mirror of
https://github.com/AuxXxilium/linux_dsm_epyc7002.git
synced 2024-12-27 08:45:12 +07:00
c7fe89e300
Directly use the platform device for generating the miibus name. This removes the last user of bcm_enet_priv::mac_id and we can remove the field. Signed-off-by: Jonas Gorski <jonas.gorski@gmail.com> Signed-off-by: David S. Miller <davem@davemloft.net>
357 lines
7.9 KiB
C
357 lines
7.9 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef BCM63XX_ENET_H_
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#define BCM63XX_ENET_H_
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#include <linux/types.h>
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#include <linux/mii.h>
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#include <linux/mutex.h>
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#include <linux/phy.h>
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#include <linux/platform_device.h>
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#include <bcm63xx_regs.h>
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#include <bcm63xx_io.h>
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#include <bcm63xx_iudma.h>
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/* default number of descriptor */
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#define BCMENET_DEF_RX_DESC 64
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#define BCMENET_DEF_TX_DESC 32
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/* maximum burst len for dma (4 bytes unit) */
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#define BCMENET_DMA_MAXBURST 16
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#define BCMENETSW_DMA_MAXBURST 8
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/* tx transmit threshold (4 bytes unit), fifo is 256 bytes, the value
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* must be low enough so that a DMA transfer of above burst length can
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* not overflow the fifo */
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#define BCMENET_TX_FIFO_TRESH 32
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/*
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* hardware maximum rx/tx packet size including FCS, max mtu is
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* actually 2047, but if we set max rx size register to 2047 we won't
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* get overflow information if packet size is 2048 or above
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*/
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#define BCMENET_MAX_MTU 2046
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/*
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* MIB Counters register definitions
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*/
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#define ETH_MIB_TX_GD_OCTETS 0
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#define ETH_MIB_TX_GD_PKTS 1
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#define ETH_MIB_TX_ALL_OCTETS 2
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#define ETH_MIB_TX_ALL_PKTS 3
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#define ETH_MIB_TX_BRDCAST 4
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#define ETH_MIB_TX_MULT 5
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#define ETH_MIB_TX_64 6
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#define ETH_MIB_TX_65_127 7
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#define ETH_MIB_TX_128_255 8
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#define ETH_MIB_TX_256_511 9
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#define ETH_MIB_TX_512_1023 10
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#define ETH_MIB_TX_1024_MAX 11
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#define ETH_MIB_TX_JAB 12
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#define ETH_MIB_TX_OVR 13
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#define ETH_MIB_TX_FRAG 14
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#define ETH_MIB_TX_UNDERRUN 15
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#define ETH_MIB_TX_COL 16
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#define ETH_MIB_TX_1_COL 17
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#define ETH_MIB_TX_M_COL 18
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#define ETH_MIB_TX_EX_COL 19
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#define ETH_MIB_TX_LATE 20
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#define ETH_MIB_TX_DEF 21
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#define ETH_MIB_TX_CRS 22
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#define ETH_MIB_TX_PAUSE 23
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#define ETH_MIB_RX_GD_OCTETS 32
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#define ETH_MIB_RX_GD_PKTS 33
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#define ETH_MIB_RX_ALL_OCTETS 34
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#define ETH_MIB_RX_ALL_PKTS 35
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#define ETH_MIB_RX_BRDCAST 36
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#define ETH_MIB_RX_MULT 37
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#define ETH_MIB_RX_64 38
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#define ETH_MIB_RX_65_127 39
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#define ETH_MIB_RX_128_255 40
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#define ETH_MIB_RX_256_511 41
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#define ETH_MIB_RX_512_1023 42
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#define ETH_MIB_RX_1024_MAX 43
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#define ETH_MIB_RX_JAB 44
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#define ETH_MIB_RX_OVR 45
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#define ETH_MIB_RX_FRAG 46
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#define ETH_MIB_RX_DROP 47
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#define ETH_MIB_RX_CRC_ALIGN 48
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#define ETH_MIB_RX_UND 49
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#define ETH_MIB_RX_CRC 50
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#define ETH_MIB_RX_ALIGN 51
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#define ETH_MIB_RX_SYM 52
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#define ETH_MIB_RX_PAUSE 53
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#define ETH_MIB_RX_CNTRL 54
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/*
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* SW MIB Counters register definitions
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*/
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#define ETHSW_MIB_TX_ALL_OCT 0
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#define ETHSW_MIB_TX_DROP_PKTS 2
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#define ETHSW_MIB_TX_QOS_PKTS 3
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#define ETHSW_MIB_TX_BRDCAST 4
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#define ETHSW_MIB_TX_MULT 5
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#define ETHSW_MIB_TX_UNI 6
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#define ETHSW_MIB_TX_COL 7
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#define ETHSW_MIB_TX_1_COL 8
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#define ETHSW_MIB_TX_M_COL 9
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#define ETHSW_MIB_TX_DEF 10
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#define ETHSW_MIB_TX_LATE 11
