1152 lines
31 KiB
C
1152 lines
31 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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// Copyright (c) 2016-2017 Hisilicon Limited.
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#ifndef __HCLGE_MAIN_H
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#define __HCLGE_MAIN_H
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#include <linux/fs.h>
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#include <linux/types.h>
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#include <linux/phy.h>
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#include <linux/if_vlan.h>
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#include <linux/kfifo.h>
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#include <net/devlink.h>
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#include "hclge_cmd.h"
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#include "hclge_ptp.h"
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#include "hnae3.h"
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#include "hclge_comm_rss.h"
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#include "hclge_comm_tqp_stats.h"
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#define HCLGE_MOD_VERSION "1.0"
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#define HCLGE_DRIVER_NAME "hclge"
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#define HCLGE_MAX_PF_NUM 8
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#define HCLGE_VF_VPORT_START_NUM 1
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#define HCLGE_RD_FIRST_STATS_NUM 2
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#define HCLGE_RD_OTHER_STATS_NUM 4
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#define HCLGE_INVALID_VPORT 0xffff
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#define HCLGE_PF_CFG_BLOCK_SIZE 32
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#define HCLGE_PF_CFG_DESC_NUM \
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(HCLGE_PF_CFG_BLOCK_SIZE / HCLGE_CFG_RD_LEN_BYTES)
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#define HCLGE_VECTOR_REG_BASE 0x20000
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#define HCLGE_VECTOR_EXT_REG_BASE 0x30000
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#define HCLGE_MISC_VECTOR_REG_BASE 0x20400
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#define HCLGE_VECTOR_REG_OFFSET 0x4
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#define HCLGE_VECTOR_REG_OFFSET_H 0x1000
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#define HCLGE_VECTOR_VF_OFFSET 0x100000
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#define HCLGE_NIC_CSQ_DEPTH_REG 0x27008
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/* bar registers for common func */
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#define HCLGE_GRO_EN_REG 0x28000
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#define HCLGE_RXD_ADV_LAYOUT_EN_REG 0x28008
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/* bar registers for rcb */
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#define HCLGE_RING_RX_ADDR_L_REG 0x80000
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#define HCLGE_RING_RX_ADDR_H_REG 0x80004
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#define HCLGE_RING_RX_BD_NUM_REG 0x80008
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#define HCLGE_RING_RX_BD_LENGTH_REG 0x8000C
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#define HCLGE_RING_RX_MERGE_EN_REG 0x80014
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#define HCLGE_RING_RX_TAIL_REG 0x80018
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#define HCLGE_RING_RX_HEAD_REG 0x8001C
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#define HCLGE_RING_RX_FBD_NUM_REG 0x80020
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#define HCLGE_RING_RX_OFFSET_REG 0x80024
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#define HCLGE_RING_RX_FBD_OFFSET_REG 0x80028
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#define HCLGE_RING_RX_STASH_REG 0x80030
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#define HCLGE_RING_RX_BD_ERR_REG 0x80034
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#define HCLGE_RING_TX_ADDR_L_REG 0x80040
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#define HCLGE_RING_TX_ADDR_H_REG 0x80044
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#define HCLGE_RING_TX_BD_NUM_REG 0x80048
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#define HCLGE_RING_TX_PRIORITY_REG 0x8004C
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#define HCLGE_RING_TX_TC_REG 0x80050
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#define HCLGE_RING_TX_MERGE_EN_REG 0x80054
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#define HCLGE_RING_TX_TAIL_REG 0x80058
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#define HCLGE_RING_TX_HEAD_REG 0x8005C
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#define HCLGE_RING_TX_FBD_NUM_REG 0x80060
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#define HCLGE_RING_TX_OFFSET_REG 0x80064
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#define HCLGE_RING_TX_EBD_NUM_REG 0x80068
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#define HCLGE_RING_TX_EBD_OFFSET_REG 0x80070
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#define HCLGE_RING_TX_BD_ERR_REG 0x80074
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#define HCLGE_RING_EN_REG 0x80090
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/* bar registers for tqp interrupt */
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#define HCLGE_TQP_INTR_CTRL_REG 0x20000
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#define HCLGE_TQP_INTR_GL0_REG 0x20100
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#define HCLGE_TQP_INTR_GL1_REG 0x20200
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#define HCLGE_TQP_INTR_GL2_REG 0x20300
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#define HCLGE_TQP_INTR_RL_REG 0x20900
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#define HCLGE_RSS_IND_TBL_SIZE 512
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#define HCLGE_RSS_TC_SIZE_0 1
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#define HCLGE_RSS_TC_SIZE_1 2
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#define HCLGE_RSS_TC_SIZE_2 4
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#define HCLGE_RSS_TC_SIZE_3 8
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#define HCLGE_RSS_TC_SIZE_4 16
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#define HCLGE_RSS_TC_SIZE_5 32
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#define HCLGE_RSS_TC_SIZE_6 64
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#define HCLGE_RSS_TC_SIZE_7 128
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#define HCLGE_UMV_TBL_SIZE 3072
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#define HCLGE_DEFAULT_UMV_SPACE_PER_PF \
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(HCLGE_UMV_TBL_SIZE / HCLGE_MAX_PF_NUM)
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#define HCLGE_TQP_RESET_TRY_TIMES 200
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#define HCLGE_PHY_PAGE_MDIX 0
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#define HCLGE_PHY_PAGE_COPPER 0
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/* Page Selection Reg. */
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#define HCLGE_PHY_PAGE_REG 22
