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if_ure.c revision 1.17
      1  1.17      mrg /*	$NetBSD: if_ure.c,v 1.17 2019/08/06 00:19:57 mrg Exp $	*/
      2  1.15      mrg /*	$OpenBSD: if_ure.c,v 1.10 2018/11/02 21:32:30 jcs Exp $	*/
      3  1.11      mrg 
      4   1.1      rin /*-
      5   1.1      rin  * Copyright (c) 2015-2016 Kevin Lo <kevlo (at) FreeBSD.org>
      6   1.1      rin  * All rights reserved.
      7   1.1      rin  *
      8   1.1      rin  * Redistribution and use in source and binary forms, with or without
      9   1.1      rin  * modification, are permitted provided that the following conditions
     10   1.1      rin  * are met:
     11   1.1      rin  * 1. Redistributions of source code must retain the above copyright
     12   1.1      rin  *    notice, this list of conditions and the following disclaimer.
     13   1.1      rin  * 2. Redistributions in binary form must reproduce the above copyright
     14   1.1      rin  *    notice, this list of conditions and the following disclaimer in the
     15   1.1      rin  *    documentation and/or other materials provided with the distribution.
     16   1.1      rin  *
     17   1.1      rin  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     18   1.1      rin  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     19   1.1      rin  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     20   1.1      rin  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     21   1.1      rin  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     22   1.1      rin  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     23   1.1      rin  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     24   1.1      rin  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     25   1.1      rin  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     26   1.1      rin  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     27   1.1      rin  * SUCH DAMAGE.
     28   1.1      rin  */
     29   1.1      rin 
     30   1.1      rin /* RealTek RTL8152/RTL8153 10/100/Gigabit USB Ethernet device */
     31   1.1      rin 
     32   1.1      rin #include <sys/cdefs.h>
     33  1.17      mrg __KERNEL_RCSID(0, "$NetBSD: if_ure.c,v 1.17 2019/08/06 00:19:57 mrg Exp $");
     34   1.1      rin 
     35   1.1      rin #ifdef _KERNEL_OPT
     36   1.1      rin #include "opt_usb.h"
     37   1.1      rin #include "opt_inet.h"
     38   1.1      rin #endif
     39   1.1      rin 
     40   1.1      rin #include <sys/param.h>
     41   1.1      rin #include <sys/systm.h>
     42   1.1      rin #include <sys/kernel.h>
     43   1.1      rin 
     44  1.15      mrg #include <net/route.h>
     45   1.1      rin 
     46  1.16      mrg #include <dev/usb/usbnet.h>
     47  1.16      mrg 
     48   1.1      rin #include <netinet/in_offload.h>		/* XXX for in_undefer_cksum() */
     49   1.1      rin #ifdef INET6
     50  1.16      mrg #include <netinet/in.h>
     51   1.1      rin #include <netinet6/in6_offload.h>	/* XXX for in6_undefer_cksum() */
     52   1.1      rin #endif
     53   1.1      rin 
     54   1.1      rin #include <dev/ic/rtl81x9reg.h>		/* XXX for RTK_GMEDIASTAT */
     55   1.1      rin #include <dev/usb/if_urereg.h>
     56   1.1      rin #include <dev/usb/if_urevar.h>
     57   1.1      rin 
     58  1.15      mrg #define URE_PRINTF(un, fmt, args...) \
     59  1.15      mrg 	device_printf((un)->un_dev, "%s: " fmt, __func__, ##args);
     60   1.1      rin 
     61   1.1      rin #define URE_DEBUG
     62   1.1      rin #ifdef URE_DEBUG
     63   1.1      rin #define DPRINTF(x)	do { if (uredebug) printf x; } while (0)
     64   1.1      rin #define DPRINTFN(n, x)	do { if (uredebug >= (n)) printf x; } while (0)
     65   1.1      rin int	uredebug = 1;
     66   1.1      rin #else
     67   1.1      rin #define DPRINTF(x)
     68   1.1      rin #define DPRINTFN(n, x)
     69   1.1      rin #endif
     70   1.1      rin 
     71   1.1      rin static const struct usb_devno ure_devs[] = {
     72   1.1      rin 	{ USB_VENDOR_REALTEK, USB_PRODUCT_REALTEK_RTL8152 },
     73   1.1      rin 	{ USB_VENDOR_REALTEK, USB_PRODUCT_REALTEK_RTL8153 }
     74   1.1      rin };
     75   1.1      rin 
     76   1.1      rin static int	ure_match(device_t, cfdata_t, void *);
     77   1.1      rin static void	ure_attach(device_t, device_t, void *);
     78   1.1      rin static int	ure_init(struct ifnet *);
     79  1.15      mrg static void	ure_reset(struct usbnet *);
     80   1.1      rin static void	ure_miibus_statchg(struct ifnet *);
     81   1.1      rin static uint32_t	ure_txcsum(struct mbuf *);
     82   1.1      rin static int	ure_rxcsum(struct ifnet *, struct ure_rxpkt *);
     83  1.15      mrg static unsigned ure_tx_prepare(struct usbnet *, struct mbuf *,
     84  1.15      mrg 			       struct usbnet_chain *);
     85  1.15      mrg static void	ure_rxeof_loop(struct usbnet *, struct usbd_xfer *,
     86  1.15      mrg 			       struct usbnet_chain *, uint32_t);
     87   1.1      rin static void	ure_rtl8152_init(struct ure_softc *);
     88   1.1      rin static void	ure_rtl8153_init(struct ure_softc *);
     89   1.1      rin static void	ure_disable_teredo(struct ure_softc *);
     90   1.1      rin static void	ure_init_fifo(struct ure_softc *);
     91   1.1      rin 
     92   1.1      rin CFATTACH_DECL_NEW(ure, sizeof(struct ure_softc), ure_match, ure_attach,
     93  1.15      mrg     usbnet_detach, usbnet_activate);
     94   1.1      rin 
     95   1.1      rin static int
     96  1.15      mrg ure_ctl(struct usbnet *un, uint8_t rw, uint16_t val, uint16_t index,
     97   1.1      rin     void *buf, int len)
     98   1.1      rin {
     99   1.1      rin 	usb_device_request_t req;
    100   1.1      rin 	usbd_status err;
    101   1.1      rin 
    102  1.15      mrg 	if (un->un_dying)
    103   1.1      rin 		return 0;
    104   1.1      rin 
    105   1.1      rin 	if (rw == URE_CTL_WRITE)
    106   1.1      rin 		req.bmRequestType = UT_WRITE_VENDOR_DEVICE;
    107   1.1      rin 	else
    108   1.1      rin 		req.bmRequestType = UT_READ_VENDOR_DEVICE;
    109   1.1      rin 	req.bRequest = UR_SET_ADDRESS;
    110   1.1      rin 	USETW(req.wValue, val);
    111   1.1      rin 	USETW(req.wIndex, index);
    112   1.1      rin 	USETW(req.wLength, len);
    113   1.1      rin 
    114   1.1      rin 	DPRINTFN(5, ("ure_ctl: rw %d, val 0x%04hu, index 0x%04hu, len %d\n",
    115   1.1      rin 	    rw, val, index, len));
    116  1.15      mrg 	err = usbd_do_request(un->un_udev, &req, buf);
    117   1.1      rin 	if (err) {
    118   1.1      rin 		DPRINTF(("ure_ctl: error %d\n", err));
    119   1.1      rin 		return -1;
    120   1.1      rin 	}
    121   1.1      rin 
    122   1.1      rin 	return 0;
    123   1.1      rin }
    124   1.1      rin 
    125   1.1      rin static int
    126  1.15      mrg ure_read_mem(struct usbnet *un, uint16_t addr, uint16_t index,
    127   1.1      rin     void *buf, int len)
    128   1.1      rin {
    129  1.15      mrg 	return ure_ctl(un, URE_CTL_READ, addr, index, buf, len);
    130   1.1      rin }
    131   1.1      rin 
    132   1.1      rin static int
    133  1.15      mrg ure_write_mem(struct usbnet *un, uint16_t addr, uint16_t index,
    134   1.1      rin     void *buf, int len)
    135   1.1      rin {
    136  1.15      mrg 	return ure_ctl(un, URE_CTL_WRITE, addr, index, buf, len);
    137   1.1      rin }
    138   1.1      rin 
    139   1.1      rin static uint8_t
    140  1.15      mrg ure_read_1(struct usbnet *un, uint16_t reg, uint16_t index)
    141   1.1      rin {
    142   1.1      rin 	uint32_t val;
    143   1.1      rin 	uint8_t temp[4];
    144   1.1      rin 	uint8_t shift;
    145   1.1      rin 
