ehci-hcd.c 33.3 KB
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/*
 * Copyright (c) 2000-2004 by David Brownell
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 *
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 * This program is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License as published by the
 * Free Software Foundation; either version 2 of the License, or (at your
 * option) any later version.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
 * or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software Foundation,
 * Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
 */

#include <linux/module.h>
#include <linux/pci.h>
#include <linux/dmapool.h>
#include <linux/kernel.h>
#include <linux/delay.h>
#include <linux/ioport.h>
#include <linux/sched.h>
#include <linux/slab.h>
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#include <linux/vmalloc.h>
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#include <linux/errno.h>
#include <linux/init.h>
#include <linux/timer.h>
#include <linux/list.h>
#include <linux/interrupt.h>
#include <linux/reboot.h>
#include <linux/usb.h>
#include <linux/moduleparam.h>
#include <linux/dma-mapping.h>
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#include <linux/debugfs.h>
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#include "../core/hcd.h"

#include <asm/byteorder.h>
#include <asm/io.h>
#include <asm/irq.h>
#include <asm/system.h>
#include <asm/unaligned.h>

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

/*
 * EHCI hc_driver implementation ... experimental, incomplete.
 * Based on the final 1.0 register interface specification.
 *
 * USB 2.0 shows up in upcoming www.pcmcia.org technology.
 * First was PCMCIA, like ISA; then CardBus, which is PCI.
 * Next comes "CardBay", using USB 2.0 signals.
 *
 * Contains additional contributions by Brad Hards, Rory Bolt, and others.
 * Special thanks to Intel and VIA for providing host controllers to
 * test this driver on, and Cypress (including In-System Design) for
 * providing early devices for those host controllers to talk to!
 */

#define DRIVER_AUTHOR "David Brownell"
#define DRIVER_DESC "USB 2.0 'Enhanced' Host Controller (EHCI) Driver"

static const char	hcd_name [] = "ehci_hcd";


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#undef VERBOSE_DEBUG
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#undef EHCI_URB_TRACE

#ifdef DEBUG
#define EHCI_STATS
#endif

/* magic numbers that can affect system performance */
#define	EHCI_TUNE_CERR		3	/* 0-3 qtd retries; 0 == don't stop */
#define	EHCI_TUNE_RL_HS		4	/* nak throttle; see 4.9 */
#define	EHCI_TUNE_RL_TT		0
#define	EHCI_TUNE_MULT_HS	1	/* 1-3 transactions/uframe; 4.10.3 */
#define	EHCI_TUNE_MULT_TT	1
#define	EHCI_TUNE_FLS		2	/* (small) 256 frame schedule */

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#define EHCI_IAA_MSECS		10		/* arbitrary */
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#define EHCI_IO_JIFFIES		(HZ/10)		/* io watchdog > irq_thresh */
#define EHCI_ASYNC_JIFFIES	(HZ/20)		/* async idle timeout */
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#define EHCI_SHRINK_FRAMES	5		/* async qh unlink delay */
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/* Initial IRQ latency:  faster than hw default */
static int log2_irq_thresh = 0;		// 0 to 6
module_param (log2_irq_thresh, int, S_IRUGO);
MODULE_PARM_DESC (log2_irq_thresh, "log2 IRQ latency, 1-64 microframes");

/* initial park setting:  slower than hw default */
static unsigned park = 0;
module_param (park, uint, S_IRUGO);
MODULE_PARM_DESC (park, "park setting; 1-3 back-to-back async packets");

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/* for flakey hardware, ignore overcurrent indicators */
static int ignore_oc = 0;
module_param (ignore_oc, bool, S_IRUGO);
MODULE_PARM_DESC (ignore_oc, "ignore bogus hardware overcurrent indications");

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#define	INTR_MASK (STS_IAA | STS_FATAL | STS_PCD | STS_ERR | STS_INT)

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

#include "ehci.h"
#include "ehci-dbg.c"

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

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static void
timer_action(struct ehci_hcd *ehci, enum ehci_timer_action action)
{
	/* Don't override timeouts which shrink or (later) disable
	 * the async ring; just the I/O watchdog.  Note that if a
	 * SHRINK were pending, OFF would never be requested.
	 */
	if (timer_pending(&ehci->watchdog)
			&& ((BIT(TIMER_ASYNC_SHRINK) | BIT(TIMER_ASYNC_OFF))
				& ehci->actions))
		return;

	if (!test_and_set_bit(action, &ehci->actions)) {
		unsigned long t;

		switch (action) {
		case TIMER_IO_WATCHDOG:
			t = EHCI_IO_JIFFIES;
			break;
		case TIMER_ASYNC_OFF:
			t = EHCI_ASYNC_JIFFIES;
			break;
		/* case TIMER_ASYNC_SHRINK: */
		default:
			/* add a jiffie since we synch against the
			 * 8 KHz uframe counter.
			 */
			t = DIV_ROUND_UP(EHCI_SHRINK_FRAMES * HZ, 1000) + 1;
			break;
		}
		mod_timer(&ehci->watchdog, t + jiffies);
	}
}

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

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/*
 * handshake - spin reading hc until handshake completes or fails
 * @ptr: address of hc register to be read
 * @mask: bits to look at in result of read
 * @done: value of those bits when handshake succeeds
 * @usec: timeout in microseconds
 *
 * Returns negative errno, or zero on success
 *
 * Success happens when the "mask" bits have the specified value (hardware
 * handshake done).  There are two failure modes:  "usec" have passed (major
 * hardware flakeout), or the register reads as all-ones (hardware removed).
 *
 * That last failure should_only happen in cases like physical cardbus eject
 * before driver shutdown. But it also seems to be caused by bugs in cardbus
 * bridge shutdown:  shutting down the bridge before the devices using it.
 */
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static int handshake (struct ehci_hcd *ehci, void __iomem *ptr,
		      u32 mask, u32 done, int usec)
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{
	u32	result;

	do {
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		result = ehci_readl(ehci, ptr);
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		if (result == ~(u32)0)		/* card removed */
			return -ENODEV;
		result &= mask;
		if (result == done)
			return 0;
		udelay (1);
		usec--;
	} while (usec > 0);
	return -ETIMEDOUT;
}

