943 lines
33 KiB
C
943 lines
33 KiB
C
/* $NetBSD: if_devar.h,v 1.32 1999/04/01 14:55:25 tsubai Exp $ */
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/* $FreeBSD$ */
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/*-
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* Copyright (c) 1994-1997 Matt Thomas (matt@3am-software.com)
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. The name of the author may not be used to endorse or promote products
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* derived from this software withough specific prior written permission
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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* Id: if_devar.h,v 1.28 1997/07/03 16:55:07 thomas Exp
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*/
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#if !defined(_DEVAR_H)
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#define _DEVAR_H
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#ifdef TULIP_IOMAPPED
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#define TULIP_PCI_CSRSIZE 8
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#define TULIP_PCI_CSROFFSET 0
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typedef pci_port_t tulip_csrptr_t;
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#define TULIP_CSR_READ(sc, csr) (inl((sc)->tulip_csrs.csr))
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#define TULIP_CSR_WRITE(sc, csr, val) outl((sc)->tulip_csrs.csr, val)
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#define TULIP_CSR_READBYTE(sc, csr) (inb((sc)->tulip_csrs.csr))
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#define TULIP_CSR_WRITEBYTE(sc, csr, val) outb((sc)->tulip_csrs.csr, val)
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#else /* TULIP_IOMAPPED */
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#define TULIP_PCI_CSRSIZE 8
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#define TULIP_PCI_CSROFFSET 0
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#if defined(__alpha__)
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typedef u_int32_t tulip_csrptr_t;
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#define TULIP_CSR_READ(sc, csr) (readl((sc)->tulip_csrs.csr))
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#define TULIP_CSR_WRITE(sc, csr, val) writel((sc)->tulip_csrs.csr, val)
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#define TULIP_CSR_READBYTE(sc, csr) (readb((sc)->tulip_csrs.csr))
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#define TULIP_CSR_WRITEBYTE(sc, csr, val) writeb((sc)->tulip_csrs.csr, val)
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#else /* __alpha__ */
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typedef volatile u_int32_t *tulip_csrptr_t;
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/*
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* macros to read and write CSRs. Note that the "0 +" in
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* READ_CSR is to prevent the macro from being an lvalue
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* and WRITE_CSR shouldn't be assigned from.
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*/
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#define TULIP_CSR_READ(sc, csr) (0 + *(sc)->tulip_csrs.csr)
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#define TULIP_CSR_WRITE(sc, csr, val) ((void)(*(sc)->tulip_csrs.csr = (val)))
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#endif /* __alpha__ */
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#endif /* TULIP_IOMAPPED */
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/*
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* This structure contains "pointers" for the registers on
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* the various 21x4x chips. CSR0 through CSR8 are common
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* to all chips. After that, it gets messy...
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*/
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typedef struct {
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tulip_csrptr_t csr_busmode; /* CSR0 */
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tulip_csrptr_t csr_txpoll; /* CSR1 */
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tulip_csrptr_t csr_rxpoll; /* CSR2 */
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tulip_csrptr_t csr_rxlist; /* CSR3 */
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tulip_csrptr_t csr_txlist; /* CSR4 */
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tulip_csrptr_t csr_status; /* CSR5 */
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tulip_csrptr_t csr_command; /* CSR6 */
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tulip_csrptr_t csr_intr; /* CSR7 */
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tulip_csrptr_t csr_missed_frames; /* CSR8 */
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tulip_csrptr_t csr_9; /* CSR9 */
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tulip_csrptr_t csr_10; /* CSR10 */
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tulip_csrptr_t csr_11; /* CSR11 */
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tulip_csrptr_t csr_12; /* CSR12 */
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tulip_csrptr_t csr_13; /* CSR13 */
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tulip_csrptr_t csr_14; /* CSR14 */
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tulip_csrptr_t csr_15; /* CSR15 */
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} tulip_regfile_t;
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#define csr_enetrom csr_9 /* 21040 */
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#define csr_reserved csr_10 /* 21040 */
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#define csr_full_duplex csr_11 /* 21040 */
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#define csr_bootrom csr_10 /* 21041/21140A/?? */
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#define csr_gp csr_12 /* 21140* */
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#define csr_watchdog csr_15 /* 21140* */
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#define csr_gp_timer csr_11 /* 21041/21140* */
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#define csr_srom_mii csr_9 /* 21041/21140* */
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#define csr_sia_status csr_12 /* 2104x */
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#define csr_sia_connectivity csr_13 /* 2104x */
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#define csr_sia_tx_rx csr_14 /* 2104x */
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#define csr_sia_general csr_15 /* 2104x */
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/*
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* While 21x4x allows chaining of its descriptors, this driver
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* doesn't take advantage of it. We keep the descriptors in a
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* traditional FIFO ring.
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*/
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typedef struct {
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tulip_desc_t *ri_first; /* first entry in ring */
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tulip_desc_t *ri_last; /* one after last entry */
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tulip_desc_t *ri_nextin; /* next to processed by host */
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tulip_desc_t *ri_nextout; /* next to processed by adapter */
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int ri_max;
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int ri_free;
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} tulip_ringinfo_t;
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/*
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* The 21040 has a stupid restriction in that the receive
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* buffers must be longword aligned. But since Ethernet
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* headers are not a multiple of longwords in size this forces
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* the data to non-longword aligned. Since IP requires the
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* data to be longword aligned, we need to copy it after it has
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* been DMA'ed in our memory.
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*
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* Since we have to copy it anyways, we might as well as allocate
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* dedicated receive space for the input. This allows to use a
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* small receive buffer size and more ring entries to be able to
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* better keep with a flood of tiny Ethernet packets.
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*
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* The receive space MUST ALWAYS be a multiple of the page size.
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* And the number of receive descriptors multiplied by the size
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* of the receive buffers must equal the recevive space. This
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* is so that we can manipulate the page tables so that even if a
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* packet wraps around the end of the receive space, we can
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* treat it as virtually contiguous.
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*
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* The above used to be true (the stupid restriction is still true)
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* but we gone to directly DMA'ing into MBUFs (unless it's on an
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* architecture which can't handle unaligned accesses) because with
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* 100Mb/s cards the copying is just too much of a hit.