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/* Copper Specific Control Register */
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#define HCLGE_PHY_CSC_REG 16
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/* Copper Specific Status Register */
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#define HCLGE_PHY_CSS_REG 17
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#define HCLGE_PHY_MDIX_CTRL_S 5
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#define HCLGE_PHY_MDIX_CTRL_M GENMASK(6, 5)
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#define HCLGE_PHY_MDIX_STATUS_B 6
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#define HCLGE_PHY_SPEED_DUP_RESOLVE_B 11
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#define HCLGE_GET_DFX_REG_TYPE_CNT 4
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/* Factor used to calculate offset and bitmap of VF num */
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#define HCLGE_VF_NUM_PER_CMD 64
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#define HCLGE_MAX_QSET_NUM 1024
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#define HCLGE_DBG_RESET_INFO_LEN 1024
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enum HLCGE_PORT_TYPE {
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HOST_PORT,
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NETWORK_PORT
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};
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#define PF_VPORT_ID 0
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#define HCLGE_PF_ID_S 0
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#define HCLGE_PF_ID_M GENMASK(2, 0)
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#define HCLGE_VF_ID_S 3
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#define HCLGE_VF_ID_M GENMASK(10, 3)
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#define HCLGE_PORT_TYPE_B 11
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#define HCLGE_NETWORK_PORT_ID_S 0
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#define HCLGE_NETWORK_PORT_ID_M GENMASK(3, 0)
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/* Reset related Registers */
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#define HCLGE_PF_OTHER_INT_REG 0x20600
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#define HCLGE_MISC_RESET_STS_REG 0x20700
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#define HCLGE_MISC_VECTOR_INT_STS 0x20800
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#define HCLGE_GLOBAL_RESET_REG 0x20A00
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#define HCLGE_GLOBAL_RESET_BIT 0
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#define HCLGE_CORE_RESET_BIT 1
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#define HCLGE_IMP_RESET_BIT 2
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#define HCLGE_RESET_INT_M GENMASK(7, 5)
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#define HCLGE_FUN_RST_ING 0x20C00
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#define HCLGE_FUN_RST_ING_B 0
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/* Vector0 register bits define */
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#define HCLGE_VECTOR0_REG_PTP_INT_B 0
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#define HCLGE_VECTOR0_GLOBALRESET_INT_B 5
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#define HCLGE_VECTOR0_CORERESET_INT_B 6
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#define HCLGE_VECTOR0_IMPRESET_INT_B 7
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/* Vector0 interrupt CMDQ event source register(RW) */
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#define HCLGE_VECTOR0_CMDQ_SRC_REG 0x27100
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/* CMDQ register bits for RX event(=MBX event) */
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#define HCLGE_VECTOR0_RX_CMDQ_INT_B 1
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#define HCLGE_VECTOR0_IMP_RESET_INT_B 1
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#define HCLGE_VECTOR0_IMP_CMDQ_ERR_B 4U
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#define HCLGE_VECTOR0_IMP_RD_POISON_B 5U
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#define HCLGE_VECTOR0_ALL_MSIX_ERR_B 6U
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#define HCLGE_TRIGGER_IMP_RESET_B 7U
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#define HCLGE_TQP_MEM_SIZE 0x10000
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#define HCLGE_MEM_BAR 4
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/* in the bar4, the first half is for roce, and the second half is for nic */
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#define HCLGE_NIC_MEM_OFFSET(hdev) \
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(pci_resource_len((hdev)->pdev, HCLGE_MEM_BAR) >> 1)
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#define HCLGE_TQP_MEM_OFFSET(hdev, i) \
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(HCLGE_NIC_MEM_OFFSET(hdev) + HCLGE_TQP_MEM_SIZE * (i))
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#define HCLGE_MAC_DEFAULT_FRAME \
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(ETH_HLEN + ETH_FCS_LEN + 2 * VLAN_HLEN + ETH_DATA_LEN)
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#define HCLGE_MAC_MIN_FRAME 64
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#define HCLGE_MAC_MAX_FRAME 9728
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#define HCLGE_SUPPORT_1G_BIT BIT(0)
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#define HCLGE_SUPPORT_10G_BIT BIT(1)
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#define HCLGE_SUPPORT_25G_BIT BIT(2)
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#define HCLGE_SUPPORT_50G_BIT BIT(3)
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#define HCLGE_SUPPORT_100G_BIT BIT(4)
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/* to be compatible with exsit board */
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#define HCLGE_SUPPORT_40G_BIT BIT(5)
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#define HCLGE_SUPPORT_100M_BIT BIT(6)
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#define HCLGE_SUPPORT_10M_BIT BIT(7)
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#define HCLGE_SUPPORT_200G_BIT BIT(8)
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#define HCLGE_SUPPORT_GE \
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(HCLGE_SUPPORT_1G_BIT | HCLGE_SUPPORT_100M_BIT | HCLGE_SUPPORT_10M_BIT)
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enum HCLGE_DEV_STATE {
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HCLGE_STATE_REINITING,
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HCLGE_STATE_DOWN,
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HCLGE_STATE_DISABLED,
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HCLGE_STATE_REMOVING,
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HCLGE_STATE_NIC_REGISTERED,
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HCLGE_STATE_ROCE_REGISTERED,
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HCLGE_STATE_SERVICE_INITED,
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HCLGE_STATE_RST_SERVICE_SCHED,
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HCLGE_STATE_RST_HANDLING,
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HCLGE_STATE_MBX_SERVICE_SCHED,
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HCLGE_STATE_MBX_HANDLING,
