 just as EHCI, UHCI, and OHCI */
		if (usb_pipetype(urb->pipe) == PIPE_ISOCHRONOUS)
			*status = 0;
		xhci_giveback_urb_in_irq(xhci, td, *status);
	}

	return 0;
}

1858
static int finish_td(struct xhci_hcd *xhci, struct xhci_td *td,
1859
	struct xhci_transfer_event *event,
1860
	struct xhci_virt_ep *ep, int *status)
1861 1862 1863
{
	struct xhci_virt_device *xdev;
	struct xhci_ep_ctx *ep_ctx;
1864 1865
	struct xhci_ring *ep_ring;
	unsigned int slot_id;
1866
	u32 trb_comp_code;
1867
	int ep_index;
1868

M
Matt Evans 已提交
1869
	slot_id = TRB_TO_SLOT_ID(le32_to_cpu(event->flags));
1870
	xdev = xhci->devs[slot_id];
M
Matt Evans 已提交
1871 1872
	ep_index = TRB_TO_EP_ID(le32_to_cpu(event->flags)) - 1;
	ep_ring = xhci_dma_to_transfer_ring(ep, le64_to_cpu(event->buffer));
1873
	ep_ctx = xhci_get_ep_ctx(xhci, xdev->out_ctx, ep_index);
M
Matt Evans 已提交
1874
	trb_comp_code = GET_COMP_CODE(le32_to_cpu(event->transfer_len));
1875

1876 1877 1878
	if (trb_comp_code == COMP_STOPPED_LENGTH_INVALID ||
			trb_comp_code == COMP_STOPPED ||
			trb_comp_code == COMP_STOPPED_SHORT_PACKET) {
1879 1880 1881 1882 1883
		/* The Endpoint Stop Command completion will take care of any
		 * stopped TDs.  A stopped TD may be restarted, so don't update
		 * the ring dequeue pointer or take this TD off any lists yet.
		 */
		return 0;
M
Mathias Nyman 已提交
1884
	}
1885
	if (trb_comp_code == COMP_STALL_ERROR ||
M
Mathias Nyman 已提交
1886 1887 1888 1889 1890 1891 1892 1893
		xhci_requires_manual_halt_cleanup(xhci, ep_ctx,
						trb_comp_code)) {
		/* Issue a reset endpoint command to clear the host side
		 * halt, followed by a set dequeue command to move the
		 * dequeue pointer past the TD.
		 * The class driver clears the device side halt later.
		 */
		xhci_cleanup_halted_endpoint(xhci, slot_id, ep_index,
1894
					ep_ring->stream_id, td, EP_HARD_RESET);
1895
	} else {
M
Mathias Nyman 已提交
1896 1897
		/* Update ring dequeue pointer */
		while (ep_ring->dequeue != td->last_trb)
A
Andiry Xu 已提交
1898
			inc_deq(xhci, ep_ring);
M
Mathias Nyman 已提交
1899 1900
		inc_deq(xhci, ep_ring);
	}
1901

1902
	return xhci_td_cleanup(xhci, td, ep_ring, status);
1903 1904
}

1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919
/* sum trb lengths from ring dequeue up to stop_trb, _excluding_ stop_trb */
static int sum_trb_lengths(struct xhci_hcd *xhci, struct xhci_ring *ring,
			   union xhci_trb *stop_trb)
{
	u32 sum;
	union xhci_trb *trb = ring->dequeue;
	struct xhci_segment *seg = ring->deq_seg;

	for (sum = 0; trb != stop_trb; next_trb(xhci, ring, &seg, &trb)) {
		if (!trb_is_noop(trb) && !trb_is_link(trb))
			sum += TRB_LEN(le32_to_cpu(trb->generic.field[2]));
	}
	return sum;
}

1920 1921 1922 1923
/*
 * Process control tds, update urb status and actual_length.
 */
static int process_ctrl_td(struct xhci_hcd *xhci, struct xhci_td *td,
1924
	union xhci_trb *ep_trb, struct xhci_transfer_event *event,
1925 1926 1927 1928 1929 1930 1931
	struct xhci_virt_ep *ep, int *status)
{
	struct xhci_virt_device *xdev;
	unsigned int slot_id;
	int ep_index;
	struct xhci_ep_ctx *ep_ctx;
	u32 trb_comp_code;
1932
	u32 remaining, requested;
1933
	u32 trb_type;
1934

1935
	trb_type = TRB_FIELD_TO_TYPE(le32_to_cpu(ep_trb->generic.field[3]));
M
Matt Evans 已提交
1936
	slot_id = TRB_TO_SLOT_ID(le32_to_cpu(event->flags));
1937
	xdev = xhci->devs[slot_id];
M
Matt Evans 已提交
1938
	ep_index = TRB_TO_EP_ID(le32_to_cpu(event->flags)) - 1;
1939
	ep_ctx = xhci_get_ep_ctx(xhci, xdev->out_ctx, ep_index);
M
Matt Evans 已提交
1940
	trb_comp_code = GET_COMP_CODE(le32_to_cpu(event->transfer_len));
1941 1942 1943
	requested = td->urb->transfer_buffer_length;
	remaining = EVENT_TRB_LEN(le32_to_cpu(event->transfer_len));

1944 1945
	switch (trb_comp_code) {
	case COMP_SUCCESS:
1946
		if (trb_type != TRB_STATUS) {
1947
			xhci_warn(xhci, "WARN: Success on ctrl %s TRB without IOC set?\n",
1948
				  (trb_type == TRB_DATA) ? "data" : "setup");
1949
			*status = -ESHUTDOWN;
1950
			break;
1951
		}
1952
		*status = 0;
1953
		break;
1954
	case COMP_SHORT_PACKET:
1955
		*status = 0;
1956
		break;
1957
	case COMP_STOPPED_SHORT_PACKET:
1958
		if (trb_type == TRB_DATA || trb_type == TRB_NORMAL)
1959
			td->urb->actual_length = remaining;
1960
		else
1961 1962
			xhci_warn(xhci, "WARN: Stopped Short Packet on ctrl setup or status TRB\n");
		goto finish_td;
1963
	case COMP_STOPPED:
1964 1965 1966 1967 1968 1969
		switch (trb_type) {
		case TRB_SETUP:
			td->urb->actual_length = 0;
			goto finish_td;
		case TRB_DATA:
		case TRB_NORMAL:
1970
			td->urb->actual_length = requested - remaining;
1971
			goto finish_td;
1972 1973 1974
		case TRB_STATUS:
			td->urb->actual_length = requested;
			goto finish_td;
1975 1976 1977 1978 1979
		default:
			xhci_warn(xhci, "WARN: unexpected TRB Type %d\n",
				  trb_type);
			goto finish_td;
		}
1980
	case COMP_STOPPED_LENGTH_INVALID:
1981
		goto finish_td;
1982 1983
	default:
		if (!xhci_requires_manual_halt_cleanup(xhci,
1984
						       ep_ctx, trb_comp_code))
1985
			break;
1986 1987
		xhci_dbg(xhci, "TRB error %u, halted endpoint index = %u\n",
			 trb_comp_code, ep_index);
1988
		/* else fall through */
1989
	case COMP_STALL_ERROR:
1990
		/* Did we transfer part of the data (middle) phase? */
1991
		if (trb_type == TRB_DATA || trb_type == TRB_NORMAL)
1992
			td->urb->actual_length = requested - remaining;
1993
		else if (!td->urb_length_set)
1994
			td->urb->actual_length = 0;
1995
		goto finish_td;
1996
	}
1997 1998

	/* stopped at setup stage, no data transferred */
1999
	if (trb_type == TRB_SETUP)
2000 2001
		goto finish_td;

2002
	/*
2003 2004
	 * if on data stage then update the actual_length of the URB and flag it
	 * as set, so it won't be overwritten in the event for the last TRB.
2005
	 */
2006 2007
	if (trb_type == TRB_DATA ||
		trb_type == TRB_NORMAL) {
2008 2009 2010 2011
		td->urb_length_set = true;
		td->urb->actual_length = requested - remaining;
		xhci_dbg(xhci, "Waiting for status stage event\n");
		return 0;
2012 2013
	}

2014 2015 2016 2017 2018
	/* at status stage */
	if (!td->urb_length_set)
		td->urb->actual_length = requested;

finish_td:
2019
	return finish_td(xhci, td, event, ep, status);
2020 2021
}

2022 2023 2024 2025
/*
 * Process isochronous tds, update urb packet status and actual_length.
 */
static int process_isoc_td(struct xhci_hcd *xhci, struct xhci_td *td,
2026
	union xhci_trb *ep_trb, struct xhci_transfer_event *event,
2027 2028 2029 2030 2031
	struct xhci_virt_ep *ep, int *status)
{
	struct xhci_ring *ep_ring;
	struct urb_priv *urb_priv;
	int idx;
2032
	struct usb_iso_packet_descriptor *frame;
2033
	u32 trb_comp_code;
2034 2035 2036
	bool sum_trbs_for_length = false;
	u32 remaining, requested, ep_trb_len;
	int short_framestatus;
2037

M
Matt Evans 已提交
2038 2039
	ep_ring = xhci_dma_to_transfer_ring(ep, le64_to_cpu(event->buffer));
	trb_comp_code = GET_COMP_CODE(le32_to_cpu(event->transfer_len));
2040
	urb_priv = td->urb->hcpriv;
2041
	idx = urb_priv->num_tds_done;
2042
	frame = &td->urb->iso_frame_desc[idx];
2043 2044 2045 2046 2047
	requested = frame->length;
	remaining = EVENT_TRB_LEN(le32_to_cpu(event->transfer_len));
	ep_trb_len = TRB_LEN(le32_to_cpu(ep_trb->generic.field[2]));
	short_framestatus = td->urb->transfer_flags & URB_SHORT_NOT_OK ?
		-EREMOTEIO : 0;
2048

2049 2050 2051
	/* handle completion code */
	switch (trb_comp_code) {
	case COMP_SUCCESS:
2052 2053 2054 2055
		if (remaining) {
			frame->status = short_framestatus;
			if (xhci->quirks & XHCI_TRUST_TX_LENGTH)
				sum_trbs_for_length = true;
2056 2057
			break;
		}
2058 2059
		frame->status = 0;
		break;
2060
	case COMP_SHORT_PACKET:
2061 2062
		frame->status = short_framestatus;
		sum_trbs_for_length = true;
2063
		break;
2064
	case COMP_BANDWIDTH_OVERRUN_ERROR:
2065 2066
		frame->status = -ECOMM;
		break;
2067 2068
	case COMP_ISOCH_BUFFER_OVERRUN:
	case COMP_BABBLE_DETECTED_ERROR:
2069 2070
		frame->status = -EOVERFLOW;
		break;
2071 2072
	case COMP_INCOMPATIBLE_DEVICE_ERROR:
	case COMP_STALL_ERROR:
2073 2074
		frame->status = -EPROTO;
		break;
2075
	case COMP_USB_TRANSACTION_ERROR:
2076
		frame->status = -EPROTO;
2077
		if (ep_trb != td->last_trb)
2078
			return 0;
2079
		break;
2080
	case COMP_STOPPED:
2081 2082
		sum_trbs_for_length = true;
		break;
2083
	case COMP_STOPPED_SHORT_PACKET:
2084 2085 2086 2087
		/* field normally containing residue now contains tranferred */
		frame->status = short_framestatus;
		requested = remaining;
		break;
2088
	case COMP_STOPPED_LENGTH_INVALID:
2089 2090
		requested = 0;
		remaining = 0;
2091 2092
		break;
	default:
2093
		sum_trbs_for_length = true;
2094 2095
		frame->status = -1;
		break;
2096 2097
	}

2098 2099 2100 2101 2102
	if (sum_trbs_for_length)
		frame->actual_length = sum_trb_lengths(xhci, ep_ring, ep_trb) +
			ep_trb_len - remaining;
	else
		frame->actual_length = requested;
2103

2104
	td->urb->actual_length += frame->actual_length;
2105

2106
	return finish_td(xhci, td, event, ep, status);
2107 2108
}

2109 2110 2111 2112 2113 2114 2115 2116 2117
static int skip_isoc_td(struct xhci_hcd *xhci, struct xhci_td *td,
			struct xhci_transfer_event *event,
			struct xhci_virt_ep *ep, int *status)
{
	struct xhci_ring *ep_ring;
	struct urb_priv *urb_priv;
	struct usb_iso_packet_descriptor *frame;
	int idx;

2118
	ep_ring = xhci_dma_to_transfer_ring(ep, le64_to_cpu(event->buffer));
2119
	urb_priv = td->urb->hcpriv;
2120
	idx = urb_priv->num_tds_done;
2121 2122
	frame = &td->urb->iso_frame_desc[idx];

