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imxusb.c revision 1.1.10.1
      1  1.1.10.1  yamt /*	$NetBSD: imxusb.c,v 1.1.10.1 2012/10/30 17:19:03 yamt Exp $	*/
      2       1.1   bsh /*
      3       1.1   bsh  * Copyright (c) 2009, 2010  Genetec Corporation.  All rights reserved.
      4       1.1   bsh  * Written by Hashimoto Kenichi and Hiroyuki Bessho for Genetec Corporation.
      5       1.1   bsh  *
      6       1.1   bsh  * Redistribution and use in source and binary forms, with or without
      7       1.1   bsh  * modification, are permitted provided that the following conditions
      8       1.1   bsh  * are met:
      9       1.1   bsh  * 1. Redistributions of source code must retain the above copyright
     10       1.1   bsh  *    notice, this list of conditions and the following disclaimer.
     11       1.1   bsh  * 2. Redistributions in binary form must reproduce the above copyright
     12       1.1   bsh  *    notice, this list of conditions and the following disclaimer in the
     13       1.1   bsh  *    documentation and/or other materials provided with the distribution.
     14       1.1   bsh  *
     15       1.1   bsh  * THIS SOFTWARE IS PROVIDED BY GENETEC CORPORATION ``AS IS'' AND
     16       1.1   bsh  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     17       1.1   bsh  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     18       1.1   bsh  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL GENETEC CORPORATION
     19       1.1   bsh  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     20       1.1   bsh  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     21       1.1   bsh  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     22       1.1   bsh  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     23       1.1   bsh  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     24       1.1   bsh  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     25       1.1   bsh  * POSSIBILITY OF SUCH DAMAGE.
     26       1.1   bsh  */
     27       1.1   bsh #include <sys/cdefs.h>
     28  1.1.10.1  yamt __KERNEL_RCSID(0, "$NetBSD: imxusb.c,v 1.1.10.1 2012/10/30 17:19:03 yamt Exp $");
     29       1.1   bsh 
     30       1.1   bsh #include <sys/param.h>
     31       1.1   bsh #include <sys/systm.h>
     32       1.1   bsh #include <sys/conf.h>
     33       1.1   bsh #include <sys/kernel.h>
     34       1.1   bsh #include <sys/device.h>
     35       1.1   bsh #include <sys/intr.h>
     36       1.1   bsh #include <sys/bus.h>
     37       1.1   bsh 
     38       1.1   bsh #include <dev/usb/usb.h>
     39       1.1   bsh #include <dev/usb/usbdi.h>
     40       1.1   bsh #include <dev/usb/usbdivar.h>
     41       1.1   bsh #include <dev/usb/usb_mem.h>
     42       1.1   bsh 
     43       1.1   bsh #include <dev/usb/ehcireg.h>
     44       1.1   bsh #include <dev/usb/ehcivar.h>
     45       1.1   bsh 
     46       1.1   bsh #include <arm/imx/imxusbreg.h>
     47       1.1   bsh #include <arm/imx/imxusbvar.h>
     48       1.1   bsh #include <arm/imx/imxgpiovar.h>
     49       1.1   bsh #include "locators.h"
     50       1.1   bsh 
     51       1.1   bsh #include <dev/usb/ulpireg.h>	/* for test */
     52       1.1   bsh 
     53       1.1   bsh static int	imxehci_match(device_t, cfdata_t, void *);