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*/
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#if !defined(__i386__) && !defined(__vax__)
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#define TULIP_COPY_RXDATA 1
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#endif
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#define TULIP_DATA_PER_DESC 2032
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#define TULIP_TXTIMER 4
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#define TULIP_RXDESCS 48
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#define TULIP_TXDESCS 128
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#define TULIP_RXQ_TARGET 32
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#if TULIP_RXQ_TARGET >= TULIP_RXDESCS
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#error TULIP_RXQ_TARGET must be less than TULIP_RXDESCS
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#endif
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#define TULIP_RX_BUFLEN ((MCLBYTES < 2048 ? MCLBYTES : 2048) - 16)
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/*
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* Forward reference to make C happy.
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*/
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typedef struct _tulip_softc_t tulip_softc_t;
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/*
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* The various controllers support.
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*/
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typedef enum {
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TULIP_21040,
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TULIP_21041,
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TULIP_21140, TULIP_21140A, TULIP_21142,
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TULIP_21143,
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TULIP_CHIPID_UNKNOWN
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} tulip_chipid_t;
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/*
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* Various physical media types supported.
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* BNCAUI is BNC or AUI since on the 21040 you can't really tell
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* which is in use.
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*/
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typedef enum {
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TULIP_MEDIA_UNKNOWN,
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TULIP_MEDIA_10BASET,
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TULIP_MEDIA_10BASET_FD,
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TULIP_MEDIA_BNC,
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TULIP_MEDIA_AUI,
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TULIP_MEDIA_EXTSIA,
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TULIP_MEDIA_AUIBNC,
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TULIP_MEDIA_100BASETX,
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TULIP_MEDIA_100BASETX_FD,
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TULIP_MEDIA_100BASET4,
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TULIP_MEDIA_100BASEFX,
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TULIP_MEDIA_100BASEFX_FD,
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TULIP_MEDIA_MAX
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} tulip_media_t;
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#define TULIP_BIT(b) (1L << ((int)(b)))
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#define TULIP_FDBIT(m) (1L << ((int)TULIP_MEDIA_ ## m ## _FD))
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#define TULIP_MBIT(m) (1L << ((int)TULIP_MEDIA_ ## m ))
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#define TULIP_IS_MEDIA_FD(m) (TULIP_BIT(m) & \
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(TULIP_FDBIT(10BASET) \
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|TULIP_FDBIT(100BASETX) \
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|TULIP_FDBIT(100BASEFX)))
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#define TULIP_CAN_MEDIA_FD(m) (TULIP_BIT(m) & \
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(TULIP_MBIT(10BASET) \
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|TULIP_MBIT(100BASETX) \
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|TULIP_MBIT(100BASEFX)))
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#define TULIP_FD_MEDIA_OF(m) ((tulip_media_t)((m) + 1))
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#define TULIP_HD_MEDIA_OF(m) ((tulip_media_t)((m) - 1))
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#define TULIP_IS_MEDIA_100MB(m) ((m) >= TULIP_MEDIA_100BASETX)
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#define TULIP_IS_MEDIA_TP(m) ((TULIP_BIT(m) & \
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(TULIP_MBIT(BNC) \
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|TULIP_MBIT(AUI) \
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|TULIP_MBIT(AUIBNC) \
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|TULIP_MBIT(EXTSIA))) == 0)
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#define TULIP_SROM_ATTR_MII 0x0100
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#define TULIP_SROM_ATTR_NWAY 0x0200
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#define TULIP_SROM_ATTR_AUTOSENSE 0x0400
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#define TULIP_SROM_ATTR_POWERUP 0x0800
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#define TULIP_SROM_ATTR_NOLINKPASS 0x1000
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typedef struct {
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enum {
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TULIP_MEDIAINFO_NONE,
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TULIP_MEDIAINFO_SIA,
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TULIP_MEDIAINFO_GPR,
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TULIP_MEDIAINFO_MII,
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TULIP_MEDIAINFO_RESET,
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TULIP_MEDIAINFO_SYM
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} mi_type;
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union {
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struct {
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u_int16_t sia_connectivity;
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u_int16_t sia_tx_rx;
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u_int16_t sia_general;
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u_int32_t sia_gp_control; /* 21142/21143 */
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u_int32_t sia_gp_data; /* 21142/21143 */
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} un_sia;
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struct {
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u_int32_t gpr_cmdmode;
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u_int32_t gpr_gpcontrol; /* 21142/21143 */
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u_int32_t gpr_gpdata;
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u_int8_t gpr_actmask;
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u_int8_t gpr_actdata;
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u_int gpr_default : 1;
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} un_gpr;
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struct {
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u_int32_t mii_mediamask;
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u_int16_t mii_capabilities;
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u_int16_t mii_advertisement;
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u_int16_t mii_full_duplex;
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u_int16_t mii_tx_threshold;
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u_int16_t mii_interrupt; /* 21142/21143 */
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u_int8_t mii_phyaddr;
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u_int8_t mii_gpr_length;
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u_int8_t mii_gpr_offset;
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u_int8_t mii_reset_length;
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u_int8_t mii_reset_offset;
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u_int32_t mii_phyid;
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} un_mii;
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} mi_un;
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} tulip_media_info_t;
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#define mi_sia_connectivity mi_un.un_sia.sia_connectivity
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#define mi_sia_tx_rx mi_un.un_sia.sia_tx_rx
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#define mi_sia_general mi_un.un_sia.sia_general
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#define mi_sia_gp_control mi_un.un_sia.sia_gp_control
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#define mi_sia_gp_data mi_un.un_sia.sia_gp_data
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#define mi_gpcontrol mi_un.un_gpr.gpr_gpcontrol
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#define mi_gpdata mi_un.un_gpr.gpr_gpdata
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#define mi_actmask mi_un.un_gpr.gpr_actmask
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#define mi_actdata mi_un.un_gpr.gpr_actdata
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#define mi_default mi_un.un_gpr.gpr_default
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#define mi_cmdmode mi_un.un_gpr.gpr_cmdmode
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#define mi_phyaddr mi_un.un_mii.mii_phyaddr
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#define mi_gpr_length mi_un.un_mii.mii_gpr_length
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#define mi_gpr_offset mi_un.un_mii.mii_gpr_offset
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#define mi_reset_length mi_un.un_mii.mii_reset_length
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#define mi_reset_offset mi_un.un_mii.mii_reset_offset
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#define mi_capabilities mi_un.un_mii.mii_capabilities
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#define mi_advertisement mi_un.un_mii.mii_advertisement
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#define mi_full_duplex mi_un.un_mii.mii_full_duplex
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#define mi_tx_threshold mi_un.un_mii.mii_tx_threshold
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#define mi_mediamask mi_un.un_mii.mii_mediamask
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#define mi_mii_interrupt mi_un.un_mii.mii_interrupt
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#define mi_phyid mi_un.un_mii.mii_phyid
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#define TULIP_MEDIAINFO_SIA_INIT(sc, mi, chipid, media) do { \
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(mi)->mi_type = TULIP_MEDIAINFO_SIA; \
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sc->tulip_mediums[TULIP_MEDIA_ ## media] = (mi); \
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(mi)->mi_sia_connectivity = TULIP_ ## chipid ## _SIACONN_ ## media; \
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(mi)->mi_sia_tx_rx = TULIP_ ## chipid ## _SIATXRX_ ## media; \
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(mi)->mi_sia_general = TULIP_ ## chipid ## _SIAGEN_ ## media; \
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} while (0)
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#define TULIP_MEDIAINFO_ADD_CAPABILITY(sc, mi, media) do { \
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if ((sc)->tulip_mediums[TULIP_MEDIA_ ## media] == NULL \
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&& ((mi)->mi_capabilities & PHYSTS_ ## media)) { \
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(sc)->tulip_mediums[TULIP_MEDIA_ ## media] = (mi); \
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(mi)->mi_mediamask |= TULIP_BIT(TULIP_MEDIA_ ## media); \
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} \
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} while (0)
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#define TULIP_MII_NOPHY 32
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/*
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* Some boards need to treated specially. The following enumeration
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* identifies the cards with quirks (or those we just want to single
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* out for special merit or scorn).