    146   1.1      rin 	shift = (reg & 3) << 3;
    147   1.1      rin 	reg &= ~3;
    148   1.5  msaitoh 
    149  1.15      mrg 	ure_read_mem(un, reg, index, &temp, 4);
    150   1.1      rin 	val = UGETDW(temp);
    151   1.1      rin 	val >>= shift;
    152   1.1      rin 
    153   1.1      rin 	return val & 0xff;
    154   1.1      rin }
    155   1.1      rin 
    156   1.1      rin static uint16_t
    157  1.15      mrg ure_read_2(struct usbnet *un, uint16_t reg, uint16_t index)
    158   1.1      rin {
    159   1.1      rin 	uint32_t val;
    160   1.1      rin 	uint8_t temp[4];
    161   1.1      rin 	uint8_t shift;
    162   1.1      rin 
    163   1.1      rin 	shift = (reg & 2) << 3;
    164   1.1      rin 	reg &= ~3;
    165   1.1      rin 
    166  1.15      mrg 	ure_read_mem(un, reg, index, &temp, 4);
    167   1.1      rin 	val = UGETDW(temp);
    168   1.1      rin 	val >>= shift;
    169   1.1      rin 
    170   1.1      rin 	return val & 0xffff;
    171   1.1      rin }
    172   1.1      rin 
    173   1.1      rin static uint32_t
    174  1.15      mrg ure_read_4(struct usbnet *un, uint16_t reg, uint16_t index)
    175   1.1      rin {
    176   1.1      rin 	uint8_t temp[4];
    177   1.1      rin 
    178  1.15      mrg 	ure_read_mem(un, reg, index, &temp, 4);
    179   1.1      rin 	return UGETDW(temp);
    180   1.1      rin }
    181   1.1      rin 
    182   1.1      rin static int
    183  1.15      mrg ure_write_1(struct usbnet *un, uint16_t reg, uint16_t index, uint32_t val)
    184   1.1      rin {
    185   1.1      rin 	uint16_t byen;
    186   1.1      rin 	uint8_t temp[4];
    187   1.1      rin 	uint8_t shift;
    188   1.1      rin 
    189   1.1      rin 	byen = URE_BYTE_EN_BYTE;
    190   1.1      rin 	shift = reg & 3;
    191   1.1      rin 	val &= 0xff;
    192   1.1      rin 
    193   1.1      rin 	if (reg & 3) {
    194   1.1      rin 		byen <<= shift;
    195   1.1      rin 		val <<= (shift << 3);
    196   1.1      rin 		reg &= ~3;
    197   1.1      rin 	}
    198   1.1      rin 
    199   1.1      rin 	USETDW(temp, val);
    200  1.15      mrg 	return ure_write_mem(un, reg, index | byen, &temp, 4);
    201   1.1      rin }
    202   1.1      rin 
    203   1.1      rin static int
    204  1.15      mrg ure_write_2(struct usbnet *un, uint16_t reg, uint16_t index, uint32_t val)
    205   1.1      rin {
    206   1.1      rin 	uint16_t byen;
    207   1.1      rin 	uint8_t temp[4];
    208   1.1      rin 	uint8_t shift;
    209   1.1      rin 
    210   1.1      rin 	byen = URE_BYTE_EN_WORD;
    211   1.1      rin 	shift = reg & 2;
    212   1.1      rin 	val &= 0xffff;
    213   1.1      rin 
    214   1.1      rin 	if (reg & 2) {
    215   1.1      rin 		byen <<= shift;
    216   1.1      rin 		val <<= (shift << 3);
    217   1.1      rin 		reg &= ~3;
    218   1.1      rin 	}
    219   1.1      rin 
    220   1.1      rin 	USETDW(temp, val);
    221  1.15      mrg 	return ure_write_mem(un, reg, index | byen, &temp, 4);
    222   1.1      rin }
    223   1.1      rin 
    224   1.1      rin static int
    225  1.15      mrg ure_write_4(struct usbnet *un, uint16_t reg, uint16_t index, uint32_t val)
    226   1.1      rin {
    227   1.1      rin 	uint8_t temp[4];
    228   1.1      rin 
    229   1.1      rin 	USETDW(temp, val);
    230  1.15      mrg 	return ure_write_mem(un, reg, index | URE_BYTE_EN_DWORD, &temp, 4);
    231   1.1      rin }
    232   1.1      rin 
    233   1.1      rin static uint16_t
    234  1.15      mrg ure_ocp_reg_read(struct usbnet *un, uint16_t addr)
    235   1.1      rin {
    236   1.1      rin 	uint16_t reg;
    237   1.1      rin 
    238  1.15      mrg 	ure_write_2(un, URE_PLA_OCP_GPHY_BASE, URE_MCU_TYPE_PLA, addr & 0xf000);
    239   1.1      rin 	reg = (addr & 0x0fff) | 0xb000;
    240   1.1      rin 
    241  1.15      mrg 	return ure_read_2(un, reg, URE_MCU_TYPE_PLA);
    242   1.1      rin }
    243   1.1      rin 
    244   1.1      rin static void
    245  1.15      mrg ure_ocp_reg_write(struct usbnet *un, uint16_t addr, uint16_t data)
    246   1.1      rin {
    247   1.1      rin 	uint16_t reg;
    248   1.1      rin 
    249  1.15      mrg 	ure_write_2(un, URE_PLA_OCP_GPHY_BASE, URE_MCU_TYPE_PLA, addr & 0xf000);
    250   1.1      rin 	reg = (addr & 0x0fff) | 0xb000;
    251   1.1      rin 
    252  1.15      mrg 	ure_write_2(un, reg, URE_MCU_TYPE_PLA, data);
    253   1.1      rin }
    254   1.1      rin 
    255  1.15      mrg static usbd_status
    256  1.15      mrg ure_mii_read_reg(struct usbnet *un, int phy, int reg, uint16_t *val)
    257   1.1      rin {
    258   1.1      rin 	/* Let the rgephy driver read the URE_PLA_PHYSTATUS register. */
    259   1.1      rin 	if (reg == RTK_GMEDIASTAT) {
    260  1.15      mrg 		*val = ure_read_1(un, URE_PLA_PHYSTATUS, URE_MCU_TYPE_PLA);
    261  1.15      mrg 		return USBD_NORMAL_COMPLETION;
    262   1.1      rin 	}
    263   1.1      rin 
    264  1.15      mrg 	*val = ure_ocp_reg_read(un, URE_OCP_BASE_MII + reg * 2);
    265   1.1      rin 
    266  1.15      mrg 	return USBD_NORMAL_COMPLETION;
    267   1.1      rin }
    268   1.1      rin 
    269  1.15      mrg static usbd_status
    270  1.15      mrg ure_mii_write_reg(struct usbnet *un, int phy, int reg, uint16_t val)
    271   1.1      rin {
    272  1.15      mrg 	ure_ocp_reg_write(un, URE_OCP_BASE_MII + reg * 2, val);
    273   1.1      rin 
    274  1.15      mrg 	return USBD_NORMAL_COMPLETION;
    275   1.1      rin }
    276   1.1      rin 
    277   1.1      rin static void
    278   1.1      rin ure_miibus_statchg(struct ifnet *ifp)
    279   1.1      rin {
    280  1.15      mrg 	struct usbnet * const un = ifp->if_softc;
    281  1.15      mrg 	struct ure_softc * const sc = usbnet_softc(un);
    282  1.15      mrg 	struct mii_data * const mii = usbnet_mii(un);
    283   1.1      rin 
    284  1.15      mrg 	if (un->un_dying)
    285   1.1      rin 		return;
    286   1.1      rin 
    287  1.15      mrg 	un->un_link = false;
    288   1.1      rin 	if ((mii->mii_media_status & (IFM_ACTIVE | IFM_AVALID)) ==
    289   1.1      rin 	    (IFM_ACTIVE | IFM_AVALID)) {
    290   1.1      rin 		switch (IFM_SUBTYPE(mii->mii_media_active)) {
    291   1.1      rin 		case IFM_10_T:
    292   1.1      rin 		case IFM_100_TX:
    293  1.15      mrg 			un->un_link = true;
    294   1.1      rin 			break;
    295   1.1      rin 		case IFM_1000_T:
    296   1.1      rin 			if ((sc->ure_flags & URE_FLAG_8152) != 0)
    297   1.1      rin 				break;
    298  1.15      mrg 			un->un_link = true;
    299   1.1      rin 			break;
    300   1.1      rin 		default:
    301   1.1      rin 			break;
    302   1.1      rin 		}
    303   1.1      rin 	}
    304   1.1      rin }
    305   1.1      rin 
    306   1.1      rin static void
    307  1.15      mrg ure_setiff_locked(struct usbnet *un)
    308   1.1      rin {
    309  1.15      mrg 	struct ethercom *ec = usbnet_ec(un);
    310  1.15      mrg 	struct ifnet *ifp = usbnet_ifp(un);
    311   1.1      rin 	struct ether_multi *enm;
    312   1.1      rin 	struct ether_multistep step;
    313   1.1      rin 	uint32_t hashes[2] = { 0, 0 };
    314   1.1      rin 	uint32_t hash;
    315   1.1      rin 	uint32_t rxmode;
    316   1.1      rin 
    317  1.15      mrg 	usbnet_isowned(un);
    318  1.11      mrg 
    319  1.15      mrg 	if (un->un_dying)
    320   1.1      rin 		return;
    321   1.1      rin 
    322  1.15      mrg 	rxmode = ure_read_4(un, URE_PLA_RCR, URE_MCU_TYPE_PLA);
    323   1.1      rin 	rxmode &= ~URE_RCR_ACPT_ALL;
    324   1.1      rin 
    325   1.1      rin 	/*
    326   1.1      rin 	 * Always accept frames destined to our station address.
    327   1.1      rin 	 * Always accept broadcast frames.
