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https://github.com/torvalds/linux
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Several devices have multiple independant RX queues per net device, and some have a single interrupt doorbell for several queues. In either case, it's easier to support layouts like that if the structure representing the poll is independant from the net device itself. The signature of the ->poll() call back goes from: int foo_poll(struct net_device *dev, int *budget) to int foo_poll(struct napi_struct *napi, int budget) The caller is returned the number of RX packets processed (or the number of "NAPI credits" consumed if you want to get abstract). The callee no longer messes around bumping dev->quota, *budget, etc. because that is all handled in the caller upon return. The napi_struct is to be embedded in the device driver private data structures. Furthermore, it is the driver's responsibility to disable all NAPI instances in it's ->stop() device close handler. Since the napi_struct is privatized into the driver's private data structures, only the driver knows how to get at all of the napi_struct instances it may have per-device. With lots of help and suggestions from Rusty Russell, Roland Dreier, Michael Chan, Jeff Garzik, and Jamal Hadi Salim. Bug fixes from Thomas Graf, Roland Dreier, Peter Zijlstra, Joseph Fannin, Scott Wood, Hans J. Koch, and Michael Chan. [ Ported to current tree and all drivers converted. Integrated Stephen's follow-on kerneldoc additions, and restored poll_list handling to the old style to fix mutual exclusion issues. -DaveM ] Signed-off-by: Stephen Hemminger <shemminger@linux-foundation.org> Signed-off-by: David S. Miller <davem@davemloft.net>
370 lines
12 KiB
C
370 lines
12 KiB
C
#ifndef __MV643XX_ETH_H__
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#define __MV643XX_ETH_H__
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#include <linux/module.h>
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#include <linux/kernel.h>
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#include <linux/spinlock.h>
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#include <linux/workqueue.h>
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#include <linux/mii.h>
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#include <linux/mv643xx.h>
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#include <asm/dma-mapping.h>
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/* Checksum offload for Tx works for most packets, but
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* fails if previous packet sent did not use hw csum
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*/
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#define MV643XX_CHECKSUM_OFFLOAD_TX
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#define MV643XX_NAPI
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#define MV643XX_TX_FAST_REFILL
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#undef MV643XX_COAL
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/*
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* Number of RX / TX descriptors on RX / TX rings.
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* Note that allocating RX descriptors is done by allocating the RX
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* ring AND a preallocated RX buffers (skb's) for each descriptor.
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* The TX descriptors only allocates the TX descriptors ring,
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* with no pre allocated TX buffers (skb's are allocated by higher layers.
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*/
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/* Default TX ring size is 1000 descriptors */
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#define MV643XX_DEFAULT_TX_QUEUE_SIZE 1000
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/* Default RX ring size is 400 descriptors */
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#define MV643XX_DEFAULT_RX_QUEUE_SIZE 400
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#define MV643XX_TX_COAL 100
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#ifdef MV643XX_COAL
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#define MV643XX_RX_COAL 100
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#endif
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#ifdef MV643XX_CHECKSUM_OFFLOAD_TX
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#define MAX_DESCS_PER_SKB (MAX_SKB_FRAGS + 1)
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#else
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#define MAX_DESCS_PER_SKB 1
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#endif
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#define ETH_VLAN_HLEN 4
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#define ETH_FCS_LEN 4
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#define ETH_HW_IP_ALIGN 2 /* hw aligns IP header */
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#define ETH_WRAPPER_LEN (ETH_HW_IP_ALIGN + ETH_HLEN + \
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ETH_VLAN_HLEN + ETH_FCS_LEN)
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#define ETH_RX_SKB_SIZE (dev->mtu + ETH_WRAPPER_LEN + dma_get_cache_alignment())
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#define ETH_RX_QUEUES_ENABLED (1 << 0) /* use only Q0 for receive */
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#define ETH_TX_QUEUES_ENABLED (1 << 0) /* use only Q0 for transmit */
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#define ETH_INT_CAUSE_RX_DONE (ETH_RX_QUEUES_ENABLED << 2)
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#define ETH_INT_CAUSE_RX_ERROR (ETH_RX_QUEUES_ENABLED << 9)
