musb_core.c 66.9 KB
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/*
 * MUSB OTG driver core code
 *
 * Copyright 2005 Mentor Graphics Corporation
 * Copyright (C) 2005-2006 by Texas Instruments
 * Copyright (C) 2006-2007 Nokia Corporation
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License
 * version 2 as published by the Free Software Foundation.
 *
 * 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., 51 Franklin St, Fifth Floor, Boston, MA
 * 02110-1301 USA
 *
 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED
 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  IN
 * NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
 * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
 * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
 *
 */

/*
 * Inventra (Multipoint) Dual-Role Controller Driver for Linux.
 *
 * This consists of a Host Controller Driver (HCD) and a peripheral
 * controller driver implementing the "Gadget" API; OTG support is
 * in the works.  These are normal Linux-USB controller drivers which
 * use IRQs and have no dedicated thread.
 *
 * This version of the driver has only been used with products from
 * Texas Instruments.  Those products integrate the Inventra logic
 * with other DMA, IRQ, and bus modules, as well as other logic that
 * needs to be reflected in this driver.
 *
 *
 * NOTE:  the original Mentor code here was pretty much a collection
 * of mechanisms that don't seem to have been fully integrated/working
 * for *any* Linux kernel version.  This version aims at Linux 2.6.now,
 * Key open issues include:
 *
 *  - Lack of host-side transaction scheduling, for all transfer types.
 *    The hardware doesn't do it; instead, software must.
 *
 *    This is not an issue for OTG devices that don't support external
 *    hubs, but for more "normal" USB hosts it's a user issue that the
 *    "multipoint" support doesn't scale in the expected ways.  That
 *    includes DaVinci EVM in a common non-OTG mode.
 *
 *      * Control and bulk use dedicated endpoints, and there's as
 *        yet no mechanism to either (a) reclaim the hardware when
 *        peripherals are NAKing, which gets complicated with bulk
 *        endpoints, or (b) use more than a single bulk endpoint in
 *        each direction.
 *
 *        RESULT:  one device may be perceived as blocking another one.
 *
 *      * Interrupt and isochronous will dynamically allocate endpoint
 *        hardware, but (a) there's no record keeping for bandwidth;
 *        (b) in the common case that few endpoints are available, there
 *        is no mechanism to reuse endpoints to talk to multiple devices.
 *
 *        RESULT:  At one extreme, bandwidth can be overcommitted in
 *        some hardware configurations, no faults will be reported.
 *        At the other extreme, the bandwidth capabilities which do
 *        exist tend to be severely undercommitted.  You can't yet hook
 *        up both a keyboard and a mouse to an external USB hub.
 */

/*
 * This gets many kinds of configuration information:
 *	- Kconfig for everything user-configurable
 *	- platform_device for addressing, irq, and platform_data
 *	- platform_data is mostly for board-specific informarion
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 *	  (plus recentrly, SOC or family details)
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 *
 * Most of the conditional compilation will (someday) vanish.
 */

#include <linux/module.h>
#include <linux/kernel.h>
#include <linux/sched.h>
#include <linux/slab.h>
#include <linux/init.h>
#include <linux/list.h>
#include <linux/kobject.h>
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#include <linux/prefetch.h>
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#include <linux/platform_device.h>
#include <linux/io.h>

#include "musb_core.h"

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#define TA_WAIT_BCON(m) max_t(int, (m)->a_wait_bcon, OTG_TIME_A_WAIT_BCON)
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#define DRIVER_AUTHOR "Mentor Graphics, Texas Instruments, Nokia"
#define DRIVER_DESC "Inventra Dual-Role USB Controller Driver"

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#define MUSB_VERSION "6.0"
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#define DRIVER_INFO DRIVER_DESC ", v" MUSB_VERSION

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#define MUSB_DRIVER_NAME "musb-hdrc"
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const char musb_driver_name[] = MUSB_DRIVER_NAME;

MODULE_DESCRIPTION(DRIVER_INFO);
MODULE_AUTHOR(DRIVER_AUTHOR);
MODULE_LICENSE("GPL");
MODULE_ALIAS("platform:" MUSB_DRIVER_NAME);


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

static inline struct musb *dev_to_musb(struct device *dev)
{
	return dev_get_drvdata(dev);
}

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

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#ifndef CONFIG_BLACKFIN
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static int musb_ulpi_read(struct usb_phy *phy, u32 offset)
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{
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	void __iomem *addr = phy->io_priv;
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	int	i = 0;
	u8	r;
	u8	power;
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	int	ret;

	pm_runtime_get_sync(phy->io_dev);
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	/* Make sure the transceiver is not in low power mode */
	power = musb_readb(addr, MUSB_POWER);
	power &= ~MUSB_POWER_SUSPENDM;
	musb_writeb(addr, MUSB_POWER, power);

	/* REVISIT: musbhdrc_ulpi_an.pdf recommends setting the
	 * ULPICarKitControlDisableUTMI after clearing POWER_SUSPENDM.
	 */

	musb_writeb(addr, MUSB_ULPI_REG_ADDR, (u8)offset);
	musb_writeb(addr, MUSB_ULPI_REG_CONTROL,
			MUSB_ULPI_REG_REQ | MUSB_ULPI_RDN_WR);

	while (!(musb_readb(addr, MUSB_ULPI_REG_CONTROL)
				& MUSB_ULPI_REG_CMPLT)) {
		i++;
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		if (i == 10000) {
			ret = -ETIMEDOUT;
			goto out;
		}
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	}
	r = musb_readb(addr, MUSB_ULPI_REG_CONTROL);
	r &= ~MUSB_ULPI_REG_CMPLT;
	musb_writeb(addr, MUSB_ULPI_REG_CONTROL, r);

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	ret = musb_readb(addr, MUSB_ULPI_REG_DATA);

out:
	pm_runtime_put(phy->io_dev);

	return ret;
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}

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static int musb_ulpi_write(struct usb_phy *phy, u32 offset, u32 data)
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{
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	void __iomem *addr = phy->io_priv;
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	int	i = 0;
	u8	r = 0;
	u8	power;
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	int	ret = 0;

	pm_runtime_get_sync(phy->io_dev);
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	/* Make sure the transceiver is not in low power mode */
	power = musb_readb(addr, MUSB_POWER);
	power &= ~MUSB_POWER_SUSPENDM;
	musb_writeb(addr, MUSB_POWER, power);

	musb_writeb(addr, MUSB_ULPI_REG_ADDR, (u8)offset);
	musb_writeb(addr, MUSB_ULPI_REG_DATA, (u8)data);
	musb_writeb(addr, MUSB_ULPI_REG_CONTROL, MUSB_ULPI_REG_REQ);

	while (!(musb_readb(addr, MUSB_ULPI_REG_CONTROL)
				& MUSB_ULPI_REG_CMPLT)) {
		i++;
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		if (i == 10000) {
			ret = -ETIMEDOUT;
			goto out;
		}
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	}

	r = musb_readb(addr, MUSB_ULPI_REG_CONTROL);
	r &= ~MUSB_ULPI_REG_CMPLT;
	musb_writeb(addr, MUSB_ULPI_REG_CONTROL, r);

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out:
	pm_runtime_put(phy->io_dev);

	return ret;
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}
#else
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#define musb_ulpi_read		NULL
#define musb_ulpi_write		NULL
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#endif

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static struct usb_phy_io_ops musb_ulpi_access = {
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	.read = musb_ulpi_read,
	.write = musb_ulpi_write,
};

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

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#if !defined(CONFIG_USB_MUSB_TUSB6010) && !defined(CONFIG_USB_MUSB_BLACKFIN)
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/*
 * Load an endpoint's FIFO
 */
void musb_write_fifo(struct musb_hw_ep *hw_ep, u16 len, const u8 *src)
{
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	struct musb *musb = hw_ep->musb;
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	void __iomem *fifo = hw_ep->fifo;

	prefetch((u8 *)src);

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	dev_dbg(musb->controller, "%cX ep%d fifo %p count %d buf %p\n",
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			'T', hw_ep->epnum, fifo, len, src);

	/* we can't assume unaligned reads work */
	if (likely((0x01 & (unsigned long) src) == 0)) {
		u16	index = 0;

		/* best case is 32bit-aligned source address */
		if ((0x02 & (unsigned long) src) == 0) {
			if (len >= 4) {
				writesl(fifo, src + index, len >> 2);
				index += len & ~0x03;
			}
			if (len & 0x02) {
				musb_writew(fifo, 0, *(u16 *)&src[index]);
				index += 2;
			}
		} else {
			if (len >= 2) {
				writesw(fifo, src + index, len >> 1);
				index += len & ~0x01;
			}
		}
		if (len & 0x01)
			musb_writeb(fifo, 0, src[index]);
	} else  {
		/* byte aligned */
		writesb(fifo, src, len);
	}
}

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#if !defined(CONFIG_USB_MUSB_AM35X)
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/*
 * Unload an endpoint's FIFO
 */
void musb_read_fifo(struct musb_hw_ep *hw_ep, u16 len, u8 *dst)
{
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	struct musb *musb = hw_ep->musb;
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	void __iomem *fifo = hw_ep->fifo;

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	dev_dbg(musb->controller, "%cX ep%d fifo %p count %d buf %p\n",
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			'R', hw_ep->epnum, fifo, len, dst);

	/* we can't assume unaligned writes work */
	if (likely((0x01 & (unsigned long) dst) == 0)) {
		u16	index = 0;

		/* best case is 32bit-aligned destination address */
		if ((0x02 & (unsigned long) dst) == 0) {
			if (len >= 4) {
				readsl(fifo, dst, len >> 2);
				index = len & ~0x03;
			}
			if (len & 0x02) {
				*(u16 *)&dst[index] = musb_readw(fifo, 0);
				index += 2;
			}
		} else {
			if (len >= 2) {
				readsw(fifo, dst, len >> 1);
				index = len & ~0x01;
			}
		}
		if (len & 0x01)
			dst[index] = musb_readb(fifo, 0);
	} else  {
		/* byte aligned */
		readsb(fifo, dst, len);
	}
}
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#endif
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#endif	/* normal PIO */


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

/* for high speed test mode; see USB 2.0 spec 7.1.20 */
static const u8 musb_test_packet[53] = {
	/* implicit SYNC then DATA0 to start */

	/* JKJKJKJK x9 */
	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
	/* JJKKJJKK x8 */
	0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa,
	/* JJJJKKKK x8 */
	0xee, 0xee, 0xee, 0xee, 0xee, 0xee, 0xee, 0xee,
	/* JJJJJJJKKKKKKK x8 */
	0xfe, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
	/* JJJJJJJK x8 */
	0x7f, 0xbf, 0xdf, 0xef, 0xf7, 0xfb, 0xfd,
	/* JKKKKKKK x10, JK */
	0xfc, 0x7e, 0xbf, 0xdf, 0xef, 0xf7, 0xfb, 0xfd, 0x7e

	/* implicit CRC16 then EOP to end */
};

void musb_load_testpacket(struct musb *musb)
{
	void __iomem	*regs = musb->endpoints[0].regs;

	musb_ep_select(musb->mregs, 0);
	musb_write_fifo(musb->control_ep,
			sizeof(musb_test_packet), musb_test_packet);
	musb_writew(regs, MUSB_CSR0, MUSB_CSR0_TXPKTRDY);
}