/* force HC to halt state from unknown (EHCI spec section 2.3) */
static int ehci_halt (struct ehci_hcd *ehci)
{
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	u32	temp = ehci_readl(ehci, &ehci->regs->status);
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	/* disable any irqs left enabled by previous code */
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	ehci_writel(ehci, 0, &ehci->regs->intr_enable);
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	if ((temp & STS_HALT) != 0)
		return 0;

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	temp = ehci_readl(ehci, &ehci->regs->command);
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	temp &= ~CMD_RUN;
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	ehci_writel(ehci, temp, &ehci->regs->command);
	return handshake (ehci, &ehci->regs->status,
			  STS_HALT, STS_HALT, 16 * 125);
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}

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static int handshake_on_error_set_halt(struct ehci_hcd *ehci, void __iomem *ptr,
				       u32 mask, u32 done, int usec)
{
	int error;

	error = handshake(ehci, ptr, mask, done, usec);
	if (error) {
		ehci_halt(ehci);
		ehci_to_hcd(ehci)->state = HC_STATE_HALT;
		ehci_err(ehci, "force halt; handhake %p %08x %08x -> %d\n",
			ptr, mask, done, error);
	}

	return error;
}

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/* put TDI/ARC silicon into EHCI mode */
static void tdi_reset (struct ehci_hcd *ehci)
{
	u32 __iomem	*reg_ptr;
	u32		tmp;

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	reg_ptr = (u32 __iomem *)(((u8 __iomem *)ehci->regs) + USBMODE);
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	tmp = ehci_readl(ehci, reg_ptr);
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	tmp |= USBMODE_CM_HC;
	/* The default byte access to MMR space is LE after
	 * controller reset. Set the required endian mode
	 * for transfer buffers to match the host microprocessor
	 */
	if (ehci_big_endian_mmio(ehci))
		tmp |= USBMODE_BE;
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	ehci_writel(ehci, tmp, reg_ptr);
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}

/* reset a non-running (STS_HALT == 1) controller */
static int ehci_reset (struct ehci_hcd *ehci)
{
	int	retval;
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	u32	command = ehci_readl(ehci, &ehci->regs->command);
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	command |= CMD_RESET;
	dbg_cmd (ehci, "reset", command);
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	ehci_writel(ehci, command, &ehci->regs->command);
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	ehci_to_hcd(ehci)->state = HC_STATE_HALT;
	ehci->next_statechange = jiffies;
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	retval = handshake (ehci, &ehci->regs->command,
			    CMD_RESET, 0, 250 * 1000);
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	if (retval)
		return retval;

	if (ehci_is_TDI(ehci))
		tdi_reset (ehci);

	return retval;
}

/* idle the controller (from running) */
static void ehci_quiesce (struct ehci_hcd *ehci)
{
	u32	temp;

#ifdef DEBUG
	if (!HC_IS_RUNNING (ehci_to_hcd(ehci)->state))
		BUG ();
#endif

	/* wait for any schedule enables/disables to take effect */
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	temp = ehci_readl(ehci, &ehci->regs->command) << 10;
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	temp &= STS_ASS | STS_PSS;
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	if (handshake_on_error_set_halt(ehci, &ehci->regs->status,
					STS_ASS | STS_PSS, temp, 16 * 125))
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		return;

	/* then disable anything that's still active */
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	temp = ehci_readl(ehci, &ehci->regs->command);
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	temp &= ~(CMD_ASE | CMD_IAAD | CMD_PSE);
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	ehci_writel(ehci, temp, &ehci->regs->command);
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	/* hardware can take 16 microframes to turn off ... */
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	handshake_on_error_set_halt(ehci, &ehci->regs->status,
				    STS_ASS | STS_PSS, 0, 16 * 125);
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}

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

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static void end_unlink_async(struct ehci_hcd *ehci);
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static void ehci_work(struct ehci_hcd *ehci);
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#include "ehci-hub.c"
#include "ehci-mem.c"
#include "ehci-q.c"
#include "ehci-sched.c"

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

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static void ehci_iaa_watchdog(unsigned long param)
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{
	struct ehci_hcd		*ehci = (struct ehci_hcd *) param;
	unsigned long		flags;

	spin_lock_irqsave (&ehci->lock, flags);

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	/* Lost IAA irqs wedge things badly; seen first with a vt8235.
	 * So we need this watchdog, but must protect it against both
	 * (a) SMP races against real IAA firing and retriggering, and
	 * (b) clean HC shutdown, when IAA watchdog was pending.
	 */
	if (ehci->reclaim
			&& !timer_pending(&ehci->iaa_watchdog)
			&& HC_IS_RUNNING(ehci_to_hcd(ehci)->state)) {
		u32 cmd, status;

		/* If we get here, IAA is *REALLY* late.  It's barely
		 * conceivable that the system is so busy that CMD_IAAD
		 * is still legitimately set, so let's be sure it's
		 * clear before we read STS_IAA.  (The HC should clear
		 * CMD_IAAD when it sets STS_IAA.)
		 */
		cmd = ehci_readl(ehci, &ehci->regs->command);
		if (cmd & CMD_IAAD)
			ehci_writel(ehci, cmd & ~CMD_IAAD,
					&ehci->regs->command);

		/* If IAA is set here it either legitimately triggered
		 * before we cleared IAAD above (but _way_ late, so we'll
		 * still count it as lost) ... or a silicon erratum:
		 * - VIA seems to set IAA without triggering the IRQ;
		 * - IAAD potentially cleared without setting IAA.
		 */
		status = ehci_readl(ehci, &ehci->regs->status);
		if ((status & STS_IAA) || !(cmd & CMD_IAAD)) {
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			COUNT (ehci->stats.lost_iaa);
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			ehci_writel(ehci, STS_IAA, &ehci->regs->status);
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		}
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		ehci_vdbg(ehci, "IAA watchdog: status %x cmd %x\n",
				status, cmd);
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		end_unlink_async(ehci);
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	}

