Home | History | Annotate | Line # | Download | only in usb
usbnet.c revision 1.52
      1  1.52  riastrad /*	$NetBSD: usbnet.c,v 1.52 2022/03/03 05:47:43 riastradh Exp $	*/
      2   1.1       mrg 
      3   1.1       mrg /*
      4   1.1       mrg  * Copyright (c) 2019 Matthew R. Green
      5   1.1       mrg  * All rights reserved.
      6   1.1       mrg  *
      7   1.1       mrg  * Redistribution and use in source and binary forms, with or without
      8   1.1       mrg  * modification, are permitted provided that the following conditions
      9   1.1       mrg  * are met:
     10   1.1       mrg  * 1. Redistributions of source code must retain the above copyright
     11   1.1       mrg  *    notice, this list of conditions and the following disclaimer.
     12   1.1       mrg  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1       mrg  *    notice, this list of conditions and the following disclaimer in the
     14   1.1       mrg  *    documentation and/or other materials provided with the distribution.
     15   1.1       mrg  *
     16   1.1       mrg  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17   1.1       mrg  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18   1.1       mrg  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19   1.1       mrg  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20   1.1       mrg  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     21   1.1       mrg  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     22   1.1       mrg  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     23   1.1       mrg  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     24   1.1       mrg  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     25   1.1       mrg  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     26   1.1       mrg  * SUCH DAMAGE.
     27   1.1       mrg  */
     28   1.1       mrg 
     29   1.1       mrg /*
     30  1.13       mrg  * Common code shared between USB network drivers.
     31   1.1       mrg  */
     32   1.1       mrg 
     33   1.1       mrg #include <sys/cdefs.h>
     34  1.52  riastrad __KERNEL_RCSID(0, "$NetBSD: usbnet.c,v 1.52 2022/03/03 05:47:43 riastradh Exp $");
     35   1.1       mrg 
     36   1.1       mrg #include <sys/param.h>
     37   1.1       mrg #include <sys/kernel.h>
     38   1.1       mrg #include <sys/kmem.h>
     39   1.1       mrg #include <sys/module.h>
     40  1.23       mrg #include <sys/atomic.h>
     41   1.1       mrg 
     42   1.1       mrg #include <dev/usb/usbnet.h>
     43   1.4       mrg #include <dev/usb/usbhist.h>
     44   1.1       mrg 
     45  1.11       mrg struct usbnet_cdata {
     46  1.11       mrg 	struct usbnet_chain	*uncd_tx_chain;
     47  1.11       mrg 	struct usbnet_chain	*uncd_rx_chain;
     48  1.11       mrg 
     49  1.11       mrg 	int			uncd_tx_prod;
     50  1.11       mrg 	int			uncd_tx_cnt;
     51  1.11       mrg };
     52  1.11       mrg 
     53  1.11       mrg struct usbnet_private {
     54  1.11       mrg 	/*
     55  1.38   thorpej 	 * - unp_core_lock protects most of this structure, the public one,
     56  1.38   thorpej 	 *   and the MII / media data.
     57  1.11       mrg 	 * - unp_rxlock protects the rx path and its data
     58  1.11       mrg 	 * - unp_txlock protects the tx path and its data
     59  1.11       mrg 	 * - unp_detachcv handles detach vs open references
     60  1.28       mrg 	 *
     61  1.28       mrg 	 * the lock ordering is:
     62  1.38   thorpej 	 *	ifnet lock -> unp_core_lock -> unp_rxlock -> unp_txlock
     63  1.38   thorpej 	 * - ifnet lock is not needed for unp_core_lock, but if ifnet lock is
     64  1.30       mrg 	 *   involved, it must be taken first
     65  1.11       mrg 	 */
     66  1.38   thorpej 	kmutex_t		unp_core_lock;
     67  1.11       mrg 	kmutex_t		unp_rxlock;
     68  1.11       mrg 	kmutex_t		unp_txlock;
     69  1.11       mrg 	kcondvar_t		unp_detachcv;
     70  1.11       mrg 
     71  1.11       mrg 	struct usbnet_cdata	unp_cdata;
     72  1.11       mrg 
     73  1.11       mrg 	struct ethercom		unp_ec;
     74  1.11       mrg 	struct mii_data		unp_mii;
     75  1.44  riastrad 	struct usb_task		unp_mcasttask;
     76  1.11       mrg 	struct usb_task		unp_ticktask;
     77  1.11       mrg 	struct callout		unp_stat_ch;
     78  1.11       mrg 	struct usbd_pipe	*unp_ep[USBNET_ENDPT_MAX];
     79  1.11       mrg 
     80  1.11       mrg 	bool			unp_dying;
     81  1.11       mrg 	bool			unp_stopping;
     82  1.11       mrg 	bool			unp_attached;
     83  1.48  riastrad 	bool			unp_ifp_attached;
     84  1.11       mrg 	bool			unp_link;
     85  1.11       mrg 
     86  1.11       mrg 	int			unp_refcnt;
     87  1.11       mrg 	int			unp_timer;
     88  1.29   msaitoh 	unsigned short		unp_if_flags;
     89  1.23       mrg 	unsigned		unp_number;
     90  1.11       mrg 
     91  1.11       mrg 	krndsource_t		unp_rndsrc;
     92  1.11       mrg 
     93  1.11       mrg 	struct timeval		unp_rx_notice;
     94  1.11       mrg 	struct timeval		unp_tx_notice;
     95  1.11       mrg 	struct timeval		unp_intr_notice;
     96  1.11       mrg };
     97  1.11       mrg 
     98  1.11       mrg #define un_cdata(un)	(&(un)->un_pri->unp_cdata)
     99  1.11       mrg 
    100  1.23       mrg volatile unsigned usbnet_number;
    101  1.23       mrg 
    102   1.1       mrg static int usbnet_modcmd(modcmd_t, void *);
    103   1.1       mrg 
    104   1.2       mrg #ifdef USB_DEBUG
    105   1.2       mrg #ifndef USBNET_DEBUG
    106   1.2       mrg #define usbnetdebug 0
    107   1.2       mrg #else
    108  1.26       mrg static int usbnetdebug = 0;
    109   1.4       mrg 
    110   1.2       mrg SYSCTL_SETUP(sysctl_hw_usbnet_setup, "sysctl hw.usbnet setup")
    111   1.2       mrg {
    112   1.2       mrg 	int err;
    113   1.2       mrg 	const struct sysctlnode *rnode;
    114   1.2       mrg 	const struct sysctlnode *cnode;
    115   1.2       mrg 
    116   1.2       mrg 	err = sysctl_createv(clog, 0, NULL, &rnode,
    117   1.2       mrg 	    CTLFLAG_PERMANENT, CTLTYPE_NODE, "usbnet",
    118   1.2       mrg 	    SYSCTL_DESCR("usbnet global controls"),
    119   1.2       mrg 	    NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL);
    120   1.2       mrg 
    121   1.2       mrg 	if (err)
    122   1.2       mrg 		goto fail;
    123   1.2       mrg 
    124   1.2       mrg 	/* control debugging printfs */
    125   1.2       mrg 	err = sysctl_createv(clog, 0, &rnode, &cnode,
    126   1.2       mrg 	    CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
    127   1.2       mrg 	    "debug", SYSCTL_DESCR("Enable debugging output"),
    128   1.2       mrg 	    NULL, 0, &usbnetdebug, sizeof(usbnetdebug), CTL_CREATE, CTL_EOL);
    129   1.2       mrg 	if (err)
    130   1.2       mrg 		goto fail;
    131   1.2       mrg 
    132   1.2       mrg 	return;
    133   1.2       mrg fail:
    134   1.2       mrg 	aprint_error("%s: sysctl_createv failed (err = %d)\n", __func__, err);
    135   1.2       mrg }
    136   1.2       mrg 
    137   1.2       mrg #endif /* USBNET_DEBUG */
    138   1.2       mrg #endif /* USB_DEBUG */
    139   1.2       mrg 
    140   1.2       mrg #define DPRINTF(FMT,A,B,C,D)	USBHIST_LOGN(usbnetdebug,1,FMT,A,B,C,D)
    141   1.2       mrg #define DPRINTFN(N,FMT,A,B,C,D)	USBHIST_LOGN(usbnetdebug,N,FMT,A,B,C,D)
    142   1.2       mrg #define USBNETHIST_FUNC()	USBHIST_FUNC()
    143   1.2       mrg #define USBNETHIST_CALLED(name)	USBHIST_CALLED(usbnetdebug)
    144  1.19       mrg #define USBNETHIST_CALLARGS(FMT,A,B,C,D) \
    145  1.19       mrg 				USBHIST_CALLARGS(usbnetdebug,FMT,A,B,C,D)
    146  1.23       mrg #define USBNETHIST_CALLARGSN(N,FMT,A,B,C,D) \
    147  1.23       mrg 				USBHIST_CALLARGSN(usbnetdebug,N,FMT,A,B,C,D)
    148   1.1       mrg 
    149  1.10       mrg /* Callback vectors. */
    150  1.10       mrg 
    151  1.10       mrg static void
    152  1.10       mrg uno_stop(struct usbnet *un, struct ifnet *ifp, int disable)
    153  1.10       mrg {
    154  1.51  riastrad 	KASSERTMSG(!un->un_pri->unp_ifp_attached || IFNET_LOCKED(ifp),
    155  1.51  riastrad 	    "%s", ifp->if_xname);
    156  1.38   thorpej 	usbnet_isowned_core(un);
    157  1.10       mrg 	if (un->un_ops->uno_stop)
    158  1.10       mrg 		(*un->un_ops->uno_stop)(ifp, disable);
    159  1.10       mrg }
    160  1.10       mrg 
    161  1.10       mrg static int
    162  1.10       mrg uno_ioctl(struct usbnet *un, struct ifnet *ifp, u_long cmd, void *data)
    163  1.10       mrg {
    164  1.38   thorpej 	/*
    165  1.38   thorpej 	 * There are cases where IFNET_LOCK will not be held when we
    166  1.38   thorpej 	 * are called (e.g. add/delete multicast address), so we can't
    167  1.38   thorpej 	 * assert it.
