8139cp.c 55.9 KB
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/* 8139cp.c: A Linux PCI Ethernet driver for the RealTek 8139C+ chips. */
/*
	Copyright 2001-2004 Jeff Garzik <jgarzik@pobox.com>

	Copyright (C) 2001, 2002 David S. Miller (davem@redhat.com) [tg3.c]
	Copyright (C) 2000, 2001 David S. Miller (davem@redhat.com) [sungem.c]
	Copyright 2001 Manfred Spraul				    [natsemi.c]
	Copyright 1999-2001 by Donald Becker.			    [natsemi.c]
       	Written 1997-2001 by Donald Becker.			    [8139too.c]
	Copyright 1998-2001 by Jes Sorensen, <jes@trained-monkey.org>. [acenic.c]

	This software may be used and distributed according to the terms of
	the GNU General Public License (GPL), incorporated herein by reference.
	Drivers based on or derived from this code fall under the GPL and must
	retain the authorship, copyright and license notice.  This file is not
	a complete program and may only be used when the entire operating
	system is licensed under the GPL.

	See the file COPYING in this distribution for more information.

	Contributors:
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		Wake-on-LAN support - Felipe Damasio <felipewd@terra.com.br>
		PCI suspend/resume  - Felipe Damasio <felipewd@terra.com.br>
		LinkChg interrupt   - Felipe Damasio <felipewd@terra.com.br>
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	TODO:
	* Test Tx checksumming thoroughly

	Low priority TODO:
	* Complete reset on PciErr
	* Consider Rx interrupt mitigation using TimerIntr
	* Investigate using skb->priority with h/w VLAN priority
	* Investigate using High Priority Tx Queue with skb->priority
	* Adjust Rx FIFO threshold and Max Rx DMA burst on Rx FIFO error
	* Adjust Tx FIFO threshold and Max Tx DMA burst on Tx FIFO error
	* Implement Tx software interrupt mitigation via
	  Tx descriptor bit
	* The real minimum of CP_MIN_MTU is 4 bytes.  However,
	  for this to be supported, one must(?) turn on packet padding.
	* Support external MII transceivers (patch available)

	NOTES:
	* TX checksumming is considered experimental.  It is off by
	  default, use ethtool to turn it on.

 */

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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#define DRV_NAME		"8139cp"
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#define DRV_VERSION		"1.3"
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#define DRV_RELDATE		"Mar 22, 2004"


#include <linux/module.h>
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#include <linux/moduleparam.h>
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#include <linux/kernel.h>
#include <linux/compiler.h>
#include <linux/netdevice.h>
#include <linux/etherdevice.h>
#include <linux/init.h>
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#include <linux/interrupt.h>
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#include <linux/pci.h>
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#include <linux/dma-mapping.h>
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#include <linux/delay.h>
#include <linux/ethtool.h>
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#include <linux/gfp.h>
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#include <linux/mii.h>
#include <linux/if_vlan.h>
#include <linux/crc32.h>
#include <linux/in.h>
#include <linux/ip.h>
#include <linux/tcp.h>
#include <linux/udp.h>
#include <linux/cache.h>
#include <asm/io.h>
#include <asm/irq.h>
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#include <linux/uaccess.h>
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/* These identify the driver base version and may not be removed. */
static char version[] =
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DRV_NAME ": 10/100 PCI Ethernet driver v" DRV_VERSION " (" DRV_RELDATE ")\n";
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MODULE_AUTHOR("Jeff Garzik <jgarzik@pobox.com>");
MODULE_DESCRIPTION("RealTek RTL-8139C+ series 10/100 PCI Ethernet driver");
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MODULE_VERSION(DRV_VERSION);
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MODULE_LICENSE("GPL");

static int debug = -1;
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module_param(debug, int, 0);
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MODULE_PARM_DESC (debug, "8139cp: bitmapped message enable number");

/* Maximum number of multicast addresses to filter (vs. Rx-all-multicast).
   The RTL chips use a 64 element hash table based on the Ethernet CRC.  */
static int multicast_filter_limit = 32;
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module_param(multicast_filter_limit, int, 0);
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MODULE_PARM_DESC (multicast_filter_limit, "8139cp: maximum number of filtered multicast addresses");

#define CP_DEF_MSG_ENABLE	(NETIF_MSG_DRV		| \
				 NETIF_MSG_PROBE 	| \
				 NETIF_MSG_LINK)
#define CP_NUM_STATS		14	/* struct cp_dma_stats, plus one */
#define CP_STATS_SIZE		64	/* size in bytes of DMA stats block */
#define CP_REGS_SIZE		(0xff + 1)
#define CP_REGS_VER		1		/* version 1 */
#define CP_RX_RING_SIZE		64
#define CP_TX_RING_SIZE		64
#define CP_RING_BYTES		\
		((sizeof(struct cp_desc) * CP_RX_RING_SIZE) +	\
		 (sizeof(struct cp_desc) * CP_TX_RING_SIZE) +	\
		 CP_STATS_SIZE)
#define NEXT_TX(N)		(((N) + 1) & (CP_TX_RING_SIZE - 1))
#define NEXT_RX(N)		(((N) + 1) & (CP_RX_RING_SIZE - 1))
#define TX_BUFFS_AVAIL(CP)					\
	(((CP)->tx_tail <= (CP)->tx_head) ?			\
	  (CP)->tx_tail + (CP_TX_RING_SIZE - 1) - (CP)->tx_head :	\
	  (CP)->tx_tail - (CP)->tx_head - 1)

#define PKT_BUF_SZ		1536	/* Size of each temporary Rx buffer.*/
#define CP_INTERNAL_PHY		32

/* The following settings are log_2(bytes)-4:  0 == 16 bytes .. 6==1024, 7==end of packet. */
#define RX_FIFO_THRESH		5	/* Rx buffer level before first PCI xfer.  */
#define RX_DMA_BURST		4	/* Maximum PCI burst, '4' is 256 */
#define TX_DMA_BURST		6	/* Maximum PCI burst, '6' is 1024 */
#define TX_EARLY_THRESH		256	/* Early Tx threshold, in bytes */

/* Time in jiffies before concluding the transmitter is hung. */
#define TX_TIMEOUT		(6*HZ)

/* hardware minimum and maximum for a single frame's data payload */
#define CP_MIN_MTU		60	/* TODO: allow lower, but pad */
#define CP_MAX_MTU		4096

enum {
	/* NIC register offsets */
	MAC0		= 0x00,	/* Ethernet hardware address. */
	MAR0		= 0x08,	/* Multicast filter. */
	StatsAddr	= 0x10,	/* 64-bit start addr of 64-byte DMA stats blk */
	TxRingAddr	= 0x20, /* 64-bit start addr of Tx ring */
	HiTxRingAddr	= 0x28, /* 64-bit start addr of high priority Tx ring */
	Cmd		= 0x37, /* Command register */
	IntrMask	= 0x3C, /* Interrupt mask */
	IntrStatus	= 0x3E, /* Interrupt status */
	TxConfig	= 0x40, /* Tx configuration */
	ChipVersion	= 0x43, /* 8-bit chip version, inside TxConfig */
	RxConfig	= 0x44, /* Rx configuration */
	RxMissed	= 0x4C,	/* 24 bits valid, write clears */
	Cfg9346		= 0x50, /* EEPROM select/control; Cfg reg [un]lock */
	Config1		= 0x52, /* Config1 */
	Config3		= 0x59, /* Config3 */
	Config4		= 0x5A, /* Config4 */
	MultiIntr	= 0x5C, /* Multiple interrupt select */
	BasicModeCtrl	= 0x62,	/* MII BMCR */
	BasicModeStatus	= 0x64, /* MII BMSR */
	NWayAdvert	= 0x66, /* MII ADVERTISE */
	NWayLPAR	= 0x68, /* MII LPA */
	NWayExpansion	= 0x6A, /* MII Expansion */
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	TxDmaOkLowDesc  = 0x82, /* Low 16 bit address of a Tx descriptor. */
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	Config5		= 0xD8,	/* Config5 */
	TxPoll		= 0xD9,	/* Tell chip to check Tx descriptors for work */
	RxMaxSize	= 0xDA, /* Max size of an Rx packet (8169 only) */
	CpCmd		= 0xE0, /* C+ Command register (C+ mode only) */
	IntrMitigate	= 0xE2,	/* rx/tx interrupt mitigation control */
	RxRingAddr	= 0xE4, /* 64-bit start addr of Rx ring */
	TxThresh	= 0xEC, /* Early Tx threshold */
	OldRxBufAddr	= 0x30, /* DMA address of Rx ring buffer (C mode) */
	OldTSD0		= 0x10, /* DMA address of first Tx desc (C mode) */

	/* Tx and Rx status descriptors */
	DescOwn		= (1 << 31), /* Descriptor is owned by NIC */
	RingEnd		= (1 << 30), /* End of descriptor ring */
	FirstFrag	= (1 << 29), /* First segment of a packet */
	LastFrag	= (1 << 28), /* Final segment of a packet */
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	LargeSend	= (1 << 27), /* TCP Large Send Offload (TSO) */
	MSSShift	= 16,	     /* MSS value position */
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	MSSMask		= 0x7ff,     /* MSS value: 11 bits */
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	TxError		= (1 << 23), /* Tx error summary */
	RxError		= (1 << 20), /* Rx error summary */
	IPCS		= (1 << 18), /* Calculate IP checksum */
	UDPCS		= (1 << 17), /* Calculate UDP/IP checksum */
	TCPCS		= (1 << 16), /* Calculate TCP/IP checksum */
	TxVlanTag	= (1 << 17), /* Add VLAN tag */
	RxVlanTagged	= (1 << 16), /* Rx VLAN tag available */
	IPFail		= (1 << 15), /* IP checksum failed */
	UDPFail		= (1 << 14), /* UDP/IP checksum failed */
	TCPFail		= (1 << 13), /* TCP/IP checksum failed */
	NormalTxPoll	= (1 << 6),  /* One or more normal Tx packets to send */
	PID1		= (1 << 17), /* 2 protocol id bits:  0==non-IP, */
	PID0		= (1 << 16), /* 1==UDP/IP, 2==TCP/IP, 3==IP */
	RxProtoTCP	= 1,
	RxProtoUDP	= 2,
	RxProtoIP	= 3,
	TxFIFOUnder	= (1 << 25), /* Tx FIFO underrun */
	TxOWC		= (1 << 22), /* Tx Out-of-window collision */
	TxLinkFail	= (1 << 21), /* Link failed during Tx of packet */
	TxMaxCol	= (1 << 20), /* Tx aborted due to excessive collisions */
	TxColCntShift	= 16,	     /* Shift, to get 4-bit Tx collision cnt */
	TxColCntMask	= 0x01 | 0x02 | 0x04 | 0x08, /* 4-bit collision count */
	RxErrFrame	= (1 << 27), /* Rx frame alignment error */
	RxMcast		= (1 << 26), /* Rx multicast packet rcv'd */
	RxErrCRC	= (1 << 18), /* Rx CRC error */
	RxErrRunt	= (1 << 19), /* Rx error, packet < 64 bytes */
	RxErrLong	= (1 << 21), /* Rx error, packet > 4096 bytes */
	RxErrFIFO	= (1 << 22), /* Rx error, FIFO overflowed, pkt bad */

