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perl -pi -0777 -e 's/^(\s*)dev->disable(\s*)=\s*(\w+)_disable;\s*nic->poll\s*=\s*(\w+);\s*nic->transmit\s*=\s*(\w+);\s*nic->irq\s*=\s*(\w+);/static struct nic_operations ${3}_operations;\nstatic struct nic_operations ${3}_operations = {\n\t.connect\t= dummy_connect,\n\t.poll\t\t= $4,\n\t.transmit\t= $5,\n\t.irq\t\t= $6,\n\t.disable\t= ${3}_disable,\n};${1}nic->nic_op\t= &${3}_operations;/msg' *.c
676 lines
17 KiB
C
676 lines
17 KiB
C
/**************************************************************************
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ETHERBOOT - BOOTP/TFTP Bootstrap Program
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Author: Martin Renters.
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Date: Mar 22 1995
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This code is based heavily on David Greenman's if_ed.c driver and
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Andres Vega Garcia's if_ep.c driver.
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Copyright (C) 1993-1994, David Greenman, Martin Renters.
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Copyright (C) 1993-1995, Andres Vega Garcia.
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Copyright (C) 1995, Serge Babkin.
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This software may be used, modified, copied, distributed, and sold, in
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both source and binary form provided that the above copyright and these
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terms are retained. Under no circumstances are the authors responsible for
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the proper functioning of this software, nor do the authors assume any
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responsibility for damages incurred with its use.
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3c509 support added by Serge Babkin (babkin@hq.icb.chel.su)
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$Id$
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***************************************************************************/
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/* #define EDEBUG */
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#include "etherboot.h"
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#include "nic.h"
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#include "isa.h"
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#include "timer.h"
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#include "3c509.h"
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static unsigned short eth_nic_base;
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static enum { none, bnc, utp } connector = none; /* for 3C509 */
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#ifdef INCLUDE_3C529
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/*
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* This table and several other pieces of the MCA support
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* code were shamelessly borrowed from the Linux kernel source.
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*
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* MCA support added by Adam Fritzler (mid@auk.cx)
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*
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*/
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struct el3_mca_adapters_struct {
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const char *name;
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int id;
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};
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static struct el3_mca_adapters_struct el3_mca_adapters[] = {
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{ "3Com 3c529 EtherLink III (10base2)", 0x627c },
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{ "3Com 3c529 EtherLink III (10baseT)", 0x627d },
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{ "3Com 3c529 EtherLink III (test mode)", 0x62db },
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{ "3Com 3c529 EtherLink III (TP or coax)", 0x62f6 },
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{ "3Com 3c529 EtherLink III (TP)", 0x62f7 },
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{ NULL, 0 },
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};
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#endif
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/**************************************************************************
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ETH_RESET - Reset adapter
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***************************************************************************/
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static void t509_reset(struct nic *nic)
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{
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int i;
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/***********************************************************
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Reset 3Com 509 card
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*************************************************************/
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/* stop card */
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outw(RX_DISABLE, BASE + EP_COMMAND);
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outw(RX_DISCARD_TOP_PACK, BASE + EP_COMMAND);
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while (inw(BASE + EP_STATUS) & S_COMMAND_IN_PROGRESS)
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;
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outw(TX_DISABLE, BASE + EP_COMMAND);
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outw(STOP_TRANSCEIVER, BASE + EP_COMMAND);
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udelay(1000);
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outw(RX_RESET, BASE + EP_COMMAND);
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outw(TX_RESET, BASE + EP_COMMAND);
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outw(C_INTR_LATCH, BASE + EP_COMMAND);
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outw(SET_RD_0_MASK, BASE + EP_COMMAND);
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outw(SET_INTR_MASK, BASE + EP_COMMAND);
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outw(SET_RX_FILTER, BASE + EP_COMMAND);
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/*
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* initialize card
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*/
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while (inw(BASE + EP_STATUS) & S_COMMAND_IN_PROGRESS)
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;
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GO_WINDOW(0);
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/* Disable the card */
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outw(0, BASE + EP_W0_CONFIG_CTRL);
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/* Configure IRQ to none */
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outw(SET_IRQ(0), BASE + EP_W0_RESOURCE_CFG);
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/* Enable the card */
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outw(ENABLE_DRQ_IRQ, BASE + EP_W0_CONFIG_CTRL);
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GO_WINDOW(2);
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/* Reload the ether_addr. */
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for (i = 0; i < ETH_ALEN; i++)
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outb(nic->node_addr[i], BASE + EP_W2_ADDR_0 + i);
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outw(RX_RESET, BASE + EP_COMMAND);
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outw(TX_RESET, BASE + EP_COMMAND);
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/* Window 1 is operating window */
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GO_WINDOW(1);
