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if_re_pci.c revision 1.8.2.5
      1  1.8.2.5    bouyer /*	$NetBSD: if_re_pci.c,v 1.8.2.5 2007/03/03 23:30:25 bouyer Exp $	*/
      2      1.4      yamt 
      3      1.4      yamt /*
      4      1.4      yamt  * Copyright (c) 1997, 1998-2003
      5      1.4      yamt  *	Bill Paul <wpaul (at) windriver.com>.  All rights reserved.
      6      1.4      yamt  *
      7      1.4      yamt  * Redistribution and use in source and binary forms, with or without
      8      1.4      yamt  * modification, are permitted provided that the following conditions
      9      1.4      yamt  * are met:
     10      1.4      yamt  * 1. Redistributions of source code must retain the above copyright
     11      1.4      yamt  *    notice, this list of conditions and the following disclaimer.
     12      1.4      yamt  * 2. Redistributions in binary form must reproduce the above copyright
     13      1.4      yamt  *    notice, this list of conditions and the following disclaimer in the
     14      1.4      yamt  *    documentation and/or other materials provided with the distribution.
     15      1.4      yamt  * 3. All advertising materials mentioning features or use of this software
     16      1.4      yamt  *    must display the following acknowledgement:
     17      1.4      yamt  *	This product includes software developed by Bill Paul.
     18      1.4      yamt  * 4. Neither the name of the author nor the names of any co-contributors
     19      1.4      yamt  *    may be used to endorse or promote products derived from this software
     20      1.4      yamt  *    without specific prior written permission.
     21      1.4      yamt  *
     22      1.4      yamt  * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND
     23      1.4      yamt  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24      1.4      yamt  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25      1.4      yamt  * ARE DISCLAIMED.  IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD
     26      1.4      yamt  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     27      1.4      yamt  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     28      1.4      yamt  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     29      1.4      yamt  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     30      1.4      yamt  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     31      1.4      yamt  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
     32      1.4      yamt  * THE POSSIBILITY OF SUCH DAMAGE.
     33      1.4      yamt  */
     34      1.4      yamt 
     35      1.4      yamt /* $FreeBSD: /repoman/r/ncvs/src/sys/dev/re/if_re.c,v 1.20 2004/04/11 20:34:08 ru Exp $ */
     36      1.4      yamt 
     37      1.1  jonathan /*
     38      1.1  jonathan  * RealTek 8139C+/8169/8169S/8110S PCI NIC driver
     39      1.1  jonathan  *
     40      1.1  jonathan  * Written by Bill Paul <wpaul (at) windriver.com>
     41      1.1  jonathan  * Senior Networking Software Engineer
     42      1.1  jonathan  * Wind River Systems
     43      1.1  jonathan  *
     44  1.8.2.5    bouyer  * NetBSD bus-specific frontends for written by
     45      1.1  jonathan  * Jonathan Stone <jonathan (at) netbsd.org>
     46      1.1  jonathan  */
     47      1.1  jonathan 
     48      1.1  jonathan #include "bpfilter.h"
     49      1.1  jonathan #include "vlan.h"
     50      1.1  jonathan 
     51      1.1  jonathan #include <sys/types.h>
     52      1.1  jonathan 
     53      1.1  jonathan #include <sys/param.h>