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*/
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typedef enum {
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TULIP_21040_GENERIC, /* Generic 21040 (works with most any board) */
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TULIP_21140_ISV, /* Digital Semicondutor 21140 ISV SROM Format */
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TULIP_21142_ISV, /* Digital Semicondutor 21142 ISV SROM Format */
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TULIP_21143_ISV, /* Digital Semicondutor 21143 ISV SROM Format */
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TULIP_21140_DEC_EB, /* Digital Semicondutor 21140 Evaluation Board */
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TULIP_21140_MII, /* 21140[A] with MII */
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TULIP_21140_DEC_DE500, /* Digital DE500-?? 10/100 */
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TULIP_21140_SMC_9332, /* SMC 9332 */
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TULIP_21140_COGENT_EM100, /* Cogent EM100 100 only */
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TULIP_21140_ZNYX_ZX34X, /* ZNYX ZX342 10/100 */
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TULIP_21140_ASANTE, /* AsanteFast 10/100 */
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TULIP_21140_EN1207, /* Accton EN2107 10/100 BNC */
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TULIP_21041_GENERIC /* Generic 21041 card */
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} tulip_board_t;
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typedef enum {
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TULIP_MEDIAPOLL_TIMER, /* 100ms timer fired */
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TULIP_MEDIAPOLL_FASTTIMER, /* <100ms timer fired */
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TULIP_MEDIAPOLL_LINKFAIL, /* called from interrupt routine */
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TULIP_MEDIAPOLL_LINKPASS, /* called from interrupt routine */
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TULIP_MEDIAPOLL_START, /* start a media probe (called from reset) */
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TULIP_MEDIAPOLL_TXPROBE_OK, /* txprobe succeeded */
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TULIP_MEDIAPOLL_TXPROBE_FAILED, /* txprobe failed */
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TULIP_MEDIAPOLL_MAX
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} tulip_mediapoll_event_t;
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typedef enum {
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TULIP_LINK_DOWN, /* Link is down */
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TULIP_LINK_UP, /* link is ok */
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TULIP_LINK_UNKNOWN /* we can't tell either way */
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} tulip_link_status_t;
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/*
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* This data structure is used to abstract out the quirks.
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* media_probe = tries to determine the media type.
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* media_select = enables the current media (or autosenses)
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* media_poll = autosenses media
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* media_preset = 21140, etal requires bit to set before the
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* the software reset; hence pre-set. Should be
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* pre-reset but that's ugly.
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*/
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typedef struct {
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tulip_board_t bd_type;
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void (*bd_media_probe)(tulip_softc_t * const sc);
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void (*bd_media_select)(tulip_softc_t * const sc);
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void (*bd_media_poll)(tulip_softc_t * const sc, tulip_mediapoll_event_t event);
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void (*bd_media_preset)(tulip_softc_t * const sc);
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} tulip_boardsw_t;
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/*
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* The next few declarations are for MII/PHY based board.
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*
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* The first enumeration identifies a superset of various datums
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* that can be obtained from various PHY chips. Not all PHYs will
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* support all datums.
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* The modedata structure indicates what register contains
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* a datum, what mask is applied the register contents, and what the
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* result should be.
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* The attr structure records information about a supported PHY.
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* The phy structure records information about a PHY instance.
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*/
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typedef enum {
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PHY_MODE_10T,
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PHY_MODE_100TX,
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PHY_MODE_100T4,
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PHY_MODE_FULLDUPLEX,
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PHY_MODE_MAX
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} tulip_phy_mode_t;
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typedef struct {
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u_int16_t pm_regno;
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u_int16_t pm_mask;
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u_int16_t pm_value;
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} tulip_phy_modedata_t;
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typedef struct {
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u_int32_t attr_id;
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u_int16_t attr_flags;
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|
#define PHY_NEED_HARD_RESET 0x0001
|
|
#define PHY_DUAL_CYCLE_TA 0x0002
|
|
tulip_phy_modedata_t attr_modes[PHY_MODE_MAX];
|
|
#ifdef TULIP_DEBUG
|
|
const char *attr_name;
|
|
#endif
|
|
} tulip_phy_attr_t;
|
|
|
|
/*
|
|
* Various probe states used when trying to autosense the media.