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HCLGE_STATE_ERR_SERVICE_SCHED,
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HCLGE_STATE_STATISTICS_UPDATING,
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HCLGE_STATE_LINK_UPDATING,
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HCLGE_STATE_RST_FAIL,
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HCLGE_STATE_FD_TBL_CHANGED,
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HCLGE_STATE_FD_CLEAR_ALL,
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HCLGE_STATE_FD_USER_DEF_CHANGED,
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HCLGE_STATE_PTP_EN,
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HCLGE_STATE_PTP_TX_HANDLING,
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HCLGE_STATE_FEC_STATS_UPDATING,
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HCLGE_STATE_MAX
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};
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enum hclge_evt_cause {
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HCLGE_VECTOR0_EVENT_RST,
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HCLGE_VECTOR0_EVENT_MBX,
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HCLGE_VECTOR0_EVENT_ERR,
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HCLGE_VECTOR0_EVENT_PTP,
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HCLGE_VECTOR0_EVENT_OTHER,
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};
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enum HCLGE_MAC_SPEED {
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HCLGE_MAC_SPEED_UNKNOWN = 0, /* unknown */
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HCLGE_MAC_SPEED_10M = 10, /* 10 Mbps */
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HCLGE_MAC_SPEED_100M = 100, /* 100 Mbps */
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HCLGE_MAC_SPEED_1G = 1000, /* 1000 Mbps = 1 Gbps */
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HCLGE_MAC_SPEED_10G = 10000, /* 10000 Mbps = 10 Gbps */
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HCLGE_MAC_SPEED_25G = 25000, /* 25000 Mbps = 25 Gbps */
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HCLGE_MAC_SPEED_40G = 40000, /* 40000 Mbps = 40 Gbps */
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HCLGE_MAC_SPEED_50G = 50000, /* 50000 Mbps = 50 Gbps */
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HCLGE_MAC_SPEED_100G = 100000, /* 100000 Mbps = 100 Gbps */
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HCLGE_MAC_SPEED_200G = 200000 /* 200000 Mbps = 200 Gbps */
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};
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enum HCLGE_MAC_DUPLEX {
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HCLGE_MAC_HALF,
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HCLGE_MAC_FULL
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};
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#define QUERY_SFP_SPEED 0
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#define QUERY_ACTIVE_SPEED 1
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struct hclge_mac {
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u8 mac_id;
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u8 phy_addr;
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u8 flag;
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u8 media_type; /* port media type, e.g. fibre/copper/backplane */
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u8 mac_addr[ETH_ALEN];
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u8 autoneg;
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u8 duplex;
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u8 support_autoneg;
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u8 speed_type; /* 0: sfp speed, 1: active speed */
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u8 lane_num;
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u32 speed;
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u32 max_speed;
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u32 speed_ability; /* speed ability supported by current media */
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u32 module_type; /* sub media type, e.g. kr/cr/sr/lr */
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u32 fec_mode; /* active fec mode */
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u32 user_fec_mode;
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u32 fec_ability;
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int link; /* store the link status of mac & phy (if phy exists) */
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struct phy_device *phydev;
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struct mii_bus *mdio_bus;
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phy_interface_t phy_if;
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__ETHTOOL_DECLARE_LINK_MODE_MASK(supported);
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__ETHTOOL_DECLARE_LINK_MODE_MASK(advertising);
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};
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struct hclge_hw {
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struct hclge_comm_hw hw;
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struct hclge_mac mac;
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int num_vec;
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};
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enum hclge_fc_mode {
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HCLGE_FC_NONE,
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HCLGE_FC_RX_PAUSE,
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HCLGE_FC_TX_PAUSE,
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HCLGE_FC_FULL,
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HCLGE_FC_PFC,
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HCLGE_FC_DEFAULT
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};
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#define HCLGE_FILTER_TYPE_VF 0
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#define HCLGE_FILTER_TYPE_PORT 1
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#define HCLGE_FILTER_FE_EGRESS_V1_B BIT(0)
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#define HCLGE_FILTER_FE_NIC_INGRESS_B BIT(0)
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#define HCLGE_FILTER_FE_NIC_EGRESS_B BIT(1)
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#define HCLGE_FILTER_FE_ROCE_INGRESS_B BIT(2)
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#define HCLGE_FILTER_FE_ROCE_EGRESS_B BIT(3)
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#define HCLGE_FILTER_FE_EGRESS (HCLGE_FILTER_FE_NIC_EGRESS_B \
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| HCLGE_FILTER_FE_ROCE_EGRESS_B)
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#define HCLGE_FILTER_FE_INGRESS (HCLGE_FILTER_FE_NIC_INGRESS_B \
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| HCLGE_FILTER_FE_ROCE_INGRESS_B)
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enum hclge_vlan_fltr_cap {
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HCLGE_VLAN_FLTR_DEF,
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HCLGE_VLAN_FLTR_CAN_MDF,
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};
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enum hclge_link_fail_code {
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HCLGE_LF_NORMAL,