2123
	/* The transfer is partly done. */
2124 2125 2126 2127 2128 2129 2130
	frame->status = -EXDEV;

	/* calc actual length */
	frame->actual_length = 0;

	/* Update ring dequeue pointer */
	while (ep_ring->dequeue != td->last_trb)
A
Andiry Xu 已提交
2131 2132
		inc_deq(xhci, ep_ring);
	inc_deq(xhci, ep_ring);
2133

2134
	return xhci_td_cleanup(xhci, td, ep_ring, status);
2135 2136
}

2137 2138 2139 2140
/*
 * Process bulk and interrupt tds, update urb status and actual_length.
 */
static int process_bulk_intr_td(struct xhci_hcd *xhci, struct xhci_td *td,
2141
	union xhci_trb *ep_trb, struct xhci_transfer_event *event,
2142 2143 2144 2145
	struct xhci_virt_ep *ep, int *status)
{
	struct xhci_ring *ep_ring;
	u32 trb_comp_code;
2146
	u32 remaining, requested, ep_trb_len;
2147

M
Matt Evans 已提交
2148 2149
	ep_ring = xhci_dma_to_transfer_ring(ep, le64_to_cpu(event->buffer));
	trb_comp_code = GET_COMP_CODE(le32_to_cpu(event->transfer_len));
2150
	remaining = EVENT_TRB_LEN(le32_to_cpu(event->transfer_len));
2151
	ep_trb_len = TRB_LEN(le32_to_cpu(ep_trb->generic.field[2]));
2152
	requested = td->urb->transfer_buffer_length;
2153 2154 2155

	switch (trb_comp_code) {
	case COMP_SUCCESS:
2156
		/* handle success with untransferred data as short packet */
2157
		if (ep_trb != td->last_trb || remaining) {
2158
			xhci_warn(xhci, "WARN Successful completion on short TX\n");
2159 2160 2161
			xhci_dbg(xhci, "ep %#x - asked for %d bytes, %d bytes untransferred\n",
				 td->urb->ep->desc.bEndpointAddress,
				 requested, remaining);
2162
		}
2163
		*status = 0;
2164
		break;
2165
	case COMP_SHORT_PACKET:
2166 2167 2168
		xhci_dbg(xhci, "ep %#x - asked for %d bytes, %d bytes untransferred\n",
			 td->urb->ep->desc.bEndpointAddress,
			 requested, remaining);
2169
		*status = 0;
2170
		break;
2171
	case COMP_STOPPED_SHORT_PACKET:
2172 2173
		td->urb->actual_length = remaining;
		goto finish_td;
2174
	case COMP_STOPPED_LENGTH_INVALID:
2175
		/* stopped on ep trb with invalid length, exclude it */
2176
		ep_trb_len	= 0;
2177 2178
		remaining	= 0;
		break;
2179
	default:
2180
		/* do nothing */
2181 2182
		break;
	}
2183

2184
	if (ep_trb == td->last_trb)
2185 2186 2187
		td->urb->actual_length = requested - remaining;
	else
		td->urb->actual_length =
2188 2189
			sum_trb_lengths(xhci, ep_ring, ep_trb) +
			ep_trb_len - remaining;
2190 2191 2192 2193
finish_td:
	if (remaining > requested) {
		xhci_warn(xhci, "bad transfer trb length %d in event trb\n",
			  remaining);
2194 2195
		td->urb->actual_length = 0;
	}
2196
	return finish_td(xhci, td, event, ep, status);
2197 2198
}

2199 2200 2201 2202 2203 2204 2205 2206 2207
/*
 * If this function returns an error condition, it means it got a Transfer
 * event with a corrupted Slot ID, Endpoint ID, or TRB DMA address.
 * At this point, the host controller is probably hosed and should be reset.
 */
static int handle_tx_event(struct xhci_hcd *xhci,
		struct xhci_transfer_event *event)
{
	struct xhci_virt_device *xdev;
2208
	struct xhci_virt_ep *ep;
2209
	struct xhci_ring *ep_ring;
2210
	unsigned int slot_id;
2211
	int ep_index;
2212
	struct xhci_td *td = NULL;
2213 2214 2215
	dma_addr_t ep_trb_dma;
	struct xhci_segment *ep_seg;
	union xhci_trb *ep_trb;
2216
	int status = -EINPROGRESS;
2217
	struct xhci_ep_ctx *ep_ctx;
2218
	struct list_head *tmp;
2219
	u32 trb_comp_code;
2220
	int td_num = 0;
2221
	bool handling_skipped_tds = false;
2222

M
Matt Evans 已提交
2223
	slot_id = TRB_TO_SLOT_ID(le32_to_cpu(event->flags));
2224 2225 2226 2227
	ep_index = TRB_TO_EP_ID(le32_to_cpu(event->flags)) - 1;
	trb_comp_code = GET_COMP_CODE(le32_to_cpu(event->transfer_len));
	ep_trb_dma = le64_to_cpu(event->buffer);

2228
	xdev = xhci->devs[slot_id];
2229
	if (!xdev) {
2230 2231
		xhci_err(xhci, "ERROR Transfer event pointed to bad slot %u\n",
			 slot_id);
2232 2233 2234
		goto err_out;
	}

2235
	ep = &xdev->eps[ep_index];
2236
	ep_ring = xhci_dma_to_transfer_ring(ep, ep_trb_dma);
2237
	ep_ctx = xhci_get_ep_ctx(xhci, xdev->out_ctx, ep_index);
2238

2239
	if (GET_EP_CTX_STATE(ep_ctx) == EP_STATE_DISABLED) {
2240
		xhci_err(xhci,
2241
			 "ERROR Transfer event for disabled endpoint slot %u ep %u\n",
2242
			  slot_id, ep_index);
2243
		goto err_out;
2244 2245
	}

2246 2247 2248 2249 2250 2251 2252 2253
	/* Some transfer events don't always point to a trb, see xhci 4.17.4 */
	if (!ep_ring) {
		switch (trb_comp_code) {
		case COMP_STALL_ERROR:
		case COMP_USB_TRANSACTION_ERROR:
		case COMP_INVALID_STREAM_TYPE_ERROR:
		case COMP_INVALID_STREAM_ID_ERROR:
			xhci_cleanup_halted_endpoint(xhci, slot_id, ep_index, 0,
2254
						     NULL, EP_SOFT_RESET);
2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265
			goto cleanup;
		case COMP_RING_UNDERRUN:
		case COMP_RING_OVERRUN:
			goto cleanup;
		default:
			xhci_err(xhci, "ERROR Transfer event for unknown stream ring slot %u ep %u\n",
				 slot_id, ep_index);
			goto err_out;
		}
	}

2266 2267 2268 2269 2270 2271
	/* Count current td numbers if ep->skip is set */
	if (ep->skip) {
		list_for_each(tmp, &ep_ring->td_list)
			td_num++;
	}

2272
	/* Look for common error cases */
2273
	switch (trb_comp_code) {
S
Sarah Sharp 已提交
2274 2275 2276 2277
	/* Skip codes that require special handling depending on
	 * transfer type
	 */
	case COMP_SUCCESS:
2278
		if (EVENT_TRB_LEN(le32_to_cpu(event->transfer_len)) == 0)
2279 2280
			break;
		if (xhci->quirks & XHCI_TRUST_TX_LENGTH)
2281
			trb_comp_code = COMP_SHORT_PACKET;
2282
		else
2283
			xhci_warn_ratelimited(xhci,
2284 2285
					      "WARN Successful completion on short TX for slot %u ep %u: needs XHCI_TRUST_TX_LENGTH quirk?\n",
					      slot_id, ep_index);
2286
	case COMP_SHORT_PACKET:
S
Sarah Sharp 已提交
2287
		break;
2288
	/* Completion codes for endpoint stopped state */
2289
	case COMP_STOPPED:
2290 2291
		xhci_dbg(xhci, "Stopped on Transfer TRB for slot %u ep %u\n",
			 slot_id, ep_index);
2292
		break;
2293
	case COMP_STOPPED_LENGTH_INVALID:
2294 2295 2296
		xhci_dbg(xhci,
			 "Stopped on No-op or Link TRB for slot %u ep %u\n",
			 slot_id, ep_index);
2297
		break;
2298
	case COMP_STOPPED_SHORT_PACKET:
2299 2300 2301
		xhci_dbg(xhci,
			 "Stopped with short packet transfer detected for slot %u ep %u\n",
			 slot_id, ep_index);
2302
		break;
2303
	/* Completion codes for endpoint halted state */
2304
	case COMP_STALL_ERROR:
2305 2306
		xhci_dbg(xhci, "Stalled endpoint for slot %u ep %u\n", slot_id,
			 ep_index);
2307
		ep->ep_state |= EP_HALTED;
S
Sarah Sharp 已提交
2308 2309
		status = -EPIPE;
		break;
2310 2311
	case COMP_SPLIT_TRANSACTION_ERROR:
	case COMP_USB_TRANSACTION_ERROR:
2312 2313
		xhci_dbg(xhci, "Transfer error for slot %u ep %u on endpoint\n",
			 slot_id, ep_index);
S
Sarah Sharp 已提交
2314 2315
		status = -EPROTO;
		break;
2316
	case COMP_BABBLE_DETECTED_ERROR:
2317 2318
		xhci_dbg(xhci, "Babble error for slot %u ep %u on endpoint\n",
			 slot_id, ep_index);
2319 2320
		status = -EOVERFLOW;
		break;
2321 2322 2323 2324 2325 2326 2327 2328
	/* Completion codes for endpoint error state */
	case COMP_TRB_ERROR:
		xhci_warn(xhci,
			  "WARN: TRB error for slot %u ep %u on endpoint\n",
			  slot_id, ep_index);
		status = -EILSEQ;
		break;
	/* completion codes not indicating endpoint state change */
2329
	case COMP_DATA_BUFFER_ERROR:
2330 2331 2332
		xhci_warn(xhci,
			  "WARN: HC couldn't access mem fast enough for slot %u ep %u\n",
			  slot_id, ep_index);
S
Sarah Sharp 已提交
2333 2334
		status = -ENOSR;
		break;
2335
	case COMP_BANDWIDTH_OVERRUN_ERROR:
2336 2337 2338
		xhci_warn(xhci,
			  "WARN: bandwidth overrun event for slot %u ep %u on endpoint\n",
			  slot_id, ep_index);
2339
		break;
2340
	case COMP_ISOCH_BUFFER_OVERRUN:
2341 2342 2343
		xhci_warn(xhci,
			  "WARN: buffer overrun event for slot %u ep %u on endpoint",
			  slot_id, ep_index);
2344
		break;
2345
	case COMP_RING_UNDERRUN:
2346 2347 2348 2349 2350 2351 2352 2353 2354
		/*
		 * When the Isoch ring is empty, the xHC will generate
		 * a Ring Overrun Event for IN Isoch endpoint or Ring
		 * Underrun Event for OUT Isoch endpoint.
		 */
		xhci_dbg(xhci, "underrun event on endpoint\n");
		if (!list_empty(&ep_ring->td_list))
			xhci_dbg(xhci, "Underrun Event for slot %d ep %d "
					"still with TDs queued?\n",
M
Matt Evans 已提交
2355 2356
				 TRB_TO_SLOT_ID(le32_to_cpu(event->flags)),
				 ep_index);
2357
		goto cleanup;
2358
	case COMP_RING_OVERRUN:
2359 2360 2361 2362
		xhci_dbg(xhci, "overrun event on endpoint\n");
		if (!list_empty(&ep_ring->td_list))
			xhci_dbg(xhci, "Overrun Event for slot %d ep %d "
					"still with TDs queued?\n",
M
Matt Evans 已提交
2363 2364
				 TRB_TO_SLOT_ID(le32_to_cpu(event->flags)),
				 ep_index);
2365
		goto cleanup;
2366
	case COMP_MISSED_SERVICE_ERROR:
2367 2368 2369 2370 2371 2372 2373
		/*
		 * When encounter missed service error, one or more isoc tds
		 * may be missed by xHC.
		 * Set skip flag of the ep_ring; Complete the missed tds as
		 * short transfer when process the ep_ring next time.
		 */
		ep->skip = true;
2374 2375 2376
		xhci_dbg(xhci,
			 "Miss service interval error for slot %u ep %u, set skip flag\n",
			 slot_id, ep_index);
2377
		goto cleanup;
2378
	case COMP_NO_PING_RESPONSE_ERROR:
2379
		ep->skip = true;
2380 2381 2382
		xhci_dbg(xhci,
			 "No Ping response error for slot %u ep %u, Skip one Isoc TD\n",
			 slot_id, ep_index);
2383
		goto cleanup;
2384 2385 2386 2387 2388 2389 2390 2391

	case COMP_INCOMPATIBLE_DEVICE_ERROR:
		/* needs disable slot command to recover */
		xhci_warn(xhci,
			  "WARN: detect an incompatible device for slot %u ep %u",
			  slot_id, ep_index);
		status = -EPROTO;
		break;
S
Sarah Sharp 已提交
2392
	default:
2393
		if (xhci_is_vendor_info_code(xhci, trb_comp_code)) {
2394 2395 2396
			status = 0;
			break;
		}
2397 2398 2399
		xhci_warn(xhci,
			  "ERROR Unknown event condition %u for slot %u ep %u , HC probably busted\n",
			  trb_comp_code, slot_id, ep_index);
2400 2401 2402
		goto cleanup;
	}