     54      1.1  jonathan #include <sys/endian.h>
     55      1.1  jonathan #include <sys/systm.h>
     56      1.1  jonathan #include <sys/sockio.h>
     57      1.1  jonathan #include <sys/mbuf.h>
     58      1.1  jonathan #include <sys/malloc.h>
     59      1.1  jonathan #include <sys/kernel.h>
     60      1.1  jonathan #include <sys/socket.h>
     61      1.1  jonathan #include <sys/device.h>
     62      1.1  jonathan 
     63      1.1  jonathan #include <net/if.h>
     64      1.1  jonathan #include <net/if_arp.h>
     65      1.1  jonathan #include <net/if_dl.h>
     66      1.1  jonathan #include <net/if_ether.h>
     67      1.1  jonathan #include <net/if_media.h>
     68      1.1  jonathan #include <net/if_vlanvar.h>
     69      1.1  jonathan 
     70      1.5    briggs #include <machine/bus.h>
     71      1.5    briggs 
     72      1.1  jonathan #include <dev/mii/mii.h>
     73      1.1  jonathan #include <dev/mii/miivar.h>
     74      1.1  jonathan 
     75      1.5    briggs #include <dev/pci/pcireg.h>
     76      1.5    briggs #include <dev/pci/pcivar.h>
     77      1.5    briggs #include <dev/pci/pcidevs.h>
     78      1.5    briggs 
     79      1.1  jonathan #include <dev/ic/rtl81x9reg.h>
     80      1.1  jonathan #include <dev/ic/rtl81x9var.h>
     81      1.1  jonathan #include <dev/ic/rtl8169var.h>
     82      1.1  jonathan 
     83      1.1  jonathan struct re_pci_softc {
     84      1.1  jonathan 	struct rtk_softc sc_rtk;
     85      1.1  jonathan 
     86      1.1  jonathan 	void *sc_ih;
     87      1.1  jonathan 	pci_chipset_tag_t sc_pc;
     88      1.1  jonathan 	pcitag_t sc_pcitag;
     89      1.1  jonathan };
     90      1.1  jonathan 
     91  1.8.2.5    bouyer static int	re_pci_match(struct device *, struct cfdata *, void *);
     92      1.1  jonathan static void	re_pci_attach(struct device *, struct device *, void *);
     93      1.1  jonathan 
     94      1.1  jonathan /*
     95      1.1  jonathan  * Various supported device vendors/types and their names.
     96      1.1  jonathan  */
     97      1.6  jdolecek static const struct rtk_type re_devs[] = {
     98  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8139,
     99  1.8.2.5    bouyer 	    RTK_HWREV_8139CPLUS,
    100  1.8.2.5    bouyer 	    "RealTek 8139C+ 10/100BaseTX" },
    101  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8101E,
    102  1.8.2.5    bouyer 	    RTK_HWREV_8100E,
    103  1.8.2.5    bouyer 	    "RealTek 8100E PCIe 10/100BaseTX" },
    104  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8101E,
    105  1.8.2.5    bouyer 	    RTK_HWREV_8101E,
    106  1.8.2.5    bouyer 	    "RealTek 8101E PCIe 10/100BaseTX" },
    107  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8168,
    108  1.8.2.5    bouyer 	    RTK_HWREV_8168_SPIN1,
    109  1.8.2.5    bouyer 	    "RealTek 8168B/8111B PCIe Gigabit Ethernet" },
    110  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8168,
    111  1.8.2.5    bouyer 	    RTK_HWREV_8168_SPIN2,
    112  1.8.2.5    bouyer 	    "RealTek 8168B/8111B PCIe Gigabit Ethernet" },
    113  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8169,
    114  1.8.2.5    bouyer 	    RTK_HWREV_8169,
    115  1.8.2.5    bouyer 	    "RealTek 8169 Gigabit Ethernet" },
    116  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8169,
    117  1.8.2.5    bouyer 	    RTK_HWREV_8169S,
    118  1.8.2.5    bouyer 	    "RealTek 8169S Single-chip Gigabit Ethernet" },
    119  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8169,
    120  1.8.2.5    bouyer 	    RTK_HWREV_8110S,