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

/*
 * Handles OTG hnp timeouts, such as b_ase0_brst
 */
void musb_otg_timer_func(unsigned long data)
{
	struct musb	*musb = (struct musb *)data;
	unsigned long	flags;

	spin_lock_irqsave(&musb->lock, flags);
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	switch (musb->xceiv->state) {
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	case OTG_STATE_B_WAIT_ACON:
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		dev_dbg(musb->controller, "HNP: b_wait_acon timeout; back to b_peripheral\n");
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		musb_g_disconnect(musb);
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		musb->xceiv->state = OTG_STATE_B_PERIPHERAL;
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		musb->is_active = 0;
		break;
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	case OTG_STATE_A_SUSPEND:
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	case OTG_STATE_A_WAIT_BCON:
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		dev_dbg(musb->controller, "HNP: %s timeout\n",
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			otg_state_string(musb->xceiv->state));
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		musb_platform_set_vbus(musb, 0);
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		musb->xceiv->state = OTG_STATE_A_WAIT_VFALL;
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		break;
	default:
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		dev_dbg(musb->controller, "HNP: Unhandled mode %s\n",
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			otg_state_string(musb->xceiv->state));
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	}
	musb->ignore_disconnect = 0;
	spin_unlock_irqrestore(&musb->lock, flags);
}

/*
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 * Stops the HNP transition. Caller must take care of locking.
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 */
void musb_hnp_stop(struct musb *musb)
{
	struct usb_hcd	*hcd = musb_to_hcd(musb);
	void __iomem	*mbase = musb->mregs;
	u8	reg;

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	dev_dbg(musb->controller, "HNP: stop from %s\n", otg_state_string(musb->xceiv->state));
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	switch (musb->xceiv->state) {
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	case OTG_STATE_A_PERIPHERAL:
		musb_g_disconnect(musb);
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		dev_dbg(musb->controller, "HNP: back to %s\n",
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			otg_state_string(musb->xceiv->state));
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		break;
	case OTG_STATE_B_HOST:
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		dev_dbg(musb->controller, "HNP: Disabling HR\n");
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		hcd->self.is_b_host = 0;
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		musb->xceiv->state = OTG_STATE_B_PERIPHERAL;
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		MUSB_DEV_MODE(musb);
		reg = musb_readb(mbase, MUSB_POWER);
		reg |= MUSB_POWER_SUSPENDM;
		musb_writeb(mbase, MUSB_POWER, reg);
		/* REVISIT: Start SESSION_REQUEST here? */
		break;
	default:
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		dev_dbg(musb->controller, "HNP: Stopping in unknown state %s\n",
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			otg_state_string(musb->xceiv->state));
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	}

	/*
	 * When returning to A state after HNP, avoid hub_port_rebounce(),
	 * which cause occasional OPT A "Did not receive reset after connect"
	 * errors.
	 */
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	musb->port1_status &= ~(USB_PORT_STAT_C_CONNECTION << 16);
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}

/*
 * Interrupt Service Routine to record USB "global" interrupts.
 * Since these do not happen often and signify things of
 * paramount importance, it seems OK to check them individually;
 * the order of the tests is specified in the manual
 *
 * @param musb instance pointer
 * @param int_usb register contents
 * @param devctl
 * @param power
 */

static irqreturn_t musb_stage0_irq(struct musb *musb, u8 int_usb,
				u8 devctl, u8 power)
{
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	struct usb_otg *otg = musb->xceiv->otg;
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	irqreturn_t handled = IRQ_NONE;

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	dev_dbg(musb->controller, "<== Power=%02x, DevCtl=%02x, int_usb=0x%x\n", power, devctl,
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		int_usb);

	/* in host mode, the peripheral may issue remote wakeup.
	 * in peripheral mode, the host may resume the link.
	 * spurious RESUME irqs happen too, paired with SUSPEND.
	 */
	if (int_usb & MUSB_INTR_RESUME) {
		handled = IRQ_HANDLED;
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		dev_dbg(musb->controller, "RESUME (%s)\n", otg_state_string(musb->xceiv->state));
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		if (devctl & MUSB_DEVCTL_HM) {
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			void __iomem *mbase = musb->mregs;

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			switch (musb->xceiv->state) {
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			case OTG_STATE_A_SUSPEND:
				/* remote wakeup?  later, GetPortStatus
				 * will stop RESUME signaling
				 */

				if (power & MUSB_POWER_SUSPENDM) {
					/* spurious */
					musb->int_usb &= ~MUSB_INTR_SUSPEND;
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					dev_dbg(musb->controller, "Spurious SUSPENDM\n");
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					break;
				}

				power &= ~MUSB_POWER_SUSPENDM;
				musb_writeb(mbase, MUSB_POWER,
						power | MUSB_POWER_RESUME);

				musb->port1_status |=
						(USB_PORT_STAT_C_SUSPEND << 16)
						| MUSB_PORT_STAT_RESUME;
				musb->rh_timer = jiffies
						+ msecs_to_jiffies(20);

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				musb->xceiv->state = OTG_STATE_A_HOST;
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				musb->is_active = 1;
				usb_hcd_resume_root_hub(musb_to_hcd(musb));
				break;
			case OTG_STATE_B_WAIT_ACON:
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				musb->xceiv->state = OTG_STATE_B_PERIPHERAL;
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				musb->is_active = 1;
				MUSB_DEV_MODE(musb);
				break;
			default:
				WARNING("bogus %s RESUME (%s)\n",
					"host",
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					otg_state_string(musb->xceiv->state));
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			}
		} else {
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			switch (musb->xceiv->state) {
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			case OTG_STATE_A_SUSPEND:
				/* possibly DISCONNECT is upcoming */
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				musb->xceiv->state = OTG_STATE_A_HOST;
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				usb_hcd_resume_root_hub(musb_to_hcd(musb));
				break;
			case OTG_STATE_B_WAIT_ACON:
			case OTG_STATE_B_PERIPHERAL:
				/* disconnect while suspended?  we may
				 * not get a disconnect irq...
				 */
				if ((devctl & MUSB_DEVCTL_VBUS)
						!= (3 << MUSB_DEVCTL_VBUS_SHIFT)
						) {
					musb->int_usb |= MUSB_INTR_DISCONNECT;
					musb->int_usb &= ~MUSB_INTR_SUSPEND;
					break;
				}
				musb_g_resume(musb);
				break;
			case OTG_STATE_B_IDLE:
				musb->int_usb &= ~MUSB_INTR_SUSPEND;
				break;
			default:
				WARNING("bogus %s RESUME (%s)\n",
					"peripheral",
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					otg_state_string(musb->xceiv->state));
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			}
		}
	}

	/* see manual for the order of the tests */
	if (int_usb & MUSB_INTR_SESSREQ) {
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		void __iomem *mbase = musb->mregs;

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		if ((devctl & MUSB_DEVCTL_VBUS) == MUSB_DEVCTL_VBUS
				&& (devctl & MUSB_DEVCTL_BDEVICE)) {
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			dev_dbg(musb->controller, "SessReq while on B state\n");
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			return IRQ_HANDLED;
		}

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		dev_dbg(musb->controller, "SESSION_REQUEST (%s)\n",
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			otg_state_string(musb->xceiv->state));
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		/* IRQ arrives from ID pin sense or (later, if VBUS power
		 * is removed) SRP.  responses are time critical:
		 *  - turn on VBUS (with silicon-specific mechanism)
		 *  - go through A_WAIT_VRISE
		 *  - ... to A_WAIT_BCON.
		 * a_wait_vrise_tmout triggers VBUS_ERROR transitions
		 */
		musb_writeb(mbase, MUSB_DEVCTL, MUSB_DEVCTL_SESSION);
		musb->ep0_stage = MUSB_EP0_START;
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		musb->xceiv->state = OTG_STATE_A_IDLE;
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		MUSB_HST_MODE(musb);
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		musb_platform_set_vbus(musb, 1);
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		handled = IRQ_HANDLED;
	}

	if (int_usb & MUSB_INTR_VBUSERROR) {
		int	ignore = 0;

		/* During connection as an A-Device, we may see a short
		 * current spikes causing voltage drop, because of cable
		 * and peripheral capacitance combined with vbus draw.
		 * (So: less common with truly self-powered devices, where
		 * vbus doesn't act like a power supply.)
		 *
		 * Such spikes are short; usually less than ~500 usec, max
		 * of ~2 msec.  That is, they're not sustained overcurrent
		 * errors, though they're reported using VBUSERROR irqs.
		 *
		 * Workarounds:  (a) hardware: use self powered devices.
		 * (b) software:  ignore non-repeated VBUS errors.
		 *
		 * REVISIT:  do delays from lots of DEBUG_KERNEL checks
		 * make trouble here, keeping VBUS < 4.4V ?
		 */
568
		switch (musb->xceiv->state) {
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		case OTG_STATE_A_HOST:
			/* recovery is dicey once we've gotten past the
			 * initial stages of enumeration, but if VBUS
			 * stayed ok at the other end of the link, and
			 * another reset is due (at least for high speed,
			 * to redo the chirp etc), it might work OK...
			 */
		case OTG_STATE_A_WAIT_BCON:
		case OTG_STATE_A_WAIT_VRISE:
			if (musb->vbuserr_retry) {
579 580
				void __iomem *mbase = musb->mregs;

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				musb->vbuserr_retry--;
				ignore = 1;
				devctl |= MUSB_DEVCTL_SESSION;
				musb_writeb(mbase, MUSB_DEVCTL, devctl);
			} else {
				musb->port1_status |=
587 588
					  USB_PORT_STAT_OVERCURRENT
					| (USB_PORT_STAT_C_OVERCURRENT << 16);
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			}
			break;
		default:
			break;
		}

595
		dev_dbg(musb->controller, "VBUS_ERROR in %s (%02x, %s), retry #%d, port1 %08x\n",
596
				otg_state_string(musb->xceiv->state),
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				devctl,
				({ char *s;
				switch (devctl & MUSB_DEVCTL_VBUS) {
				case 0 << MUSB_DEVCTL_VBUS_SHIFT:
					s = "<SessEnd"; break;
				case 1 << MUSB_DEVCTL_VBUS_SHIFT:
					s = "<AValid"; break;
				case 2 << MUSB_DEVCTL_VBUS_SHIFT:
					s = "<VBusValid"; break;
				/* case 3 << MUSB_DEVCTL_VBUS_SHIFT: */
				default:
					s = "VALID"; break;
				}; s; }),
				VBUSERR_RETRY_COUNT - musb->vbuserr_retry,
				musb->port1_status);

		/* go through A_WAIT_VFALL then start a new session */
		if (!ignore)
615
			musb_platform_set_vbus(musb, 0);
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		handled = IRQ_HANDLED;
	}

619
	if (int_usb & MUSB_INTR_SUSPEND) {
620
		dev_dbg(musb->controller, "SUSPEND (%s) devctl %02x power %02x\n",
621
			otg_state_string(musb->xceiv->state), devctl, power);
622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646
		handled = IRQ_HANDLED;

		switch (musb->xceiv->state) {
		case OTG_STATE_A_PERIPHERAL:
			/* We also come here if the cable is removed, since
			 * this silicon doesn't report ID-no-longer-grounded.
			 *
			 * We depend on T(a_wait_bcon) to shut us down, and
			 * hope users don't do anything dicey during this
			 * undesired detour through A_WAIT_BCON.
			 */
			musb_hnp_stop(musb);
			usb_hcd_resume_root_hub(musb_to_hcd(musb));
			musb_root_disconnect(musb);
			musb_platform_try_idle(musb, jiffies
					+ msecs_to_jiffies(musb->a_wait_bcon
						? : OTG_TIME_A_WAIT_BCON));

			break;
		case OTG_STATE_B_IDLE:
			if (!musb->is_active)
				break;
		case OTG_STATE_B_PERIPHERAL:
			musb_g_suspend(musb);
			musb->is_active = is_otg_enabled(musb)
647
					&& otg->gadget->b_hnp_enable;
648 649
			if (musb->is_active) {
				musb->xceiv->state = OTG_STATE_B_WAIT_ACON;
650
				dev_dbg(musb->controller, "HNP: Setting timer for b_ase0_brst\n");
651 652 653 654 655 656 657 658 659 660 661 662 663
				mod_timer(&musb->otg_timer, jiffies
					+ msecs_to_jiffies(
							OTG_TIME_B_ASE0_BRST));
			}
			break;
		case OTG_STATE_A_WAIT_BCON:
			if (musb->a_wait_bcon != 0)
				musb_platform_try_idle(musb, jiffies
					+ msecs_to_jiffies(musb->a_wait_bcon));
			break;
		case OTG_STATE_A_HOST:
			musb->xceiv->state = OTG_STATE_A_SUSPEND;
			musb->is_active = is_otg_enabled(musb)
664
					&& otg->host->b_hnp_enable;
665 666 667
			break;
		case OTG_STATE_B_HOST:
			/* Transition to B_PERIPHERAL, see 6.8.2.6 p 44 */
668
			dev_dbg(musb->controller, "REVISIT: SUSPEND as B_HOST\n");
669 670 671 672 673 674 675 676
			break;
		default:
			/* "should not happen" */
			musb->is_active = 0;
			break;
		}
	}