    328   1.1      rin 	 */
    329   1.1      rin 	rxmode |= URE_RCR_APM | URE_RCR_AB;
    330   1.1      rin 
    331   1.1      rin 	if (ifp->if_flags & IFF_PROMISC) {
    332   1.1      rin 		rxmode |= URE_RCR_AAP;
    333  1.13      mrg allmulti:
    334  1.13      mrg 		ETHER_LOCK(ec);
    335  1.13      mrg 		ec->ec_flags |= ETHER_F_ALLMULTI;
    336  1.13      mrg 		ETHER_UNLOCK(ec);
    337   1.1      rin 		rxmode |= URE_RCR_AM;
    338   1.1      rin 		hashes[0] = hashes[1] = 0xffffffff;
    339   1.1      rin 	} else {
    340   1.1      rin 		rxmode |= URE_RCR_AM;
    341   1.1      rin 
    342   1.7  msaitoh 		ETHER_LOCK(ec);
    343  1.13      mrg 		ec->ec_flags &= ~ETHER_F_ALLMULTI;
    344  1.13      mrg 
    345   1.7  msaitoh 		ETHER_FIRST_MULTI(step, ec, enm);
    346   1.1      rin 		while (enm != NULL) {
    347   1.1      rin 			if (memcmp(enm->enm_addrlo, enm->enm_addrhi,
    348   1.7  msaitoh 			    ETHER_ADDR_LEN)) {
    349   1.7  msaitoh 				ETHER_UNLOCK(ec);
    350   1.1      rin 				goto allmulti;
    351   1.7  msaitoh 			}
    352   1.1      rin 
    353   1.1      rin 			hash = ether_crc32_be(enm->enm_addrlo, ETHER_ADDR_LEN)
    354   1.1      rin 			    >> 26;
    355   1.1      rin 			if (hash < 32)
    356   1.1      rin 				hashes[0] |= (1 << hash);
    357   1.1      rin 			else
    358   1.1      rin 				hashes[1] |= (1 << (hash - 32));
    359   1.1      rin 
    360   1.1      rin 			ETHER_NEXT_MULTI(step, enm);
    361   1.1      rin 		}
    362   1.7  msaitoh 		ETHER_UNLOCK(ec);
    363   1.1      rin 
    364   1.1      rin 		hash = bswap32(hashes[0]);
    365   1.1      rin 		hashes[0] = bswap32(hashes[1]);
    366   1.1      rin 		hashes[1] = hash;
    367   1.1      rin 	}
    368   1.1      rin 
    369  1.15      mrg 	ure_write_4(un, URE_PLA_MAR0, URE_MCU_TYPE_PLA, hashes[0]);
    370  1.15      mrg 	ure_write_4(un, URE_PLA_MAR4, URE_MCU_TYPE_PLA, hashes[1]);
    371  1.15      mrg 	ure_write_4(un, URE_PLA_RCR, URE_MCU_TYPE_PLA, rxmode);
    372   1.1      rin }
    373   1.1      rin 
    374   1.1      rin static void
    375  1.15      mrg ure_setiff(struct usbnet *un)
    376  1.11      mrg {
    377  1.11      mrg 
    378  1.15      mrg 	usbnet_lock(un);
    379  1.15      mrg 	ure_setiff_locked(un);
    380  1.15      mrg 	usbnet_unlock(un);
    381  1.11      mrg }
    382  1.11      mrg 
    383  1.11      mrg static void
    384  1.15      mrg ure_reset(struct usbnet *un)
    385   1.1      rin {
    386   1.1      rin 	int i;
    387   1.1      rin 
    388  1.15      mrg 	usbnet_isowned(un);
    389  1.11      mrg 
    390  1.15      mrg 	ure_write_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA, URE_CR_RST);
    391   1.1      rin 
    392   1.1      rin 	for (i = 0; i < URE_TIMEOUT; i++) {
    393  1.15      mrg 		if (!(ure_read_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA) &
    394   1.1      rin 		    URE_CR_RST))
    395   1.1      rin 			break;
    396  1.15      mrg 		usbd_delay_ms(un->un_udev, 10);
    397   1.1      rin 	}
    398   1.1      rin 	if (i == URE_TIMEOUT)
    399  1.15      mrg 		URE_PRINTF(un, "reset never completed\n");
    400   1.1      rin }
    401   1.1      rin 
    402   1.1      rin static int
    403  1.11      mrg ure_init_locked(struct ifnet *ifp)
    404   1.1      rin {
    405  1.15      mrg 	struct usbnet * const un = ifp->if_softc;
    406   1.1      rin 	uint8_t eaddr[8];
    407   1.1      rin 
    408  1.15      mrg 	usbnet_isowned(un);
    409  1.11      mrg 
    410  1.15      mrg 	if (un->un_dying)
    411  1.11      mrg 		return EIO;
    412   1.1      rin 
    413   1.1      rin 	/* Cancel pending I/O. */
    414   1.1      rin 	if (ifp->if_flags & IFF_RUNNING)
    415  1.15      mrg 		usbnet_stop(un, ifp, 1);
    416   1.1      rin 
    417   1.1      rin 	/* Set MAC address. */
    418   1.1      rin 	memset(eaddr, 0, sizeof(eaddr));
    419   1.1      rin 	memcpy(eaddr, CLLADDR(ifp->if_sadl), ETHER_ADDR_LEN);
    420  1.15      mrg 	ure_write_1(un, URE_PLA_CRWECR, URE_MCU_TYPE_PLA, URE_CRWECR_CONFIG);
    421  1.15      mrg 	ure_write_mem(un, URE_PLA_IDR, URE_MCU_TYPE_PLA | URE_BYTE_EN_SIX_BYTES,
    422   1.1      rin 	    eaddr, 8);
    423  1.15      mrg 	ure_write_1(un, URE_PLA_CRWECR, URE_MCU_TYPE_PLA, URE_CRWECR_NORAML);
    424   1.1      rin 
    425   1.1      rin 	/* Reset the packet filter. */
    426  1.15      mrg 	ure_write_2(un, URE_PLA_FMC, URE_MCU_TYPE_PLA,
    427  1.15      mrg 	    ure_read_2(un, URE_PLA_FMC, URE_MCU_TYPE_PLA) &
    428   1.1      rin 	    ~URE_FMC_FCR_MCU_EN);
    429  1.15      mrg 	ure_write_2(un, URE_PLA_FMC, URE_MCU_TYPE_PLA,
    430  1.15      mrg 	    ure_read_2(un, URE_PLA_FMC, URE_MCU_TYPE_PLA) |
    431   1.1      rin 	    URE_FMC_FCR_MCU_EN);
    432   1.5  msaitoh 
    433   1.1      rin 	/* Enable transmit and receive. */
    434  1.15      mrg 	ure_write_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA,
    435  1.15      mrg 	    ure_read_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA) | URE_CR_RE |
    436   1.1      rin 	    URE_CR_TE);
    437   1.1      rin 
    438  1.15      mrg 	ure_write_2(un, URE_PLA_MISC_1, URE_MCU_TYPE_PLA,
    439  1.15      mrg 	    ure_read_2(un, URE_PLA_MISC_1, URE_MCU_TYPE_PLA) &
    440   1.1      rin 	    ~URE_RXDY_GATED_EN);
    441   1.1      rin 
    442   1.1      rin 	/* Load the multicast filter. */
    443  1.15      mrg 	ure_setiff_locked(un);
    444   1.1      rin 
    445  1.15      mrg 	return usbnet_init_rx_tx(un, 0, 0);
    446   1.1      rin }
    447   1.1      rin 
    448  1.11      mrg static int
    449  1.11      mrg ure_init(struct ifnet *ifp)
    450  1.11      mrg {
    451  1.15      mrg 	struct usbnet * const un = ifp->if_softc;
    452  1.11      mrg 
    453  1.15      mrg 	usbnet_lock(un);
    454  1.11      mrg 	int ret = ure_init_locked(ifp);
    455  1.15      mrg 	usbnet_unlock(un);
    456  1.11      mrg 
    457  1.11      mrg 	return ret;
    458  1.11      mrg }
    459  1.11      mrg 
    460   1.1      rin static void
    461  1.15      mrg ure_stop_cb(struct ifnet *ifp, int disable __unused)
    462   1.1      rin {
    463  1.15      mrg 	struct usbnet * const un = ifp->if_softc;
    464   1.1      rin 
    465  1.15      mrg 	ure_reset(un);
    466  1.11      mrg }
    467  1.11      mrg 
    468  1.11      mrg static void
    469   1.1      rin ure_rtl8152_init(struct ure_softc *sc)
    470   1.1      rin {