	/* StatsAddr register */
	DumpStats	= (1 << 3),  /* Begin stats dump */

	/* RxConfig register */
	RxCfgFIFOShift	= 13,	     /* Shift, to get Rx FIFO thresh value */
	RxCfgDMAShift	= 8,	     /* Shift, to get Rx Max DMA value */
	AcceptErr	= 0x20,	     /* Accept packets with CRC errors */
	AcceptRunt	= 0x10,	     /* Accept runt (<64 bytes) packets */
	AcceptBroadcast	= 0x08,	     /* Accept broadcast packets */
	AcceptMulticast	= 0x04,	     /* Accept multicast packets */
	AcceptMyPhys	= 0x02,	     /* Accept pkts with our MAC as dest */
	AcceptAllPhys	= 0x01,	     /* Accept all pkts w/ physical dest */

	/* IntrMask / IntrStatus registers */
	PciErr		= (1 << 15), /* System error on the PCI bus */
	TimerIntr	= (1 << 14), /* Asserted when TCTR reaches TimerInt value */
	LenChg		= (1 << 13), /* Cable length change */
	SWInt		= (1 << 8),  /* Software-requested interrupt */
	TxEmpty		= (1 << 7),  /* No Tx descriptors available */
	RxFIFOOvr	= (1 << 6),  /* Rx FIFO Overflow */
	LinkChg		= (1 << 5),  /* Packet underrun, or link change */
	RxEmpty		= (1 << 4),  /* No Rx descriptors available */
	TxErr		= (1 << 3),  /* Tx error */
	TxOK		= (1 << 2),  /* Tx packet sent */
	RxErr		= (1 << 1),  /* Rx error */
	RxOK		= (1 << 0),  /* Rx packet received */
	IntrResvd	= (1 << 10), /* reserved, according to RealTek engineers,
					but hardware likes to raise it */

	IntrAll		= PciErr | TimerIntr | LenChg | SWInt | TxEmpty |
			  RxFIFOOvr | LinkChg | RxEmpty | TxErr | TxOK |
			  RxErr | RxOK | IntrResvd,

	/* C mode command register */
	CmdReset	= (1 << 4),  /* Enable to reset; self-clearing */
	RxOn		= (1 << 3),  /* Rx mode enable */
	TxOn		= (1 << 2),  /* Tx mode enable */

	/* C+ mode command register */
	RxVlanOn	= (1 << 6),  /* Rx VLAN de-tagging enable */
	RxChkSum	= (1 << 5),  /* Rx checksum offload enable */
	PCIDAC		= (1 << 4),  /* PCI Dual Address Cycle (64-bit PCI) */
	PCIMulRW	= (1 << 3),  /* Enable PCI read/write multiple */
	CpRxOn		= (1 << 1),  /* Rx mode enable */
	CpTxOn		= (1 << 0),  /* Tx mode enable */

	/* Cfg9436 EEPROM control register */
	Cfg9346_Lock	= 0x00,	     /* Lock ConfigX/MII register access */
	Cfg9346_Unlock	= 0xC0,	     /* Unlock ConfigX/MII register access */

	/* TxConfig register */
	IFG		= (1 << 25) | (1 << 24), /* standard IEEE interframe gap */
	TxDMAShift	= 8,	     /* DMA burst value (0-7) is shift this many bits */

	/* Early Tx Threshold register */
	TxThreshMask	= 0x3f,	     /* Mask bits 5-0 */
	TxThreshMax	= 2048,	     /* Max early Tx threshold */

	/* Config1 register */
	DriverLoaded	= (1 << 5),  /* Software marker, driver is loaded */
	LWACT           = (1 << 4),  /* LWAKE active mode */
	PMEnable	= (1 << 0),  /* Enable various PM features of chip */

	/* Config3 register */
	PARMEnable	= (1 << 6),  /* Enable auto-loading of PHY parms */
	MagicPacket     = (1 << 5),  /* Wake up when receives a Magic Packet */
	LinkUp          = (1 << 4),  /* Wake up when the cable connection is re-established */

	/* Config4 register */
	LWPTN           = (1 << 1),  /* LWAKE Pattern */
	LWPME           = (1 << 4),  /* LANWAKE vs PMEB */

	/* Config5 register */
	BWF             = (1 << 6),  /* Accept Broadcast wakeup frame */
	MWF             = (1 << 5),  /* Accept Multicast wakeup frame */
	UWF             = (1 << 4),  /* Accept Unicast wakeup frame */
	LANWake         = (1 << 1),  /* Enable LANWake signal */
	PMEStatus	= (1 << 0),  /* PME status can be reset by PCI RST# */

	cp_norx_intr_mask = PciErr | LinkChg | TxOK | TxErr | TxEmpty,
	cp_rx_intr_mask = RxOK | RxErr | RxEmpty | RxFIFOOvr,
	cp_intr_mask = cp_rx_intr_mask | cp_norx_intr_mask,
};

static const unsigned int cp_rx_config =
	  (RX_FIFO_THRESH << RxCfgFIFOShift) |
	  (RX_DMA_BURST << RxCfgDMAShift);

struct cp_desc {
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	__le32		opts1;
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	__le32		opts2;
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	__le64		addr;
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};

struct cp_dma_stats {
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	__le64			tx_ok;
	__le64			rx_ok;
	__le64			tx_err;
	__le32			rx_err;
	__le16			rx_fifo;
	__le16			frame_align;
	__le32			tx_ok_1col;
	__le32			tx_ok_mcol;
	__le64			rx_ok_phys;
	__le64			rx_ok_bcast;
	__le32			rx_ok_mcast;
	__le16			tx_abort;
	__le16			tx_underrun;
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} __packed;
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struct cp_extra_stats {
	unsigned long		rx_frags;
};

struct cp_private {
	void			__iomem *regs;
	struct net_device	*dev;
	spinlock_t		lock;
	u32			msg_enable;

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	struct napi_struct	napi;

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	struct pci_dev		*pdev;
	u32			rx_config;
	u16			cpcmd;

	struct cp_extra_stats	cp_stats;

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	unsigned		rx_head		____cacheline_aligned;
	unsigned		rx_tail;
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	struct cp_desc		*rx_ring;
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	struct sk_buff		*rx_skb[CP_RX_RING_SIZE];
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	unsigned		tx_head		____cacheline_aligned;
	unsigned		tx_tail;
	struct cp_desc		*tx_ring;
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	struct sk_buff		*tx_skb[CP_TX_RING_SIZE];
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	u32			tx_opts[CP_TX_RING_SIZE];
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	unsigned		rx_buf_sz;
	unsigned		wol_enabled : 1; /* Is Wake-on-LAN enabled? */
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	dma_addr_t		ring_dma;
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	struct mii_if_info	mii_if;
};

#define cpr8(reg)	readb(cp->regs + (reg))
#define cpr16(reg)	readw(cp->regs + (reg))
#define cpr32(reg)	readl(cp->regs + (reg))
#define cpw8(reg,val)	writeb((val), cp->regs + (reg))
#define cpw16(reg,val)	writew((val), cp->regs + (reg))
#define cpw32(reg,val)	writel((val), cp->regs + (reg))
#define cpw8_f(reg,val) do {			\
	writeb((val), cp->regs + (reg));	\
	readb(cp->regs + (reg));		\
	} while (0)
#define cpw16_f(reg,val) do {			\
	writew((val), cp->regs + (reg));	\
	readw(cp->regs + (reg));		\
	} while (0)
#define cpw32_f(reg,val) do {			\
	writel((val), cp->regs + (reg));	\
	readl(cp->regs + (reg));		\
	} while (0)


static void __cp_set_rx_mode (struct net_device *dev);
static void cp_tx (struct cp_private *cp);
static void cp_clean_rings (struct cp_private *cp);
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#ifdef CONFIG_NET_POLL_CONTROLLER
static void cp_poll_controller(struct net_device *dev);
#endif
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static int cp_get_eeprom_len(struct net_device *dev);
static int cp_get_eeprom(struct net_device *dev,
			 struct ethtool_eeprom *eeprom, u8 *data);
static int cp_set_eeprom(struct net_device *dev,
			 struct ethtool_eeprom *eeprom, u8 *data);
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static struct {
	const char str[ETH_GSTRING_LEN];
} ethtool_stats_keys[] = {
	{ "tx_ok" },
	{ "rx_ok" },
	{ "tx_err" },
	{ "rx_err" },
	{ "rx_fifo" },
	{ "frame_align" },
	{ "tx_ok_1col" },
	{ "tx_ok_mcol" },
	{ "rx_ok_phys" },
	{ "rx_ok_bcast" },
	{ "rx_ok_mcast" },
	{ "tx_abort" },
	{ "tx_underrun" },
	{ "rx_frags" },
};


static inline void cp_set_rxbufsize (struct cp_private *cp)
{
	unsigned int mtu = cp->dev->mtu;
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	if (mtu > ETH_DATA_LEN)
		/* MTU + ethernet header + FCS + optional VLAN tag */
		cp->rx_buf_sz = mtu + ETH_HLEN + 8;
	else
		cp->rx_buf_sz = PKT_BUF_SZ;
}

static inline void cp_rx_skb (struct cp_private *cp, struct sk_buff *skb,
			      struct cp_desc *desc)
{
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	u32 opts2 = le32_to_cpu(desc->opts2);

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	skb->protocol = eth_type_trans (skb, cp->dev);

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	cp->dev->stats.rx_packets++;
	cp->dev->stats.rx_bytes += skb->len;
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	if (opts2 & RxVlanTagged)
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		__vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q), swab16(opts2 & 0xffff));
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	napi_gro_receive(&cp->napi, skb);
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}

static void cp_rx_err_acct (struct cp_private *cp, unsigned rx_tail,
			    u32 status, u32 len)
{
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	netif_dbg(cp, rx_err, cp->dev, "rx err, slot %d status 0x%x len %d\n",
		  rx_tail, status, len);
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	cp->dev->stats.rx_errors++;
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	if (status & RxErrFrame)
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		cp->dev->stats.rx_frame_errors++;
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	if (status & RxErrCRC)
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		cp->dev->stats.rx_crc_errors++;
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	if ((status & RxErrRunt) || (status & RxErrLong))
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		cp->dev->stats.rx_length_errors++;
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	if ((status & (FirstFrag | LastFrag)) != (FirstFrag | LastFrag))
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		cp->dev->stats.rx_length_errors++;
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	if (status & RxErrFIFO)
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		cp->dev->stats.rx_fifo_errors++;
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}

static inline unsigned int cp_rx_csum_ok (u32 status)
{
	unsigned int protocol = (status >> 16) & 0x3;
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	if (((protocol == RxProtoTCP) && !(status & TCPFail)) ||
	    ((protocol == RxProtoUDP) && !(status & UDPFail)))
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		return 1;
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	else
		return 0;
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}

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static int cp_rx_poll(struct napi_struct *napi, int budget)
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{
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	struct cp_private *cp = container_of(napi, struct cp_private, napi);
	struct net_device *dev = cp->dev;
	unsigned int rx_tail = cp->rx_tail;
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	int rx = 0;
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	cpw16(IntrStatus, cp_rx_intr_mask);