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	if (int_usb & MUSB_INTR_CONNECT) {
		struct usb_hcd *hcd = musb_to_hcd(musb);

		handled = IRQ_HANDLED;
		musb->is_active = 1;

		musb->ep0_stage = MUSB_EP0_START;

		/* flush endpoints when transitioning from Device Mode */
		if (is_peripheral_active(musb)) {
			/* REVISIT HNP; just force disconnect */
		}
689 690 691
		musb_writew(musb->mregs, MUSB_INTRTXE, musb->epmask);
		musb_writew(musb->mregs, MUSB_INTRRXE, musb->epmask & 0xfffe);
		musb_writeb(musb->mregs, MUSB_INTRUSBE, 0xf7);
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		musb->port1_status &= ~(USB_PORT_STAT_LOW_SPEED
					|USB_PORT_STAT_HIGH_SPEED
					|USB_PORT_STAT_ENABLE
					);
		musb->port1_status |= USB_PORT_STAT_CONNECTION
					|(USB_PORT_STAT_C_CONNECTION << 16);

		/* high vs full speed is just a guess until after reset */
		if (devctl & MUSB_DEVCTL_LSDEV)
			musb->port1_status |= USB_PORT_STAT_LOW_SPEED;

		/* indicate new connection to OTG machine */
704
		switch (musb->xceiv->state) {
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		case OTG_STATE_B_PERIPHERAL:
			if (int_usb & MUSB_INTR_SUSPEND) {
707
				dev_dbg(musb->controller, "HNP: SUSPEND+CONNECT, now b_host\n");
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				int_usb &= ~MUSB_INTR_SUSPEND;
709
				goto b_host;
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			} else
711
				dev_dbg(musb->controller, "CONNECT as b_peripheral???\n");
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			break;
		case OTG_STATE_B_WAIT_ACON:
714
			dev_dbg(musb->controller, "HNP: CONNECT, now b_host\n");
715
b_host:
716
			musb->xceiv->state = OTG_STATE_B_HOST;
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			hcd->self.is_b_host = 1;
718 719
			musb->ignore_disconnect = 0;
			del_timer(&musb->otg_timer);
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			break;
		default:
			if ((devctl & MUSB_DEVCTL_VBUS)
					== (3 << MUSB_DEVCTL_VBUS_SHIFT)) {
724
				musb->xceiv->state = OTG_STATE_A_HOST;
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				hcd->self.is_b_host = 0;
			}
			break;
		}
729 730 731 732 733 734 735 736

		/* poke the root hub */
		MUSB_HST_MODE(musb);
		if (hcd->status_urb)
			usb_hcd_poll_rh_status(hcd);
		else
			usb_hcd_resume_root_hub(hcd);

737
		dev_dbg(musb->controller, "CONNECT (%s) devctl %02x\n",
738
				otg_state_string(musb->xceiv->state), devctl);
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	}

741
	if ((int_usb & MUSB_INTR_DISCONNECT) && !musb->ignore_disconnect) {
742
		dev_dbg(musb->controller, "DISCONNECT (%s) as %s, devctl %02x\n",
743
				otg_state_string(musb->xceiv->state),
744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779
				MUSB_MODE(musb), devctl);
		handled = IRQ_HANDLED;

		switch (musb->xceiv->state) {
		case OTG_STATE_A_HOST:
		case OTG_STATE_A_SUSPEND:
			usb_hcd_resume_root_hub(musb_to_hcd(musb));
			musb_root_disconnect(musb);
			if (musb->a_wait_bcon != 0 && is_otg_enabled(musb))
				musb_platform_try_idle(musb, jiffies
					+ msecs_to_jiffies(musb->a_wait_bcon));
			break;
		case OTG_STATE_B_HOST:
			/* REVISIT this behaves for "real disconnect"
			 * cases; make sure the other transitions from
			 * from B_HOST act right too.  The B_HOST code
			 * in hnp_stop() is currently not used...
			 */
			musb_root_disconnect(musb);
			musb_to_hcd(musb)->self.is_b_host = 0;
			musb->xceiv->state = OTG_STATE_B_PERIPHERAL;
			MUSB_DEV_MODE(musb);
			musb_g_disconnect(musb);
			break;
		case OTG_STATE_A_PERIPHERAL:
			musb_hnp_stop(musb);
			musb_root_disconnect(musb);
			/* FALLTHROUGH */
		case OTG_STATE_B_WAIT_ACON:
			/* FALLTHROUGH */
		case OTG_STATE_B_PERIPHERAL:
		case OTG_STATE_B_IDLE:
			musb_g_disconnect(musb);
			break;
		default:
			WARNING("unhandled DISCONNECT transition (%s)\n",
780
				otg_state_string(musb->xceiv->state));
781 782 783 784
			break;
		}
	}

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	/* mentor saves a bit: bus reset and babble share the same irq.
	 * only host sees babble; only peripheral sees bus reset.
	 */
	if (int_usb & MUSB_INTR_RESET) {
789
		handled = IRQ_HANDLED;
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		if (is_host_capable() && (devctl & MUSB_DEVCTL_HM) != 0) {
			/*
			 * Looks like non-HS BABBLE can be ignored, but
			 * HS BABBLE is an error condition. For HS the solution
			 * is to avoid babble in the first place and fix what
			 * caused BABBLE. When HS BABBLE happens we can only
			 * stop the session.
			 */
			if (devctl & (MUSB_DEVCTL_FSDEV | MUSB_DEVCTL_LSDEV))
799
				dev_dbg(musb->controller, "BABBLE devctl: %02x\n", devctl);
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			else {
				ERR("Stopping host session -- babble\n");
802
				musb_writeb(musb->mregs, MUSB_DEVCTL, 0);
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			}
		} else if (is_peripheral_capable()) {
805
			dev_dbg(musb->controller, "BUS RESET as %s\n",
806
				otg_state_string(musb->xceiv->state));
807
			switch (musb->xceiv->state) {
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			case OTG_STATE_A_SUSPEND:
				/* We need to ignore disconnect on suspend
				 * otherwise tusb 2.0 won't reconnect after a
				 * power cycle, which breaks otg compliance.
				 */
				musb->ignore_disconnect = 1;
				musb_g_reset(musb);
				/* FALLTHROUGH */
			case OTG_STATE_A_WAIT_BCON:	/* OPT TD.4.7-900ms */
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				/* never use invalid T(a_wait_bcon) */
818
				dev_dbg(musb->controller, "HNP: in %s, %d msec timeout\n",
819 820
					otg_state_string(musb->xceiv->state),
					TA_WAIT_BCON(musb));
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				mod_timer(&musb->otg_timer, jiffies
					+ msecs_to_jiffies(TA_WAIT_BCON(musb)));
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				break;
			case OTG_STATE_A_PERIPHERAL:
825 826 827
				musb->ignore_disconnect = 0;
				del_timer(&musb->otg_timer);
				musb_g_reset(musb);
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				break;
			case OTG_STATE_B_WAIT_ACON:
830
				dev_dbg(musb->controller, "HNP: RESET (%s), to b_peripheral\n",
831
					otg_state_string(musb->xceiv->state));
832
				musb->xceiv->state = OTG_STATE_B_PERIPHERAL;
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				musb_g_reset(musb);
				break;
			case OTG_STATE_B_IDLE:
836
				musb->xceiv->state = OTG_STATE_B_PERIPHERAL;
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				/* FALLTHROUGH */
			case OTG_STATE_B_PERIPHERAL:
				musb_g_reset(musb);
				break;
			default:
842
				dev_dbg(musb->controller, "Unhandled BUS RESET as %s\n",
843
					otg_state_string(musb->xceiv->state));
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			}
		}
	}

#if 0
/* REVISIT ... this would be for multiplexing periodic endpoints, or
 * supporting transfer phasing to prevent exceeding ISO bandwidth
 * limits of a given frame or microframe.
 *
 * It's not needed for peripheral side, which dedicates endpoints;
 * though it _might_ use SOF irqs for other purposes.
 *
 * And it's not currently needed for host side, which also dedicates
 * endpoints, relies on TX/RX interval registers, and isn't claimed
 * to support ISO transfers yet.
 */
	if (int_usb & MUSB_INTR_SOF) {
		void __iomem *mbase = musb->mregs;
		struct musb_hw_ep	*ep;
		u8 epnum;
		u16 frame;

866
		dev_dbg(musb->controller, "START_OF_FRAME\n");
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		handled = IRQ_HANDLED;

		/* start any periodic Tx transfers waiting for current frame */
		frame = musb_readw(mbase, MUSB_FRAME);
		ep = musb->endpoints;
		for (epnum = 1; (epnum < musb->nr_endpoints)
					&& (musb->epmask >= (1 << epnum));
				epnum++, ep++) {
			/*
			 * FIXME handle framecounter wraps (12 bits)
			 * eliminate duplicated StartUrb logic
			 */
			if (ep->dwWaitFrame >= frame) {
				ep->dwWaitFrame = 0;
				pr_debug("SOF --> periodic TX%s on %d\n",
					ep->tx_channel ? " DMA" : "",
					epnum);
				if (!ep->tx_channel)
					musb_h_tx_start(musb, epnum);
				else
					cppi_hostdma_start(musb, epnum);
			}
		}		/* end of for loop */
	}
#endif

893
	schedule_work(&musb->irq_work);
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	return handled;
}

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

/*
* Program the HDRC to start (enable interrupts, dma, etc.).
*/
void musb_start(struct musb *musb)
{
	void __iomem	*regs = musb->mregs;
	u8		devctl = musb_readb(regs, MUSB_DEVCTL);

908
	dev_dbg(musb->controller, "<== devctl %02x\n", devctl);
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	/*  Set INT enable registers, enable interrupts */
	musb_writew(regs, MUSB_INTRTXE, musb->epmask);
	musb_writew(regs, MUSB_INTRRXE, musb->epmask & 0xfffe);
	musb_writeb(regs, MUSB_INTRUSBE, 0xf7);

	musb_writeb(regs, MUSB_TESTMODE, 0);

	/* put into basic highspeed mode and start session */
	musb_writeb(regs, MUSB_POWER, MUSB_POWER_ISOUPDATE
						| MUSB_POWER_HSENAB
						/* ENSUSPEND wedges tusb */
						/* | MUSB_POWER_ENSUSPEND */
						);

	musb->is_active = 0;
	devctl = musb_readb(regs, MUSB_DEVCTL);
	devctl &= ~MUSB_DEVCTL_SESSION;

	if (is_otg_enabled(musb)) {
		/* session started after:
		 * (a) ID-grounded irq, host mode;
		 * (b) vbus present/connect IRQ, peripheral mode;
		 * (c) peripheral initiates, using SRP
		 */
		if ((devctl & MUSB_DEVCTL_VBUS) == MUSB_DEVCTL_VBUS)
			musb->is_active = 1;
		else
			devctl |= MUSB_DEVCTL_SESSION;

	} else if (is_host_enabled(musb)) {
		/* assume ID pin is hard-wired to ground */
		devctl |= MUSB_DEVCTL_SESSION;