    168  1.38   thorpej 	 */
    169  1.10       mrg 	if (un->un_ops->uno_ioctl)
    170  1.10       mrg 		return (*un->un_ops->uno_ioctl)(ifp, cmd, data);
    171  1.10       mrg 	return 0;
    172  1.10       mrg }
    173  1.10       mrg 
    174  1.10       mrg static int
    175  1.10       mrg uno_override_ioctl(struct usbnet *un, struct ifnet *ifp, u_long cmd, void *data)
    176  1.10       mrg {
    177  1.38   thorpej 	/* See above. */
    178  1.10       mrg 	return (*un->un_ops->uno_override_ioctl)(ifp, cmd, data);
    179  1.10       mrg }
    180  1.10       mrg 
    181  1.10       mrg static int
    182  1.10       mrg uno_init(struct usbnet *un, struct ifnet *ifp)
    183  1.10       mrg {
    184  1.38   thorpej 	KASSERT(IFNET_LOCKED(ifp));
    185  1.10       mrg 	return (*un->un_ops->uno_init)(ifp);
    186  1.10       mrg }
    187  1.10       mrg 
    188  1.10       mrg static int
    189  1.10       mrg uno_read_reg(struct usbnet *un, int phy, int reg, uint16_t *val)
    190  1.10       mrg {
    191  1.38   thorpej 	usbnet_isowned_core(un);
    192  1.10       mrg 	return (*un->un_ops->uno_read_reg)(un, phy, reg, val);
    193  1.10       mrg }
    194  1.10       mrg 
    195  1.10       mrg static int
    196  1.10       mrg uno_write_reg(struct usbnet *un, int phy, int reg, uint16_t val)
    197  1.10       mrg {
    198  1.38   thorpej 	usbnet_isowned_core(un);
    199  1.10       mrg 	return (*un->un_ops->uno_write_reg)(un, phy, reg, val);
    200  1.10       mrg }
    201  1.10       mrg 
    202  1.10       mrg static void
    203  1.10       mrg uno_mii_statchg(struct usbnet *un, struct ifnet *ifp)
    204  1.10       mrg {
    205  1.38   thorpej 	usbnet_isowned_core(un);
    206  1.10       mrg 	(*un->un_ops->uno_statchg)(ifp);
    207  1.10       mrg }
    208  1.10       mrg 
    209  1.10       mrg static unsigned
    210  1.10       mrg uno_tx_prepare(struct usbnet *un, struct mbuf *m, struct usbnet_chain *c)
    211  1.10       mrg {
    212  1.38   thorpej 	usbnet_isowned_tx(un);
    213  1.10       mrg 	return (*un->un_ops->uno_tx_prepare)(un, m, c);
    214  1.10       mrg }
    215  1.10       mrg 
    216  1.10       mrg static void
    217  1.15       mrg uno_rx_loop(struct usbnet *un, struct usbnet_chain *c, uint32_t total_len)
    218  1.15       mrg {
    219  1.38   thorpej 	usbnet_isowned_rx(un);
    220  1.15       mrg 	(*un->un_ops->uno_rx_loop)(un, c, total_len);
    221  1.15       mrg }
    222  1.15       mrg 
    223  1.15       mrg static void
    224  1.15       mrg uno_tick(struct usbnet *un)
    225  1.10       mrg {
    226  1.15       mrg 	if (un->un_ops->uno_tick)
    227  1.15       mrg 		(*un->un_ops->uno_tick)(un);
    228  1.10       mrg }
    229  1.10       mrg 
    230  1.10       mrg static void
    231  1.10       mrg uno_intr(struct usbnet *un, usbd_status status)
    232  1.10       mrg {
    233  1.10       mrg 	if (un->un_ops->uno_intr)
    234  1.10       mrg 		(*un->un_ops->uno_intr)(un, status);
    235  1.10       mrg }
    236  1.10       mrg 
    237   1.1       mrg /* Interrupt handling. */
    238   1.1       mrg 
    239   1.1       mrg static struct mbuf *
    240  1.16       mrg usbnet_newbuf(size_t buflen)
    241   1.1       mrg {
    242   1.1       mrg 	struct mbuf *m;
    243   1.1       mrg 
    244  1.39  riastrad 	if (buflen > MCLBYTES)
    245  1.39  riastrad 		return NULL;
    246  1.39  riastrad 
    247   1.1       mrg 	MGETHDR(m, M_DONTWAIT, MT_DATA);
    248   1.1       mrg 	if (m == NULL)
    249   1.1       mrg 		return NULL;
    250   1.1       mrg 
    251  1.16       mrg 	if (buflen > MHLEN - ETHER_ALIGN) {
    252  1.16       mrg 		MCLGET(m, M_DONTWAIT);
    253  1.16       mrg 		if (!(m->m_flags & M_EXT)) {
    254  1.16       mrg 			m_freem(m);
    255  1.16       mrg 			return NULL;
    256  1.16       mrg 		}
    257   1.1       mrg 	}
    258   1.1       mrg 
    259   1.1       mrg 	m_adj(m, ETHER_ALIGN);
    260  1.16       mrg 	m->m_len = m->m_pkthdr.len = buflen;
    261   1.1       mrg 
    262   1.1       mrg 	return m;
    263   1.1       mrg }
    264   1.1       mrg 
    265   1.1       mrg /*
    266   1.1       mrg  * usbnet_rxeof() is designed to be the done callback for rx completion.
    267   1.1       mrg  * it provides generic setup and finalisation, calls a different usbnet
    268   1.1       mrg  * rx_loop callback in the middle, which can use usbnet_enqueue() to
    269   1.5       mrg  * enqueue a packet for higher levels (or usbnet_input() if previously
    270   1.5       mrg  * using if_input() path.)
    271   1.1       mrg  */
    272   1.1       mrg void
    273   1.1       mrg usbnet_enqueue(struct usbnet * const un, uint8_t *buf, size_t buflen,
    274   1.5       mrg 	       int csum_flags, uint32_t csum_data, int mbuf_flags)
    275   1.1       mrg {
    276  1.23       mrg 	USBNETHIST_FUNC();
    277  1.11       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
    278  1.23       mrg 	struct usbnet_private * const unp __unused = un->un_pri;
    279   1.1       mrg 	struct mbuf *m;
    280   1.1       mrg 
    281  1.36  christos 	USBNETHIST_CALLARGSN(5, "%jd: enter: len=%ju csf %#jx mbf %#jx",
    282  1.23       mrg 	    unp->unp_number, buflen, csum_flags, mbuf_flags);
    283  1.23       mrg 
    284  1.12       mrg 	usbnet_isowned_rx(un);
    285   1.1       mrg 
    286  1.16       mrg 	m = usbnet_newbuf(buflen);
    287   1.1       mrg 	if (m == NULL) {
    288  1.36  christos 		DPRINTF("%jd: no memory", unp->unp_number, 0, 0, 0);
    289  1.34   thorpej 		if_statinc(ifp, if_ierrors);
    290   1.1       mrg 		return;
    291   1.1       mrg 	}
    292   1.1       mrg 
    293   1.1       mrg 	m_set_rcvif(m, ifp);
    294   1.5       mrg 	m->m_pkthdr.csum_flags = csum_flags;
    295   1.5       mrg 	m->m_pkthdr.csum_data = csum_data;
    296   1.5       mrg 	m->m_flags |= mbuf_flags;
    297  1.16       mrg 	memcpy(mtod(m, uint8_t *), buf, buflen);
    298   1.1       mrg 
    299   1.1       mrg 	/* push the packet up */
    300   1.1       mrg 	if_percpuq_enqueue(ifp->if_percpuq, m);
    301   1.1       mrg }
    302   1.1       mrg 
    303   1.5       mrg void
    304   1.5       mrg usbnet_input(struct usbnet * const un, uint8_t *buf, size_t buflen)
    305   1.5       mrg {
    306  1.23       mrg 	USBNETHIST_FUNC();
    307   1.5       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
    308  1.23       mrg 	struct usbnet_private * const unp __unused = un->un_pri;
    309   1.5       mrg 	struct mbuf *m;
    310   1.5       mrg 
    311  1.36  christos 	USBNETHIST_CALLARGSN(5, "%jd: enter: buf %#jx len %ju",
    312  1.23       mrg 	    unp->unp_number, (uintptr_t)buf, buflen, 0);
    313  1.23       mrg 
    314  1.12       mrg 	usbnet_isowned_rx(un);
    315   1.5       mrg 
    316  1.16       mrg 	m = usbnet_newbuf(buflen);
    317   1.5       mrg 	if (m == NULL) {
    318  1.34   thorpej 		if_statinc(ifp, if_ierrors);
    319   1.5       mrg 		return;
    320   1.5       mrg 	}
    321   1.5       mrg 
    322   1.5       mrg 	m_set_rcvif(m, ifp);
    323   1.5       mrg 	memcpy(mtod(m, char *), buf, buflen);
    324   1.5       mrg 
    325   1.5       mrg 	/* push the packet up */
    326   1.5       mrg 	if_input(ifp, m);
    327   1.5       mrg }
    328   1.5       mrg 
    329   1.1       mrg /*
    330   1.1       mrg  * A frame has been uploaded: pass the resulting mbuf chain up to
    331   1.1       mrg  * the higher level protocols.
    332   1.1       mrg  */
    333   1.1       mrg static void
    334   1.4       mrg usbnet_rxeof(struct usbd_xfer *xfer, void *priv, usbd_status status)
    335   1.1       mrg {
    336  1.23       mrg 	USBNETHIST_FUNC();
    337  1.11       mrg 	struct usbnet_chain * const c = priv;
    338   1.1       mrg 	struct usbnet * const un = c->unc_un;
    339  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    340   1.1       mrg 	uint32_t total_len;
    341   1.1       mrg 
    342  1.36  christos 	USBNETHIST_CALLARGSN(5, "%jd: enter: status %#jx xfer %#jx",
    343  1.23       mrg 	    unp->unp_number, status, (uintptr_t)xfer, 0);
    344  1.23       mrg 
    345  1.11       mrg 	mutex_enter(&unp->unp_rxlock);
    346   1.1       mrg 
    347  1.11       mrg 	if (unp->unp_dying || unp->unp_stopping ||
    348   1.1       mrg 	    status == USBD_INVAL || status == USBD_NOT_STARTED ||
    349  1.52  riastrad 	    status == USBD_CANCELLED)
    350   1.1       mrg 		goto out;
    351   1.1       mrg 
    352   1.1       mrg 	if (status != USBD_NORMAL_COMPLETION) {
    353  1.11       mrg 		if (usbd_ratecheck(&unp->unp_rx_notice))
    354  1.40  jakllsch 			device_printf(un->un_dev, "usb errors on rx: %s\n",
    355   1.1       mrg 			    usbd_errstr(status));
    356   1.1       mrg 		if (status == USBD_STALLED)
    357  1.11       mrg 			usbd_clear_endpoint_stall_async(unp->unp_ep[USBNET_ENDPT_RX]);
    358   1.1       mrg 		goto done;
    359   1.1       mrg 	}
    360   1.1       mrg 
    361   1.1       mrg 	usbd_get_xfer_status(xfer, NULL, NULL, &total_len, NULL);
    362   1.1       mrg 
    363  1.11       mrg 	if (total_len > un->un_rx_bufsz) {
    364   1.1       mrg 		aprint_error_dev(un->un_dev,
    365   1.1       mrg 		    "rxeof: too large transfer (%u > %u)\n",
    366  1.11       mrg 		    total_len, un->un_rx_bufsz);
    367   1.1       mrg 		goto done;
    368   1.1       mrg 	}
    369   1.1       mrg 
    370  1.15       mrg 	uno_rx_loop(un, c, total_len);
    371  1.12       mrg 	usbnet_isowned_rx(un);
    372   1.1       mrg 
    373   1.1       mrg done:
    374  1.11       mrg 	if (unp->unp_dying || unp->unp_stopping)
    375   1.1       mrg 		goto out;
    376   1.1       mrg 
    377  1.11       mrg 	mutex_exit(&unp->unp_rxlock);
    378   1.1       mrg 
    379   1.1       mrg 	/* Setup new transfer. */
    380  1.11       mrg 	usbd_setup_xfer(xfer, c, c->unc_buf, un->un_rx_bufsz,
    381  1.11       mrg 	    un->un_rx_xfer_flags, USBD_NO_TIMEOUT, usbnet_rxeof);
