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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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64c75d41ac
This patch is meant to allow for RX network flow classification to insert and remove ethertype filter by ethtool Example: Add an ethertype filter: $ ethtool -N eth0 flow-type ether proto 0x88F8 action 2 Show all filters: $ ethtool -n eth0 4 RX rings available Total 1 rules Filter: 15 Flow Type: Raw Ethernet Src MAC addr: 00:00:00:00:00:00 mask: FF:FF:FF:FF:FF:FF Dest MAC addr: 00:00:00:00:00:00 mask: FF:FF:FF:FF:FF:FF Ethertype: 0x88F8 mask: 0x0 Action: Direct to queue 2 Delete the filter by location: $ ethtool -N delete 15 Signed-off-by: Ruhao Gao <ruhao.gao@ni.com> Signed-off-by: Gangfeng Huang <gangfeng.huang@ni.com> Tested-by: Aaron Brown <aaron.f.brown@intel.com> Signed-off-by: Jeff Kirsher <jeffrey.t.kirsher@intel.com>
285 lines
11 KiB
C
285 lines
11 KiB
C
/* Intel(R) Gigabit Ethernet Linux driver
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* Copyright(c) 2007-2014 Intel Corporation.
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License along with
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* this program; if not, see <http://www.gnu.org/licenses/>.
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*
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* The full GNU General Public License is included in this distribution in
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* the file called "COPYING".
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*
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* Contact Information:
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* e1000-devel Mailing List <e1000-devel@lists.sourceforge.net>
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* Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
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*/
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#ifndef _E1000_82575_H_
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#define _E1000_82575_H_
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void igb_shutdown_serdes_link_82575(struct e1000_hw *hw);
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void igb_power_up_serdes_link_82575(struct e1000_hw *hw);
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void igb_power_down_phy_copper_82575(struct e1000_hw *hw);
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void igb_rx_fifo_flush_82575(struct e1000_hw *hw);
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s32 igb_read_i2c_byte(struct e1000_hw *hw, u8 byte_offset, u8 dev_addr,
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u8 *data);
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s32 igb_write_i2c_byte(struct e1000_hw *hw, u8 byte_offset, u8 dev_addr,
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u8 data);
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#define ID_LED_DEFAULT_82575_SERDES ((ID_LED_DEF1_DEF2 << 12) | \
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(ID_LED_DEF1_DEF2 << 8) | \
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(ID_LED_DEF1_DEF2 << 4) | \
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(ID_LED_OFF1_ON2))
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#define E1000_RAR_ENTRIES_82575 16
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#define E1000_RAR_ENTRIES_82576 24
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#define E1000_RAR_ENTRIES_82580 24
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#define E1000_RAR_ENTRIES_I350 32
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#define E1000_SW_SYNCH_MB 0x00000100
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#define E1000_STAT_DEV_RST_SET 0x00100000
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#define E1000_CTRL_DEV_RST 0x20000000
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/* SRRCTL bit definitions */
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#define E1000_SRRCTL_BSIZEPKT_SHIFT 10 /* Shift _right_ */
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#define E1000_SRRCTL_BSIZEHDRSIZE_SHIFT 2 /* Shift _left_ */
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#define E1000_SRRCTL_DESCTYPE_ADV_ONEBUF 0x02000000
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#define E1000_SRRCTL_DESCTYPE_HDR_SPLIT_ALWAYS 0x0A000000
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#define E1000_SRRCTL_DROP_EN 0x80000000
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#define E1000_SRRCTL_TIMESTAMP 0x40000000
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#define E1000_MRQC_ENABLE_RSS_MQ 0x00000002
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#define E1000_MRQC_ENABLE_VMDQ 0x00000003
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#define E1000_MRQC_RSS_FIELD_IPV4_UDP 0x00400000
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#define E1000_MRQC_ENABLE_VMDQ_RSS_MQ 0x00000005
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#define E1000_MRQC_RSS_FIELD_IPV6_UDP 0x00800000
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#define E1000_MRQC_RSS_FIELD_IPV6_UDP_EX 0x01000000
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#define E1000_EICR_TX_QUEUE ( \
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E1000_EICR_TX_QUEUE0 | \
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E1000_EICR_TX_QUEUE1 | \
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E1000_EICR_TX_QUEUE2 | \
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E1000_EICR_TX_QUEUE3)
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#define E1000_EICR_RX_QUEUE ( \
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E1000_EICR_RX_QUEUE0 | \
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E1000_EICR_RX_QUEUE1 | \
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E1000_EICR_RX_QUEUE2 | \
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E1000_EICR_RX_QUEUE3)
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/* Immediate Interrupt Rx (A.K.A. Low Latency Interrupt) */
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#define E1000_IMIREXT_SIZE_BP 0x00001000 /* Packet size bypass */
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#define E1000_IMIREXT_CTRL_BP 0x00080000 /* Bypass check of ctrl bits */