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for (i = 0; i < 31; i++)
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inb(BASE + EP_W1_TX_STATUS);
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/* get rid of stray intr's */
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outw(ACK_INTR | 0xff, BASE + EP_COMMAND);
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outw(SET_RD_0_MASK | S_5_INTS, BASE + EP_COMMAND);
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outw(SET_INTR_MASK, BASE + EP_COMMAND);
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outw(SET_RX_FILTER | FIL_GROUP | FIL_INDIVIDUAL | FIL_BRDCST, BASE + EP_COMMAND);
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/* configure BNC */
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if (connector == bnc) {
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outw(START_TRANSCEIVER, BASE + EP_COMMAND);
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udelay(1000);
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}
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/* configure UTP */
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else if (connector == utp) {
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GO_WINDOW(4);
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outw(ENABLE_UTP, BASE + EP_W4_MEDIA_TYPE);
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sleep(2); /* Give time for media to negotiate */
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GO_WINDOW(1);
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}
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/* start transceiver and receiver */
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outw(RX_ENABLE, BASE + EP_COMMAND);
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outw(TX_ENABLE, BASE + EP_COMMAND);
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/* set early threshold for minimal packet length */
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outw(SET_RX_EARLY_THRESH | ETH_ZLEN, BASE + EP_COMMAND);
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outw(SET_TX_START_THRESH | 16, BASE + EP_COMMAND);
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}
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/**************************************************************************
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ETH_TRANSMIT - Transmit a frame
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***************************************************************************/
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static char padmap[] = {
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0, 3, 2, 1};
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static void t509_transmit(
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struct nic *nic,
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const char *d, /* Destination */
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unsigned int t, /* Type */
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unsigned int s, /* size */
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const char *p) /* Packet */
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{
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register unsigned int len;
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int pad;
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int status;
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#ifdef EDEBUG
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printf("{l=%d,t=%hX}",s+ETH_HLEN,t);
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#endif
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/* swap bytes of type */
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t= htons(t);
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len=s+ETH_HLEN; /* actual length of packet */
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pad = padmap[len & 3];
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/*
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* The 3c509 automatically pads short packets to minimum ethernet length,
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* but we drop packets that are too large. Perhaps we should truncate
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* them instead?
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*/
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if (len + pad > ETH_FRAME_LEN) {
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return;
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}
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/* drop acknowledgements */
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while ((status=inb(BASE + EP_W1_TX_STATUS)) & TXS_COMPLETE ) {
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if (status & (TXS_UNDERRUN|TXS_MAX_COLLISION|TXS_STATUS_OVERFLOW)) {
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outw(TX_RESET, BASE + EP_COMMAND);
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outw(TX_ENABLE, BASE + EP_COMMAND);
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}
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outb(0x0, BASE + EP_W1_TX_STATUS);
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}
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while (inw(BASE + EP_W1_FREE_TX) < (unsigned short)len + pad + 4)
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; /* no room in FIFO */
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outw(len, BASE + EP_W1_TX_PIO_WR_1);
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outw(0x0, BASE + EP_W1_TX_PIO_WR_1); /* Second dword meaningless */
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/* write packet */
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outsw(BASE + EP_W1_TX_PIO_WR_1, d, ETH_ALEN/2);
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outsw(BASE + EP_W1_TX_PIO_WR_1, nic->node_addr, ETH_ALEN/2);
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outw(t, BASE + EP_W1_TX_PIO_WR_1);
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outsw(BASE + EP_W1_TX_PIO_WR_1, p, s / 2);
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if (s & 1)
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outb(*(p+s - 1), BASE + EP_W1_TX_PIO_WR_1);
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while (pad--)
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outb(0, BASE + EP_W1_TX_PIO_WR_1); /* Padding */
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/* wait for Tx complete */
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while((inw(BASE + EP_STATUS) & S_COMMAND_IN_PROGRESS) != 0)
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;
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}
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/**************************************************************************
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ETH_POLL - Wait for a frame
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***************************************************************************/
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static int t509_poll(struct nic *nic, int retrieve)
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{
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/* common variables */
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/* variables for 3C509 */
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short status, cst;
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register short rx_fifo;
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cst=inw(BASE + EP_STATUS);
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#ifdef EDEBUG
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if(cst & 0x1FFF)
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printf("-%hX-",cst);
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#endif
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if( (cst & S_RX_COMPLETE)==0 ) {
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/* acknowledge everything */