2403 2404 2405 2406 2407
	do {
		/* This TRB should be in the TD at the head of this ring's
		 * TD list.
		 */
		if (list_empty(&ep_ring->td_list)) {
2408
			/*
2409 2410 2411 2412 2413
			 * Don't print wanings if it's due to a stopped endpoint
			 * generating an extra completion event if the device
			 * was suspended. Or, a event for the last TRB of a
			 * short TD we already got a short event for.
			 * The short TD is already removed from the TD list.
2414
			 */
2415

2416
			if (!(trb_comp_code == COMP_STOPPED ||
2417 2418
			      trb_comp_code == COMP_STOPPED_LENGTH_INVALID ||
			      ep_ring->last_td_was_short)) {
2419 2420 2421 2422
				xhci_warn(xhci, "WARN Event TRB for slot %d ep %d with no TDs queued?\n",
						TRB_TO_SLOT_ID(le32_to_cpu(event->flags)),
						ep_index);
			}
2423 2424
			if (ep->skip) {
				ep->skip = false;
2425 2426
				xhci_dbg(xhci, "td_list is empty while skip flag set. Clear skip flag for slot %u ep %u.\n",
					 slot_id, ep_index);
2427 2428 2429
			}
			goto cleanup;
		}
2430

2431 2432 2433
		/* We've skipped all the TDs on the ep ring when ep->skip set */
		if (ep->skip && td_num == 0) {
			ep->skip = false;
2434 2435
			xhci_dbg(xhci, "All tds on the ep_ring skipped. Clear skip flag for slot %u ep %u.\n",
				 slot_id, ep_index);
2436 2437 2438
			goto cleanup;
		}

2439 2440
		td = list_first_entry(&ep_ring->td_list, struct xhci_td,
				      td_list);
2441 2442
		if (ep->skip)
			td_num--;
2443

2444
		/* Is this a TRB in the currently executing TD? */
2445 2446
		ep_seg = trb_in_td(xhci, ep_ring->deq_seg, ep_ring->dequeue,
				td->last_trb, ep_trb_dma, false);
A
Alex He 已提交
2447 2448 2449 2450 2451 2452 2453 2454 2455

		/*
		 * Skip the Force Stopped Event. The event_trb(event_dma) of FSE
		 * is not in the current TD pointed by ep_ring->dequeue because
		 * that the hardware dequeue pointer still at the previous TRB
		 * of the current TD. The previous TRB maybe a Link TD or the
		 * last TRB of the previous TD. The command completion handle
		 * will take care the rest.
		 */
2456 2457
		if (!ep_seg && (trb_comp_code == COMP_STOPPED ||
			   trb_comp_code == COMP_STOPPED_LENGTH_INVALID)) {
A
Alex He 已提交
2458 2459 2460
			goto cleanup;
		}

2461
		if (!ep_seg) {
2462 2463
			if (!ep->skip ||
			    !usb_endpoint_xfer_isoc(&td->urb->ep->desc)) {
2464 2465 2466 2467
				/* Some host controllers give a spurious
				 * successful event after a short transfer.
				 * Ignore it.
				 */
2468
				if ((xhci->quirks & XHCI_SPURIOUS_SUCCESS) &&
2469 2470 2471 2472
						ep_ring->last_td_was_short) {
					ep_ring->last_td_was_short = false;
					goto cleanup;
				}
2473 2474 2475
				/* HC is busted, give up! */
				xhci_err(xhci,
					"ERROR Transfer event TRB DMA ptr not "
2476 2477 2478 2479 2480
					"part of current TD ep_index %d "
					"comp_code %u\n", ep_index,
					trb_comp_code);
				trb_in_td(xhci, ep_ring->deq_seg,
					  ep_ring->dequeue, td->last_trb,
2481
					  ep_trb_dma, true);
2482 2483 2484
				return -ESHUTDOWN;
			}

2485
			skip_isoc_td(xhci, td, event, ep, &status);
2486 2487
			goto cleanup;
		}
2488
		if (trb_comp_code == COMP_SHORT_PACKET)
2489 2490 2491
			ep_ring->last_td_was_short = true;
		else
			ep_ring->last_td_was_short = false;
2492 2493

		if (ep->skip) {
2494 2495 2496
			xhci_dbg(xhci,
				 "Found td. Clear skip flag for slot %u ep %u.\n",
				 slot_id, ep_index);
2497 2498
			ep->skip = false;
		}
2499

2500 2501
		ep_trb = &ep_seg->trbs[(ep_trb_dma - ep_seg->dma) /
						sizeof(*ep_trb)];
2502 2503 2504 2505

		trace_xhci_handle_transfer(ep_ring,
				(struct xhci_generic_trb *) ep_trb);

2506
		/*
2507 2508 2509 2510 2511
		 * No-op TRB could trigger interrupts in a case where
		 * a URB was killed and a STALL_ERROR happens right
		 * after the endpoint ring stopped. Reset the halted
		 * endpoint. Otherwise, the endpoint remains stalled
		 * indefinitely.
2512
		 */
2513
		if (trb_is_noop(ep_trb)) {
2514 2515 2516 2517 2518 2519
			if (trb_comp_code == COMP_STALL_ERROR ||
			    xhci_requires_manual_halt_cleanup(xhci, ep_ctx,
							      trb_comp_code))
				xhci_cleanup_halted_endpoint(xhci, slot_id,
							     ep_index,
							     ep_ring->stream_id,
2520
							     td, EP_HARD_RESET);
2521
			goto cleanup;
2522
		}
2523

2524
		/* update the urb's actual_length and give back to the core */
2525
		if (usb_endpoint_xfer_control(&td->urb->ep->desc))
2526
			process_ctrl_td(xhci, td, ep_trb, event, ep, &status);
2527
		else if (usb_endpoint_xfer_isoc(&td->urb->ep->desc))
2528
			process_isoc_td(xhci, td, ep_trb, event, ep, &status);
2529
		else
2530 2531
			process_bulk_intr_td(xhci, td, ep_trb, event, ep,
					     &status);
2532
cleanup:
2533
		handling_skipped_tds = ep->skip &&
2534 2535
			trb_comp_code != COMP_MISSED_SERVICE_ERROR &&
			trb_comp_code != COMP_NO_PING_RESPONSE_ERROR;
2536

2537
		/*
2538 2539
		 * Do not update event ring dequeue pointer if we're in a loop
		 * processing missed tds.
2540
		 */
2541
		if (!handling_skipped_tds)
A
Andiry Xu 已提交
2542
			inc_deq(xhci, xhci->event_ring);
2543 2544 2545 2546 2547 2548 2549

	/*
	 * If ep->skip is set, it means there are missed tds on the
	 * endpoint ring need to take care of.
	 * Process them as short transfer until reach the td pointed by
	 * the event.
	 */
2550
	} while (handling_skipped_tds);
2551

2552
	return 0;
2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563

err_out:
	xhci_err(xhci, "@%016llx %08x %08x %08x %08x\n",
		 (unsigned long long) xhci_trb_virt_to_dma(
			 xhci->event_ring->deq_seg,
			 xhci->event_ring->dequeue),
		 lower_32_bits(le64_to_cpu(event->buffer)),
		 upper_32_bits(le64_to_cpu(event->buffer)),
		 le32_to_cpu(event->transfer_len),
		 le32_to_cpu(event->flags));
	return -ENODEV;
2564 2565
}

S
Sarah Sharp 已提交
2566 2567 2568
/*
 * This function handles all OS-owned events on the event ring.  It may drop
 * xhci->lock between event processing (e.g. to pass up port status changes).
2569 2570
 * Returns >0 for "possibly more events to process" (caller should call again),
 * otherwise 0 if done.  In future, <0 returns should indicate error code.
S
Sarah Sharp 已提交
2571
 */
2572
static int xhci_handle_event(struct xhci_hcd *xhci)
2573 2574
{
	union xhci_trb *event;
S
Sarah Sharp 已提交
2575
	int update_ptrs = 1;
2576
	int ret;
2577

L
Lu Baolu 已提交
2578
	/* Event ring hasn't been allocated yet. */
2579
	if (!xhci->event_ring || !xhci->event_ring->dequeue) {
L
Lu Baolu 已提交
2580 2581
		xhci_err(xhci, "ERROR event ring not ready\n");
		return -ENOMEM;
2582 2583 2584 2585
	}

	event = xhci->event_ring->dequeue;
	/* Does the HC or OS own the TRB? */
M
Matt Evans 已提交
2586
	if ((le32_to_cpu(event->event_cmd.flags) & TRB_CYCLE) !=
L
Lu Baolu 已提交
2587
	    xhci->event_ring->cycle_state)
2588
		return 0;
2589

2590 2591
	trace_xhci_handle_event(xhci->event_ring, &event->generic);

2592 2593 2594 2595 2596
	/*
	 * Barrier between reading the TRB_CYCLE (valid) flag above and any
	 * speculative reads of the event's flags/data below.
	 */
	rmb();
S
Sarah Sharp 已提交
2597
	/* FIXME: Handle more event types. */
L
Lu Baolu 已提交
2598
	switch (le32_to_cpu(event->event_cmd.flags) & TRB_TYPE_BITMASK) {
2599 2600 2601
	case TRB_TYPE(TRB_COMPLETION):
		handle_cmd_completion(xhci, &event->event_cmd);
		break;
S
Sarah Sharp 已提交
2602 2603 2604 2605
	case TRB_TYPE(TRB_PORT_STATUS):
		handle_port_status(xhci, event);
		update_ptrs = 0;
		break;
2606 2607
	case TRB_TYPE(TRB_TRANSFER):
		ret = handle_tx_event(xhci, &event->trans_event);
L
Lu Baolu 已提交
2608
		if (ret >= 0)
2609 2610
			update_ptrs = 0;
		break;
2611 2612 2613
	case TRB_TYPE(TRB_DEV_NOTE):
		handle_device_notification(xhci, event);
		break;
2614
	default:
M
Matt Evans 已提交
2615 2616
		if ((le32_to_cpu(event->event_cmd.flags) & TRB_TYPE_BITMASK) >=
		    TRB_TYPE(48))
2617 2618
			handle_vendor_event(xhci, event);
		else
L
Lu Baolu 已提交
2619 2620 2621
			xhci_warn(xhci, "ERROR unknown event type %d\n",
				  TRB_FIELD_TO_TYPE(
				  le32_to_cpu(event->event_cmd.flags)));
2622
	}
2623 2624 2625 2626 2627 2628
	/* Any of the above functions may drop and re-acquire the lock, so check
	 * to make sure a watchdog timer didn't mark the host as non-responsive.
	 */
	if (xhci->xhc_state & XHCI_STATE_DYING) {
		xhci_dbg(xhci, "xHCI host dying, returning from "
				"event handler.\n");
2629
		return 0;
2630
	}
2631

2632 2633
	if (update_ptrs)
		/* Update SW event ring dequeue pointer */
A
Andiry Xu 已提交
2634
		inc_deq(xhci, xhci->event_ring);
2635

2636 2637 2638 2639
	/* Are there more items on the event ring?  Caller will call us again to
	 * check.
	 */
	return 1;
2640
}
2641 2642 2643 2644 2645 2646 2647 2648 2649

/*
 * xHCI spec says we can get an interrupt, and if the HC has an error condition,
 * we might get bad data out of the event ring.  Section 4.10.2.7 has a list of
 * indicators of an event TRB error, but we check the status *first* to be safe.
 */
irqreturn_t xhci_irq(struct usb_hcd *hcd)
{
	struct xhci_hcd *xhci = hcd_to_xhci(hcd);
2650
	union xhci_trb *event_ring_deq;
2651
	irqreturn_t ret = IRQ_NONE;
2652
	unsigned long flags;
2653
	dma_addr_t deq;
2654 2655
	u64 temp_64;
	u32 status;
2656