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HCLGE_LF_REF_CLOCK_LOST,
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HCLGE_LF_XSFP_TX_DISABLE,
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HCLGE_LF_XSFP_ABSENT,
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};
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#define HCLGE_LINK_STATUS_DOWN 0
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#define HCLGE_LINK_STATUS_UP 1
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#define HCLGE_PG_NUM 4
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#define HCLGE_SCH_MODE_SP 0
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#define HCLGE_SCH_MODE_DWRR 1
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struct hclge_pg_info {
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u8 pg_id;
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u8 pg_sch_mode; /* 0: sp; 1: dwrr */
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u8 tc_bit_map;
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u32 bw_limit;
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u8 tc_dwrr[HNAE3_MAX_TC];
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};
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struct hclge_tc_info {
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u8 tc_id;
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u8 tc_sch_mode; /* 0: sp; 1: dwrr */
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u8 pgid;
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u32 bw_limit;
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};
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struct hclge_cfg {
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u8 tc_num;
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u8 vlan_fliter_cap;
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u16 tqp_desc_num;
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u16 rx_buf_len;
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u16 vf_rss_size_max;
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u16 pf_rss_size_max;
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u8 phy_addr;
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u8 media_type;
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u8 mac_addr[ETH_ALEN];
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u8 default_speed;
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u32 numa_node_map;
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u32 tx_spare_buf_size;
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u16 speed_ability;
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u16 umv_space;
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};
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struct hclge_tm_info {
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u8 num_tc;
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u8 num_pg; /* It must be 1 if vNET-Base schd */
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u8 pg_dwrr[HCLGE_PG_NUM];
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u8 prio_tc[HNAE3_MAX_USER_PRIO];
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struct hclge_pg_info pg_info[HCLGE_PG_NUM];
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struct hclge_tc_info tc_info[HNAE3_MAX_TC];
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enum hclge_fc_mode fc_mode;
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u8 hw_pfc_map; /* Allow for packet drop or not on this TC */
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u8 pfc_en; /* PFC enabled or not for user priority */
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};
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/* max number of mac statistics on each version */
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#define HCLGE_MAC_STATS_MAX_NUM_V1 87
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#define HCLGE_MAC_STATS_MAX_NUM_V2 105
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struct hclge_comm_stats_str {
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char desc[ETH_GSTRING_LEN];
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u32 stats_num;
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unsigned long offset;
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};
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/* mac stats ,opcode id: 0x0032 */
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struct hclge_mac_stats {
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u64 mac_tx_mac_pause_num;
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u64 mac_rx_mac_pause_num;
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u64 rsv0;
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u64 mac_tx_pfc_pri0_pkt_num;
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u64 mac_tx_pfc_pri1_pkt_num;
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u64 mac_tx_pfc_pri2_pkt_num;
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u64 mac_tx_pfc_pri3_pkt_num;
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u64 mac_tx_pfc_pri4_pkt_num;
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u64 mac_tx_pfc_pri5_pkt_num;
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u64 mac_tx_pfc_pri6_pkt_num;
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u64 mac_tx_pfc_pri7_pkt_num;
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u64 mac_rx_pfc_pri0_pkt_num;
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u64 mac_rx_pfc_pri1_pkt_num;
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u64 mac_rx_pfc_pri2_pkt_num;
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u64 mac_rx_pfc_pri3_pkt_num;
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u64 mac_rx_pfc_pri4_pkt_num;
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u64 mac_rx_pfc_pri5_pkt_num;
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u64 mac_rx_pfc_pri6_pkt_num;
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u64 mac_rx_pfc_pri7_pkt_num;
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u64 mac_tx_total_pkt_num;
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u64 mac_tx_total_oct_num;
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u64 mac_tx_good_pkt_num;
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u64 mac_tx_bad_pkt_num;
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u64 mac_tx_good_oct_num;
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u64 mac_tx_bad_oct_num;
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u64 mac_tx_uni_pkt_num;
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u64 mac_tx_multi_pkt_num;
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u64 mac_tx_broad_pkt_num;
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u64 mac_tx_undersize_pkt_num;
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u64 mac_tx_oversize_pkt_num;
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u64 mac_tx_64_oct_pkt_num;
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u64 mac_tx_65_127_oct_pkt_num;
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u64 mac_tx_128_255_oct_pkt_num;
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u64 mac_tx_256_511_oct_pkt_num;
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u64 mac_tx_512_1023_oct_pkt_num;
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u64 mac_tx_1024_1518_oct_pkt_num;
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u64 mac_tx_1519_2047_oct_pkt_num;