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outw(ACK_INTR| (cst & S_5_INTS), BASE + EP_COMMAND);
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outw(C_INTR_LATCH, BASE + EP_COMMAND);
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return 0;
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}
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status = inw(BASE + EP_W1_RX_STATUS);
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#ifdef EDEBUG
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printf("*%hX*",status);
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#endif
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if (status & ERR_RX) {
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outw(RX_DISCARD_TOP_PACK, BASE + EP_COMMAND);
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return 0;
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}
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rx_fifo = status & RX_BYTES_MASK;
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if (rx_fifo==0)
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return 0;
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if ( ! retrieve ) return 1;
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/* read packet */
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#ifdef EDEBUG
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printf("[l=%d",rx_fifo);
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#endif
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insw(BASE + EP_W1_RX_PIO_RD_1, nic->packet, rx_fifo / 2);
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if(rx_fifo & 1)
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nic->packet[rx_fifo-1]=inb(BASE + EP_W1_RX_PIO_RD_1);
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nic->packetlen=rx_fifo;
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while(1) {
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status = inw(BASE + EP_W1_RX_STATUS);
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#ifdef EDEBUG
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printf("*%hX*",status);
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#endif
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rx_fifo = status & RX_BYTES_MASK;
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if(rx_fifo>0) {
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insw(BASE + EP_W1_RX_PIO_RD_1, nic->packet+nic->packetlen, rx_fifo / 2);
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if(rx_fifo & 1)
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nic->packet[nic->packetlen+rx_fifo-1]=inb(BASE + EP_W1_RX_PIO_RD_1);
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nic->packetlen+=rx_fifo;
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#ifdef EDEBUG
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printf("+%d",rx_fifo);
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#endif
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}
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if(( status & RX_INCOMPLETE )==0) {
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#ifdef EDEBUG
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printf("=%d",nic->packetlen);
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#endif
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break;
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}
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udelay(1000); /* if incomplete wait 1 ms */
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}
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/* acknowledge reception of packet */
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outw(RX_DISCARD_TOP_PACK, BASE + EP_COMMAND);
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while (inw(BASE + EP_STATUS) & S_COMMAND_IN_PROGRESS)
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;
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#ifdef EDEBUG
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{
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unsigned short type = 0; /* used by EDEBUG */
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type = (nic->packet[12]<<8) | nic->packet[13];
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if(nic->packet[0]+nic->packet[1]+nic->packet[2]+nic->packet[3]+nic->packet[4]+
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nic->packet[5] == 0xFF*ETH_ALEN)
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printf(",t=%hX,b]",type);
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else
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printf(",t=%hX]",type);
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}
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#endif
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return (1);
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}
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/*************************************************************************
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3Com 509 - specific routines
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**************************************************************************/
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static int
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eeprom_rdy(void)
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{
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int i;
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for (i = 0; is_eeprom_busy(IS_BASE) && i < MAX_EEPROMBUSY; i++);
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if (i >= MAX_EEPROMBUSY) {
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/* printf("3c509: eeprom failed to come ready.\n"); */
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/* memory in EPROM is tight */
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/* printf("3c509: eeprom busy.\n"); */
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return (0);
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}
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return (1);
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}
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/*
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* get_e: gets a 16 bits word from the EEPROM. we must have set the window
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* before
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*/
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static int
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get_e(int offset)
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{
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if (!eeprom_rdy())
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return (0xffff);
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outw(EEPROM_CMD_RD | offset, IS_BASE + EP_W0_EEPROM_COMMAND);
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if (!eeprom_rdy())
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return (0xffff);
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return (inw(IS_BASE + EP_W0_EEPROM_DATA));
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}
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static int
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send_ID_sequence(int port)
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{
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int cx, al;
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for (al = 0xff, cx = 0; cx < 255; cx++) {
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outb(al, port);
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al <<= 1;
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if (al & 0x100)
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al ^= 0xcf;
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}
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return (1);
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}
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/*
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* We get eeprom data from the id_port given an offset into the eeprom.