    471  1.15      mrg 	struct usbnet * const un = &sc->ure_un;
    472   1.1      rin 	uint32_t pwrctrl;
    473   1.1      rin 
    474   1.1      rin 	/* Disable ALDPS. */
    475  1.15      mrg 	ure_ocp_reg_write(un, URE_OCP_ALDPS_CONFIG, URE_ENPDNPS | URE_LINKENA |
    476   1.1      rin 	    URE_DIS_SDSAVE);
    477  1.15      mrg 	usbd_delay_ms(un->un_udev, 20);
    478   1.1      rin 
    479   1.1      rin 	if (sc->ure_chip & URE_CHIP_VER_4C00) {
    480  1.15      mrg 		ure_write_2(un, URE_PLA_LED_FEATURE, URE_MCU_TYPE_PLA,
    481  1.15      mrg 		    ure_read_2(un, URE_PLA_LED_FEATURE, URE_MCU_TYPE_PLA) &
    482   1.1      rin 		    ~URE_LED_MODE_MASK);
    483   1.1      rin 	}
    484   1.1      rin 
    485  1.15      mrg 	ure_write_2(un, URE_USB_UPS_CTRL, URE_MCU_TYPE_USB,
    486  1.15      mrg 	    ure_read_2(un, URE_USB_UPS_CTRL, URE_MCU_TYPE_USB) &
    487   1.1      rin 	    ~URE_POWER_CUT);
    488  1.15      mrg 	ure_write_2(un, URE_USB_PM_CTRL_STATUS, URE_MCU_TYPE_USB,
    489  1.15      mrg 	    ure_read_2(un, URE_USB_PM_CTRL_STATUS, URE_MCU_TYPE_USB) &
    490   1.1      rin 	    ~URE_RESUME_INDICATE);
    491   1.1      rin 
    492  1.15      mrg 	ure_write_2(un, URE_PLA_PHY_PWR, URE_MCU_TYPE_PLA,
    493  1.15      mrg 	    ure_read_2(un, URE_PLA_PHY_PWR, URE_MCU_TYPE_PLA) |
    494   1.1      rin 	    URE_TX_10M_IDLE_EN | URE_PFM_PWM_SWITCH);
    495  1.15      mrg 	pwrctrl = ure_read_4(un, URE_PLA_MAC_PWR_CTRL, URE_MCU_TYPE_PLA);
    496   1.1      rin 	pwrctrl &= ~URE_MCU_CLK_RATIO_MASK;
    497   1.1      rin 	pwrctrl |= URE_MCU_CLK_RATIO | URE_D3_CLK_GATED_EN;
    498  1.15      mrg 	ure_write_4(un, URE_PLA_MAC_PWR_CTRL, URE_MCU_TYPE_PLA, pwrctrl);
    499  1.15      mrg 	ure_write_2(un, URE_PLA_GPHY_INTR_IMR, URE_MCU_TYPE_PLA,
    500   1.1      rin 	    URE_GPHY_STS_MSK | URE_SPEED_DOWN_MSK | URE_SPDWN_RXDV_MSK |
    501   1.1      rin 	    URE_SPDWN_LINKCHG_MSK);
    502   1.1      rin 
    503   1.1      rin 	/* Enable Rx aggregation. */
    504  1.15      mrg 	ure_write_2(un, URE_USB_USB_CTRL, URE_MCU_TYPE_USB,
    505  1.15      mrg 	    ure_read_2(un, URE_USB_USB_CTRL, URE_MCU_TYPE_USB) &
    506   1.1      rin 	    ~URE_RX_AGG_DISABLE);
    507   1.1      rin 
    508   1.1      rin 	/* Disable ALDPS. */
    509  1.15      mrg 	ure_ocp_reg_write(un, URE_OCP_ALDPS_CONFIG, URE_ENPDNPS | URE_LINKENA |
    510   1.1      rin 	    URE_DIS_SDSAVE);
    511  1.15      mrg 	usbd_delay_ms(un->un_udev, 20);
    512   1.1      rin 
    513   1.1      rin 	ure_init_fifo(sc);
    514   1.1      rin 
    515  1.15      mrg 	ure_write_1(un, URE_USB_TX_AGG, URE_MCU_TYPE_USB,
    516   1.1      rin 	    URE_TX_AGG_MAX_THRESHOLD);
    517  1.15      mrg 	ure_write_4(un, URE_USB_RX_BUF_TH, URE_MCU_TYPE_USB, URE_RX_THR_HIGH);
    518  1.15      mrg 	ure_write_4(un, URE_USB_TX_DMA, URE_MCU_TYPE_USB,
    519   1.1      rin 	    URE_TEST_MODE_DISABLE | URE_TX_SIZE_ADJUST1);
    520   1.1      rin }
    521   1.1      rin 
    522   1.1      rin static void
    523   1.1      rin ure_rtl8153_init(struct ure_softc *sc)
    524   1.1      rin {
    525  1.15      mrg 	struct usbnet * const un = &sc->ure_un;
    526   1.1      rin 	uint16_t val;
    527   1.1      rin 	uint8_t u1u2[8];
    528   1.1      rin 	int i;
    529   1.1      rin 
    530   1.1      rin 	/* Disable ALDPS. */
    531  1.15      mrg 	ure_ocp_reg_write(un, URE_OCP_POWER_CFG,
    532  1.15      mrg 	    ure_ocp_reg_read(un, URE_OCP_POWER_CFG) & ~URE_EN_ALDPS);
    533  1.15      mrg 	usbd_delay_ms(un->un_udev, 20);
    534   1.1      rin 
    535   1.1      rin 	memset(u1u2, 0x00, sizeof(u1u2));
    536  1.15      mrg 	ure_write_mem(un, URE_USB_TOLERANCE,
    537   1.1      rin 	    URE_MCU_TYPE_USB | URE_BYTE_EN_SIX_BYTES, u1u2, sizeof(u1u2));
    538   1.1      rin 
    539   1.6  msaitoh 	for (i = 0; i < URE_TIMEOUT; i++) {
    540  1.15      mrg 		if (ure_read_2(un, URE_PLA_BOOT_CTRL, URE_MCU_TYPE_PLA) &
    541   1.1      rin 		    URE_AUTOLOAD_DONE)
    542   1.1      rin 			break;
    543  1.15      mrg 		usbd_delay_ms(un->un_udev, 10);
    544   1.1      rin 	}
    545   1.1      rin 	if (i == URE_TIMEOUT)
    546  1.15      mrg 		URE_PRINTF(un, "timeout waiting for chip autoload\n");
    547   1.1      rin 
    548   1.1      rin 	for (i = 0; i < URE_TIMEOUT; i++) {
    549  1.15      mrg 		val = ure_ocp_reg_read(un, URE_OCP_PHY_STATUS) &
    550   1.1      rin 		    URE_PHY_STAT_MASK;
    551   1.1      rin 		if (val == URE_PHY_STAT_LAN_ON || val == URE_PHY_STAT_PWRDN)
    552   1.1      rin 			break;
    553  1.15      mrg 		usbd_delay_ms(un->un_udev, 10);
    554   1.1      rin 	}
    555   1.1      rin 	if (i == URE_TIMEOUT)
    556  1.15      mrg 		URE_PRINTF(un, "timeout waiting for phy to stabilize\n");
    557   1.5  msaitoh 
    558  1.15      mrg 	ure_write_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB,
    559  1.15      mrg 	    ure_read_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB) &
    560   1.1      rin 	    ~URE_U2P3_ENABLE);
    561   1.1      rin 
    562   1.1      rin 	if (sc->ure_chip & URE_CHIP_VER_5C10) {
    563  1.15      mrg 		val = ure_read_2(un, URE_USB_SSPHYLINK2, URE_MCU_TYPE_USB);
    564   1.1      rin 		val &= ~URE_PWD_DN_SCALE_MASK;
    565   1.1      rin 		val |= URE_PWD_DN_SCALE(96);
    566  1.15      mrg 		ure_write_2(un, URE_USB_SSPHYLINK2, URE_MCU_TYPE_USB, val);
    567   1.1      rin 
    568  1.15      mrg 		ure_write_1(un, URE_USB_USB2PHY, URE_MCU_TYPE_USB,
    569  1.15      mrg 		    ure_read_1(un, URE_USB_USB2PHY, URE_MCU_TYPE_USB) |
    570   1.1      rin 		    URE_USB2PHY_L1 | URE_USB2PHY_SUSPEND);
    571   1.1      rin 	} else if (sc->ure_chip & URE_CHIP_VER_5C20) {
    572  1.15      mrg 		ure_write_1(un, URE_PLA_DMY_REG0, URE_MCU_TYPE_PLA,
    573  1.15      mrg 		    ure_read_1(un, URE_PLA_DMY_REG0, URE_MCU_TYPE_PLA) &
    574   1.1      rin 		    ~URE_ECM_ALDPS);
    575   1.1      rin 	}
    576   1.1      rin 	if (sc->ure_chip & (URE_CHIP_VER_5C20 | URE_CHIP_VER_5C30)) {
    577  1.15      mrg 		val = ure_read_1(un, URE_USB_CSR_DUMMY1, URE_MCU_TYPE_USB);
    578  1.15      mrg 		if (ure_read_2(un, URE_USB_BURST_SIZE, URE_MCU_TYPE_USB) ==
    579   1.1      rin 		    0)
    580   1.1      rin 			val &= ~URE_DYNAMIC_BURST;
    581   1.1      rin 		else
    582   1.1      rin 			val |= URE_DYNAMIC_BURST;
    583  1.15      mrg 		ure_write_1(un, URE_USB_CSR_DUMMY1, URE_MCU_TYPE_USB, val);
    584   1.1      rin 	}
    585   1.1      rin 