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u64 mac_tx_2048_4095_oct_pkt_num;
|
|
u64 mac_tx_4096_8191_oct_pkt_num;
|
|
u64 rsv1;
|
|
u64 mac_tx_8192_9216_oct_pkt_num;
|
|
u64 mac_tx_9217_12287_oct_pkt_num;
|
|
u64 mac_tx_12288_16383_oct_pkt_num;
|
|
u64 mac_tx_1519_max_good_oct_pkt_num;
|
|
u64 mac_tx_1519_max_bad_oct_pkt_num;
|
|
|
|
u64 mac_rx_total_pkt_num;
|
|
u64 mac_rx_total_oct_num;
|
|
u64 mac_rx_good_pkt_num;
|
|
u64 mac_rx_bad_pkt_num;
|
|
u64 mac_rx_good_oct_num;
|
|
u64 mac_rx_bad_oct_num;
|
|
u64 mac_rx_uni_pkt_num;
|
|
u64 mac_rx_multi_pkt_num;
|
|
u64 mac_rx_broad_pkt_num;
|
|
u64 mac_rx_undersize_pkt_num;
|
|
u64 mac_rx_oversize_pkt_num;
|
|
u64 mac_rx_64_oct_pkt_num;
|
|
u64 mac_rx_65_127_oct_pkt_num;
|
|
u64 mac_rx_128_255_oct_pkt_num;
|
|
u64 mac_rx_256_511_oct_pkt_num;
|
|
u64 mac_rx_512_1023_oct_pkt_num;
|
|
u64 mac_rx_1024_1518_oct_pkt_num;
|
|
u64 mac_rx_1519_2047_oct_pkt_num;
|
|
u64 mac_rx_2048_4095_oct_pkt_num;
|
|
u64 mac_rx_4096_8191_oct_pkt_num;
|
|
u64 rsv2;
|
|
u64 mac_rx_8192_9216_oct_pkt_num;
|
|
u64 mac_rx_9217_12287_oct_pkt_num;
|
|
u64 mac_rx_12288_16383_oct_pkt_num;
|
|
u64 mac_rx_1519_max_good_oct_pkt_num;
|
|
u64 mac_rx_1519_max_bad_oct_pkt_num;
|
|
|
|
u64 mac_tx_fragment_pkt_num;
|
|
u64 mac_tx_undermin_pkt_num;
|
|
u64 mac_tx_jabber_pkt_num;
|
|
u64 mac_tx_err_all_pkt_num;
|
|
u64 mac_tx_from_app_good_pkt_num;
|
|
u64 mac_tx_from_app_bad_pkt_num;
|
|
u64 mac_rx_fragment_pkt_num;
|
|
u64 mac_rx_undermin_pkt_num;
|
|
u64 mac_rx_jabber_pkt_num;
|
|
u64 mac_rx_fcs_err_pkt_num;
|
|
u64 mac_rx_send_app_good_pkt_num;
|
|
u64 mac_rx_send_app_bad_pkt_num;
|
|
u64 mac_tx_pfc_pause_pkt_num;
|
|
u64 mac_rx_pfc_pause_pkt_num;
|
|
u64 mac_tx_ctrl_pkt_num;
|
|
u64 mac_rx_ctrl_pkt_num;
|
|
|
|
/* duration of pfc */
|
|
u64 mac_tx_pfc_pri0_xoff_time;
|
|
u64 mac_tx_pfc_pri1_xoff_time;
|
|
u64 mac_tx_pfc_pri2_xoff_time;
|
|
u64 mac_tx_pfc_pri3_xoff_time;
|
|
u64 mac_tx_pfc_pri4_xoff_time;
|
|
u64 mac_tx_pfc_pri5_xoff_time;
|
|
u64 mac_tx_pfc_pri6_xoff_time;
|
|
u64 mac_tx_pfc_pri7_xoff_time;
|
|
u64 mac_rx_pfc_pri0_xoff_time;
|
|
u64 mac_rx_pfc_pri1_xoff_time;
|
|
u64 mac_rx_pfc_pri2_xoff_time;
|
|
u64 mac_rx_pfc_pri3_xoff_time;
|
|
u64 mac_rx_pfc_pri4_xoff_time;
|
|
u64 mac_rx_pfc_pri5_xoff_time;
|
|
u64 mac_rx_pfc_pri6_xoff_time;
|
|
u64 mac_rx_pfc_pri7_xoff_time;
|
|
|
|
/* duration of pause */
|
|
u64 mac_tx_pause_xoff_time;
|
|
u64 mac_rx_pause_xoff_time;
|
|
};
|
|
|
|
#define HCLGE_STATS_TIMER_INTERVAL 300UL
|
|
|
|
/* fec stats ,opcode id: 0x0316 */
|
|
#define HCLGE_FEC_STATS_MAX_LANES 8
|
|
struct hclge_fec_stats {
|
|
/* fec rs mode total stats */
|
|
u64 rs_corr_blocks;
|
|
u64 rs_uncorr_blocks;
|
|
u64 rs_error_blocks;
|
|
/* fec base-r mode per lanes stats */
|
|
u64 base_r_lane_num;
|
|
u64 base_r_corr_blocks;
|
|
u64 base_r_uncorr_blocks;
|
|
union {
|
|
struct {
|
|
u64 base_r_corr_per_lanes[HCLGE_FEC_STATS_MAX_LANES];
|
|
u64 base_r_uncorr_per_lanes[HCLGE_FEC_STATS_MAX_LANES];
|
|
};
|
|
u64 per_lanes[HCLGE_FEC_STATS_MAX_LANES * 2];
|
|
};
|
|
};
|
|
|
|
struct hclge_vlan_type_cfg {
|
|
u16 rx_ot_fst_vlan_type;
|
|
u16 rx_ot_sec_vlan_type;
|
|
u16 rx_in_fst_vlan_type;
|
|
u16 rx_in_sec_vlan_type;
|
|
u16 tx_ot_vlan_type;
|
|
u16 tx_in_vlan_type;
|
|
};
|
|
|
|
enum HCLGE_FD_MODE {
|
|
HCLGE_FD_MODE_DEPTH_2K_WIDTH_400B_STAGE_1,
|
|
HCLGE_FD_MODE_DEPTH_1K_WIDTH_400B_STAGE_2,
|
|
HCLGE_FD_MODE_DEPTH_4K_WIDTH_200B_STAGE_1,
|
|
HCLGE_FD_MODE_DEPTH_2K_WIDTH_200B_STAGE_2,
|
|
};
|
|
|
|
enum HCLGE_FD_KEY_TYPE {
|
|
HCLGE_FD_KEY_BASE_ON_PTYPE,
|
|
HCLGE_FD_KEY_BASE_ON_TUPLE,
|
|
};
|
|
|
|
enum HCLGE_FD_STAGE {
|
|
HCLGE_FD_STAGE_1,
|
|
HCLGE_FD_STAGE_2,
|
|
MAX_STAGE_NUM,
|
|
};
|
|
|
|
/* OUTER_XXX indicates tuples in tunnel header of tunnel packet
|
|
* INNER_XXX indicate tuples in tunneled header of tunnel packet or
|
|
* tuples of non-tunnel packet
|
|
*/
|
|
enum HCLGE_FD_TUPLE {
|
|
OUTER_DST_MAC,
|
|
OUTER_SRC_MAC,
|
|
OUTER_VLAN_TAG_FST,
|
|
OUTER_VLAN_TAG_SEC,
|
|
OUTER_ETH_TYPE,
|
|
OUTER_L2_RSV,
|
|
OUTER_IP_TOS,
|
|
OUTER_IP_PROTO,
|
|
OUTER_SRC_IP,
|
|
OUTER_DST_IP,
|
|
OUTER_L3_RSV,
|
|
OUTER_SRC_PORT,
|
|
OUTER_DST_PORT,
|
|
OUTER_L4_RSV,
|
|
OUTER_TUN_VNI,
|
|
OUTER_TUN_FLOW_ID,
|
|
INNER_DST_MAC,
|
|
INNER_SRC_MAC,
|
|
INNER_VLAN_TAG_FST,
|
|
INNER_VLAN_TAG_SEC,
|
|
INNER_ETH_TYPE,
|
|
INNER_L2_RSV,
|
|
INNER_IP_TOS,
|
|
INNER_IP_PROTO,
|
|
INNER_SRC_IP,
|
|
INNER_DST_IP,
|
|
INNER_L3_RSV,
|
|
INNER_SRC_PORT,
|
|
INNER_DST_PORT,
|
|
INNER_L4_RSV,
|
|
MAX_TUPLE,
|
|
};
|
|
|
|
#define HCLGE_FD_TUPLE_USER_DEF_TUPLES \
|
|
(BIT(INNER_L2_RSV) | BIT(INNER_L3_RSV) | BIT(INNER_L4_RSV))
|
|
|
|
enum HCLGE_FD_META_DATA {
|
|
PACKET_TYPE_ID,
|
|
IP_FRAGEMENT,
|
|
ROCE_TYPE,
|
|
NEXT_KEY,
|
|
VLAN_NUMBER,
|
|
SRC_VPORT,
|
|
DST_VPORT,
|
|
TUNNEL_PACKET,
|
|
MAX_META_DATA,
|
|
};
|
|
|
|
enum HCLGE_FD_KEY_OPT {
|
|
KEY_OPT_U8,
|
|
KEY_OPT_LE16,
|
|
KEY_OPT_LE32,
|
|
KEY_OPT_MAC,
|
|
KEY_OPT_IP,
|
|
KEY_OPT_VNI,
|
|
};
|
|
|
|
struct key_info {
|
|
u8 key_type;
|
|
u8 key_length; /* use bit as unit */
|
|
enum HCLGE_FD_KEY_OPT key_opt;
|
|
int offset;
|
|
int moffset;
|
|
};
|
|
|
|
#define MAX_KEY_LENGTH 400
|
|
#define MAX_KEY_DWORDS DIV_ROUND_UP(MAX_KEY_LENGTH / 8, 4)
|
|
#define MAX_KEY_BYTES (MAX_KEY_DWORDS * 4)
|
|
#define MAX_META_DATA_LENGTH 32
|
|
|
|
#define HCLGE_FD_MAX_USER_DEF_OFFSET 9000
|
|
#define HCLGE_FD_USER_DEF_DATA GENMASK(15, 0)
|
|
#define HCLGE_FD_USER_DEF_OFFSET GENMASK(15, 0)
|
|
#define HCLGE_FD_USER_DEF_OFFSET_UNMASK GENMASK(15, 0)
|
|
|
|
/* assigned by firmware, the real filter number for each pf may be less */
|
|
#define MAX_FD_FILTER_NUM 4096
|
|
#define HCLGE_ARFS_EXPIRE_INTERVAL 5UL
|
|
|
|
#define hclge_read_dev(a, reg) \
|
|
hclge_comm_read_reg((a)->hw.io_base, reg)
|
|
#define hclge_write_dev(a, reg, value) \
|
|
hclge_comm_write_reg((a)->hw.io_base, reg, value)
|
|
|
|
enum HCLGE_FD_ACTIVE_RULE_TYPE {
|
|
HCLGE_FD_RULE_NONE,
|
|
HCLGE_FD_ARFS_ACTIVE,
|
|
HCLGE_FD_EP_ACTIVE,
|
|
HCLGE_FD_TC_FLOWER_ACTIVE,
|
|
};
|
|
|
|
enum HCLGE_FD_PACKET_TYPE {
|
|
NIC_PACKET,
|
|
ROCE_PACKET,
|
|
};
|
|
|
|
enum HCLGE_FD_ACTION {
|
|
HCLGE_FD_ACTION_SELECT_QUEUE,
|
|
HCLGE_FD_ACTION_DROP_PACKET,
|
|
HCLGE_FD_ACTION_SELECT_TC,
|
|
};
|
|
|
|
enum HCLGE_FD_NODE_STATE {
|
|
HCLGE_FD_TO_ADD,
|
|
HCLGE_FD_TO_DEL,
|
|
HCLGE_FD_ACTIVE,
|
|
HCLGE_FD_DELETED,
|
|
};
|
|
|
|
enum HCLGE_FD_USER_DEF_LAYER {
|
|
HCLGE_FD_USER_DEF_NONE,
|
|
HCLGE_FD_USER_DEF_L2,
|
|
HCLGE_FD_USER_DEF_L3,
|
|
HCLGE_FD_USER_DEF_L4,
|
|
};
|
|
|
|
#define HCLGE_FD_USER_DEF_LAYER_NUM 3
|
|
struct hclge_fd_user_def_cfg {
|
|
u16 ref_cnt;
|
|
u16 offset;
|
|
};
|
|
|
|
struct hclge_fd_user_def_info {
|
|
enum HCLGE_FD_USER_DEF_LAYER layer;
|
|
u16 data;
|
|
u16 data_mask;
|
|
u16 offset;
|
|
};
|
|
|
|
struct hclge_fd_key_cfg {
|
|
u8 key_sel;
|
|
u8 inner_sipv6_word_en;
|
|
u8 inner_dipv6_word_en;
|
|
u8 outer_sipv6_word_en;
|
|
u8 outer_dipv6_word_en;
|
|
u32 tuple_active;
|
|
u32 meta_data_active;
|
|
};
|
|
|
|
struct hclge_fd_cfg {
|
|
u8 fd_mode;
|
|
u16 max_key_length; /* use bit as unit */
|
|
u32 rule_num[MAX_STAGE_NUM]; /* rule entry number */
|
|
u16 cnt_num[MAX_STAGE_NUM]; /* rule hit counter number */
|
|
struct hclge_fd_key_cfg key_cfg[MAX_STAGE_NUM];
|
|
struct hclge_fd_user_def_cfg user_def_cfg[HCLGE_FD_USER_DEF_LAYER_NUM];
|
|
};
|
|
|
|
#define IPV4_INDEX 3
|
|
#define IPV6_SIZE 4
|
|
struct hclge_fd_rule_tuples {
|
|
u8 src_mac[ETH_ALEN];
|
|
u8 dst_mac[ETH_ALEN];
|
|
/* Be compatible for ip address of both ipv4 and ipv6.