    121  1.8.2.5    bouyer 	    "RealTek 8110S Single-chip Gigabit Ethernet" },
    122  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8169,
    123  1.8.2.5    bouyer 	    RTK_HWREV_8169_8110SB,
    124  1.8.2.5    bouyer 	    "RealTek 8169SB/8110SB Single-chip Gigabit Ethernet" },
    125  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8169,
    126  1.8.2.5    bouyer 	    RTK_HWREV_8169_8110SC,
    127  1.8.2.5    bouyer 	    "RealTek 8169SC/8110SC Single-chip Gigabit Ethernet" },
    128  1.8.2.5    bouyer 	{ PCI_VENDOR_REALTEK, PCI_PRODUCT_REALTEK_RT8169SC,
    129  1.8.2.5    bouyer 	    RTK_HWREV_8169_8110SC,
    130  1.8.2.5    bouyer 	    "RealTek 8169SC/8110SC Single-chip Gigabit Ethernet" },
    131  1.8.2.5    bouyer 	{ PCI_VENDOR_COREGA, PCI_PRODUCT_COREGA_LAPCIGT,
    132  1.8.2.5    bouyer 	    RTK_HWREV_8169S,
    133  1.8.2.5    bouyer 	    "Corega CG-LAPCIGT Gigabit Ethernet" },
    134  1.8.2.5    bouyer 	{ PCI_VENDOR_DLINK, PCI_PRODUCT_DLINK_DGE528T,
    135  1.8.2.5    bouyer 	    RTK_HWREV_8169S,
    136  1.8.2.5    bouyer 	    "D-Link DGE-528T Gigabit Ethernet" },
    137  1.8.2.5    bouyer 	{ PCI_VENDOR_USR2, PCI_PRODUCT_USR2_USR997902,
    138  1.8.2.5    bouyer 	    RTK_HWREV_8169S,
    139  1.8.2.5    bouyer 	    "US Robotics (3Com) USR997902 Gigabit Ethernet" },
    140  1.8.2.5    bouyer 	{ PCI_VENDOR_LINKSYS, PCI_PRODUCT_LINKSYS_EG1032,
    141  1.8.2.5    bouyer 	    RTK_HWREV_8169S,
    142  1.8.2.5    bouyer 	    "Linksys EG1032 rev. 3 Gigabit Ethernet" },
    143      1.1  jonathan 	{ 0, 0, 0, NULL }
    144      1.1  jonathan };
    145      1.1  jonathan 
    146      1.6  jdolecek static const struct rtk_hwrev re_hwrevs[] = {
    147      1.1  jonathan 	{ RTK_HWREV_8139, RTK_8139,  "" },
    148      1.1  jonathan 	{ RTK_HWREV_8139A, RTK_8139, "A" },
    149      1.1  jonathan 	{ RTK_HWREV_8139AG, RTK_8139, "A-G" },
    150      1.1  jonathan 	{ RTK_HWREV_8139B, RTK_8139, "B" },
    151      1.1  jonathan 	{ RTK_HWREV_8130, RTK_8139, "8130" },
    152      1.1  jonathan 	{ RTK_HWREV_8139C, RTK_8139, "C" },
    153      1.1  jonathan 	{ RTK_HWREV_8139D, RTK_8139, "8139D/8100B/8100C" },
    154      1.1  jonathan 	{ RTK_HWREV_8139CPLUS, RTK_8139CPLUS, "C+"},
    155  1.8.2.5    bouyer 	{ RTK_HWREV_8168_SPIN1, RTK_8169, "8168B/8111B"},
    156  1.8.2.5    bouyer 	{ RTK_HWREV_8168_SPIN2, RTK_8169, "8168B/8111B"},
    157      1.1  jonathan 	{ RTK_HWREV_8169, RTK_8169, "8169"},
    158      1.1  jonathan 	{ RTK_HWREV_8169S, RTK_8169, "8169S"},
    159      1.1  jonathan 	{ RTK_HWREV_8110S, RTK_8169, "8110S"},
    160  1.8.2.5    bouyer 	{ RTK_HWREV_8169_8110SB, RTK_8169, "8169SB"},
    161  1.8.2.5    bouyer 	{ RTK_HWREV_8169_8110SC, RTK_8169, "8169SC"},
    162  1.8.2.5    bouyer 	{ RTK_HWREV_8100E, RTK_8169, "8100E"},
    163  1.8.2.5    bouyer 	{ RTK_HWREV_8101E, RTK_8169, "8101E"},
    164      1.1  jonathan 	{ RTK_HWREV_8100, RTK_8139, "8100"},
    165      1.1  jonathan 	{ RTK_HWREV_8101, RTK_8139, "8101"},
    166      1.1  jonathan 	{ 0, 0, NULL }
    167      1.1  jonathan };
    168      1.1  jonathan 
    169  1.8.2.3      tron #define RE_LINKSYS_EG1032_SUBID	0x00241737
    170  1.8.2.3      tron 
    171  1.8.2.5    bouyer CFATTACH_DECL(re_pci, sizeof(struct re_pci_softc), re_pci_match, re_pci_attach,
    172      1.1  jonathan 	      NULL, NULL);
    173      1.1  jonathan 
    174      1.1  jonathan /*
    175      1.1  jonathan  * Probe for a RealTek 8139C+/8169/8110 chip. Check the PCI vendor and device
    176      1.1  jonathan  * IDs against our list and return a device name if we find a match.