	} else /* peripheral is enabled */ {
		if ((devctl & MUSB_DEVCTL_VBUS) == MUSB_DEVCTL_VBUS)
			musb->is_active = 1;
	}
	musb_platform_enable(musb);
	musb_writeb(regs, MUSB_DEVCTL, devctl);
}


static void musb_generic_disable(struct musb *musb)
{
	void __iomem	*mbase = musb->mregs;
	u16	temp;

	/* disable interrupts */
	musb_writeb(mbase, MUSB_INTRUSBE, 0);
	musb_writew(mbase, MUSB_INTRTXE, 0);
	musb_writew(mbase, MUSB_INTRRXE, 0);

	/* off */
	musb_writeb(mbase, MUSB_DEVCTL, 0);

	/*  flush pending interrupts */
	temp = musb_readb(mbase, MUSB_INTRUSB);
	temp = musb_readw(mbase, MUSB_INTRTX);
	temp = musb_readw(mbase, MUSB_INTRRX);

}

/*
 * Make the HDRC stop (disable interrupts, etc.);
 * reversible by musb_start
 * called on gadget driver unregister
 * with controller locked, irqs blocked
 * acts as a NOP unless some role activated the hardware
 */
void musb_stop(struct musb *musb)
{
	/* stop IRQs, timers, ... */
	musb_platform_disable(musb);
	musb_generic_disable(musb);
984
	dev_dbg(musb->controller, "HDRC disabled\n");
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	/* FIXME
	 *  - mark host and/or peripheral drivers unusable/inactive
	 *  - disable DMA (and enable it in HdrcStart)
	 *  - make sure we can musb_start() after musb_stop(); with
	 *    OTG mode, gadget driver module rmmod/modprobe cycles that
	 *  - ...
	 */
	musb_platform_try_idle(musb, 0);
}

static void musb_shutdown(struct platform_device *pdev)
{
	struct musb	*musb = dev_to_musb(&pdev->dev);
	unsigned long	flags;

1001
	pm_runtime_get_sync(musb->controller);
1002 1003 1004

	musb_gadget_cleanup(musb);

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	spin_lock_irqsave(&musb->lock, flags);
	musb_platform_disable(musb);
	musb_generic_disable(musb);
	spin_unlock_irqrestore(&musb->lock, flags);

1010 1011 1012 1013 1014
	if (!is_otg_enabled(musb) && is_host_enabled(musb))
		usb_remove_hcd(musb_to_hcd(musb));
	musb_writeb(musb->mregs, MUSB_DEVCTL, 0);
	musb_platform_exit(musb);

1015
	pm_runtime_put(musb->controller);
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	/* FIXME power down */
}


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

/*
 * The silicon either has hard-wired endpoint configurations, or else
 * "dynamic fifo" sizing.  The driver has support for both, though at this
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 * writing only the dynamic sizing is very well tested.   Since we switched
 * away from compile-time hardware parameters, we can no longer rely on
 * dead code elimination to leave only the relevant one in the object file.
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 *
 * We don't currently use dynamic fifo setup capability to do anything
 * more than selecting one of a bunch of predefined configurations.
 */
1032 1033 1034 1035 1036
#if defined(CONFIG_USB_MUSB_TUSB6010)			\
	|| defined(CONFIG_USB_MUSB_TUSB6010_MODULE)	\
	|| defined(CONFIG_USB_MUSB_OMAP2PLUS)		\
	|| defined(CONFIG_USB_MUSB_OMAP2PLUS_MODULE)	\
	|| defined(CONFIG_USB_MUSB_AM35X)		\
1037 1038 1039
	|| defined(CONFIG_USB_MUSB_AM35X_MODULE)	\
	|| defined(CONFIG_USB_MUSB_DSPS)		\
	|| defined(CONFIG_USB_MUSB_DSPS_MODULE)
1040
static ushort __devinitdata fifo_mode = 4;
1041 1042
#elif defined(CONFIG_USB_MUSB_UX500)			\
	|| defined(CONFIG_USB_MUSB_UX500_MODULE)
1043
static ushort __devinitdata fifo_mode = 5;
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#else
1045
static ushort __devinitdata fifo_mode = 2;
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#endif

/* "modprobe ... fifo_mode=1" etc */
module_param(fifo_mode, ushort, 0);
MODULE_PARM_DESC(fifo_mode, "initial endpoint configuration");

/*
 * tables defining fifo_mode values.  define more if you like.
 * for host side, make sure both halves of ep1 are set up.
 */

/* mode 0 - fits in 2KB */
1058
static struct musb_fifo_cfg __devinitdata mode_0_cfg[] = {
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{ .hw_ep_num = 1, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num = 1, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num = 2, .style = FIFO_RXTX, .maxpacket = 512, },
{ .hw_ep_num = 3, .style = FIFO_RXTX, .maxpacket = 256, },
{ .hw_ep_num = 4, .style = FIFO_RXTX, .maxpacket = 256, },
};

/* mode 1 - fits in 4KB */
1067
static struct musb_fifo_cfg __devinitdata mode_1_cfg[] = {
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{ .hw_ep_num = 1, .style = FIFO_TX,   .maxpacket = 512, .mode = BUF_DOUBLE, },
{ .hw_ep_num = 1, .style = FIFO_RX,   .maxpacket = 512, .mode = BUF_DOUBLE, },
{ .hw_ep_num = 2, .style = FIFO_RXTX, .maxpacket = 512, .mode = BUF_DOUBLE, },
{ .hw_ep_num = 3, .style = FIFO_RXTX, .maxpacket = 256, },
{ .hw_ep_num = 4, .style = FIFO_RXTX, .maxpacket = 256, },
};

/* mode 2 - fits in 4KB */
1076
static struct musb_fifo_cfg __devinitdata mode_2_cfg[] = {
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{ .hw_ep_num = 1, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num = 1, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num = 2, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num = 2, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num = 3, .style = FIFO_RXTX, .maxpacket = 256, },
{ .hw_ep_num = 4, .style = FIFO_RXTX, .maxpacket = 256, },
};

/* mode 3 - fits in 4KB */
1086
static struct musb_fifo_cfg __devinitdata mode_3_cfg[] = {
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{ .hw_ep_num = 1, .style = FIFO_TX,   .maxpacket = 512, .mode = BUF_DOUBLE, },
{ .hw_ep_num = 1, .style = FIFO_RX,   .maxpacket = 512, .mode = BUF_DOUBLE, },
{ .hw_ep_num = 2, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num = 2, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num = 3, .style = FIFO_RXTX, .maxpacket = 256, },
{ .hw_ep_num = 4, .style = FIFO_RXTX, .maxpacket = 256, },
};

/* mode 4 - fits in 16KB */
1096
static struct musb_fifo_cfg __devinitdata mode_4_cfg[] = {
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{ .hw_ep_num =  1, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  1, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  2, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  2, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  3, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  3, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  4, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  4, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  5, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  5, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  6, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  6, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  7, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  7, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  8, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  8, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  9, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  9, .style = FIFO_RX,   .maxpacket = 512, },
1115 1116 1117 1118 1119 1120 1121
{ .hw_ep_num = 10, .style = FIFO_TX,   .maxpacket = 256, },
{ .hw_ep_num = 10, .style = FIFO_RX,   .maxpacket = 64, },
{ .hw_ep_num = 11, .style = FIFO_TX,   .maxpacket = 256, },
{ .hw_ep_num = 11, .style = FIFO_RX,   .maxpacket = 64, },
{ .hw_ep_num = 12, .style = FIFO_TX,   .maxpacket = 256, },
{ .hw_ep_num = 12, .style = FIFO_RX,   .maxpacket = 64, },
{ .hw_ep_num = 13, .style = FIFO_RXTX, .maxpacket = 4096, },
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{ .hw_ep_num = 14, .style = FIFO_RXTX, .maxpacket = 1024, },
{ .hw_ep_num = 15, .style = FIFO_RXTX, .maxpacket = 1024, },
};

1126
/* mode 5 - fits in 8KB */
1127
static struct musb_fifo_cfg __devinitdata mode_5_cfg[] = {
1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155
{ .hw_ep_num =  1, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  1, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  2, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  2, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  3, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  3, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  4, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  4, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  5, .style = FIFO_TX,   .maxpacket = 512, },
{ .hw_ep_num =  5, .style = FIFO_RX,   .maxpacket = 512, },
{ .hw_ep_num =  6, .style = FIFO_TX,   .maxpacket = 32, },
{ .hw_ep_num =  6, .style = FIFO_RX,   .maxpacket = 32, },
{ .hw_ep_num =  7, .style = FIFO_TX,   .maxpacket = 32, },
{ .hw_ep_num =  7, .style = FIFO_RX,   .maxpacket = 32, },
{ .hw_ep_num =  8, .style = FIFO_TX,   .maxpacket = 32, },
{ .hw_ep_num =  8, .style = FIFO_RX,   .maxpacket = 32, },
{ .hw_ep_num =  9, .style = FIFO_TX,   .maxpacket = 32, },
{ .hw_ep_num =  9, .style = FIFO_RX,   .maxpacket = 32, },
{ .hw_ep_num = 10, .style = FIFO_TX,   .maxpacket = 32, },
{ .hw_ep_num = 10, .style = FIFO_RX,   .maxpacket = 32, },
{ .hw_ep_num = 11, .style = FIFO_TX,   .maxpacket = 32, },
{ .hw_ep_num = 11, .style = FIFO_RX,   .maxpacket = 32, },
{ .hw_ep_num = 12, .style = FIFO_TX,   .maxpacket = 32, },
{ .hw_ep_num = 12, .style = FIFO_RX,   .maxpacket = 32, },
{ .hw_ep_num = 13, .style = FIFO_RXTX, .maxpacket = 512, },
{ .hw_ep_num = 14, .style = FIFO_RXTX, .maxpacket = 1024, },
{ .hw_ep_num = 15, .style = FIFO_RXTX, .maxpacket = 1024, },
};
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/*
 * configure a fifo; for non-shared endpoints, this may be called
 * once for a tx fifo and once for an rx fifo.
 *
 * returns negative errno or offset for next fifo.
 */
1163
static int __devinit
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fifo_setup(struct musb *musb, struct musb_hw_ep  *hw_ep,
1165
		const struct musb_fifo_cfg *cfg, u16 offset)
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{
	void __iomem	*mbase = musb->mregs;
	int	size = 0;
	u16	maxpacket = cfg->maxpacket;
	u16	c_off = offset >> 3;
	u8	c_size;

	/* expect hw_ep has already been zero-initialized */

	size = ffs(max(maxpacket, (u16) 8)) - 1;
	maxpacket = 1 << size;

	c_size = size - 3;
	if (cfg->mode == BUF_DOUBLE) {
1180 1181
		if ((offset + (maxpacket << 1)) >
				(1 << (musb->config->ram_bits + 2)))
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			return -EMSGSIZE;
		c_size |= MUSB_FIFOSZ_DPB;
	} else {
1185
		if ((offset + maxpacket) > (1 << (musb->config->ram_bits + 2)))
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			return -EMSGSIZE;
	}

	/* configure the FIFO */
	musb_writeb(mbase, MUSB_INDEX, hw_ep->epnum);

	/* EP0 reserved endpoint for control, bidirectional;
	 * EP1 reserved for bulk, two unidirection halves.
	 */
	if (hw_ep->epnum == 1)
		musb->bulk_ep = hw_ep;
	/* REVISIT error check:  be sure ep0 can both rx and tx ... */
	switch (cfg->style) {
	case FIFO_TX:
1200 1201
		musb_write_txfifosz(mbase, c_size);
		musb_write_txfifoadd(mbase, c_off);
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		hw_ep->tx_double_buffered = !!(c_size & MUSB_FIFOSZ_DPB);
		hw_ep->max_packet_sz_tx = maxpacket;
		break;
	case FIFO_RX:
1206 1207
		musb_write_rxfifosz(mbase, c_size);
		musb_write_rxfifoadd(mbase, c_off);
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		hw_ep->rx_double_buffered = !!(c_size & MUSB_FIFOSZ_DPB);
		hw_ep->max_packet_sz_rx = maxpacket;
		break;
	case FIFO_RXTX:
1212 1213
		musb_write_txfifosz(mbase, c_size);
		musb_write_txfifoadd(mbase, c_off);
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		hw_ep->rx_double_buffered = !!(c_size & MUSB_FIFOSZ_DPB);
		hw_ep->max_packet_sz_rx = maxpacket;