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#define ETH_INT_CAUSE_RX (ETH_INT_CAUSE_RX_DONE | ETH_INT_CAUSE_RX_ERROR)
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#define ETH_INT_CAUSE_EXT 0x00000002
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#define ETH_INT_UNMASK_ALL (ETH_INT_CAUSE_RX | ETH_INT_CAUSE_EXT)
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#define ETH_INT_CAUSE_TX_DONE (ETH_TX_QUEUES_ENABLED << 0)
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#define ETH_INT_CAUSE_TX_ERROR (ETH_TX_QUEUES_ENABLED << 8)
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#define ETH_INT_CAUSE_TX (ETH_INT_CAUSE_TX_DONE | ETH_INT_CAUSE_TX_ERROR)
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#define ETH_INT_CAUSE_PHY 0x00010000
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#define ETH_INT_CAUSE_STATE 0x00100000
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#define ETH_INT_UNMASK_ALL_EXT (ETH_INT_CAUSE_TX | ETH_INT_CAUSE_PHY | \
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ETH_INT_CAUSE_STATE)
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#define ETH_INT_MASK_ALL 0x00000000
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#define ETH_INT_MASK_ALL_EXT 0x00000000
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#define PHY_WAIT_ITERATIONS 1000 /* 1000 iterations * 10uS = 10mS max */
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#define PHY_WAIT_MICRO_SECONDS 10
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/* Buffer offset from buffer pointer */
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#define RX_BUF_OFFSET 0x2
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/* Gigabit Ethernet Unit Global Registers */
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/* MIB Counters register definitions */
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#define ETH_MIB_GOOD_OCTETS_RECEIVED_LOW 0x0
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#define ETH_MIB_GOOD_OCTETS_RECEIVED_HIGH 0x4
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#define ETH_MIB_BAD_OCTETS_RECEIVED 0x8
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#define ETH_MIB_INTERNAL_MAC_TRANSMIT_ERR 0xc
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#define ETH_MIB_GOOD_FRAMES_RECEIVED 0x10
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#define ETH_MIB_BAD_FRAMES_RECEIVED 0x14
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#define ETH_MIB_BROADCAST_FRAMES_RECEIVED 0x18
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#define ETH_MIB_MULTICAST_FRAMES_RECEIVED 0x1c
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#define ETH_MIB_FRAMES_64_OCTETS 0x20
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#define ETH_MIB_FRAMES_65_TO_127_OCTETS 0x24
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#define ETH_MIB_FRAMES_128_TO_255_OCTETS 0x28
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#define ETH_MIB_FRAMES_256_TO_511_OCTETS 0x2c
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#define ETH_MIB_FRAMES_512_TO_1023_OCTETS 0x30
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#define ETH_MIB_FRAMES_1024_TO_MAX_OCTETS 0x34
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#define ETH_MIB_GOOD_OCTETS_SENT_LOW 0x38
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#define ETH_MIB_GOOD_OCTETS_SENT_HIGH 0x3c
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#define ETH_MIB_GOOD_FRAMES_SENT 0x40
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#define ETH_MIB_EXCESSIVE_COLLISION 0x44
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#define ETH_MIB_MULTICAST_FRAMES_SENT 0x48
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#define ETH_MIB_BROADCAST_FRAMES_SENT 0x4c
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#define ETH_MIB_UNREC_MAC_CONTROL_RECEIVED 0x50
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#define ETH_MIB_FC_SENT 0x54
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#define ETH_MIB_GOOD_FC_RECEIVED 0x58
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#define ETH_MIB_BAD_FC_RECEIVED 0x5c
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#define ETH_MIB_UNDERSIZE_RECEIVED 0x60
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#define ETH_MIB_FRAGMENTS_RECEIVED 0x64
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#define ETH_MIB_OVERSIZE_RECEIVED 0x68
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#define ETH_MIB_JABBER_RECEIVED 0x6c
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#define ETH_MIB_MAC_RECEIVE_ERROR 0x70
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#define ETH_MIB_BAD_CRC_EVENT 0x74
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#define ETH_MIB_COLLISION 0x78
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#define ETH_MIB_LATE_COLLISION 0x7c
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/* Port serial status reg (PSR) */
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#define ETH_INTERFACE_PCM 0x00000001
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#define ETH_LINK_IS_UP 0x00000002
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#define ETH_PORT_AT_FULL_DUPLEX 0x00000004
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#define ETH_RX_FLOW_CTRL_ENABLED 0x00000008
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#define ETH_GMII_SPEED_1000 0x00000010
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#define ETH_MII_SPEED_100 0x00000020
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#define ETH_TX_IN_PROGRESS 0x00000080
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#define ETH_BYPASS_ACTIVE 0x00000100
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#define ETH_PORT_AT_PARTITION_STATE 0x00000200
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#define ETH_PORT_TX_FIFO_EMPTY 0x00000400
