📄 etherh.c
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/* * linux/drivers/acorn/net/etherh.c * * Copyright (C) 2000 Russell King * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * NS8390 I-cubed EtherH and ANT EtherM specific driver * Thanks to I-Cubed for information on their cards. * EtherM conversion (C) 1999 Chris Kemp and Tim Watterton * EtherM integration (C) 2000 Aleph One Ltd (Tak-Shing Chan) * EtherM integration re-engineered by Russell King. * * Changelog: * 08-12-1996 RMK 1.00 Created * RMK 1.03 Added support for EtherLan500 cards * 23-11-1997 RMK 1.04 Added media autodetection * 16-04-1998 RMK 1.05 Improved media autodetection * 10-02-2000 RMK 1.06 Updated for 2.3.43 * 13-05-2000 RMK 1.07 Updated for 2.3.99-pre8 * 12-10-1999 CK/TEW EtherM driver first release * 21-12-2000 TTC EtherH/EtherM integration * 25-12-2000 RMK 1.08 Clean integration of EtherM into this driver. */#include <linux/module.h>#include <linux/kernel.h>#include <linux/sched.h>#include <linux/types.h>#include <linux/fcntl.h>#include <linux/interrupt.h>#include <linux/ptrace.h>#include <linux/ioport.h>#include <linux/in.h>#include <linux/slab.h>#include <linux/string.h>#include <linux/errno.h>#include <linux/netdevice.h>#include <linux/etherdevice.h>#include <linux/skbuff.h>#include <linux/delay.h>#include <linux/init.h>#include <asm/system.h>#include <asm/bitops.h>#include <asm/ecard.h>#include <asm/io.h>#include <asm/irq.h>#include "../../net/8390.h"#define NET_DEBUG 0#define DEBUG_INIT 2static unsigned int net_debug = NET_DEBUG;static const card_ids __init etherh_cids[] = { { MANU_ANT, PROD_ANT_ETHERM }, { MANU_I3, PROD_I3_ETHERLAN500 }, { MANU_I3, PROD_I3_ETHERLAN600 }, { MANU_I3, PROD_I3_ETHERLAN600A }, { 0xffff, 0xffff }};MODULE_AUTHOR("Russell King");MODULE_DESCRIPTION("EtherH/EtherM driver");MODULE_LICENSE("GPL");static char version[] __initdata = "EtherH/EtherM Driver (c) 2000 Russell King v1.08\n";#define ETHERH500_DATAPORT 0x200 /* MEMC */#define ETHERH500_NS8390 0x000 /* MEMC */#define ETHERH500_CTRLPORT 0x200 /* IOC */#define ETHERH600_DATAPORT 16 /* MEMC */#define ETHERH600_NS8390 0x200 /* MEMC */#define ETHERH600_CTRLPORT 0x080 /* MEMC */#define ETHERH_CP_IE 1#define ETHERH_CP_IF 2#define ETHERH_CP_HEARTBEAT 2#define ETHERH_TX_START_PAGE 1#define ETHERH_STOP_PAGE 127/* * These came from CK/TEW */#define ETHERM_DATAPORT 0x080 /* MEMC */#define ETHERM_NS8390 0x200 /* MEMC */#define ETHERM_CTRLPORT 0x08f /* MEMC */#define ETHERM_TX_START_PAGE 64#define ETHERM_STOP_PAGE 127/* --------------------------------------------------------------------------- */static voidetherh_setif(struct net_device *dev){ struct ei_device *ei_local = (struct ei_device *) dev->priv; unsigned long addr, flags; save_flags_cli(flags); /* set the interface type */ switch (dev->mem_end) { case PROD_I3_ETHERLAN600: case PROD_I3_ETHERLAN600A: addr = dev->base_addr + EN0_RCNTHI; switch (dev->if_port) { case IF_PORT_10BASE2: outb((inb(addr) & 0xf8) | 1, addr); break; case IF_PORT_10BASET: outb((inb(addr) & 0xf8), addr); break; } break; case PROD_I3_ETHERLAN500: addr = dev->rmem_start; switch (dev->if_port) { case IF_PORT_10BASE2: outb(inb(addr) & ~ETHERH_CP_IF, addr); break; case IF_PORT_10BASET: outb(inb(addr) | ETHERH_CP_IF, addr); break; } break; default: break; } restore_flags(flags);}static intetherh_getifstat(struct net_device *dev){ struct ei_device *ei_local = (struct ei_device *) dev->priv; int stat = 0; switch (dev->mem_end) { case PROD_I3_ETHERLAN600: case PROD_I3_ETHERLAN600A: switch (dev->if_port) { case IF_PORT_10BASE2: stat = 1; break; case IF_PORT_10BASET: stat = inb(dev->base_addr+EN0_RCNTHI) & 4; break; } break; case PROD_I3_ETHERLAN500: switch (dev->if_port) { case IF_PORT_10BASE2: stat = 1; break; case IF_PORT_10BASET: stat = inb(dev->rmem_start) & ETHERH_CP_HEARTBEAT; break; } break; default: stat = 0; break; } return stat != 0;}/* * Configure the interface. Note