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if_fxp_pci.c revision 1.32
      1 /*	$NetBSD: if_fxp_pci.c,v 1.32 2003/02/18 00:11:53 grant Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 1997, 1998, 1999, 2000, 2001 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9  * NASA Ames Research Center.
     10  *
     11  * Redistribution and use in source and binary forms, with or without
     12  * modification, are permitted provided that the following conditions
     13  * are met:
     14  * 1. Redistributions of source code must retain the above copyright
     15  *    notice, this list of conditions and the following disclaimer.
     16  * 2. Redistributions in binary form must reproduce the above copyright
     17  *    notice, this list of conditions and the following disclaimer in the
     18  *    documentation and/or other materials provided with the distribution.
     19  * 3. All advertising materials mentioning features or use of this software
     20  *    must display the following acknowledgement:
     21  *	This product includes software developed by the NetBSD
     22  *	Foundation, Inc. and its contributors.
     23  * 4. Neither the name of The NetBSD Foundation nor the names of its
     24  *    contributors may be used to endorse or promote products derived
     25  *    from this software without specific prior written permission.
     26  *
     27  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     28  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     29  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     30  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     31  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     32  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     33  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     34  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     35  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     36  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     37  * POSSIBILITY OF SUCH DAMAGE.
     38  */
     39 
     40 /*
     41  * PCI bus front-end for the Intel i82557 fast Ethernet controller
     42  * driver.  Works with Intel Etherexpress Pro 10+, 100B, 100+ cards.
     43  */
     44 
     45 #include <sys/cdefs.h>
     46 __KERNEL_RCSID(0, "$NetBSD: if_fxp_pci.c,v 1.32 2003/02/18 00:11:53 grant Exp $");
     47 
     48 #include "rnd.h"
     49 
     50 #include <sys/param.h>
     51 #include <sys/systm.h>
     52 #include <sys/mbuf.h>
     53 #include <sys/malloc.h>
     54 #include <sys/kernel.h>
     55 #include <sys/socket.h>
     56 #include <sys/ioctl.h>
     57 #include <sys/errno.h>
     58 #include <sys/device.h>
     59 
     60 #if NRND > 0
     61 #include <sys/rnd.h>
     62 #endif
     63 
     64 #include <machine/endian.h>
     65 
     66 #include <net/if.h>
     67 #include <net/if_dl.h>
     68 #include <net/if_media.h>
     69 #include <net/if_ether.h>
     70 
     71 #include <machine/bus.h>
     72 #include <machine/intr.h>
     73 
     74 #include <dev/mii/miivar.h>
     75 
     76 #include <dev/ic/i82557reg.h>
     77 #include <dev/ic/i82557var.h>
     78 
     79 #include <dev/pci/pcivar.h>
     80 #include <dev/pci/pcireg.h>
     81 #include <dev/pci/pcidevs.h>
     82 
     83 struct fxp_pci_softc {
     84 	struct fxp_softc psc_fxp;
     85 
     86 	pci_chipset_tag_t psc_pc;	/* pci chipset tag */
     87 	pcireg_t psc_regs[0x20>>2];	/* saved PCI config regs (sparse) */
     88 	pcitag_t psc_tag;		/* pci register tag */
     89 	void *psc_powerhook;		/* power hook */
     90 
     91 	int psc_pwrmgmt_csr_reg;	/* ACPI power management register */
     92 	pcireg_t psc_pwrmgmt_csr;	/* ...and the contents at D0 */