1217 1218
		musb_write_rxfifosz(mbase, c_size);
		musb_write_rxfifoadd(mbase, c_off);
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		hw_ep->tx_double_buffered = hw_ep->rx_double_buffered;
		hw_ep->max_packet_sz_tx = maxpacket;

		hw_ep->is_shared_fifo = true;
		break;
	}

	/* NOTE rx and tx endpoint irqs aren't managed separately,
	 * which happens to be ok
	 */
	musb->epmask |= (1 << hw_ep->epnum);

	return offset + (maxpacket << ((c_size & MUSB_FIFOSZ_DPB) ? 1 : 0));
}

1234
static struct musb_fifo_cfg __devinitdata ep0_cfg = {
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	.style = FIFO_RXTX, .maxpacket = 64,
};

1238
static int __devinit ep_config_from_table(struct musb *musb)
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{
1240
	const struct musb_fifo_cfg	*cfg;
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	unsigned		i, n;
	int			offset;
	struct musb_hw_ep	*hw_ep = musb->endpoints;

1245 1246 1247 1248 1249 1250
	if (musb->config->fifo_cfg) {
		cfg = musb->config->fifo_cfg;
		n = musb->config->fifo_cfg_size;
		goto done;
	}

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	switch (fifo_mode) {
	default:
		fifo_mode = 0;
		/* FALLTHROUGH */
	case 0:
		cfg = mode_0_cfg;
		n = ARRAY_SIZE(mode_0_cfg);
		break;
	case 1:
		cfg = mode_1_cfg;
		n = ARRAY_SIZE(mode_1_cfg);
		break;
	case 2:
		cfg = mode_2_cfg;
		n = ARRAY_SIZE(mode_2_cfg);
		break;
	case 3:
		cfg = mode_3_cfg;
		n = ARRAY_SIZE(mode_3_cfg);
		break;
	case 4:
		cfg = mode_4_cfg;
		n = ARRAY_SIZE(mode_4_cfg);
		break;
1275 1276 1277 1278
	case 5:
		cfg = mode_5_cfg;
		n = ARRAY_SIZE(mode_5_cfg);
		break;
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	}

	printk(KERN_DEBUG "%s: setup fifo_mode %d\n",
			musb_driver_name, fifo_mode);


1285
done:
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	offset = fifo_setup(musb, hw_ep, &ep0_cfg, 0);
	/* assert(offset > 0) */

	/* NOTE:  for RTL versions >= 1.400 EPINFO and RAMINFO would
1290
	 * be better than static musb->config->num_eps and DYN_FIFO_SIZE...
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	 */

	for (i = 0; i < n; i++) {
		u8	epn = cfg->hw_ep_num;

1296
		if (epn >= musb->config->num_eps) {
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			pr_debug("%s: invalid ep %d\n",
					musb_driver_name, epn);
1299
			return -EINVAL;
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		}
		offset = fifo_setup(musb, hw_ep + epn, cfg++, offset);
		if (offset < 0) {
			pr_debug("%s: mem overrun, ep %d\n",
					musb_driver_name, epn);
			return -EINVAL;
		}
		epn++;
		musb->nr_endpoints = max(epn, musb->nr_endpoints);
	}

	printk(KERN_DEBUG "%s: %d/%d max ep, %d/%d memory\n",
			musb_driver_name,
1313 1314
			n + 1, musb->config->num_eps * 2 - 1,
			offset, (1 << (musb->config->ram_bits + 2)));
F
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	if (!musb->bulk_ep) {
		pr_debug("%s: missing bulk\n", musb_driver_name);
		return -EINVAL;
	}

	return 0;
}


/*
 * ep_config_from_hw - when MUSB_C_DYNFIFO_DEF is false
 * @param musb the controller
 */
1329
static int __devinit ep_config_from_hw(struct musb *musb)
F
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{
1331
	u8 epnum = 0;
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	struct musb_hw_ep *hw_ep;
	void *mbase = musb->mregs;
1334
	int ret = 0;
F
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1335

1336
	dev_dbg(musb->controller, "<== static silicon ep config\n");
F
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	/* FIXME pick up ep0 maxpacket size */

1340
	for (epnum = 1; epnum < musb->config->num_eps; epnum++) {
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		musb_ep_select(mbase, epnum);
		hw_ep = musb->endpoints + epnum;

1344 1345
		ret = musb_read_fifosize(musb, hw_ep, epnum);
		if (ret < 0)
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			break;

		/* FIXME set up hw_ep->{rx,tx}_double_buffered */

		/* pick an RX/TX endpoint for bulk */
		if (hw_ep->max_packet_sz_tx < 512
				|| hw_ep->max_packet_sz_rx < 512)
			continue;

		/* REVISIT:  this algorithm is lazy, we should at least
		 * try to pick a double buffered endpoint.
		 */
		if (musb->bulk_ep)
			continue;
		musb->bulk_ep = hw_ep;
	}

	if (!musb->bulk_ep) {
		pr_debug("%s: missing bulk\n", musb_driver_name);
		return -EINVAL;
	}

	return 0;
}

enum { MUSB_CONTROLLER_MHDRC, MUSB_CONTROLLER_HDRC, };

/* Initialize MUSB (M)HDRC part of the USB hardware subsystem;
 * configure endpoints, or take their config from silicon
 */
1376
static int __devinit musb_core_init(u16 musb_type, struct musb *musb)
F
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{
	u8 reg;
	char *type;
1380
	char aInfo[90], aRevision[32], aDate[12];
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	void __iomem	*mbase = musb->mregs;
	int		status = 0;
	int		i;

	/* log core options (read using indexed model) */
1386
	reg = musb_read_configdata(mbase);
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	strcpy(aInfo, (reg & MUSB_CONFIGDATA_UTMIDW) ? "UTMI-16" : "UTMI-8");
1389
	if (reg & MUSB_CONFIGDATA_DYNFIFO) {
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		strcat(aInfo, ", dyn FIFOs");
1391 1392
		musb->dyn_fifo = true;
	}
F
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	if (reg & MUSB_CONFIGDATA_MPRXE) {
		strcat(aInfo, ", bulk combine");
		musb->bulk_combine = true;
	}
	if (reg & MUSB_CONFIGDATA_MPTXE) {
		strcat(aInfo, ", bulk split");
		musb->bulk_split = true;
	}
	if (reg & MUSB_CONFIGDATA_HBRXE) {
		strcat(aInfo, ", HB-ISO Rx");
1403
		musb->hb_iso_rx = true;
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	}
	if (reg & MUSB_CONFIGDATA_HBTXE) {
		strcat(aInfo, ", HB-ISO Tx");
1407
		musb->hb_iso_tx = true;
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	}
	if (reg & MUSB_CONFIGDATA_SOFTCONE)
		strcat(aInfo, ", SoftConn");

	printk(KERN_DEBUG "%s: ConfigData=0x%02x (%s)\n",
			musb_driver_name, reg, aInfo);

	aDate[0] = 0;
	if (MUSB_CONTROLLER_MHDRC == musb_type) {
		musb->is_multipoint = 1;
		type = "M";
	} else {
		musb->is_multipoint = 0;
		type = "";
#ifndef	CONFIG_USB_OTG_BLACKLIST_HUB
		printk(KERN_ERR
			"%s: kernel must blacklist external hubs\n",
			musb_driver_name);
#endif
	}

	/* log release info */
1430 1431 1432 1433
	musb->hwvers = musb_read_hwvers(mbase);
	snprintf(aRevision, 32, "%d.%d%s", MUSB_HWVERS_MAJOR(musb->hwvers),
		MUSB_HWVERS_MINOR(musb->hwvers),
		(musb->hwvers & MUSB_HWVERS_RC) ? "RC" : "");
F
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	printk(KERN_DEBUG "%s: %sHDRC RTL version %s %s\n",
			musb_driver_name, type, aRevision, aDate);

	/* configure ep0 */
1438
	musb_configure_ep0(musb);
F
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	/* discover endpoint configuration */
	musb->nr_endpoints = 1;
	musb->epmask = 1;

1444 1445 1446 1447
	if (musb->dyn_fifo)
		status = ep_config_from_table(musb);
	else
		status = ep_config_from_hw(musb);
F
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	if (status < 0)
		return status;

	/* finish init, and print endpoint config */
	for (i = 0; i < musb->nr_endpoints; i++) {
		struct musb_hw_ep	*hw_ep = musb->endpoints + i;

		hw_ep->fifo = MUSB_FIFO_OFFSET(i) + mbase;
1457
#if defined(CONFIG_USB_MUSB_TUSB6010) || defined (CONFIG_USB_MUSB_TUSB6010_MODULE)
F
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		hw_ep->fifo_async = musb->async + 0x400 + MUSB_FIFO_OFFSET(i);
		hw_ep->fifo_sync = musb->sync + 0x400 + MUSB_FIFO_OFFSET(i);
		hw_ep->fifo_sync_va =
			musb->sync_va + 0x400 + MUSB_FIFO_OFFSET(i);

		if (i == 0)
			hw_ep->conf = mbase - 0x400 + TUSB_EP0_CONF;
		else
			hw_ep->conf = mbase + 0x400 + (((i - 1) & 0xf) << 2);
#endif

		hw_ep->regs = MUSB_EP_OFFSET(i, 0) + mbase;
1470
		hw_ep->target_regs = musb_read_target_reg_base(i, mbase);
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		hw_ep->rx_reinit = 1;
		hw_ep->tx_reinit = 1;

		if (hw_ep->max_packet_sz_tx) {
1475
			dev_dbg(musb->controller,
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				"%s: hw_ep %d%s, %smax %d\n",
				musb_driver_name, i,
				hw_ep->is_shared_fifo ? "shared" : "tx",
				hw_ep->tx_double_buffered
					? "doublebuffer, " : "",
				hw_ep->max_packet_sz_tx);
		}
		if (hw_ep->max_packet_sz_rx && !hw_ep->is_shared_fifo) {
1484
			dev_dbg(musb->controller,
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				"%s: hw_ep %d%s, %smax %d\n",
				musb_driver_name, i,
				"rx",
				hw_ep->rx_double_buffered
					? "doublebuffer, " : "",
				hw_ep->max_packet_sz_rx);
		}
		if (!(hw_ep->max_packet_sz_tx || hw_ep->max_packet_sz_rx))
1493
			dev_dbg(musb->controller, "hw_ep %d not configured\n", i);
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	}

	return 0;
}

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

1501
#if defined(CONFIG_SOC_OMAP2430) || defined(CONFIG_SOC_OMAP3430) || \
1502
	defined(CONFIG_ARCH_OMAP4) || defined(CONFIG_ARCH_U8500)
F
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1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520

static irqreturn_t generic_interrupt(int irq, void *__hci)
{
	unsigned long	flags;
	irqreturn_t	retval = IRQ_NONE;
	struct musb	*musb = __hci;

	spin_lock_irqsave(&musb->lock, flags);

	musb->int_usb = musb_readb(musb->mregs, MUSB_INTRUSB);
	musb->int_tx = musb_readw(musb->mregs, MUSB_INTRTX);
	musb->int_rx = musb_readw(musb->mregs, MUSB_INTRRX);

	if (musb->int_usb || musb->int_tx || musb->int_rx)
		retval = musb_interrupt(musb);

	spin_unlock_irqrestore(&musb->lock, flags);

1521
	return retval;
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1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544
}