|
|
*/
|
|
|
|
typedef enum {
|
|
TULIP_PROBE_INACTIVE,
|
|
TULIP_PROBE_PHYRESET,
|
|
TULIP_PROBE_PHYAUTONEG,
|
|
TULIP_PROBE_GPRTEST,
|
|
TULIP_PROBE_MEDIATEST,
|
|
TULIP_PROBE_FAILED
|
|
} tulip_probe_state_t;
|
|
|
|
typedef struct {
|
|
/*
|
|
* Transmit Statistics
|
|
*/
|
|
u_int32_t dot3StatsSingleCollisionFrames;
|
|
u_int32_t dot3StatsMultipleCollisionFrames;
|
|
u_int32_t dot3StatsSQETestErrors;
|
|
u_int32_t dot3StatsDeferredTransmissions;
|
|
u_int32_t dot3StatsLateCollisions;
|
|
u_int32_t dot3StatsExcessiveCollisions;
|
|
u_int32_t dot3StatsCarrierSenseErrors;
|
|
u_int32_t dot3StatsInternalMacTransmitErrors;
|
|
u_int32_t dot3StatsInternalTransmitUnderflows; /* not in rfc1650! */
|
|
u_int32_t dot3StatsInternalTransmitBabbles; /* not in rfc1650! */
|
|
/*
|
|
* Receive Statistics
|
|
*/
|
|
u_int32_t dot3StatsMissedFrames; /* not in rfc1650! */
|
|
u_int32_t dot3StatsAlignmentErrors;
|
|
u_int32_t dot3StatsFCSErrors;
|
|
u_int32_t dot3StatsFrameTooLongs;
|
|
u_int32_t dot3StatsInternalMacReceiveErrors;
|
|
} tulip_dot3_stats_t;
|
|
|
|
/*
|
|
* Now to important stuff. This is softc structure (where does softc
|
|
* come from??? No idea) for the tulip device.
|
|
*/
|
|
struct _tulip_softc_t {
|
|
struct ifmedia tulip_ifmedia;
|
|
#if defined(TULIP_BUS_DMA)
|
|
bus_dma_tag_t tulip_dmatag; /* bus DMA tag */
|
|
#if !defined(TULIP_BUS_DMA_NOTX)
|
|
bus_dmamap_t tulip_setupmap;
|
|
bus_dmamap_t tulip_txdescmap;
|
|
bus_dmamap_t tulip_txmaps[TULIP_TXDESCS];
|
|
unsigned tulip_txmaps_free;
|
|
#endif
|
|
#if !defined(TULIP_BUS_DMA_NORX)
|
|
bus_dmamap_t tulip_rxdescmap;
|
|
bus_dmamap_t tulip_rxmaps[TULIP_RXDESCS];
|
|
unsigned tulip_rxmaps_free;
|
|
#endif
|
|
#endif
|
|
struct arpcom tulip_ac;
|
|
tulip_regfile_t tulip_csrs;
|
|
u_int32_t tulip_flags;
|
|
#define TULIP_WANTSETUP 0x00000001
|
|
#define TULIP_WANTHASHPERFECT 0x00000002
|
|
#define TULIP_WANTHASHONLY 0x00000004
|
|
#define TULIP_DOINGSETUP 0x00000008
|
|
#define TULIP_PRINTMEDIA 0x00000010
|
|
#define TULIP_TXPROBE_ACTIVE 0x00000020
|
|
#define TULIP_ALLMULTI 0x00000040
|
|
#define TULIP_WANTRXACT 0x00000080
|
|
#define TULIP_RXACT 0x00000100
|
|
#define TULIP_INRESET 0x00000200
|
|
#define TULIP_NEEDRESET 0x00000400
|
|
#define TULIP_SQETEST 0x00000800
|
|
#define TULIP_xxxxxx0 0x00001000
|
|
#define TULIP_xxxxxx1 0x00002000
|
|
#define TULIP_WANTTXSTART 0x00004000
|
|
#define TULIP_NEWTXTHRESH 0x00008000
|
|
#define TULIP_NOAUTOSENSE 0x00010000
|
|
#define TULIP_PRINTLINKUP 0x00020000
|
|
#define TULIP_LINKUP 0x00040000
|
|
#define TULIP_RXBUFSLOW 0x00080000
|
|
#define TULIP_NOMESSAGES 0x00100000
|
|
#define TULIP_SYSTEMERROR 0x00200000
|
|
#define TULIP_TIMEOUTPENDING 0x00400000
|
|
#define TULIP_xxxxxx2 0x00800000
|
|
#define TULIP_TRYNWAY 0x01000000
|
|
#define TULIP_DIDNWAY 0x02000000
|
|
#define TULIP_RXIGNORE 0x04000000
|
|
#define TULIP_PROBE1STPASS 0x08000000
|
|
#define TULIP_DEVICEPROBE 0x10000000
|
|
#define TULIP_PROMISC 0x20000000
|
|
#define TULIP_HASHONLY 0x40000000
|
|
#define TULIP_xxxxxx3 0x80000000
|
|
/* only 4 bits left! */
|
|
u_int32_t tulip_features; /* static bits indicating features of chip */
|
|
#define TULIP_HAVE_GPR 0x00000001 /* have gp register (140[A]) */
|
|
#define TULIP_HAVE_RXBADOVRFLW 0x00000002 /* RX corrupts on overflow */
|
|
#define TULIP_HAVE_POWERMGMT 0x00000004 /* Snooze/sleep modes */
|
|
#define TULIP_HAVE_MII 0x00000008 /* Some medium on MII */
|
|
#define TULIP_HAVE_SIANWAY 0x00000010 /* SIA does NWAY */
|
|
#define TULIP_HAVE_DUALSENSE 0x00000020 /* SIA senses both AUI & TP */
|
|
#define TULIP_HAVE_SIAGP 0x00000040 /* SIA has a GP port */
|
|
#define TULIP_HAVE_BROKEN_HASH 0x00000080 /* Broken Multicast Hash */
|
|
#define TULIP_HAVE_ISVSROM 0x00000100 /* uses ISV SROM Format */
|
|
#define TULIP_HAVE_BASEROM 0x00000200 /* Board ROM can be cloned */
|
|
#define TULIP_HAVE_SLAVEDROM 0x00000400 /* Board ROM cloned */
|
|
#define TULIP_HAVE_SLAVEDINTR 0x00000800 /* Board slaved interrupt */
|
|
#define TULIP_HAVE_SHAREDINTR 0x00001000 /* Board shares interrupts */
|
|
#define TULIP_HAVE_OKROM 0x00002000 /* ROM was recognized */
|
|
#define TULIP_HAVE_NOMEDIA 0x00004000 /* did not detect any media */
|
|
#define TULIP_HAVE_STOREFWD 0x00008000 /* have CMD_STOREFWD */