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	while (rx < budget) {
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		u32 status, len;
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		dma_addr_t mapping, new_mapping;
L
Linus Torvalds 已提交
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		struct sk_buff *skb, *new_skb;
		struct cp_desc *desc;
477
		const unsigned buflen = cp->rx_buf_sz;
L
Linus Torvalds 已提交
478

479
		skb = cp->rx_skb[rx_tail];
480
		BUG_ON(!skb);
L
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481 482 483 484 485 486 487

		desc = &cp->rx_ring[rx_tail];
		status = le32_to_cpu(desc->opts1);
		if (status & DescOwn)
			break;

		len = (status & 0x1fff) - 4;
F
Francois Romieu 已提交
488
		mapping = le64_to_cpu(desc->addr);
L
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489 490 491 492 493 494 495 496

		if ((status & (FirstFrag | LastFrag)) != (FirstFrag | LastFrag)) {
			/* we don't support incoming fragmented frames.
			 * instead, we attempt to ensure that the
			 * pre-allocated RX skbs are properly sized such
			 * that RX fragments are never encountered
			 */
			cp_rx_err_acct(cp, rx_tail, status, len);
497
			dev->stats.rx_dropped++;
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			cp->cp_stats.rx_frags++;
			goto rx_next;
		}

		if (status & (RxError | RxErrFIFO)) {
			cp_rx_err_acct(cp, rx_tail, status, len);
			goto rx_next;
		}

507 508
		netif_dbg(cp, rx_status, dev, "rx slot %d status 0x%x len %d\n",
			  rx_tail, status, len);
L
Linus Torvalds 已提交
509

510
		new_skb = napi_alloc_skb(napi, buflen);
L
Linus Torvalds 已提交
511
		if (!new_skb) {
512
			dev->stats.rx_dropped++;
L
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513 514 515
			goto rx_next;
		}

516 517 518 519
		new_mapping = dma_map_single(&cp->pdev->dev, new_skb->data, buflen,
					 PCI_DMA_FROMDEVICE);
		if (dma_mapping_error(&cp->pdev->dev, new_mapping)) {
			dev->stats.rx_dropped++;
520
			kfree_skb(new_skb);
521 522 523
			goto rx_next;
		}

524
		dma_unmap_single(&cp->pdev->dev, mapping,
L
Linus Torvalds 已提交
525 526 527 528 529 530
				 buflen, PCI_DMA_FROMDEVICE);

		/* Handle checksum offloading for incoming packets. */
		if (cp_rx_csum_ok(status))
			skb->ip_summed = CHECKSUM_UNNECESSARY;
		else
531
			skb_checksum_none_assert(skb);
L
Linus Torvalds 已提交
532 533 534

		skb_put(skb, len);

535
		cp->rx_skb[rx_tail] = new_skb;
L
Linus Torvalds 已提交
536 537 538

		cp_rx_skb(cp, skb, desc);
		rx++;
539
		mapping = new_mapping;
L
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540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556

rx_next:
		cp->rx_ring[rx_tail].opts2 = 0;
		cp->rx_ring[rx_tail].addr = cpu_to_le64(mapping);
		if (rx_tail == (CP_RX_RING_SIZE - 1))
			desc->opts1 = cpu_to_le32(DescOwn | RingEnd |
						  cp->rx_buf_sz);
		else
			desc->opts1 = cpu_to_le32(DescOwn | cp->rx_buf_sz);
		rx_tail = NEXT_RX(rx_tail);
	}

	cp->rx_tail = rx_tail;

	/* if we did not reach work limit, then we're done with
	 * this round of polling
	 */
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Eric Dumazet 已提交
557
	if (rx < budget && napi_complete_done(napi, rx)) {
558 559
		unsigned long flags;

560
		spin_lock_irqsave(&cp->lock, flags);
561
		cpw16_f(IntrMask, cp_intr_mask);
562
		spin_unlock_irqrestore(&cp->lock, flags);
L
Linus Torvalds 已提交
563 564
	}

565
	return rx;
L
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566 567
}

568
static irqreturn_t cp_interrupt (int irq, void *dev_instance)
L
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569 570 571
{
	struct net_device *dev = dev_instance;
	struct cp_private *cp;
572
	int handled = 0;
L
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573 574 575 576 577 578
	u16 status;

	if (unlikely(dev == NULL))
		return IRQ_NONE;
	cp = netdev_priv(dev);

579 580
	spin_lock(&cp->lock);

L
Linus Torvalds 已提交
581 582
	status = cpr16(IntrStatus);
	if (!status || (status == 0xFFFF))
583 584 585
		goto out_unlock;

	handled = 1;
L
Linus Torvalds 已提交
586

587 588
	netif_dbg(cp, intr, dev, "intr, status %04x cmd %02x cpcmd %04x\n",
		  status, cpr8(Cmd), cpr16(CpCmd));
L
Linus Torvalds 已提交
589 590 591 592 593 594

	cpw16(IntrStatus, status & ~cp_rx_intr_mask);

	/* close possible race's with dev_close */
	if (unlikely(!netif_running(dev))) {
		cpw16(IntrMask, 0);
595
		goto out_unlock;
L
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596 597 598
	}

	if (status & (RxOK | RxErr | RxEmpty | RxFIFOOvr))
599
		if (napi_schedule_prep(&cp->napi)) {
L
Linus Torvalds 已提交
600
			cpw16_f(IntrMask, cp_norx_intr_mask);
601
			__napi_schedule(&cp->napi);
L
Linus Torvalds 已提交
602 603 604 605 606
		}

	if (status & (TxOK | TxErr | TxEmpty | SWInt))
		cp_tx(cp);
	if (status & LinkChg)
607
		mii_check_media(&cp->mii_if, netif_msg_link(cp), false);
L
Linus Torvalds 已提交
608 609 610 611 612 613 614


	if (status & PciErr) {
		u16 pci_status;

		pci_read_config_word(cp->pdev, PCI_STATUS, &pci_status);
		pci_write_config_word(cp->pdev, PCI_STATUS, pci_status);
615 616
		netdev_err(dev, "PCI bus error, status=%04x, PCI status=%04x\n",
			   status, pci_status);
L
Linus Torvalds 已提交
617 618 619 620

		/* TODO: reset hardware */
	}

621 622 623 624
out_unlock:
	spin_unlock(&cp->lock);

	return IRQ_RETVAL(handled);
L
Linus Torvalds 已提交
625 626
}

627 628 629 630 631 632 633
#ifdef CONFIG_NET_POLL_CONTROLLER
/*
 * Polling receive - used by netconsole and other diagnostic tools
 * to allow network i/o with interrupts disabled.
 */
static void cp_poll_controller(struct net_device *dev)
{
634 635 636 637 638 639
	struct cp_private *cp = netdev_priv(dev);
	const int irq = cp->pdev->irq;

	disable_irq(irq);
	cp_interrupt(irq, dev);
	enable_irq(irq);
640 641 642
}
#endif

L
Linus Torvalds 已提交
643 644 645 646
static void cp_tx (struct cp_private *cp)
{
	unsigned tx_head = cp->tx_head;
	unsigned tx_tail = cp->tx_tail;
D
David Woodhouse 已提交
647
	unsigned bytes_compl = 0, pkts_compl = 0;
L
Linus Torvalds 已提交
648 649

	while (tx_tail != tx_head) {
F
Francois Romieu 已提交
650
		struct cp_desc *txd = cp->tx_ring + tx_tail;
L
Linus Torvalds 已提交
651 652 653 654
		struct sk_buff *skb;
		u32 status;

		rmb();
F
Francois Romieu 已提交
655
		status = le32_to_cpu(txd->opts1);
L
Linus Torvalds 已提交
656 657 658
		if (status & DescOwn)
			break;

659
		skb = cp->tx_skb[tx_tail];
660
		BUG_ON(!skb);
L
Linus Torvalds 已提交
661

662
		dma_unmap_single(&cp->pdev->dev, le64_to_cpu(txd->addr),
663
				 cp->tx_opts[tx_tail] & 0xffff,
664
				 PCI_DMA_TODEVICE);
L
Linus Torvalds 已提交
665 666 667

		if (status & LastFrag) {
			if (status & (TxError | TxFIFOUnder)) {
668 669
				netif_dbg(cp, tx_err, cp->dev,
					  "tx err, status 0x%x\n", status);
670
				cp->dev->stats.tx_errors++;
L
Linus Torvalds 已提交
671
				if (status & TxOWC)
672
					cp->dev->stats.tx_window_errors++;
L
Linus Torvalds 已提交
673
				if (status & TxMaxCol)
674
					cp->dev->stats.tx_aborted_errors++;
L
Linus Torvalds 已提交
675
				if (status & TxLinkFail)
676
					cp->dev->stats.tx_carrier_errors++;
L
Linus Torvalds 已提交
677
				if (status & TxFIFOUnder)
678
					cp->dev->stats.tx_fifo_errors++;
L
Linus Torvalds 已提交
679
			} else {
680
				cp->dev->stats.collisions +=
L
Linus Torvalds 已提交
681
					((status >> TxColCntShift) & TxColCntMask);
682 683
				cp->dev->stats.tx_packets++;
				cp->dev->stats.tx_bytes += skb->len;
684 685
				netif_dbg(cp, tx_done, cp->dev,
					  "tx done, slot %d\n", tx_tail);
L
Linus Torvalds 已提交
686
			}
687 688
			bytes_compl += skb->len;
			pkts_compl++;
L
Linus Torvalds 已提交
689 690 691
			dev_kfree_skb_irq(skb);
		}

692
		cp->tx_skb[tx_tail] = NULL;
L
Linus Torvalds 已提交
693 694 695 696 697 698

		tx_tail = NEXT_TX(tx_tail);
	}

	cp->tx_tail = tx_tail;

D
David Woodhouse 已提交
699
	netdev_completed_queue(cp->dev, pkts_compl, bytes_compl);
L
Linus Torvalds 已提交
700 701 702 703
	if (TX_BUFFS_AVAIL(cp) > (MAX_SKB_FRAGS + 1))
		netif_wake_queue(cp->dev);
}

704 705
static inline u32 cp_tx_vlan_tag(struct sk_buff *skb)
{
706 707
	return skb_vlan_tag_present(skb) ?
		TxVlanTag | swab16(skb_vlan_tag_get(skb)) : 0x00;
708 709
}

710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725
static void unwind_tx_frag_mapping(struct cp_private *cp, struct sk_buff *skb,
				   int first, int entry_last)
{
	int frag, index;
	struct cp_desc *txd;
	skb_frag_t *this_frag;
	for (frag = 0; frag+first < entry_last; frag++) {
		index = first+frag;
		cp->tx_skb[index] = NULL;
		txd = &cp->tx_ring[index];
		this_frag = &skb_shinfo(skb)->frags[frag];
		dma_unmap_single(&cp->pdev->dev, le64_to_cpu(txd->addr),
				 skb_frag_size(this_frag), PCI_DMA_TODEVICE);
	}
}