    586  1.15      mrg 	ure_write_1(un, URE_USB_CSR_DUMMY2, URE_MCU_TYPE_USB,
    587  1.15      mrg 	    ure_read_1(un, URE_USB_CSR_DUMMY2, URE_MCU_TYPE_USB) |
    588   1.1      rin 	    URE_EP4_FULL_FC);
    589   1.5  msaitoh 
    590  1.15      mrg 	ure_write_2(un, URE_USB_WDT11_CTRL, URE_MCU_TYPE_USB,
    591  1.15      mrg 	    ure_read_2(un, URE_USB_WDT11_CTRL, URE_MCU_TYPE_USB) &
    592   1.1      rin 	    ~URE_TIMER11_EN);
    593   1.1      rin 
    594  1.15      mrg 	ure_write_2(un, URE_PLA_LED_FEATURE, URE_MCU_TYPE_PLA,
    595  1.15      mrg 	    ure_read_2(un, URE_PLA_LED_FEATURE, URE_MCU_TYPE_PLA) &
    596   1.1      rin 	    ~URE_LED_MODE_MASK);
    597   1.5  msaitoh 
    598   1.1      rin 	if ((sc->ure_chip & URE_CHIP_VER_5C10) &&
    599  1.15      mrg 	    un->un_udev->ud_speed != USB_SPEED_SUPER)
    600   1.1      rin 		val = URE_LPM_TIMER_500MS;
    601   1.1      rin 	else
    602   1.1      rin 		val = URE_LPM_TIMER_500US;
    603  1.15      mrg 	ure_write_1(un, URE_USB_LPM_CTRL, URE_MCU_TYPE_USB,
    604   1.1      rin 	    val | URE_FIFO_EMPTY_1FB | URE_ROK_EXIT_LPM);
    605   1.1      rin 
    606  1.15      mrg 	val = ure_read_2(un, URE_USB_AFE_CTRL2, URE_MCU_TYPE_USB);
    607   1.1      rin 	val &= ~URE_SEN_VAL_MASK;
    608   1.1      rin 	val |= URE_SEN_VAL_NORMAL | URE_SEL_RXIDLE;
    609  1.15      mrg 	ure_write_2(un, URE_USB_AFE_CTRL2, URE_MCU_TYPE_USB, val);
    610   1.1      rin 
    611  1.15      mrg 	ure_write_2(un, URE_USB_CONNECT_TIMER, URE_MCU_TYPE_USB, 0x0001);
    612   1.1      rin 
    613  1.15      mrg 	ure_write_2(un, URE_USB_POWER_CUT, URE_MCU_TYPE_USB,
    614  1.15      mrg 	    ure_read_2(un, URE_USB_POWER_CUT, URE_MCU_TYPE_USB) &
    615   1.1      rin 	    ~(URE_PWR_EN | URE_PHASE2_EN));
    616  1.15      mrg 	ure_write_2(un, URE_USB_MISC_0, URE_MCU_TYPE_USB,
    617  1.15      mrg 	    ure_read_2(un, URE_USB_MISC_0, URE_MCU_TYPE_USB) &
    618   1.1      rin 	    ~URE_PCUT_STATUS);
    619   1.1      rin 
    620   1.1      rin 	memset(u1u2, 0xff, sizeof(u1u2));
    621  1.15      mrg 	ure_write_mem(un, URE_USB_TOLERANCE,
    622   1.1      rin 	    URE_MCU_TYPE_USB | URE_BYTE_EN_SIX_BYTES, u1u2, sizeof(u1u2));
    623   1.1      rin 
    624  1.15      mrg 	ure_write_2(un, URE_PLA_MAC_PWR_CTRL, URE_MCU_TYPE_PLA,
    625   1.1      rin 	    URE_ALDPS_SPDWN_RATIO);
    626  1.15      mrg 	ure_write_2(un, URE_PLA_MAC_PWR_CTRL2, URE_MCU_TYPE_PLA,
    627   1.1      rin 	    URE_EEE_SPDWN_RATIO);
    628  1.15      mrg 	ure_write_2(un, URE_PLA_MAC_PWR_CTRL3, URE_MCU_TYPE_PLA,
    629   1.1      rin 	    URE_PKT_AVAIL_SPDWN_EN | URE_SUSPEND_SPDWN_EN |
    630   1.1      rin 	    URE_U1U2_SPDWN_EN | URE_L1_SPDWN_EN);
    631  1.15      mrg 	ure_write_2(un, URE_PLA_MAC_PWR_CTRL4, URE_MCU_TYPE_PLA,
    632   1.1      rin 	    URE_PWRSAVE_SPDWN_EN | URE_RXDV_SPDWN_EN | URE_TX10MIDLE_EN |
    633   1.1      rin 	    URE_TP100_SPDWN_EN | URE_TP500_SPDWN_EN | URE_TP1000_SPDWN_EN |
    634   1.1      rin 	    URE_EEE_SPDWN_EN);
    635   1.1      rin 
    636  1.15      mrg 	val = ure_read_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB);
    637   1.1      rin 	if (!(sc->ure_chip & (URE_CHIP_VER_5C00 | URE_CHIP_VER_5C10)))
    638   1.1      rin 		val |= URE_U2P3_ENABLE;
    639   1.1      rin 	else
    640   1.1      rin 		val &= ~URE_U2P3_ENABLE;
    641  1.15      mrg 	ure_write_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB, val);
    642   1.1      rin 
    643   1.1      rin 	memset(u1u2, 0x00, sizeof(u1u2));
    644  1.15      mrg 	ure_write_mem(un, URE_USB_TOLERANCE,
    645   1.1      rin 	    URE_MCU_TYPE_USB | URE_BYTE_EN_SIX_BYTES, u1u2, sizeof(u1u2));
    646   1.1      rin 
    647   1.1      rin 	/* Disable ALDPS. */
    648  1.15      mrg 	ure_ocp_reg_write(un, URE_OCP_POWER_CFG,
    649  1.15      mrg 	    ure_ocp_reg_read(un, URE_OCP_POWER_CFG) & ~URE_EN_ALDPS);
    650  1.15      mrg 	usbd_delay_ms(un->un_udev, 20);
    651   1.1      rin 
    652   1.1      rin 	ure_init_fifo(sc);
    653   1.1      rin 
    654   1.1      rin 	/* Enable Rx aggregation. */
    655  1.15      mrg 	ure_write_2(un, URE_USB_USB_CTRL, URE_MCU_TYPE_USB,
    656  1.15      mrg 	    ure_read_2(un, URE_USB_USB_CTRL, URE_MCU_TYPE_USB) &
    657   1.1      rin 	    ~URE_RX_AGG_DISABLE);
    658   1.1      rin 
    659  1.15      mrg 	val = ure_read_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB);
    660   1.1      rin 	if (!(sc->ure_chip & (URE_CHIP_VER_5C00 | URE_CHIP_VER_5C10)))
    661   1.1      rin 		val |= URE_U2P3_ENABLE;
    662   1.1      rin 	else
    663   1.1      rin 		val &= ~URE_U2P3_ENABLE;
    664  1.15      mrg 	ure_write_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB, val);
    665   1.1      rin 
    666   1.1      rin 	memset(u1u2, 0xff, sizeof(u1u2));
    667  1.15      mrg 	ure_write_mem(un, URE_USB_TOLERANCE,
    668   1.1      rin 	    URE_MCU_TYPE_USB | URE_BYTE_EN_SIX_BYTES, u1u2, sizeof(u1u2));
    669   1.1      rin }
    670   1.1      rin 
    671   1.1      rin static void
    672   1.1      rin ure_disable_teredo(struct ure_softc *sc)
    673   1.1      rin {
    674  1.15      mrg 	struct usbnet * const un = &sc->ure_un;
    675   1.1      rin 
    676  1.15      mrg 	ure_write_4(un, URE_PLA_TEREDO_CFG, URE_MCU_TYPE_PLA,
    677  1.15      mrg 	    ure_read_4(un, URE_PLA_TEREDO_CFG, URE_MCU_TYPE_PLA) &
    678   1.1      rin 	    ~(URE_TEREDO_SEL | URE_TEREDO_RS_EVENT_MASK | URE_OOB_TEREDO_EN));
    679  1.15      mrg 	ure_write_2(un, URE_PLA_WDT6_CTRL, URE_MCU_TYPE_PLA,
    680   1.1      rin 	    URE_WDT6_SET_MODE);
    681  1.15      mrg 	ure_write_2(un, URE_PLA_REALWOW_TIMER, URE_MCU_TYPE_PLA, 0);
    682  1.15      mrg 	ure_write_4(un, URE_PLA_TEREDO_TIMER, URE_MCU_TYPE_PLA, 0);
    683   1.1      rin }
    684   1.1      rin 
    685   1.1      rin static void
    686   1.1      rin ure_init_fifo(struct ure_softc *sc)
    687   1.1      rin {
    688  1.15      mrg 	struct usbnet * const un = &sc->ure_un;
    689   1.1      rin 	uint32_t rx_fifo1, rx_fifo2;
    690   1.1      rin 	int i;
    691   1.1      rin 
    692  1.15      mrg 	ure_write_2(un, URE_PLA_MISC_1, URE_MCU_TYPE_PLA,
    693  1.15      mrg 	    ure_read_2(un, URE_PLA_MISC_1, URE_MCU_TYPE_PLA) |
    694   1.1      rin 	    URE_RXDY_GATED_EN);
    695   1.1      rin 
    696   1.1      rin 	ure_disable_teredo(sc);
    697   1.1      rin 
    698  1.15      mrg 	ure_write_4(un, URE_PLA_RCR, URE_MCU_TYPE_PLA,