|
|
#define TULIP_HAVE_SIA100 0x00010000 /* has LS100 in SIA status */
|
|
#define TULIP_HAVE_OKSROM 0x00020000 /* SROM CRC is OK */
|
|
u_int32_t tulip_intrmask; /* our copy of csr_intr */
|
|
u_int32_t tulip_cmdmode; /* our copy of csr_cmdmode */
|
|
u_int32_t tulip_last_system_error : 3; /* last system error (only value is TULIP_SYSTEMERROR is also set) */
|
|
u_int32_t tulip_txtimer : 2; /* transmission timer */
|
|
u_int32_t tulip_system_errors; /* number of system errors encountered */
|
|
u_int32_t tulip_statusbits; /* status bits from CSR5 that may need to be printed */
|
|
|
|
tulip_media_info_t *tulip_mediums[TULIP_MEDIA_MAX]; /* indexes into mediainfo */
|
|
tulip_media_t tulip_media; /* current media type */
|
|
u_int32_t tulip_abilities; /* remote system's abiltities (as defined in IEEE 802.3u) */
|
|
|
|
u_int8_t tulip_revinfo; /* revision of chip */
|
|
u_int8_t tulip_phyaddr; /* 0..31 -- address of current phy */
|
|
u_int8_t tulip_gpinit; /* active pins on 21140 */
|
|
u_int8_t tulip_gpdata; /* default gpdata for 21140 */
|
|
|
|
struct {
|
|
u_int8_t probe_count; /* count of probe operations */
|
|
int32_t probe_timeout; /* time in ms of probe timeout */
|
|
tulip_probe_state_t probe_state; /* current media probe state */
|
|
tulip_media_t probe_media; /* current media being probed */
|
|
u_int32_t probe_mediamask; /* medias checked */
|
|
u_int32_t probe_passes; /* times autosense failed */
|
|
u_int32_t probe_txprobes; /* txprobes attempted */
|
|
} tulip_probe;
|
|
#define tulip_probe_count tulip_probe.probe_count
|
|
#define tulip_probe_timeout tulip_probe.probe_timeout
|
|
#define tulip_probe_state tulip_probe.probe_state
|
|
#define tulip_probe_media tulip_probe.probe_media
|
|
#define tulip_probe_mediamask tulip_probe.probe_mediamask
|
|
#define tulip_probe_passes tulip_probe.probe_passes
|
|
|
|
tulip_chipid_t tulip_chipid; /* type of chip we are using */
|
|
const tulip_boardsw_t *tulip_boardsw; /* board/chip characteristics */
|
|
tulip_softc_t *tulip_slaves; /* slaved devices (ZX3xx) */
|
|
#if defined(TULIP_DEBUG)
|
|
/*
|
|
* Debugging/Statistical information
|
|
*/
|
|
struct {
|
|
tulip_media_t dbg_last_media;
|
|
u_int32_t dbg_intrs;
|
|
u_int32_t dbg_media_probes;
|
|
u_int32_t dbg_txprobe_nocarr;
|
|
u_int32_t dbg_txprobe_exccoll;
|
|
u_int32_t dbg_link_downed;
|
|
u_int32_t dbg_link_suspected;
|
|
u_int32_t dbg_link_intrs;
|
|
u_int32_t dbg_link_pollintrs;
|
|
u_int32_t dbg_link_failures;
|
|
u_int32_t dbg_nway_starts;
|
|
u_int32_t dbg_nway_failures;
|
|
u_int16_t dbg_phyregs[32][4];
|
|
u_int32_t dbg_rxlowbufs;
|
|
u_int32_t dbg_rxintrs;
|
|
u_int32_t dbg_last_rxintrs;
|
|
u_int32_t dbg_high_rxintrs_hz;
|
|
u_int32_t dbg_no_txmaps;
|
|
u_int32_t dbg_txput_finishes[8];
|
|
u_int32_t dbg_txprobes_ok[TULIP_MEDIA_MAX];
|
|
u_int32_t dbg_txprobes_failed[TULIP_MEDIA_MAX];
|
|
u_int32_t dbg_events[TULIP_MEDIAPOLL_MAX];
|
|
u_int32_t dbg_rxpktsperintr[TULIP_RXDESCS];
|
|
} tulip_dbg;
|
|
#endif
|
|
#if defined(TULIP_PERFSTATS)
|
|
#define TULIP_PERF_CURRENT 0
|
|
#define TULIP_PERF_PREVIOUS 1
|
|
#define TULIP_PERF_TOTAL 2
|
|
#define TULIP_PERF_MAX 3
|
|
struct tulip_perfstats {
|
|
u_quad_t perf_intr_cycles;
|
|
u_quad_t perf_ifstart_cycles;
|
|
u_quad_t perf_ifstart_one_cycles;
|
|
u_quad_t perf_ifioctl_cycles;
|
|
u_quad_t perf_ifwatchdog_cycles;
|
|
u_quad_t perf_timeout_cycles;
|
|
u_quad_t perf_txput_cycles;
|
|
u_quad_t perf_txintr_cycles;
|
|
u_quad_t perf_rxintr_cycles;
|
|
u_quad_t perf_rxget_cycles;
|
|
unsigned perf_intr;
|
|
unsigned perf_ifstart;
|
|
unsigned perf_ifstart_one;
|
|
unsigned perf_ifioctl;
|
|
unsigned perf_ifwatchdog;
|
|
unsigned perf_timeout;
|
|
unsigned perf_txput;
|
|
unsigned perf_txintr;
|
|
unsigned perf_rxintr;
|
|
unsigned perf_rxget;
|
|
} tulip_perfstats[TULIP_PERF_MAX];
|
|
#define tulip_curperfstats tulip_perfstats[TULIP_PERF_CURRENT]
|
|
#endif
|
|
struct ifqueue tulip_txq;
|
|
struct ifqueue tulip_rxq;
|
|
tulip_dot3_stats_t tulip_dot3stats;
|
|
tulip_ringinfo_t tulip_rxinfo;
|
|
tulip_ringinfo_t tulip_txinfo;
|
|
tulip_media_info_t tulip_mediainfo[10];
|
|
/*
|
|
* The setup buffers for sending the setup frame to the chip.
|
|
* one is the one being sent while the other is the one being
|
|
* filled.