726 727
static netdev_tx_t cp_start_xmit (struct sk_buff *skb,
					struct net_device *dev)
L
Linus Torvalds 已提交
728 729 730
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned entry;
731
	u32 eor, opts1;
732
	unsigned long intr_flags;
733
	__le32 opts2;
J
Jeff Garzik 已提交
734
	int mss = 0;
L
Linus Torvalds 已提交
735

736
	spin_lock_irqsave(&cp->lock, intr_flags);
L
Linus Torvalds 已提交
737 738 739 740

	/* This is a hard error, log it. */
	if (TX_BUFFS_AVAIL(cp) <= (skb_shinfo(skb)->nr_frags + 1)) {
		netif_stop_queue(dev);
741
		spin_unlock_irqrestore(&cp->lock, intr_flags);
742
		netdev_err(dev, "BUG! Tx Ring full when queue awake!\n");
743
		return NETDEV_TX_BUSY;
L
Linus Torvalds 已提交
744 745 746 747
	}

	entry = cp->tx_head;
	eor = (entry == (CP_TX_RING_SIZE - 1)) ? RingEnd : 0;
748
	mss = skb_shinfo(skb)->gso_size;
J
Jeff Garzik 已提交
749

D
David Woodhouse 已提交
750 751 752 753 754 755
	if (mss > MSSMask) {
		WARN_ONCE(1, "Net bug: GSO size %d too large for 8139CP\n",
			  mss);
		goto out_dma_error;
	}

756
	opts2 = cpu_to_le32(cp_tx_vlan_tag(skb));
757 758
	opts1 = DescOwn;
	if (mss)
D
David Woodhouse 已提交
759
		opts1 |= LargeSend | (mss << MSSShift);
760 761 762 763 764 765 766 767 768 769 770 771
	else if (skb->ip_summed == CHECKSUM_PARTIAL) {
		const struct iphdr *ip = ip_hdr(skb);
		if (ip->protocol == IPPROTO_TCP)
			opts1 |= IPCS | TCPCS;
		else if (ip->protocol == IPPROTO_UDP)
			opts1 |= IPCS | UDPCS;
		else {
			WARN_ONCE(1,
				  "Net bug: asked to checksum invalid Legacy IP packet\n");
			goto out_dma_error;
		}
	}
772

L
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773 774 775 776 777 778
	if (skb_shinfo(skb)->nr_frags == 0) {
		struct cp_desc *txd = &cp->tx_ring[entry];
		u32 len;
		dma_addr_t mapping;

		len = skb->len;
779
		mapping = dma_map_single(&cp->pdev->dev, skb->data, len, PCI_DMA_TODEVICE);
780 781 782
		if (dma_mapping_error(&cp->pdev->dev, mapping))
			goto out_dma_error;

783
		txd->opts2 = opts2;
L
Linus Torvalds 已提交
784 785 786
		txd->addr = cpu_to_le64(mapping);
		wmb();

787
		opts1 |= eor | len | FirstFrag | LastFrag;
J
Jeff Garzik 已提交
788

789
		txd->opts1 = cpu_to_le32(opts1);
L
Linus Torvalds 已提交
790 791
		wmb();

792
		cp->tx_skb[entry] = skb;
793
		cp->tx_opts[entry] = opts1;
794 795
		netif_dbg(cp, tx_queued, cp->dev, "tx queued, slot %d, skblen %d\n",
			  entry, skb->len);
L
Linus Torvalds 已提交
796 797
	} else {
		struct cp_desc *txd;
798
		u32 first_len, first_eor, ctrl;
L
Linus Torvalds 已提交
799 800 801 802 803 804 805 806
		dma_addr_t first_mapping;
		int frag, first_entry = entry;

		/* We must give this initial chunk to the device last.
		 * Otherwise we could race with the device.
		 */
		first_eor = eor;
		first_len = skb_headlen(skb);
807
		first_mapping = dma_map_single(&cp->pdev->dev, skb->data,
L
Linus Torvalds 已提交
808
					       first_len, PCI_DMA_TODEVICE);
809 810 811
		if (dma_mapping_error(&cp->pdev->dev, first_mapping))
			goto out_dma_error;

812
		cp->tx_skb[entry] = skb;
L
Linus Torvalds 已提交
813 814

		for (frag = 0; frag < skb_shinfo(skb)->nr_frags; frag++) {
E
Eric Dumazet 已提交
815
			const skb_frag_t *this_frag = &skb_shinfo(skb)->frags[frag];
L
Linus Torvalds 已提交
816 817 818
			u32 len;
			dma_addr_t mapping;

819 820
			entry = NEXT_TX(entry);

E
Eric Dumazet 已提交
821
			len = skb_frag_size(this_frag);
822
			mapping = dma_map_single(&cp->pdev->dev,
823
						 skb_frag_address(this_frag),
L
Linus Torvalds 已提交
824
						 len, PCI_DMA_TODEVICE);
825 826 827 828 829
			if (dma_mapping_error(&cp->pdev->dev, mapping)) {
				unwind_tx_frag_mapping(cp, skb, first_entry, entry);
				goto out_dma_error;
			}

L
Linus Torvalds 已提交
830 831
			eor = (entry == (CP_TX_RING_SIZE - 1)) ? RingEnd : 0;

832
			ctrl = opts1 | eor | len;
L
Linus Torvalds 已提交
833 834 835 836 837

			if (frag == skb_shinfo(skb)->nr_frags - 1)
				ctrl |= LastFrag;

			txd = &cp->tx_ring[entry];
838
			txd->opts2 = opts2;
L
Linus Torvalds 已提交
839 840 841 842 843
			txd->addr = cpu_to_le64(mapping);
			wmb();

			txd->opts1 = cpu_to_le32(ctrl);
			wmb();
844 845

			cp->tx_opts[entry] = ctrl;
846
			cp->tx_skb[entry] = skb;
L
Linus Torvalds 已提交
847 848 849
		}

		txd = &cp->tx_ring[first_entry];
850
		txd->opts2 = opts2;
L
Linus Torvalds 已提交
851 852 853
		txd->addr = cpu_to_le64(first_mapping);
		wmb();

854
		ctrl = opts1 | first_eor | first_len | FirstFrag;
855
		txd->opts1 = cpu_to_le32(ctrl);
L
Linus Torvalds 已提交
856
		wmb();
857

858
		cp->tx_opts[first_entry] = ctrl;
859 860
		netif_dbg(cp, tx_queued, cp->dev, "tx queued, slots %d-%d, skblen %d\n",
			  first_entry, entry, skb->len);
L
Linus Torvalds 已提交
861
	}
862
	cp->tx_head = NEXT_TX(entry);
D
David Woodhouse 已提交
863 864

	netdev_sent_queue(dev, skb->len);
L
Linus Torvalds 已提交
865 866 867
	if (TX_BUFFS_AVAIL(cp) <= (MAX_SKB_FRAGS + 1))
		netif_stop_queue(dev);

868
out_unlock:
869
	spin_unlock_irqrestore(&cp->lock, intr_flags);
L
Linus Torvalds 已提交
870 871 872

	cpw8(TxPoll, NormalTxPoll);

873
	return NETDEV_TX_OK;
874
out_dma_error:
875
	dev_kfree_skb_any(skb);
876 877
	cp->dev->stats.tx_dropped++;
	goto out_unlock;
L
Linus Torvalds 已提交
878 879 880 881 882 883 884 885 886
}

/* Set or clear the multicast filter for this adaptor.
   This routine is not state sensitive and need not be SMP locked. */

static void __cp_set_rx_mode (struct net_device *dev)
{
	struct cp_private *cp = netdev_priv(dev);
	u32 mc_filter[2];	/* Multicast hash filter */
887
	int rx_mode;
L
Linus Torvalds 已提交
888 889 890 891 892 893 894 895

	/* Note: do not reorder, GCC is clever about common statements. */
	if (dev->flags & IFF_PROMISC) {
		/* Unconditionally log net taps. */
		rx_mode =
		    AcceptBroadcast | AcceptMulticast | AcceptMyPhys |
		    AcceptAllPhys;
		mc_filter[1] = mc_filter[0] = 0xffffffff;
896
	} else if ((netdev_mc_count(dev) > multicast_filter_limit) ||
897
		   (dev->flags & IFF_ALLMULTI)) {
L
Linus Torvalds 已提交
898 899 900 901
		/* Too many to filter perfectly -- accept all multicasts. */
		rx_mode = AcceptBroadcast | AcceptMulticast | AcceptMyPhys;
		mc_filter[1] = mc_filter[0] = 0xffffffff;
	} else {
902
		struct netdev_hw_addr *ha;
L
Linus Torvalds 已提交
903 904
		rx_mode = AcceptBroadcast | AcceptMyPhys;
		mc_filter[1] = mc_filter[0] = 0;
905 906
		netdev_for_each_mc_addr(ha, dev) {
			int bit_nr = ether_crc(ETH_ALEN, ha->addr) >> 26;
L
Linus Torvalds 已提交
907 908 909 910 911 912 913

			mc_filter[bit_nr >> 5] |= 1 << (bit_nr & 31);
			rx_mode |= AcceptMulticast;
		}
	}

	/* We can safely update without stopping the chip. */
914 915 916
	cp->rx_config = cp_rx_config | rx_mode;
	cpw32_f(RxConfig, cp->rx_config);

L
Linus Torvalds 已提交
917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933
	cpw32_f (MAR0 + 0, mc_filter[0]);
	cpw32_f (MAR0 + 4, mc_filter[1]);
}

static void cp_set_rx_mode (struct net_device *dev)
{
	unsigned long flags;
	struct cp_private *cp = netdev_priv(dev);

	spin_lock_irqsave (&cp->lock, flags);
	__cp_set_rx_mode(dev);
	spin_unlock_irqrestore (&cp->lock, flags);
}

static void __cp_get_stats(struct cp_private *cp)
{
	/* only lower 24 bits valid; write any value to clear */
934
	cp->dev->stats.rx_missed_errors += (cpr32 (RxMissed) & 0xffffff);
L
Linus Torvalds 已提交
935 936 937 938 939 940 941 942 943 944 945 946 947 948
	cpw32 (RxMissed, 0);
}

static struct net_device_stats *cp_get_stats(struct net_device *dev)
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned long flags;

	/* The chip only need report frame silently dropped. */
	spin_lock_irqsave(&cp->lock, flags);
 	if (netif_running(dev) && netif_device_present(dev))
 		__cp_get_stats(cp);
	spin_unlock_irqrestore(&cp->lock, flags);

949
	return &dev->stats;
L
Linus Torvalds 已提交
950 951 952 953 954 955 956 957 958 959 960 961
}

static void cp_stop_hw (struct cp_private *cp)
{
	cpw16(IntrStatus, ~(cpr16(IntrStatus)));
	cpw16_f(IntrMask, 0);
	cpw8(Cmd, 0);
	cpw16_f(CpCmd, 0);
	cpw16_f(IntrStatus, ~(cpr16(IntrStatus)));

	cp->rx_tail = 0;
	cp->tx_head = cp->tx_tail = 0;
D
David Woodhouse 已提交
962 963

	netdev_reset_queue(cp->dev);
L
Linus Torvalds 已提交
964 965 966 967 968 969 970 971 972 973 974 975
}

static void cp_reset_hw (struct cp_private *cp)
{
	unsigned work = 1000;

	cpw8(Cmd, CmdReset);

	while (work--) {
		if (!(cpr8(Cmd) & CmdReset))
			return;