     54       1.1   bsh static void	imxehci_attach(device_t, device_t, void *);
     55       1.1   bsh 
     56       1.1   bsh uint8_t imxusb_ulpi_read(struct imxehci_softc *sc, int addr);
     57       1.1   bsh void imxusb_ulpi_write(struct imxehci_softc *sc, int addr, uint8_t data);
     58       1.1   bsh static void ulpi_reset(struct imxehci_softc *sc);
     59       1.1   bsh 
     60       1.1   bsh 
     61       1.1   bsh 
     62       1.1   bsh /* attach structures */
     63       1.1   bsh CFATTACH_DECL_NEW(imxehci, sizeof(struct imxehci_softc),
     64       1.1   bsh     imxehci_match, imxehci_attach, NULL, NULL);
     65       1.1   bsh 
     66       1.1   bsh static int
     67       1.1   bsh imxehci_match(device_t parent, cfdata_t cf, void *aux)
     68       1.1   bsh {
     69       1.1   bsh 	struct imxusbc_attach_args *aa = aux;
     70       1.1   bsh 
     71       1.1   bsh 	if (aa->aa_unit < 0 || 3 < aa->aa_unit) {
     72       1.1   bsh 		return 0;
     73       1.1   bsh 	}
     74       1.1   bsh 
     75       1.1   bsh 	return 1;
     76       1.1   bsh }
     77       1.1   bsh 
     78       1.1   bsh static void
     79       1.1   bsh imxehci_attach(device_t parent, device_t self, void *aux)
     80       1.1   bsh {
     81       1.1   bsh 	struct imxusbc_attach_args *aa = aux;
     82       1.1   bsh 	struct imxusbc_softc *usbc = device_private(parent);
     83       1.1   bsh 	struct imxehci_softc *sc = device_private(self);
     84       1.1   bsh 	ehci_softc_t *hsc = &sc->sc_hsc;
     85       1.1   bsh 	bus_space_tag_t iot;
     86       1.1   bsh 	uint16_t hcirev;
     87       1.1   bsh 	usbd_status r;
     88       1.1   bsh 	uint32_t id, hwhost, hwdevice;
     89       1.1   bsh 	const char *comma;
     90       1.1   bsh 
     91       1.1   bsh 	sc->sc_hsc.sc_dev = self;
     92       1.1   bsh 	iot = sc->sc_iot = sc->sc_hsc.iot = aa->aa_iot;
     93       1.1   bsh 	sc->sc_unit = aa->aa_unit;
     94       1.1   bsh 	sc->sc_usbc = usbc;
     95       1.1   bsh 	hsc->sc_bus.hci_private = sc;
     96       1.1   bsh 
     97       1.1   bsh 	aprint_normal("\n");
     98       1.1   bsh 
     99       1.1   bsh 	/* per unit registers */
    100       1.1   bsh 	if (bus_space_subregion(iot, aa->aa_ioh,
    101       1.1   bsh 		aa->aa_unit * IMXUSB_EHCI_SIZE, IMXUSB_EHCI_SIZE,
    102       1.1   bsh 		&sc->sc_ioh) ||
    103       1.1   bsh 	    bus_space_subregion(iot, aa->aa_ioh,
    104       1.1   bsh 		aa->aa_unit * IMXUSB_EHCI_SIZE + IMXUSB_EHCIREGS,
    105       1.1   bsh 		IMXUSB_EHCI_SIZE - IMXUSB_EHCIREGS,
    106       1.1   bsh 		&sc->sc_hsc.ioh)) {
    107       1.1   bsh 
    108       1.1   bsh 		aprint_error_dev(self, "can't subregion\n");
    109       1.1   bsh 		return;
    110       1.1   bsh 	}
    111       1.1   bsh 
    112       1.1   bsh 	id = bus_space_read_4(iot, sc->sc_ioh, IMXUSB_ID);
    113       1.1   bsh 	hcirev = bus_space_read_2(iot, sc->sc_hsc.ioh, EHCI_HCIVERSION);
    114       1.1   bsh 
    115       1.1   bsh 	aprint_normal_dev(self,
    116       1.1   bsh 	    "i.MX USB Controller id=%d revision=%d HCI revision=0x%x\n",
    117       1.1   bsh 	    id & (uint32_t)IMXUSB_ID_ID_MASK,
    118       1.1   bsh 	    (id & (uint32_t)IMXUSB_ID_REVISION_MASK) >>