|
|
*/
|
|
u_int32_t tulip_setupbuf[192/sizeof(u_int32_t)];
|
|
u_int32_t tulip_setupdata[192/sizeof(u_int32_t)];
|
|
char tulip_boardid[16]; /* buffer for board ID */
|
|
u_int8_t tulip_rombuf[128];
|
|
u_int8_t tulip_pci_busno; /* needed for multiport boards */
|
|
u_int8_t tulip_pci_devno; /* needed for multiport boards */
|
|
u_int8_t tulip_connidx;
|
|
tulip_srom_connection_t tulip_conntype;
|
|
tulip_desc_t *tulip_rxdescs;
|
|
tulip_desc_t *tulip_txdescs;
|
|
};
|
|
|
|
#define TULIP_DO_AUTOSENSE(sc) (IFM_SUBTYPE((sc)->tulip_ifmedia.ifm_media) == IFM_AUTO)
|
|
|
|
|
|
#if defined(TULIP_HDR_DATA)
|
|
static const char * const tulip_chipdescs[] = {
|
|
"21040 [10Mb/s]",
|
|
"21041 [10Mb/s]",
|
|
"21140 [10-100Mb/s]",
|
|
"21140A [10-100Mb/s]",
|
|
"21142 [10-100Mb/s]",
|
|
"21143 [10-100Mb/s]",
|
|
};
|
|
|
|
static const char * const tulip_mediums[] = {
|
|
"unknown", /* TULIP_MEDIA_UNKNOWN */
|
|
"10baseT", /* TULIP_MEDIA_10BASET */
|
|
"Full Duplex 10baseT", /* TULIP_MEDIA_10BASET_FD */
|
|
"BNC", /* TULIP_MEDIA_BNC */
|
|
"AUI", /* TULIP_MEDIA_AUI */
|
|
"External SIA", /* TULIP_MEDIA_EXTSIA */
|
|
"AUI/BNC", /* TULIP_MEDIA_AUIBNC */
|
|
"100baseTX", /* TULIP_MEDIA_100BASET */
|
|
"Full Duplex 100baseTX", /* TULIP_MEDIA_100BASET_FD */
|
|
"100baseT4", /* TULIP_MEDIA_100BASET4 */
|
|
"100baseFX", /* TULIP_MEDIA_100BASEFX */
|
|
"Full Duplex 100baseFX", /* TULIP_MEDIA_100BASEFX_FD */
|
|
};
|
|
|
|
static const int tulip_media_to_ifmedia[] = {
|
|
IFM_ETHER | IFM_NONE, /* TULIP_MEDIA_UNKNOWN */
|
|
IFM_ETHER | IFM_10_T, /* TULIP_MEDIA_10BASET */
|
|
IFM_ETHER | IFM_10_T | IFM_FDX, /* TULIP_MEDIA_10BASET_FD */
|
|
IFM_ETHER | IFM_10_2, /* TULIP_MEDIA_BNC */
|
|
IFM_ETHER | IFM_10_5, /* TULIP_MEDIA_AUI */
|
|
IFM_ETHER | IFM_MANUAL, /* TULIP_MEDIA_EXTSIA */
|
|
IFM_ETHER | IFM_10_5, /* TULIP_MEDIA_AUIBNC */
|
|
IFM_ETHER | IFM_100_TX, /* TULIP_MEDIA_100BASET */
|
|
IFM_ETHER | IFM_100_TX | IFM_FDX, /* TULIP_MEDIA_100BASET_FD */
|
|
IFM_ETHER | IFM_100_T4, /* TULIP_MEDIA_100BASET4 */
|
|
IFM_ETHER | IFM_100_FX, /* TULIP_MEDIA_100BASEFX */
|
|
IFM_ETHER | IFM_100_FX | IFM_FDX, /* TULIP_MEDIA_100BASEFX_FD */
|
|
};
|
|
|
|
static const char * const tulip_system_errors[] = {
|
|
"parity error",
|
|
"master abort",
|
|
"target abort",
|
|
"reserved #3",
|
|
"reserved #4",
|
|
"reserved #5",
|
|
"reserved #6",
|
|
"reserved #7",
|
|
};
|
|
|
|
static const char * const tulip_status_bits[] = {
|
|
NULL,
|
|
"transmit process stopped",
|
|
NULL,
|
|
"transmit jabber timeout",
|
|
|
|
NULL,
|
|
"transmit underflow",
|
|
NULL,
|
|
"receive underflow",
|
|
|
|
"receive process stopped",
|
|
"receive watchdog timeout",
|
|
NULL,
|
|
NULL,
|
|
|
|
"link failure",
|
|
NULL,
|
|
NULL,
|
|
};
|
|
|
|
static const struct {
|
|
tulip_srom_connection_t sc_type;
|
|
tulip_media_t sc_media;
|
|
u_int32_t sc_attrs;
|
|
} tulip_srom_conninfo[] = {
|
|
{ TULIP_SROM_CONNTYPE_10BASET, TULIP_MEDIA_10BASET },
|
|
{ TULIP_SROM_CONNTYPE_BNC, TULIP_MEDIA_BNC },
|
|
{ TULIP_SROM_CONNTYPE_AUI, TULIP_MEDIA_AUI },
|
|
{ TULIP_SROM_CONNTYPE_100BASETX, TULIP_MEDIA_100BASETX },
|
|
{ TULIP_SROM_CONNTYPE_100BASET4, TULIP_MEDIA_100BASET4 },
|
|
{ TULIP_SROM_CONNTYPE_100BASEFX, TULIP_MEDIA_100BASEFX },
|
|
{ TULIP_SROM_CONNTYPE_MII_10BASET, TULIP_MEDIA_10BASET,
|
|
TULIP_SROM_ATTR_MII },
|
|
{ TULIP_SROM_CONNTYPE_MII_100BASETX, TULIP_MEDIA_100BASETX,
|
|
TULIP_SROM_ATTR_MII },
|
|
{ TULIP_SROM_CONNTYPE_MII_100BASET4, TULIP_MEDIA_100BASET4,
|
|
TULIP_SROM_ATTR_MII },
|
|
{ TULIP_SROM_CONNTYPE_MII_100BASEFX, TULIP_MEDIA_100BASEFX,
|
|
TULIP_SROM_ATTR_MII },
|
|
{ TULIP_SROM_CONNTYPE_10BASET_NWAY, TULIP_MEDIA_10BASET,
|
|
TULIP_SROM_ATTR_NWAY },
|
|
{ TULIP_SROM_CONNTYPE_10BASET_FD, TULIP_MEDIA_10BASET_FD },
|
|
{ TULIP_SROM_CONNTYPE_MII_10BASET_FD, TULIP_MEDIA_10BASET_FD,
|
|
TULIP_SROM_ATTR_MII },
|
|
{ TULIP_SROM_CONNTYPE_100BASETX_FD, TULIP_MEDIA_100BASETX_FD },
|
|
{ TULIP_SROM_CONNTYPE_MII_100BASETX_FD, TULIP_MEDIA_100BASETX_FD,
|
|
TULIP_SROM_ATTR_MII },
|
|
{ TULIP_SROM_CONNTYPE_10BASET_NOLINKPASS, TULIP_MEDIA_10BASET,
|
|
TULIP_SROM_ATTR_NOLINKPASS },
|
|
{ TULIP_SROM_CONNTYPE_AUTOSENSE, TULIP_MEDIA_UNKNOWN,
|
|
TULIP_SROM_ATTR_AUTOSENSE },
|
|
{ TULIP_SROM_CONNTYPE_AUTOSENSE_POWERUP, TULIP_MEDIA_UNKNOWN,
|
|
TULIP_SROM_ATTR_AUTOSENSE|TULIP_SROM_ATTR_POWERUP },
|
|
{ TULIP_SROM_CONNTYPE_AUTOSENSE_NWAY, TULIP_MEDIA_UNKNOWN,
|
|
TULIP_SROM_ATTR_AUTOSENSE|TULIP_SROM_ATTR_NWAY },
|
|
{ TULIP_SROM_CONNTYPE_NOT_USED, TULIP_MEDIA_UNKNOWN }
|
|
};
|
|
#define TULIP_SROM_LASTCONNIDX \
|
|
(sizeof(tulip_srom_conninfo)/sizeof(tulip_srom_conninfo[0]) - 1)
|
|
|
|
static const struct {
|
|
tulip_media_t sm_type;
|
|
tulip_srom_media_t sm_srom_type;
|
|
} tulip_srom_mediums[] = {
|
|
{ TULIP_MEDIA_100BASEFX_FD, TULIP_SROM_MEDIA_100BASEFX_FD },
|
|
{ TULIP_MEDIA_100BASEFX, TULIP_SROM_MEDIA_100BASEFX },
|
|
{ TULIP_MEDIA_100BASET4, TULIP_SROM_MEDIA_100BASET4 },
|
|
{ TULIP_MEDIA_100BASETX_FD, TULIP_SROM_MEDIA_100BASETX_FD },
|
|
{ TULIP_MEDIA_100BASETX, TULIP_SROM_MEDIA_100BASETX },
|
|
{ TULIP_MEDIA_10BASET_FD, TULIP_SROM_MEDIA_10BASET_FD },
|
|
{ TULIP_MEDIA_AUI, TULIP_SROM_MEDIA_AUI },
|
|
{ TULIP_MEDIA_BNC, TULIP_SROM_MEDIA_BNC },
|
|
{ TULIP_MEDIA_10BASET, TULIP_SROM_MEDIA_10BASET },
|
|
{ TULIP_MEDIA_UNKNOWN }
|
|
};
|
|
#endif /* TULIP_HDR_DATA */
|
|
|
|
/*
|
|
* This driver supports a maximum of 32 tulip boards.
|
|
* This should be enough for the forseeable future.
|
|
*/
|
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#define TULIP_MAX_DEVICES 32
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#if defined(TULIP_USE_SOFTINTR) && defined(TULIP_HDR_DATA)
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static u_int32_t tulip_softintr_mask;
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static int tulip_softintr_last_unit;
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static int tulip_softintr_max_unit;
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static void tulip_softintr(void);
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#endif
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#if defined(TULIP_BUS_DMA) && !defined(TULIP_BUS_DMA_NORX)
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#define TULIP_RXDESC_PRESYNC(sc, di, s) \
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bus_dmamap_sync((sc)->tulip_dmatag, (sc)->tulip_rxdescmap, \
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(caddr_t) di - (caddr_t) (sc)->tulip_rxdescs, \