     93 };
     94 
     95 int	fxp_pci_match __P((struct device *, struct cfdata *, void *));
     96 void	fxp_pci_attach __P((struct device *, struct device *, void *));
     97 
     98 int	fxp_pci_enable __P((struct fxp_softc *));
     99 void	fxp_pci_disable __P((struct fxp_softc *));
    100 
    101 static void	fxp_pci_confreg_restore __P((struct fxp_pci_softc *psc));
    102 static void	fxp_pci_power __P((int why, void *arg));
    103 
    104 CFATTACH_DECL(fxp_pci, sizeof(struct fxp_pci_softc),
    105     fxp_pci_match, fxp_pci_attach, NULL, NULL);
    106 
    107 const struct fxp_pci_product {
    108 	u_int32_t	fpp_prodid;	/* PCI product ID */
    109 	const char	*fpp_name;	/* device name */
    110 } fxp_pci_products[] = {
    111 	{ PCI_PRODUCT_INTEL_82557,
    112 	  "Intel i82557 Ethernet" },
    113 	{ PCI_PRODUCT_INTEL_82559ER,
    114 	  "Intel i82559ER Ethernet" },
    115 	{ PCI_PRODUCT_INTEL_IN_BUSINESS,
    116 	  "Intel InBusiness Ethernet" },
    117 	{ PCI_PRODUCT_INTEL_82801BA_LAN,
    118 	  "Intel i82562 Ethernet" },
    119 	{ PCI_PRODUCT_INTEL_82801E_LAN_1,
    120 	  "Intel i82559 Ethernet" },
    121 	{ PCI_PRODUCT_INTEL_82801E_LAN_2,
    122 	  "Intel i82559 Ethernet" },
    123 	{ PCI_PRODUCT_INTEL_PRO_100_VE_0,
    124 	  "Intel PRO/100 VE Network Controller" },
    125 	{ PCI_PRODUCT_INTEL_PRO_100_VE_1,
    126 	  "Intel PRO/100 VE Network Controller" },
    127 	{ PCI_PRODUCT_INTEL_PRO_100_VE_2,
    128 	  "Intel PRO/100 VE Network Controller with 82562ET/EZ PHY" },
    129 	{ PCI_PRODUCT_INTEL_PRO_100_VE_3,
    130 	  "Intel PRO/100 VE Network Controller with 82562ET/EZ (CNR) PHY" },
    131 	{ PCI_PRODUCT_INTEL_PRO_100_VE_4,
    132 	  "Intel PRO/100 VE (MOB) Network Controller" },
    133 	{ PCI_PRODUCT_INTEL_PRO_100_VM_0,
    134 	  "Intel PRO/100 VM Network Controller" },
    135 	{ PCI_PRODUCT_INTEL_PRO_100_VM_1,
    136 	  "Intel PRO/100 VM Network Controller" },
    137 	{ PCI_PRODUCT_INTEL_PRO_100_VM_2,
    138 	  "Intel PRO/100 VM Network Controller" },
    139 	{ PCI_PRODUCT_INTEL_PRO_100_M,
    140 	  "Intel PRO/100 M Network Controller" },
    141 	{ 0,
    142 	  NULL },
    143 };
    144 
    145 static const struct fxp_pci_product *
    146 fxp_pci_lookup(const struct pci_attach_args *pa)
    147 {
    148 	const struct fxp_pci_product *fpp;
    149 
    150 	if (PCI_VENDOR(pa->pa_id) != PCI_VENDOR_INTEL)
    151 		return (NULL);
    152 
    153 	for (fpp = fxp_pci_products; fpp->fpp_name != NULL; fpp++)
    154 		if (PCI_PRODUCT(pa->pa_id) == fpp->fpp_prodid)
    155 			return (fpp);
    156 
    157 	return (NULL);
    158 }
    159 
    160 int
    161 fxp_pci_match(parent, match, aux)
    162 	struct device *parent;
    163 	struct cfdata *match;
    164 	void *aux;
    165 {
    166 	struct pci_attach_args *pa = aux;
    167 
    168 	if (fxp_pci_lookup(pa) != NULL)
    169 		return (1);
    170 
    171 	return (0);
    172 }
    173 
    174 /*
    175  * Restore PCI configuration registers that may have been clobbered.
    176  * This is necessary due to bugs on the Sony VAIO Z505-series on-board
    177  * ethernet, after an APM suspend/resume, as well as after an ACPI
    178  * D3->D0 transition.  We call this function from a power hook after
    179  * APM resume events, as well as after the ACPI D3->D0 transition.
    180  */
    181 static void
    182 fxp_pci_confreg_restore(psc)
    183         struct fxp_pci_softc *psc;
    184 {
    185 	pcireg_t reg;
    186 
    187 #if 0
    188 	/*
    189 	 * Check to see if the command register is blank -- if so, then
    190 	 * we'll assume that all the clobberable-registers have been
    191 	 * clobbered.