#else
#define generic_interrupt	NULL
#endif

/*
 * handle all the irqs defined by the HDRC core. for now we expect:  other
 * irq sources (phy, dma, etc) will be handled first, musb->int_* values
 * will be assigned, and the irq will already have been acked.
 *
 * called in irq context with spinlock held, irqs blocked
 */
irqreturn_t musb_interrupt(struct musb *musb)
{
	irqreturn_t	retval = IRQ_NONE;
	u8		devctl, power;
	int		ep_num;
	u32		reg;

	devctl = musb_readb(musb->mregs, MUSB_DEVCTL);
	power = musb_readb(musb->mregs, MUSB_POWER);

1545
	dev_dbg(musb->controller, "** IRQ %s usb%04x tx%04x rx%04x\n",
F
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1546 1547 1548 1549 1550 1551
		(devctl & MUSB_DEVCTL_HM) ? "host" : "peripheral",
		musb->int_usb, musb->int_tx, musb->int_rx);

	/* the core can interrupt us for multiple reasons; docs have
	 * a generic interrupt flowchart to follow
	 */
1552
	if (musb->int_usb)
F
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1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608
		retval |= musb_stage0_irq(musb, musb->int_usb,
				devctl, power);

	/* "stage 1" is handling endpoint irqs */

	/* handle endpoint 0 first */
	if (musb->int_tx & 1) {
		if (devctl & MUSB_DEVCTL_HM)
			retval |= musb_h_ep0_irq(musb);
		else
			retval |= musb_g_ep0_irq(musb);
	}

	/* RX on endpoints 1-15 */
	reg = musb->int_rx >> 1;
	ep_num = 1;
	while (reg) {
		if (reg & 1) {
			/* musb_ep_select(musb->mregs, ep_num); */
			/* REVISIT just retval = ep->rx_irq(...) */
			retval = IRQ_HANDLED;
			if (devctl & MUSB_DEVCTL_HM) {
				if (is_host_capable())
					musb_host_rx(musb, ep_num);
			} else {
				if (is_peripheral_capable())
					musb_g_rx(musb, ep_num);
			}
		}

		reg >>= 1;
		ep_num++;
	}

	/* TX on endpoints 1-15 */
	reg = musb->int_tx >> 1;
	ep_num = 1;
	while (reg) {
		if (reg & 1) {
			/* musb_ep_select(musb->mregs, ep_num); */
			/* REVISIT just retval |= ep->tx_irq(...) */
			retval = IRQ_HANDLED;
			if (devctl & MUSB_DEVCTL_HM) {
				if (is_host_capable())
					musb_host_tx(musb, ep_num);
			} else {
				if (is_peripheral_capable())
					musb_g_tx(musb, ep_num);
			}
		}
		reg >>= 1;
		ep_num++;
	}

	return retval;
}
1609
EXPORT_SYMBOL_GPL(musb_interrupt);
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1610 1611

#ifndef CONFIG_MUSB_PIO_ONLY
1612
static bool __devinitdata use_dma = 1;
F
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1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655

/* "modprobe ... use_dma=0" etc */
module_param(use_dma, bool, 0);
MODULE_PARM_DESC(use_dma, "enable/disable use of DMA");

void musb_dma_completion(struct musb *musb, u8 epnum, u8 transmit)
{
	u8	devctl = musb_readb(musb->mregs, MUSB_DEVCTL);

	/* called with controller lock already held */

	if (!epnum) {
#ifndef CONFIG_USB_TUSB_OMAP_DMA
		if (!is_cppi_enabled()) {
			/* endpoint 0 */
			if (devctl & MUSB_DEVCTL_HM)
				musb_h_ep0_irq(musb);
			else
				musb_g_ep0_irq(musb);
		}
#endif
	} else {
		/* endpoints 1..15 */
		if (transmit) {
			if (devctl & MUSB_DEVCTL_HM) {
				if (is_host_capable())
					musb_host_tx(musb, epnum);
			} else {
				if (is_peripheral_capable())
					musb_g_tx(musb, epnum);
			}
		} else {
			/* receive */
			if (devctl & MUSB_DEVCTL_HM) {
				if (is_host_capable())
					musb_host_rx(musb, epnum);
			} else {
				if (is_peripheral_capable())
					musb_g_rx(musb, epnum);
			}
		}
	}
}
1656
EXPORT_SYMBOL_GPL(musb_dma_completion);
F
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1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673

#else
#define use_dma			0
#endif

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

#ifdef CONFIG_SYSFS

static ssize_t
musb_mode_show(struct device *dev, struct device_attribute *attr, char *buf)
{
	struct musb *musb = dev_to_musb(dev);
	unsigned long flags;
	int ret = -EINVAL;

	spin_lock_irqsave(&musb->lock, flags);
1674
	ret = sprintf(buf, "%s\n", otg_state_string(musb->xceiv->state));
F
Felipe Balbi 已提交
1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685
	spin_unlock_irqrestore(&musb->lock, flags);

	return ret;
}

static ssize_t
musb_mode_store(struct device *dev, struct device_attribute *attr,
		const char *buf, size_t n)
{
	struct musb	*musb = dev_to_musb(dev);
	unsigned long	flags;
D
David Brownell 已提交
1686
	int		status;
F
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1687 1688

	spin_lock_irqsave(&musb->lock, flags);
D
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1689 1690 1691 1692 1693 1694 1695 1696
	if (sysfs_streq(buf, "host"))
		status = musb_platform_set_mode(musb, MUSB_HOST);
	else if (sysfs_streq(buf, "peripheral"))
		status = musb_platform_set_mode(musb, MUSB_PERIPHERAL);
	else if (sysfs_streq(buf, "otg"))
		status = musb_platform_set_mode(musb, MUSB_OTG);
	else
		status = -EINVAL;
F
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1697 1698
	spin_unlock_irqrestore(&musb->lock, flags);

D
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1699
	return (status == 0) ? n : status;
F
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}
static DEVICE_ATTR(mode, 0644, musb_mode_show, musb_mode_store);

static ssize_t
musb_vbus_store(struct device *dev, struct device_attribute *attr,
		const char *buf, size_t n)
{
	struct musb	*musb = dev_to_musb(dev);
	unsigned long	flags;
	unsigned long	val;

	if (sscanf(buf, "%lu", &val) < 1) {
1712
		dev_err(dev, "Invalid VBUS timeout ms value\n");
F
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1713 1714 1715 1716
		return -EINVAL;
	}

	spin_lock_irqsave(&musb->lock, flags);
D
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1717 1718
	/* force T(a_wait_bcon) to be zero/unlimited *OR* valid */
	musb->a_wait_bcon = val ? max_t(int, val, OTG_TIME_A_WAIT_BCON) : 0 ;
1719
	if (musb->xceiv->state == OTG_STATE_A_WAIT_BCON)
F
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1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736
		musb->is_active = 0;
	musb_platform_try_idle(musb, jiffies + msecs_to_jiffies(val));
	spin_unlock_irqrestore(&musb->lock, flags);

	return n;
}

static ssize_t
musb_vbus_show(struct device *dev, struct device_attribute *attr, char *buf)
{
	struct musb	*musb = dev_to_musb(dev);
	unsigned long	flags;
	unsigned long	val;
	int		vbus;

	spin_lock_irqsave(&musb->lock, flags);
	val = musb->a_wait_bcon;
D
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1737 1738 1739
	/* FIXME get_vbus_status() is normally #defined as false...
	 * and is effectively TUSB-specific.
	 */
F
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1740 1741 1742
	vbus = musb_platform_get_vbus_status(musb);
	spin_unlock_irqrestore(&musb->lock, flags);

D
David Brownell 已提交
1743
	return sprintf(buf, "Vbus %s, timeout %lu msec\n",
F
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1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759
			vbus ? "on" : "off", val);
}
static DEVICE_ATTR(vbus, 0644, musb_vbus_show, musb_vbus_store);

/* Gadget drivers can't know that a host is connected so they might want
 * to start SRP, but users can.  This allows userspace to trigger SRP.
 */
static ssize_t
musb_srp_store(struct device *dev, struct device_attribute *attr,
		const char *buf, size_t n)
{
	struct musb	*musb = dev_to_musb(dev);
	unsigned short	srp;

	if (sscanf(buf, "%hu", &srp) != 1
			|| (srp != 1)) {
1760
		dev_err(dev, "SRP: Value must be 1\n");
F
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1761 1762 1763 1764 1765 1766 1767 1768 1769 1770
		return -EINVAL;
	}

	if (srp == 1)
		musb_g_wakeup(musb);

	return n;
}
static DEVICE_ATTR(srp, 0644, NULL, musb_srp_store);

F
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static struct attribute *musb_attributes[] = {
	&dev_attr_mode.attr,
	&dev_attr_vbus.attr,
	&dev_attr_srp.attr,
	NULL
};

static const struct attribute_group musb_attr_group = {
	.attrs = musb_attributes,
};

F
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1782 1783 1784 1785 1786 1787 1788 1789
#endif	/* sysfs */

/* Only used to provide driver mode change events */
static void musb_irq_work(struct work_struct *data)
{
	struct musb *musb = container_of(data, struct musb, irq_work);
	static int old_state;

1790 1791
	if (musb->xceiv->state != old_state) {
		old_state = musb->xceiv->state;
F
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		sysfs_notify(&musb->controller->kobj, NULL, "mode");
	}
}

/* --------------------------------------------------------------------------
 * Init support
 */

1800
static struct musb *__devinit
1801 1802
allocate_instance(struct device *dev,
		struct musb_hdrc_config *config, void __iomem *mbase)
F
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1803 1804 1805 1806 1807 1808
{
	struct musb		*musb;
	struct musb_hw_ep	*ep;
	int			epnum;
	struct usb_hcd	*hcd;

1809
	hcd = usb_create_hcd(&musb_hc_driver, dev, dev_name(dev));
F
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1810 1811 1812 1813 1814 1815 1816 1817 1818 1819
	if (!hcd)
		return NULL;
	/* usbcore sets dev->driver_data to hcd, and sometimes uses that... */

	musb = hcd_to_musb(hcd);
	INIT_LIST_HEAD(&musb->control);
	INIT_LIST_HEAD(&musb->in_bulk);
	INIT_LIST_HEAD(&musb->out_bulk);

	hcd->uses_new_polling = 1;
F
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1820
	hcd->has_tt = 1;
F
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1821 1822

	musb->vbuserr_retry = VBUSERR_RETRY_COUNT;
D
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1823
	musb->a_wait_bcon = OTG_TIME_A_WAIT_BCON;
1824
	dev_set_drvdata(dev, musb);
F
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1825 1826 1827
	musb->mregs = mbase;
	musb->ctrl_base = mbase;
	musb->nIrq = -ENODEV;
1828
	musb->config = config;
1829
	BUG_ON(musb->config->num_eps > MUSB_C_NUM_EPS);
F
Felipe Balbi 已提交
1830
	for (epnum = 0, ep = musb->endpoints;
1831
			epnum < musb->config->num_eps;
F
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1832 1833 1834 1835 1836 1837
			epnum++, ep++) {
		ep->musb = musb;
		ep->epnum = epnum;
	}

	musb->controller = dev;
1838

F
Felipe Balbi 已提交
1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849
	return musb;
}

static void musb_free(struct musb *musb)
{
	/* this has multiple entry modes. it handles fault cleanup after
	 * probe(), where things may be partially set up, as well as rmmod
	 * cleanup after everything's been de-activated.
	 */

#ifdef CONFIG_SYSFS
F
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1850
	sysfs_remove_group(&musb->controller->kobj, &musb_attr_group);
F
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1851 1852
#endif

A
Ajay Kumar Gupta 已提交
1853 1854 1855
	if (musb->nIrq >= 0) {
		if (musb->irq_wake)
			disable_irq_wake(musb->nIrq);
F
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1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875
		free_irq(musb->nIrq, musb);
	}
	if (is_dma_capable() && musb->dma_controller) {
		struct dma_controller	*c = musb->dma_controller;