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* Basically; after the ID_sequence is sent to all of the cards; they enter
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* the ID_CMD state where they will accept command requests. 0x80-0xbf loads
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* the eeprom data. We then read the port 16 times and with every read; the
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* cards check for contention (ie: if one card writes a 0 bit and another
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* writes a 1 bit then the host sees a 0. At the end of the cycle; each card
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* compares the data on the bus; if there is a difference then that card goes
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* into ID_WAIT state again). In the meantime; one bit of data is returned in
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* the AX register which is conveniently returned to us by inb(). Hence; we
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* read 16 times getting one bit of data with each read.
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*/
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static int
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get_eeprom_data(int id_port, int offset)
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{
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int i, data = 0;
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outb(0x80 + offset, id_port);
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/* Do we really need this wait? Won't be noticeable anyway */
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udelay(10000);
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for (i = 0; i < 16; i++)
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data = (data << 1) | (inw(id_port) & 1);
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return (data);
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}
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static void __t509_disable(void)
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{
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outb(0xc0, EP_ID_PORT);
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}
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static void t509_disable ( struct nic *nic ) {
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/* reset and disable merge */
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t509_reset(nic);
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__t509_disable();
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}
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static void t509_irq(struct nic *nic __unused, irq_action_t action __unused)
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{
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switch ( action ) {
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case DISABLE :
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break;
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case ENABLE :
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break;
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case FORCE :
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break;
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}
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}
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/**************************************************************************
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ETH_PROBE - Look for an adapter
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***************************************************************************/
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#ifdef INCLUDE_3C529
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static int t529_probe(struct dev *dev, unsigned short *probe_addrs __unused)
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#else
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static int t509_probe(struct dev *dev, unsigned short *probe_addrs __unused)
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#endif
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{
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struct nic *nic = (struct nic *)dev;
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/* common variables */
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int i;
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int failcount;
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#ifdef INCLUDE_3C529
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struct el3_mca_adapters_struct *mcafound = NULL;
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int mca_pos4 = 0, mca_pos5 = 0, mca_irq = 0;
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#endif
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__t509_disable(); /* in case board was active */
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for (failcount = 0; failcount < 100; failcount++) {
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int data, j, io_base, id_port;
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unsigned short k;
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int ep_current_tag;
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short *p;
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#ifdef INCLUDE_3C529
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int curboard;
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#endif
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id_port = EP_ID_PORT;
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ep_current_tag = EP_LAST_TAG + 1;
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/*********************************************************
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Search for 3Com 509 card
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***********************************************************/
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#ifdef INCLUDE_3C529
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/*
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* XXX: We should really check to make sure we have an MCA
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* bus controller before going ahead with this...
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*
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* For now, we avoid any hassle by making it a compile
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* time option.