    192 	 */
    193 
    194 	/*
    195 	 * In general, the above metric is accurate. Unfortunately,
    196 	 * it is inaccurate across a hibernation. Ideally APM/ACPI
    197 	 * code should take note of hibernation events and execute
    198 	 * a hibernation wakeup hook, but at present a hibernation wake
    199 	 * is indistinguishable from a suspend wake.
    200 	 */
    201 
    202 	if (((reg = pci_conf_read(psc->psc_pc, psc->psc_tag,
    203 	    PCI_COMMAND_STATUS_REG)) & 0xffff) != 0)
    204 		return;
    205 #else
    206 	reg = pci_conf_read(psc->psc_pc, psc->psc_tag, PCI_COMMAND_STATUS_REG);
    207 #endif
    208 
    209 	pci_conf_write(psc->psc_pc, psc->psc_tag,
    210 	    PCI_COMMAND_STATUS_REG,
    211 	    (reg & 0xffff0000) |
    212 	    (psc->psc_regs[PCI_COMMAND_STATUS_REG>>2] & 0xffff));
    213 	pci_conf_write(psc->psc_pc, psc->psc_tag, PCI_BHLC_REG,
    214 	    psc->psc_regs[PCI_BHLC_REG>>2]);
    215 	pci_conf_write(psc->psc_pc, psc->psc_tag, PCI_MAPREG_START+0x0,
    216 	    psc->psc_regs[(PCI_MAPREG_START+0x0)>>2]);
    217 	pci_conf_write(psc->psc_pc, psc->psc_tag, PCI_MAPREG_START+0x4,
    218 	    psc->psc_regs[(PCI_MAPREG_START+0x4)>>2]);
    219 	pci_conf_write(psc->psc_pc, psc->psc_tag, PCI_MAPREG_START+0x8,
    220 	    psc->psc_regs[(PCI_MAPREG_START+0x8)>>2]);
    221 }
    222 
    223 
    224 /*
    225  * Power handler routine. Called when the system is transitioning into/out
    226  * of power save modes. We restore the (bashed) PCI configuration registers
    227  * on a resume.
    228  */
    229 static void
    230 fxp_pci_power(why, arg)
    231 	int why;
    232 	void *arg;
    233 {
    234 	struct fxp_pci_softc *psc = arg;
    235 
    236 	if (why == PWR_RESUME)
    237 		fxp_pci_confreg_restore(psc);
    238 }
    239 
    240 void
    241 fxp_pci_attach(parent, self, aux)
    242 	struct device *parent, *self;
    243 	void *aux;
    244 {
    245 	struct fxp_pci_softc *psc = (struct fxp_pci_softc *)self;
    246 	struct fxp_softc *sc = (struct fxp_softc *)self;
    247 	struct pci_attach_args *pa = aux;
    248 	pci_chipset_tag_t pc = pa->pa_pc;
    249 	pci_intr_handle_t ih;
    250 	const struct fxp_pci_product *fpp;
    251 	const char *intrstr = NULL;
    252 	bus_space_tag_t iot, memt;
    253 	bus_space_handle_t ioh, memh;
    254 	int ioh_valid, memh_valid;
    255 	bus_addr_t addr;
    256 	bus_size_t size;
    257 	int flags;
    258  	int pci_pwrmgmt_cap_reg;
    259 
    260 	aprint_naive(": Ethernet controller\n");
    261 
    262 	/*
    263 	 * Map control/status registers.
    264 	 */
    265 	ioh_valid = (pci_mapreg_map(pa, FXP_PCI_IOBA,
    266 	    PCI_MAPREG_TYPE_IO, 0,
    267 	    &iot, &ioh, NULL, NULL) == 0);
    268 
    269 	/*
    270 	 * Version 2.1 of the PCI spec, page 196, "Address Maps":
    271 	 *
    272 	 *	Prefetchable
    273 	 *
    274 	 *	Set to one if there are no side effects on reads, the
    275 	 *	device returns all bytes regardless of the byte enables,
    276 	 *	and host bridges can merge processor writes into this
    277 	 *	range without causing errors.  Bit must be set to zero
    278 	 *	otherwise.