    382   1.1       mrg 	usbd_transfer(xfer);
    383   1.1       mrg 	return;
    384   1.1       mrg 
    385   1.1       mrg out:
    386  1.11       mrg 	mutex_exit(&unp->unp_rxlock);
    387   1.1       mrg }
    388   1.1       mrg 
    389   1.1       mrg static void
    390   1.4       mrg usbnet_txeof(struct usbd_xfer *xfer, void *priv, usbd_status status)
    391   1.1       mrg {
    392   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
    393  1.11       mrg 	struct usbnet_chain * const c = priv;
    394   1.1       mrg 	struct usbnet * const un = c->unc_un;
    395  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    396  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    397   1.1       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
    398   1.1       mrg 
    399  1.36  christos 	USBNETHIST_CALLARGSN(5, "%jd: enter: status %#jx xfer %#jx",
    400  1.23       mrg 	    unp->unp_number, status, (uintptr_t)xfer, 0);
    401  1.23       mrg 
    402  1.11       mrg 	mutex_enter(&unp->unp_txlock);
    403  1.11       mrg 	if (unp->unp_stopping || unp->unp_dying) {
    404  1.11       mrg 		mutex_exit(&unp->unp_txlock);
    405   1.1       mrg 		return;
    406   1.1       mrg 	}
    407   1.1       mrg 
    408   1.1       mrg 	KASSERT(cd->uncd_tx_cnt > 0);
    409   1.1       mrg 	cd->uncd_tx_cnt--;
    410   1.1       mrg 
    411  1.11       mrg 	unp->unp_timer = 0;
    412   1.1       mrg 
    413   1.1       mrg 	switch (status) {
    414   1.1       mrg 	case USBD_NOT_STARTED:
    415   1.1       mrg 	case USBD_CANCELLED:
    416   1.1       mrg 		break;
    417   1.1       mrg 
    418   1.1       mrg 	case USBD_NORMAL_COMPLETION:
    419  1.34   thorpej 		if_statinc(ifp, if_opackets);
    420   1.1       mrg 		break;
    421   1.1       mrg 
    422   1.1       mrg 	default:
    423   1.1       mrg 
    424  1.34   thorpej 		if_statinc(ifp, if_oerrors);
    425  1.11       mrg 		if (usbd_ratecheck(&unp->unp_tx_notice))
    426  1.40  jakllsch 			device_printf(un->un_dev, "usb error on tx: %s\n",
    427   1.1       mrg 			    usbd_errstr(status));
    428   1.1       mrg 		if (status == USBD_STALLED)
    429  1.11       mrg 			usbd_clear_endpoint_stall_async(unp->unp_ep[USBNET_ENDPT_TX]);
    430   1.1       mrg 		break;
    431   1.1       mrg 	}
    432   1.1       mrg 
    433  1.11       mrg 	mutex_exit(&unp->unp_txlock);
    434   1.1       mrg 
    435   1.1       mrg 	if (status == USBD_NORMAL_COMPLETION && !IFQ_IS_EMPTY(&ifp->if_snd))
    436   1.1       mrg 		(*ifp->if_start)(ifp);
    437   1.1       mrg }
    438   1.1       mrg 
    439   1.1       mrg static void
    440  1.11       mrg usbnet_pipe_intr(struct usbd_xfer *xfer, void *priv, usbd_status status)
    441   1.4       mrg {
    442  1.26       mrg 	USBNETHIST_FUNC();
    443  1.11       mrg 	struct usbnet * const un = priv;
    444  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    445  1.11       mrg 	struct usbnet_intr * const uni = un->un_intr;
    446  1.11       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
    447   1.4       mrg 
    448  1.11       mrg 	if (uni == NULL || unp->unp_dying || unp->unp_stopping ||
    449   1.4       mrg 	    status == USBD_INVAL || status == USBD_NOT_STARTED ||
    450  1.26       mrg 	    status == USBD_CANCELLED || !(ifp->if_flags & IFF_RUNNING)) {
    451  1.36  christos 		USBNETHIST_CALLARGS("%jd: uni %#jx d/s %#jx status %#jx",
    452  1.26       mrg 		    unp->unp_number, (uintptr_t)uni,
    453  1.26       mrg 		    (unp->unp_dying << 8) | unp->unp_stopping, status);
    454   1.4       mrg 		return;
    455  1.26       mrg 	}
    456   1.4       mrg 
    457   1.4       mrg 	if (status != USBD_NORMAL_COMPLETION) {
    458  1.11       mrg 		if (usbd_ratecheck(&unp->unp_intr_notice)) {
    459   1.4       mrg 			aprint_error_dev(un->un_dev, "usb error on intr: %s\n",
    460   1.4       mrg 			    usbd_errstr(status));
    461   1.4       mrg 		}
    462   1.4       mrg 		if (status == USBD_STALLED)
    463  1.11       mrg 			usbd_clear_endpoint_stall_async(unp->unp_ep[USBNET_ENDPT_INTR]);
    464  1.36  christos 		USBNETHIST_CALLARGS("%jd: not normal status %#jx",
    465  1.26       mrg 		    unp->unp_number, status, 0, 0);
    466   1.4       mrg 		return;
    467   1.4       mrg 	}
    468   1.4       mrg 
    469  1.10       mrg 	uno_intr(un, status);
    470   1.4       mrg }
    471   1.4       mrg 
    472   1.4       mrg static void
    473   1.1       mrg usbnet_start_locked(struct ifnet *ifp)
    474   1.1       mrg {
    475  1.26       mrg 	USBNETHIST_FUNC();
    476   1.1       mrg 	struct usbnet * const un = ifp->if_softc;
    477  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    478  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    479   1.1       mrg 	struct mbuf *m;
    480   1.1       mrg 	unsigned length;
    481  1.26       mrg 	bool done_transmit = false;
    482  1.41       rin 	int idx, count;
    483   1.1       mrg 
    484  1.36  christos 	USBNETHIST_CALLARGS("%jd: tx_cnt %jd list_cnt %jd link %jd",
    485  1.26       mrg 	    unp->unp_number, cd->uncd_tx_cnt, un->un_tx_list_cnt,
    486  1.26       mrg 	    unp->unp_link);
    487  1.26       mrg 
    488  1.12       mrg 	usbnet_isowned_tx(un);
    489  1.11       mrg 	KASSERT(cd->uncd_tx_cnt <= un->un_tx_list_cnt);
    490   1.1       mrg 
    491  1.15       mrg 	if (!unp->unp_link || (ifp->if_flags & IFF_RUNNING) == 0) {
    492  1.37  christos 		DPRINTF("start called no link (%jx) or running (flags %jx)",
    493  1.15       mrg 		    unp->unp_link, ifp->if_flags, 0, 0);
    494   1.1       mrg 		return;
    495  1.15       mrg 	}
    496   1.1       mrg 
    497  1.23       mrg 	if (cd->uncd_tx_cnt == un->un_tx_list_cnt) {
    498  1.36  christos 		DPRINTF("start called, tx busy (%#jx == %#jx)",
    499  1.23       mrg 		    cd->uncd_tx_cnt, un->un_tx_list_cnt, 0, 0);
    500  1.23       mrg 		return;
    501  1.23       mrg 	}
    502  1.23       mrg 
    503   1.1       mrg 	idx = cd->uncd_tx_prod;
    504  1.41       rin 	count = 0;
    505  1.11       mrg 	while (cd->uncd_tx_cnt < un->un_tx_list_cnt) {
    506   1.1       mrg 		IFQ_POLL(&ifp->if_snd, m);
    507  1.23       mrg 		if (m == NULL) {
    508  1.23       mrg 			DPRINTF("start called, queue empty", 0, 0, 0, 0);
    509   1.1       mrg 			break;
    510  1.23       mrg 		}
    511  1.13       mrg 		KASSERT(m->m_pkthdr.len <= un->un_tx_bufsz);
    512   1.1       mrg 
    513  1.10       mrg 		struct usbnet_chain *c = &cd->uncd_tx_chain[idx];
    514   1.1       mrg 
    515  1.10       mrg 		length = uno_tx_prepare(un, m, c);
    516   1.1       mrg 		if (length == 0) {
    517  1.23       mrg 			DPRINTF("uno_tx_prepare gave zero length", 0, 0, 0, 0);
    518  1.34   thorpej 			if_statinc(ifp, if_oerrors);
    519   1.1       mrg 			break;
    520   1.1       mrg 		}
    521   1.1       mrg 
    522   1.1       mrg 		if (__predict_false(c->unc_xfer == NULL)) {
    523  1.23       mrg 			DPRINTF("unc_xfer is NULL", 0, 0, 0, 0);
    524  1.34   thorpej 			if_statinc(ifp, if_oerrors);
    525   1.1       mrg 			break;
    526   1.1       mrg 		}
    527   1.1       mrg 
    528   1.1       mrg 		usbd_setup_xfer(c->unc_xfer, c, c->unc_buf, length,
    529  1.11       mrg 		    un->un_tx_xfer_flags, 10000, usbnet_txeof);
    530   1.1       mrg 
    531   1.1       mrg 		/* Transmit */
    532   1.1       mrg 		usbd_status err = usbd_transfer(c->unc_xfer);
    533   1.1       mrg 		if (err != USBD_IN_PROGRESS) {
    534  1.37  christos 			DPRINTF("usbd_transfer on %#jx for %ju bytes: %jd",
    535  1.23       mrg 			    (uintptr_t)c->unc_buf, length, err, 0);
    536  1.34   thorpej 			if_statinc(ifp, if_oerrors);
    537   1.1       mrg 			break;
    538   1.1       mrg 		}
    539  1.26       mrg 		done_transmit = true;
    540   1.1       mrg 
    541   1.1       mrg 		IFQ_DEQUEUE(&ifp->if_snd, m);
    542   1.1       mrg 
    543   1.1       mrg 		/*
    544   1.1       mrg 		 * If there's a BPF listener, bounce a copy of this frame
    545   1.1       mrg 		 * to him.
    546   1.1       mrg 		 */
    547   1.1       mrg 		bpf_mtap(ifp, m, BPF_D_OUT);
    548   1.1       mrg 		m_freem(m);
    549   1.1       mrg 
    550  1.11       mrg 		idx = (idx + 1) % un->un_tx_list_cnt;
    551   1.1       mrg 		cd->uncd_tx_cnt++;
    552  1.41       rin 		count++;
    553   1.1       mrg 	}
    554   1.1       mrg 	cd->uncd_tx_prod = idx;
    555   1.1       mrg 
    556  1.37  christos 	DPRINTF("finished with start; tx_cnt %jd list_cnt %jd link %jd",
    557  1.26       mrg 	    cd->uncd_tx_cnt, un->un_tx_list_cnt, unp->unp_link, 0);
    558  1.26       mrg 
    559   1.1       mrg 	/*
    560   1.1       mrg 	 * Set a timeout in case the chip goes out to lunch.
    561   1.1       mrg 	 */
    562  1.26       mrg 	if (done_transmit)
    563  1.26       mrg 		unp->unp_timer = 5;
    564  1.41       rin 
    565  1.41       rin 	if (count != 0)
    566  1.41       rin 		rnd_add_uint32(&unp->unp_rndsrc, count);
    567   1.1       mrg }
    568   1.1       mrg 
    569   1.1       mrg static void
    570  1.38   thorpej usbnet_if_start(struct ifnet *ifp)
    571   1.1       mrg {
    572   1.1       mrg 	struct usbnet * const un = ifp->if_softc;
    573  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    574   1.1       mrg 
    575  1.26       mrg 	USBNETHIST_FUNC();
    576  1.36  christos 	USBNETHIST_CALLARGS("%jd: stopping %jd",
    577  1.26       mrg 	    unp->unp_number, unp->unp_stopping, 0, 0);
    578  1.26       mrg 
    579  1.11       mrg 	mutex_enter(&unp->unp_txlock);
    580  1.11       mrg 	if (!unp->unp_stopping)
    581   1.1       mrg 		usbnet_start_locked(ifp);
    582  1.11       mrg 	mutex_exit(&unp->unp_txlock);
    583   1.1       mrg }
    584   1.1       mrg 
    585   1.1       mrg /*
    586   1.1       mrg  * Chain management.
    587   1.1       mrg  *
    588   1.1       mrg  * RX and TX are identical. Keep them that way.