2657
	spin_lock_irqsave(&xhci->lock, flags);
2658
	/* Check if the xHC generated the interrupt, or the irq is shared */
2659
	status = readl(&xhci->op_regs->status);
2660 2661
	if (status == ~(u32)0) {
		xhci_hc_died(xhci);
2662 2663
		ret = IRQ_HANDLED;
		goto out;
2664
	}
2665 2666 2667 2668

	if (!(status & STS_EINT))
		goto out;

2669
	if (status & STS_FATAL) {
2670 2671
		xhci_warn(xhci, "WARNING: Host System Error\n");
		xhci_halt(xhci);
2672 2673
		ret = IRQ_HANDLED;
		goto out;
2674 2675
	}

2676 2677 2678 2679 2680
	/*
	 * Clear the op reg interrupt status first,
	 * so we can receive interrupts from other MSI-X interrupters.
	 * Write 1 to clear the interrupt status.
	 */
2681
	status |= STS_EINT;
2682
	writel(status, &xhci->op_regs->status);
2683

2684
	if (!hcd->msi_enabled) {
2685
		u32 irq_pending;
2686
		irq_pending = readl(&xhci->ir_set->irq_pending);
2687
		irq_pending |= IMAN_IP;
2688
		writel(irq_pending, &xhci->ir_set->irq_pending);
2689
	}
2690

2691 2692
	if (xhci->xhc_state & XHCI_STATE_DYING ||
	    xhci->xhc_state & XHCI_STATE_HALTED) {
2693 2694
		xhci_dbg(xhci, "xHCI dying, ignoring interrupt. "
				"Shouldn't IRQs be disabled?\n");
2695 2696
		/* Clear the event handler busy flag (RW1C);
		 * the event ring should be empty.
2697
		 */
2698
		temp_64 = xhci_read_64(xhci, &xhci->ir_set->erst_dequeue);
2699 2700
		xhci_write_64(xhci, temp_64 | ERST_EHB,
				&xhci->ir_set->erst_dequeue);
2701 2702
		ret = IRQ_HANDLED;
		goto out;
2703 2704 2705 2706 2707 2708
	}

	event_ring_deq = xhci->event_ring->dequeue;
	/* FIXME this should be a delayed service routine
	 * that clears the EHB.
	 */
2709
	while (xhci_handle_event(xhci) > 0) {}
2710

2711
	temp_64 = xhci_read_64(xhci, &xhci->ir_set->erst_dequeue);
2712 2713 2714 2715 2716 2717 2718 2719 2720 2721 2722 2723 2724 2725
	/* If necessary, update the HW's version of the event ring deq ptr. */
	if (event_ring_deq != xhci->event_ring->dequeue) {
		deq = xhci_trb_virt_to_dma(xhci->event_ring->deq_seg,
				xhci->event_ring->dequeue);
		if (deq == 0)
			xhci_warn(xhci, "WARN something wrong with SW event "
					"ring dequeue ptr.\n");
		/* Update HC event ring dequeue pointer */
		temp_64 &= ERST_PTR_MASK;
		temp_64 |= ((u64) deq & (u64) ~ERST_PTR_MASK);
	}

	/* Clear the event handler busy flag (RW1C); event ring is empty. */
	temp_64 |= ERST_EHB;
2726
	xhci_write_64(xhci, temp_64, &xhci->ir_set->erst_dequeue);
2727
	ret = IRQ_HANDLED;
2728

2729
out:
2730
	spin_unlock_irqrestore(&xhci->lock, flags);
2731

2732
	return ret;
2733 2734
}

2735
irqreturn_t xhci_msi_irq(int irq, void *hcd)
2736
{
A
Alan Stern 已提交
2737
	return xhci_irq(hcd);
2738
}
2739

2740 2741
/****		Endpoint Ring Operations	****/

2742 2743 2744
/*
 * Generic function for queueing a TRB on a ring.
 * The caller must have checked to make sure there's room on the ring.
2745 2746 2747
 *
 * @more_trbs_coming:	Will you enqueue more TRBs before calling
 *			prepare_transfer()?
2748 2749
 */
static void queue_trb(struct xhci_hcd *xhci, struct xhci_ring *ring,
A
Andiry Xu 已提交
2750
		bool more_trbs_coming,
2751 2752 2753 2754 2755
		u32 field1, u32 field2, u32 field3, u32 field4)
{
	struct xhci_generic_trb *trb;

	trb = &ring->enqueue->generic;
M
Matt Evans 已提交
2756 2757 2758 2759
	trb->field[0] = cpu_to_le32(field1);
	trb->field[1] = cpu_to_le32(field2);
	trb->field[2] = cpu_to_le32(field3);
	trb->field[3] = cpu_to_le32(field4);
2760 2761 2762

	trace_xhci_queue_trb(ring, trb);

A
Andiry Xu 已提交
2763
	inc_enq(xhci, ring, more_trbs_coming);
2764 2765
}

2766 2767 2768 2769 2770
/*
 * Does various checks on the endpoint ring, and makes it ready to queue num_trbs.
 * FIXME allocate segments if the ring is full.
 */
static int prepare_ring(struct xhci_hcd *xhci, struct xhci_ring *ep_ring,
A
Andiry Xu 已提交
2771
		u32 ep_state, unsigned int num_trbs, gfp_t mem_flags)
2772
{
A
Andiry Xu 已提交
2773 2774
	unsigned int num_trbs_needed;

2775 2776 2777 2778 2779 2780 2781 2782 2783 2784
	/* Make sure the endpoint has been added to xHC schedule */
	switch (ep_state) {
	case EP_STATE_DISABLED:
		/*
		 * USB core changed config/interfaces without notifying us,
		 * or hardware is reporting the wrong state.
		 */
		xhci_warn(xhci, "WARN urb submitted to disabled ep\n");
		return -ENOENT;
	case EP_STATE_ERROR:
2785
		xhci_warn(xhci, "WARN waiting for error on ep to be cleared\n");
2786 2787 2788
		/* FIXME event handling code for error needs to clear it */
		/* XXX not sure if this should be -ENOENT or not */
		return -EINVAL;
2789 2790
	case EP_STATE_HALTED:
		xhci_dbg(xhci, "WARN halted endpoint, queueing URB anyway.\n");
2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801
	case EP_STATE_STOPPED:
	case EP_STATE_RUNNING:
		break;
	default:
		xhci_err(xhci, "ERROR unknown endpoint state for ep\n");
		/*
		 * FIXME issue Configure Endpoint command to try to get the HC
		 * back into a known state.
		 */
		return -EINVAL;
	}
A
Andiry Xu 已提交
2802 2803

	while (1) {
2804 2805
		if (room_on_ring(xhci, ep_ring, num_trbs))
			break;
A
Andiry Xu 已提交
2806 2807 2808 2809 2810 2811

		if (ep_ring == xhci->cmd_ring) {
			xhci_err(xhci, "Do not support expand command ring\n");
			return -ENOMEM;
		}

2812 2813
		xhci_dbg_trace(xhci, trace_xhci_dbg_ring_expansion,
				"ERROR no room on ep ring, try ring expansion");
A
Andiry Xu 已提交
2814 2815 2816 2817 2818 2819
		num_trbs_needed = num_trbs - ep_ring->num_trbs_free;
		if (xhci_ring_expansion(xhci, ep_ring, num_trbs_needed,
					mem_flags)) {
			xhci_err(xhci, "Ring expansion failed\n");
			return -ENOMEM;
		}
2820
	}
2821

2822 2823 2824 2825 2826 2827 2828 2829 2830 2831 2832 2833
	while (trb_is_link(ep_ring->enqueue)) {
		/* If we're not dealing with 0.95 hardware or isoc rings
		 * on AMD 0.96 host, clear the chain bit.
		 */
		if (!xhci_link_trb_quirk(xhci) &&
		    !(ep_ring->type == TYPE_ISOC &&
		      (xhci->quirks & XHCI_AMD_0x96_HOST)))
			ep_ring->enqueue->link.control &=
				cpu_to_le32(~TRB_CHAIN);
		else
			ep_ring->enqueue->link.control |=
				cpu_to_le32(TRB_CHAIN);
2834

2835 2836
		wmb();
		ep_ring->enqueue->link.control ^= cpu_to_le32(TRB_CYCLE);
2837

2838 2839 2840
		/* Toggle the cycle bit after the last ring segment. */
		if (link_trb_toggles_cycle(ep_ring->enqueue))
			ep_ring->cycle_state ^= 1;
2841

2842 2843
		ep_ring->enq_seg = ep_ring->enq_seg->next;
		ep_ring->enqueue = ep_ring->enq_seg->trbs;
2844
	}
2845 2846 2847
	return 0;
}

2848
static int prepare_transfer(struct xhci_hcd *xhci,
2849 2850
		struct xhci_virt_device *xdev,
		unsigned int ep_index,
2851
		unsigned int stream_id,
2852 2853
		unsigned int num_trbs,
		struct urb *urb,
2854
		unsigned int td_index,
2855 2856 2857
		gfp_t mem_flags)
{
	int ret;
2858 2859
	struct urb_priv *urb_priv;
	struct xhci_td	*td;
2860
	struct xhci_ring *ep_ring;
2861
	struct xhci_ep_ctx *ep_ctx = xhci_get_ep_ctx(xhci, xdev->out_ctx, ep_index);
2862 2863 2864 2865 2866 2867 2868 2869

	ep_ring = xhci_stream_id_to_ring(xdev, ep_index, stream_id);
	if (!ep_ring) {
		xhci_dbg(xhci, "Can't prepare ring for bad stream ID %u\n",
				stream_id);
		return -EINVAL;
	}

2870
	ret = prepare_ring(xhci, ep_ring, GET_EP_CTX_STATE(ep_ctx),
A
Andiry Xu 已提交
2871
			   num_trbs, mem_flags);
2872 2873 2874
	if (ret)
		return ret;

2875
	urb_priv = urb->hcpriv;
2876
	td = &urb_priv->td[td_index];
2877 2878 2879 2880 2881

	INIT_LIST_HEAD(&td->td_list);
	INIT_LIST_HEAD(&td->cancelled_td_list);

	if (td_index == 0) {
2882
		ret = usb_hcd_link_urb_to_ep(bus_to_hcd(urb->dev->bus), urb);
2883
		if (unlikely(ret))
2884
			return ret;
2885 2886
	}

2887
	td->urb = urb;
2888
	/* Add this TD to the tail of the endpoint ring's TD list */
2889 2890 2891 2892
	list_add_tail(&td->td_list, &ep_ring->td_list);
	td->start_seg = ep_ring->enq_seg;
	td->first_trb = ep_ring->enqueue;

2893 2894 2895
	return 0;
}

2896
unsigned int count_trbs(u64 addr, u64 len)
2897 2898 2899 2900 2901 2902 2903 2904 2905 2906 2907 2908 2909 2910 2911 2912 2913
{
	unsigned int num_trbs;

	num_trbs = DIV_ROUND_UP(len + (addr & (TRB_MAX_BUFF_SIZE - 1)),
			TRB_MAX_BUFF_SIZE);
	if (num_trbs == 0)
		num_trbs++;

	return num_trbs;
}

static inline unsigned int count_trbs_needed(struct urb *urb)
{
	return count_trbs(urb->transfer_dma, urb->transfer_buffer_length);
}

static unsigned int count_sg_trbs_needed(struct urb *urb)
2914 2915
{
	struct scatterlist *sg;
2916
	unsigned int i, len, full_len, num_trbs = 0;
2917

2918
	full_len = urb->transfer_buffer_length;
2919

2920 2921 2922 2923 2924 2925
	for_each_sg(urb->sg, sg, urb->num_mapped_sgs, i) {
		len = sg_dma_len(sg);
		num_trbs += count_trbs(sg_dma_address(sg), len);
		len = min_t(unsigned int, len, full_len);
		full_len -= len;
		if (full_len == 0)
2926 2927
			break;
	}
2928

2929 2930 2931
	return num_trbs;
}

2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942
static unsigned int count_isoc_trbs_needed(struct urb *urb, int i)
{
	u64 addr, len;

	addr = (u64) (urb->transfer_dma + urb->iso_frame_desc[i].offset);
	len = urb->iso_frame_desc[i].length;

	return count_trbs(addr, len);
}

static void check_trb_math(struct urb *urb, int running_total)
2943
{
2944
	if (unlikely(running_total != urb->transfer_buffer_length))
2945
		dev_err(&urb->dev->dev, "%s - ep %#x - Miscalculated tx length, "
2946 2947 2948 2949 2950 2951 2952 2953
				"queued %#x (%d), asked for %#x (%d)\n",
				__func__,
				urb->ep->desc.bEndpointAddress,
				running_total, running_total,
				urb->transfer_buffer_length,
				urb->transfer_buffer_length);
}