    699  1.15      mrg 	    ure_read_4(un, URE_PLA_RCR, URE_MCU_TYPE_PLA) &
    700   1.1      rin 	    ~URE_RCR_ACPT_ALL);
    701   1.1      rin 
    702   1.1      rin 	if (!(sc->ure_flags & URE_FLAG_8152)) {
    703   1.1      rin 		if (sc->ure_chip & (URE_CHIP_VER_5C00 | URE_CHIP_VER_5C10 |
    704   1.1      rin 		    URE_CHIP_VER_5C20))
    705  1.15      mrg 			ure_ocp_reg_write(un, URE_OCP_ADC_CFG,
    706   1.1      rin 			    URE_CKADSEL_L | URE_ADC_EN | URE_EN_EMI_L);
    707   1.1      rin 		if (sc->ure_chip & URE_CHIP_VER_5C00)
    708  1.15      mrg 			ure_ocp_reg_write(un, URE_OCP_EEE_CFG,
    709  1.15      mrg 			    ure_ocp_reg_read(un, URE_OCP_EEE_CFG) &
    710   1.1      rin 			    ~URE_CTAP_SHORT_EN);
    711  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_POWER_CFG,
    712  1.15      mrg 		    ure_ocp_reg_read(un, URE_OCP_POWER_CFG) |
    713   1.1      rin 		    URE_EEE_CLKDIV_EN);
    714  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_DOWN_SPEED,
    715  1.15      mrg 		    ure_ocp_reg_read(un, URE_OCP_DOWN_SPEED) |
    716   1.1      rin 		    URE_EN_10M_BGOFF);
    717  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_POWER_CFG,
    718  1.15      mrg 		    ure_ocp_reg_read(un, URE_OCP_POWER_CFG) |
    719   1.1      rin 		    URE_EN_10M_PLLOFF);
    720  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_SRAM_ADDR, URE_SRAM_IMPEDANCE);
    721  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_SRAM_DATA, 0x0b13);
    722  1.15      mrg 		ure_write_2(un, URE_PLA_PHY_PWR, URE_MCU_TYPE_PLA,
    723  1.15      mrg 		    ure_read_2(un, URE_PLA_PHY_PWR, URE_MCU_TYPE_PLA) |
    724   1.1      rin 		    URE_PFM_PWM_SWITCH);
    725   1.1      rin 
    726   1.1      rin 		/* Enable LPF corner auto tune. */
    727  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_SRAM_ADDR, URE_SRAM_LPF_CFG);
    728  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_SRAM_DATA, 0xf70f);
    729   1.1      rin 
    730   1.1      rin 		/* Adjust 10M amplitude. */
    731  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_SRAM_ADDR, URE_SRAM_10M_AMP1);
    732  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_SRAM_DATA, 0x00af);
    733  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_SRAM_ADDR, URE_SRAM_10M_AMP2);
    734  1.15      mrg 		ure_ocp_reg_write(un, URE_OCP_SRAM_DATA, 0x0208);
    735   1.1      rin 	}
    736   1.1      rin 
    737  1.15      mrg 	ure_reset(un);
    738   1.1      rin 
    739  1.15      mrg 	ure_write_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA, 0);
    740   1.1      rin 
    741  1.15      mrg 	ure_write_1(un, URE_PLA_OOB_CTRL, URE_MCU_TYPE_PLA,
    742  1.15      mrg 	    ure_read_1(un, URE_PLA_OOB_CTRL, URE_MCU_TYPE_PLA) &
    743   1.1      rin 	    ~URE_NOW_IS_OOB);
    744   1.1      rin 
    745  1.15      mrg 	ure_write_2(un, URE_PLA_SFF_STS_7, URE_MCU_TYPE_PLA,
    746  1.15      mrg 	    ure_read_2(un, URE_PLA_SFF_STS_7, URE_MCU_TYPE_PLA) &
    747   1.1      rin 	    ~URE_MCU_BORW_EN);
    748   1.1      rin 	for (i = 0; i < URE_TIMEOUT; i++) {
    749  1.15      mrg 		if (ure_read_1(un, URE_PLA_OOB_CTRL, URE_MCU_TYPE_PLA) &
    750   1.1      rin 		    URE_LINK_LIST_READY)
    751   1.1      rin 			break;
    752  1.15      mrg 		usbd_delay_ms(un->un_udev, 10);
    753   1.1      rin 	}
    754   1.1      rin 	if (i == URE_TIMEOUT)
    755  1.15      mrg 		URE_PRINTF(un, "timeout waiting for OOB control\n");
    756  1.15      mrg 	ure_write_2(un, URE_PLA_SFF_STS_7, URE_MCU_TYPE_PLA,
    757  1.15      mrg 	    ure_read_2(un, URE_PLA_SFF_STS_7, URE_MCU_TYPE_PLA) |
    758   1.1      rin 	    URE_RE_INIT_LL);
    759   1.1      rin 	for (i = 0; i < URE_TIMEOUT; i++) {
    760  1.15      mrg 		if (ure_read_1(un, URE_PLA_OOB_CTRL, URE_MCU_TYPE_PLA) &
    761   1.1      rin 		    URE_LINK_LIST_READY)
    762   1.1      rin 			break;
    763  1.15      mrg 		usbd_delay_ms(un->un_udev, 10);
    764   1.1      rin 	}
    765   1.1      rin 	if (i == URE_TIMEOUT)
    766  1.15      mrg 		URE_PRINTF(un, "timeout waiting for OOB control\n");
    767   1.1      rin 
    768  1.15      mrg 	ure_write_2(un, URE_PLA_CPCR, URE_MCU_TYPE_PLA,
    769  1.15      mrg 	    ure_read_2(un, URE_PLA_CPCR, URE_MCU_TYPE_PLA) &
    770   1.1      rin 	    ~URE_CPCR_RX_VLAN);
    771  1.15      mrg 	ure_write_2(un, URE_PLA_TCR0, URE_MCU_TYPE_PLA,
    772  1.15      mrg 	    ure_read_2(un, URE_PLA_TCR0, URE_MCU_TYPE_PLA) |
    773   1.1      rin 	    URE_TCR0_AUTO_FIFO);
    774   1.1      rin 
    775   1.1      rin 	/* Configure Rx FIFO threshold and coalescing. */
    776  1.15      mrg 	ure_write_4(un, URE_PLA_RXFIFO_CTRL0, URE_MCU_TYPE_PLA,
    777   1.1      rin 	    URE_RXFIFO_THR1_NORMAL);
    778  1.15      mrg 	if (un->un_udev->ud_speed == USB_SPEED_FULL) {
    779   1.1      rin 		rx_fifo1 = URE_RXFIFO_THR2_FULL;
    780   1.1      rin 		rx_fifo2 = URE_RXFIFO_THR3_FULL;
    781   1.1      rin 	} else {
    782   1.1      rin 		rx_fifo1 = URE_RXFIFO_THR2_HIGH;
    783   1.1      rin 		rx_fifo2 = URE_RXFIFO_THR3_HIGH;
    784   1.1      rin 	}
    785  1.15      mrg 	ure_write_4(un, URE_PLA_RXFIFO_CTRL1, URE_MCU_TYPE_PLA, rx_fifo1);
    786  1.15      mrg 	ure_write_4(un, URE_PLA_RXFIFO_CTRL2, URE_MCU_TYPE_PLA, rx_fifo2);
    787   1.1      rin 
    788   1.1      rin 	/* Configure Tx FIFO threshold. */
    789  1.15      mrg 	ure_write_4(un, URE_PLA_TXFIFO_CTRL, URE_MCU_TYPE_PLA,
    790   1.1      rin 	    URE_TXFIFO_THR_NORMAL);
    791   1.1      rin }
    792   1.1      rin 
    793  1.15      mrg static int
    794  1.15      mrg ure_ioctl_cb(struct ifnet *ifp, u_long cmd, void *data)
    795   1.1      rin {
    796  1.15      mrg 	struct usbnet * const un = ifp->if_softc;
    797   1.1      rin 
    798   1.1      rin 	switch (cmd) {
    799  1.15      mrg 	case SIOCADDMULTI:
    800  1.15      mrg 	case SIOCDELMULTI:
    801  1.15      mrg 		ure_setiff(un);
    802   1.1      rin 		break;
    803   1.1      rin 	default:
    804  1.15      mrg 		break;
    805   1.1      rin 	}
    806   1.1      rin 
    807  1.15      mrg 	return 0;
    808   1.1      rin }
    809   1.1      rin 
    810   1.1      rin static int
    811   1.1      rin ure_match(device_t parent, cfdata_t match, void *aux)
    812   1.1      rin {
    813   1.1      rin 	struct usb_attach_arg *uaa = aux;
    814   1.1      rin 
    815   1.1      rin 	return usb_lookup(ure_devs, uaa->uaa_vendor, uaa->uaa_product) != NULL ?