976
		schedule_timeout_uninterruptible(10);
L
Linus Torvalds 已提交
977 978
	}

979
	netdev_err(cp->dev, "hardware reset timeout\n");
L
Linus Torvalds 已提交
980 981 982 983
}

static inline void cp_start_hw (struct cp_private *cp)
{
984 985
	dma_addr_t ring_dma;

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986
	cpw16(CpCmd, cp->cpcmd);
987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012

	/*
	 * These (at least TxRingAddr) need to be configured after the
	 * corresponding bits in CpCmd are enabled. Datasheet v1.6 §6.33
	 * (C+ Command Register) recommends that these and more be configured
	 * *after* the [RT]xEnable bits in CpCmd are set. And on some hardware
	 * it's been observed that the TxRingAddr is actually reset to garbage
	 * when C+ mode Tx is enabled in CpCmd.
	 */
	cpw32_f(HiTxRingAddr, 0);
	cpw32_f(HiTxRingAddr + 4, 0);

	ring_dma = cp->ring_dma;
	cpw32_f(RxRingAddr, ring_dma & 0xffffffff);
	cpw32_f(RxRingAddr + 4, (ring_dma >> 16) >> 16);

	ring_dma += sizeof(struct cp_desc) * CP_RX_RING_SIZE;
	cpw32_f(TxRingAddr, ring_dma & 0xffffffff);
	cpw32_f(TxRingAddr + 4, (ring_dma >> 16) >> 16);

	/*
	 * Strictly speaking, the datasheet says this should be enabled
	 * *before* setting the descriptor addresses. But what, then, would
	 * prevent it from doing DMA to random unconfigured addresses?
	 * This variant appears to work fine.
	 */
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	cpw8(Cmd, RxOn | TxOn);
D
David Woodhouse 已提交
1014 1015

	netdev_reset_queue(cp->dev);
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}

1018 1019 1020 1021 1022
static void cp_enable_irq(struct cp_private *cp)
{
	cpw16_f(IntrMask, cp_intr_mask);
}

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static void cp_init_hw (struct cp_private *cp)
{
	struct net_device *dev = cp->dev;

	cp_reset_hw(cp);

	cpw8_f (Cfg9346, Cfg9346_Unlock);

	/* Restore our idea of the MAC address. */
A
Al Viro 已提交
1032 1033
	cpw32_f (MAC0 + 0, le32_to_cpu (*(__le32 *) (dev->dev_addr + 0)));
	cpw32_f (MAC0 + 4, le32_to_cpu (*(__le32 *) (dev->dev_addr + 4)));
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	cp_start_hw(cp);
	cpw8(TxThresh, 0x06); /* XXX convert magic num to a constant */

	__cp_set_rx_mode(dev);
	cpw32_f (TxConfig, IFG | (TX_DMA_BURST << TxDMAShift));

	cpw8(Config1, cpr8(Config1) | DriverLoaded | PMEnable);
	/* Disable Wake-on-LAN. Can be turned on with ETHTOOL_SWOL */
	cpw8(Config3, PARMEnable);
	cp->wol_enabled = 0;

1046
	cpw8(Config5, cpr8(Config5) & PMEStatus);
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	cpw16(MultiIntr, 0);

	cpw8_f(Cfg9346, Cfg9346_Lock);
}

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1053
static int cp_refill_rx(struct cp_private *cp)
L
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1054
{
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1055
	struct net_device *dev = cp->dev;
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	unsigned i;

	for (i = 0; i < CP_RX_RING_SIZE; i++) {
		struct sk_buff *skb;
F
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1060
		dma_addr_t mapping;
L
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1061

1062
		skb = netdev_alloc_skb_ip_align(dev, cp->rx_buf_sz);
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1063 1064 1065
		if (!skb)
			goto err_out;

1066 1067
		mapping = dma_map_single(&cp->pdev->dev, skb->data,
					 cp->rx_buf_sz, PCI_DMA_FROMDEVICE);
1068 1069 1070 1071
		if (dma_mapping_error(&cp->pdev->dev, mapping)) {
			kfree_skb(skb);
			goto err_out;
		}
1072
		cp->rx_skb[i] = skb;
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1073 1074

		cp->rx_ring[i].opts2 = 0;
F
Francois Romieu 已提交
1075
		cp->rx_ring[i].addr = cpu_to_le64(mapping);
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1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090
		if (i == (CP_RX_RING_SIZE - 1))
			cp->rx_ring[i].opts1 =
				cpu_to_le32(DescOwn | RingEnd | cp->rx_buf_sz);
		else
			cp->rx_ring[i].opts1 =
				cpu_to_le32(DescOwn | cp->rx_buf_sz);
	}

	return 0;

err_out:
	cp_clean_rings(cp);
	return -ENOMEM;
}

1091 1092 1093 1094 1095 1096
static void cp_init_rings_index (struct cp_private *cp)
{
	cp->rx_tail = 0;
	cp->tx_head = cp->tx_tail = 0;
}

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static int cp_init_rings (struct cp_private *cp)
{
	memset(cp->tx_ring, 0, sizeof(struct cp_desc) * CP_TX_RING_SIZE);
	cp->tx_ring[CP_TX_RING_SIZE - 1].opts1 = cpu_to_le32(RingEnd);
1101
	memset(cp->tx_opts, 0, sizeof(cp->tx_opts));
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1103
	cp_init_rings_index(cp);
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	return cp_refill_rx (cp);
}

static int cp_alloc_rings (struct cp_private *cp)
{
1110
	struct device *d = &cp->pdev->dev;
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	void *mem;
1112
	int rc;
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1113

1114
	mem = dma_alloc_coherent(d, CP_RING_BYTES, &cp->ring_dma, GFP_KERNEL);
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	if (!mem)
		return -ENOMEM;

	cp->rx_ring = mem;
	cp->tx_ring = &cp->rx_ring[CP_RX_RING_SIZE];

1121 1122 1123 1124 1125
	rc = cp_init_rings(cp);
	if (rc < 0)
		dma_free_coherent(d, CP_RING_BYTES, cp->rx_ring, cp->ring_dma);

	return rc;
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}

static void cp_clean_rings (struct cp_private *cp)
{
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	struct cp_desc *desc;
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	unsigned i;

	for (i = 0; i < CP_RX_RING_SIZE; i++) {
1134
		if (cp->rx_skb[i]) {
F
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			desc = cp->rx_ring + i;
1136
			dma_unmap_single(&cp->pdev->dev,le64_to_cpu(desc->addr),
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					 cp->rx_buf_sz, PCI_DMA_FROMDEVICE);
1138
			dev_kfree_skb_any(cp->rx_skb[i]);
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		}
	}

	for (i = 0; i < CP_TX_RING_SIZE; i++) {
1143 1144
		if (cp->tx_skb[i]) {
			struct sk_buff *skb = cp->tx_skb[i];
1145

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			desc = cp->tx_ring + i;
1147
			dma_unmap_single(&cp->pdev->dev,le64_to_cpu(desc->addr),
1148 1149
					 le32_to_cpu(desc->opts1) & 0xffff,
					 PCI_DMA_TODEVICE);
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			if (le32_to_cpu(desc->opts1) & LastFrag)
1151
				dev_kfree_skb_any(skb);
1152
			cp->dev->stats.tx_dropped++;
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		}
	}
1155
	netdev_reset_queue(cp->dev);
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1157 1158
	memset(cp->rx_ring, 0, sizeof(struct cp_desc) * CP_RX_RING_SIZE);
	memset(cp->tx_ring, 0, sizeof(struct cp_desc) * CP_TX_RING_SIZE);
1159
	memset(cp->tx_opts, 0, sizeof(cp->tx_opts));
1160

1161
	memset(cp->rx_skb, 0, sizeof(struct sk_buff *) * CP_RX_RING_SIZE);
1162
	memset(cp->tx_skb, 0, sizeof(struct sk_buff *) * CP_TX_RING_SIZE);
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}

static void cp_free_rings (struct cp_private *cp)
{
	cp_clean_rings(cp);
1168 1169
	dma_free_coherent(&cp->pdev->dev, CP_RING_BYTES, cp->rx_ring,
			  cp->ring_dma);
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	cp->rx_ring = NULL;
	cp->tx_ring = NULL;
}

static int cp_open (struct net_device *dev)
{
	struct cp_private *cp = netdev_priv(dev);
1177
	const int irq = cp->pdev->irq;
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	int rc;

1180
	netif_dbg(cp, ifup, dev, "enabling interface\n");
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	rc = cp_alloc_rings(cp);
	if (rc)
		return rc;

1186 1187
	napi_enable(&cp->napi);

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	cp_init_hw(cp);

1190
	rc = request_irq(irq, cp_interrupt, IRQF_SHARED, dev->name, dev);
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	if (rc)
		goto err_out_hw;

1194 1195
	cp_enable_irq(cp);

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	netif_carrier_off(dev);
1197
	mii_check_media(&cp->mii_if, netif_msg_link(cp), true);
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	netif_start_queue(dev);

	return 0;

err_out_hw:
1203
	napi_disable(&cp->napi);
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	cp_stop_hw(cp);
	cp_free_rings(cp);
	return rc;
}

static int cp_close (struct net_device *dev)
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned long flags;

1214 1215
	napi_disable(&cp->napi);

1216
	netif_dbg(cp, ifdown, dev, "disabling interface\n");
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	spin_lock_irqsave(&cp->lock, flags);

	netif_stop_queue(dev);
	netif_carrier_off(dev);

	cp_stop_hw(cp);

	spin_unlock_irqrestore(&cp->lock, flags);

1227
	free_irq(cp->pdev->irq, dev);
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	cp_free_rings(cp);
	return 0;
}

1233 1234 1235 1236
static void cp_tx_timeout(struct net_device *dev)
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned long flags;
1237
	int rc, i;
1238

1239 1240 1241
	netdev_warn(dev, "Transmit timeout, status %2x %4x %4x %4x\n",
		    cpr8(Cmd), cpr16(CpCmd),
		    cpr16(IntrStatus), cpr16(IntrMask));
1242 1243 1244

	spin_lock_irqsave(&cp->lock, flags);

1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255
	netif_dbg(cp, tx_err, cp->dev, "TX ring head %d tail %d desc %x\n",
		  cp->tx_head, cp->tx_tail, cpr16(TxDmaOkLowDesc));
	for (i = 0; i < CP_TX_RING_SIZE; i++) {
		netif_dbg(cp, tx_err, cp->dev,
			  "TX slot %d @%p: %08x (%08x) %08x %llx %p\n",
			  i, &cp->tx_ring[i], le32_to_cpu(cp->tx_ring[i].opts1),
			  cp->tx_opts[i], le32_to_cpu(cp->tx_ring[i].opts2),
			  le64_to_cpu(cp->tx_ring[i].addr),
			  cp->tx_skb[i]);
	}