2954
static void giveback_first_trb(struct xhci_hcd *xhci, int slot_id,
2955
		unsigned int ep_index, unsigned int stream_id, int start_cycle,
2956
		struct xhci_generic_trb *start_trb)
2957 2958 2959 2960 2961 2962
{
	/*
	 * Pass all the TRBs to the hardware at once and make sure this write
	 * isn't reordered.
	 */
	wmb();
2963
	if (start_cycle)
M
Matt Evans 已提交
2964
		start_trb->field[3] |= cpu_to_le32(start_cycle);
2965
	else
M
Matt Evans 已提交
2966
		start_trb->field[3] &= cpu_to_le32(~TRB_CYCLE);
2967
	xhci_ring_ep_doorbell(xhci, slot_id, ep_index, stream_id);
2968 2969
}

2970 2971
static void check_interval(struct xhci_hcd *xhci, struct urb *urb,
						struct xhci_ep_ctx *ep_ctx)
2972 2973 2974 2975
{
	int xhci_interval;
	int ep_interval;

M
Matt Evans 已提交
2976
	xhci_interval = EP_INTERVAL_TO_UFRAMES(le32_to_cpu(ep_ctx->ep_info));
2977
	ep_interval = urb->interval;
2978

2979 2980 2981 2982
	/* Convert to microframes */
	if (urb->dev->speed == USB_SPEED_LOW ||
			urb->dev->speed == USB_SPEED_FULL)
		ep_interval *= 8;
2983

2984 2985 2986 2987
	/* FIXME change this to a warning and a suggestion to use the new API
	 * to set the polling interval (once the API is added).
	 */
	if (xhci_interval != ep_interval) {
2988 2989 2990 2991
		dev_dbg_ratelimited(&urb->dev->dev,
				"Driver uses different interval (%d microframe%s) than xHCI (%d microframe%s)\n",
				ep_interval, ep_interval == 1 ? "" : "s",
				xhci_interval, xhci_interval == 1 ? "" : "s");
2992 2993 2994 2995 2996 2997
		urb->interval = xhci_interval;
		/* Convert back to frames for LS/FS devices */
		if (urb->dev->speed == USB_SPEED_LOW ||
				urb->dev->speed == USB_SPEED_FULL)
			urb->interval /= 8;
	}
2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013
}

/*
 * xHCI uses normal TRBs for both bulk and interrupt.  When the interrupt
 * endpoint is to be serviced, the xHC will consume (at most) one TD.  A TD
 * (comprised of sg list entries) can take several service intervals to
 * transmit.
 */
int xhci_queue_intr_tx(struct xhci_hcd *xhci, gfp_t mem_flags,
		struct urb *urb, int slot_id, unsigned int ep_index)
{
	struct xhci_ep_ctx *ep_ctx;

	ep_ctx = xhci_get_ep_ctx(xhci, xhci->devs[slot_id]->out_ctx, ep_index);
	check_interval(xhci, urb, ep_ctx);

3014
	return xhci_queue_bulk_tx(xhci, mem_flags, urb, slot_id, ep_index);
3015 3016
}

3017
/*
3018 3019
 * For xHCI 1.0 host controllers, TD size is the number of max packet sized
 * packets remaining in the TD (*not* including this TRB).
3020 3021
 *
 * Total TD packet count = total_packet_count =
3022
 *     DIV_ROUND_UP(TD size in bytes / wMaxPacketSize)
3023 3024 3025 3026 3027 3028
 *
 * Packets transferred up to and including this TRB = packets_transferred =
 *     rounddown(total bytes transferred including this TRB / wMaxPacketSize)
 *
 * TD size = total_packet_count - packets_transferred
 *
3029 3030 3031 3032 3033 3034
 * For xHCI 0.96 and older, TD size field should be the remaining bytes
 * including this TRB, right shifted by 10
 *
 * For all hosts it must fit in bits 21:17, so it can't be bigger than 31.
 * This is taken care of in the TRB_TD_SIZE() macro
 *
3035
 * The last TRB in a TD must have the TD size set to zero.
3036
 */
3037 3038
static u32 xhci_td_remainder(struct xhci_hcd *xhci, int transferred,
			      int trb_buff_len, unsigned int td_total_len,
3039
			      struct urb *urb, bool more_trbs_coming)
3040
{
3041 3042
	u32 maxp, total_packet_count;

C
Chunfeng Yun 已提交
3043
	/* MTK xHCI 0.96 contains some features from 1.0 */
3044
	if (xhci->hci_version < 0x100 && !(xhci->quirks & XHCI_MTK_HOST))
3045 3046
		return ((td_total_len - transferred) >> 10);

3047
	/* One TRB with a zero-length data packet. */
3048
	if (!more_trbs_coming || (transferred == 0 && trb_buff_len == 0) ||
3049
	    trb_buff_len == td_total_len)
3050 3051
		return 0;

C
Chunfeng Yun 已提交
3052 3053
	/* for MTK xHCI 0.96, TD size include this TRB, but not in 1.x */
	if ((xhci->quirks & XHCI_MTK_HOST) && (xhci->hci_version < 0x100))
3054 3055
		trb_buff_len = 0;

3056
	maxp = usb_endpoint_maxp(&urb->ep->desc);
3057 3058
	total_packet_count = DIV_ROUND_UP(td_total_len, maxp);

3059 3060
	/* Queueing functions don't count the current TRB into transferred */
	return (total_packet_count - ((transferred + trb_buff_len) / maxp));
3061 3062
}

3063

3064
static int xhci_align_td(struct xhci_hcd *xhci, struct urb *urb, u32 enqd_len,
3065
			 u32 *trb_buff_len, struct xhci_segment *seg)
3066
{
3067
	struct device *dev = xhci_to_hcd(xhci)->self.controller;
3068 3069
	unsigned int unalign;
	unsigned int max_pkt;
3070
	u32 new_buff_len;
3071

3072
	max_pkt = usb_endpoint_maxp(&urb->ep->desc);
3073 3074 3075 3076 3077 3078
	unalign = (enqd_len + *trb_buff_len) % max_pkt;

	/* we got lucky, last normal TRB data on segment is packet aligned */
	if (unalign == 0)
		return 0;

3079 3080 3081
	xhci_dbg(xhci, "Unaligned %d bytes, buff len %d\n",
		 unalign, *trb_buff_len);

3082 3083 3084
	/* is the last nornal TRB alignable by splitting it */
	if (*trb_buff_len > unalign) {
		*trb_buff_len -= unalign;
3085
		xhci_dbg(xhci, "split align, new buff len %d\n", *trb_buff_len);
3086 3087
		return 0;
	}
3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115 3116 3117 3118 3119 3120

	/*
	 * We want enqd_len + trb_buff_len to sum up to a number aligned to
	 * number which is divisible by the endpoint's wMaxPacketSize. IOW:
	 * (size of currently enqueued TRBs + remainder) % wMaxPacketSize == 0.
	 */
	new_buff_len = max_pkt - (enqd_len % max_pkt);

	if (new_buff_len > (urb->transfer_buffer_length - enqd_len))
		new_buff_len = (urb->transfer_buffer_length - enqd_len);

	/* create a max max_pkt sized bounce buffer pointed to by last trb */
	if (usb_urb_dir_out(urb)) {
		sg_pcopy_to_buffer(urb->sg, urb->num_mapped_sgs,
				   seg->bounce_buf, new_buff_len, enqd_len);
		seg->bounce_dma = dma_map_single(dev, seg->bounce_buf,
						 max_pkt, DMA_TO_DEVICE);
	} else {
		seg->bounce_dma = dma_map_single(dev, seg->bounce_buf,
						 max_pkt, DMA_FROM_DEVICE);
	}

	if (dma_mapping_error(dev, seg->bounce_dma)) {
		/* try without aligning. Some host controllers survive */
		xhci_warn(xhci, "Failed mapping bounce buffer, not aligning\n");
		return 0;
	}
	*trb_buff_len = new_buff_len;
	seg->bounce_len = new_buff_len;
	seg->bounce_offs = enqd_len;

	xhci_dbg(xhci, "Bounce align, new buff len %d\n", *trb_buff_len);

3121 3122 3123
	return 1;
}

3124 3125
/* This is very similar to what ehci-q.c qtd_fill() does */
int xhci_queue_bulk_tx(struct xhci_hcd *xhci, gfp_t mem_flags,
3126 3127
		struct urb *urb, int slot_id, unsigned int ep_index)
{
3128
	struct xhci_ring *ring;
3129
	struct urb_priv *urb_priv;
3130
	struct xhci_td *td;
3131 3132
	struct xhci_generic_trb *start_trb;
	struct scatterlist *sg = NULL;
3133 3134
	bool more_trbs_coming = true;
	bool need_zero_pkt = false;
3135 3136
	bool first_trb = true;
	unsigned int num_trbs;
3137
	unsigned int start_cycle, num_sgs = 0;
3138
	unsigned int enqd_len, block_len, trb_buff_len, full_len;
3139
	int sent_len, ret;
3140
	u32 field, length_field, remainder;
3141
	u64 addr, send_addr;
3142

3143 3144
	ring = xhci_urb_to_transfer_ring(xhci, urb);
	if (!ring)
3145 3146
		return -EINVAL;

3147
	full_len = urb->transfer_buffer_length;
3148 3149 3150 3151
	/* If we have scatter/gather list, we use it. */
	if (urb->num_sgs) {
		num_sgs = urb->num_mapped_sgs;
		sg = urb->sg;
3152 3153
		addr = (u64) sg_dma_address(sg);
		block_len = sg_dma_len(sg);
3154
		num_trbs = count_sg_trbs_needed(urb);
3155
	} else {
3156
		num_trbs = count_trbs_needed(urb);
3157 3158 3159
		addr = (u64) urb->transfer_dma;
		block_len = full_len;
	}
3160
	ret = prepare_transfer(xhci, xhci->devs[slot_id],
3161
			ep_index, urb->stream_id,
A
Andiry Xu 已提交
3162
			num_trbs, urb, 0, mem_flags);
3163
	if (unlikely(ret < 0))
3164
		return ret;
3165 3166

	urb_priv = urb->hcpriv;
3167 3168

	/* Deal with URB_ZERO_PACKET - need one more td/trb */
3169
	if (urb->transfer_flags & URB_ZERO_PACKET && urb_priv->num_tds > 1)
3170
		need_zero_pkt = true;
3171

3172
	td = &urb_priv->td[0];
3173

3174 3175 3176 3177 3178
	/*
	 * Don't give the first TRB to the hardware (by toggling the cycle bit)
	 * until we've finished creating all the other TRBs.  The ring's cycle
	 * state may change as we enqueue the other TRBs, so save it too.
	 */
3179 3180
	start_trb = &ring->enqueue->generic;
	start_cycle = ring->cycle_state;
3181
	send_addr = addr;
3182

3183
	/* Queue the TRBs, even if they are zero-length */
3184 3185
	for (enqd_len = 0; first_trb || enqd_len < full_len;
			enqd_len += trb_buff_len) {
3186
		field = TRB_TYPE(TRB_NORMAL);
3187

3188 3189 3190
		/* TRB buffer should not cross 64KB boundaries */
		trb_buff_len = TRB_BUFF_LEN_UP_TO_BOUNDARY(addr);
		trb_buff_len = min_t(unsigned int, trb_buff_len, block_len);
3191

3192 3193
		if (enqd_len + trb_buff_len > full_len)
			trb_buff_len = full_len - enqd_len;
S
Sarah Sharp 已提交
3194 3195

		/* Don't change the cycle bit of the first TRB until later */
3196 3197
		if (first_trb) {
			first_trb = false;
3198
			if (start_cycle == 0)
3199
				field |= TRB_CYCLE;
3200
		} else
3201
			field |= ring->cycle_state;
S
Sarah Sharp 已提交
3202 3203 3204 3205

		/* Chain all the TRBs together; clear the chain bit in the last
		 * TRB to indicate it's the last TRB in the chain.
		 */
3206
		if (enqd_len + trb_buff_len < full_len) {
S
Sarah Sharp 已提交
3207
			field |= TRB_CHAIN;
3208
			if (trb_is_link(ring->enqueue + 1)) {
3209
				if (xhci_align_td(xhci, urb, enqd_len,
3210 3211 3212 3213 3214 3215
						  &trb_buff_len,
						  ring->enq_seg)) {
					send_addr = ring->enq_seg->bounce_dma;
					/* assuming TD won't span 2 segs */
					td->bounce_seg = ring->enq_seg;
				}
3216
			}
3217 3218 3219
		}
		if (enqd_len + trb_buff_len >= full_len) {
			field &= ~TRB_CHAIN;
3220
			field |= TRB_IOC;
3221
			more_trbs_coming = false;
3222
			td->last_trb = ring->enqueue;
S
Sarah Sharp 已提交
3223
		}
3224 3225 3226 3227 3228