    177      1.1  jonathan  */
    178      1.1  jonathan static int
    179  1.8.2.5    bouyer re_pci_match(struct device *parent, struct cfdata *match, void *aux)
    180      1.1  jonathan {
    181  1.8.2.5    bouyer 	const struct rtk_type	*t;
    182      1.1  jonathan 	struct pci_attach_args	*pa = aux;
    183  1.8.2.5    bouyer 	bus_space_tag_t		iot, memt, bst;
    184  1.8.2.5    bouyer 	bus_space_handle_t	ioh, memh, bsh;
    185  1.8.2.5    bouyer 	bus_size_t		memsize, iosize, bsize;
    186      1.1  jonathan 	u_int32_t		hwrev;
    187  1.8.2.3      tron 	pcireg_t subid;
    188  1.8.2.5    bouyer 	boolean_t ioh_valid, memh_valid;
    189  1.8.2.3      tron 
    190  1.8.2.3      tron 	subid = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_SUBSYS_ID_REG);
    191  1.8.2.3      tron 
    192  1.8.2.3      tron 	/* special-case Linksys EG1032, since rev 2 uses sk(4) */
    193  1.8.2.3      tron 	if (PCI_VENDOR(pa->pa_id) == PCI_VENDOR_LINKSYS &&
    194  1.8.2.3      tron 	    PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_LINKSYS_EG1032 &&
    195  1.8.2.3      tron 	    subid == RE_LINKSYS_EG1032_SUBID)
    196  1.8.2.3      tron 		return 1;
    197      1.1  jonathan 
    198      1.1  jonathan 	t = re_devs;
    199      1.1  jonathan 
    200      1.3   kanaoka 	while (t->rtk_name != NULL) {
    201      1.1  jonathan 		if ((PCI_VENDOR(pa->pa_id) == t->rtk_vid) &&
    202      1.1  jonathan 		    (PCI_PRODUCT(pa->pa_id) == t->rtk_did)) {
    203      1.1  jonathan 
    204      1.1  jonathan 			/*
    205      1.1  jonathan 			 * Temporarily map the I/O space
    206      1.1  jonathan 			 * so we can read the chip ID register.