    279 	 *
    280 	 * The 82557 incorrectly sets the "prefetchable" bit, resulting
    281 	 * in errors on systems which will do merged reads and writes.
    282 	 * These errors manifest themselves as all-bits-set when reading
    283 	 * from the EEPROM or other < 4 byte registers.
    284 	 *
    285 	 * We must work around this problem by always forcing the mapping
    286 	 * for memory space to be uncacheable.  On systems which cannot
    287 	 * create an uncacheable mapping (because the firmware mapped it
    288 	 * into only cacheable/prefetchable space due to the "prefetchable"
    289 	 * bit), we can fall back onto i/o mapped access.
    290 	 */
    291 	memh_valid = 0;
    292 	memt = pa->pa_memt;
    293 	if (((pa->pa_flags & PCI_FLAGS_MEM_ENABLED) != 0) &&
    294 	    pci_mapreg_info(pa->pa_pc, pa->pa_tag, FXP_PCI_MMBA,
    295 	    PCI_MAPREG_TYPE_MEM|PCI_MAPREG_MEM_TYPE_32BIT,
    296 	    &addr, &size, &flags) == 0) {
    297 		flags &= ~BUS_SPACE_MAP_PREFETCHABLE;
    298 		if (bus_space_map(memt, addr, size, flags, &memh) == 0)
    299 			memh_valid = 1;
    300 	}
    301 
    302 	if (memh_valid) {
    303 		sc->sc_st = memt;
    304 		sc->sc_sh = memh;
    305 	} else if (ioh_valid) {
    306 		sc->sc_st = iot;
    307 		sc->sc_sh = ioh;
    308 	} else {
    309 		aprint_error(": unable to map device registers\n");
    310 		return;
    311 	}
    312 
    313 	sc->sc_dmat = pa->pa_dmat;
    314 
    315 	fpp = fxp_pci_lookup(pa);
    316 	if (fpp == NULL) {
    317 		printf("\n");
    318 		panic("fxp_pci_attach: impossible");
    319 	}
    320 
    321 	sc->sc_rev = PCI_REVISION(pa->pa_class);
    322 
    323 	switch (fpp->fpp_prodid) {
    324 	case PCI_PRODUCT_INTEL_82557:
    325 	case PCI_PRODUCT_INTEL_82559ER:
    326 	case PCI_PRODUCT_INTEL_IN_BUSINESS:
    327 	    {
    328 		const char *chipname = NULL;
    329 
    330 		if (sc->sc_rev >= FXP_REV_82558_A4) {
    331 			chipname = "i82558 Ethernet";
    332 			/*
    333 			 * Enable the MWI command for memory writes.
    334 			 */
    335 			if (pa->pa_flags & PCI_FLAGS_MWI_OKAY)
    336 				sc->sc_flags |= FXPF_MWI;
    337 		}
    338 		if (sc->sc_rev >= FXP_REV_82559_A0)
    339 			chipname = "i82559 Ethernet";
    340 		if (sc->sc_rev >= FXP_REV_82559S_A)
    341 			chipname = "i82559S Ethernet";
    342 		if (sc->sc_rev >= FXP_REV_82550)
    343 			chipname = "i82550 Ethernet";
    344 
    345 		/*
    346 		 * Mark all i82559 and i82550 revisions as having
    347 		 * the "resume bug".  See i82557.c for details.
    348 		 */
    349 		if (sc->sc_rev >= FXP_REV_82559_A0)
    350 			sc->sc_flags |= FXPF_HAS_RESUME_BUG;
    351 
    352 		aprint_normal(": %s, rev %d\n", chipname != NULL ? chipname :
    353 		    fpp->fpp_name, sc->sc_rev);
    354 		break;
    355 	    }
    356 
    357 	case PCI_PRODUCT_INTEL_82801BA_LAN:
    358 		aprint_normal(": %s, rev %d\n", fpp->fpp_name, sc->sc_rev);
    359 
    360 		/*
    361 		 * The 82801BA Ethernet has a bug which requires us to send a
    362 		 * NOP before a CU_RESUME if we're in 10baseT mode.