    589   1.1       mrg  */
    590   1.1       mrg 
    591   1.1       mrg /* Start of common RX functions */
    592   1.1       mrg 
    593   1.1       mrg static size_t
    594  1.12       mrg usbnet_rx_list_size(struct usbnet_cdata * const cd, struct usbnet * const un)
    595   1.1       mrg {
    596  1.11       mrg 	return sizeof(*cd->uncd_rx_chain) * un->un_rx_list_cnt;
    597   1.1       mrg }
    598   1.1       mrg 
    599   1.1       mrg static void
    600  1.12       mrg usbnet_rx_list_alloc(struct usbnet * const un)
    601   1.1       mrg {
    602  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    603   1.1       mrg 
    604  1.11       mrg 	cd->uncd_rx_chain = kmem_zalloc(usbnet_rx_list_size(cd, un), KM_SLEEP);
    605   1.1       mrg }
    606   1.1       mrg 
    607   1.1       mrg static void
    608  1.12       mrg usbnet_rx_list_free(struct usbnet * const un)
    609   1.1       mrg {
    610  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    611   1.1       mrg 
    612   1.1       mrg 	if (cd->uncd_rx_chain) {
    613  1.11       mrg 		kmem_free(cd->uncd_rx_chain, usbnet_rx_list_size(cd, un));
    614   1.1       mrg 		cd->uncd_rx_chain = NULL;
    615   1.1       mrg 	}
    616   1.1       mrg }
    617   1.1       mrg 
    618   1.1       mrg static int
    619  1.12       mrg usbnet_rx_list_init(struct usbnet * const un)
    620   1.1       mrg {
    621  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    622  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    623   1.1       mrg 
    624  1.11       mrg 	for (size_t i = 0; i < un->un_rx_list_cnt; i++) {
    625   1.1       mrg 		struct usbnet_chain *c = &cd->uncd_rx_chain[i];
    626   1.1       mrg 
    627   1.1       mrg 		c->unc_un = un;
    628   1.1       mrg 		if (c->unc_xfer == NULL) {
    629  1.11       mrg 			int err = usbd_create_xfer(unp->unp_ep[USBNET_ENDPT_RX],
    630  1.11       mrg 			    un->un_rx_bufsz, un->un_rx_xfer_flags, 0,
    631  1.10       mrg 			    &c->unc_xfer);
    632   1.1       mrg 			if (err)
    633   1.1       mrg 				return err;
    634   1.1       mrg 			c->unc_buf = usbd_get_buffer(c->unc_xfer);
    635   1.1       mrg 		}
    636   1.1       mrg 	}
    637   1.1       mrg 
    638   1.1       mrg 	return 0;
    639   1.1       mrg }
    640   1.1       mrg 
    641   1.1       mrg static void
    642  1.12       mrg usbnet_rx_list_fini(struct usbnet * const un)
    643   1.1       mrg {
    644  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    645   1.1       mrg 
    646  1.11       mrg 	for (size_t i = 0; i < un->un_rx_list_cnt; i++) {
    647   1.1       mrg 		struct usbnet_chain *c = &cd->uncd_rx_chain[i];
    648   1.1       mrg 
    649   1.1       mrg 		if (c->unc_xfer != NULL) {
    650   1.1       mrg 			usbd_destroy_xfer(c->unc_xfer);
    651   1.1       mrg 			c->unc_xfer = NULL;
    652   1.1       mrg 			c->unc_buf = NULL;
    653   1.1       mrg 		}
    654   1.1       mrg 	}
    655   1.1       mrg }
    656   1.1       mrg 
    657   1.1       mrg /* End of common RX functions */
    658   1.1       mrg 
    659   1.1       mrg static void
    660  1.16       mrg usbnet_rx_start_pipes(struct usbnet * const un)
    661   1.1       mrg {
    662  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    663  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    664   1.1       mrg 
    665  1.11       mrg 	mutex_enter(&unp->unp_rxlock);
    666  1.11       mrg 	mutex_enter(&unp->unp_txlock);
    667  1.11       mrg 	unp->unp_stopping = false;
    668   1.1       mrg 
    669  1.11       mrg 	for (size_t i = 0; i < un->un_rx_list_cnt; i++) {
    670   1.1       mrg 		struct usbnet_chain *c = &cd->uncd_rx_chain[i];
    671   1.1       mrg 
    672  1.11       mrg 		usbd_setup_xfer(c->unc_xfer, c, c->unc_buf, un->un_rx_bufsz,
    673  1.16       mrg 		    un->un_rx_xfer_flags, USBD_NO_TIMEOUT, usbnet_rxeof);
    674   1.1       mrg 		usbd_transfer(c->unc_xfer);
    675   1.3     skrll 	}
    676   1.1       mrg 
    677  1.11       mrg 	mutex_exit(&unp->unp_txlock);
    678  1.11       mrg 	mutex_exit(&unp->unp_rxlock);
    679   1.1       mrg }
    680   1.1       mrg 
    681   1.1       mrg /* Start of common TX functions */
    682   1.1       mrg 
    683   1.1       mrg static size_t
    684  1.12       mrg usbnet_tx_list_size(struct usbnet_cdata * const cd, struct usbnet * const un)
    685   1.1       mrg {
    686  1.11       mrg 	return sizeof(*cd->uncd_tx_chain) * un->un_tx_list_cnt;
    687   1.1       mrg }
    688   1.1       mrg 
    689   1.1       mrg static void
    690  1.12       mrg usbnet_tx_list_alloc(struct usbnet * const un)
    691   1.1       mrg {
    692  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    693   1.1       mrg 
    694  1.11       mrg 	cd->uncd_tx_chain = kmem_zalloc(usbnet_tx_list_size(cd, un), KM_SLEEP);
    695   1.1       mrg }
    696   1.1       mrg 
    697   1.1       mrg static void
    698  1.12       mrg usbnet_tx_list_free(struct usbnet * const un)
    699   1.1       mrg {
    700  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    701   1.1       mrg 
    702   1.1       mrg 	if (cd->uncd_tx_chain) {
    703  1.11       mrg 		kmem_free(cd->uncd_tx_chain, usbnet_tx_list_size(cd, un));
    704   1.1       mrg 		cd->uncd_tx_chain = NULL;
    705   1.1       mrg 	}
    706   1.1       mrg }
    707   1.1       mrg 
    708   1.1       mrg static int
    709  1.12       mrg usbnet_tx_list_init(struct usbnet * const un)
    710   1.1       mrg {
    711  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    712  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    713   1.1       mrg 
    714  1.11       mrg 	for (size_t i = 0; i < un->un_tx_list_cnt; i++) {
    715   1.1       mrg 		struct usbnet_chain *c = &cd->uncd_tx_chain[i];
    716   1.1       mrg 
    717   1.1       mrg 		c->unc_un = un;
    718   1.1       mrg 		if (c->unc_xfer == NULL) {
    719  1.11       mrg 			int err = usbd_create_xfer(unp->unp_ep[USBNET_ENDPT_TX],
    720  1.11       mrg 			    un->un_tx_bufsz, un->un_tx_xfer_flags, 0,
    721  1.10       mrg 			    &c->unc_xfer);
    722   1.1       mrg 			if (err)
    723   1.1       mrg 				return err;
    724   1.1       mrg 			c->unc_buf = usbd_get_buffer(c->unc_xfer);
    725   1.1       mrg 		}
    726   1.1       mrg 	}
    727   1.1       mrg 
    728   1.1       mrg 	return 0;
    729   1.1       mrg }
    730   1.1       mrg 
    731   1.1       mrg static void
    732  1.12       mrg usbnet_tx_list_fini(struct usbnet * const un)
    733   1.1       mrg {
    734  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
    735   1.1       mrg 
    736  1.11       mrg 	for (size_t i = 0; i < un->un_tx_list_cnt; i++) {
    737   1.1       mrg 		struct usbnet_chain *c = &cd->uncd_tx_chain[i];
    738   1.1       mrg 
    739   1.1       mrg 		if (c->unc_xfer != NULL) {
    740   1.1       mrg 			usbd_destroy_xfer(c->unc_xfer);
    741   1.1       mrg 			c->unc_xfer = NULL;
    742   1.1       mrg 			c->unc_buf = NULL;
    743   1.1       mrg 		}
    744   1.1       mrg 	}
    745  1.23       mrg 	cd->uncd_tx_prod = cd->uncd_tx_cnt = 0;
    746   1.1       mrg }
    747   1.1       mrg 
    748   1.1       mrg /* End of common TX functions */
    749   1.1       mrg 
    750   1.1       mrg /* Endpoint pipe management. */
    751   1.1       mrg 
    752   1.1       mrg static void
    753  1.12       mrg usbnet_ep_close_pipes(struct usbnet * const un)
    754   1.1       mrg {
    755  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    756  1.11       mrg 
    757  1.11       mrg 	for (size_t i = 0; i < __arraycount(unp->unp_ep); i++) {
    758  1.11       mrg 		if (unp->unp_ep[i] == NULL)
    759   1.1       mrg 			continue;
    760  1.11       mrg 		usbd_status err = usbd_close_pipe(unp->unp_ep[i]);
    761   1.1       mrg 		if (err)
    762   1.1       mrg 			aprint_error_dev(un->un_dev, "close pipe %zu: %s\n", i,
    763   1.1       mrg 			    usbd_errstr(err));
    764  1.11       mrg 		unp->unp_ep[i] = NULL;
    765   1.1       mrg 	}
    766   1.1       mrg }
    767   1.1       mrg 
    768   1.1       mrg static usbd_status
    769  1.12       mrg usbnet_ep_open_pipes(struct usbnet * const un)
    770   1.1       mrg {
    771  1.11       mrg 	struct usbnet_intr * const uni = un->un_intr;
    772  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    773  1.11       mrg 
    774  1.11       mrg 	for (size_t i = 0; i < __arraycount(unp->unp_ep); i++) {
    775   1.4       mrg 		usbd_status err;
    776   1.4       mrg 
    777   1.1       mrg 		if (un->un_ed[i] == 0)
    778   1.1       mrg 			continue;
    779   1.4       mrg 
    780  1.11       mrg 		if (i == USBNET_ENDPT_INTR && uni) {
    781   1.4       mrg 			err = usbd_open_pipe_intr(un->un_iface, un->un_ed[i],
    782  1.11       mrg 			    USBD_EXCLUSIVE_USE | USBD_MPSAFE, &unp->unp_ep[i], un,
    783  1.11       mrg 			    uni->uni_buf, uni->uni_bufsz, usbnet_pipe_intr,
    784  1.11       mrg 			    uni->uni_interval);
    785   1.4       mrg 		} else {
    786   1.4       mrg 			err = usbd_open_pipe(un->un_iface, un->un_ed[i],
    787  1.11       mrg 			    USBD_EXCLUSIVE_USE | USBD_MPSAFE, &unp->unp_ep[i]);
    788   1.4       mrg 		}
    789   1.1       mrg 		if (err) {
    790   1.1       mrg 			usbnet_ep_close_pipes(un);
    791   1.1       mrg 			return err;
    792   1.1       mrg 		}
    793   1.1       mrg 	}
    794   1.1       mrg 
    795   1.1       mrg 	return USBD_NORMAL_COMPLETION;
    796   1.1       mrg }
    797   1.1       mrg 
    798   1.1       mrg static usbd_status
    799  1.12       mrg usbnet_ep_stop_pipes(struct usbnet * const un)
    800   1.1       mrg {
    801  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    802  1.17       mrg 	usbd_status err = USBD_NORMAL_COMPLETION;
    803  1.11       mrg 
    804  1.11       mrg 	for (size_t i = 0; i < __arraycount(unp->unp_ep); i++) {
    805  1.11       mrg 		if (unp->unp_ep[i] == NULL)
    806   1.1       mrg 			continue;
    807  1.17       mrg 		usbd_status err2 = usbd_abort_pipe(unp->unp_ep[i]);
    808  1.17       mrg 		if (err == USBD_NORMAL_COMPLETION && err2)
    809  1.18       mrg 			err = err2;
    810   1.1       mrg 	}
    811   1.1       mrg 
    812  1.17       mrg 	return err;
    813   1.1       mrg }
    814   1.1       mrg 
    815   1.1       mrg int
    816  1.10       mrg usbnet_init_rx_tx(struct usbnet * const un)
    817   1.1       mrg {
    818   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
    819  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    820   1.1       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
    821   1.1       mrg 	usbd_status err;
    822   1.4       mrg 	int error = 0;
    823   1.4       mrg 
    824  1.51  riastrad 	KASSERTMSG(!unp->unp_ifp_attached || IFNET_LOCKED(ifp),
    825  1.51  riastrad 	    "%s", ifp->if_xname);
    826  1.51  riastrad 
    827  1.38   thorpej 	usbnet_isowned_core(un);
    828   1.4       mrg 
    829  1.11       mrg 	if (unp->unp_dying) {
    830   1.4       mrg 		return EIO;
    831   1.4       mrg 	}
    832  1.38   thorpej 
    833  1.38   thorpej 	usbnet_busy(un);
    834   1.1       mrg 
    835   1.1       mrg 	/* Open RX and TX pipes. */
    836   1.1       mrg 	err = usbnet_ep_open_pipes(un);
    837   1.1       mrg 	if (err) {
    838   1.1       mrg 		aprint_error_dev(un->un_dev, "open rx/tx pipes failed: %s\n",