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/* SMI reg */
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#define ETH_SMI_BUSY 0x10000000 /* 0 - Write, 1 - Read */
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#define ETH_SMI_READ_VALID 0x08000000 /* 0 - Write, 1 - Read */
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#define ETH_SMI_OPCODE_WRITE 0 /* Completion of Read */
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#define ETH_SMI_OPCODE_READ 0x04000000 /* Operation is in progress */
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/* Interrupt Cause Register Bit Definitions */
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/* SDMA command status fields macros */
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/* Tx & Rx descriptors status */
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#define ETH_ERROR_SUMMARY 0x00000001
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/* Tx & Rx descriptors command */
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#define ETH_BUFFER_OWNED_BY_DMA 0x80000000
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/* Tx descriptors status */
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#define ETH_LC_ERROR 0
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#define ETH_UR_ERROR 0x00000002
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#define ETH_RL_ERROR 0x00000004
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#define ETH_LLC_SNAP_FORMAT 0x00000200
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/* Rx descriptors status */
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#define ETH_OVERRUN_ERROR 0x00000002
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#define ETH_MAX_FRAME_LENGTH_ERROR 0x00000004
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#define ETH_RESOURCE_ERROR 0x00000006
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#define ETH_VLAN_TAGGED 0x00080000
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#define ETH_BPDU_FRAME 0x00100000
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#define ETH_UDP_FRAME_OVER_IP_V_4 0x00200000
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#define ETH_OTHER_FRAME_TYPE 0x00400000
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#define ETH_LAYER_2_IS_ETH_V_2 0x00800000
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#define ETH_FRAME_TYPE_IP_V_4 0x01000000
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#define ETH_FRAME_HEADER_OK 0x02000000
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#define ETH_RX_LAST_DESC 0x04000000
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#define ETH_RX_FIRST_DESC 0x08000000
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#define ETH_UNKNOWN_DESTINATION_ADDR 0x10000000
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#define ETH_RX_ENABLE_INTERRUPT 0x20000000
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#define ETH_LAYER_4_CHECKSUM_OK 0x40000000
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/* Rx descriptors byte count */
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#define ETH_FRAME_FRAGMENTED 0x00000004
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/* Tx descriptors command */
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#define ETH_LAYER_4_CHECKSUM_FIRST_DESC 0x00000400
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#define ETH_FRAME_SET_TO_VLAN 0x00008000
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#define ETH_UDP_FRAME 0x00010000
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#define ETH_GEN_TCP_UDP_CHECKSUM 0x00020000
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#define ETH_GEN_IP_V_4_CHECKSUM 0x00040000
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#define ETH_ZERO_PADDING 0x00080000
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#define ETH_TX_LAST_DESC 0x00100000
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#define ETH_TX_FIRST_DESC 0x00200000
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#define ETH_GEN_CRC 0x00400000
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#define ETH_TX_ENABLE_INTERRUPT 0x00800000
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#define ETH_AUTO_MODE 0x40000000
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#define ETH_TX_IHL_SHIFT 11
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/* typedefs */
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typedef enum _eth_func_ret_status {
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ETH_OK, /* Returned as expected. */
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ETH_ERROR, /* Fundamental error. */
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ETH_RETRY, /* Could not process request. Try later.*/
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ETH_END_OF_JOB, /* Ring has nothing to process. */
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ETH_QUEUE_FULL, /* Ring resource error. */
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ETH_QUEUE_LAST_RESOURCE /* Ring resources about to exhaust. */
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} ETH_FUNC_RET_STATUS;
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typedef enum _eth_target {
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ETH_TARGET_DRAM,
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ETH_TARGET_DEVICE,
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ETH_TARGET_CBS,
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ETH_TARGET_PCI0,
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ETH_TARGET_PCI1
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} ETH_TARGET;
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/* These are for big-endian machines. Little endian needs different
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* definitions.