    363 		 */
    364 		if (fpp->fpp_prodid == PCI_PRODUCT_INTEL_82801BA_LAN)
    365 			sc->sc_flags |= FXPF_HAS_RESUME_BUG;
    366 		break;
    367 
    368 	case PCI_PRODUCT_INTEL_PRO_100_VE_0:
    369 	case PCI_PRODUCT_INTEL_PRO_100_VE_1:
    370 	case PCI_PRODUCT_INTEL_PRO_100_VM_0:
    371 	case PCI_PRODUCT_INTEL_PRO_100_VM_1:
    372 	case PCI_PRODUCT_INTEL_82562EH_HPNA_0:
    373 	case PCI_PRODUCT_INTEL_82562EH_HPNA_1:
    374 	case PCI_PRODUCT_INTEL_82562EH_HPNA_2:
    375 	case PCI_PRODUCT_INTEL_PRO_100_VM_2:
    376 		aprint_normal(": %s, rev %d\n", fpp->fpp_name, sc->sc_rev);
    377 
    378 		/*
    379 		 * ICH3 chips apparently have problems with the enhanced
    380 		 * features, so just treat them as an i82557.  It also
    381 		 * has the resume bug that the ICH2 has.
    382 		 */
    383 		sc->sc_rev = 1;
    384 		sc->sc_flags |= FXPF_HAS_RESUME_BUG;
    385 		break;
    386 	case PCI_PRODUCT_INTEL_82801E_LAN_1:
    387 	case PCI_PRODUCT_INTEL_82801E_LAN_2:
    388 		aprint_normal(": %s, rev %d\n", fpp->fpp_name, sc->sc_rev);
    389 
    390 		/*
    391 		 *  XXX We have to read the C-ICH's developer's manual
    392 		 *  in detail
    393 		 */
    394 		break;
    395 	}
    396 
    397 	/* Make sure bus-mastering is enabled. */
    398 	pci_conf_write(pc, pa->pa_tag, PCI_COMMAND_STATUS_REG,
    399 	    pci_conf_read(pc, pa->pa_tag, PCI_COMMAND_STATUS_REG) |
    400 	    PCI_COMMAND_MASTER_ENABLE);
    401 
    402   	/*
    403 	 * Under some circumstances (such as APM suspend/resume
    404 	 * cycles, and across ACPI power state changes), the
    405 	 * i82257-family can lose the contents of critical PCI
    406 	 * configuration registers, causing the card to be
    407 	 * non-responsive and useless.  This occurs on the Sony VAIO
    408 	 * Z505-series, among others.  Preserve them here so they can
    409 	 * be later restored (by fxp_pci_confreg_restore()).
    410 	 */
    411 	psc->psc_pc = pc;
    412 	psc->psc_tag = pa->pa_tag;
    413 	psc->psc_regs[PCI_COMMAND_STATUS_REG>>2] =
    414 	    pci_conf_read(pc, pa->pa_tag, PCI_COMMAND_STATUS_REG);
    415 	psc->psc_regs[PCI_BHLC_REG>>2] =
    416 	    pci_conf_read(pc, pa->pa_tag, PCI_BHLC_REG);
    417 	psc->psc_regs[(PCI_MAPREG_START+0x0)>>2] =
    418 	    pci_conf_read(pc, pa->pa_tag, PCI_MAPREG_START+0x0);
    419 	psc->psc_regs[(PCI_MAPREG_START+0x4)>>2] =
    420 	    pci_conf_read(pc, pa->pa_tag, PCI_MAPREG_START+0x4);
    421 	psc->psc_regs[(PCI_MAPREG_START+0x8)>>2] =
    422 	    pci_conf_read(pc, pa->pa_tag, PCI_MAPREG_START+0x8);
    423 
    424 	/*
    425 	 * Work around BIOS ACPI bugs where the chip is inadvertantly
    426 	 * left in ACPI D3 (lowest power state).  First confirm the device
    427 	 * supports ACPI power management, then move it to the D0 (fully
    428 	 * functional) state if it is not already there.