    839   1.1       mrg 		    usbd_errstr(err));
    840   1.4       mrg 		error = EIO;
    841   1.4       mrg 		goto out;
    842   1.1       mrg 	}
    843   1.1       mrg 
    844   1.1       mrg 	/* Init RX ring. */
    845  1.10       mrg 	if (usbnet_rx_list_init(un)) {
    846   1.1       mrg 		aprint_error_dev(un->un_dev, "rx list init failed\n");
    847   1.4       mrg 		error = ENOBUFS;
    848   1.4       mrg 		goto out;
    849   1.1       mrg 	}
    850   1.1       mrg 
    851   1.1       mrg 	/* Init TX ring. */
    852  1.10       mrg 	if (usbnet_tx_list_init(un)) {
    853   1.1       mrg 		aprint_error_dev(un->un_dev, "tx list init failed\n");
    854   1.4       mrg 		error = ENOBUFS;
    855   1.4       mrg 		goto out;
    856   1.1       mrg 	}
    857   1.1       mrg 
    858   1.1       mrg 	/* Indicate we are up and running. */
    859  1.17       mrg #if 0
    860  1.17       mrg 	/* XXX if_mcast_op() can call this without ifnet locked */
    861   1.8       mrg 	KASSERT(ifp->if_softc == NULL || IFNET_LOCKED(ifp));
    862  1.17       mrg #endif
    863   1.1       mrg 	ifp->if_flags |= IFF_RUNNING;
    864   1.1       mrg 
    865  1.46  riastrad 	/* Start up the receive pipe(s). */
    866  1.46  riastrad 	usbnet_rx_start_pipes(un);
    867  1.46  riastrad 
    868  1.11       mrg 	callout_schedule(&unp->unp_stat_ch, hz);
    869   1.1       mrg 
    870   1.4       mrg out:
    871   1.4       mrg 	if (error) {
    872   1.4       mrg 		usbnet_rx_list_fini(un);
    873   1.4       mrg 		usbnet_tx_list_fini(un);
    874   1.4       mrg 		usbnet_ep_close_pipes(un);
    875   1.4       mrg 	}
    876  1.38   thorpej 	usbnet_unbusy(un);
    877   1.4       mrg 
    878  1.38   thorpej 	usbnet_isowned_core(un);
    879   1.1       mrg 
    880   1.4       mrg 	return error;
    881   1.1       mrg }
    882   1.1       mrg 
    883   1.1       mrg void
    884  1.38   thorpej usbnet_busy(struct usbnet *un)
    885   1.1       mrg {
    886  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    887  1.11       mrg 
    888  1.38   thorpej 	usbnet_isowned_core(un);
    889   1.1       mrg 
    890  1.11       mrg 	unp->unp_refcnt++;
    891   1.1       mrg }
    892   1.1       mrg 
    893   1.1       mrg void
    894  1.38   thorpej usbnet_unbusy(struct usbnet *un)
    895   1.1       mrg {
    896  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    897   1.1       mrg 
    898  1.38   thorpej 	usbnet_isowned_core(un);
    899  1.11       mrg 
    900  1.11       mrg 	if (--unp->unp_refcnt < 0)
    901  1.11       mrg 		cv_broadcast(&unp->unp_detachcv);
    902  1.11       mrg }
    903  1.11       mrg 
    904  1.38   thorpej /* MII management. */
    905   1.1       mrg 
    906   1.1       mrg int
    907  1.10       mrg usbnet_mii_readreg(device_t dev, int phy, int reg, uint16_t *val)
    908   1.1       mrg {
    909  1.19       mrg 	USBNETHIST_FUNC();
    910   1.1       mrg 	struct usbnet * const un = device_private(dev);
    911  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    912  1.22       mrg 	int err;
    913   1.1       mrg 
    914  1.38   thorpej 	/* MII layer ensures core_lock is held. */
    915  1.38   thorpej 	usbnet_isowned_core(un);
    916  1.38   thorpej 
    917  1.20       mrg 	if (unp->unp_dying) {
    918   1.1       mrg 		return EIO;
    919   1.1       mrg 	}
    920  1.20       mrg 
    921  1.38   thorpej 	usbnet_busy(un);
    922  1.10       mrg 	err = uno_read_reg(un, phy, reg, val);
    923  1.38   thorpej 	usbnet_unbusy(un);
    924   1.1       mrg 
    925   1.1       mrg 	if (err) {
    926  1.36  christos 		USBNETHIST_CALLARGS("%jd: read PHY failed: %jd",
    927  1.36  christos 		    unp->unp_number, err, 0, 0);
    928  1.22       mrg 		return err;
    929   1.1       mrg 	}
    930   1.1       mrg 
    931   1.1       mrg 	return 0;
    932   1.1       mrg }
    933   1.1       mrg 
    934   1.1       mrg int
    935  1.10       mrg usbnet_mii_writereg(device_t dev, int phy, int reg, uint16_t val)
    936   1.1       mrg {
    937  1.19       mrg 	USBNETHIST_FUNC();
    938   1.1       mrg 	struct usbnet * const un = device_private(dev);
    939  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    940  1.22       mrg 	int err;
    941   1.1       mrg 
    942  1.38   thorpej 	/* MII layer ensures core_lock is held. */
    943  1.38   thorpej 	usbnet_isowned_core(un);
    944  1.38   thorpej 
    945  1.20       mrg 	if (unp->unp_dying) {
    946   1.1       mrg 		return EIO;
    947   1.1       mrg 	}
    948  1.20       mrg 
    949  1.38   thorpej 	usbnet_busy(un);
    950  1.10       mrg 	err = uno_write_reg(un, phy, reg, val);
    951  1.38   thorpej 	usbnet_unbusy(un);
    952   1.1       mrg 
    953   1.1       mrg 	if (err) {
    954  1.36  christos 		USBNETHIST_CALLARGS("%jd: write PHY failed: %jd",
    955  1.36  christos 		    unp->unp_number, err, 0, 0);
    956  1.22       mrg 		return err;
    957   1.1       mrg 	}
    958   1.1       mrg 
    959   1.1       mrg 	return 0;
    960   1.1       mrg }
    961   1.1       mrg 
    962   1.1       mrg void
    963  1.10       mrg usbnet_mii_statchg(struct ifnet *ifp)
    964   1.1       mrg {
    965   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
    966   1.1       mrg 	struct usbnet * const un = ifp->if_softc;
    967   1.1       mrg 
    968  1.38   thorpej 	/* MII layer ensures core_lock is held. */
    969  1.38   thorpej 	usbnet_isowned_core(un);
    970  1.38   thorpej 
    971  1.38   thorpej 	usbnet_busy(un);
    972  1.10       mrg 	uno_mii_statchg(un, ifp);
    973  1.38   thorpej 	usbnet_unbusy(un);
    974   1.1       mrg }
    975   1.1       mrg 
    976   1.1       mrg static int
    977   1.1       mrg usbnet_media_upd(struct ifnet *ifp)
    978   1.1       mrg {
    979   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
    980   1.1       mrg 	struct usbnet * const un = ifp->if_softc;
    981  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
    982   1.1       mrg 	struct mii_data * const mii = usbnet_mii(un);
    983   1.1       mrg 
    984  1.38   thorpej 	/* ifmedia layer ensures core_lock is held. */
    985  1.38   thorpej 	usbnet_isowned_core(un);
    986  1.38   thorpej 
    987  1.11       mrg 	if (unp->unp_dying)
    988   1.1       mrg 		return EIO;
    989   1.1       mrg 
    990  1.11       mrg 	unp->unp_link = false;
    991   1.1       mrg 
    992   1.1       mrg 	if (mii->mii_instance) {
    993   1.1       mrg 		struct mii_softc *miisc;
    994   1.1       mrg 
    995   1.1       mrg 		LIST_FOREACH(miisc, &mii->mii_phys, mii_list)
    996   1.1       mrg 			mii_phy_reset(miisc);
    997   1.1       mrg 	}
    998   1.1       mrg 
    999   1.1       mrg 	return ether_mediachange(ifp);
   1000   1.1       mrg }
   1001   1.1       mrg 
   1002   1.1       mrg /* ioctl */
   1003   1.1       mrg 
   1004   1.1       mrg static int
   1005   1.1       mrg usbnet_ifflags_cb(struct ethercom *ec)
   1006   1.1       mrg {
   1007   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1008   1.1       mrg 	struct ifnet *ifp = &ec->ec_if;
   1009   1.1       mrg 	struct usbnet *un = ifp->if_softc;
   1010  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1011   1.1       mrg 	int rv = 0;
   1012   1.1       mrg 
   1013  1.50  riastrad 	KASSERTMSG(IFNET_LOCKED(ifp), "%s", ifp->if_xname);
   1014  1.50  riastrad 
   1015  1.38   thorpej 	mutex_enter(&unp->unp_core_lock);
   1016   1.1       mrg 
   1017  1.29   msaitoh 	const u_short changed = ifp->if_flags ^ unp->unp_if_flags;
   1018   1.1       mrg 	if ((changed & ~(IFF_CANTCHANGE | IFF_DEBUG)) == 0) {
   1019  1.11       mrg 		unp->unp_if_flags = ifp->if_flags;
   1020   1.1       mrg 		if ((changed & IFF_PROMISC) != 0)
   1021   1.1       mrg 			rv = ENETRESET;
   1022   1.1       mrg 	} else {
   1023   1.1       mrg 		rv = ENETRESET;
   1024   1.1       mrg 	}
   1025   1.1       mrg 
   1026  1.38   thorpej 	mutex_exit(&unp->unp_core_lock);
   1027   1.1       mrg 
   1028   1.1       mrg 	return rv;
   1029   1.1       mrg }
   1030   1.1       mrg 
   1031   1.1       mrg static int
   1032  1.38   thorpej usbnet_if_ioctl(struct ifnet *ifp, u_long cmd, void *data)
   1033   1.1       mrg {
   1034  1.23       mrg 	USBNETHIST_FUNC();
   1035   1.1       mrg 	struct usbnet * const un = ifp->if_softc;
   1036  1.23       mrg 	struct usbnet_private * const unp __unused = un->un_pri;
   1037   1.1       mrg 	int error;
   1038   1.1       mrg 
   1039  1.36  christos 	USBNETHIST_CALLARGSN(11, "%jd: enter %#jx data %#jx",
   1040  1.23       mrg 	    unp->unp_number, cmd, (uintptr_t)data, 0);
   1041  1.23       mrg 
   1042  1.10       mrg 	if (un->un_ops->uno_override_ioctl)
   1043  1.10       mrg 		return uno_override_ioctl(un, ifp, cmd, data);
   1044   1.5       mrg 
   1045   1.1       mrg 	error = ether_ioctl(ifp, cmd, data);
   1046  1.44  riastrad 	if (error == ENETRESET) {
   1047  1.44  riastrad 		switch (cmd) {
   1048  1.44  riastrad 		case SIOCADDMULTI:
   1049  1.44  riastrad 		case SIOCDELMULTI:
   1050  1.44  riastrad 			usb_add_task(un->un_udev, &unp->unp_mcasttask,
   1051  1.44  riastrad 			    USB_TASKQ_DRIVER);
   1052  1.44  riastrad 			error = 0;
   1053  1.44  riastrad 			break;
   1054  1.44  riastrad 		default:
   1055  1.44  riastrad 			error = uno_ioctl(un, ifp, cmd, data);
   1056  1.44  riastrad 		}
   1057  1.44  riastrad 	}
   1058   1.1       mrg 
   1059   1.1       mrg 	return error;
   1060   1.1       mrg }
   1061   1.1       mrg 
   1062  1.44  riastrad static void
   1063  1.44  riastrad usbnet_mcast_task(void *arg)
   1064  1.44  riastrad {
   1065  1.44  riastrad 	USBNETHIST_FUNC();
   1066  1.44  riastrad 	struct usbnet * const un = arg;
   1067  1.44  riastrad 	struct usbnet_private * const unp = un->un_pri;
   1068  1.44  riastrad 	struct ifnet * const ifp = usbnet_ifp(un);
   1069  1.44  riastrad 	bool dying;
   1070  1.44  riastrad 	struct ifreq ifr;
   1071  1.44  riastrad 
   1072  1.44  riastrad 	USBNETHIST_CALLARGSN(10, "%jd: enter", unp->unp_number, 0, 0, 0);
   1073  1.44  riastrad 
   1074  1.44  riastrad 	/*
   1075  1.44  riastrad 	 * If we're detaching, we must check unp_dying _before_
   1076  1.44  riastrad 	 * touching IFNET_LOCK -- the ifnet may have been detached by
   1077  1.44  riastrad 	 * the time this task runs.  This is racy -- unp_dying may be
   1078  1.44  riastrad 	 * set immediately after we test it -- but nevertheless safe,
   1079  1.44  riastrad 	 * because usbnet_detach waits for the task to complete before
   1080  1.44  riastrad 	 * issuing if_detach, and necessary, so that we don't touch
   1081  1.44  riastrad 	 * IFNET_LOCK after if_detach.  See usbnet_detach for details.
   1082  1.44  riastrad 	 */
   1083  1.44  riastrad 	mutex_enter(&unp->unp_core_lock);
   1084  1.44  riastrad 	dying = unp->unp_dying;
   1085  1.44  riastrad 	mutex_exit(&unp->unp_core_lock);
   1086  1.44  riastrad 	if (dying)
   1087  1.44  riastrad 		return;
   1088  1.44  riastrad 
   1089  1.44  riastrad 	/*
   1090  1.44  riastrad 	 * Pass a bogus ifr with SIOCDELMULTI -- the goal is to just
   1091  1.44  riastrad 	 * notify the driver to reprogram any hardware multicast
   1092  1.44  riastrad 	 * filter, according to what's already stored in the ethercom.
   1093  1.44  riastrad 	 * None of the drivers actually examine this argument, so it
   1094  1.44  riastrad 	 * doesn't change the ABI as far as they can tell.