		/* Only set interrupt on short packet for IN endpoints */
		if (usb_urb_dir_in(urb))
			field |= TRB_ISP;

3229
		/* Set the TRB length, TD size, and interrupter fields. */
3230 3231 3232
		remainder = xhci_td_remainder(xhci, enqd_len, trb_buff_len,
					      full_len, urb, more_trbs_coming);

3233
		length_field = TRB_LEN(trb_buff_len) |
3234
			TRB_TD_SIZE(remainder) |
3235
			TRB_INTR_TARGET(0);
3236

3237
		queue_trb(xhci, ring, more_trbs_coming | need_zero_pkt,
3238 3239
				lower_32_bits(send_addr),
				upper_32_bits(send_addr),
3240
				length_field,
3241
				field);
S
Sarah Sharp 已提交
3242 3243

		addr += trb_buff_len;
3244
		sent_len = trb_buff_len;
3245

3246
		while (sg && sent_len >= block_len) {
3247 3248
			/* New sg entry */
			--num_sgs;
3249
			sent_len -= block_len;
3250
			if (num_sgs != 0) {
3251
				sg = sg_next(sg);
3252 3253
				block_len = sg_dma_len(sg);
				addr = (u64) sg_dma_address(sg);
3254
				addr += sent_len;
3255 3256
			}
		}
3257 3258
		block_len -= sent_len;
		send_addr = addr;
3259
	}
S
Sarah Sharp 已提交
3260

3261 3262 3263 3264
	if (need_zero_pkt) {
		ret = prepare_transfer(xhci, xhci->devs[slot_id],
				       ep_index, urb->stream_id,
				       1, urb, 1, mem_flags);
3265
		urb_priv->td[1].last_trb = ring->enqueue;
3266 3267 3268 3269
		field = TRB_TYPE(TRB_NORMAL) | ring->cycle_state | TRB_IOC;
		queue_trb(xhci, ring, 0, 0, 0, TRB_INTR_TARGET(0), field);
	}

3270
	check_trb_math(urb, enqd_len);
3271
	giveback_first_trb(xhci, slot_id, ep_index, urb->stream_id,
3272
			start_cycle, start_trb);
S
Sarah Sharp 已提交
3273 3274 3275
	return 0;
}

3276
/* Caller must have locked xhci->lock */
3277
int xhci_queue_ctrl_tx(struct xhci_hcd *xhci, gfp_t mem_flags,
3278 3279 3280 3281 3282 3283 3284 3285
		struct urb *urb, int slot_id, unsigned int ep_index)
{
	struct xhci_ring *ep_ring;
	int num_trbs;
	int ret;
	struct usb_ctrlrequest *setup;
	struct xhci_generic_trb *start_trb;
	int start_cycle;
3286
	u32 field;
3287
	struct urb_priv *urb_priv;
3288 3289
	struct xhci_td *td;

3290 3291 3292
	ep_ring = xhci_urb_to_transfer_ring(xhci, urb);
	if (!ep_ring)
		return -EINVAL;
3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309

	/*
	 * Need to copy setup packet into setup TRB, so we can't use the setup
	 * DMA address.
	 */
	if (!urb->setup_packet)
		return -EINVAL;

	/* 1 TRB for setup, 1 for status */
	num_trbs = 2;
	/*
	 * Don't need to check if we need additional event data and normal TRBs,
	 * since data in control transfers will never get bigger than 16MB
	 * XXX: can we get a buffer that crosses 64KB boundaries?
	 */
	if (urb->transfer_buffer_length > 0)
		num_trbs++;
3310 3311
	ret = prepare_transfer(xhci, xhci->devs[slot_id],
			ep_index, urb->stream_id,
A
Andiry Xu 已提交
3312
			num_trbs, urb, 0, mem_flags);
3313 3314 3315
	if (ret < 0)
		return ret;

3316
	urb_priv = urb->hcpriv;
3317
	td = &urb_priv->td[0];
3318

3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329
	/*
	 * Don't give the first TRB to the hardware (by toggling the cycle bit)
	 * until we've finished creating all the other TRBs.  The ring's cycle
	 * state may change as we enqueue the other TRBs, so save it too.
	 */
	start_trb = &ep_ring->enqueue->generic;
	start_cycle = ep_ring->cycle_state;

	/* Queue setup TRB - see section 6.4.1.2.1 */
	/* FIXME better way to translate setup_packet into two u32 fields? */
	setup = (struct usb_ctrlrequest *) urb->setup_packet;
3330 3331 3332 3333
	field = 0;
	field |= TRB_IDT | TRB_TYPE(TRB_SETUP);
	if (start_cycle == 0)
		field |= 0x1;
3334

3335
	/* xHCI 1.0/1.1 6.4.1.2.1: Transfer Type field */
3336
	if ((xhci->hci_version >= 0x100) || (xhci->quirks & XHCI_MTK_HOST)) {
3337 3338 3339 3340 3341 3342 3343 3344
		if (urb->transfer_buffer_length > 0) {
			if (setup->bRequestType & USB_DIR_IN)
				field |= TRB_TX_TYPE(TRB_DATA_IN);
			else
				field |= TRB_TX_TYPE(TRB_DATA_OUT);
		}
	}

A
Andiry Xu 已提交
3345
	queue_trb(xhci, ep_ring, true,
M
Matt Evans 已提交
3346 3347 3348 3349 3350
		  setup->bRequestType | setup->bRequest << 8 | le16_to_cpu(setup->wValue) << 16,
		  le16_to_cpu(setup->wIndex) | le16_to_cpu(setup->wLength) << 16,
		  TRB_LEN(8) | TRB_INTR_TARGET(0),
		  /* Immediate data in pointer */
		  field);
3351 3352

	/* If there's data, queue data TRBs */
3353 3354 3355 3356 3357 3358
	/* Only set interrupt on short packet for IN endpoints */
	if (usb_urb_dir_in(urb))
		field = TRB_ISP | TRB_TYPE(TRB_DATA);
	else
		field = TRB_TYPE(TRB_DATA);

3359
	if (urb->transfer_buffer_length > 0) {
3360 3361 3362 3363 3364 3365 3366 3367 3368
		u32 length_field, remainder;

		remainder = xhci_td_remainder(xhci, 0,
				urb->transfer_buffer_length,
				urb->transfer_buffer_length,
				urb, 1);
		length_field = TRB_LEN(urb->transfer_buffer_length) |
				TRB_TD_SIZE(remainder) |
				TRB_INTR_TARGET(0);
3369 3370
		if (setup->bRequestType & USB_DIR_IN)
			field |= TRB_DIR_IN;
A
Andiry Xu 已提交
3371
		queue_trb(xhci, ep_ring, true,
3372 3373
				lower_32_bits(urb->transfer_dma),
				upper_32_bits(urb->transfer_dma),
3374
				length_field,
3375
				field | ep_ring->cycle_state);
3376 3377 3378 3379 3380 3381 3382 3383 3384 3385 3386
	}

	/* Save the DMA address of the last TRB in the TD */
	td->last_trb = ep_ring->enqueue;

	/* Queue status TRB - see Table 7 and sections 4.11.2.2 and 6.4.1.2.3 */
	/* If the device sent data, the status stage is an OUT transfer */
	if (urb->transfer_buffer_length > 0 && setup->bRequestType & USB_DIR_IN)
		field = 0;
	else
		field = TRB_DIR_IN;
A
Andiry Xu 已提交
3387
	queue_trb(xhci, ep_ring, false,
3388 3389 3390 3391 3392 3393
			0,
			0,
			TRB_INTR_TARGET(0),
			/* Event on completion */
			field | TRB_IOC | TRB_TYPE(TRB_STATUS) | ep_ring->cycle_state);

3394
	giveback_first_trb(xhci, slot_id, ep_index, 0,
3395
			start_cycle, start_trb);
3396 3397 3398
	return 0;
}

3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411
/*
 * The transfer burst count field of the isochronous TRB defines the number of
 * bursts that are required to move all packets in this TD.  Only SuperSpeed
 * devices can burst up to bMaxBurst number of packets per service interval.
 * This field is zero based, meaning a value of zero in the field means one
 * burst.  Basically, for everything but SuperSpeed devices, this field will be
 * zero.  Only xHCI 1.0 host controllers support this field.
 */
static unsigned int xhci_get_burst_count(struct xhci_hcd *xhci,
		struct urb *urb, unsigned int total_packet_count)
{
	unsigned int max_burst;

3412
	if (xhci->hci_version < 0x100 || urb->dev->speed < USB_SPEED_SUPER)
3413 3414 3415
		return 0;

	max_burst = urb->ep->ss_ep_comp.bMaxBurst;
3416
	return DIV_ROUND_UP(total_packet_count, max_burst + 1) - 1;
3417 3418
}

3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431 3432 3433 3434 3435
/*
 * Returns the number of packets in the last "burst" of packets.  This field is
 * valid for all speeds of devices.  USB 2.0 devices can only do one "burst", so
 * the last burst packet count is equal to the total number of packets in the
 * TD.  SuperSpeed endpoints can have up to 3 bursts.  All but the last burst
 * must contain (bMaxBurst + 1) number of packets, but the last burst can
 * contain 1 to (bMaxBurst + 1) packets.
 */
static unsigned int xhci_get_last_burst_packet_count(struct xhci_hcd *xhci,
		struct urb *urb, unsigned int total_packet_count)
{
	unsigned int max_burst;
	unsigned int residue;

	if (xhci->hci_version < 0x100)
		return 0;

3436
	if (urb->dev->speed >= USB_SPEED_SUPER) {
3437 3438 3439 3440 3441 3442 3443 3444 3445 3446
		/* bMaxBurst is zero based: 0 means 1 packet per burst */
		max_burst = urb->ep->ss_ep_comp.bMaxBurst;
		residue = total_packet_count % (max_burst + 1);
		/* If residue is zero, the last burst contains (max_burst + 1)
		 * number of packets, but the TLBPC field is zero-based.
		 */
		if (residue == 0)
			return max_burst;
		return residue - 1;
	}
3447 3448 3449
	if (total_packet_count == 0)
		return 0;
	return total_packet_count - 1;
3450 3451
}

3452 3453 3454 3455 3456 3457 3458 3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542
/*
 * Calculates Frame ID field of the isochronous TRB identifies the
 * target frame that the Interval associated with this Isochronous
 * Transfer Descriptor will start on. Refer to 4.11.2.5 in 1.1 spec.
 *
 * Returns actual frame id on success, negative value on error.
 */
static int xhci_get_isoc_frame_id(struct xhci_hcd *xhci,
		struct urb *urb, int index)
{
	int start_frame, ist, ret = 0;
	int start_frame_id, end_frame_id, current_frame_id;

	if (urb->dev->speed == USB_SPEED_LOW ||
			urb->dev->speed == USB_SPEED_FULL)
		start_frame = urb->start_frame + index * urb->interval;
	else
		start_frame = (urb->start_frame + index * urb->interval) >> 3;

	/* Isochronous Scheduling Threshold (IST, bits 0~3 in HCSPARAMS2):
	 *
	 * If bit [3] of IST is cleared to '0', software can add a TRB no
	 * later than IST[2:0] Microframes before that TRB is scheduled to
	 * be executed.
	 * If bit [3] of IST is set to '1', software can add a TRB no later
	 * than IST[2:0] Frames before that TRB is scheduled to be executed.
	 */
	ist = HCS_IST(xhci->hcs_params2) & 0x7;
	if (HCS_IST(xhci->hcs_params2) & (1 << 3))
		ist <<= 3;