    429 	 */
    430 	if (pci_get_capability(pc, pa->pa_tag, PCI_CAP_PWRMGMT,
    431 	    &pci_pwrmgmt_cap_reg, 0)) {
    432 		pcireg_t reg;
    433 
    434 		sc->sc_enable = fxp_pci_enable;
    435 		sc->sc_disable = fxp_pci_disable;
    436 
    437 		psc->psc_pwrmgmt_csr_reg = pci_pwrmgmt_cap_reg + PCI_PMCSR;
    438 		reg = pci_conf_read(pc, pa->pa_tag, psc->psc_pwrmgmt_csr_reg);
    439 		psc->psc_pwrmgmt_csr = (reg & ~PCI_PMCSR_STATE_MASK) |
    440 		    PCI_PMCSR_STATE_D0;
    441 		if ((reg & PCI_PMCSR_STATE_MASK) != PCI_PMCSR_STATE_D0)
    442 			pci_conf_write(pc, pa->pa_tag, psc->psc_pwrmgmt_csr_reg,
    443 			    psc->psc_pwrmgmt_csr);
    444 	}
    445 	/* Restore PCI configuration registers. */
    446 	fxp_pci_confreg_restore(psc);
    447 
    448 	sc->sc_enabled = 1;
    449 
    450 	/*
    451 	 * Map and establish our interrupt.
    452 	 */
    453 	if (pci_intr_map(pa, &ih)) {
    454 		aprint_error("%s: couldn't map interrupt\n",
    455 		    sc->sc_dev.dv_xname);
    456 		return;
    457 	}
    458 	intrstr = pci_intr_string(pc, ih);
    459 	sc->sc_ih = pci_intr_establish(pc, ih, IPL_NET, fxp_intr, sc);
    460 	if (sc->sc_ih == NULL) {
    461 		aprint_error("%s: couldn't establish interrupt",
    462 		    sc->sc_dev.dv_xname);
    463 		if (intrstr != NULL)
    464 			aprint_normal(" at %s", intrstr);
    465 		aprint_normal("\n");
    466 		return;
    467 	}
    468 	aprint_normal("%s: interrupting at %s\n", sc->sc_dev.dv_xname, intrstr);
    469 
    470 	/* Finish off the attach. */
    471 	fxp_attach(sc);
    472 	if (sc->sc_disable != NULL)
    473 		fxp_disable(sc);
    474 
    475 	/* Add a suspend hook to restore PCI config state */
    476 	psc->psc_powerhook = powerhook_establish(fxp_pci_power, psc);
    477 	if (psc->psc_powerhook == NULL)
    478 		aprint_error(
    479 		    "%s: WARNING: unable to establish pci power hook\n",
    480 		    sc->sc_dev.dv_xname);
    481 }
    482 
    483 int
    484 fxp_pci_enable(struct fxp_softc *sc)
    485 {
    486 	struct fxp_pci_softc *psc = (void *) sc;
    487 
    488 #if 0
    489 	printf("%s: going to power state D0\n", sc->sc_dev.dv_xname);
    490 #endif
    491 
    492 	/* Bring the device into D0 power state. */
    493 	pci_conf_write(psc->psc_pc, psc->psc_tag,
    494 	    psc->psc_pwrmgmt_csr_reg, psc->psc_pwrmgmt_csr);
    495 
    496 	/* Now restore the configuration registers. */
    497 	fxp_pci_confreg_restore(psc);
    498 
    499 	return (0);
    500 }
    501 
    502 void
    503 fxp_pci_disable(struct fxp_softc *sc)
    504 {
    505 	struct fxp_pci_softc *psc = (void *) sc;
    506 
    507 	/*
    508 	 * for some 82558_A4 and 82558_B0, entering D3 state makes
    509 	 * media detection disordered.
    510 	 */
    511 	if (sc->sc_rev <= FXP_REV_82558_B0)
    512 		return;
    513 
    514 #if 0
    515 	printf("%s: going to power state D3\n", sc->sc_dev.dv_xname);
    516 #endif
    517 
    518 	/* Put the device into D3 state. */
    519 	pci_conf_write(psc->psc_pc, psc->psc_tag,
    520 	    psc->psc_pwrmgmt_csr_reg, (psc->psc_pwrmgmt_csr &
    521 	    ~PCI_PMCSR_STATE_MASK) | PCI_PMCSR_STATE_D3);
    522 }
    523