    207      1.1  jonathan 			 */
    208  1.8.2.5    bouyer 			ioh_valid = (pci_mapreg_map(pa, RTK_PCI_LOIO,
    209  1.8.2.5    bouyer 			    PCI_MAPREG_TYPE_IO, 0, &iot, &ioh,
    210  1.8.2.5    bouyer 			    NULL, &iosize) == 0);
    211  1.8.2.5    bouyer 			memh_valid = (pci_mapreg_map(pa, RTK_PCI_LOMEM,
    212  1.8.2.5    bouyer 			    PCI_MAPREG_TYPE_MEM, 0, &memt, &memh,
    213  1.8.2.5    bouyer 			    NULL, &memsize) == 0);
    214  1.8.2.5    bouyer 			if (ioh_valid) {
    215  1.8.2.5    bouyer 				bst = iot;
    216  1.8.2.5    bouyer 				bsh = ioh;
    217  1.8.2.5    bouyer 				bsize = iosize;
    218  1.8.2.5    bouyer 			} else if (memh_valid) {
    219  1.8.2.5    bouyer 				bst = memt;
    220  1.8.2.5    bouyer 				bsh = memh;
    221  1.8.2.5    bouyer 				bsize = memsize;
    222  1.8.2.5    bouyer 			} else
    223      1.1  jonathan 				return 0;
    224  1.8.2.5    bouyer 			hwrev = bus_space_read_4(bst, bsh, RTK_TXCFG) &
    225  1.8.2.5    bouyer 			    RTK_TXCFG_HWREV;
    226  1.8.2.5    bouyer 			bus_space_unmap(bst, bsh, bsize);
    227      1.1  jonathan 			if (t->rtk_basetype == hwrev)
    228      1.1  jonathan 				return 2;	/* defeat rtk(4) */
    229      1.1  jonathan 		}
    230      1.1  jonathan 		t++;
    231      1.1  jonathan 	}
    232      1.1  jonathan 
    233      1.1  jonathan 	return 0;
    234      1.1  jonathan }
    235      1.1  jonathan 
    236      1.1  jonathan static void
    237      1.1  jonathan re_pci_attach(struct device *parent, struct device *self, void *aux)
    238      1.1  jonathan {
    239      1.1  jonathan 	struct re_pci_softc	*psc = (void *)self;
    240      1.1  jonathan 	struct rtk_softc	*sc = &psc->sc_rtk;
    241      1.1  jonathan 	struct pci_attach_args 	*pa = aux;
    242      1.1  jonathan 	pci_chipset_tag_t pc = pa->pa_pc;
    243      1.1  jonathan 	pci_intr_handle_t ih;
    244      1.1  jonathan 	const char *intrstr = NULL;
    245      1.6  jdolecek 	const struct rtk_type	*t;
    246      1.6  jdolecek 	const struct rtk_hwrev	*hw_rev;
    247  1.8.2.5    bouyer 	uint32_t		hwrev;
    248      1.1  jonathan 	int			error = 0;
    249      1.3   kanaoka 	int			pmreg;
    250  1.8.2.5    bouyer 	boolean_t		ioh_valid, memh_valid;
    251      1.1  jonathan 	pcireg_t		command;
    252  1.8.2.5    bouyer 	bus_space_tag_t		iot, memt;
    253  1.8.2.5    bouyer 	bus_space_handle_t	ioh, memh;
    254  1.8.2.5    bouyer 	bus_size_t		iosize, memsize, bsize;
    255      1.1  jonathan 
    256      1.1  jonathan 
    257      1.1  jonathan 	/*
    258      1.1  jonathan 	 * Handle power management nonsense.
    259      1.1  jonathan 	 */
    260      1.3   kanaoka 	if (pci_get_capability(pc, pa->pa_tag, PCI_CAP_PWRMGMT, &pmreg, 0)) {
    261      1.3   kanaoka 		command = pci_conf_read(pc, pa->pa_tag, pmreg + PCI_PMCSR);
    262  1.8.2.5    bouyer 		if (command & PCI_PMCSR_STATE_MASK) {
    263      1.3   kanaoka 			u_int32_t		iobase, membase, irq;
    264      1.3   kanaoka 
    265      1.3   kanaoka 			/* Save important PCI config data. */
    266      1.3   kanaoka 			iobase = pci_conf_read(pc, pa->pa_tag, RTK_PCI_LOIO);
    267      1.3   kanaoka 			membase = pci_conf_read(pc, pa->pa_tag, RTK_PCI_LOMEM);
    268      1.3   kanaoka 			irq = pci_conf_read(pc, pa->pa_tag, PCI_INTERRUPT_REG);
    269      1.3   kanaoka 
    270      1.3   kanaoka 			/* Reset the power state. */
    271      1.3   kanaoka 			aprint_normal("%s: chip is is in D%d power mode "
    272      1.3   kanaoka 		    	    "-- setting to D0\n", sc->sc_dev.dv_xname,
    273  1.8.2.5    bouyer 		    	    command & PCI_PMCSR_STATE_MASK);
    274      1.3   kanaoka 
    275  1.8.2.5    bouyer 			command &= ~PCI_PMCSR_STATE_MASK;
    276      1.3   kanaoka 			pci_conf_write(pc, pa->pa_tag,
    277      1.3   kanaoka 			    pmreg + PCI_PMCSR, command);
    278      1.3   kanaoka 
    279      1.3   kanaoka 			/* Restore PCI config data. */
    280      1.3   kanaoka 			pci_conf_write(pc, pa->pa_tag, RTK_PCI_LOIO, iobase);
    281      1.3   kanaoka 			pci_conf_write(pc, pa->pa_tag, RTK_PCI_LOMEM, membase);
    282      1.3   kanaoka 			pci_conf_write(pc, pa->pa_tag, PCI_INTERRUPT_REG, irq);
    283      1.3   kanaoka 		}
    284      1.3   kanaoka 	}
    285      1.1  jonathan 
    286      1.1  jonathan 	/*
    287      1.1  jonathan 	 * Map control/status registers.