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(s), BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE)
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#define TULIP_RXDESC_POSTSYNC(sc, di, s) \
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bus_dmamap_sync((sc)->tulip_dmatag, (sc)->tulip_rxdescmap, \
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(caddr_t) di - (caddr_t) (sc)->tulip_rxdescs, \
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(s), BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE)
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#define TULIP_RXMAP_PRESYNC(sc, map) \
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bus_dmamap_sync((sc)->tulip_dmatag, (map), 0, (map)->dm_mapsize, \
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BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE)
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#define TULIP_RXMAP_POSTSYNC(sc, map) \
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bus_dmamap_sync((sc)->tulip_dmatag, (map), 0, (map)->dm_mapsize, \
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BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE)
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#define TULIP_RXMAP_CREATE(sc, mapp) \
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bus_dmamap_create((sc)->tulip_dmatag, TULIP_RX_BUFLEN, 2, \
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TULIP_DATA_PER_DESC, 0, \
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BUS_DMA_NOWAIT|BUS_DMA_ALLOCNOW, (mapp))
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#else
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#ifdef __alpha__
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#define TULIP_RXDESC_PRESYNC(sc, di, s) alpha_mb()
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#define TULIP_RXDESC_POSTSYNC(sc, di, s) alpha_mb()
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#define TULIP_RXMAP_PRESYNC(sc, map) alpha_mb()
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#define TULIP_RXMAP_POSTSYNC(sc, map) alpha_mb()
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#else
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#define TULIP_RXDESC_PRESYNC(sc, di, s) do { } while (0)
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#define TULIP_RXDESC_POSTSYNC(sc, di, s) do { } while (0)
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#define TULIP_RXMAP_PRESYNC(sc, map) do { } while (0)
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#define TULIP_RXMAP_POSTSYNC(sc, map) do { } while (0)
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#endif
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#define TULIP_RXMAP_CREATE(sc, mapp) do { } while (0)
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#endif
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#if defined(TULIP_BUS_DMA) && !defined(TULIP_BUS_DMA_NOTX)
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#define TULIP_TXDESC_PRESYNC(sc, di, s) \
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bus_dmamap_sync((sc)->tulip_dmatag, (sc)->tulip_txdescmap, \
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(caddr_t) di - (caddr_t) (sc)->tulip_txdescs, \
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(s), BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE)
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#define TULIP_TXDESC_POSTSYNC(sc, di, s) \
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bus_dmamap_sync((sc)->tulip_dmatag, (sc)->tulip_txdescmap, \
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(caddr_t) di - (caddr_t) (sc)->tulip_txdescs, \
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(s), BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE)
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#define TULIP_TXMAP_PRESYNC(sc, map) \
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bus_dmamap_sync((sc)->tulip_dmatag, (map), 0, (map)->dm_mapsize, \
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BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE)
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#define TULIP_TXMAP_POSTSYNC(sc, map) \
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bus_dmamap_sync((sc)->tulip_dmatag, (map), 0, (map)->dm_mapsize, \
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BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE)
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#define TULIP_TXMAP_CREATE(sc, mapp) \
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bus_dmamap_create((sc)->tulip_dmatag, TULIP_DATA_PER_DESC, \
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TULIP_MAX_TXSEG, TULIP_DATA_PER_DESC, \
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0, BUS_DMA_NOWAIT, (mapp))
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#else
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#ifdef __alpha__
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#define TULIP_TXDESC_PRESYNC(sc, di, s) alpha_mb()
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#define TULIP_TXDESC_POSTSYNC(sc, di, s) alpha_mb()
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#define TULIP_TXMAP_PRESYNC(sc, map) alpha_mb()
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#define TULIP_TXMAP_POSTSYNC(sc, map) alpha_mb()
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#else
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#define TULIP_TXDESC_PRESYNC(sc, di, s) do { } while (0)
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#define TULIP_TXDESC_POSTSYNC(sc, di, s) do { } while (0)
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#define TULIP_TXMAP_PRESYNC(sc, map) do { } while (0)
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#define TULIP_TXMAP_POSTSYNC(sc, map) do { } while (0)
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#endif
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#define TULIP_TXMAP_CREATE(sc, mapp) do { } while (0)
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#endif
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#ifdef notyet
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#define SIOCGADDRROM _IOW('i', 240, struct ifreq) /* get 128 bytes of ROM */
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#define SIOCGCHIPID _IOWR('i', 241, struct ifreq) /* get chipid */
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#endif
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#if defined(TULIP_HDR_DATA)