|
|
* For ipv4 address, we store it in src/dst_ip[3].
|
|
*/
|
|
u32 src_ip[IPV6_SIZE];
|
|
u32 dst_ip[IPV6_SIZE];
|
|
u16 src_port;
|
|
u16 dst_port;
|
|
u16 vlan_tag1;
|
|
u16 ether_proto;
|
|
u16 l2_user_def;
|
|
u16 l3_user_def;
|
|
u32 l4_user_def;
|
|
u8 ip_tos;
|
|
u8 ip_proto;
|
|
};
|
|
|
|
struct hclge_fd_rule {
|
|
struct hlist_node rule_node;
|
|
struct hclge_fd_rule_tuples tuples;
|
|
struct hclge_fd_rule_tuples tuples_mask;
|
|
u32 unused_tuple;
|
|
u32 flow_type;
|
|
union {
|
|
struct {
|
|
unsigned long cookie;
|
|
u8 tc;
|
|
} cls_flower;
|
|
struct {
|
|
u16 flow_id; /* only used for arfs */
|
|
} arfs;
|
|
struct {
|
|
struct hclge_fd_user_def_info user_def;
|
|
} ep;
|
|
};
|
|
u16 queue_id;
|
|
u16 vf_id;
|
|
u16 location;
|
|
enum HCLGE_FD_ACTIVE_RULE_TYPE rule_type;
|
|
enum HCLGE_FD_NODE_STATE state;
|
|
u8 action;
|
|
};
|
|
|
|
struct hclge_fd_ad_data {
|
|
u16 ad_id;
|
|
u8 drop_packet;
|
|
u8 forward_to_direct_queue;
|
|
u16 queue_id;
|
|
u8 use_counter;
|
|
u8 counter_id;
|
|
u8 use_next_stage;
|
|
u8 write_rule_id_to_bd;
|
|
u8 next_input_key;
|
|
u16 rule_id;
|
|
u16 tc_size;
|
|
u8 override_tc;
|
|
};
|
|
|
|
enum HCLGE_MAC_NODE_STATE {
|
|
HCLGE_MAC_TO_ADD,
|
|
HCLGE_MAC_TO_DEL,
|
|
HCLGE_MAC_ACTIVE
|
|
};
|
|
|
|
struct hclge_mac_node {
|
|
struct list_head node;
|
|
enum HCLGE_MAC_NODE_STATE state;
|
|
u8 mac_addr[ETH_ALEN];
|
|
};
|
|
|
|
enum HCLGE_MAC_ADDR_TYPE {
|
|
HCLGE_MAC_ADDR_UC,
|
|
HCLGE_MAC_ADDR_MC
|
|
};
|
|
|
|
struct hclge_vport_vlan_cfg {
|
|
struct list_head node;
|
|
int hd_tbl_status;
|
|
u16 vlan_id;
|
|
};
|
|
|
|
struct hclge_rst_stats {
|
|
u32 reset_done_cnt; /* the number of reset has completed */
|
|
u32 hw_reset_done_cnt; /* the number of HW reset has completed */
|
|
u32 pf_rst_cnt; /* the number of PF reset */
|
|
u32 flr_rst_cnt; /* the number of FLR */
|
|
u32 global_rst_cnt; /* the number of GLOBAL */
|
|
u32 imp_rst_cnt; /* the number of IMP reset */
|
|
u32 reset_cnt; /* the number of reset */
|
|
u32 reset_fail_cnt; /* the number of reset fail */
|
|
};
|
|
|
|
/* time and register status when mac tunnel interruption occur */
|
|
struct hclge_mac_tnl_stats {
|
|
u64 time;
|
|
u32 status;
|
|
};
|
|
|
|
#define HCLGE_RESET_INTERVAL (10 * HZ)
|
|
#define HCLGE_WAIT_RESET_DONE 100
|
|
|
|
#pragma pack(1)
|
|
struct hclge_vf_vlan_cfg {
|
|
u8 mbx_cmd;
|
|
u8 subcode;
|
|
union {
|
|
struct {
|
|
u8 is_kill;
|
|
__le16 vlan;
|
|
__le16 proto;
|
|
};
|
|
u8 enable;
|
|
};
|
|
};
|
|
|
|
#pragma pack()
|
|
|
|
/* For each bit of TCAM entry, it uses a pair of 'x' and
|
|
* 'y' to indicate which value to match, like below:
|
|
* ----------------------------------
|
|
* | bit x | bit y | search value |
|
|
* ----------------------------------
|
|
* | 0 | 0 | always hit |
|
|
* ----------------------------------
|
|
* | 1 | 0 | match '0' |
|
|
* ----------------------------------
|
|
* | 0 | 1 | match '1' |
|
|
* ----------------------------------
|
|
* | 1 | 1 | invalid |
|
|
* ----------------------------------
|
|
* Then for input key(k) and mask(v), we can calculate the value by
|
|
* the formulae:
|
|
* x = (~k) & v
|
|
* y = (k ^ ~v) & k
|
|
*/
|
|
#define calc_x(x, k, v) (x = ~(k) & (v))
|
|
#define calc_y(y, k, v) \
|
|
do { \
|
|
const typeof(k) _k_ = (k); \
|
|
const typeof(v) _v_ = (v); \
|
|
(y) = (_k_ ^ ~_v_) & (_k_); \
|
|
} while (0)
|
|
|
|
#define HCLGE_MAC_STATS_FIELD_OFF(f) (offsetof(struct hclge_mac_stats, f))
|
|
#define HCLGE_STATS_READ(p, offset) (*(u64 *)((u8 *)(p) + (offset)))
|
|
|
|
#define HCLGE_MAC_TNL_LOG_SIZE 8
|
|
#define HCLGE_VPORT_NUM 256
|
|
struct hclge_dev {
|
|
struct pci_dev *pdev;
|
|
struct hnae3_ae_dev *ae_dev;
|
|
struct hclge_hw hw;
|
|
struct hclge_misc_vector misc_vector;
|
|
struct hclge_mac_stats mac_stats;
|
|
struct hclge_fec_stats fec_stats;
|
|
unsigned long state;
|
|
unsigned long flr_state;
|
|
unsigned long last_reset_time;
|
|
|
|
enum hnae3_reset_type reset_type;
|
|
enum hnae3_reset_type reset_level;
|
|
unsigned long default_reset_request;
|
|
unsigned long reset_request; /* reset has been requested */
|
|
unsigned long reset_pending; /* client rst is pending to be served */
|
|
struct hclge_rst_stats rst_stats;
|
|
struct semaphore reset_sem; /* protect reset process */
|
|
u32 fw_version;
|
|
u16 num_tqps; /* Num task queue pairs of this PF */
|
|
u16 num_req_vfs; /* Num VFs requested for this PF */
|
|
|
|
u16 base_tqp_pid; /* Base task tqp physical id of this PF */
|
|
u16 alloc_rss_size; /* Allocated RSS task queue */
|
|
u16 vf_rss_size_max; /* HW defined VF max RSS task queue */
|
|
u16 pf_rss_size_max; /* HW defined PF max RSS task queue */
|
|
u32 tx_spare_buf_size; /* HW defined TX spare buffer size */
|
|
|
|
u16 fdir_pf_filter_count; /* Num of guaranteed filters for this PF */
|
|
u16 num_alloc_vport; /* Num vports this driver supports */
|
|
u32 numa_node_mask;
|
|
u16 rx_buf_len;
|
|
u16 num_tx_desc; /* desc num of per tx queue */
|
|
u16 num_rx_desc; /* desc num of per rx queue */
|
|
u8 hw_tc_map;
|
|
enum hclge_fc_mode fc_mode_last_time;
|
|
u8 support_sfp_query;
|
|
|
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#define HCLGE_FLAG_TC_BASE_SCH_MODE 1
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#define HCLGE_FLAG_VNET_BASE_SCH_MODE 2
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u8 tx_sch_mode;
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u8 tc_max;
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u8 pfc_max;
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u8 default_up;
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u8 dcbx_cap;
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struct hclge_tm_info tm_info;
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u16 num_msi;
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u16 num_msi_left;
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u16 num_msi_used;
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u16 *vector_status;
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int *vector_irq;
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u16 num_nic_msi; /* Num of nic vectors for this PF */
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u16 num_roce_msi; /* Num of roce vectors for this PF */
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unsigned long service_timer_period;
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unsigned long service_timer_previous;
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struct timer_list reset_timer;
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struct delayed_work service_task;
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bool cur_promisc;
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int num_alloc_vfs; /* Actual number of VFs allocated */
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struct hclge_comm_tqp *htqp;
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struct hclge_vport *vport;
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struct dentry *hclge_dbgfs;
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struct hnae3_client *nic_client;
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struct hnae3_client *roce_client;
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#define HCLGE_FLAG_MAIN BIT(0)
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#define HCLGE_FLAG_DCB_CAPABLE BIT(1)
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#define HCLGE_FLAG_DCB_ENABLE BIT(2)
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#define HCLGE_FLAG_MQPRIO_ENABLE BIT(3)
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u32 flag;
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u32 pkt_buf_size; /* Total pf buf size for tx/rx */
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u32 tx_buf_size; /* Tx buffer size for each TC */
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u32 dv_buf_size; /* Dv buffer size for each TC */
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u32 mps; /* Max packet size */
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/* vport_lock protect resource shared by vports */
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struct mutex vport_lock;
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struct hclge_vlan_type_cfg vlan_type_cfg;
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unsigned long vlan_table[VLAN_N_VID][BITS_TO_LONGS(HCLGE_VPORT_NUM)];
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unsigned long vf_vlan_full[BITS_TO_LONGS(HCLGE_VPORT_NUM)];