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

static void ehci_watchdog(unsigned long param)
{
	struct ehci_hcd		*ehci = (struct ehci_hcd *) param;
	unsigned long		flags;

	spin_lock_irqsave(&ehci->lock, flags);

	/* stop async processing after it's idled a bit */
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	if (test_bit (TIMER_ASYNC_OFF, &ehci->actions))
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		start_unlink_async (ehci, ehci->async);
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	/* ehci could run by timer, without IRQs ... */
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	ehci_work (ehci);
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	spin_unlock_irqrestore (&ehci->lock, flags);
}

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/* On some systems, leaving remote wakeup enabled prevents system shutdown.
 * The firmware seems to think that powering off is a wakeup event!
 * This routine turns off remote wakeup and everything else, on all ports.
 */
static void ehci_turn_off_all_ports(struct ehci_hcd *ehci)
{
	int	port = HCS_N_PORTS(ehci->hcs_params);

	while (port--)
		ehci_writel(ehci, PORT_RWC_BITS,
				&ehci->regs->port_status[port]);
}

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/*
 * Halt HC, turn off all ports, and let the BIOS use the companion controllers.
 * Should be called with ehci->lock held.
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 */
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static void ehci_silence_controller(struct ehci_hcd *ehci)
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{
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	ehci_halt(ehci);
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	ehci_turn_off_all_ports(ehci);
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	/* make BIOS/etc use companion controller during reboot */
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	ehci_writel(ehci, 0, &ehci->regs->configured_flag);
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	/* unblock posted writes */
	ehci_readl(ehci, &ehci->regs->configured_flag);
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}

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/* ehci_shutdown kick in for silicon on any bus (not just pci, etc).
 * This forcibly disables dma and IRQs, helping kexec and other cases
 * where the next system software may expect clean state.
 */
static void ehci_shutdown(struct usb_hcd *hcd)
{
	struct ehci_hcd	*ehci = hcd_to_ehci(hcd);

	del_timer_sync(&ehci->watchdog);
	del_timer_sync(&ehci->iaa_watchdog);

	spin_lock_irq(&ehci->lock);
	ehci_silence_controller(ehci);
	spin_unlock_irq(&ehci->lock);
}

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static void ehci_port_power (struct ehci_hcd *ehci, int is_on)
{
	unsigned port;

	if (!HCS_PPC (ehci->hcs_params))
		return;

	ehci_dbg (ehci, "...power%s ports...\n", is_on ? "up" : "down");
	for (port = HCS_N_PORTS (ehci->hcs_params); port > 0; )
		(void) ehci_hub_control(ehci_to_hcd(ehci),
				is_on ? SetPortFeature : ClearPortFeature,
				USB_PORT_FEAT_POWER,
				port--, NULL, 0);
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	/* Flush those writes */
	ehci_readl(ehci, &ehci->regs->command);
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	msleep(20);
}

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/*-------------------------------------------------------------------------*/
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/*
 * ehci_work is called from some interrupts, timers, and so on.
 * it calls driver completion functions, after dropping ehci->lock.
 */
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static void ehci_work (struct ehci_hcd *ehci)
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{
	timer_action_done (ehci, TIMER_IO_WATCHDOG);

	/* another CPU may drop ehci->lock during a schedule scan while
	 * it reports urb completions.  this flag guards against bogus
	 * attempts at re-entrant schedule scanning.
	 */
	if (ehci->scanning)
		return;
	ehci->scanning = 1;
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	scan_async (ehci);
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	if (ehci->next_uframe != -1)
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		scan_periodic (ehci);
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	ehci->scanning = 0;

	/* the IO watchdog guards against hardware or driver bugs that
	 * misplace IRQs, and should let us run completely without IRQs.
	 * such lossage has been observed on both VT6202 and VT8235.
	 */
	if (HC_IS_RUNNING (ehci_to_hcd(ehci)->state) &&
			(ehci->async->qh_next.ptr != NULL ||
			 ehci->periodic_sched != 0))
		timer_action (ehci, TIMER_IO_WATCHDOG);
}
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/*
 * Called when the ehci_hcd module is removed.
 */
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static void ehci_stop (struct usb_hcd *hcd)
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{
	struct ehci_hcd		*ehci = hcd_to_ehci (hcd);

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	ehci_dbg (ehci, "stop\n");
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	/* no more interrupts ... */
	del_timer_sync (&ehci->watchdog);
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	del_timer_sync(&ehci->iaa_watchdog);
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	spin_lock_irq(&ehci->lock);
	if (HC_IS_RUNNING (hcd->state))
		ehci_quiesce (ehci);
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	ehci_silence_controller(ehci);
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	ehci_reset (ehci);
	spin_unlock_irq(&ehci->lock);
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	remove_companion_file(ehci);
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	remove_debug_files (ehci);
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	/* root hub is shut down separately (first, when possible) */
	spin_lock_irq (&ehci->lock);
	if (ehci->async)
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		ehci_work (ehci);
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	spin_unlock_irq (&ehci->lock);
	ehci_mem_cleanup (ehci);
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#ifdef	EHCI_STATS
	ehci_dbg (ehci, "irq normal %ld err %ld reclaim %ld (lost %ld)\n",
		ehci->stats.normal, ehci->stats.error, ehci->stats.reclaim,
		ehci->stats.lost_iaa);
	ehci_dbg (ehci, "complete %ld unlink %ld\n",
		ehci->stats.complete, ehci->stats.unlink);
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#endif

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	dbg_status (ehci, "ehci_stop completed",
		    ehci_readl(ehci, &ehci->regs->status));
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}