   1095  1.44  riastrad 	 */
   1096  1.44  riastrad 	IFNET_LOCK(ifp);
   1097  1.44  riastrad 	if (ifp->if_flags & IFF_RUNNING) {
   1098  1.44  riastrad 		memset(&ifr, 0, sizeof(ifr));
   1099  1.44  riastrad 		(void)uno_ioctl(un, ifp, SIOCDELMULTI, &ifr);
   1100  1.44  riastrad 	}
   1101  1.44  riastrad 	IFNET_UNLOCK(ifp);
   1102  1.44  riastrad }
   1103  1.44  riastrad 
   1104   1.1       mrg /*
   1105   1.1       mrg  * Generic stop network function:
   1106   1.1       mrg  *	- mark as stopping
   1107   1.1       mrg  *	- call DD routine to stop the device
   1108   1.1       mrg  *	- turn off running, timer, statchg callout, link
   1109   1.1       mrg  *	- stop transfers
   1110   1.1       mrg  *	- free RX and TX resources
   1111   1.1       mrg  *	- close pipes
   1112   1.1       mrg  *
   1113   1.1       mrg  * usbnet_stop() is exported for drivers to use, expects lock held.
   1114   1.1       mrg  *
   1115  1.38   thorpej  * usbnet_if_stop() is for the if_stop handler.
   1116   1.1       mrg  */
   1117   1.1       mrg void
   1118   1.1       mrg usbnet_stop(struct usbnet *un, struct ifnet *ifp, int disable)
   1119   1.1       mrg {
   1120  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1121  1.11       mrg 
   1122   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1123   1.4       mrg 
   1124  1.51  riastrad 	KASSERTMSG(!unp->unp_ifp_attached || IFNET_LOCKED(ifp),
   1125  1.51  riastrad 	    "%s", ifp->if_xname);
   1126  1.38   thorpej 	usbnet_isowned_core(un);
   1127  1.38   thorpej 
   1128  1.38   thorpej 	usbnet_busy(un);
   1129   1.1       mrg 
   1130  1.11       mrg 	mutex_enter(&unp->unp_rxlock);
   1131  1.11       mrg 	mutex_enter(&unp->unp_txlock);
   1132  1.11       mrg 	unp->unp_stopping = true;
   1133  1.11       mrg 	mutex_exit(&unp->unp_txlock);
   1134  1.11       mrg 	mutex_exit(&unp->unp_rxlock);
   1135   1.1       mrg 
   1136  1.10       mrg 	uno_stop(un, ifp, disable);
   1137   1.1       mrg 
   1138  1.49  riastrad 	mutex_enter(&unp->unp_txlock);
   1139  1.11       mrg 	unp->unp_timer = 0;
   1140  1.49  riastrad 	mutex_exit(&unp->unp_txlock);
   1141   1.1       mrg 
   1142  1.38   thorpej 	callout_halt(&unp->unp_stat_ch, &unp->unp_core_lock);
   1143  1.26       mrg 	usb_rem_task_wait(un->un_udev, &unp->unp_ticktask, USB_TASKQ_DRIVER,
   1144  1.38   thorpej 	    &unp->unp_core_lock);
   1145   1.1       mrg 
   1146   1.1       mrg 	/* Stop transfers. */
   1147   1.1       mrg 	usbnet_ep_stop_pipes(un);
   1148   1.1       mrg 
   1149   1.1       mrg 	/* Free RX/TX resources. */
   1150   1.1       mrg 	usbnet_rx_list_fini(un);
   1151   1.1       mrg 	usbnet_tx_list_fini(un);
   1152   1.1       mrg 
   1153   1.1       mrg 	/* Close pipes. */
   1154   1.1       mrg 	usbnet_ep_close_pipes(un);
   1155  1.38   thorpej 
   1156  1.51  riastrad 	/* Everything is quesced now. */
   1157  1.51  riastrad 	KASSERTMSG(!unp->unp_ifp_attached || IFNET_LOCKED(ifp),
   1158  1.51  riastrad 	    "%s", ifp->if_xname);
   1159  1.46  riastrad 	ifp->if_flags &= ~IFF_RUNNING;
   1160  1.46  riastrad 
   1161  1.38   thorpej 	usbnet_unbusy(un);
   1162   1.1       mrg }
   1163   1.1       mrg 
   1164   1.1       mrg static void
   1165  1.38   thorpej usbnet_if_stop(struct ifnet *ifp, int disable)
   1166   1.1       mrg {
   1167   1.1       mrg 	struct usbnet * const un = ifp->if_softc;
   1168  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1169   1.1       mrg 
   1170  1.50  riastrad 	KASSERTMSG(IFNET_LOCKED(ifp), "%s", ifp->if_xname);
   1171  1.50  riastrad 
   1172  1.38   thorpej 	mutex_enter(&unp->unp_core_lock);
   1173   1.1       mrg 	usbnet_stop(un, ifp, disable);
   1174  1.38   thorpej 	mutex_exit(&unp->unp_core_lock);
   1175   1.1       mrg }
   1176   1.1       mrg 
   1177   1.1       mrg /*
   1178   1.1       mrg  * Generic tick task function.
   1179   1.1       mrg  *
   1180   1.1       mrg  * usbnet_tick() is triggered from a callout, and triggers a call to
   1181   1.1       mrg  * usbnet_tick_task() from the usb_task subsystem.
   1182   1.1       mrg  */
   1183   1.1       mrg static void
   1184   1.1       mrg usbnet_tick(void *arg)
   1185   1.1       mrg {
   1186  1.26       mrg 	USBNETHIST_FUNC();
   1187   1.1       mrg 	struct usbnet * const un = arg;
   1188  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1189   1.1       mrg 
   1190  1.36  christos 	USBNETHIST_CALLARGSN(10, "%jd: enter", unp->unp_number, 0, 0, 0);
   1191  1.26       mrg 
   1192  1.25       mrg 	if (unp != NULL && !unp->unp_stopping && !unp->unp_dying) {
   1193   1.1       mrg 		/* Perform periodic stuff in process context */
   1194  1.11       mrg 		usb_add_task(un->un_udev, &unp->unp_ticktask, USB_TASKQ_DRIVER);
   1195   1.1       mrg 	}
   1196   1.1       mrg }
   1197   1.1       mrg 
   1198   1.1       mrg static void
   1199   1.1       mrg usbnet_watchdog(struct ifnet *ifp)
   1200   1.1       mrg {
   1201  1.23       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1202   1.1       mrg 	struct usbnet * const un = ifp->if_softc;
   1203  1.17       mrg 	struct usbnet_private * const unp = un->un_pri;
   1204  1.11       mrg 	struct usbnet_cdata * const cd = un_cdata(un);
   1205  1.17       mrg 	usbd_status err;
   1206   1.1       mrg 
   1207  1.34   thorpej 	if_statinc(ifp, if_oerrors);
   1208  1.40  jakllsch 	device_printf(un->un_dev, "watchdog timeout\n");
   1209   1.1       mrg 
   1210   1.1       mrg 	if (cd->uncd_tx_cnt > 0) {
   1211  1.37  christos 		DPRINTF("uncd_tx_cnt=%ju non zero, aborting pipe", 0, 0, 0, 0);
   1212  1.17       mrg 		err = usbd_abort_pipe(unp->unp_ep[USBNET_ENDPT_TX]);
   1213  1.20       mrg 		if (err)
   1214  1.40  jakllsch 			device_printf(un->un_dev, "pipe abort failed: %s\n",
   1215  1.20       mrg 			    usbd_errstr(err));
   1216  1.23       mrg 		if (cd->uncd_tx_cnt != 0)
   1217  1.37  christos 			DPRINTF("uncd_tx_cnt now %ju", cd->uncd_tx_cnt, 0, 0, 0);
   1218   1.1       mrg 	}
   1219   1.1       mrg 
   1220   1.1       mrg 	if (!IFQ_IS_EMPTY(&ifp->if_snd))
   1221   1.1       mrg 		(*ifp->if_start)(ifp);
   1222   1.1       mrg }
   1223   1.1       mrg 
   1224   1.1       mrg static void
   1225   1.1       mrg usbnet_tick_task(void *arg)
   1226   1.1       mrg {
   1227  1.26       mrg 	USBNETHIST_FUNC();
   1228   1.1       mrg 	struct usbnet * const un = arg;
   1229  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1230   1.1       mrg 
   1231  1.26       mrg 	if (unp == NULL)
   1232  1.26       mrg 		return;
   1233  1.26       mrg 
   1234  1.36  christos 	USBNETHIST_CALLARGSN(8, "%jd: enter", unp->unp_number, 0, 0, 0);
   1235  1.26       mrg 
   1236  1.38   thorpej 	mutex_enter(&unp->unp_core_lock);
   1237  1.11       mrg 	if (unp->unp_stopping || unp->unp_dying) {
   1238  1.38   thorpej 		mutex_exit(&unp->unp_core_lock);
   1239   1.1       mrg 		return;
   1240   1.1       mrg 	}
   1241   1.1       mrg 
   1242   1.1       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
   1243   1.1       mrg 	struct mii_data * const mii = usbnet_mii(un);
   1244   1.1       mrg 
   1245  1.31  riastrad 	KASSERT(ifp != NULL);	/* embedded member */
   1246  1.31  riastrad 
   1247  1.38   thorpej 	usbnet_busy(un);
   1248  1.38   thorpej 	mutex_exit(&unp->unp_core_lock);
   1249   1.1       mrg 
   1250  1.49  riastrad 	mutex_enter(&unp->unp_txlock);
   1251  1.49  riastrad 	const bool timeout = unp->unp_timer != 0 && --unp->unp_timer == 0;
   1252  1.49  riastrad 	mutex_exit(&unp->unp_txlock);
   1253  1.49  riastrad 	if (timeout)
   1254   1.1       mrg 		usbnet_watchdog(ifp);
   1255   1.1       mrg 
   1256  1.36  christos 	DPRINTFN(8, "mii %#jx ifp %#jx", (uintptr_t)mii, (uintptr_t)ifp, 0, 0);
   1257  1.33      maya 	if (mii) {
   1258  1.38   thorpej 		mutex_enter(&unp->unp_core_lock);
   1259  1.33      maya 		mii_tick(mii);
   1260  1.33      maya 		if (!unp->unp_link)
   1261  1.33      maya 			(*mii->mii_statchg)(ifp);
   1262  1.38   thorpej 		mutex_exit(&unp->unp_core_lock);
   1263  1.33      maya 	}
   1264   1.1       mrg 
   1265  1.15       mrg 	/* Call driver if requested. */
   1266  1.15       mrg 	uno_tick(un);
   1267  1.15       mrg 
   1268  1.38   thorpej 	mutex_enter(&unp->unp_core_lock);
   1269  1.38   thorpej 	usbnet_unbusy(un);
   1270  1.11       mrg 	if (!unp->unp_stopping && !unp->unp_dying)
   1271  1.11       mrg 		callout_schedule(&unp->unp_stat_ch, hz);
   1272  1.38   thorpej 	mutex_exit(&unp->unp_core_lock);
   1273   1.1       mrg }
   1274   1.1       mrg 
   1275   1.1       mrg static int
   1276  1.38   thorpej usbnet_if_init(struct ifnet *ifp)
   1277   1.1       mrg {
   1278   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1279   1.1       mrg 	struct usbnet * const un = ifp->if_softc;
   1280   1.1       mrg 
   1281  1.50  riastrad 	KASSERTMSG(IFNET_LOCKED(ifp), "%s", ifp->if_xname);
   1282  1.50  riastrad 
   1283  1.10       mrg 	return uno_init(un, ifp);
   1284   1.1       mrg }
   1285   1.1       mrg 
   1286  1.12       mrg 
   1287  1.11       mrg /* Various accessors. */
   1288  1.11       mrg 
   1289  1.11       mrg void
   1290  1.11       mrg usbnet_set_link(struct usbnet *un, bool link)
   1291  1.11       mrg {
   1292  1.11       mrg 	un->un_pri->unp_link = link;
   1293  1.11       mrg }
   1294  1.11       mrg 
   1295  1.14       mrg void
   1296  1.14       mrg usbnet_set_dying(struct usbnet *un, bool link)
   1297  1.14       mrg {
   1298  1.14       mrg 	un->un_pri->unp_dying = link;
   1299  1.14       mrg }
   1300  1.14       mrg 
   1301  1.11       mrg struct ifnet *
   1302  1.11       mrg usbnet_ifp(struct usbnet *un)
   1303  1.11       mrg {
   1304  1.11       mrg 	return &un->un_pri->unp_ec.ec_if;
   1305  1.11       mrg }
   1306  1.11       mrg 
   1307  1.11       mrg struct ethercom *
   1308  1.11       mrg usbnet_ec(struct usbnet *un)
   1309  1.11       mrg {
   1310  1.11       mrg 	return &un->un_pri->unp_ec;
   1311  1.11       mrg }
   1312  1.11       mrg 
   1313  1.11       mrg struct mii_data *
   1314  1.11       mrg usbnet_mii(struct usbnet *un)
   1315  1.11       mrg {
   1316  1.11       mrg 	return un->un_pri->unp_ec.ec_mii;
   1317  1.11       mrg }