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*
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*/
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/* printf("\nWarning: Assuming presence of MCA bus\n"); */
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/* Make sure motherboard setup is off */
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outb_p(0xff, MCA_MOTHERBOARD_SETUP_REG);
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/* Cycle through slots */
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for(curboard=0; curboard<MCA_MAX_SLOT_NR; curboard++) {
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int boardid;
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int curcard;
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outb_p(0x8|(curboard&0xf), MCA_ADAPTER_SETUP_REG);
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boardid = inb_p(MCA_POS_REG(0));
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boardid += inb_p(MCA_POS_REG(1)) << 8;
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curcard = 0;
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while (el3_mca_adapters[curcard].name) {
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if (el3_mca_adapters[curcard].id == boardid) {
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mcafound = &el3_mca_adapters[curcard];
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mca_pos4 = inb_p(MCA_POS_REG(4));
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mca_pos5 = inb_p(MCA_POS_REG(5));
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goto donewithdetect;
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}
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else
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curcard++;
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}
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}
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donewithdetect:
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/* Kill all setup modes */
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outb_p(0, MCA_ADAPTER_SETUP_REG);
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if (mcafound) {
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eth_nic_base = ((short)((mca_pos4&0xfc)|0x02)) << 8;
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mca_irq = mca_pos5 & 0x0f;
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ep_current_tag--;
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}
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else
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/*printf("MCA Card not found\n")*/;
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#endif
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/* Look for the EISA boards, leave them activated */
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/* search for the first card, ignore all others */
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for(j = 1; j < 16; j++) {
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io_base = (j * EP_EISA_START) | EP_EISA_W0;
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if (inw(io_base + EP_W0_MFG_ID) != MFG_ID)
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continue;
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/* we must have found 0x1f if the board is EISA configurated */
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if ((inw(io_base + EP_W0_ADDRESS_CFG) & 0x1f) != 0x1f)
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continue;
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|
||
/* Reset and Enable the card */
|
||
outb(W0_P4_CMD_RESET_ADAPTER, io_base + EP_W0_CONFIG_CTRL);
|
||
udelay(1000); /* Must wait 800 <20>s, be conservative */
|
||
outb(W0_P4_CMD_ENABLE_ADAPTER, io_base + EP_W0_CONFIG_CTRL);
|
||
|
||
/*
|
||
* Once activated, all the registers are mapped in the range
|
||
* x000 - x00F, where x is the slot number.
|
||
*/
|
||
eth_nic_base = j * EP_EISA_START;
|
||
break;
|
||
}
|
||
ep_current_tag--;
|
||
|
||
/* Look for the ISA boards. Init and leave them actived */