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*/
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#if defined(__BIG_ENDIAN)
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struct eth_rx_desc {
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u16 byte_cnt; /* Descriptor buffer byte count */
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u16 buf_size; /* Buffer size */
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u32 cmd_sts; /* Descriptor command status */
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u32 next_desc_ptr; /* Next descriptor pointer */
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u32 buf_ptr; /* Descriptor buffer pointer */
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};
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struct eth_tx_desc {
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u16 byte_cnt; /* buffer byte count */
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u16 l4i_chk; /* CPU provided TCP checksum */
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u32 cmd_sts; /* Command/status field */
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u32 next_desc_ptr; /* Pointer to next descriptor */
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u32 buf_ptr; /* pointer to buffer for this descriptor*/
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};
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#elif defined(__LITTLE_ENDIAN)
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struct eth_rx_desc {
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u32 cmd_sts; /* Descriptor command status */
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u16 buf_size; /* Buffer size */
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u16 byte_cnt; /* Descriptor buffer byte count */
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u32 buf_ptr; /* Descriptor buffer pointer */
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u32 next_desc_ptr; /* Next descriptor pointer */
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};
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struct eth_tx_desc {
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u32 cmd_sts; /* Command/status field */
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u16 l4i_chk; /* CPU provided TCP checksum */
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u16 byte_cnt; /* buffer byte count */
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u32 buf_ptr; /* pointer to buffer for this descriptor*/
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u32 next_desc_ptr; /* Pointer to next descriptor */
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};
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#else
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#error One of __BIG_ENDIAN or __LITTLE_ENDIAN must be defined
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#endif
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/* Unified struct for Rx and Tx operations. The user is not required to */
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/* be familier with neither Tx nor Rx descriptors. */
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struct pkt_info {
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unsigned short byte_cnt; /* Descriptor buffer byte count */
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unsigned short l4i_chk; /* Tx CPU provided TCP Checksum */
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unsigned int cmd_sts; /* Descriptor command status */
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dma_addr_t buf_ptr; /* Descriptor buffer pointer */
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struct sk_buff *return_info; /* User resource return information */
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};
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/* Ethernet port specific information */
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struct mv643xx_mib_counters {
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u64 good_octets_received;
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u32 bad_octets_received;
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u32 internal_mac_transmit_err;
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u32 good_frames_received;
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u32 bad_frames_received;
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u32 broadcast_frames_received;
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u32 multicast_frames_received;
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u32 frames_64_octets;
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u32 frames_65_to_127_octets;
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u32 frames_128_to_255_octets;
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u32 frames_256_to_511_octets;
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u32 frames_512_to_1023_octets;
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u32 frames_1024_to_max_octets;
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u64 good_octets_sent;
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u32 good_frames_sent;
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u32 excessive_collision;
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u32 multicast_frames_sent;
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u32 broadcast_frames_sent;
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u32 unrec_mac_control_received;
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u32 fc_sent;
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u32 good_fc_received;
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u32 bad_fc_received;
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u32 undersize_received;
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u32 fragments_received;
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u32 oversize_received;
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u32 jabber_received;
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u32 mac_receive_error;
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u32 bad_crc_event;
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u32 collision;
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u32 late_collision;
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};
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struct mv643xx_private {
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int port_num; /* User Ethernet port number */
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u32 rx_sram_addr; /* Base address of rx sram area */
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u32 rx_sram_size; /* Size of rx sram area */
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u32 tx_sram_addr; /* Base address of tx sram area */
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u32 tx_sram_size; /* Size of tx sram area */
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int rx_resource_err; /* Rx ring resource error flag */
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/* Tx/Rx rings managment indexes fields. For driver use */
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/* Next available and first returning Rx resource */
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int rx_curr_desc_q, rx_used_desc_q;
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/* Next available and first returning Tx resource */
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int tx_curr_desc_q, tx_used_desc_q;
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#ifdef MV643XX_TX_FAST_REFILL
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u32 tx_clean_threshold;
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#endif
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struct eth_rx_desc *p_rx_desc_area;
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dma_addr_t rx_desc_dma;
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int rx_desc_area_size;
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struct sk_buff **rx_skb;
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struct eth_tx_desc *p_tx_desc_area;
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dma_addr_t tx_desc_dma;
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int tx_desc_area_size;
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struct sk_buff **tx_skb;
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struct work_struct tx_timeout_task;
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struct net_device *dev;
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struct napi_struct napi;
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struct net_device_stats stats;
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struct mv643xx_mib_counters mib_counters;
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spinlock_t lock;
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/* Size of Tx Ring per queue */
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int tx_ring_size;
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/* Number of tx descriptors in use */
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int tx_desc_count;
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/* Size of Rx Ring per queue */
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int rx_ring_size;
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/* Number of rx descriptors in use */
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int rx_desc_count;
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/*
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* Used in case RX Ring is empty, which can be caused when
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* system does not have resources (skb's)
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*/
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struct timer_list timeout;
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u32 rx_int_coal;
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u32 tx_int_coal;
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struct mii_if_info mii;
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};
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/* Port operation control routines */
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static void eth_port_init(struct mv643xx_private *mp);
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static void eth_port_reset(unsigned int eth_port_num);
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static void eth_port_start(struct net_device *dev);
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/* PHY and MIB routines */
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static void ethernet_phy_reset(unsigned int eth_port_num);
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static void eth_port_write_smi_reg(unsigned int eth_port_num,
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unsigned int phy_reg, unsigned int value);
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static void eth_port_read_smi_reg(unsigned int eth_port_num,
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unsigned int phy_reg, unsigned int *value);
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static void eth_clear_mib_counters(unsigned int eth_port_num);
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/* Port data flow control routines */
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static ETH_FUNC_RET_STATUS eth_port_receive(struct mv643xx_private *mp,
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struct pkt_info *p_pkt_info);
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static ETH_FUNC_RET_STATUS eth_rx_return_buff(struct mv643xx_private *mp,
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struct pkt_info *p_pkt_info);
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#endif /* __MV643XX_ETH_H__ */
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