    816   1.1      rin 	    UMATCH_VENDOR_PRODUCT : UMATCH_NONE;
    817   1.1      rin }
    818   1.1      rin 
    819   1.1      rin static void
    820   1.1      rin ure_attach(device_t parent, device_t self, void *aux)
    821   1.1      rin {
    822   1.1      rin 	struct ure_softc *sc = device_private(self);
    823  1.15      mrg 	struct usbnet * const un = &sc->ure_un;
    824   1.1      rin 	struct usb_attach_arg *uaa = aux;
    825   1.1      rin 	struct usbd_device *dev = uaa->uaa_device;
    826   1.1      rin 	usb_interface_descriptor_t *id;
    827   1.1      rin 	usb_endpoint_descriptor_t *ed;
    828  1.11      mrg 	int error, i;
    829   1.1      rin 	uint16_t ver;
    830   1.1      rin 	uint8_t eaddr[8]; /* 2byte padded */
    831   1.1      rin 	char *devinfop;
    832   1.1      rin 
    833  1.15      mrg 	/* Switch to usbnet for device_private() */
    834  1.15      mrg 	self->dv_private = un;
    835  1.15      mrg 
    836   1.1      rin 	aprint_naive("\n");
    837   1.1      rin 	aprint_normal("\n");
    838  1.15      mrg 	devinfop = usbd_devinfo_alloc(dev, 0);
    839   1.1      rin 	aprint_normal_dev(self, "%s\n", devinfop);
    840   1.1      rin 	usbd_devinfo_free(devinfop);
    841   1.1      rin 
    842  1.15      mrg 	un->un_dev = self;
    843  1.15      mrg 	un->un_udev = dev;
    844  1.15      mrg 	un->un_sc = sc;
    845  1.15      mrg 	un->un_stop_cb = ure_stop_cb;
    846  1.15      mrg 	un->un_ioctl_cb = ure_ioctl_cb;
    847  1.15      mrg 	un->un_read_reg_cb = ure_mii_read_reg;
    848  1.15      mrg 	un->un_write_reg_cb = ure_mii_write_reg;
    849  1.15      mrg 	un->un_statchg_cb = ure_miibus_statchg;
    850  1.15      mrg 	un->un_tx_prepare_cb = ure_tx_prepare;
    851  1.15      mrg 	un->un_rx_loop_cb = ure_rxeof_loop;
    852  1.15      mrg 	un->un_init_cb = ure_init;
    853  1.15      mrg 	un->un_rx_xfer_flags = USBD_SHORT_XFER_OK;
    854  1.15      mrg 	un->un_tx_xfer_flags = USBD_FORCE_SHORT_XFER;
    855   1.8      mrg 
    856   1.1      rin #define URE_CONFIG_NO	1 /* XXX */
    857   1.1      rin 	error = usbd_set_config_no(dev, URE_CONFIG_NO, 1);
    858   1.1      rin 	if (error) {
    859   1.1      rin 		aprint_error_dev(self, "failed to set configuration: %s\n",
    860   1.1      rin 		    usbd_errstr(error));
    861   1.1      rin 		return; /* XXX */
    862   1.1      rin 	}
    863   1.1      rin 
    864   1.1      rin 	if (uaa->uaa_product == USB_PRODUCT_REALTEK_RTL8152)
    865   1.1      rin 		sc->ure_flags |= URE_FLAG_8152;
    866   1.1      rin 
    867   1.1      rin #define URE_IFACE_IDX  0 /* XXX */
    868  1.15      mrg 	error = usbd_device2interface_handle(dev, URE_IFACE_IDX, &un->un_iface);
    869   1.1      rin 	if (error) {
    870   1.1      rin 		aprint_error_dev(self, "failed to get interface handle: %s\n",
    871   1.1      rin 		    usbd_errstr(error));
    872   1.1      rin 		return; /* XXX */
    873   1.1      rin 	}
    874   1.1      rin 
    875  1.15      mrg 	un->un_cdata.uncd_rx_bufsz = un->un_cdata.uncd_tx_bufsz = 16 * 1024;
    876   1.1      rin 
    877  1.15      mrg 	id = usbd_get_interface_descriptor(un->un_iface);
    878   1.1      rin 	for (i = 0; i < id->bNumEndpoints; i++) {
    879  1.15      mrg 		ed = usbd_interface2endpoint_descriptor(un->un_iface, i);
    880   1.1      rin 		if (ed == NULL) {
    881   1.1      rin 			aprint_error_dev(self, "couldn't get ep %d\n", i);
    882   1.1      rin 			return; /* XXX */
    883   1.1      rin 		}
    884   1.1      rin 		if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN &&
    885   1.1      rin 		    UE_GET_XFERTYPE(ed->bmAttributes) == UE_BULK) {
    886  1.15      mrg 			un->un_ed[USBNET_ENDPT_RX] = ed->bEndpointAddress;
    887   1.1      rin 		} else if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_OUT &&
    888   1.1      rin 		    UE_GET_XFERTYPE(ed->bmAttributes) == UE_BULK) {
    889  1.15      mrg 			un->un_ed[USBNET_ENDPT_TX] = ed->bEndpointAddress;
    890   1.1      rin 		}
    891   1.1      rin 	}
    892   1.1      rin 
    893  1.15      mrg 	/* Set these up now for ure_ctl().  */
    894  1.15      mrg 	usbnet_attach(un, "uredet", URE_RX_LIST_CNT, URE_TX_LIST_CNT);
    895   1.1      rin 
    896  1.15      mrg 	un->un_phyno = 0;
    897  1.15      mrg 
    898  1.15      mrg 	ver = ure_read_2(un, URE_PLA_TCR1, URE_MCU_TYPE_PLA) & URE_VERSION_MASK;
    899   1.1      rin 	switch (ver) {
    900   1.1      rin 	case 0x4c00:
    901   1.1      rin 		sc->ure_chip |= URE_CHIP_VER_4C00;
    902   1.1      rin 		break;
    903   1.1      rin 	case 0x4c10:
    904   1.1      rin 		sc->ure_chip |= URE_CHIP_VER_4C10;
    905   1.1      rin 		break;
    906   1.1      rin 	case 0x5c00:
    907   1.1      rin 		sc->ure_chip |= URE_CHIP_VER_5C00;
    908   1.1      rin 		break;
    909   1.1      rin 	case 0x5c10:
    910   1.1      rin 		sc->ure_chip |= URE_CHIP_VER_5C10;
    911   1.1      rin 		break;
    912   1.1      rin 	case 0x5c20:
    913   1.1      rin 		sc->ure_chip |= URE_CHIP_VER_5C20;
    914   1.1      rin 		break;
    915   1.1      rin 	case 0x5c30:
    916   1.1      rin 		sc->ure_chip |= URE_CHIP_VER_5C30;
    917   1.1      rin 		break;
    918   1.1      rin 	default:
    919   1.1      rin 		/* fake addr?  or just fail? */
    920   1.1      rin 		break;
    921   1.1      rin 	}
    922   1.3      rin 	aprint_normal_dev(self, "RTL%d %sver %04x\n",
    923   1.3      rin 	    (sc->ure_flags & URE_FLAG_8152) ? 8152 : 8153,
    924   1.3      rin 	    (sc->ure_chip != 0) ? "" : "unknown ",
    925   1.3      rin 	    ver);
    926   1.1      rin 
    927  1.15      mrg 	usbnet_lock(un);
    928   1.1      rin 	if (sc->ure_flags & URE_FLAG_8152)
    929   1.1      rin 		ure_rtl8152_init(sc);
    930   1.1      rin 	else
    931   1.1      rin 		ure_rtl8153_init(sc);
    932   1.1      rin 
    933   1.1      rin 	if (sc->ure_chip & URE_CHIP_VER_4C00)
    934  1.15      mrg 		ure_read_mem(un, URE_PLA_IDR, URE_MCU_TYPE_PLA, eaddr,
    935   1.1      rin 		    sizeof(eaddr));
    936   1.1      rin 	else
    937  1.15      mrg 		ure_read_mem(un, URE_PLA_BACKUP, URE_MCU_TYPE_PLA, eaddr,
    938   1.1      rin 		    sizeof(eaddr));
    939  1.15      mrg 	usbnet_unlock(un);
    940  1.15      mrg 	memcpy(un->un_eaddr, eaddr, sizeof un->un_eaddr);
    941   1.1      rin 
    942  1.15      mrg 	aprint_normal_dev(self, "Ethernet address %s\n",
    943  1.15      mrg 	   ether_sprintf(un->un_eaddr));
    944   1.1      rin 
    945  1.15      mrg 	struct ifnet *ifp = usbnet_ifp(un);
    946   1.1      rin 
    947   1.1      rin 	/*
    948   1.1      rin 	 * We don't support TSOv4 and v6 for now, that are required to
    949   1.1      rin 	 * be handled in software for some cases.
    950   1.1      rin 	 */
    951   1.1      rin 	ifp->if_capabilities = IFCAP_CSUM_IPv4_Tx |
    952   1.1      rin 	    IFCAP_CSUM_TCPv4_Tx | IFCAP_CSUM_UDPv4_Tx;
    953   1.1      rin #ifdef INET6
    954   1.1      rin 	ifp->if_capabilities |= IFCAP_CSUM_TCPv6_Tx | IFCAP_CSUM_UDPv6_Tx;
    955   1.1      rin #endif
    956   1.1      rin 	if (sc->ure_chip & ~URE_CHIP_VER_4C00) {
    957   1.1      rin 		ifp->if_capabilities |= IFCAP_CSUM_IPv4_Rx |
    958   1.1      rin 		    IFCAP_CSUM_TCPv4_Rx | IFCAP_CSUM_UDPv4_Rx |
    959   1.1      rin 		    IFCAP_CSUM_TCPv6_Rx | IFCAP_CSUM_UDPv6_Rx;
    960   1.1      rin 	}
    961  1.15      mrg 	struct ethercom *ec = usbnet_ec(un);
    962  1.15      mrg 	ec->ec_capabilities = ETHERCAP_VLAN_MTU;
    963   1.1      rin #ifdef notyet
    964  1.15      mrg 	ec->ec_capabilities |= ETHERCAP_JUMBO_MTU;
    965   1.1      rin #endif
    966   1.1      rin 
    967  1.15      mrg 	usbnet_attach_ifp(un, true, IFF_SIMPLEX | IFF_BROADCAST | IFF_MULTICAST,
    968  1.15      mrg 	    0, 0);
    969   1.1      rin }
    970   1.1      rin 
    971   1.1      rin static void
    972  1.15      mrg ure_rxeof_loop(struct usbnet *un, struct usbd_xfer *xfer,
    973  1.15      mrg 	       struct usbnet_chain *c, uint32_t total_len)
    974   1.1      rin {