    119       1.1   bsh 	    	IMXUSB_ID_REVISION_SHIFT,
    120       1.1   bsh 	    hcirev);
    121       1.1   bsh 
    122       1.1   bsh 	hwhost = bus_space_read_4(iot, sc->sc_ioh, IMXUSB_HWHOST);
    123       1.1   bsh 	hwdevice = bus_space_read_4(iot, sc->sc_ioh, IMXUSB_HWDEVICE);
    124       1.1   bsh 
    125       1.1   bsh 	aprint_normal_dev(self, "");
    126       1.1   bsh 
    127       1.1   bsh 	comma = "";
    128       1.1   bsh 	if (hwhost & HWHOST_HC) {
    129       1.1   bsh 		int n_ports = 1 + ((hwhost & HWHOST_NPORT_MASK) >>
    130       1.1   bsh 		    HWHOST_NPORT_SHIFT);
    131       1.1   bsh 		aprint_normal("%d host port%s",
    132       1.1   bsh 		    n_ports, n_ports > 1 ? "s" : "");
    133       1.1   bsh 		comma = ", ";
    134       1.1   bsh 	}
    135       1.1   bsh 
    136       1.1   bsh 	if (hwdevice & HWDEVICE_DC) {
    137       1.1   bsh 		int n_endpoints = (hwdevice & HWDEVICE_DEVEP_MASK) >>
    138       1.1   bsh 		    HWDEVICE_DEVEP_SHIFT;
    139       1.1   bsh 		aprint_normal("%sdevice capable, %d endpoint%s",
    140       1.1   bsh 		    comma,
    141       1.1   bsh 		    n_endpoints, n_endpoints > 1 ? "s" : "");
    142       1.1   bsh 	}
    143       1.1   bsh 	aprint_normal("\n");
    144       1.1   bsh 
    145       1.1   bsh 	sc->sc_hsc.sc_bus.dmatag = aa->aa_dmat;
    146       1.1   bsh 
    147       1.1   bsh 	sc->sc_hsc.sc_offs = bus_space_read_1(iot, sc->sc_hsc.ioh,
    148       1.1   bsh 	    EHCI_CAPLENGTH);
    149       1.1   bsh 
    150       1.1   bsh 	/* Platform dependent setup */
    151       1.1   bsh 	if (usbc->sc_init_md_hook)
    152       1.1   bsh 		usbc->sc_init_md_hook(sc);
    153       1.1   bsh 
    154       1.1   bsh 
    155       1.1   bsh 	imxehci_reset(sc);
    156       1.1   bsh 	imxehci_select_interface(sc, sc->sc_iftype);
    157       1.1   bsh 
    158       1.1   bsh 	if (sc->sc_iftype == IMXUSBC_IF_ULPI) {
    159       1.1   bsh 		bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW, 0);
    160       1.1   bsh 
    161       1.1   bsh 		aprint_normal_dev(hsc->sc_dev,
    162       1.1   bsh 		    "ULPI phy VID 0x%04x PID 0x%04x\n",
    163       1.1   bsh 		    (imxusb_ulpi_read(sc, ULPI_VENDOR_ID_LOW) |
    164       1.1   bsh 			imxusb_ulpi_read(sc, ULPI_VENDOR_ID_HIGH) << 8),
    165       1.1   bsh 		    (imxusb_ulpi_read(sc, ULPI_PRODUCT_ID_LOW) |
    166       1.1   bsh 			imxusb_ulpi_read(sc, ULPI_PRODUCT_ID_HIGH) << 8));
    167       1.1   bsh 
    168       1.1   bsh 		ulpi_reset(sc);
    169       1.1   bsh 
    170       1.1   bsh 	}
    171       1.1   bsh 
    172       1.1   bsh 	imxehci_host_mode(sc);
    173       1.1   bsh 
    174       1.1   bsh 	if (usbc->sc_setup_md_hook)
    175       1.1   bsh 		usbc->sc_setup_md_hook(sc, IMXUSB_HOST);
    176       1.1   bsh 	else if (sc->sc_iftype == IMXUSBC_IF_ULPI) {
    177       1.1   bsh 		imxusb_ulpi_write(sc, ULPI_FUNCTION_CONTROL + ULPI_REG_CLEAR,
    178       1.1   bsh 		    OTG_CONTROL_IDPULLUP);
    179       1.1   bsh 
    180       1.1   bsh 		imxusb_ulpi_write(sc, ULPI_OTG_CONTROL + ULPI_REG_SET,
    181       1.1   bsh 		    OTG_CONTROL_USEEXTVBUSIND |
    182       1.1   bsh 		    OTG_CONTROL_DRVVBUSEXT |
    183       1.1   bsh 		    OTG_CONTROL_DRVVBUS |