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/* one-time init, only for memory state */
static int ehci_init(struct usb_hcd *hcd)
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{
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	struct ehci_hcd		*ehci = hcd_to_ehci(hcd);
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	u32			temp;
	int			retval;
	u32			hcc_params;
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	spin_lock_init(&ehci->lock);

	init_timer(&ehci->watchdog);
	ehci->watchdog.function = ehci_watchdog;
	ehci->watchdog.data = (unsigned long) ehci;
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	init_timer(&ehci->iaa_watchdog);
	ehci->iaa_watchdog.function = ehci_iaa_watchdog;
	ehci->iaa_watchdog.data = (unsigned long) ehci;

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	/*
	 * hw default: 1K periodic list heads, one per frame.
	 * periodic_size can shrink by USBCMD update if hcc_params allows.
	 */
	ehci->periodic_size = DEFAULT_I_TDPS;
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	INIT_LIST_HEAD(&ehci->cached_itd_list);
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	if ((retval = ehci_mem_init(ehci, GFP_KERNEL)) < 0)
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		return retval;

	/* controllers may cache some of the periodic schedule ... */
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	hcc_params = ehci_readl(ehci, &ehci->caps->hcc_params);
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	if (HCC_ISOC_CACHE(hcc_params))		// full frame cache
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		ehci->i_thresh = 8;
	else					// N microframes cached
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		ehci->i_thresh = 2 + HCC_ISOC_THRES(hcc_params);
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	ehci->reclaim = NULL;
	ehci->next_uframe = -1;
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	ehci->clock_frame = -1;
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	/*
	 * dedicate a qh for the async ring head, since we couldn't unlink
	 * a 'real' qh without stopping the async schedule [4.8].  use it
	 * as the 'reclamation list head' too.
	 * its dummy is used in hw_alt_next of many tds, to prevent the qh
	 * from automatically advancing to the next td after short reads.
	 */
546
	ehci->async->qh_next.qh = NULL;
547 548 549 550
	ehci->async->hw_next = QH_NEXT(ehci, ehci->async->qh_dma);
	ehci->async->hw_info1 = cpu_to_hc32(ehci, QH_HEAD);
	ehci->async->hw_token = cpu_to_hc32(ehci, QTD_STS_HALT);
	ehci->async->hw_qtd_next = EHCI_LIST_END(ehci);
551
	ehci->async->qh_state = QH_STATE_LINKED;
552
	ehci->async->hw_alt_next = QTD_NEXT(ehci, ehci->async->dummy->qtd_dma);
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	/* clear interrupt enables, set irq latency */
	if (log2_irq_thresh < 0 || log2_irq_thresh > 6)
		log2_irq_thresh = 0;
	temp = 1 << (16 + log2_irq_thresh);
	if (HCC_CANPARK(hcc_params)) {
		/* HW default park == 3, on hardware that supports it (like
		 * NVidia and ALI silicon), maximizes throughput on the async
		 * schedule by avoiding QH fetches between transfers.
		 *
		 * With fast usb storage devices and NForce2, "park" seems to
		 * make problems:  throughput reduction (!), data errors...
		 */
		if (park) {
567
			park = min(park, (unsigned) 3);
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			temp |= CMD_PARK;
			temp |= park << 8;
		}
571
		ehci_dbg(ehci, "park %d\n", park);
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	}
573
	if (HCC_PGM_FRAMELISTLEN(hcc_params)) {
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		/* periodic schedule size can be smaller than default */
		temp &= ~(3 << 2);
		temp |= (EHCI_TUNE_FLS << 2);
		switch (EHCI_TUNE_FLS) {
		case 0: ehci->periodic_size = 1024; break;
		case 1: ehci->periodic_size = 512; break;
		case 2: ehci->periodic_size = 256; break;
581
		default:	BUG();
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		}
	}
584 585 586 587 588 589 590 591 592 593 594 595 596
	ehci->command = temp;

	return 0;
}

/* start HC running; it's halted, ehci_init() has been run (once) */
static int ehci_run (struct usb_hcd *hcd)
{
	struct ehci_hcd		*ehci = hcd_to_ehci (hcd);
	int			retval;
	u32			temp;
	u32			hcc_params;

597 598 599
	hcd->uses_new_polling = 1;
	hcd->poll_rh = 0;

600 601 602 603 604
	/* EHCI spec section 4.1 */
	if ((retval = ehci_reset(ehci)) != 0) {
		ehci_mem_cleanup(ehci);
		return retval;
	}
605 606
	ehci_writel(ehci, ehci->periodic_dma, &ehci->regs->frame_list);
	ehci_writel(ehci, (u32)ehci->async->qh_dma, &ehci->regs->async_next);
607 608 609 610 611 612 613 614 615 616 617 618 619

	/*
	 * hcc_params controls whether ehci->regs->segment must (!!!)
	 * be used; it constrains QH/ITD/SITD and QTD locations.
	 * pci_pool consistent memory always uses segment zero.
	 * streaming mappings for I/O buffers, like pci_map_single(),
	 * can return segments above 4GB, if the device allows.
	 *
	 * NOTE:  the dma mask is visible through dma_supported(), so
	 * drivers can pass this info along ... like NETIF_F_HIGHDMA,
	 * Scsi_Host.highmem_io, and so forth.  It's readonly to all
	 * host side drivers though.
	 */
620
	hcc_params = ehci_readl(ehci, &ehci->caps->hcc_params);
621
	if (HCC_64BIT_ADDR(hcc_params)) {
622
		ehci_writel(ehci, 0, &ehci->regs->segment);
623 624
#if 0
// this is deeply broken on almost all architectures
625
		if (!dma_set_mask(hcd->self.controller, DMA_BIT_MASK(64)))
626 627 628 629 630
			ehci_info(ehci, "enabled 64bit DMA\n");
#endif
	}