		(void) c->stop(c);
		dma_controller_destroy(c);
	}

	kfree(musb);
}

/*
 * Perform generic per-controller initialization.
 *
 * @pDevice: the controller (already clocked, etc)
 * @nIrq: irq
 * @mregs: virtual address of controller registers,
 *	not yet corrected for platform-specific offsets
 */
1876
static int __devinit
F
Felipe Balbi 已提交
1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887
musb_init_controller(struct device *dev, int nIrq, void __iomem *ctrl)
{
	int			status;
	struct musb		*musb;
	struct musb_hdrc_platform_data *plat = dev->platform_data;

	/* The driver might handle more features than the board; OK.
	 * Fail when the board needs a feature that's not enabled.
	 */
	if (!plat) {
		dev_dbg(dev, "no platform_data?\n");
1888 1889
		status = -ENODEV;
		goto fail0;
F
Felipe Balbi 已提交
1890
	}
1891

F
Felipe Balbi 已提交
1892
	/* allocate */
1893
	musb = allocate_instance(dev, plat->config, ctrl);
1894 1895 1896 1897
	if (!musb) {
		status = -ENOMEM;
		goto fail0;
	}
F
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1898

1899 1900 1901 1902
	pm_runtime_use_autosuspend(musb->controller);
	pm_runtime_set_autosuspend_delay(musb->controller, 200);
	pm_runtime_enable(musb->controller);

F
Felipe Balbi 已提交
1903 1904 1905 1906
	spin_lock_init(&musb->lock);
	musb->board_mode = plat->mode;
	musb->board_set_power = plat->set_power;
	musb->min_power = plat->min_power;
1907
	musb->ops = plat->platform_ops;
F
Felipe Balbi 已提交
1908

1909 1910 1911 1912 1913 1914
	/* The musb_platform_init() call:
	 *   - adjusts musb->mregs and musb->isr if needed,
	 *   - may initialize an integrated tranceiver
	 *   - initializes musb->xceiv, usually by otg_get_transceiver()
	 *   - stops powering VBUS
	 *
1915
	 * There are various transceiver configurations.  Blackfin,
1916 1917 1918
	 * DaVinci, TUSB60x0, and others integrate them.  OMAP3 uses
	 * external/discrete ones in various flavors (twl4030 family,
	 * isp1504, non-OTG, etc) mostly hooking up through ULPI.
F
Felipe Balbi 已提交
1919 1920
	 */
	musb->isr = generic_interrupt;
1921
	status = musb_platform_init(musb);
F
Felipe Balbi 已提交
1922
	if (status < 0)
1923
		goto fail1;
1924

F
Felipe Balbi 已提交
1925 1926
	if (!musb->isr) {
		status = -ENODEV;
1927
		goto fail2;
F
Felipe Balbi 已提交
1928 1929
	}

1930
	if (!musb->xceiv->io_ops) {
1931
		musb->xceiv->io_dev = musb->controller;
1932 1933 1934 1935
		musb->xceiv->io_priv = musb->mregs;
		musb->xceiv->io_ops = &musb_ulpi_access;
	}

1936 1937
	pm_runtime_get_sync(musb->controller);

F
Felipe Balbi 已提交
1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956
#ifndef CONFIG_MUSB_PIO_ONLY
	if (use_dma && dev->dma_mask) {
		struct dma_controller	*c;

		c = dma_controller_create(musb, musb->mregs);
		musb->dma_controller = c;
		if (c)
			(void) c->start(c);
	}
#endif
	/* ideally this would be abstracted in platform setup */
	if (!is_dma_capable() || !musb->dma_controller)
		dev->dma_mask = NULL;

	/* be sure interrupts are disabled before connecting ISR */
	musb_platform_disable(musb);
	musb_generic_disable(musb);

	/* setup musb parts of the core (especially endpoints) */
1957
	status = musb_core_init(plat->config->multipoint
F
Felipe Balbi 已提交
1958 1959 1960
			? MUSB_CONTROLLER_MHDRC
			: MUSB_CONTROLLER_HDRC, musb);
	if (status < 0)
1961
		goto fail3;
F
Felipe Balbi 已提交
1962

D
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1963 1964
	setup_timer(&musb->otg_timer, musb_otg_timer_func, (unsigned long) musb);

F
Felipe Balbi 已提交
1965 1966 1967 1968
	/* Init IRQ workqueue before request_irq */
	INIT_WORK(&musb->irq_work, musb_irq_work);

	/* attach to the IRQ */
1969
	if (request_irq(nIrq, musb->isr, 0, dev_name(dev), musb)) {
F
Felipe Balbi 已提交
1970 1971
		dev_err(dev, "request_irq %d failed!\n", nIrq);
		status = -ENODEV;
1972
		goto fail3;
F
Felipe Balbi 已提交
1973 1974 1975
	}
	musb->nIrq = nIrq;
/* FIXME this handles wakeup irqs wrong */
1976 1977
	if (enable_irq_wake(nIrq) == 0) {
		musb->irq_wake = 1;
F
Felipe Balbi 已提交
1978
		device_init_wakeup(dev, 1);
1979 1980 1981
	} else {
		musb->irq_wake = 0;
	}
F
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1982

1983 1984
	/* host side needs more setup */
	if (is_host_enabled(musb)) {
F
Felipe Balbi 已提交
1985 1986
		struct usb_hcd	*hcd = musb_to_hcd(musb);

1987
		otg_set_host(musb->xceiv->otg, &hcd->self);
1988 1989

		if (is_otg_enabled(musb))
F
Felipe Balbi 已提交
1990
			hcd->self.otg_port = 1;
1991
		musb->xceiv->otg->host = &hcd->self;
F
Felipe Balbi 已提交
1992
		hcd->power_budget = 2 * (plat->power ? : 250);
1993 1994 1995

		/* program PHY to use external vBus if required */
		if (plat->extvbus) {
1996
			u8 busctl = musb_read_ulpi_buscontrol(musb->mregs);
1997
			busctl |= MUSB_ULPI_USE_EXTVBUS;
1998
			musb_write_ulpi_buscontrol(musb->mregs, busctl);
1999
		}
F
Felipe Balbi 已提交
2000 2001 2002 2003 2004 2005 2006
	}

	/* For the host-only role, we can activate right away.
	 * (We expect the ID pin to be forcibly grounded!!)
	 * Otherwise, wait till the gadget driver hooks up.
	 */
	if (!is_otg_enabled(musb) && is_host_enabled(musb)) {
2007 2008
		struct usb_hcd	*hcd = musb_to_hcd(musb);

F
Felipe Balbi 已提交
2009
		MUSB_HST_MODE(musb);
2010
		musb->xceiv->otg->default_a = 1;
2011
		musb->xceiv->state = OTG_STATE_A_IDLE;
F
Felipe Balbi 已提交
2012

2013
		status = usb_add_hcd(musb_to_hcd(musb), 0, 0);
F
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2014

2015
		hcd->self.uses_pio_for_control = 1;
2016
		dev_dbg(musb->controller, "%s mode, status %d, devctl %02x %c\n",
F
Felipe Balbi 已提交
2017 2018 2019 2020 2021 2022 2023 2024
			"HOST", status,
			musb_readb(musb->mregs, MUSB_DEVCTL),
			(musb_readb(musb->mregs, MUSB_DEVCTL)
					& MUSB_DEVCTL_BDEVICE
				? 'B' : 'A'));

	} else /* peripheral is enabled */ {
		MUSB_DEV_MODE(musb);
2025
		musb->xceiv->otg->default_a = 0;
2026
		musb->xceiv->state = OTG_STATE_B_IDLE;
F
Felipe Balbi 已提交
2027 2028 2029

		status = musb_gadget_setup(musb);

2030
		dev_dbg(musb->controller, "%s mode, status %d, dev%02x\n",
F
Felipe Balbi 已提交
2031 2032 2033 2034 2035
			is_otg_enabled(musb) ? "OTG" : "PERIPHERAL",
			status,
			musb_readb(musb->mregs, MUSB_DEVCTL));

	}
2036
	if (status < 0)
2037
		goto fail3;
F
Felipe Balbi 已提交
2038

F
Felipe Balbi 已提交
2039 2040
	status = musb_init_debugfs(musb);
	if (status < 0)
2041
		goto fail4;
F
Felipe Balbi 已提交
2042

F
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2043
#ifdef CONFIG_SYSFS
F
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2044
	status = sysfs_create_group(&musb->controller->kobj, &musb_attr_group);
2045
	if (status)
2046
		goto fail5;
2047
#endif
F
Felipe Balbi 已提交
2048

2049 2050
	pm_runtime_put(musb->controller);

2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062
	dev_info(dev, "USB %s mode controller at %p using %s, IRQ %d\n",
			({char *s;
			 switch (musb->board_mode) {
			 case MUSB_HOST:		s = "Host"; break;
			 case MUSB_PERIPHERAL:	s = "Peripheral"; break;
			 default:		s = "OTG"; break;
			 }; s; }),
			ctrl,
			(is_dma_capable() && musb->dma_controller)
			? "DMA" : "PIO",
			musb->nIrq);

2063
	return 0;
F
Felipe Balbi 已提交
2064

2065 2066 2067
fail5:
	musb_exit_debugfs(musb);

2068 2069 2070 2071 2072 2073 2074
fail4:
	if (!is_otg_enabled(musb) && is_host_enabled(musb))
		usb_remove_hcd(musb_to_hcd(musb));
	else
		musb_gadget_cleanup(musb);

fail3:
2075 2076 2077
	pm_runtime_put_sync(musb->controller);

fail2:
2078 2079
	if (musb->irq_wake)
		device_init_wakeup(dev, 0);
F
Felipe Balbi 已提交
2080
	musb_platform_exit(musb);
2081

2082 2083 2084 2085
fail1:
	dev_err(musb->controller,
		"musb_init_controller failed with status %d\n", status);

2086 2087
	musb_free(musb);

2088 2089
fail0:

2090 2091
	return status;

F
Felipe Balbi 已提交
2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103
}

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

/* all implementations (PCI bridge to FPGA, VLYNQ, etc) should just
 * bridge to a platform device; this driver then suffices.
 */

#ifndef CONFIG_MUSB_PIO_ONLY
static u64	*orig_dma_mask;
#endif

2104
static int __devinit musb_probe(struct platform_device *pdev)
F
Felipe Balbi 已提交
2105 2106
{
	struct device	*dev = &pdev->dev;
2107
	int		irq = platform_get_irq_byname(pdev, "mc");
2108
	int		status;
F
Felipe Balbi 已提交
2109 2110 2111 2112
	struct resource	*iomem;
	void __iomem	*base;

	iomem = platform_get_resource(pdev, IORESOURCE_MEM, 0);
S
Sergei Shtylyov 已提交
2113
	if (!iomem || irq <= 0)
F
Felipe Balbi 已提交
2114 2115
		return -ENODEV;

F
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2116
	base = ioremap(iomem->start, resource_size(iomem));
F
Felipe Balbi 已提交
2117 2118 2119 2120 2121 2122 2123 2124 2125
	if (!base) {
		dev_err(dev, "ioremap failed\n");
		return -ENOMEM;
	}

#ifndef CONFIG_MUSB_PIO_ONLY
	/* clobbered by use_dma=n */
	orig_dma_mask = dev->dma_mask;
#endif
2126 2127 2128 2129 2130
	status = musb_init_controller(dev, irq, base);
	if (status < 0)
		iounmap(base);

	return status;
F
Felipe Balbi 已提交
2131 2132
}

2133
static int __devexit musb_remove(struct platform_device *pdev)
F
Felipe Balbi 已提交
2134 2135 2136 2137 2138 2139 2140 2141 2142
{
	struct musb	*musb = dev_to_musb(&pdev->dev);
	void __iomem	*ctrl_base = musb->ctrl_base;