    184       1.1   bsh 		    OTG_CONTROL_CHRGVBUS
    185       1.1   bsh 		    );
    186       1.1   bsh 	}
    187       1.1   bsh 
    188       1.1   bsh 	/* Disable interrupts, so we don't get any spurious ones. */
    189  1.1.10.1  yamt 	EOWRITE4(hsc, EHCI_USBINTR, 0);
    190       1.1   bsh 
    191       1.1   bsh 	intr_establish(aa->aa_irq, IPL_USB, IST_LEVEL, ehci_intr, hsc);
    192       1.1   bsh 
    193       1.1   bsh 	/* Figure out vendor for root hub descriptor. */
    194       1.1   bsh 	strlcpy(hsc->sc_vendor, "i.MX", sizeof(hsc->sc_vendor));
    195       1.1   bsh 
    196       1.1   bsh 	r = ehci_init(hsc);
    197       1.1   bsh 	if (r != USBD_NORMAL_COMPLETION) {
    198       1.1   bsh 		aprint_error_dev(self, "init failed, error=%d\n", r);
    199       1.1   bsh 		return;
    200       1.1   bsh 	}
    201       1.1   bsh 
    202       1.1   bsh 	/* Attach usb device. */
    203       1.1   bsh 	hsc->sc_child = config_found(self, &hsc->sc_bus, usbctlprint);
    204       1.1   bsh }
    205       1.1   bsh 
    206       1.1   bsh 
    207       1.1   bsh 
    208       1.1   bsh 
    209       1.1   bsh void
    210       1.1   bsh imxehci_select_interface(struct imxehci_softc *sc, enum imx_usb_if interface)
    211       1.1   bsh {
    212       1.1   bsh 	uint32_t reg;
    213       1.1   bsh 	struct ehci_softc *hsc = &sc->sc_hsc;
    214       1.1   bsh 
    215       1.1   bsh 	reg = EOREAD4(hsc, EHCI_PORTSC(1));
    216       1.1   bsh 	reg = (reg & ~PORTSC_PTS_MASK) | (interface << PORTSC_PTS_SHIFT);
    217       1.1   bsh 	EOWRITE4(hsc, EHCI_PORTSC(1), reg);
    218       1.1   bsh }
    219       1.1   bsh 
    220       1.1   bsh 
    221       1.1   bsh static uint32_t
    222       1.1   bsh ulpi_wakeup(struct imxehci_softc *sc, int tout)
    223       1.1   bsh {
    224       1.1   bsh 	uint32_t ulpi_view;
    225       1.1   bsh 	int i = 0;
    226       1.1   bsh 	ulpi_view = bus_space_read_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW);
    227       1.1   bsh 
    228       1.1   bsh 	if ( !(ulpi_view & ULPI_SS) ) {
    229       1.1   bsh 		bus_space_write_4(sc->sc_iot, sc->sc_ioh,
    230       1.1   bsh 		    IMXUSB_ULPIVIEW, ULPI_WU);
    231       1.1   bsh 		for (i = 0; (tout < 0) || (i < tout); i++) {
    232       1.1   bsh 			ulpi_view = bus_space_read_4(sc->sc_iot,
    233       1.1   bsh 			    sc->sc_ioh, IMXUSB_ULPIVIEW);
    234       1.1   bsh 			if ( !(ulpi_view & ULPI_WU) )
    235       1.1   bsh 				break;
    236       1.1   bsh 			delay(1);
    237       1.1   bsh 		};
    238       1.1   bsh 	}
    239       1.1   bsh 
    240       1.1   bsh 	if ((tout > 0) && (i >= tout)) {
    241       1.1   bsh 		aprint_error_dev(sc->sc_hsc.sc_dev, "%s: timeout\n", __func__);
    242       1.1   bsh 	}
    243       1.1   bsh 
    244       1.1   bsh 	return ulpi_view;
    245       1.1   bsh }
    246       1.1   bsh 
    247       1.1   bsh static uint32_t
    248       1.1   bsh ulpi_wait(struct imxehci_softc *sc, int tout)
    249       1.1   bsh {
    250       1.1   bsh 	uint32_t ulpi_view;
    251       1.1   bsh 	int i;
    252       1.1   bsh 	ulpi_view = bus_space_read_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW);
    253       1.1   bsh 
    254       1.1   bsh 	for (i = 0; (tout < 0) | (i < tout); i++) {