|
||
/* search for the first card, ignore all others */
|
||
outb(0xc0, id_port); /* Global reset */
|
||
udelay(1000); /* wait 1 ms */
|
||
for (i = 0; i < EP_MAX_BOARDS; i++) {
|
||
outb(0, id_port);
|
||
outb(0, id_port);
|
||
send_ID_sequence(id_port);
|
||
|
||
data = get_eeprom_data(id_port, EEPROM_MFG_ID);
|
||
if (data != MFG_ID)
|
||
break;
|
||
|
||
/* resolve contention using the Ethernet address */
|
||
for (j = 0; j < 3; j++)
|
||
data = get_eeprom_data(id_port, j);
|
||
|
||
eth_nic_base =
|
||
(get_eeprom_data(id_port, EEPROM_ADDR_CFG) & 0x1f) * 0x10 + 0x200;
|
||
outb(ep_current_tag, id_port); /* tags board */
|
||
outb(ACTIVATE_ADAPTER_TO_CONFIG, id_port);
|
||
ep_current_tag--;
|
||
break;
|
||
}
|
||
|
||
if (i >= EP_MAX_BOARDS)
|
||
goto no3c509;
|
||
|
||
/*
|
||
* The iobase was found and MFG_ID was 0x6d50. PROD_ID should be
|
||
* 0x9[0-f]50
|
||
*/
|
||
GO_WINDOW(0);
|
||
k = get_e(EEPROM_PROD_ID);
|
||
#ifdef INCLUDE_3C529
|
||
/*
|
||
* On MCA, the PROD_ID matches the MCA card ID (POS0+POS1)
|
||
*/
|
||
if (mcafound) {
|
||
if (mcafound->id != k) {
|
||
printf("MCA: PROD_ID in EEPROM does not match MCA card ID! (%hX != %hX)\n", k, mcafound->id);
|
||
goto no3c509;
|
||
}
|
||
} else { /* for ISA/EISA */
|
||
if ((k & 0xf0ff) != (PROD_ID & 0xf0ff))
|
||
goto no3c509;
|
||
}
|
||
#else
|
||
if ((k & 0xf0ff) != (PROD_ID & 0xf0ff))
|
||
goto no3c509;
|
||
#endif
|
||
|
||
#ifdef INCLUDE_3C529
|
||
if (mcafound) {
|
||
printf("%s board found on MCA at %#hx IRQ %d -",
|
||
mcafound->name, eth_nic_base, mca_irq);
|
||
} else {
|
||
#endif
|
||
if(eth_nic_base >= EP_EISA_START)
|
||
printf("3C5x9 board on EISA at %#hx - ",eth_nic_base);
|
||
else
|
||
printf("3C5x9 board on ISA at %#hx - ",eth_nic_base);
|
||
#ifdef INCLUDE_3C529
|
||
}
|
||
#endif
|
||
|
||
/* test for presence of connectors */
|
||
i = inw(IS_BASE + EP_W0_CONFIG_CTRL);
|
||
j = (inw(IS_BASE + EP_W0_ADDRESS_CFG) >> 14) & 0x3;
|
||
|
||
switch(j) {
|
||
case 0:
|
||
if (i & IS_UTP) {
|
||
printf("10baseT\n");
|
||
connector = utp;
|
||
}
|
||
else {
|
||
printf("10baseT not present\n");
|
||
goto no3c509;
|
||
}
|
||
break;
|
||
case 1:
|
||
if (i & IS_AUI)
|
||
printf("10base5\n");
|
||
else {
|
||
printf("10base5 not present\n");
|
||
goto no3c509;
|
||
}
|
||
break;
|
||
case 3:
|
||
if (i & IS_BNC) {
|
||
printf("10base2\n");
|
||
connector = bnc;
|
||
}
|
||
else {
|
||
printf("10base2 not present\n");
|
||
goto no3c509;
|
||
}
|
||
break;
|
||
default:
|
||
printf("unknown connector\n");
|
||
goto no3c509;
|
||
}
|
||
/*
|
||
* Read the station address from the eeprom
|
||
*/
|
||
p = (unsigned short *) nic->node_addr;
|
||
for (i = 0; i < ETH_ALEN / 2; i++) {
|
||
GO_WINDOW(0);
|
||
p[i] = htons(get_e(i));
|
||
GO_WINDOW(2);
|
||
outw(ntohs(p[i]), BASE + EP_W2_ADDR_0 + (i * 2));
|
||
}
|
||
printf("Ethernet address: %!\n", nic->node_addr);
|
||
t509_reset(nic);
|
||
|
||
nic->irqno = 0;
|
||
nic->ioaddr = eth_nic_base;
|
||
static struct nic_operations t509_operations;
|
||
static struct nic_operations t509_operations = {
|
||
.connect = dummy_connect,
|
||
.poll = t509_poll,
|
||
.transmit = t509_transmit,
|
||
.irq = t509_irq,
|
||
.disable = t509_disable,
|
||
};
|
||
nic->nic_op = &t509_operations;
|
||
|
||
/* Based on PnP ISA map */
|
||
dev->devid.vendor_id = htons(GENERIC_ISAPNP_VENDOR);
|
||
dev->devid.device_id = htons(0x80f7);
|
||
return 1;
|
||
no3c509:
|
||
continue;
|
||
/* printf("(probe fail)"); */
|
||
}
|
||
return 0;
|
||
}
|
||
|
||
#ifdef INCLUDE_3C509
|
||
static struct isa_driver t509_driver __isa_driver = {
|
||
.type = NIC_DRIVER,
|
||
.name = "3C509",
|
||
.probe = t509_probe,
|
||
.ioaddrs = 0,
|
||
};
|
||
ISA_ROM("3c509","3c509, ISA/EISA");
|
||
#endif
|
||
|
||
#ifdef INCLUDE_3C529
|
||
static struct isa_driver t529_driver __isa_driver = {
|
||
.type = NIC_DRIVER,
|
||
.name = "3C529",
|
||
.probe = t529_probe,
|
||
.ioaddrs = 0,
|
||
};
|
||
ISA_ROM("3c529","3c529 == MCA 3c509");
|
||
#endif
|
||
|
||
/*
|
||
* Local variables:
|
||
* c-basic-offset: 8
|
||
* End:
|
||
*/
|