    288      1.1  jonathan 	 */
    289      1.1  jonathan 	command = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG);
    290      1.1  jonathan 	command |= PCI_COMMAND_MASTER_ENABLE;
    291      1.1  jonathan 	pci_conf_write(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG, command);
    292      1.1  jonathan 
    293  1.8.2.5    bouyer 	ioh_valid = (pci_mapreg_map(pa, RTK_PCI_LOIO, PCI_MAPREG_TYPE_IO, 0,
    294  1.8.2.5    bouyer 	    &iot, &ioh, NULL, &iosize) == 0);
    295  1.8.2.5    bouyer 	memh_valid = (pci_mapreg_map(pa, RTK_PCI_LOMEM, PCI_MAPREG_TYPE_MEM, 0,
    296  1.8.2.5    bouyer 	    &memt, &memh, NULL, &memsize) == 0);
    297  1.8.2.5    bouyer 	if (ioh_valid) {
    298  1.8.2.5    bouyer 		sc->rtk_btag = iot;
    299  1.8.2.5    bouyer 		sc->rtk_bhandle = ioh;
    300  1.8.2.5    bouyer 		bsize = iosize;
    301  1.8.2.5    bouyer 	} else if (memh_valid) {
    302  1.8.2.5    bouyer 		sc->rtk_btag = memt;
    303  1.8.2.5    bouyer 		sc->rtk_bhandle = memh;
    304  1.8.2.5    bouyer 		bsize = memsize;
    305  1.8.2.5    bouyer 	} else {
    306  1.8.2.5    bouyer 		aprint_error("%s: can't map registers\n", sc->sc_dev.dv_xname);
    307      1.2   kanaoka 		return;
    308      1.1  jonathan 	}
    309  1.8.2.5    bouyer 
    310      1.1  jonathan 	t = re_devs;
    311      1.1  jonathan 	hwrev = CSR_READ_4(sc, RTK_TXCFG) & RTK_TXCFG_HWREV;
    312      1.1  jonathan 
    313      1.3   kanaoka 	while (t->rtk_name != NULL) {
    314      1.1  jonathan 		if ((PCI_VENDOR(pa->pa_id) == t->rtk_vid) &&
    315      1.1  jonathan 		    (PCI_PRODUCT(pa->pa_id) == t->rtk_did)) {
    316      1.1  jonathan 
    317      1.1  jonathan 			if (t->rtk_basetype == hwrev)
    318      1.1  jonathan 				break;
    319      1.1  jonathan 		}
    320      1.1  jonathan 		t++;
    321      1.1  jonathan 	}
    322      1.3   kanaoka 	aprint_normal(": %s\n", t->rtk_name);
    323      1.1  jonathan 
    324      1.1  jonathan 	hw_rev = re_hwrevs;
    325      1.1  jonathan 	hwrev = CSR_READ_4(sc, RTK_TXCFG) & RTK_TXCFG_HWREV;
    326      1.1  jonathan 	while (hw_rev->rtk_desc != NULL) {
    327      1.1  jonathan 		if (hw_rev->rtk_rev == hwrev) {
    328      1.1  jonathan 			sc->rtk_type = hw_rev->rtk_type;
    329      1.1  jonathan 			break;
    330      1.1  jonathan 		}
    331      1.1  jonathan 		hw_rev++;
    332      1.1  jonathan 	}
    333      1.1  jonathan 
    334      1.1  jonathan 	sc->sc_dmat = pa->pa_dmat;
    335      1.1  jonathan 
    336      1.1  jonathan 	/*
    337      1.1  jonathan 	 * No power/enable/disable machinery for PCI attac;
    338      1.1  jonathan 	 * mark the card enabled now.