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	// Philips, Intel, and maybe others need CMD_RUN before the
	// root hub will detect new devices (why?); NEC doesn't
633 634
	ehci->command &= ~(CMD_LRESET|CMD_IAAD|CMD_PSE|CMD_ASE|CMD_RESET);
	ehci->command |= CMD_RUN;
635
	ehci_writel(ehci, ehci->command, &ehci->regs->command);
636
	dbg_cmd (ehci, "init", ehci->command);
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	/*
	 * Start, enabling full USB 2.0 functionality ... usb 1.1 devices
	 * are explicitly handed to companion controller(s), so no TT is
	 * involved with the root hub.  (Except where one is integrated,
	 * and there's no companion controller unless maybe for USB OTG.)
643 644 645 646 647
	 *
	 * Turning on the CF flag will transfer ownership of all ports
	 * from the companions to the EHCI controller.  If any of the
	 * companions are in the middle of a port reset at the time, it
	 * could cause trouble.  Write-locking ehci_cf_port_reset_rwsem
648 649 650
	 * guarantees that no resets are in progress.  After we set CF,
	 * a short delay lets the hardware catch up; new resets shouldn't
	 * be started before the port switching actions could complete.
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	 */
652
	down_write(&ehci_cf_port_reset_rwsem);
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	hcd->state = HC_STATE_RUNNING;
654 655
	ehci_writel(ehci, FLAG_CF, &ehci->regs->configured_flag);
	ehci_readl(ehci, &ehci->regs->command);	/* unblock posted writes */
656
	msleep(5);
657
	up_write(&ehci_cf_port_reset_rwsem);
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658

659
	temp = HC_VERSION(ehci_readl(ehci, &ehci->caps->hc_capbase));
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	ehci_info (ehci,
661
		"USB %x.%x started, EHCI %x.%02x%s\n",
M
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662
		((ehci->sbrn & 0xf0)>>4), (ehci->sbrn & 0x0f),
663
		temp >> 8, temp & 0xff,
664
		ignore_oc ? ", overcurrent ignored" : "");
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666 667
	ehci_writel(ehci, INTR_MASK,
		    &ehci->regs->intr_enable); /* Turn On Interrupts */
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669 670 671 672 673
	/* GRR this is run-once init(), being done every time the HC starts.
	 * So long as they're part of class devices, we can't do it init()
	 * since the class device isn't created that early.
	 */
	create_debug_files(ehci);
674
	create_companion_file(ehci);
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	return 0;
}

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

681
static irqreturn_t ehci_irq (struct usb_hcd *hcd)
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{
	struct ehci_hcd		*ehci = hcd_to_ehci (hcd);
684
	u32			status, masked_status, pcd_status = 0, cmd;
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	int			bh;

	spin_lock (&ehci->lock);

689
	status = ehci_readl(ehci, &ehci->regs->status);
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	/* e.g. cardbus physical eject */
	if (status == ~(u32) 0) {
		ehci_dbg (ehci, "device removed\n");
		goto dead;
	}

697 698
	masked_status = status & INTR_MASK;
	if (!masked_status) {		/* irq sharing? */
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		spin_unlock(&ehci->lock);
		return IRQ_NONE;
	}

	/* clear (just) interrupts */
704
	ehci_writel(ehci, masked_status, &ehci->regs->status);
705
	cmd = ehci_readl(ehci, &ehci->regs->command);
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	bh = 0;

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708
#ifdef	VERBOSE_DEBUG
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	/* unrequested/ignored: Frame List Rollover */
	dbg_status (ehci, "irq", status);
#endif

	/* INT, ERR, and IAA interrupt rates can be throttled */

	/* normal [4.15.1.2] or error [4.15.1.1] completion */
	if (likely ((status & (STS_INT|STS_ERR)) != 0)) {
		if (likely ((status & STS_ERR) == 0))
			COUNT (ehci->stats.normal);
		else
			COUNT (ehci->stats.error);
		bh = 1;
	}

	/* complete the unlinking of some qh [4.15.2.3] */
	if (status & STS_IAA) {
726 727 728 729 730 731 732 733 734 735 736
		/* guard against (alleged) silicon errata */
		if (cmd & CMD_IAAD) {
			ehci_writel(ehci, cmd & ~CMD_IAAD,
					&ehci->regs->command);
			ehci_dbg(ehci, "IAA with IAAD still set?\n");
		}
		if (ehci->reclaim) {
			COUNT(ehci->stats.reclaim);
			end_unlink_async(ehci);
		} else
			ehci_dbg(ehci, "IAA with nothing to reclaim?\n");
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	}

	/* remote wakeup [4.3.1] */
740
	if (status & STS_PCD) {
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		unsigned	i = HCS_N_PORTS (ehci->hcs_params);
742 743

		/* kick root hub later */
744
		pcd_status = status;
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		/* resume root hub? */
747
		if (!(cmd & CMD_RUN))
748
			usb_hcd_resume_root_hub(hcd);
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		while (i--) {
751 752
			int pstatus = ehci_readl(ehci,
						 &ehci->regs->port_status [i]);
753 754

			if (pstatus & PORT_OWNER)
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				continue;
756 757 758 759 760
			if (!(test_bit(i, &ehci->suspended_ports) &&
					((pstatus & PORT_RESUME) ||
						!(pstatus & PORT_SUSPEND)) &&
					(pstatus & PORT_PE) &&
					ehci->reset_done[i] == 0))
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				continue;

			/* start 20 msec resume signaling from this port,
			 * and make khubd collect PORT_STAT_C_SUSPEND to
			 * stop that signaling.
			 */
			ehci->reset_done [i] = jiffies + msecs_to_jiffies (20);
			ehci_dbg (ehci, "port %d remote wakeup\n", i + 1);
769
			mod_timer(&hcd->rh_timer, ehci->reset_done[i]);
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		}
	}