	/* this gets called on rmmod.
	 *  - Host mode: host may still be active
	 *  - Peripheral mode: peripheral is deactivated (or never-activated)
	 *  - OTG mode: both roles are deactivated (or never-activated)
	 */
F
Felipe Balbi 已提交
2143
	musb_exit_debugfs(musb);
F
Felipe Balbi 已提交
2144
	musb_shutdown(pdev);
2145

F
Felipe Balbi 已提交
2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156
	musb_free(musb);
	iounmap(ctrl_base);
	device_init_wakeup(&pdev->dev, 0);
#ifndef CONFIG_MUSB_PIO_ONLY
	pdev->dev.dma_mask = orig_dma_mask;
#endif
	return 0;
}

#ifdef	CONFIG_PM

2157
static void musb_save_context(struct musb *musb)
2158 2159 2160
{
	int i;
	void __iomem *musb_base = musb->mregs;
2161
	void __iomem *epio;
2162 2163

	if (is_host_enabled(musb)) {
2164 2165 2166
		musb->context.frame = musb_readw(musb_base, MUSB_FRAME);
		musb->context.testmode = musb_readb(musb_base, MUSB_TESTMODE);
		musb->context.busctl = musb_read_ulpi_buscontrol(musb->mregs);
2167
	}
2168 2169 2170 2171 2172 2173
	musb->context.power = musb_readb(musb_base, MUSB_POWER);
	musb->context.intrtxe = musb_readw(musb_base, MUSB_INTRTXE);
	musb->context.intrrxe = musb_readw(musb_base, MUSB_INTRRXE);
	musb->context.intrusbe = musb_readb(musb_base, MUSB_INTRUSBE);
	musb->context.index = musb_readb(musb_base, MUSB_INDEX);
	musb->context.devctl = musb_readb(musb_base, MUSB_DEVCTL);
2174

2175
	for (i = 0; i < musb->config->num_eps; ++i) {
2176 2177 2178 2179 2180 2181 2182 2183 2184 2185
		struct musb_hw_ep	*hw_ep;

		hw_ep = &musb->endpoints[i];
		if (!hw_ep)
			continue;

		epio = hw_ep->regs;
		if (!epio)
			continue;

2186
		musb_writeb(musb_base, MUSB_INDEX, i);
2187
		musb->context.index_regs[i].txmaxp =
2188
			musb_readw(epio, MUSB_TXMAXP);
2189
		musb->context.index_regs[i].txcsr =
2190
			musb_readw(epio, MUSB_TXCSR);
2191
		musb->context.index_regs[i].rxmaxp =
2192
			musb_readw(epio, MUSB_RXMAXP);
2193
		musb->context.index_regs[i].rxcsr =
2194
			musb_readw(epio, MUSB_RXCSR);
2195 2196

		if (musb->dyn_fifo) {
2197
			musb->context.index_regs[i].txfifoadd =
2198
					musb_read_txfifoadd(musb_base);
2199
			musb->context.index_regs[i].rxfifoadd =
2200
					musb_read_rxfifoadd(musb_base);
2201
			musb->context.index_regs[i].txfifosz =
2202
					musb_read_txfifosz(musb_base);
2203
			musb->context.index_regs[i].rxfifosz =
2204 2205 2206
					musb_read_rxfifosz(musb_base);
		}
		if (is_host_enabled(musb)) {
2207
			musb->context.index_regs[i].txtype =
2208
				musb_readb(epio, MUSB_TXTYPE);
2209
			musb->context.index_regs[i].txinterval =
2210
				musb_readb(epio, MUSB_TXINTERVAL);
2211
			musb->context.index_regs[i].rxtype =
2212
				musb_readb(epio, MUSB_RXTYPE);
2213
			musb->context.index_regs[i].rxinterval =
2214
				musb_readb(epio, MUSB_RXINTERVAL);
2215

2216
			musb->context.index_regs[i].txfunaddr =
2217
				musb_read_txfunaddr(musb_base, i);
2218
			musb->context.index_regs[i].txhubaddr =
2219
				musb_read_txhubaddr(musb_base, i);
2220
			musb->context.index_regs[i].txhubport =
2221 2222
				musb_read_txhubport(musb_base, i);

2223
			musb->context.index_regs[i].rxfunaddr =
2224
				musb_read_rxfunaddr(musb_base, i);
2225
			musb->context.index_regs[i].rxhubaddr =
2226
				musb_read_rxhubaddr(musb_base, i);
2227
			musb->context.index_regs[i].rxhubport =
2228 2229 2230 2231 2232
				musb_read_rxhubport(musb_base, i);
		}
	}
}

2233
static void musb_restore_context(struct musb *musb)
2234 2235 2236 2237
{
	int i;
	void __iomem *musb_base = musb->mregs;
	void __iomem *ep_target_regs;
2238
	void __iomem *epio;
2239 2240

	if (is_host_enabled(musb)) {
2241 2242 2243
		musb_writew(musb_base, MUSB_FRAME, musb->context.frame);
		musb_writeb(musb_base, MUSB_TESTMODE, musb->context.testmode);
		musb_write_ulpi_buscontrol(musb->mregs, musb->context.busctl);
2244
	}
2245 2246 2247 2248 2249
	musb_writeb(musb_base, MUSB_POWER, musb->context.power);
	musb_writew(musb_base, MUSB_INTRTXE, musb->context.intrtxe);
	musb_writew(musb_base, MUSB_INTRRXE, musb->context.intrrxe);
	musb_writeb(musb_base, MUSB_INTRUSBE, musb->context.intrusbe);
	musb_writeb(musb_base, MUSB_DEVCTL, musb->context.devctl);
2250

2251
	for (i = 0; i < musb->config->num_eps; ++i) {
2252 2253 2254 2255 2256 2257 2258 2259 2260 2261
		struct musb_hw_ep	*hw_ep;

		hw_ep = &musb->endpoints[i];
		if (!hw_ep)
			continue;

		epio = hw_ep->regs;
		if (!epio)
			continue;

2262
		musb_writeb(musb_base, MUSB_INDEX, i);
2263
		musb_writew(epio, MUSB_TXMAXP,
2264
			musb->context.index_regs[i].txmaxp);
2265
		musb_writew(epio, MUSB_TXCSR,
2266
			musb->context.index_regs[i].txcsr);
2267
		musb_writew(epio, MUSB_RXMAXP,
2268
			musb->context.index_regs[i].rxmaxp);
2269
		musb_writew(epio, MUSB_RXCSR,
2270
			musb->context.index_regs[i].rxcsr);
2271 2272 2273

		if (musb->dyn_fifo) {
			musb_write_txfifosz(musb_base,
2274
				musb->context.index_regs[i].txfifosz);
2275
			musb_write_rxfifosz(musb_base,
2276
				musb->context.index_regs[i].rxfifosz);
2277
			musb_write_txfifoadd(musb_base,
2278
				musb->context.index_regs[i].txfifoadd);
2279
			musb_write_rxfifoadd(musb_base,
2280
				musb->context.index_regs[i].rxfifoadd);
2281 2282 2283
		}

		if (is_host_enabled(musb)) {
2284
			musb_writeb(epio, MUSB_TXTYPE,
2285
				musb->context.index_regs[i].txtype);
2286
			musb_writeb(epio, MUSB_TXINTERVAL,
2287
				musb->context.index_regs[i].txinterval);
2288
			musb_writeb(epio, MUSB_RXTYPE,
2289
				musb->context.index_regs[i].rxtype);
2290
			musb_writeb(epio, MUSB_RXINTERVAL,
2291

2292
			musb->context.index_regs[i].rxinterval);
2293
			musb_write_txfunaddr(musb_base, i,
2294
				musb->context.index_regs[i].txfunaddr);
2295
			musb_write_txhubaddr(musb_base, i,
2296
				musb->context.index_regs[i].txhubaddr);
2297
			musb_write_txhubport(musb_base, i,
2298
				musb->context.index_regs[i].txhubport);
2299 2300 2301 2302 2303

			ep_target_regs =
				musb_read_target_reg_base(i, musb_base);

			musb_write_rxfunaddr(ep_target_regs,
2304
				musb->context.index_regs[i].rxfunaddr);
2305
			musb_write_rxhubaddr(ep_target_regs,
2306
				musb->context.index_regs[i].rxhubaddr);
2307
			musb_write_rxhubport(ep_target_regs,
2308
				musb->context.index_regs[i].rxhubport);
2309 2310
		}
	}
2311
	musb_writeb(musb_base, MUSB_INDEX, musb->context.index);
2312 2313
}

2314
static int musb_suspend(struct device *dev)
F
Felipe Balbi 已提交
2315
{
2316
	struct musb	*musb = dev_to_musb(dev);
F
Felipe Balbi 已提交
2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334
	unsigned long	flags;

	spin_lock_irqsave(&musb->lock, flags);

	if (is_peripheral_active(musb)) {
		/* FIXME force disconnect unless we know USB will wake
		 * the system up quickly enough to respond ...
		 */
	} else if (is_host_active(musb)) {
		/* we know all the children are suspended; sometimes
		 * they will even be wakeup-enabled.
		 */
	}

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

2335
static int musb_resume_noirq(struct device *dev)
F
Felipe Balbi 已提交
2336 2337
{
	/* for static cmos like DaVinci, register values were preserved
2338 2339
	 * unless for some reason the whole soc powered down or the USB
	 * module got reset through the PSC (vs just being disabled).
F
Felipe Balbi 已提交
2340 2341 2342 2343
	 */
	return 0;
}

2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373
static int musb_runtime_suspend(struct device *dev)
{
	struct musb	*musb = dev_to_musb(dev);

	musb_save_context(musb);

	return 0;
}

static int musb_runtime_resume(struct device *dev)
{
	struct musb	*musb = dev_to_musb(dev);
	static int	first = 1;

	/*
	 * When pm_runtime_get_sync called for the first time in driver
	 * init,  some of the structure is still not initialized which is
	 * used in restore function. But clock needs to be
	 * enabled before any register access, so
	 * pm_runtime_get_sync has to be called.
	 * Also context restore without save does not make
	 * any sense
	 */
	if (!first)
		musb_restore_context(musb);
	first = 0;

	return 0;
}

2374
static const struct dev_pm_ops musb_dev_pm_ops = {
2375 2376
	.suspend	= musb_suspend,
	.resume_noirq	= musb_resume_noirq,
2377 2378
	.runtime_suspend = musb_runtime_suspend,
	.runtime_resume = musb_runtime_resume,
2379 2380 2381
};

#define MUSB_DEV_PM_OPS (&musb_dev_pm_ops)
F
Felipe Balbi 已提交
2382
#else
2383
#define	MUSB_DEV_PM_OPS	NULL
F
Felipe Balbi 已提交
2384 2385 2386 2387 2388 2389 2390
#endif

static struct platform_driver musb_driver = {
	.driver = {
		.name		= (char *)musb_driver_name,
		.bus		= &platform_bus_type,
		.owner		= THIS_MODULE,
2391
		.pm		= MUSB_DEV_PM_OPS,
F
Felipe Balbi 已提交
2392
	},
2393 2394
	.probe		= musb_probe,
	.remove		= __devexit_p(musb_remove),
F
Felipe Balbi 已提交
2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407
	.shutdown	= musb_shutdown,
};

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

static int __init musb_init(void)
{
	if (usb_disabled())
		return 0;

	pr_info("%s: version " MUSB_VERSION ", "
		"?dma?"
		", "
2408
		"otg (peripheral+host)",
2409
		musb_driver_name);
2410
	return platform_driver_register(&musb_driver);
F
Felipe Balbi 已提交
2411
}
2412
module_init(musb_init);
F
Felipe Balbi 已提交
2413 2414 2415 2416 2417 2418

static void __exit musb_cleanup(void)
{
	platform_driver_unregister(&musb_driver);
}
module_exit(musb_cleanup);