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unsigned long vport_config_block[BITS_TO_LONGS(HCLGE_VPORT_NUM)];
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struct hclge_fd_cfg fd_cfg;
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struct hlist_head fd_rule_list;
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spinlock_t fd_rule_lock; /* protect fd_rule_list and fd_bmap */
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u16 hclge_fd_rule_num;
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unsigned long serv_processed_cnt;
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unsigned long last_serv_processed;
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unsigned long last_rst_scheduled;
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unsigned long last_mbx_scheduled;
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unsigned long fd_bmap[BITS_TO_LONGS(MAX_FD_FILTER_NUM)];
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enum HCLGE_FD_ACTIVE_RULE_TYPE fd_active_type;
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u8 fd_en;
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bool gro_en;
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u16 wanted_umv_size;
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/* max available unicast mac vlan space */
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u16 max_umv_size;
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/* private unicast mac vlan space, it's same for PF and its VFs */
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u16 priv_umv_size;
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/* unicast mac vlan space shared by PF and its VFs */
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u16 share_umv_size;
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/* multicast mac address number used by PF and its VFs */
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u16 used_mc_mac_num;
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DECLARE_KFIFO(mac_tnl_log, struct hclge_mac_tnl_stats,
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HCLGE_MAC_TNL_LOG_SIZE);
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struct hclge_ptp *ptp;
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struct devlink *devlink;
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struct hclge_comm_rss_cfg rss_cfg;
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};
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/* VPort level vlan tag configuration for TX direction */
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struct hclge_tx_vtag_cfg {
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bool accept_tag1; /* Whether accept tag1 packet from host */
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bool accept_untag1; /* Whether accept untag1 packet from host */
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bool accept_tag2;
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bool accept_untag2;
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bool insert_tag1_en; /* Whether insert inner vlan tag */
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bool insert_tag2_en; /* Whether insert outer vlan tag */
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u16 default_tag1; /* The default inner vlan tag to insert */
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u16 default_tag2; /* The default outer vlan tag to insert */
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bool tag_shift_mode_en;
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};
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/* VPort level vlan tag configuration for RX direction */
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struct hclge_rx_vtag_cfg {
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bool rx_vlan_offload_en; /* Whether enable rx vlan offload */
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bool strip_tag1_en; /* Whether strip inner vlan tag */
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bool strip_tag2_en; /* Whether strip outer vlan tag */
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bool vlan1_vlan_prionly; /* Inner vlan tag up to descriptor enable */
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bool vlan2_vlan_prionly; /* Outer vlan tag up to descriptor enable */
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bool strip_tag1_discard_en; /* Inner vlan tag discard for BD enable */
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bool strip_tag2_discard_en; /* Outer vlan tag discard for BD enable */
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};
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enum HCLGE_VPORT_STATE {
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HCLGE_VPORT_STATE_ALIVE,
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HCLGE_VPORT_STATE_MAC_TBL_CHANGE,
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HCLGE_VPORT_STATE_PROMISC_CHANGE,
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HCLGE_VPORT_STATE_VLAN_FLTR_CHANGE,
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HCLGE_VPORT_STATE_INITED,
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HCLGE_VPORT_STATE_MAX
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};
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enum HCLGE_VPORT_NEED_NOTIFY {
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HCLGE_VPORT_NEED_NOTIFY_RESET,
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HCLGE_VPORT_NEED_NOTIFY_VF_VLAN,
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};
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struct hclge_vlan_info {
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u16 vlan_proto; /* so far support 802.1Q only */
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u16 qos;
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u16 vlan_tag;
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};
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struct hclge_port_base_vlan_config {
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u16 state;
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bool tbl_sta;
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struct hclge_vlan_info vlan_info;
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struct hclge_vlan_info old_vlan_info;
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};
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struct hclge_vf_info {
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int link_state;
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u8 mac[ETH_ALEN];
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u32 spoofchk;
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u32 max_tx_rate;
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u32 trusted;
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u8 request_uc_en;
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u8 request_mc_en;
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u8 request_bc_en;
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};
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struct hclge_vport {
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u16 alloc_tqps; /* Allocated Tx/Rx queues */
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u16 qs_offset;
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u32 bw_limit; /* VSI BW Limit (0 = disabled) */
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u8 dwrr;
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bool req_vlan_fltr_en;
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bool cur_vlan_fltr_en;
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unsigned long vlan_del_fail_bmap[BITS_TO_LONGS(VLAN_N_VID)];
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struct hclge_port_base_vlan_config port_base_vlan_cfg;
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struct hclge_tx_vtag_cfg txvlan_cfg;
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struct hclge_rx_vtag_cfg rxvlan_cfg;
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u16 used_umv_num;
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u16 vport_id;
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struct hclge_dev *back; /* Back reference to associated dev */
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struct hnae3_handle nic;
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struct hnae3_handle roce;
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unsigned long state;
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unsigned long need_notify;