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#define ETHSW_MIB_TX_EX_COL 12
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#define ETHSW_MIB_TX_PAUSE 14
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#define ETHSW_MIB_TX_QOS_OCT 15
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#define ETHSW_MIB_RX_ALL_OCT 17
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#define ETHSW_MIB_RX_UND 19
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#define ETHSW_MIB_RX_PAUSE 20
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#define ETHSW_MIB_RX_64 21
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#define ETHSW_MIB_RX_65_127 22
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#define ETHSW_MIB_RX_128_255 23
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#define ETHSW_MIB_RX_256_511 24
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#define ETHSW_MIB_RX_512_1023 25
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#define ETHSW_MIB_RX_1024_1522 26
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#define ETHSW_MIB_RX_OVR 27
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#define ETHSW_MIB_RX_JAB 28
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#define ETHSW_MIB_RX_ALIGN 29
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#define ETHSW_MIB_RX_CRC 30
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#define ETHSW_MIB_RX_GD_OCT 31
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#define ETHSW_MIB_RX_DROP 33
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#define ETHSW_MIB_RX_UNI 34
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#define ETHSW_MIB_RX_MULT 35
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#define ETHSW_MIB_RX_BRDCAST 36
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#define ETHSW_MIB_RX_SA_CHANGE 37
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#define ETHSW_MIB_RX_FRAG 38
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#define ETHSW_MIB_RX_OVR_DISC 39
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#define ETHSW_MIB_RX_SYM 40
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#define ETHSW_MIB_RX_QOS_PKTS 41
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#define ETHSW_MIB_RX_QOS_OCT 42
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#define ETHSW_MIB_RX_1523_2047 44
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#define ETHSW_MIB_RX_2048_4095 45
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#define ETHSW_MIB_RX_4096_8191 46
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#define ETHSW_MIB_RX_8192_9728 47
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struct bcm_enet_mib_counters {
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u64 tx_gd_octets;
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u32 tx_gd_pkts;
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u32 tx_all_octets;
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u32 tx_all_pkts;
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u32 tx_unicast;
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u32 tx_brdcast;
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u32 tx_mult;
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u32 tx_64;
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u32 tx_65_127;
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u32 tx_128_255;
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u32 tx_256_511;
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u32 tx_512_1023;
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u32 tx_1024_max;
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u32 tx_1523_2047;
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u32 tx_2048_4095;
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u32 tx_4096_8191;
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u32 tx_8192_9728;
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u32 tx_jab;
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u32 tx_drop;
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u32 tx_ovr;
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u32 tx_frag;
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u32 tx_underrun;
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u32 tx_col;
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u32 tx_1_col;
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u32 tx_m_col;
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u32 tx_ex_col;
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u32 tx_late;
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u32 tx_def;
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u32 tx_crs;
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u32 tx_pause;
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u64 rx_gd_octets;
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u32 rx_gd_pkts;
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u32 rx_all_octets;
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u32 rx_all_pkts;
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u32 rx_brdcast;
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u32 rx_unicast;
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u32 rx_mult;
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u32 rx_64;
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u32 rx_65_127;
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u32 rx_128_255;
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u32 rx_256_511;
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u32 rx_512_1023;
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u32 rx_1024_max;
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u32 rx_jab;
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u32 rx_ovr;
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u32 rx_frag;
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u32 rx_drop;
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u32 rx_crc_align;
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u32 rx_und;
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u32 rx_crc;
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u32 rx_align;
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u32 rx_sym;
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u32 rx_pause;
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u32 rx_cntrl;
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};
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struct bcm_enet_priv {
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/* base remapped address of device */
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void __iomem *base;
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/* mac irq, rx_dma irq, tx_dma irq */
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int irq;
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int irq_rx;
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int irq_tx;
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/* hw view of rx & tx dma ring */
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dma_addr_t rx_desc_dma;
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dma_addr_t tx_desc_dma;
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/* allocated size (in bytes) for rx & tx dma ring */
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unsigned int rx_desc_alloc_size;
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unsigned int tx_desc_alloc_size;
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struct napi_struct napi;
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/* dma channel id for rx */
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int rx_chan;
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/* number of dma desc in rx ring */
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int rx_ring_size;