that we ignore the other * parts of ifmap, since its mostly meaningless for this driver. */static int etherh_set_config(struct net_device *dev, struct ifmap *map){ switch (map->port) { case IF_PORT_10BASE2: case IF_PORT_10BASET: /* * If the user explicitly sets the interface * media type, turn off automedia detection. */ dev->flags &= ~IFF_AUTOMEDIA; dev->if_port = map->port; break; default: return -EINVAL; } etherh_setif(dev); return 0;}/* * Reset the 8390 (hard reset). Note that we can't actually do this. */static voidetherh_reset(struct net_device *dev){ struct ei_device *ei_local = (struct ei_device *) dev->priv; outb_p(E8390_NODMA+E8390_PAGE0+E8390_STOP, dev->base_addr); /* * See if we need to change the interface type. * Note that we use 'interface_num' as a flag * to indicate that we need to change the media. */ if (dev->flags & IFF_AUTOMEDIA && ei_local->interface_num) { ei_local->interface_num = 0; if (dev->if_port == IF_PORT_10BASET) dev->if_port = IF_PORT_10BASE2; else dev->if_port = IF_PORT_10BASET; etherh_setif(dev); }}/* * Write a block of data out to the 8390 */static voidetherh_block_output (struct net_device *dev, int count, const unsigned char *buf, int start_page){ struct ei_device *ei_local = (struct ei_device *) dev->priv; unsigned int addr, dma_addr; unsigned long dma_start; if (ei_local->dmaing) { printk(KERN_ERR "%s: DMAing conflict in etherh_block_input: " " DMAstat %d irqlock %d\n", dev->name, ei_local->dmaing, ei_local->irqlock); return; } ei_local->dmaing |= 1; addr = dev->base_addr; dma_addr = dev->mem_start; count = (count + 1) & ~1; outb (E8390_NODMA | E8390_PAGE0 | E8390_START, addr + E8390_CMD); outb (0x42, addr + EN0_RCNTLO); outb (0x00, addr + EN0_RCNTHI); outb (0x42, addr + EN0_RSARLO); outb (0x00, addr + EN0_RSARHI); outb (E8390_RREAD | E8390_START, addr + E8390_CMD); udelay (1); outb (ENISR_RDC, addr + EN0_ISR); outb (count, addr + EN0_RCNTLO); outb (count >> 8, addr + EN0_RCNTHI); outb (0, addr + EN0_RSARLO); outb (start_page, addr + EN0_RSARHI); outb (E8390_RWRITE | E8390_START, addr + E8390_CMD); if (ei_local->word16) outsw (dma_addr, buf, count >> 1); else outsb (dma_addr, buf, count); dma_start = jiffies; while ((inb (addr + EN0_ISR) & ENISR_RDC) == 0) if (jiffies - dma_start > 2*HZ/100) { /* 20ms */ printk(KERN_ERR "%s: timeout waiting for TX RDC\n", dev->name); etherh_reset (dev); NS8390_init (dev, 1); break; } outb (ENISR_RDC, addr + EN0_ISR); ei_local->dmaing &= ~1;}/* * Read a block of data from the 8390 */static voidetherh_block_input (struct net_device *dev, int count, struct sk_buff *skb, int ring_offset){ struct ei_device *ei_local = (struct ei_device *) dev->priv; unsigned int addr, dma_addr; unsigned char *buf; if (ei_local->dmaing) { printk(KERN_ERR "%s: DMAing conflict in etherh_block_input: " " DMAstat %d irqlock %d\n", dev->name, ei_local->dmaing, ei_local->irqlock); return; } ei_local->dmaing |= 1; addr = dev->base_addr; dma_addr = dev->mem_start; buf = skb->data; outb (E8390_NODMA | E8390_PAGE0 | E8390_START, addr + E8390_CMD); outb (count, addr + EN0_RCNTLO); outb (count >> 8, addr + EN0_RCNTHI); outb (ring_offset, addr + EN0_RSARLO); outb (ring_offset >> 8, addr + EN0_RSARHI); outb (E8390_RREAD | E8390_START, addr + E8390_CMD); if (ei_local->word16) { insw (dma_addr, buf, count >> 1); if (count & 1) buf[count - 1] = inb (dma_addr); } else insb (dma_addr, buf, count); outb (ENISR_RDC, addr + EN0_ISR); ei_local->dmaing &= ~1;}/* * Read a header from the 8390 */static voidetherh_get_header (struct net_device *dev, struct e8390_pkt_hdr *hdr, int ring_page){ struct ei_device *ei_local = (struct ei_device *) dev->priv; unsigned int addr, dma_addr; if (ei_local->dmaing) { printk(KERN_ERR "%s: DMAing conflict in etherh_get_header: " " DMAstat %d irqlock %d\n", dev->name, ei_local->dmaing, ei_local->irqlock); return; } ei_local->dmaing |= 1;
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