1256 1257 1258 1259
	cp_stop_hw(cp);
	cp_clean_rings(cp);
	rc = cp_init_rings(cp);
	cp_start_hw(cp);
1260
	__cp_set_rx_mode(dev);
1261
	cpw16_f(IntrMask, cp_norx_intr_mask);
1262 1263

	netif_wake_queue(dev);
1264
	napi_schedule_irqoff(&cp->napi);
1265 1266 1267 1268

	spin_unlock_irqrestore(&cp->lock, flags);
}

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static int cp_change_mtu(struct net_device *dev, int new_mtu)
{
	struct cp_private *cp = netdev_priv(dev);

	/* if network interface not up, no need for complexity */
	if (!netif_running(dev)) {
		dev->mtu = new_mtu;
		cp_set_rxbufsize(cp);	/* set new rx buf size */
		return 0;
	}

1280 1281
	/* network IS up, close it, reset MTU, and come up again. */
	cp_close(dev);
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	dev->mtu = new_mtu;
1283 1284
	cp_set_rxbufsize(cp);
	return cp_open(dev);
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}

1287
static const char mii_2_8139_map[8] = {
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	BasicModeCtrl,
	BasicModeStatus,
	0,
	0,
	NWayAdvert,
	NWayLPAR,
	NWayExpansion,
	0
};

static int mdio_read(struct net_device *dev, int phy_id, int location)
{
	struct cp_private *cp = netdev_priv(dev);

	return location < 8 && mii_2_8139_map[location] ?
	       readw(cp->regs + mii_2_8139_map[location]) : 0;
}


static void mdio_write(struct net_device *dev, int phy_id, int location,
		       int value)
{
	struct cp_private *cp = netdev_priv(dev);

	if (location == 0) {
		cpw8(Cfg9346, Cfg9346_Unlock);
		cpw16(BasicModeCtrl, value);
		cpw8(Cfg9346, Cfg9346_Lock);
	} else if (location < 8 && mii_2_8139_map[location])
		cpw16(mii_2_8139_map[location], value);
}

/* Set the ethtool Wake-on-LAN settings */
static int netdev_set_wol (struct cp_private *cp,
			   const struct ethtool_wolinfo *wol)
{
	u8 options;

	options = cpr8 (Config3) & ~(LinkUp | MagicPacket);
	/* If WOL is being disabled, no need for complexity */
	if (wol->wolopts) {
		if (wol->wolopts & WAKE_PHY)	options |= LinkUp;
		if (wol->wolopts & WAKE_MAGIC)	options |= MagicPacket;
	}

	cpw8 (Cfg9346, Cfg9346_Unlock);
	cpw8 (Config3, options);
	cpw8 (Cfg9346, Cfg9346_Lock);

	options = 0; /* Paranoia setting */
	options = cpr8 (Config5) & ~(UWF | MWF | BWF);
	/* If WOL is being disabled, no need for complexity */
	if (wol->wolopts) {
		if (wol->wolopts & WAKE_UCAST)  options |= UWF;
		if (wol->wolopts & WAKE_BCAST)	options |= BWF;
		if (wol->wolopts & WAKE_MCAST)	options |= MWF;
	}

	cpw8 (Config5, options);

	cp->wol_enabled = (wol->wolopts) ? 1 : 0;

	return 0;
}

/* Get the ethtool Wake-on-LAN settings */
static void netdev_get_wol (struct cp_private *cp,
	             struct ethtool_wolinfo *wol)
{
	u8 options;

	wol->wolopts   = 0; /* Start from scratch */
	wol->supported = WAKE_PHY   | WAKE_BCAST | WAKE_MAGIC |
		         WAKE_MCAST | WAKE_UCAST;
	/* We don't need to go on if WOL is disabled */
	if (!cp->wol_enabled) return;
1364

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	options        = cpr8 (Config3);
	if (options & LinkUp)        wol->wolopts |= WAKE_PHY;
	if (options & MagicPacket)   wol->wolopts |= WAKE_MAGIC;

	options        = 0; /* Paranoia setting */
	options        = cpr8 (Config5);
	if (options & UWF)           wol->wolopts |= WAKE_UCAST;
	if (options & BWF)           wol->wolopts |= WAKE_BCAST;
	if (options & MWF)           wol->wolopts |= WAKE_MCAST;
}

static void cp_get_drvinfo (struct net_device *dev, struct ethtool_drvinfo *info)
{
	struct cp_private *cp = netdev_priv(dev);

1380 1381 1382
	strlcpy(info->driver, DRV_NAME, sizeof(info->driver));
	strlcpy(info->version, DRV_VERSION, sizeof(info->version));
	strlcpy(info->bus_info, pci_name(cp->pdev), sizeof(info->bus_info));
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}

R
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1385 1386 1387 1388 1389 1390 1391 1392 1393
static void cp_get_ringparam(struct net_device *dev,
				struct ethtool_ringparam *ring)
{
	ring->rx_max_pending = CP_RX_RING_SIZE;
	ring->tx_max_pending = CP_TX_RING_SIZE;
	ring->rx_pending = CP_RX_RING_SIZE;
	ring->tx_pending = CP_TX_RING_SIZE;
}

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static int cp_get_regs_len(struct net_device *dev)
{
	return CP_REGS_SIZE;
}

1399
static int cp_get_sset_count (struct net_device *dev, int sset)
L
Linus Torvalds 已提交
1400
{
1401 1402 1403 1404 1405 1406
	switch (sset) {
	case ETH_SS_STATS:
		return CP_NUM_STATS;
	default:
		return -EOPNOTSUPP;
	}
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}

1409 1410
static int cp_get_link_ksettings(struct net_device *dev,
				 struct ethtool_link_ksettings *cmd)
L
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{
	struct cp_private *cp = netdev_priv(dev);
	int rc;
	unsigned long flags;

	spin_lock_irqsave(&cp->lock, flags);
1417
	rc = mii_ethtool_get_link_ksettings(&cp->mii_if, cmd);
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	spin_unlock_irqrestore(&cp->lock, flags);

	return rc;
}

1423 1424
static int cp_set_link_ksettings(struct net_device *dev,
				 const struct ethtool_link_ksettings *cmd)
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1425 1426 1427 1428 1429 1430
{
	struct cp_private *cp = netdev_priv(dev);
	int rc;
	unsigned long flags;

	spin_lock_irqsave(&cp->lock, flags);
1431
	rc = mii_ethtool_set_link_ksettings(&cp->mii_if, cmd);
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	spin_unlock_irqrestore(&cp->lock, flags);

	return rc;
}

static int cp_nway_reset(struct net_device *dev)
{
	struct cp_private *cp = netdev_priv(dev);
	return mii_nway_restart(&cp->mii_if);
}

static u32 cp_get_msglevel(struct net_device *dev)
{
	struct cp_private *cp = netdev_priv(dev);
	return cp->msg_enable;
}

static void cp_set_msglevel(struct net_device *dev, u32 value)
{
	struct cp_private *cp = netdev_priv(dev);
	cp->msg_enable = value;
}

1455
static int cp_set_features(struct net_device *dev, netdev_features_t features)
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1456 1457
{
	struct cp_private *cp = netdev_priv(dev);
1458
	unsigned long flags;
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1459

1460 1461
	if (!((dev->features ^ features) & NETIF_F_RXCSUM))
		return 0;
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1462

1463
	spin_lock_irqsave(&cp->lock, flags);
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1464

1465 1466
	if (features & NETIF_F_RXCSUM)
		cp->cpcmd |= RxChkSum;
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1467
	else
1468
		cp->cpcmd &= ~RxChkSum;
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1469

1470
	if (features & NETIF_F_HW_VLAN_CTAG_RX)
1471 1472 1473 1474
		cp->cpcmd |= RxVlanOn;
	else
		cp->cpcmd &= ~RxVlanOn;

1475 1476
	cpw16_f(CpCmd, cp->cpcmd);
	spin_unlock_irqrestore(&cp->lock, flags);
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	return 0;
}

static void cp_get_regs(struct net_device *dev, struct ethtool_regs *regs,
		        void *p)
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned long flags;

	if (regs->len < CP_REGS_SIZE)
		return /* -EINVAL */;

	regs->version = CP_REGS_VER;

	spin_lock_irqsave(&cp->lock, flags);
	memcpy_fromio(p, cp->regs, CP_REGS_SIZE);
	spin_unlock_irqrestore(&cp->lock, flags);
}

static void cp_get_wol (struct net_device *dev, struct ethtool_wolinfo *wol)
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned long flags;

	spin_lock_irqsave (&cp->lock, flags);
	netdev_get_wol (cp, wol);
	spin_unlock_irqrestore (&cp->lock, flags);
}

static int cp_set_wol (struct net_device *dev, struct ethtool_wolinfo *wol)
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned long flags;
	int rc;

	spin_lock_irqsave (&cp->lock, flags);
	rc = netdev_set_wol (cp, wol);
	spin_unlock_irqrestore (&cp->lock, flags);

	return rc;
}

static void cp_get_strings (struct net_device *dev, u32 stringset, u8 *buf)
{
	switch (stringset) {
	case ETH_SS_STATS:
		memcpy(buf, &ethtool_stats_keys, sizeof(ethtool_stats_keys));
		break;
	default:
		BUG();
		break;
	}
}

static void cp_get_ethtool_stats (struct net_device *dev,
				  struct ethtool_stats *estats, u64 *tmp_stats)
{
	struct cp_private *cp = netdev_priv(dev);
1536 1537
	struct cp_dma_stats *nic_stats;
	dma_addr_t dma;
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	int i;

1540 1541
	nic_stats = dma_alloc_coherent(&cp->pdev->dev, sizeof(*nic_stats),
				       &dma, GFP_KERNEL);
1542 1543
	if (!nic_stats)
		return;
1544

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	/* begin NIC statistics dump */
1546
	cpw32(StatsAddr + 4, (u64)dma >> 32);
1547
	cpw32(StatsAddr, ((u64)dma & DMA_BIT_MASK(32)) | DumpStats);
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	cpr32(StatsAddr);

1550
	for (i = 0; i < 1000; i++) {
L
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1551 1552
		if ((cpr32(StatsAddr) & DumpStats) == 0)
			break;
1553
		udelay(10);
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1554
	}
1555 1556
	cpw32(StatsAddr, 0);
	cpw32(StatsAddr + 4, 0);
1557
	cpr32(StatsAddr);
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	i = 0;
1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572
	tmp_stats[i++] = le64_to_cpu(nic_stats->tx_ok);
	tmp_stats[i++] = le64_to_cpu(nic_stats->rx_ok);
	tmp_stats[i++] = le64_to_cpu(nic_stats->tx_err);
	tmp_stats[i++] = le32_to_cpu(nic_stats->rx_err);
	tmp_stats[i++] = le16_to_cpu(nic_stats->rx_fifo);
	tmp_stats[i++] = le16_to_cpu(nic_stats->frame_align);
	tmp_stats[i++] = le32_to_cpu(nic_stats->tx_ok_1col);
	tmp_stats[i++] = le32_to_cpu(nic_stats->tx_ok_mcol);
	tmp_stats[i++] = le64_to_cpu(nic_stats->rx_ok_phys);
	tmp_stats[i++] = le64_to_cpu(nic_stats->rx_ok_bcast);
	tmp_stats[i++] = le32_to_cpu(nic_stats->rx_ok_mcast);
	tmp_stats[i++] = le16_to_cpu(nic_stats->tx_abort);
	tmp_stats[i++] = le16_to_cpu(nic_stats->tx_underrun);
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	tmp_stats[i++] = cp->cp_stats.rx_frags;
1574
	BUG_ON(i != CP_NUM_STATS);
1575