   1318  1.11       mrg 
   1319  1.11       mrg krndsource_t *
   1320  1.11       mrg usbnet_rndsrc(struct usbnet *un)
   1321  1.11       mrg {
   1322  1.11       mrg 	return &un->un_pri->unp_rndsrc;
   1323  1.11       mrg }
   1324  1.11       mrg 
   1325  1.11       mrg void *
   1326  1.11       mrg usbnet_softc(struct usbnet *un)
   1327  1.11       mrg {
   1328  1.11       mrg 	return un->un_sc;
   1329  1.11       mrg }
   1330  1.11       mrg 
   1331  1.11       mrg bool
   1332  1.11       mrg usbnet_havelink(struct usbnet *un)
   1333  1.11       mrg {
   1334  1.11       mrg 	return un->un_pri->unp_link;
   1335  1.11       mrg }
   1336  1.11       mrg 
   1337  1.11       mrg bool
   1338  1.11       mrg usbnet_isdying(struct usbnet *un)
   1339  1.11       mrg {
   1340  1.45  riastrad 	return un->un_pri->unp_dying;
   1341  1.11       mrg }
   1342  1.11       mrg 
   1343  1.11       mrg 
   1344  1.11       mrg /* Locking. */
   1345  1.11       mrg 
   1346  1.11       mrg void
   1347  1.38   thorpej usbnet_lock_core(struct usbnet *un)
   1348  1.11       mrg {
   1349  1.38   thorpej 	mutex_enter(&un->un_pri->unp_core_lock);
   1350  1.11       mrg }
   1351  1.11       mrg 
   1352  1.11       mrg void
   1353  1.38   thorpej usbnet_unlock_core(struct usbnet *un)
   1354  1.11       mrg {
   1355  1.38   thorpej 	mutex_exit(&un->un_pri->unp_core_lock);
   1356  1.11       mrg }
   1357  1.11       mrg 
   1358  1.11       mrg kmutex_t *
   1359  1.38   thorpej usbnet_mutex_core(struct usbnet *un)
   1360  1.11       mrg {
   1361  1.38   thorpej 	return &un->un_pri->unp_core_lock;
   1362  1.11       mrg }
   1363  1.11       mrg 
   1364  1.11       mrg void
   1365  1.11       mrg usbnet_lock_rx(struct usbnet *un)
   1366  1.11       mrg {
   1367  1.11       mrg 	mutex_enter(&un->un_pri->unp_rxlock);
   1368  1.11       mrg }
   1369  1.11       mrg 
   1370  1.11       mrg void
   1371  1.11       mrg usbnet_unlock_rx(struct usbnet *un)
   1372  1.11       mrg {
   1373  1.11       mrg 	mutex_exit(&un->un_pri->unp_rxlock);
   1374  1.11       mrg }
   1375  1.11       mrg 
   1376  1.11       mrg kmutex_t *
   1377  1.11       mrg usbnet_mutex_rx(struct usbnet *un)
   1378  1.11       mrg {
   1379  1.11       mrg 	return &un->un_pri->unp_rxlock;
   1380  1.11       mrg }
   1381  1.11       mrg 
   1382  1.11       mrg void
   1383  1.11       mrg usbnet_lock_tx(struct usbnet *un)
   1384  1.11       mrg {
   1385  1.11       mrg 	mutex_enter(&un->un_pri->unp_txlock);
   1386  1.11       mrg }
   1387  1.11       mrg 
   1388  1.11       mrg void
   1389  1.11       mrg usbnet_unlock_tx(struct usbnet *un)
   1390  1.11       mrg {
   1391  1.11       mrg 	mutex_exit(&un->un_pri->unp_txlock);
   1392  1.11       mrg }
   1393  1.11       mrg 
   1394  1.11       mrg kmutex_t *
   1395  1.11       mrg usbnet_mutex_tx(struct usbnet *un)
   1396  1.11       mrg {
   1397  1.11       mrg 	return &un->un_pri->unp_txlock;
   1398  1.11       mrg }
   1399  1.11       mrg 
   1400   1.1       mrg /* Autoconf management. */
   1401   1.1       mrg 
   1402   1.5       mrg static bool
   1403  1.12       mrg usbnet_empty_eaddr(struct usbnet * const un)
   1404   1.5       mrg {
   1405   1.5       mrg 	return (un->un_eaddr[0] == 0 && un->un_eaddr[1] == 0 &&
   1406   1.5       mrg 		un->un_eaddr[2] == 0 && un->un_eaddr[3] == 0 &&
   1407   1.5       mrg 		un->un_eaddr[4] == 0 && un->un_eaddr[5] == 0);
   1408   1.5       mrg }
   1409   1.5       mrg 
   1410   1.1       mrg /*
   1411   1.1       mrg  * usbnet_attach() and usbnet_attach_ifp() perform setup of the relevant
   1412   1.1       mrg  * 'usbnet'.  The first is enough to enable device access (eg, endpoints
   1413   1.1       mrg  * are connected and commands can be sent), and the second connects the
   1414   1.1       mrg  * device to the system networking.
   1415   1.1       mrg  *
   1416   1.1       mrg  * Always call usbnet_detach(), even if usbnet_attach_ifp() is skippped.
   1417   1.1       mrg  * Also usable as driver detach directly.
   1418   1.5       mrg  *
   1419   1.5       mrg  * To skip ethernet configuration (eg, point-to-point), make sure that
   1420   1.5       mrg  * the un_eaddr[] is fully zero.
   1421   1.1       mrg  */
   1422  1.11       mrg 
   1423   1.1       mrg void
   1424   1.1       mrg usbnet_attach(struct usbnet *un,
   1425  1.11       mrg 	      const char *detname)	/* detach cv name */
   1426   1.1       mrg {
   1427   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1428   1.1       mrg 
   1429  1.10       mrg 	/* Required inputs.  */
   1430  1.10       mrg 	KASSERT(un->un_ops->uno_tx_prepare);
   1431  1.10       mrg 	KASSERT(un->un_ops->uno_rx_loop);
   1432  1.10       mrg 	KASSERT(un->un_ops->uno_init);
   1433  1.11       mrg 	KASSERT(un->un_rx_bufsz);
   1434  1.11       mrg 	KASSERT(un->un_tx_bufsz);
   1435  1.11       mrg 	KASSERT(un->un_rx_list_cnt);
   1436  1.11       mrg 	KASSERT(un->un_tx_list_cnt);
   1437  1.11       mrg 
   1438  1.13       mrg 	/* Unfortunate fact.  */
   1439  1.13       mrg 	KASSERT(un == device_private(un->un_dev));
   1440  1.13       mrg 
   1441  1.11       mrg 	un->un_pri = kmem_zalloc(sizeof(*un->un_pri), KM_SLEEP);
   1442  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1443  1.11       mrg 
   1444  1.44  riastrad 	usb_init_task(&unp->unp_mcasttask, usbnet_mcast_task, un,
   1445  1.44  riastrad 	    USB_TASKQ_MPSAFE);
   1446  1.44  riastrad 	usb_init_task(&unp->unp_ticktask, usbnet_tick_task, un,
   1447  1.44  riastrad 	    USB_TASKQ_MPSAFE);
   1448  1.11       mrg 	callout_init(&unp->unp_stat_ch, CALLOUT_MPSAFE);
   1449  1.11       mrg 	callout_setfunc(&unp->unp_stat_ch, usbnet_tick, un);
   1450  1.11       mrg 
   1451  1.11       mrg 	mutex_init(&unp->unp_txlock, MUTEX_DEFAULT, IPL_SOFTUSB);
   1452  1.11       mrg 	mutex_init(&unp->unp_rxlock, MUTEX_DEFAULT, IPL_SOFTUSB);
   1453  1.38   thorpej 	mutex_init(&unp->unp_core_lock, MUTEX_DEFAULT, IPL_NONE);
   1454  1.11       mrg 	cv_init(&unp->unp_detachcv, detname);
   1455   1.1       mrg 
   1456  1.11       mrg 	rnd_attach_source(&unp->unp_rndsrc, device_xname(un->un_dev),
   1457   1.1       mrg 	    RND_TYPE_NET, RND_FLAG_DEFAULT);
   1458   1.1       mrg 
   1459  1.10       mrg 	usbnet_rx_list_alloc(un);
   1460  1.10       mrg 	usbnet_tx_list_alloc(un);
   1461   1.1       mrg 
   1462  1.23       mrg 	unp->unp_number = atomic_inc_uint_nv(&usbnet_number);
   1463  1.23       mrg 
   1464  1.11       mrg 	unp->unp_attached = true;
   1465   1.1       mrg }
   1466   1.1       mrg 
   1467   1.1       mrg static void
   1468  1.22       mrg usbnet_attach_mii(struct usbnet *un, const struct usbnet_mii *unm)
   1469   1.1       mrg {
   1470   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1471  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1472  1.11       mrg 	struct mii_data * const mii = &unp->unp_mii;
   1473  1.11       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
   1474   1.1       mrg 
   1475  1.10       mrg 	KASSERT(un->un_ops->uno_read_reg);
   1476  1.10       mrg 	KASSERT(un->un_ops->uno_write_reg);
   1477  1.10       mrg 	KASSERT(un->un_ops->uno_statchg);
   1478  1.10       mrg 
   1479   1.1       mrg 	mii->mii_ifp = ifp;
   1480  1.10       mrg 	mii->mii_readreg = usbnet_mii_readreg;
   1481  1.10       mrg 	mii->mii_writereg = usbnet_mii_writereg;
   1482  1.10       mrg 	mii->mii_statchg = usbnet_mii_statchg;
   1483   1.1       mrg 	mii->mii_flags = MIIF_AUTOTSLEEP;
   1484   1.1       mrg 
   1485  1.11       mrg 	usbnet_ec(un)->ec_mii = mii;
   1486  1.38   thorpej 	ifmedia_init_with_lock(&mii->mii_media, 0,
   1487  1.38   thorpej 	    usbnet_media_upd, ether_mediastatus, usbnet_mutex_core(un));
   1488  1.22       mrg 	mii_attach(un->un_dev, mii, unm->un_mii_capmask, unm->un_mii_phyloc,
   1489  1.22       mrg 		   unm->un_mii_offset, unm->un_mii_flags);
   1490   1.1       mrg 
   1491   1.1       mrg 	if (LIST_FIRST(&mii->mii_phys) == NULL) {
   1492   1.1       mrg 		ifmedia_add(&mii->mii_media, IFM_ETHER | IFM_NONE, 0, NULL);
   1493   1.1       mrg 		ifmedia_set(&mii->mii_media, IFM_ETHER | IFM_NONE);
   1494   1.1       mrg 	} else
   1495   1.1       mrg 		ifmedia_set(&mii->mii_media, IFM_ETHER | IFM_AUTO);
   1496   1.1       mrg }
   1497   1.1       mrg 
   1498   1.1       mrg void
   1499   1.1       mrg usbnet_attach_ifp(struct usbnet *un,
   1500   1.1       mrg 		  unsigned if_flags,		/* additional if_flags */
   1501   1.2       mrg 		  unsigned if_extflags,		/* additional if_extflags */
   1502  1.22       mrg 		  const struct usbnet_mii *unm)	/* additional mii_attach flags */
   1503   1.1       mrg {
   1504   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1505  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1506  1.11       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
   1507   1.1       mrg 
   1508  1.11       mrg 	KASSERT(unp->unp_attached);
   1509  1.48  riastrad 	KASSERT(!unp->unp_ifp_attached);
   1510   1.1       mrg 
   1511  1.48  riastrad 	ifp->if_softc = un;
   1512   1.1       mrg 	strlcpy(ifp->if_xname, device_xname(un->un_dev), IFNAMSIZ);
   1513   1.1       mrg 	ifp->if_flags = if_flags;
   1514   1.1       mrg 	ifp->if_extflags = IFEF_MPSAFE | if_extflags;
   1515  1.38   thorpej 	ifp->if_ioctl = usbnet_if_ioctl;
   1516  1.38   thorpej 	ifp->if_start = usbnet_if_start;
   1517  1.38   thorpej 	ifp->if_init = usbnet_if_init;
   1518  1.38   thorpej 	ifp->if_stop = usbnet_if_stop;
   1519   1.1       mrg 
   1520  1.22       mrg 	if (unm)
   1521  1.22       mrg 		usbnet_attach_mii(un, unm);
   1522   1.4       mrg 	else
   1523  1.11       mrg 		unp->unp_link = true;
   1524   1.1       mrg 
   1525   1.1       mrg 	/* Attach the interface. */
   1526  1.42  riastrad 	if_initialize(ifp);
   1527  1.17       mrg 	if (ifp->_if_input == NULL)
   1528  1.17       mrg 		ifp->if_percpuq = if_percpuq_create(ifp);
   1529  1.17       mrg 	if_register(ifp);
   1530  1.48  riastrad 	unp->unp_ifp_attached = true;
   1531   1.5       mrg 
   1532   1.5       mrg 	/*
   1533   1.5       mrg 	 * If ethernet address is all zero, skip ether_ifattach() and
   1534   1.5       mrg 	 * instead attach bpf here..