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/* cpu view of rx dma ring */
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struct bcm_enet_desc *rx_desc_cpu;
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/* current number of armed descriptor given to hardware for rx */
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int rx_desc_count;
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/* next rx descriptor to fetch from hardware */
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int rx_curr_desc;
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/* next dirty rx descriptor to refill */
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int rx_dirty_desc;
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/* size of allocated rx skbs */
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unsigned int rx_skb_size;
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/* list of skb given to hw for rx */
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struct sk_buff **rx_skb;
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/* used when rx skb allocation failed, so we defer rx queue
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* refill */
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struct timer_list rx_timeout;
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/* lock rx_timeout against rx normal operation */
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spinlock_t rx_lock;
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/* dma channel id for tx */
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int tx_chan;
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/* number of dma desc in tx ring */
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int tx_ring_size;
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/* maximum dma burst size */
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int dma_maxburst;
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/* cpu view of rx dma ring */
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struct bcm_enet_desc *tx_desc_cpu;
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/* number of available descriptor for tx */
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int tx_desc_count;
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/* next tx descriptor avaiable */
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int tx_curr_desc;
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/* next dirty tx descriptor to reclaim */
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int tx_dirty_desc;
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/* list of skb given to hw for tx */
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struct sk_buff **tx_skb;
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/* lock used by tx reclaim and xmit */
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spinlock_t tx_lock;
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/* set if internal phy is ignored and external mii interface
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* is selected */
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int use_external_mii;
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/* set if a phy is connected, phy address must be known,
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* probing is not possible */
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int has_phy;
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int phy_id;
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/* set if connected phy has an associated irq */
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int has_phy_interrupt;
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int phy_interrupt;
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/* used when a phy is connected (phylib used) */
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struct mii_bus *mii_bus;
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int old_link;
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int old_duplex;
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int old_pause;
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/* used when no phy is connected */
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int force_speed_100;
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int force_duplex_full;
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/* pause parameters */
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int pause_auto;
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int pause_rx;
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int pause_tx;
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/* stats */
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struct bcm_enet_mib_counters mib;
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/* after mib interrupt, mib registers update is done in this
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* work queue */
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struct work_struct mib_update_task;
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/* lock mib update between userspace request and workqueue */
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struct mutex mib_update_lock;
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/* mac clock */
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struct clk *mac_clk;
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/* phy clock if internal phy is used */
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struct clk *phy_clk;
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/* network device reference */
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struct net_device *net_dev;
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/* platform device reference */
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struct platform_device *pdev;
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/* maximum hardware transmit/receive size */
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unsigned int hw_mtu;
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bool enet_is_sw;
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/* port mapping for switch devices */
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int num_ports;
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struct bcm63xx_enetsw_port used_ports[ENETSW_MAX_PORT];
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int sw_port_link[ENETSW_MAX_PORT];
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/* used to poll switch port state */
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struct timer_list swphy_poll;
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spinlock_t enetsw_mdio_lock;
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/* dma channel enable mask */
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u32 dma_chan_en_mask;
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/* dma channel interrupt mask */
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u32 dma_chan_int_mask;
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/* DMA engine has internal SRAM */
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bool dma_has_sram;
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/* dma channel width */
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unsigned int dma_chan_width;
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/* dma descriptor shift value */
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unsigned int dma_desc_shift;
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};
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#endif /* ! BCM63XX_ENET_H_ */
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