1576
	dma_free_coherent(&cp->pdev->dev, sizeof(*nic_stats), nic_stats, dma);
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1577 1578
}

1579
static const struct ethtool_ops cp_ethtool_ops = {
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	.get_drvinfo		= cp_get_drvinfo,
	.get_regs_len		= cp_get_regs_len,
1582
	.get_sset_count		= cp_get_sset_count,
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	.nway_reset		= cp_nway_reset,
	.get_link		= ethtool_op_get_link,
	.get_msglevel		= cp_get_msglevel,
	.set_msglevel		= cp_set_msglevel,
	.get_regs		= cp_get_regs,
	.get_wol		= cp_get_wol,
	.set_wol		= cp_set_wol,
	.get_strings		= cp_get_strings,
	.get_ethtool_stats	= cp_get_ethtool_stats,
1592 1593 1594
	.get_eeprom_len		= cp_get_eeprom_len,
	.get_eeprom		= cp_get_eeprom,
	.set_eeprom		= cp_set_eeprom,
R
Rick Jones 已提交
1595
	.get_ringparam		= cp_get_ringparam,
1596 1597
	.get_link_ksettings	= cp_get_link_ksettings,
	.set_link_ksettings	= cp_set_link_ksettings,
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};

static int cp_ioctl (struct net_device *dev, struct ifreq *rq, int cmd)
{
	struct cp_private *cp = netdev_priv(dev);
	int rc;
	unsigned long flags;

	if (!netif_running(dev))
		return -EINVAL;

	spin_lock_irqsave(&cp->lock, flags);
	rc = generic_mii_ioctl(&cp->mii_if, if_mii(rq), cmd, NULL);
	spin_unlock_irqrestore(&cp->lock, flags);
	return rc;
}

1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636
static int cp_set_mac_address(struct net_device *dev, void *p)
{
	struct cp_private *cp = netdev_priv(dev);
	struct sockaddr *addr = p;

	if (!is_valid_ether_addr(addr->sa_data))
		return -EADDRNOTAVAIL;

	memcpy(dev->dev_addr, addr->sa_data, dev->addr_len);

	spin_lock_irq(&cp->lock);

	cpw8_f(Cfg9346, Cfg9346_Unlock);
	cpw32_f(MAC0 + 0, le32_to_cpu (*(__le32 *) (dev->dev_addr + 0)));
	cpw32_f(MAC0 + 4, le32_to_cpu (*(__le32 *) (dev->dev_addr + 4)));
	cpw8_f(Cfg9346, Cfg9346_Lock);

	spin_unlock_irq(&cp->lock);

	return 0;
}

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Linus Torvalds 已提交
1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651
/* Serial EEPROM section. */

/*  EEPROM_Ctrl bits. */
#define EE_SHIFT_CLK	0x04	/* EEPROM shift clock. */
#define EE_CS			0x08	/* EEPROM chip select. */
#define EE_DATA_WRITE	0x02	/* EEPROM chip data in. */
#define EE_WRITE_0		0x00
#define EE_WRITE_1		0x02
#define EE_DATA_READ	0x01	/* EEPROM chip data out. */
#define EE_ENB			(0x80 | EE_CS)

/* Delay between EEPROM clock transitions.
   No extra delay is needed with 33Mhz PCI, but 66Mhz may change this.
 */

1652
#define eeprom_delay()	readb(ee_addr)
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/* The EEPROM commands include the alway-set leading bit. */
1655
#define EE_EXTEND_CMD	(4)
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#define EE_WRITE_CMD	(5)
#define EE_READ_CMD		(6)
#define EE_ERASE_CMD	(7)

1660 1661 1662 1663 1664 1665
#define EE_EWDS_ADDR	(0)
#define EE_WRAL_ADDR	(1)
#define EE_ERAL_ADDR	(2)
#define EE_EWEN_ADDR	(3)

#define CP_EEPROM_MAGIC PCI_DEVICE_ID_REALTEK_8139
L
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1666

1667 1668
static void eeprom_cmd_start(void __iomem *ee_addr)
{
L
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	writeb (EE_ENB & ~EE_CS, ee_addr);
	writeb (EE_ENB, ee_addr);
	eeprom_delay ();
1672
}
L
Linus Torvalds 已提交
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1674 1675 1676 1677 1678 1679 1680
static void eeprom_cmd(void __iomem *ee_addr, int cmd, int cmd_len)
{
	int i;

	/* Shift the command bits out. */
	for (i = cmd_len - 1; i >= 0; i--) {
		int dataval = (cmd & (1 << i)) ? EE_DATA_WRITE : 0;
L
Linus Torvalds 已提交
1681 1682 1683 1684 1685 1686 1687
		writeb (EE_ENB | dataval, ee_addr);
		eeprom_delay ();
		writeb (EE_ENB | dataval | EE_SHIFT_CLK, ee_addr);
		eeprom_delay ();
	}
	writeb (EE_ENB, ee_addr);
	eeprom_delay ();
1688 1689 1690 1691
}

static void eeprom_cmd_end(void __iomem *ee_addr)
{
1692
	writeb(0, ee_addr);
1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714
	eeprom_delay ();
}

static void eeprom_extend_cmd(void __iomem *ee_addr, int extend_cmd,
			      int addr_len)
{
	int cmd = (EE_EXTEND_CMD << addr_len) | (extend_cmd << (addr_len - 2));

	eeprom_cmd_start(ee_addr);
	eeprom_cmd(ee_addr, cmd, 3 + addr_len);
	eeprom_cmd_end(ee_addr);
}

static u16 read_eeprom (void __iomem *ioaddr, int location, int addr_len)
{
	int i;
	u16 retval = 0;
	void __iomem *ee_addr = ioaddr + Cfg9346;
	int read_cmd = location | (EE_READ_CMD << addr_len);

	eeprom_cmd_start(ee_addr);
	eeprom_cmd(ee_addr, read_cmd, 3 + addr_len);
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Linus Torvalds 已提交
1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725

	for (i = 16; i > 0; i--) {
		writeb (EE_ENB | EE_SHIFT_CLK, ee_addr);
		eeprom_delay ();
		retval =
		    (retval << 1) | ((readb (ee_addr) & EE_DATA_READ) ? 1 :
				     0);
		writeb (EE_ENB, ee_addr);
		eeprom_delay ();
	}

1726
	eeprom_cmd_end(ee_addr);
L
Linus Torvalds 已提交
1727 1728 1729 1730

	return retval;
}

1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844
static void write_eeprom(void __iomem *ioaddr, int location, u16 val,
			 int addr_len)
{
	int i;
	void __iomem *ee_addr = ioaddr + Cfg9346;
	int write_cmd = location | (EE_WRITE_CMD << addr_len);

	eeprom_extend_cmd(ee_addr, EE_EWEN_ADDR, addr_len);

	eeprom_cmd_start(ee_addr);
	eeprom_cmd(ee_addr, write_cmd, 3 + addr_len);
	eeprom_cmd(ee_addr, val, 16);
	eeprom_cmd_end(ee_addr);

	eeprom_cmd_start(ee_addr);
	for (i = 0; i < 20000; i++)
		if (readb(ee_addr) & EE_DATA_READ)
			break;
	eeprom_cmd_end(ee_addr);

	eeprom_extend_cmd(ee_addr, EE_EWDS_ADDR, addr_len);
}

static int cp_get_eeprom_len(struct net_device *dev)
{
	struct cp_private *cp = netdev_priv(dev);
	int size;

	spin_lock_irq(&cp->lock);
	size = read_eeprom(cp->regs, 0, 8) == 0x8129 ? 256 : 128;
	spin_unlock_irq(&cp->lock);

	return size;
}

static int cp_get_eeprom(struct net_device *dev,
			 struct ethtool_eeprom *eeprom, u8 *data)
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned int addr_len;
	u16 val;
	u32 offset = eeprom->offset >> 1;
	u32 len = eeprom->len;
	u32 i = 0;

	eeprom->magic = CP_EEPROM_MAGIC;

	spin_lock_irq(&cp->lock);

	addr_len = read_eeprom(cp->regs, 0, 8) == 0x8129 ? 8 : 6;

	if (eeprom->offset & 1) {
		val = read_eeprom(cp->regs, offset, addr_len);
		data[i++] = (u8)(val >> 8);
		offset++;
	}

	while (i < len - 1) {
		val = read_eeprom(cp->regs, offset, addr_len);
		data[i++] = (u8)val;
		data[i++] = (u8)(val >> 8);
		offset++;
	}

	if (i < len) {
		val = read_eeprom(cp->regs, offset, addr_len);
		data[i] = (u8)val;
	}

	spin_unlock_irq(&cp->lock);
	return 0;
}

static int cp_set_eeprom(struct net_device *dev,
			 struct ethtool_eeprom *eeprom, u8 *data)
{
	struct cp_private *cp = netdev_priv(dev);
	unsigned int addr_len;
	u16 val;
	u32 offset = eeprom->offset >> 1;
	u32 len = eeprom->len;
	u32 i = 0;

	if (eeprom->magic != CP_EEPROM_MAGIC)
		return -EINVAL;

	spin_lock_irq(&cp->lock);

	addr_len = read_eeprom(cp->regs, 0, 8) == 0x8129 ? 8 : 6;

	if (eeprom->offset & 1) {
		val = read_eeprom(cp->regs, offset, addr_len) & 0xff;
		val |= (u16)data[i++] << 8;
		write_eeprom(cp->regs, offset, val, addr_len);
		offset++;
	}

	while (i < len - 1) {
		val = (u16)data[i++];
		val |= (u16)data[i++] << 8;
		write_eeprom(cp->regs, offset, val, addr_len);
		offset++;
	}

	if (i < len) {
		val = read_eeprom(cp->regs, offset, addr_len) & 0xff00;
		val |= (u16)data[i];
		write_eeprom(cp->regs, offset, val, addr_len);
	}

	spin_unlock_irq(&cp->lock);
	return 0;
}

L
Linus Torvalds 已提交
1845 1846 1847
/* Put the board into D3cold state and wait for WakeUp signal */
static void cp_set_d3_state (struct cp_private *cp)
{
1848
	pci_enable_wake(cp->pdev, PCI_D0, 1); /* Enable PME# generation */
L
Linus Torvalds 已提交
1849 1850 1851
	pci_set_power_state (cp->pdev, PCI_D3hot);
}

D
David Woodhouse 已提交
1852 1853 1854 1855 1856 1857 1858 1859 1860
static netdev_features_t cp_features_check(struct sk_buff *skb,
					   struct net_device *dev,
					   netdev_features_t features)
{
	if (skb_shinfo(skb)->gso_size > MSSMask)
		features &= ~NETIF_F_TSO;

	return vlan_features_check(skb, features);
}
1861 1862 1863 1864
static const struct net_device_ops cp_netdev_ops = {
	.ndo_open		= cp_open,
	.ndo_stop		= cp_close,
	.ndo_validate_addr	= eth_validate_addr,
1865
	.ndo_set_mac_address 	= cp_set_mac_address,
1866
	.ndo_set_rx_mode	= cp_set_rx_mode,
1867 1868
	.ndo_get_stats		= cp_get_stats,
	.ndo_do_ioctl		= cp_ioctl,
1869
	.ndo_start_xmit		= cp_start_xmit,
1870
	.ndo_tx_timeout		= cp_tx_timeout,
1871
	.ndo_set_features	= cp_set_features,
1872
	.ndo_change_mtu		= cp_change_mtu,
D
David Woodhouse 已提交
1873
	.ndo_features_check	= cp_features_check,
1874