    255       1.1   bsh 		ulpi_view = bus_space_read_4(sc->sc_iot, sc->sc_ioh,
    256       1.1   bsh 		    IMXUSB_ULPIVIEW);
    257       1.1   bsh 		if (!(ulpi_view & ULPI_RUN))
    258       1.1   bsh 			break;
    259       1.1   bsh 		delay(1);
    260       1.1   bsh 	}
    261       1.1   bsh 
    262       1.1   bsh 	if ((tout > 0) && (i >= tout)) {
    263       1.1   bsh 		aprint_error_dev(sc->sc_hsc.sc_dev, "%s: timeout\n", __func__);
    264       1.1   bsh 	}
    265       1.1   bsh 
    266       1.1   bsh 	return ulpi_view;
    267       1.1   bsh }
    268       1.1   bsh 
    269       1.1   bsh #define	TIMEOUT	100000
    270       1.1   bsh 
    271       1.1   bsh uint8_t
    272       1.1   bsh imxusb_ulpi_read(struct imxehci_softc *sc, int addr)
    273       1.1   bsh {
    274       1.1   bsh 	uint32_t data;
    275       1.1   bsh 
    276       1.1   bsh 	ulpi_wakeup(sc, TIMEOUT);
    277       1.1   bsh 
    278       1.1   bsh 	data = ULPI_RUN | (addr << ULPI_ADDR_SHIFT);
    279       1.1   bsh 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW, data);
    280       1.1   bsh 
    281       1.1   bsh 	data = ulpi_wait(sc, TIMEOUT);
    282       1.1   bsh 
    283       1.1   bsh 	return (data & ULPI_DATRD_MASK) >> ULPI_DATRD_SHIFT;
    284       1.1   bsh }
    285       1.1   bsh 
    286       1.1   bsh void
    287       1.1   bsh imxusb_ulpi_write(struct imxehci_softc *sc, int addr, uint8_t data)
    288       1.1   bsh {
    289       1.1   bsh 	uint32_t reg;
    290       1.1   bsh 
    291       1.1   bsh 	ulpi_wakeup(sc, TIMEOUT);
    292       1.1   bsh 
    293       1.1   bsh 	reg = ULPI_RUN | ULPI_RW | ((addr) << ULPI_ADDR_SHIFT) | data;
    294       1.1   bsh 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW, reg);
    295       1.1   bsh 
    296       1.1   bsh 	ulpi_wait(sc, TIMEOUT);
    297       1.1   bsh 
    298       1.1   bsh 	return;
    299       1.1   bsh }
    300       1.1   bsh 
    301       1.1   bsh #if 0
    302       1.1   bsh static int
    303       1.1   bsh ulpi_scratch_test(struct imxehci_softc *sc)
    304       1.1   bsh {
    305       1.1   bsh 	uint32_t ulpi_view;
    306       1.1   bsh 
    307       1.1   bsh 	ulpi_view = ulpi_wakeup(sc, 1000);
    308       1.1   bsh 	if (ulpi_view & ULPI_WU) {
    309       1.1   bsh 		return -1;
    310       1.1   bsh 	}
    311       1.1   bsh 
    312       1.1   bsh 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW,
    313       1.1   bsh 		(ULPI_RUN | ULPI_RW |
    314       1.1   bsh 		 (ULPI_SCRATCH << ULPI_ADDR_SHIFT) | 0xAA));
    315       1.1   bsh 
    316       1.1   bsh 	ulpi_view = ulpi_wait(sc, 1000);
    317       1.1   bsh 
    318       1.1   bsh 	if (ulpi_view & ULPI_RUN) {
    319       1.1   bsh 		return -1;
    320       1.1   bsh 	}
    321       1.1   bsh 
    322       1.1   bsh 	return 0;
    323       1.1   bsh }
    324       1.1   bsh #endif
    325       1.1   bsh 
    326       1.1   bsh static void
    327       1.1   bsh ulpi_reset(struct imxehci_softc *sc)
    328       1.1   bsh {
    329       1.1   bsh 	uint8_t data;
    330       1.1   bsh 	int timo = 1000 * 1000;	/* XXXX: 1sec */
    331       1.1   bsh 
    332       1.1   bsh 	imxusb_ulpi_write(sc, ULPI_FUNCTION_CONTROL + ULPI_REG_SET,