	/* PCI errors [4.15.2.4] */
	if (unlikely ((status & STS_FATAL) != 0)) {
775
		ehci_err(ehci, "fatal error\n");
776 777
		dbg_cmd(ehci, "fatal", cmd);
		dbg_status(ehci, "fatal", status);
778
		ehci_halt(ehci);
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dead:
780 781 782 783 784 785
		ehci_reset(ehci);
		ehci_writel(ehci, 0, &ehci->regs->configured_flag);
		/* generic layer kills/unlinks all urbs, then
		 * uses ehci_stop to clean up the rest
		 */
		bh = 1;
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	}

	if (bh)
789
		ehci_work (ehci);
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	spin_unlock (&ehci->lock);
791
	if (pcd_status)
792
		usb_hcd_poll_rh_status(hcd);
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	return IRQ_HANDLED;
}

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

/*
 * non-error returns are a promise to giveback() the urb later
 * we drop ownership so next owner (or urb unlink) can get it
 *
 * urb + dev is in hcd.self.controller.urb_list
 * we're queueing TDs onto software and hardware lists
 *
 * hcd-specific init for hcpriv hasn't been done yet
 *
 * NOTE:  control, bulk, and interrupt share the same code to append TDs
 * to a (possibly active) QH, and the same QH scanning code.
 */
static int ehci_urb_enqueue (
	struct usb_hcd	*hcd,
	struct urb	*urb,
A
Al Viro 已提交
813
	gfp_t		mem_flags
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) {
	struct ehci_hcd		*ehci = hcd_to_ehci (hcd);
	struct list_head	qtd_list;

	INIT_LIST_HEAD (&qtd_list);

	switch (usb_pipetype (urb->pipe)) {
821 822 823 824 825 826 827 828
	case PIPE_CONTROL:
		/* qh_completions() code doesn't handle all the fault cases
		 * in multi-TD control transfers.  Even 1KB is rare anyway.
		 */
		if (urb->transfer_buffer_length > (16 * 1024))
			return -EMSGSIZE;
		/* FALLTHROUGH */
	/* case PIPE_BULK: */
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	default:
		if (!qh_urb_transaction (ehci, urb, &qtd_list, mem_flags))
			return -ENOMEM;
832
		return submit_async(ehci, urb, &qtd_list, mem_flags);
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833 834 835 836

	case PIPE_INTERRUPT:
		if (!qh_urb_transaction (ehci, urb, &qtd_list, mem_flags))
			return -ENOMEM;
837
		return intr_submit(ehci, urb, &qtd_list, mem_flags);
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838 839 840 841 842 843 844 845 846 847 848

	case PIPE_ISOCHRONOUS:
		if (urb->dev->speed == USB_SPEED_HIGH)
			return itd_submit (ehci, urb, mem_flags);
		else
			return sitd_submit (ehci, urb, mem_flags);
	}
}

static void unlink_async (struct ehci_hcd *ehci, struct ehci_qh *qh)
{
849
	/* failfast */
850
	if (!HC_IS_RUNNING(ehci_to_hcd(ehci)->state) && ehci->reclaim)
851 852 853 854 855 856 857 858
		end_unlink_async(ehci);

	/* if it's not linked then there's nothing to do */
	if (qh->qh_state != QH_STATE_LINKED)
		;

	/* defer till later if busy */
	else if (ehci->reclaim) {
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		struct ehci_qh		*last;

		for (last = ehci->reclaim;
				last->reclaim;
				last = last->reclaim)
			continue;
		qh->qh_state = QH_STATE_UNLINK_WAIT;
		last->reclaim = qh;

868 869
	/* start IAA cycle */
	} else
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870 871 872 873 874 875 876
		start_unlink_async (ehci, qh);
}

/* remove from hardware lists
 * completions normally happen asynchronously
 */

877
static int ehci_urb_dequeue(struct usb_hcd *hcd, struct urb *urb, int status)
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878 879 880 881
{
	struct ehci_hcd		*ehci = hcd_to_ehci (hcd);
	struct ehci_qh		*qh;
	unsigned long		flags;
882
	int			rc;
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	spin_lock_irqsave (&ehci->lock, flags);
885 886 887 888
	rc = usb_hcd_check_unlink_urb(hcd, urb, status);
	if (rc)
		goto done;

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	switch (usb_pipetype (urb->pipe)) {
	// case PIPE_CONTROL:
	// case PIPE_BULK:
	default:
		qh = (struct ehci_qh *) urb->hcpriv;
		if (!qh)
			break;
896 897 898 899 900 901 902 903 904 905
		switch (qh->qh_state) {
		case QH_STATE_LINKED:
		case QH_STATE_COMPLETING:
			unlink_async(ehci, qh);
			break;
		case QH_STATE_UNLINK:
		case QH_STATE_UNLINK_WAIT:
			/* already started */
			break;
		case QH_STATE_IDLE:
906 907
			/* QH might be waiting for a Clear-TT-Buffer */
			qh_completions(ehci, qh);
908 909
			break;
		}
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		break;

	case PIPE_INTERRUPT:
		qh = (struct ehci_qh *) urb->hcpriv;
		if (!qh)
			break;
		switch (qh->qh_state) {
		case QH_STATE_LINKED:
			intr_deschedule (ehci, qh);
			/* FALL THROUGH */
		case QH_STATE_IDLE:
921
			qh_completions (ehci, qh);
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			break;
		default:
			ehci_dbg (ehci, "bogus qh %p state %d\n",
					qh, qh->qh_state);
			goto done;
		}

		/* reschedule QH iff another request is queued */
		if (!list_empty (&qh->qtd_list)
				&& HC_IS_RUNNING (hcd->state)) {
932 933 934 935 936 937 938 939 940 941 942 943
			rc = qh_schedule(ehci, qh);

			/* An error here likely indicates handshake failure
			 * or no space left in the schedule.  Neither fault
			 * should happen often ...
			 *
			 * FIXME kill the now-dysfunctional queued urbs
			 */
			if (rc != 0)
				ehci_err(ehci,
					"can't reschedule qh %p, err %d",
					qh, rc);
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944 945 946 947 948 949 950 951 952 953 954 955
		}
		break;

	case PIPE_ISOCHRONOUS:
		// itd or sitd ...