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unsigned long last_active_jiffies;
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u32 mps; /* Max packet size */
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struct hclge_vf_info vf_info;
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u8 overflow_promisc_flags;
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u8 last_promisc_flags;
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spinlock_t mac_list_lock; /* protect mac address need to add/detele */
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struct list_head uc_mac_list; /* Store VF unicast table */
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struct list_head mc_mac_list; /* Store VF multicast table */
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struct list_head vlan_list; /* Store VF vlan table */
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};
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struct hclge_speed_bit_map {
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u32 speed;
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u32 speed_bit;
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};
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struct hclge_mac_speed_map {
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u32 speed_drv; /* speed defined in driver */
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u32 speed_fw; /* speed defined in firmware */
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};
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int hclge_set_vport_promisc_mode(struct hclge_vport *vport, bool en_uc_pmc,
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bool en_mc_pmc, bool en_bc_pmc);
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int hclge_add_uc_addr_common(struct hclge_vport *vport,
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const unsigned char *addr);
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int hclge_rm_uc_addr_common(struct hclge_vport *vport,
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const unsigned char *addr);
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int hclge_add_mc_addr_common(struct hclge_vport *vport,
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const unsigned char *addr);
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int hclge_rm_mc_addr_common(struct hclge_vport *vport,
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const unsigned char *addr);
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struct hclge_vport *hclge_get_vport(struct hnae3_handle *handle);
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int hclge_bind_ring_with_vector(struct hclge_vport *vport,
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int vector_id, bool en,
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struct hnae3_ring_chain_node *ring_chain);
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static inline int hclge_get_queue_id(struct hnae3_queue *queue)
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{
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struct hclge_comm_tqp *tqp =
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container_of(queue, struct hclge_comm_tqp, q);
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return tqp->index;
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}
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int hclge_inform_reset_assert_to_vf(struct hclge_vport *vport);
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int hclge_cfg_mac_speed_dup(struct hclge_dev *hdev, int speed, u8 duplex, u8 lane_num);
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int hclge_set_vlan_filter(struct hnae3_handle *handle, __be16 proto,
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u16 vlan_id, bool is_kill);
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int hclge_en_hw_strip_rxvtag(struct hnae3_handle *handle, bool enable);
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int hclge_buffer_alloc(struct hclge_dev *hdev);
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int hclge_rss_init_hw(struct hclge_dev *hdev);
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void hclge_mbx_handler(struct hclge_dev *hdev);
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int hclge_reset_tqp(struct hnae3_handle *handle);
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int hclge_cfg_flowctrl(struct hclge_dev *hdev);
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int hclge_func_reset_cmd(struct hclge_dev *hdev, int func_id);
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int hclge_vport_start(struct hclge_vport *vport);
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void hclge_vport_stop(struct hclge_vport *vport);
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int hclge_set_vport_mtu(struct hclge_vport *vport, int new_mtu);
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int hclge_dbg_read_cmd(struct hnae3_handle *handle, enum hnae3_dbg_cmd cmd,
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char *buf, int len);
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u16 hclge_covert_handle_qid_global(struct hnae3_handle *handle, u16 queue_id);
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int hclge_notify_client(struct hclge_dev *hdev,
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enum hnae3_reset_notify_type type);
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int hclge_update_mac_list(struct hclge_vport *vport,
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enum HCLGE_MAC_NODE_STATE state,
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enum HCLGE_MAC_ADDR_TYPE mac_type,
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const unsigned char *addr);
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int hclge_update_mac_node_for_dev_addr(struct hclge_vport *vport,
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const u8 *old_addr, const u8 *new_addr);
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void hclge_rm_vport_all_mac_table(struct hclge_vport *vport, bool is_del_list,
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enum HCLGE_MAC_ADDR_TYPE mac_type);
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void hclge_rm_vport_all_vlan_table(struct hclge_vport *vport, bool is_del_list);
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void hclge_uninit_vport_vlan_table(struct hclge_dev *hdev);
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void hclge_restore_mac_table_common(struct hclge_vport *vport);
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void hclge_restore_vport_port_base_vlan_config(struct hclge_dev *hdev);
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void hclge_restore_vport_vlan_table(struct hclge_vport *vport);
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int hclge_update_port_base_vlan_cfg(struct hclge_vport *vport, u16 state,
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struct hclge_vlan_info *vlan_info);
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int hclge_push_vf_port_base_vlan_info(struct hclge_vport *vport, u8 vfid,
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u16 state,
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struct hclge_vlan_info *vlan_info);
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void hclge_task_schedule(struct hclge_dev *hdev, unsigned long delay_time);
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int hclge_query_bd_num_cmd_send(struct hclge_dev *hdev,
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struct hclge_desc *desc);
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void hclge_report_hw_error(struct hclge_dev *hdev,
|
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enum hnae3_hw_error_type type);
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void hclge_inform_vf_promisc_info(struct hclge_vport *vport);
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int hclge_dbg_dump_rst_info(struct hclge_dev *hdev, char *buf, int len);
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int hclge_push_vf_link_status(struct hclge_vport *vport);
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int hclge_enable_vport_vlan_filter(struct hclge_vport *vport, bool request_en);
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int hclge_mac_update_stats(struct hclge_dev *hdev);
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#endif
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