	/* Software shall not schedule an Isoch TD with a Frame ID value that
	 * is less than the Start Frame ID or greater than the End Frame ID,
	 * where:
	 *
	 * End Frame ID = (Current MFINDEX register value + 895 ms.) MOD 2048
	 * Start Frame ID = (Current MFINDEX register value + IST + 1) MOD 2048
	 *
	 * Both the End Frame ID and Start Frame ID values are calculated
	 * in microframes. When software determines the valid Frame ID value;
	 * The End Frame ID value should be rounded down to the nearest Frame
	 * boundary, and the Start Frame ID value should be rounded up to the
	 * nearest Frame boundary.
	 */
	current_frame_id = readl(&xhci->run_regs->microframe_index);
	start_frame_id = roundup(current_frame_id + ist + 1, 8);
	end_frame_id = rounddown(current_frame_id + 895 * 8, 8);

	start_frame &= 0x7ff;
	start_frame_id = (start_frame_id >> 3) & 0x7ff;
	end_frame_id = (end_frame_id >> 3) & 0x7ff;

	xhci_dbg(xhci, "%s: index %d, reg 0x%x start_frame_id 0x%x, end_frame_id 0x%x, start_frame 0x%x\n",
		 __func__, index, readl(&xhci->run_regs->microframe_index),
		 start_frame_id, end_frame_id, start_frame);

	if (start_frame_id < end_frame_id) {
		if (start_frame > end_frame_id ||
				start_frame < start_frame_id)
			ret = -EINVAL;
	} else if (start_frame_id > end_frame_id) {
		if ((start_frame > end_frame_id &&
				start_frame < start_frame_id))
			ret = -EINVAL;
	} else {
			ret = -EINVAL;
	}

	if (index == 0) {
		if (ret == -EINVAL || start_frame == start_frame_id) {
			start_frame = start_frame_id + 1;
			if (urb->dev->speed == USB_SPEED_LOW ||
					urb->dev->speed == USB_SPEED_FULL)
				urb->start_frame = start_frame;
			else
				urb->start_frame = start_frame << 3;
			ret = 0;
		}
	}

	if (ret) {
		xhci_warn(xhci, "Frame ID %d (reg %d, index %d) beyond range (%d, %d)\n",
				start_frame, current_frame_id, index,
				start_frame_id, end_frame_id);
		xhci_warn(xhci, "Ignore frame ID field, use SIA bit instead\n");
		return ret;
	}

	return start_frame;
}

3543 3544 3545 3546 3547 3548 3549 3550 3551 3552 3553 3554 3555 3556 3557
/* This is for isoc transfer */
static int xhci_queue_isoc_tx(struct xhci_hcd *xhci, gfp_t mem_flags,
		struct urb *urb, int slot_id, unsigned int ep_index)
{
	struct xhci_ring *ep_ring;
	struct urb_priv *urb_priv;
	struct xhci_td *td;
	int num_tds, trbs_per_td;
	struct xhci_generic_trb *start_trb;
	bool first_trb;
	int start_cycle;
	u32 field, length_field;
	int running_total, trb_buff_len, td_len, td_remain_len, ret;
	u64 start_addr, addr;
	int i, j;
A
Andiry Xu 已提交
3558
	bool more_trbs_coming;
3559
	struct xhci_virt_ep *xep;
3560
	int frame_id;
3561

3562
	xep = &xhci->devs[slot_id]->eps[ep_index];
3563 3564 3565 3566 3567 3568 3569 3570 3571 3572 3573
	ep_ring = xhci->devs[slot_id]->eps[ep_index].ring;

	num_tds = urb->number_of_packets;
	if (num_tds < 1) {
		xhci_dbg(xhci, "Isoc URB with zero packets?\n");
		return -EINVAL;
	}
	start_addr = (u64) urb->transfer_dma;
	start_trb = &ep_ring->enqueue->generic;
	start_cycle = ep_ring->cycle_state;

3574
	urb_priv = urb->hcpriv;
3575
	/* Queue the TRBs for each TD, even if they are zero-length */
3576
	for (i = 0; i < num_tds; i++) {
3577 3578 3579
		unsigned int total_pkt_count, max_pkt;
		unsigned int burst_count, last_burst_pkt_count;
		u32 sia_frame_id;
3580

3581
		first_trb = true;
3582 3583 3584 3585
		running_total = 0;
		addr = start_addr + urb->iso_frame_desc[i].offset;
		td_len = urb->iso_frame_desc[i].length;
		td_remain_len = td_len;
3586
		max_pkt = usb_endpoint_maxp(&urb->ep->desc);
3587 3588
		total_pkt_count = DIV_ROUND_UP(td_len, max_pkt);

3589
		/* A zero-length transfer still involves at least one packet. */
3590 3591 3592 3593 3594
		if (total_pkt_count == 0)
			total_pkt_count++;
		burst_count = xhci_get_burst_count(xhci, urb, total_pkt_count);
		last_burst_pkt_count = xhci_get_last_burst_packet_count(xhci,
							urb, total_pkt_count);
3595

3596
		trbs_per_td = count_isoc_trbs_needed(urb, i);
3597 3598

		ret = prepare_transfer(xhci, xhci->devs[slot_id], ep_index,
A
Andiry Xu 已提交
3599
				urb->stream_id, trbs_per_td, urb, i, mem_flags);
3600 3601 3602 3603 3604
		if (ret < 0) {
			if (i == 0)
				return ret;
			goto cleanup;
		}
3605
		td = &urb_priv->td[i];
3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618 3619

		/* use SIA as default, if frame id is used overwrite it */
		sia_frame_id = TRB_SIA;
		if (!(urb->transfer_flags & URB_ISO_ASAP) &&
		    HCC_CFC(xhci->hcc_params)) {
			frame_id = xhci_get_isoc_frame_id(xhci, urb, i);
			if (frame_id >= 0)
				sia_frame_id = TRB_FRAME_ID(frame_id);
		}
		/*
		 * Set isoc specific data for the first TRB in a TD.
		 * Prevent HW from getting the TRBs by keeping the cycle state
		 * inverted in the first TDs isoc TRB.
		 */
3620
		field = TRB_TYPE(TRB_ISOC) |
3621 3622 3623 3624
			TRB_TLBPC(last_burst_pkt_count) |
			sia_frame_id |
			(i ? ep_ring->cycle_state : !start_cycle);

3625 3626 3627 3628
		/* xhci 1.1 with ETE uses TD_Size field for TBC, old is Rsvdz */
		if (!xep->use_extended_tbc)
			field |= TRB_TBC(burst_count);

3629
		/* fill the rest of the TRB fields, and remaining normal TRBs */
3630 3631
		for (j = 0; j < trbs_per_td; j++) {
			u32 remainder = 0;
3632 3633 3634 3635 3636

			/* only first TRB is isoc, overwrite otherwise */
			if (!first_trb)
				field = TRB_TYPE(TRB_NORMAL) |
					ep_ring->cycle_state;
3637

3638 3639 3640 3641
			/* Only set interrupt on short packet for IN EPs */
			if (usb_urb_dir_in(urb))
				field |= TRB_ISP;

3642
			/* Set the chain bit for all except the last TRB  */
3643
			if (j < trbs_per_td - 1) {
A
Andiry Xu 已提交
3644
				more_trbs_coming = true;
3645
				field |= TRB_CHAIN;
3646
			} else {
3647
				more_trbs_coming = false;
3648 3649
				td->last_trb = ep_ring->enqueue;
				field |= TRB_IOC;
3650 3651 3652 3653 3654
				/* set BEI, except for the last TD */
				if (xhci->hci_version >= 0x100 &&
				    !(xhci->quirks & XHCI_AVOID_BEI) &&
				    i < num_tds - 1)
					field |= TRB_BEI;
3655 3656
			}
			/* Calculate TRB length */
3657
			trb_buff_len = TRB_BUFF_LEN_UP_TO_BOUNDARY(addr);
3658 3659 3660
			if (trb_buff_len > td_remain_len)
				trb_buff_len = td_remain_len;

3661
			/* Set the TRB length, TD size, & interrupter fields. */
3662 3663
			remainder = xhci_td_remainder(xhci, running_total,
						   trb_buff_len, td_len,
3664
						   urb, more_trbs_coming);
3665

3666 3667
			length_field = TRB_LEN(trb_buff_len) |
				TRB_INTR_TARGET(0);
3668

3669 3670 3671 3672 3673 3674 3675
			/* xhci 1.1 with ETE uses TD Size field for TBC */
			if (first_trb && xep->use_extended_tbc)
				length_field |= TRB_TD_SIZE_TBC(burst_count);
			else
				length_field |= TRB_TD_SIZE(remainder);
			first_trb = false;

A
Andiry Xu 已提交
3676
			queue_trb(xhci, ep_ring, more_trbs_coming,
3677 3678 3679
				lower_32_bits(addr),
				upper_32_bits(addr),
				length_field,
3680
				field);
3681 3682 3683 3684 3685 3686 3687 3688 3689
			running_total += trb_buff_len;

			addr += trb_buff_len;
			td_remain_len -= trb_buff_len;
		}

		/* Check TD length */
		if (running_total != td_len) {
			xhci_err(xhci, "ISOC TD length unmatch\n");
3690 3691
			ret = -EINVAL;
			goto cleanup;
3692 3693 3694
		}
	}

3695 3696 3697 3698
	/* store the next frame id */
	if (HCC_CFC(xhci->hcc_params))
		xep->next_frame_id = urb->start_frame + num_tds * urb->interval;

A
Andiry Xu 已提交
3699 3700 3701 3702 3703 3704
	if (xhci_to_hcd(xhci)->self.bandwidth_isoc_reqs == 0) {
		if (xhci->quirks & XHCI_AMD_PLL_FIX)
			usb_amd_quirk_pll_disable();
	}
	xhci_to_hcd(xhci)->self.bandwidth_isoc_reqs++;

3705 3706
	giveback_first_trb(xhci, slot_id, ep_index, urb->stream_id,
			start_cycle, start_trb);
3707
	return 0;
3708 3709 3710 3711
cleanup:
	/* Clean up a partially enqueued isoc transfer. */

	for (i--; i >= 0; i--)
3712
		list_del_init(&urb_priv->td[i].td_list);
3713 3714 3715 3716 3717 3718

	/* Use the first TD as a temporary variable to turn the TDs we've queued
	 * into No-ops with a software-owned cycle bit. That way the hardware
	 * won't accidentally start executing bogus TDs when we partially
	 * overwrite them.  td->first_trb and td->start_seg are already set.
	 */
3719
	urb_priv->td[0].last_trb = ep_ring->enqueue;
3720
	/* Every TRB except the first & last will have its cycle bit flipped. */
3721
	td_to_noop(xhci, ep_ring, &urb_priv->td[0], true);
3722 3723

	/* Reset the ring enqueue back to the first TRB and its cycle bit. */
3724 3725
	ep_ring->enqueue = urb_priv->td[0].first_trb;
	ep_ring->enq_seg = urb_priv->td[0].start_seg;
3726
	ep_ring->cycle_state = start_cycle;
3727
	ep_ring->num_trbs_free = ep_ring->num_trbs_free_temp;
3728 3729
	usb_hcd_unlink_urb_from_ep(bus_to_hcd(urb->dev->bus), urb);
	return ret;
3730 3731 3732 3733 3734
}

/*
 * Check transfer ring to guarantee there is enough room for the urb.
 * Update ISO URB start_frame and interval.
3735 3736 3737
 * Update interval as xhci_queue_intr_tx does. Use xhci frame_index to
 * update urb->start_frame if URB_ISO_ASAP is set in transfer_flags or
 * Contiguous Frame ID is not supported by HC.
3738 3739 3740 3741 3742 3743 3744 3745 3746 3747
 */
int xhci_queue_isoc_tx_prepare(struct xhci_hcd *xhci, gfp_t mem_flags,
		struct urb *urb, int slot_id, unsigned int ep_index)
{
	struct xhci_virt_device *xdev;
	struct xhci_ring *ep_ring;
	struct xhci_ep_ctx *ep_ctx;
	int start_frame;
	int num_tds, num_trbs, i;
	int ret;
3748 3749
	struct xhci_virt_ep *xep;
	int ist;
3750 3751

	xdev = xhci->devs[slot_id];
3752
	xep = &xhci->devs[slot_id]->eps[ep_index];
3753 3754 3755 3756 3757 3758
	ep_ring = xdev->eps[ep_index].ring;
	ep_ctx = xhci_get_ep_ctx(xhci, xdev->out_ctx, ep_index);

	num_trbs = 0;
	num_tds = urb->number_of_packets;
	for (i = 0; i < num_tds; i++)
3759
		num_trbs += count_isoc_trbs_needed(urb, i);
3760 3761 3762 3763

	/* Check the ring to guarantee there is enough room for the whole urb.
	 * Do not insert any td of the urb to the ring if the check failed.
	 */
3764
	ret = prepare_ring(xhci, ep_ring, GET_EP_CTX_STATE(ep_ctx),
A
Andiry Xu 已提交
3765
			   num_trbs, mem_flags);
3766 3767 3768
	if (ret)
		return ret;

3769 3770 3771 3772
	/*
	 * Check interval value. This should be done before we start to
	 * calculate the start frame value.
	 */
3773
	check_interval(xhci, urb, ep_ctx);
3774 3775