1875 1876 1877 1878 1879
#ifdef CONFIG_NET_POLL_CONTROLLER
	.ndo_poll_controller	= cp_poll_controller,
#endif
};

L
Linus Torvalds 已提交
1880 1881 1882 1883 1884 1885
static int cp_init_one (struct pci_dev *pdev, const struct pci_device_id *ent)
{
	struct net_device *dev;
	struct cp_private *cp;
	int rc;
	void __iomem *regs;
1886
	resource_size_t pciaddr;
L
Linus Torvalds 已提交
1887 1888
	unsigned int addr_len, i, pci_using_dac;

1889
	pr_info_once("%s", version);
L
Linus Torvalds 已提交
1890 1891

	if (pdev->vendor == PCI_VENDOR_ID_REALTEK &&
1892
	    pdev->device == PCI_DEVICE_ID_REALTEK_8139 && pdev->revision < 0x20) {
1893
		dev_info(&pdev->dev,
1894 1895
			 "This (id %04x:%04x rev %02x) is not an 8139C+ compatible chip, use 8139too\n",
			 pdev->vendor, pdev->device, pdev->revision);
L
Linus Torvalds 已提交
1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931
		return -ENODEV;
	}

	dev = alloc_etherdev(sizeof(struct cp_private));
	if (!dev)
		return -ENOMEM;
	SET_NETDEV_DEV(dev, &pdev->dev);

	cp = netdev_priv(dev);
	cp->pdev = pdev;
	cp->dev = dev;
	cp->msg_enable = (debug < 0 ? CP_DEF_MSG_ENABLE : debug);
	spin_lock_init (&cp->lock);
	cp->mii_if.dev = dev;
	cp->mii_if.mdio_read = mdio_read;
	cp->mii_if.mdio_write = mdio_write;
	cp->mii_if.phy_id = CP_INTERNAL_PHY;
	cp->mii_if.phy_id_mask = 0x1f;
	cp->mii_if.reg_num_mask = 0x1f;
	cp_set_rxbufsize(cp);

	rc = pci_enable_device(pdev);
	if (rc)
		goto err_out_free;

	rc = pci_set_mwi(pdev);
	if (rc)
		goto err_out_disable;

	rc = pci_request_regions(pdev, DRV_NAME);
	if (rc)
		goto err_out_mwi;

	pciaddr = pci_resource_start(pdev, 1);
	if (!pciaddr) {
		rc = -EIO;
1932
		dev_err(&pdev->dev, "no MMIO resource\n");
L
Linus Torvalds 已提交
1933 1934 1935 1936
		goto err_out_res;
	}
	if (pci_resource_len(pdev, 1) < CP_REGS_SIZE) {
		rc = -EIO;
1937
		dev_err(&pdev->dev, "MMIO resource (%llx) too small\n",
1938
		       (unsigned long long)pci_resource_len(pdev, 1));
L
Linus Torvalds 已提交
1939 1940 1941 1942 1943
		goto err_out_res;
	}

	/* Configure DMA attributes. */
	if ((sizeof(dma_addr_t) > 4) &&
1944 1945
	    !pci_set_consistent_dma_mask(pdev, DMA_BIT_MASK(64)) &&
	    !pci_set_dma_mask(pdev, DMA_BIT_MASK(64))) {
L
Linus Torvalds 已提交
1946 1947 1948 1949
		pci_using_dac = 1;
	} else {
		pci_using_dac = 0;

1950
		rc = pci_set_dma_mask(pdev, DMA_BIT_MASK(32));
L
Linus Torvalds 已提交
1951
		if (rc) {
1952
			dev_err(&pdev->dev,
1953
				"No usable DMA configuration, aborting\n");
L
Linus Torvalds 已提交
1954 1955
			goto err_out_res;
		}
1956
		rc = pci_set_consistent_dma_mask(pdev, DMA_BIT_MASK(32));
L
Linus Torvalds 已提交
1957
		if (rc) {
1958
			dev_err(&pdev->dev,
1959
				"No usable consistent DMA configuration, aborting\n");
L
Linus Torvalds 已提交
1960 1961 1962 1963 1964 1965 1966
			goto err_out_res;
		}
	}

	cp->cpcmd = (pci_using_dac ? PCIDAC : 0) |
		    PCIMulRW | RxChkSum | CpRxOn | CpTxOn;

1967 1968 1969
	dev->features |= NETIF_F_RXCSUM;
	dev->hw_features |= NETIF_F_RXCSUM;

L
Linus Torvalds 已提交
1970 1971 1972
	regs = ioremap(pciaddr, CP_REGS_SIZE);
	if (!regs) {
		rc = -EIO;
A
Andrew Morton 已提交
1973
		dev_err(&pdev->dev, "Cannot map PCI MMIO (%Lx@%Lx)\n",
1974
			(unsigned long long)pci_resource_len(pdev, 1),
1975
		       (unsigned long long)pciaddr);
L
Linus Torvalds 已提交
1976 1977 1978 1979 1980 1981 1982 1983 1984
		goto err_out_res;
	}
	cp->regs = regs;

	cp_stop_hw(cp);

	/* read MAC address from EEPROM */
	addr_len = read_eeprom (regs, 0, 8) == 0x8129 ? 8 : 6;
	for (i = 0; i < 3; i++)
A
Al Viro 已提交
1985 1986
		((__le16 *) (dev->dev_addr))[i] =
		    cpu_to_le16(read_eeprom (regs, i + 7, addr_len));
L
Linus Torvalds 已提交
1987

1988
	dev->netdev_ops = &cp_netdev_ops;
1989
	netif_napi_add(dev, &cp->napi, cp_rx_poll, 16);
L
Linus Torvalds 已提交
1990 1991 1992
	dev->ethtool_ops = &cp_ethtool_ops;
	dev->watchdog_timeo = TX_TIMEOUT;

1993 1994
	dev->features |= NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_TSO |
		NETIF_F_HW_VLAN_CTAG_TX | NETIF_F_HW_VLAN_CTAG_RX;
L
Linus Torvalds 已提交
1995 1996 1997 1998

	if (pci_using_dac)
		dev->features |= NETIF_F_HIGHDMA;

1999
	dev->hw_features |= NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_TSO |
2000
		NETIF_F_HW_VLAN_CTAG_TX | NETIF_F_HW_VLAN_CTAG_RX;
2001 2002
	dev->vlan_features = NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_TSO |
		NETIF_F_HIGHDMA;
J
Jeff Garzik 已提交
2003

2004 2005 2006 2007
	/* MTU range: 60 - 4096 */
	dev->min_mtu = CP_MIN_MTU;
	dev->max_mtu = CP_MAX_MTU;

L
Linus Torvalds 已提交
2008 2009 2010 2011
	rc = register_netdev(dev);
	if (rc)
		goto err_out_iomap;

2012 2013
	netdev_info(dev, "RTL-8139C+ at 0x%p, %pM, IRQ %d\n",
		    regs, dev->dev_addr, pdev->irq);
L
Linus Torvalds 已提交
2014 2015 2016 2017 2018 2019

	pci_set_drvdata(pdev, dev);

	/* enable busmastering and memory-write-invalidate */
	pci_set_master(pdev);

2020 2021
	if (cp->wol_enabled)
		cp_set_d3_state (cp);
L
Linus Torvalds 已提交
2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044

	return 0;

err_out_iomap:
	iounmap(regs);
err_out_res:
	pci_release_regions(pdev);
err_out_mwi:
	pci_clear_mwi(pdev);
err_out_disable:
	pci_disable_device(pdev);
err_out_free:
	free_netdev(dev);
	return rc;
}

static void cp_remove_one (struct pci_dev *pdev)
{
	struct net_device *dev = pci_get_drvdata(pdev);
	struct cp_private *cp = netdev_priv(dev);

	unregister_netdev(dev);
	iounmap(cp->regs);
2045 2046
	if (cp->wol_enabled)
		pci_set_power_state (pdev, PCI_D0);
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	pci_release_regions(pdev);
	pci_clear_mwi(pdev);
	pci_disable_device(pdev);
	free_netdev(dev);
}

#ifdef CONFIG_PM
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static int cp_suspend (struct pci_dev *pdev, pm_message_t state)
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{
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	struct net_device *dev = pci_get_drvdata(pdev);
	struct cp_private *cp = netdev_priv(dev);
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	unsigned long flags;

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	if (!netif_running(dev))
		return 0;
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	netif_device_detach (dev);
	netif_stop_queue (dev);

	spin_lock_irqsave (&cp->lock, flags);

	/* Disable Rx and Tx */
	cpw16 (IntrMask, 0);
	cpw8  (Cmd, cpr8 (Cmd) & (~RxOn | ~TxOn));

	spin_unlock_irqrestore (&cp->lock, flags);

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	pci_save_state(pdev);
	pci_enable_wake(pdev, pci_choose_state(pdev, state), cp->wol_enabled);
	pci_set_power_state(pdev, pci_choose_state(pdev, state));
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	return 0;
}

static int cp_resume (struct pci_dev *pdev)
{
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	struct net_device *dev = pci_get_drvdata (pdev);
	struct cp_private *cp = netdev_priv(dev);
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	unsigned long flags;
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	if (!netif_running(dev))
		return 0;
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	netif_device_attach (dev);
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	pci_set_power_state(pdev, PCI_D0);
	pci_restore_state(pdev);
	pci_enable_wake(pdev, PCI_D0, 0);

	/* FIXME: sh*t may happen if the Rx ring buffer is depleted */
	cp_init_rings_index (cp);
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	cp_init_hw (cp);
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	cp_enable_irq(cp);
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	netif_start_queue (dev);
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	spin_lock_irqsave (&cp->lock, flags);

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	mii_check_media(&cp->mii_if, netif_msg_link(cp), false);
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	spin_unlock_irqrestore (&cp->lock, flags);
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	return 0;
}
#endif /* CONFIG_PM */

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static const struct pci_device_id cp_pci_tbl[] = {
        { PCI_DEVICE(PCI_VENDOR_ID_REALTEK,     PCI_DEVICE_ID_REALTEK_8139), },
        { PCI_DEVICE(PCI_VENDOR_ID_TTTECH,      PCI_DEVICE_ID_TTTECH_MC322), },
        { },
};
MODULE_DEVICE_TABLE(pci, cp_pci_tbl);

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static struct pci_driver cp_driver = {
	.name         = DRV_NAME,
	.id_table     = cp_pci_tbl,
	.probe        =	cp_init_one,
	.remove       = cp_remove_one,
#ifdef CONFIG_PM
	.resume       = cp_resume,
	.suspend      = cp_suspend,
#endif
};

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module_pci_driver(cp_driver);