		// wait till next completion, do it then.
		// completion irqs can wait up to 1024 msec,
		break;
	}
done:
	spin_unlock_irqrestore (&ehci->lock, flags);
956
	return rc;
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957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000
}

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

// bulk qh holds the data toggle

static void
ehci_endpoint_disable (struct usb_hcd *hcd, struct usb_host_endpoint *ep)
{
	struct ehci_hcd		*ehci = hcd_to_ehci (hcd);
	unsigned long		flags;
	struct ehci_qh		*qh, *tmp;

	/* ASSERT:  any requests/urbs are being unlinked */
	/* ASSERT:  nobody can be submitting urbs for this any more */

rescan:
	spin_lock_irqsave (&ehci->lock, flags);
	qh = ep->hcpriv;
	if (!qh)
		goto done;

	/* endpoints can be iso streams.  for now, we don't
	 * accelerate iso completions ... so spin a while.
	 */
	if (qh->hw_info1 == 0) {
		ehci_vdbg (ehci, "iso delay\n");
		goto idle_timeout;
	}

	if (!HC_IS_RUNNING (hcd->state))
		qh->qh_state = QH_STATE_IDLE;
	switch (qh->qh_state) {
	case QH_STATE_LINKED:
		for (tmp = ehci->async->qh_next.qh;
				tmp && tmp != qh;
				tmp = tmp->qh_next.qh)
			continue;
		/* periodic qh self-unlinks on empty */
		if (!tmp)
			goto nogood;
		unlink_async (ehci, qh);
		/* FALL THROUGH */
	case QH_STATE_UNLINK:		/* wait for hw to finish? */
1001
	case QH_STATE_UNLINK_WAIT:
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idle_timeout:
		spin_unlock_irqrestore (&ehci->lock, flags);
1004
		schedule_timeout_uninterruptible(1);
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1005 1006
		goto rescan;
	case QH_STATE_IDLE:		/* fully unlinked */
1007 1008
		if (qh->clearing_tt)
			goto idle_timeout;
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		if (list_empty (&qh->qtd_list)) {
			qh_put (qh);
			break;
		}
		/* else FALL THROUGH */
	default:
nogood:
		/* caller was supposed to have unlinked any requests;
		 * that's not our job.  just leak this memory.
		 */
		ehci_err (ehci, "qh %p (#%02x) state %d%s\n",
			qh, ep->desc.bEndpointAddress, qh->qh_state,
			list_empty (&qh->qtd_list) ? "" : "(has tds)");
		break;
	}
	ep->hcpriv = NULL;
done:
	spin_unlock_irqrestore (&ehci->lock, flags);
	return;
}

1030 1031 1032 1033 1034 1035
static void
ehci_endpoint_reset(struct usb_hcd *hcd, struct usb_host_endpoint *ep)
{
	struct ehci_hcd		*ehci = hcd_to_ehci(hcd);
	struct ehci_qh		*qh;
	int			eptype = usb_endpoint_type(&ep->desc);
1036 1037 1038
	int			epnum = usb_endpoint_num(&ep->desc);
	int			is_out = usb_endpoint_dir_out(&ep->desc);
	unsigned long		flags;
1039 1040 1041 1042

	if (eptype != USB_ENDPOINT_XFER_BULK && eptype != USB_ENDPOINT_XFER_INT)
		return;

1043
	spin_lock_irqsave(&ehci->lock, flags);
1044 1045 1046 1047 1048 1049 1050 1051
	qh = ep->hcpriv;

	/* For Bulk and Interrupt endpoints we maintain the toggle state
	 * in the hardware; the toggle bits in udev aren't used at all.
	 * When an endpoint is reset by usb_clear_halt() we must reset
	 * the toggle bit in the QH.
	 */
	if (qh) {
1052
		usb_settoggle(qh->dev, epnum, is_out, 0);
1053 1054
		if (!list_empty(&qh->qtd_list)) {
			WARN_ONCE(1, "clear_halt for a busy endpoint\n");
1055 1056 1057 1058 1059
		} else if (qh->qh_state == QH_STATE_LINKED) {

			/* The toggle value in the QH can't be updated
			 * while the QH is active.  Unlink it now;
			 * re-linking will call qh_refresh().
1060
			 */
1061 1062 1063 1064 1065
			if (eptype == USB_ENDPOINT_XFER_BULK) {
				unlink_async(ehci, qh);
			} else {
				intr_deschedule(ehci, qh);
				(void) qh_schedule(ehci, qh);
1066 1067 1068
			}
		}
	}
1069
	spin_unlock_irqrestore(&ehci->lock, flags);
1070 1071
}

M
Matt Porter 已提交
1072 1073 1074
static int ehci_get_frame (struct usb_hcd *hcd)
{
	struct ehci_hcd		*ehci = hcd_to_ehci (hcd);
1075 1076
	return (ehci_readl(ehci, &ehci->regs->frame_index) >> 3) %
		ehci->periodic_size;
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Matt Porter 已提交
1077
}
L
Linus Torvalds 已提交
1078 1079 1080

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

1081
MODULE_DESCRIPTION(DRIVER_DESC);
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Linus Torvalds 已提交
1082 1083 1084
MODULE_AUTHOR (DRIVER_AUTHOR);
MODULE_LICENSE ("GPL");

M
Matt Porter 已提交
1085 1086
#ifdef CONFIG_PCI
#include "ehci-pci.c"
1087
#define	PCI_DRIVER		ehci_pci_driver
M
Matt Porter 已提交
1088
#endif
L
Linus Torvalds 已提交
1089

1090
#ifdef CONFIG_USB_EHCI_FSL
1091
#include "ehci-fsl.c"
1092
#define	PLATFORM_DRIVER		ehci_fsl_driver
1093 1094
#endif

1095
#ifdef CONFIG_SOC_AU1200
J
Jordan Crouse 已提交
1096
#include "ehci-au1xxx.c"
1097
#define	PLATFORM_DRIVER		ehci_hcd_au1xxx_driver
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Jordan Crouse 已提交
1098 1099
#endif