    333       1.1   bsh 	    FUNCTION_CONTROL_RESET /*0x20*/);
    334       1.1   bsh 	do {
    335       1.1   bsh 		data = imxusb_ulpi_read(sc, ULPI_FUNCTION_CONTROL);
    336       1.1   bsh 		if (!(data & FUNCTION_CONTROL_RESET))
    337       1.1   bsh 			break;
    338       1.1   bsh 		delay(100);
    339       1.1   bsh 		timo -= 100;
    340       1.1   bsh 	} while (timo > 0);
    341       1.1   bsh 	if (timo <= 0) {
    342       1.1   bsh 		aprint_error_dev(sc->sc_hsc.sc_dev, "%s: reset failed!!\n",
    343       1.1   bsh 		    __func__);
    344       1.1   bsh 		return;
    345       1.1   bsh 	}
    346       1.1   bsh 
    347       1.1   bsh 	return;
    348       1.1   bsh }
    349       1.1   bsh 
    350       1.1   bsh void
    351       1.1   bsh imxehci_reset(struct imxehci_softc *sc)
    352       1.1   bsh {
    353       1.1   bsh 	u_int32_t reg;
    354       1.1   bsh 	int i;
    355       1.1   bsh 	struct ehci_softc *hsc = &sc->sc_hsc;
    356       1.1   bsh #define	RESET_TIMEOUT 100
    357       1.1   bsh 
    358       1.1   bsh 	reg = EOREAD4(hsc, EHCI_USBCMD);
    359       1.1   bsh 	reg &= ~EHCI_CMD_RS;
    360       1.1   bsh 	EOWRITE4(hsc, EHCI_USBCMD, reg);
    361       1.1   bsh 
    362       1.1   bsh 	for (i=0; i < RESET_TIMEOUT; ++i) {
    363       1.1   bsh 		reg = EOREAD4(hsc, EHCI_USBCMD);
    364       1.1   bsh 		if ((reg & EHCI_CMD_RS) == 0)
    365       1.1   bsh 			break;
    366       1.1   bsh 		usb_delay_ms(&hsc->sc_bus, 1);
    367       1.1   bsh 	}
    368       1.1   bsh 
    369       1.1   bsh 	EOWRITE4(hsc, EHCI_USBCMD, reg | EHCI_CMD_HCRESET);
    370       1.1   bsh 	for (i = 0; i < RESET_TIMEOUT; i++) {
    371       1.1   bsh 		reg = EOREAD4(hsc, EHCI_USBCMD);
    372       1.1   bsh 		if ((reg &  EHCI_CMD_HCRESET) == 0)
    373       1.1   bsh 			break;
    374       1.1   bsh 		usb_delay_ms(&hsc->sc_bus, 1);
    375       1.1   bsh 	}
    376       1.1   bsh 	if (i >= RESET_TIMEOUT) {
    377       1.1   bsh 		aprint_error_dev(hsc->sc_dev, "reset timeout (%x)\n", reg);
    378       1.1   bsh 	}
    379       1.1   bsh 
    380       1.1   bsh 	usb_delay_ms(&hsc->sc_bus, 100);
    381       1.1   bsh }
    382       1.1   bsh 
    383       1.1   bsh void
    384       1.1   bsh imxehci_host_mode(struct imxehci_softc *sc)
    385       1.1   bsh {
    386       1.1   bsh 	struct ehci_softc *hsc = &sc->sc_hsc;
    387       1.1   bsh 	uint32_t reg;
    388       1.1   bsh 
    389       1.1   bsh 	reg = EOREAD4(hsc, EHCI_PORTSC(1));
    390       1.1   bsh 	reg &= ~(EHCI_PS_CSC | EHCI_PS_PEC | EHCI_PS_OCC);
    391       1.1   bsh 	reg |= EHCI_PS_PP | EHCI_PS_PE;
    392       1.1   bsh 	EOWRITE4(hsc, EHCI_PORTSC(1), reg);
    393       1.1   bsh 
    394       1.1   bsh 	reg = bus_space_read_4(sc->sc_iot, sc->sc_ioh, IMXUSB_OTGSC);
    395       1.1   bsh 	reg |= OTGSC_IDPU;
    396       1.1   bsh 	reg |= OTGSC_DPIE | OTGSC_IDIE;
    397       1.1   bsh 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_OTGSC, reg);
    398       1.1   bsh 
    399       1.1   bsh 	reg = bus_space_read_4(sc->sc_iot, sc->sc_ioh, IMXUSB_OTGMODE);
    400       1.1   bsh 	reg |= USBMODE_HOST;
    401       1.1   bsh 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_OTGMODE, reg);
    402       1.1   bsh }
    403