    339      1.1  jonathan 	 */
    340      1.1  jonathan 	sc->sc_flags |= RTK_ENABLED;
    341      1.8     perry 
    342      1.1  jonathan 	/* Hook interrupt last to avoid having to lock softc */
    343      1.1  jonathan 	/* Allocate interrupt */
    344      1.1  jonathan 	if (pci_intr_map(pa, &ih)) {
    345      1.3   kanaoka 		aprint_error("%s: couldn't map interrupt\n",
    346      1.3   kanaoka 		    sc->sc_dev.dv_xname);
    347      1.2   kanaoka 		return;
    348      1.1  jonathan 	}
    349      1.1  jonathan 	intrstr = pci_intr_string(pc, ih);
    350      1.1  jonathan 	psc->sc_ih = pci_intr_establish(pc, ih, IPL_NET, re_intr, sc);
    351      1.1  jonathan 	if (psc->sc_ih == NULL) {
    352      1.3   kanaoka 		aprint_error("%s: couldn't establish interrupt",
    353      1.1  jonathan 		    sc->sc_dev.dv_xname);
    354      1.1  jonathan 		if (intrstr != NULL)
    355      1.3   kanaoka 			aprint_error(" at %s", intrstr);
    356      1.3   kanaoka 		aprint_error("\n");
    357      1.1  jonathan 		return;
    358      1.1  jonathan 	}
    359      1.1  jonathan 	aprint_normal("%s: interrupting at %s\n", sc->sc_dev.dv_xname, intrstr);
    360      1.1  jonathan 
    361      1.2   kanaoka 	re_attach(sc);
    362      1.2   kanaoka 
    363      1.2   kanaoka 	/*
    364  1.8.2.5    bouyer 	 * Perform hardware diagnostic on the original RTL8169.
    365  1.8.2.5    bouyer 	 * Some 32-bit cards were incorrectly wired and would
    366  1.8.2.5    bouyer 	 * malfunction if plugged into a 64-bit slot.
    367      1.2   kanaoka 	 */
    368  1.8.2.5    bouyer 	if (hwrev == RTK_HWREV_8169) {
    369  1.8.2.5    bouyer 		error = re_diag(sc);
    370  1.8.2.5    bouyer 		if (error) {
    371  1.8.2.5    bouyer 			aprint_error(
    372  1.8.2.5    bouyer 			    "%s: attach aborted due to hardware diag failure\n",
    373  1.8.2.5    bouyer 			    sc->sc_dev.dv_xname);
    374  1.8.2.5    bouyer 
    375  1.8.2.5    bouyer 			re_detach(sc);
    376  1.8.2.5    bouyer 
    377  1.8.2.5    bouyer 			if (psc->sc_ih != NULL) {
    378  1.8.2.5    bouyer 				pci_intr_disestablish(pc, psc->sc_ih);
    379  1.8.2.5    bouyer 				psc->sc_ih = NULL;
    380  1.8.2.5    bouyer 			}
    381      1.8     perry 
    382  1.8.2.5    bouyer 			if (bsize)
    383  1.8.2.5    bouyer 				bus_space_unmap(sc->rtk_btag, sc->rtk_bhandle,
    384  1.8.2.5    bouyer 				    bsize);
    385      1.2   kanaoka 		}
    386      1.2   kanaoka 	}
    387      1.1  jonathan }
    388