	/* Calculate the start frame and put it in urb->start_frame. */
L
Lu Baolu 已提交
3776
	if (HCC_CFC(xhci->hcc_params) && !list_empty(&ep_ring->td_list)) {
3777
		if (GET_EP_CTX_STATE(ep_ctx) ==	EP_STATE_RUNNING) {
L
Lu Baolu 已提交
3778 3779 3780
			urb->start_frame = xep->next_frame_id;
			goto skip_start_over;
		}
3781 3782 3783 3784 3785 3786 3787 3788 3789 3790 3791 3792 3793 3794 3795 3796 3797 3798 3799 3800 3801 3802 3803 3804 3805 3806 3807 3808
	}

	start_frame = readl(&xhci->run_regs->microframe_index);
	start_frame &= 0x3fff;
	/*
	 * Round up to the next frame and consider the time before trb really
	 * gets scheduled by hardare.
	 */
	ist = HCS_IST(xhci->hcs_params2) & 0x7;
	if (HCS_IST(xhci->hcs_params2) & (1 << 3))
		ist <<= 3;
	start_frame += ist + XHCI_CFC_DELAY;
	start_frame = roundup(start_frame, 8);

	/*
	 * Round up to the next ESIT (Endpoint Service Interval Time) if ESIT
	 * is greate than 8 microframes.
	 */
	if (urb->dev->speed == USB_SPEED_LOW ||
			urb->dev->speed == USB_SPEED_FULL) {
		start_frame = roundup(start_frame, urb->interval << 3);
		urb->start_frame = start_frame >> 3;
	} else {
		start_frame = roundup(start_frame, urb->interval);
		urb->start_frame = start_frame;
	}

skip_start_over:
3809 3810
	ep_ring->num_trbs_free_temp = ep_ring->num_trbs_free;

3811
	return xhci_queue_isoc_tx(xhci, mem_flags, urb, slot_id, ep_index);
3812 3813
}

3814 3815
/****		Command Ring Operations		****/

3816 3817 3818 3819 3820 3821 3822 3823
/* Generic function for queueing a command TRB on the command ring.
 * Check to make sure there's room on the command ring for one command TRB.
 * Also check that there's room reserved for commands that must not fail.
 * If this is a command that must not fail, meaning command_must_succeed = TRUE,
 * then only check for the number of reserved spots.
 * Don't decrement xhci->cmd_ring_reserved_trbs after we've queued the TRB
 * because the command event handler may want to resubmit a failed command.
 */
3824 3825 3826
static int queue_command(struct xhci_hcd *xhci, struct xhci_command *cmd,
			 u32 field1, u32 field2,
			 u32 field3, u32 field4, bool command_must_succeed)
3827
{
3828
	int reserved_trbs = xhci->cmd_ring_reserved_trbs;
3829
	int ret;
3830

3831 3832
	if ((xhci->xhc_state & XHCI_STATE_DYING) ||
		(xhci->xhc_state & XHCI_STATE_HALTED)) {
3833
		xhci_dbg(xhci, "xHCI dying or halted, can't queue_command\n");
M
Mathias Nyman 已提交
3834
		return -ESHUTDOWN;
3835
	}
3836

3837 3838 3839
	if (!command_must_succeed)
		reserved_trbs++;

3840
	ret = prepare_ring(xhci, xhci->cmd_ring, EP_STATE_RUNNING,
A
Andiry Xu 已提交
3841
			reserved_trbs, GFP_ATOMIC);
3842 3843
	if (ret < 0) {
		xhci_err(xhci, "ERR: No room for command on command ring\n");
3844 3845 3846
		if (command_must_succeed)
			xhci_err(xhci, "ERR: Reserved TRB counting for "
					"unfailable commands failed.\n");
3847
		return ret;
3848
	}
M
Mathias Nyman 已提交
3849 3850

	cmd->command_trb = xhci->cmd_ring->enqueue;
3851

3852
	/* if there are no other commands queued we start the timeout timer */
3853
	if (list_empty(&xhci->cmd_list)) {
3854
		xhci->current_cmd = cmd;
3855
		xhci_mod_cmd_timer(xhci, XHCI_CMD_DEFAULT_TIMEOUT);
3856 3857
	}

3858 3859
	list_add_tail(&cmd->cmd_list, &xhci->cmd_list);

A
Andiry Xu 已提交
3860 3861
	queue_trb(xhci, xhci->cmd_ring, false, field1, field2, field3,
			field4 | xhci->cmd_ring->cycle_state);
3862 3863 3864
	return 0;
}

3865
/* Queue a slot enable or disable request on the command ring */
3866 3867
int xhci_queue_slot_control(struct xhci_hcd *xhci, struct xhci_command *cmd,
		u32 trb_type, u32 slot_id)
3868
{
3869
	return queue_command(xhci, cmd, 0, 0, 0,
3870
			TRB_TYPE(trb_type) | SLOT_ID_FOR_TRB(slot_id), false);
3871 3872 3873
}

/* Queue an address device command TRB */
3874 3875
int xhci_queue_address_device(struct xhci_hcd *xhci, struct xhci_command *cmd,
		dma_addr_t in_ctx_ptr, u32 slot_id, enum xhci_setup_dev setup)
3876
{
3877
	return queue_command(xhci, cmd, lower_32_bits(in_ctx_ptr),
3878
			upper_32_bits(in_ctx_ptr), 0,
3879 3880
			TRB_TYPE(TRB_ADDR_DEV) | SLOT_ID_FOR_TRB(slot_id)
			| (setup == SETUP_CONTEXT_ONLY ? TRB_BSR : 0), false);
3881 3882
}

3883
int xhci_queue_vendor_command(struct xhci_hcd *xhci, struct xhci_command *cmd,
3884 3885
		u32 field1, u32 field2, u32 field3, u32 field4)
{
3886
	return queue_command(xhci, cmd, field1, field2, field3, field4, false);
3887 3888
}

3889
/* Queue a reset device command TRB */
3890 3891
int xhci_queue_reset_device(struct xhci_hcd *xhci, struct xhci_command *cmd,
		u32 slot_id)
3892
{
3893
	return queue_command(xhci, cmd, 0, 0, 0,
3894
			TRB_TYPE(TRB_RESET_DEV) | SLOT_ID_FOR_TRB(slot_id),
3895
			false);
3896
}
3897 3898

/* Queue a configure endpoint command TRB */
3899 3900
int xhci_queue_configure_endpoint(struct xhci_hcd *xhci,
		struct xhci_command *cmd, dma_addr_t in_ctx_ptr,
3901
		u32 slot_id, bool command_must_succeed)
3902
{
3903
	return queue_command(xhci, cmd, lower_32_bits(in_ctx_ptr),
3904
			upper_32_bits(in_ctx_ptr), 0,
3905 3906
			TRB_TYPE(TRB_CONFIG_EP) | SLOT_ID_FOR_TRB(slot_id),
			command_must_succeed);
3907
}
3908

3909
/* Queue an evaluate context command TRB */
3910 3911
int xhci_queue_evaluate_context(struct xhci_hcd *xhci, struct xhci_command *cmd,
		dma_addr_t in_ctx_ptr, u32 slot_id, bool command_must_succeed)
3912
{
3913
	return queue_command(xhci, cmd, lower_32_bits(in_ctx_ptr),
3914
			upper_32_bits(in_ctx_ptr), 0,
3915
			TRB_TYPE(TRB_EVAL_CONTEXT) | SLOT_ID_FOR_TRB(slot_id),
3916
			command_must_succeed);
3917 3918
}

3919 3920 3921 3922
/*
 * Suspend is set to indicate "Stop Endpoint Command" is being issued to stop
 * activity on an endpoint that is about to be suspended.
 */
3923 3924
int xhci_queue_stop_endpoint(struct xhci_hcd *xhci, struct xhci_command *cmd,
			     int slot_id, unsigned int ep_index, int suspend)
3925 3926 3927 3928
{
	u32 trb_slot_id = SLOT_ID_FOR_TRB(slot_id);
	u32 trb_ep_index = EP_ID_FOR_TRB(ep_index);
	u32 type = TRB_TYPE(TRB_STOP_RING);
3929
	u32 trb_suspend = SUSPEND_PORT_FOR_TRB(suspend);
3930

3931
	return queue_command(xhci, cmd, 0, 0, 0,
3932
			trb_slot_id | trb_ep_index | type | trb_suspend, false);
3933 3934
}

3935 3936 3937 3938
/* Set Transfer Ring Dequeue Pointer command */
void xhci_queue_new_dequeue_state(struct xhci_hcd *xhci,
		unsigned int slot_id, unsigned int ep_index,
		struct xhci_dequeue_state *deq_state)
3939 3940 3941 3942
{
	dma_addr_t addr;
	u32 trb_slot_id = SLOT_ID_FOR_TRB(slot_id);
	u32 trb_ep_index = EP_ID_FOR_TRB(ep_index);
3943
	u32 trb_stream_id = STREAM_ID_FOR_TRB(deq_state->stream_id);
3944
	u32 trb_sct = 0;
3945
	u32 type = TRB_TYPE(TRB_SET_DEQ);
3946
	struct xhci_virt_ep *ep;
3947 3948
	struct xhci_command *cmd;
	int ret;
3949

3950 3951 3952 3953 3954 3955 3956 3957 3958 3959 3960
	xhci_dbg_trace(xhci, trace_xhci_dbg_cancel_urb,
		"Set TR Deq Ptr cmd, new deq seg = %p (0x%llx dma), new deq ptr = %p (0x%llx dma), new cycle = %u",
		deq_state->new_deq_seg,
		(unsigned long long)deq_state->new_deq_seg->dma,
		deq_state->new_deq_ptr,
		(unsigned long long)xhci_trb_virt_to_dma(
			deq_state->new_deq_seg, deq_state->new_deq_ptr),
		deq_state->new_cycle_state);

	addr = xhci_trb_virt_to_dma(deq_state->new_deq_seg,
				    deq_state->new_deq_ptr);
3961
	if (addr == 0) {
3962
		xhci_warn(xhci, "WARN Cannot submit Set TR Deq Ptr\n");
3963
		xhci_warn(xhci, "WARN deq seg = %p, deq pt = %p\n",
3964 3965
			  deq_state->new_deq_seg, deq_state->new_deq_ptr);
		return;
3966
	}
3967 3968 3969 3970
	ep = &xhci->devs[slot_id]->eps[ep_index];
	if ((ep->ep_state & SET_DEQ_PENDING)) {
		xhci_warn(xhci, "WARN Cannot submit Set TR Deq Ptr\n");
		xhci_warn(xhci, "A Set TR Deq Ptr command is pending.\n");
3971
		return;
3972
	}
3973 3974

	/* This function gets called from contexts where it cannot sleep */
3975
	cmd = xhci_alloc_command(xhci, false, GFP_ATOMIC);
3976
	if (!cmd)
3977
		return;
3978

3979 3980
	ep->queued_deq_seg = deq_state->new_deq_seg;
	ep->queued_deq_ptr = deq_state->new_deq_ptr;
3981
	if (deq_state->stream_id)
3982
		trb_sct = SCT_FOR_TRB(SCT_PRI_TR);
3983
	ret = queue_command(xhci, cmd,
3984 3985 3986
		lower_32_bits(addr) | trb_sct | deq_state->new_cycle_state,
		upper_32_bits(addr), trb_stream_id,
		trb_slot_id | trb_ep_index | type, false);
3987 3988
	if (ret < 0) {
		xhci_free_command(xhci, cmd);
3989
		return;
3990 3991
	}

3992 3993 3994 3995 3996 3997
	/* Stop the TD queueing code from ringing the doorbell until
	 * this command completes.  The HC won't set the dequeue pointer
	 * if the ring is running, and ringing the doorbell starts the
	 * ring running.
	 */
	ep->ep_state |= SET_DEQ_PENDING;
3998
}
3999

4000
int xhci_queue_reset_ep(struct xhci_hcd *xhci, struct xhci_command *cmd,
4001 4002
			int slot_id, unsigned int ep_index,
			enum xhci_ep_reset_type reset_type)
4003 4004 4005 4006 4007
{
	u32 trb_slot_id = SLOT_ID_FOR_TRB(slot_id);
	u32 trb_ep_index = EP_ID_FOR_TRB(ep_index);
	u32 type = TRB_TYPE(TRB_RESET_EP);

4008 4009 4010
	if (reset_type == EP_SOFT_RESET)
		type |= TRB_TSP;

4011 4012
	return queue_command(xhci, cmd, 0, 0, 0,
			trb_slot_id | trb_ep_index | type, false);
4013
}