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static tulip_softc_t *tulips[TULIP_MAX_DEVICES];
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#endif
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#if defined(TULIP_USE_SOFTINTR)
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NETISR_SET(NETISR_DE, tulip_softintr);
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#endif
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#define loudprintf if (bootverbose) printf
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#ifndef tulip_if
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#define tulip_if tulip_ac.ac_if
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#endif
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#ifndef tulip_unit
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#define tulip_unit tulip_if.if_unit
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#endif
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#define tulip_name tulip_if.if_name
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#ifndef tulip_enaddr
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#define tulip_enaddr tulip_ac.ac_enaddr
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#endif
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#if !defined(TULIP_KVATOPHYS) && (!defined(TULIP_BUS_DMA) || defined(TULIP_BUS_DMA_NORX) || defined(TULIP_BUS_DMA_NOTX))
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#if defined(__alpha__)
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/* XXX XXX NEED REAL DMA MAPPING SUPPORT XXX XXX */
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#define vtobus(va) alpha_XXX_dmamap((vm_offset_t)va)
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#else
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#define vtobus(va) vtophys(va)
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#endif
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#define TULIP_KVATOPHYS(sc, va) vtobus(va)
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#endif
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#if defined(TULIP_PERFSTATS)
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#define TULIP_PERFMERGE(sc, member) \
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do { (sc)->tulip_perfstats[TULIP_PERF_TOTAL].member \
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+= (sc)->tulip_perfstats[TULIP_PERF_CURRENT].member; \
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(sc)->tulip_perfstats[TULIP_PERF_PREVIOUS].member \
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= (sc)->tulip_perfstats[TULIP_PERF_CURRENT].member; \
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(sc)->tulip_perfstats[TULIP_PERF_CURRENT].member = 0; } while (0)
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#define TULIP_PERFSTART(name) const tulip_cycle_t perfstart_ ## name = TULIP_PERFREAD();
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#define TULIP_PERFEND(name) do { \
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(sc)->tulip_curperfstats.perf_ ## name ## _cycles += TULIP_PERFDIFF(perfstart_ ## name, TULIP_PERFREAD()); \
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(sc)->tulip_curperfstats.perf_ ## name ++; \
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} while (0)
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#if defined(__i386__)
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typedef u_quad_t tulip_cycle_t;
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static __inline__ tulip_cycle_t
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TULIP_PERFREAD(
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void)
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{
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tulip_cycle_t x;
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__asm__ volatile (".byte 0x0f, 0x31" : "=A" (x));
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return x;
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}
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#define TULIP_PERFDIFF(s, f) ((f) - (s))
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#elif defined(__alpha__)
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typedef unsigned long tulip_cycle_t;
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static __inline__ tulip_cycle_t
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TULIP_PERFREAD(
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void)
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{
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tulip_cycle_t x;
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__asm__ volatile ("rpcc %0" : "=r" (x));
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return x;
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}
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#define TULIP_PERFDIFF(s, f) ((unsigned int) ((f) - (s)))
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#endif
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#else
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#define TULIP_PERFSTART(name)
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#define TULIP_PERFEND(name) do { } while (0)
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#define TULIP_PERFMERGE(s,n) do { } while (0)
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#endif /* TULIP_PERFSTATS */
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#define TULIP_CRC32_POLY 0xEDB88320UL /* CRC-32 Poly -- Little Endian */
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#define TULIP_MAX_TXSEG 30
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#define TULIP_ADDREQUAL(a1, a2) \
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(((u_int16_t *)a1)[0] == ((u_int16_t *)a2)[0] \
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&& ((u_int16_t *)a1)[1] == ((u_int16_t *)a2)[1] \
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&& ((u_int16_t *)a1)[2] == ((u_int16_t *)a2)[2])
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#define TULIP_ADDRBRDCST(a1) \
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(((u_int16_t *)a1)[0] == 0xFFFFU \
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&& ((u_int16_t *)a1)[1] == 0xFFFFU \
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&& ((u_int16_t *)a1)[2] == 0xFFFFU)
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#endif /* !defined(_DEVAR_H) */
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