   1535   1.5       mrg 	 */
   1536   1.5       mrg 	if (!usbnet_empty_eaddr(un)) {
   1537  1.11       mrg 		ether_set_ifflags_cb(&unp->unp_ec, usbnet_ifflags_cb);
   1538   1.6       mrg 		aprint_normal_dev(un->un_dev, "Ethernet address %s\n",
   1539   1.6       mrg 		    ether_sprintf(un->un_eaddr));
   1540   1.5       mrg 		ether_ifattach(ifp, un->un_eaddr);
   1541   1.5       mrg 	} else {
   1542   1.5       mrg 		if_alloc_sadl(ifp);
   1543   1.5       mrg 		bpf_attach(ifp, DLT_RAW, 0);
   1544   1.5       mrg 	}
   1545   1.8       mrg 
   1546  1.17       mrg 	/* Now ready, and attached. */
   1547  1.17       mrg 	IFQ_SET_READY(&ifp->if_snd);
   1548  1.17       mrg 
   1549   1.8       mrg 	usbd_add_drv_event(USB_EVENT_DRIVER_ATTACH, un->un_udev, un->un_dev);
   1550   1.8       mrg 
   1551   1.8       mrg 	if (!pmf_device_register(un->un_dev, NULL, NULL))
   1552   1.8       mrg 		aprint_error_dev(un->un_dev, "couldn't establish power handler\n");
   1553   1.1       mrg }
   1554   1.1       mrg 
   1555   1.1       mrg int
   1556   1.1       mrg usbnet_detach(device_t self, int flags)
   1557   1.1       mrg {
   1558   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1559   1.1       mrg 	struct usbnet * const un = device_private(self);
   1560  1.24       mrg 	struct usbnet_private * const unp = un->un_pri;
   1561  1.24       mrg 
   1562  1.24       mrg 	/* Detached before attached finished, so just bail out. */
   1563  1.24       mrg 	if (unp == NULL || !unp->unp_attached)
   1564  1.24       mrg 		return 0;
   1565  1.24       mrg 
   1566  1.11       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
   1567  1.11       mrg 	struct mii_data * const mii = usbnet_mii(un);
   1568   1.1       mrg 
   1569  1.38   thorpej 	mutex_enter(&unp->unp_core_lock);
   1570  1.11       mrg 	unp->unp_dying = true;
   1571  1.38   thorpej 	mutex_exit(&unp->unp_core_lock);
   1572   1.1       mrg 
   1573  1.47  riastrad 	IFNET_LOCK(ifp);
   1574   1.1       mrg 	if (ifp->if_flags & IFF_RUNNING) {
   1575  1.38   thorpej 		usbnet_if_stop(ifp, 1);
   1576   1.1       mrg 	}
   1577  1.47  riastrad 	IFNET_UNLOCK(ifp);
   1578   1.1       mrg 
   1579  1.26       mrg 	callout_halt(&unp->unp_stat_ch, NULL);
   1580  1.26       mrg 	usb_rem_task_wait(un->un_udev, &unp->unp_ticktask, USB_TASKQ_DRIVER,
   1581  1.26       mrg 	    NULL);
   1582  1.44  riastrad 	usb_rem_task_wait(un->un_udev, &unp->unp_mcasttask, USB_TASKQ_DRIVER,
   1583  1.44  riastrad 	    NULL);
   1584  1.26       mrg 
   1585  1.38   thorpej 	mutex_enter(&unp->unp_core_lock);
   1586  1.11       mrg 	unp->unp_refcnt--;
   1587  1.32  riastrad 	while (unp->unp_refcnt >= 0) {
   1588   1.1       mrg 		/* Wait for processes to go away */
   1589  1.38   thorpej 		cv_wait(&unp->unp_detachcv, &unp->unp_core_lock);
   1590   1.1       mrg 	}
   1591  1.38   thorpej 	mutex_exit(&unp->unp_core_lock);
   1592   1.1       mrg 
   1593   1.1       mrg 	usbnet_rx_list_free(un);
   1594   1.1       mrg 	usbnet_tx_list_free(un);
   1595   1.1       mrg 
   1596  1.11       mrg 	callout_destroy(&unp->unp_stat_ch);
   1597  1.11       mrg 	rnd_detach_source(&unp->unp_rndsrc);
   1598   1.1       mrg 
   1599   1.1       mrg 	if (mii) {
   1600   1.1       mrg 		mii_detach(mii, MII_PHY_ANY, MII_OFFSET_ANY);
   1601  1.35   thorpej 		ifmedia_fini(&mii->mii_media);
   1602   1.1       mrg 	}
   1603  1.48  riastrad 	if (unp->unp_ifp_attached) {
   1604   1.5       mrg 		if (!usbnet_empty_eaddr(un))
   1605   1.5       mrg 			ether_ifdetach(ifp);
   1606   1.5       mrg 		else
   1607   1.5       mrg 			bpf_detach(ifp);
   1608   1.1       mrg 		if_detach(ifp);
   1609   1.1       mrg 	}
   1610  1.31  riastrad 	usbnet_ec(un)->ec_mii = NULL;
   1611   1.1       mrg 
   1612  1.44  riastrad 	/*
   1613  1.44  riastrad 	 * We have already waited for the multicast task to complete.
   1614  1.44  riastrad 	 * Unfortunately, until if_detach, nothing has prevented it
   1615  1.44  riastrad 	 * from running again -- another thread might issue if_mcast_op
   1616  1.44  riastrad 	 * between the time of our first usb_rem_task_wait and the time
   1617  1.44  riastrad 	 * we actually get around to if_detach.
   1618  1.44  riastrad 	 *
   1619  1.44  riastrad 	 * Fortunately, the first usb_rem_task_wait ensures that if the
   1620  1.44  riastrad 	 * task is scheduled again, it will witness our setting of
   1621  1.44  riastrad 	 * unp_dying to true[*].  So after that point, if the task is
   1622  1.44  riastrad 	 * scheduled again, it will decline to touch IFNET_LOCK and do
   1623  1.44  riastrad 	 * nothing.  But we still need to wait for it to complete.
   1624  1.44  riastrad 	 *
   1625  1.44  riastrad 	 * It would be nice if we could write
   1626  1.44  riastrad 	 *
   1627  1.44  riastrad 	 *	if_pleasestopissuingmcastopsthanks(ifp);
   1628  1.44  riastrad 	 *	usb_rem_task_wait(..., &unp->unp_mcasttask, ...);
   1629  1.44  riastrad 	 *	if_detach(ifp);
   1630  1.44  riastrad 	 *
   1631  1.44  riastrad 	 * and then we would need only one usb_rem_task_wait.
   1632  1.44  riastrad 	 *
   1633  1.44  riastrad 	 * Unfortunately, there is no such operation available in
   1634  1.44  riastrad 	 * sys/net at the moment, and it would require a bit of
   1635  1.44  riastrad 	 * coordination with if_mcast_op and doifioctl probably under a
   1636  1.44  riastrad 	 * new lock.  So we'll use this kludge until that mechanism is
   1637  1.44  riastrad 	 * invented.
   1638  1.44  riastrad 	 *
   1639  1.44  riastrad 	 * [*] This is not exactly a documented property of the API,
   1640  1.44  riastrad 	 * but it is implied by the single lock in the task queue
   1641  1.44  riastrad 	 * serializing changes to the task state.
   1642  1.44  riastrad 	 */
   1643  1.44  riastrad 	usb_rem_task_wait(un->un_udev, &unp->unp_mcasttask, USB_TASKQ_DRIVER,
   1644  1.44  riastrad 	    NULL);
   1645  1.44  riastrad 
   1646  1.11       mrg 	cv_destroy(&unp->unp_detachcv);
   1647  1.38   thorpej 	mutex_destroy(&unp->unp_core_lock);
   1648  1.11       mrg 	mutex_destroy(&unp->unp_rxlock);
   1649  1.11       mrg 	mutex_destroy(&unp->unp_txlock);
   1650   1.1       mrg 
   1651   1.1       mrg 	pmf_device_deregister(un->un_dev);
   1652   1.1       mrg 
   1653   1.1       mrg 	usbd_add_drv_event(USB_EVENT_DRIVER_DETACH, un->un_udev, un->un_dev);
   1654   1.1       mrg 
   1655  1.11       mrg 	kmem_free(unp, sizeof(*unp));
   1656  1.26       mrg 	un->un_pri = NULL;
   1657  1.11       mrg 
   1658   1.1       mrg 	return 0;
   1659   1.1       mrg }
   1660   1.1       mrg 
   1661   1.1       mrg int
   1662   1.1       mrg usbnet_activate(device_t self, devact_t act)
   1663   1.1       mrg {
   1664   1.4       mrg 	USBNETHIST_FUNC(); USBNETHIST_CALLED();
   1665   1.1       mrg 	struct usbnet * const un = device_private(self);
   1666  1.11       mrg 	struct usbnet_private * const unp = un->un_pri;
   1667   1.1       mrg 	struct ifnet * const ifp = usbnet_ifp(un);
   1668   1.1       mrg 
   1669   1.1       mrg 	switch (act) {
   1670   1.1       mrg 	case DVACT_DEACTIVATE:
   1671   1.1       mrg 		if_deactivate(ifp);
   1672   1.1       mrg 
   1673  1.38   thorpej 		mutex_enter(&unp->unp_core_lock);
   1674  1.11       mrg 		unp->unp_dying = true;
   1675  1.38   thorpej 		mutex_exit(&unp->unp_core_lock);
   1676  1.11       mrg 
   1677  1.11       mrg 		mutex_enter(&unp->unp_rxlock);
   1678  1.11       mrg 		mutex_enter(&unp->unp_txlock);
   1679  1.11       mrg 		unp->unp_stopping = true;
   1680  1.11       mrg 		mutex_exit(&unp->unp_txlock);
   1681  1.11       mrg 		mutex_exit(&unp->unp_rxlock);
   1682   1.1       mrg 
   1683   1.1       mrg 		return 0;
   1684   1.1       mrg 	default:
   1685   1.1       mrg 		return EOPNOTSUPP;
   1686   1.1       mrg 	}
   1687   1.1       mrg }
   1688   1.1       mrg 
   1689   1.1       mrg MODULE(MODULE_CLASS_MISC, usbnet, NULL);
   1690   1.1       mrg 
   1691   1.1       mrg static int
   1692   1.1       mrg usbnet_modcmd(modcmd_t cmd, void *arg)
   1693   1.1       mrg {
   1694   1.1       mrg 	switch (cmd) {
   1695   1.1       mrg 	case MODULE_CMD_INIT:
   1696   1.4       mrg 		return 0;
   1697   1.1       mrg 	case MODULE_CMD_FINI:
   1698   1.1       mrg 		return 0;
   1699   1.1       mrg 	case MODULE_CMD_STAT:
   1700   1.1       mrg 	case MODULE_CMD_AUTOUNLOAD:
   1701   1.1       mrg 	default:
   1702   1.1       mrg 		return ENOTTY;
   1703   1.1       mrg 	}
   1704   1.1       mrg }
   1705