    975  1.15      mrg 	struct ifnet *ifp = usbnet_ifp(un);
    976  1.15      mrg 	uint8_t *buf = c->unc_buf;
    977  1.15      mrg 	uint16_t pkt_len = 0;
    978  1.15      mrg 	uint16_t pkt_count = 0;
    979   1.1      rin 	struct ure_rxpkt rxhdr;
    980   1.5  msaitoh 
    981  1.15      mrg 	usbnet_isowned_rx(un);
    982   1.1      rin 
    983   1.1      rin 	do {
    984   1.1      rin 		if (total_len < sizeof(rxhdr)) {
    985   1.1      rin 			DPRINTF(("too few bytes left for a packet header\n"));
    986   1.1      rin 			ifp->if_ierrors++;
    987  1.15      mrg 			return;
    988   1.1      rin 		}
    989   1.1      rin 
    990  1.15      mrg 		buf += roundup(pkt_len, 8);
    991   1.1      rin 
    992   1.1      rin 		memcpy(&rxhdr, buf, sizeof(rxhdr));
    993   1.1      rin 		total_len -= sizeof(rxhdr);
    994   1.1      rin 
    995  1.15      mrg 		pkt_len = le32toh(rxhdr.ure_pktlen) & URE_RXPKT_LEN_MASK;
    996  1.15      mrg 		DPRINTFN(4, ("next packet is %d bytes\n", pkt_len));
    997  1.15      mrg 		if (pkt_len > total_len) {
    998   1.1      rin 			DPRINTF(("not enough bytes left for next packet\n"));
    999   1.1      rin 			ifp->if_ierrors++;
   1000  1.15      mrg 			return;
   1001   1.1      rin 		}
   1002   1.1      rin 
   1003  1.15      mrg 		total_len -= roundup(pkt_len, 8);
   1004   1.1      rin 		buf += sizeof(rxhdr);
   1005   1.1      rin 
   1006  1.15      mrg 		usbnet_enqueue(un, buf, pkt_len - ETHER_CRC_LEN,
   1007  1.17      mrg 			       ure_rxcsum(ifp, &rxhdr), 0, 0);
   1008  1.11      mrg 
   1009  1.15      mrg 		pkt_count++;
   1010  1.11      mrg 
   1011   1.1      rin 	} while (total_len > 0);
   1012   1.1      rin 
   1013  1.15      mrg 	if (pkt_count)
   1014  1.15      mrg 		rnd_add_uint32(&un->un_rndsrc, pkt_count);
   1015   1.1      rin }
   1016   1.1      rin 
   1017   1.1      rin static int
   1018   1.1      rin ure_rxcsum(struct ifnet *ifp, struct ure_rxpkt *rp)
   1019   1.1      rin {
   1020   1.1      rin 	int enabled = ifp->if_csum_flags_rx, flags = 0;
   1021   1.1      rin 	uint32_t csum, misc;
   1022   1.1      rin 
   1023   1.1      rin 	if (enabled == 0)
   1024   1.1      rin 		return 0;
   1025   1.1      rin 
   1026   1.1      rin 	csum = le32toh(rp->ure_csum);
   1027   1.1      rin 	misc = le32toh(rp->ure_misc);
   1028   1.1      rin 
   1029   1.1      rin 	if (csum & URE_RXPKT_IPV4_CS) {
   1030   1.1      rin 		flags |= M_CSUM_IPv4;
   1031   1.1      rin 		if (csum & URE_RXPKT_TCP_CS)
   1032   1.1      rin 			flags |= M_CSUM_TCPv4;
   1033   1.1      rin 		if (csum & URE_RXPKT_UDP_CS)
   1034   1.1      rin 			flags |= M_CSUM_UDPv4;
   1035   1.6  msaitoh 	} else if (csum & URE_RXPKT_IPV6_CS) {
   1036   1.1      rin 		flags = 0;
   1037   1.1      rin 		if (csum & URE_RXPKT_TCP_CS)
   1038   1.1      rin 			flags |= M_CSUM_TCPv6;
   1039   1.1      rin 		if (csum & URE_RXPKT_UDP_CS)
   1040   1.1      rin 			flags |= M_CSUM_UDPv6;
   1041   1.6  msaitoh 	}
   1042   1.1      rin 
   1043   1.1      rin 	flags &= enabled;
   1044   1.1      rin 	if (__predict_false((flags & M_CSUM_IPv4) &&
   1045   1.1      rin 	    (misc & URE_RXPKT_IP_F)))
   1046   1.1      rin 		flags |= M_CSUM_IPv4_BAD;
   1047   1.1      rin 	if (__predict_false(
   1048   1.1      rin 	   ((flags & (M_CSUM_TCPv4 | M_CSUM_TCPv6)) && (misc & URE_RXPKT_TCP_F))
   1049   1.1      rin 	|| ((flags & (M_CSUM_UDPv4 | M_CSUM_UDPv6)) && (misc & URE_RXPKT_UDP_F))
   1050   1.1      rin 	))
   1051   1.1      rin 		flags |= M_CSUM_TCP_UDP_BAD;
   1052   1.1      rin 
   1053   1.1      rin 	return flags;
   1054   1.1      rin }
   1055   1.1      rin 
   1056  1.15      mrg static unsigned
   1057  1.15      mrg ure_tx_prepare(struct usbnet *un, struct mbuf *m, struct usbnet_chain *c)
   1058   1.1      rin {
   1059   1.1      rin 	struct ure_txpkt txhdr;
   1060   1.1      rin 	uint32_t frm_len = 0;
   1061  1.15      mrg 	uint8_t *buf = c->unc_buf;
   1062   1.1      rin 
   1063  1.15      mrg 	usbnet_isowned_tx(un);
   1064   1.1      rin 
   1065   1.1      rin 	/* header */
   1066   1.1      rin 	txhdr.ure_pktlen = htole32(m->m_pkthdr.len | URE_TXPKT_TX_FS |
   1067   1.1      rin 	    URE_TXPKT_TX_LS);
   1068   1.1      rin 	txhdr.ure_csum = htole32(ure_txcsum(m));
   1069   1.1      rin 	memcpy(buf, &txhdr, sizeof(txhdr));
   1070   1.1      rin 	buf += sizeof(txhdr);
   1071   1.1      rin 	frm_len = sizeof(txhdr);
   1072   1.1      rin 
   1073   1.1      rin 	/* packet */
   1074   1.1      rin 	m_copydata(m, 0, m->m_pkthdr.len, buf);
   1075   1.1      rin 	frm_len += m->m_pkthdr.len;
   1076   1.1      rin 
   1077  1.15      mrg 	if (__predict_false(c->unc_xfer == NULL))
   1078   1.1      rin 		return EIO;	/* XXX plugged out or down */
   1079   1.1      rin 
   1080   1.1      rin 	DPRINTFN(2, ("tx %d bytes\n", frm_len));
   1081   1.1      rin 
   1082  1.15      mrg 	return frm_len;
   1083   1.1      rin }
   1084   1.1      rin 
   1085   1.1      rin /*
   1086   1.1      rin  * We need to calculate L4 checksum in software, if the offset of
   1087   1.1      rin  * L4 header is larger than 0x7ff = 2047.
   1088   1.1      rin  */
   1089   1.1      rin static uint32_t
   1090   1.1      rin ure_txcsum(struct mbuf *m)
   1091   1.1      rin {
   1092   1.1      rin 	struct ether_header *eh;
   1093   1.1      rin 	int flags = m->m_pkthdr.csum_flags;
   1094   1.1      rin 	uint32_t data = m->m_pkthdr.csum_data;
   1095   1.1      rin 	uint32_t reg = 0;
   1096   1.1      rin 	int l3off, l4off;
   1097   1.1      rin 	uint16_t type;
   1098   1.1      rin 
   1099   1.1      rin 	if (flags == 0)
   1100   1.1      rin 		return 0;
   1101   1.1      rin 
   1102   1.2      rin 	if (__predict_true(m->m_len >= (int)sizeof(*eh))) {
   1103   1.1      rin 		eh = mtod(m, struct ether_header *);
   1104   1.1      rin 		type = eh->ether_type;
   1105   1.1      rin 	} else
   1106   1.1      rin 		m_copydata(m, offsetof(struct ether_header, ether_type),
   1107   1.1      rin 		    sizeof(type), &type);
   1108   1.1      rin 	switch (type = htons(type)) {
   1109   1.1      rin 	case ETHERTYPE_IP:
   1110   1.1      rin 	case ETHERTYPE_IPV6:
   1111   1.1      rin 		l3off = ETHER_HDR_LEN;
   1112   1.1      rin 		break;
   1113   1.1      rin 	case ETHERTYPE_VLAN:
   1114   1.1      rin 		l3off = ETHER_HDR_LEN + ETHER_VLAN_ENCAP_LEN;
   1115   1.1      rin 		break;
   1116   1.1      rin 	default:
   1117   1.1      rin 		return 0;
   1118   1.1      rin 	}
   1119   1.1      rin 
   1120   1.1      rin 	if (flags & (M_CSUM_TCPv4 | M_CSUM_UDPv4)) {
   1121   1.1      rin 		l4off = l3off + M_CSUM_DATA_IPv4_IPHL(data);
   1122   1.1      rin 		if (__predict_false(l4off > URE_L4_OFFSET_MAX)) {
   1123   1.1      rin 			in_undefer_cksum(m, l3off, flags);
   1124   1.1      rin 			return 0;
   1125   1.1      rin 		}
   1126   1.1      rin 		reg |= URE_TXPKT_IPV4_CS;
   1127   1.1      rin 		if (flags & M_CSUM_TCPv4)
   1128   1.1      rin 			reg |= URE_TXPKT_TCP_CS;
   1129   1.1      rin 		else
   1130   1.1      rin 			reg |= URE_TXPKT_UDP_CS;
   1131   1.1      rin 		reg |= l4off << URE_L4_OFFSET_SHIFT;
   1132   1.1      rin 	}
   1133   1.1      rin #ifdef INET6
   1134   1.1      rin 	else if (flags & (M_CSUM_TCPv6 | M_CSUM_UDPv6)) {
   1135   1.1      rin 		l4off = l3off + M_CSUM_DATA_IPv6_IPHL(data);
   1136   1.1      rin 		if (__predict_false(l4off > URE_L4_OFFSET_MAX)) {
   1137   1.1      rin 			in6_undefer_cksum(m, l3off, flags);
   1138   1.1      rin 			return 0;
   1139   1.1      rin 		}
   1140   1.1      rin 		reg |= URE_TXPKT_IPV6_CS;
   1141   1.1      rin 		if (flags & M_CSUM_TCPv6)
   1142   1.1      rin 			reg |= URE_TXPKT_TCP_CS;
   1143   1.1      rin 		else
   1144   1.1      rin 			reg |= URE_TXPKT_UDP_CS;
   1145   1.1      rin 		reg |= l4off << URE_L4_OFFSET_SHIFT;
   1146   1.1      rin 	}
   1147   1.1      rin #endif
   1148   1.1      rin 	else if (flags & M_CSUM_IPv4)
   1149   1.1      rin 		reg |= URE_TXPKT_IPV4_CS;
   1150   1.1      rin 
   1151   1.1      rin 	return reg;
   1152   1.1      rin }
   1153