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Geoff Levand 已提交
1100 1101
#ifdef CONFIG_PPC_PS3
#include "ehci-ps3.c"
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Geoff Levand 已提交
1102
#define	PS3_SYSTEM_BUS_DRIVER	ps3_ehci_driver
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Geoff Levand 已提交
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#endif

1105 1106 1107 1108 1109
#ifdef CONFIG_USB_EHCI_HCD_PPC_OF
#include "ehci-ppc-of.c"
#define OF_PLATFORM_DRIVER	ehci_hcd_ppc_of_driver
#endif

1110
#ifdef CONFIG_PLAT_ORION
1111 1112 1113 1114
#include "ehci-orion.c"
#define	PLATFORM_DRIVER		ehci_orion_driver
#endif

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Vladimir Barinov 已提交
1115 1116 1117 1118 1119
#ifdef CONFIG_ARCH_IXP4XX
#include "ehci-ixp4xx.c"
#define	PLATFORM_DRIVER		ixp4xx_ehci_driver
#endif

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Geoff Levand 已提交
1120
#if !defined(PCI_DRIVER) && !defined(PLATFORM_DRIVER) && \
1121
    !defined(PS3_SYSTEM_BUS_DRIVER) && !defined(OF_PLATFORM_DRIVER)
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Matt Porter 已提交
1122 1123
#error "missing bus glue for ehci-hcd"
#endif
1124 1125 1126 1127 1128

static int __init ehci_hcd_init(void)
{
	int retval = 0;

1129 1130 1131 1132
	if (usb_disabled())
		return -ENODEV;

	printk(KERN_INFO "%s: " DRIVER_DESC "\n", hcd_name);
1133 1134 1135 1136 1137 1138
	set_bit(USB_EHCI_LOADED, &usb_hcds_loaded);
	if (test_bit(USB_UHCI_LOADED, &usb_hcds_loaded) ||
			test_bit(USB_OHCI_LOADED, &usb_hcds_loaded))
		printk(KERN_WARNING "Warning! ehci_hcd should always be loaded"
				" before uhci_hcd and ohci_hcd, not after\n");

1139 1140 1141 1142 1143
	pr_debug("%s: block sizes: qh %Zd qtd %Zd itd %Zd sitd %Zd\n",
		 hcd_name,
		 sizeof(struct ehci_qh), sizeof(struct ehci_qtd),
		 sizeof(struct ehci_itd), sizeof(struct ehci_sitd));

1144
#ifdef DEBUG
1145
	ehci_debug_root = debugfs_create_dir("ehci", usb_debug_root);
1146 1147 1148 1149
	if (!ehci_debug_root) {
		retval = -ENOENT;
		goto err_debug;
	}
1150 1151
#endif

1152 1153
#ifdef PLATFORM_DRIVER
	retval = platform_driver_register(&PLATFORM_DRIVER);
1154 1155
	if (retval < 0)
		goto clean0;
1156 1157 1158 1159
#endif

#ifdef PCI_DRIVER
	retval = pci_register_driver(&PCI_DRIVER);
1160 1161
	if (retval < 0)
		goto clean1;
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Geoff Levand 已提交
1162 1163 1164
#endif

#ifdef PS3_SYSTEM_BUS_DRIVER
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Geoff Levand 已提交
1165
	retval = ps3_ehci_driver_register(&PS3_SYSTEM_BUS_DRIVER);
1166 1167
	if (retval < 0)
		goto clean2;
1168
#endif
1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183

#ifdef OF_PLATFORM_DRIVER
	retval = of_register_platform_driver(&OF_PLATFORM_DRIVER);
	if (retval < 0)
		goto clean3;
#endif
	return retval;

#ifdef OF_PLATFORM_DRIVER
	/* of_unregister_platform_driver(&OF_PLATFORM_DRIVER); */
clean3:
#endif
#ifdef PS3_SYSTEM_BUS_DRIVER
	ps3_ehci_driver_unregister(&PS3_SYSTEM_BUS_DRIVER);
clean2:
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Geoff Levand 已提交
1184 1185
#endif
#ifdef PCI_DRIVER
1186 1187
	pci_unregister_driver(&PCI_DRIVER);
clean1:
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Geoff Levand 已提交
1188
#endif
1189 1190 1191 1192 1193 1194 1195
#ifdef PLATFORM_DRIVER
	platform_driver_unregister(&PLATFORM_DRIVER);
clean0:
#endif
#ifdef DEBUG
	debugfs_remove(ehci_debug_root);
	ehci_debug_root = NULL;
1196
err_debug:
1197
#endif
1198
	clear_bit(USB_EHCI_LOADED, &usb_hcds_loaded);
1199 1200 1201 1202 1203 1204
	return retval;
}
module_init(ehci_hcd_init);

static void __exit ehci_hcd_cleanup(void)
{
1205 1206 1207
#ifdef OF_PLATFORM_DRIVER
	of_unregister_platform_driver(&OF_PLATFORM_DRIVER);
#endif
1208 1209 1210 1211 1212 1213
#ifdef PLATFORM_DRIVER
	platform_driver_unregister(&PLATFORM_DRIVER);
#endif
#ifdef PCI_DRIVER
	pci_unregister_driver(&PCI_DRIVER);
#endif
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Geoff Levand 已提交
1214
#ifdef PS3_SYSTEM_BUS_DRIVER
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Geoff Levand 已提交
1215
	ps3_ehci_driver_unregister(&PS3_SYSTEM_BUS_DRIVER);
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Geoff Levand 已提交
1216
#endif
1217 1218 1219
#ifdef DEBUG
	debugfs_remove(ehci_debug_root);
#endif
1220
	clear_bit(USB_EHCI_LOADED, &usb_hcds_loaded);
1221 1222 1223
}
module_exit(ehci_hcd_cleanup);