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/* Receive Descriptor - Advanced */
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union e1000_adv_rx_desc {
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struct {
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__le64 pkt_addr; /* Packet buffer address */
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__le64 hdr_addr; /* Header buffer address */
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} read;
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struct {
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struct {
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struct {
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__le16 pkt_info; /* RSS type, Packet type */
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__le16 hdr_info; /* Split Head, buf len */
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} lo_dword;
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union {
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__le32 rss; /* RSS Hash */
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struct {
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__le16 ip_id; /* IP id */
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__le16 csum; /* Packet Checksum */
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} csum_ip;
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} hi_dword;
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} lower;
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struct {
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__le32 status_error; /* ext status/error */
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__le16 length; /* Packet length */
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__le16 vlan; /* VLAN tag */
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} upper;
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} wb; /* writeback */
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};
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#define E1000_RXDADV_HDRBUFLEN_MASK 0x7FE0
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#define E1000_RXDADV_HDRBUFLEN_SHIFT 5
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#define E1000_RXDADV_STAT_TS 0x10000 /* Pkt was time stamped */
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#define E1000_RXDADV_STAT_TSIP 0x08000 /* timestamp in packet */
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/* Transmit Descriptor - Advanced */
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union e1000_adv_tx_desc {
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struct {
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__le64 buffer_addr; /* Address of descriptor's data buf */
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__le32 cmd_type_len;
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__le32 olinfo_status;
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} read;
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struct {
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__le64 rsvd; /* Reserved */
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__le32 nxtseq_seed;
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__le32 status;
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} wb;
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};
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/* Adv Transmit Descriptor Config Masks */
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#define E1000_ADVTXD_MAC_TSTAMP 0x00080000 /* IEEE1588 Timestamp packet */
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#define E1000_ADVTXD_DTYP_CTXT 0x00200000 /* Advanced Context Descriptor */
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#define E1000_ADVTXD_DTYP_DATA 0x00300000 /* Advanced Data Descriptor */
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#define E1000_ADVTXD_DCMD_EOP 0x01000000 /* End of Packet */
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#define E1000_ADVTXD_DCMD_IFCS 0x02000000 /* Insert FCS (Ethernet CRC) */
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#define E1000_ADVTXD_DCMD_RS 0x08000000 /* Report Status */
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#define E1000_ADVTXD_DCMD_DEXT 0x20000000 /* Descriptor extension (1=Adv) */
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#define E1000_ADVTXD_DCMD_VLE 0x40000000 /* VLAN pkt enable */
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#define E1000_ADVTXD_DCMD_TSE 0x80000000 /* TCP Seg enable */
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#define E1000_ADVTXD_PAYLEN_SHIFT 14 /* Adv desc PAYLEN shift */
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/* Context descriptors */
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struct e1000_adv_tx_context_desc {
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__le32 vlan_macip_lens;
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__le32 seqnum_seed;
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__le32 type_tucmd_mlhl;
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__le32 mss_l4len_idx;
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};
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#define E1000_ADVTXD_MACLEN_SHIFT 9 /* Adv ctxt desc mac len shift */
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#define E1000_ADVTXD_TUCMD_IPV4 0x00000400 /* IP Packet Type: 1=IPv4 */
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#define E1000_ADVTXD_TUCMD_L4T_TCP 0x00000800 /* L4 Packet TYPE of TCP */
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#define E1000_ADVTXD_TUCMD_L4T_SCTP 0x00001000 /* L4 packet TYPE of SCTP */
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/* IPSec Encrypt Enable for ESP */
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#define E1000_ADVTXD_L4LEN_SHIFT 8 /* Adv ctxt L4LEN shift */
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#define E1000_ADVTXD_MSS_SHIFT 16 /* Adv ctxt MSS shift */
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/* Adv ctxt IPSec SA IDX mask */
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/* Adv ctxt IPSec ESP len mask */
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/* Additional Transmit Descriptor Control definitions */
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#define E1000_TXDCTL_QUEUE_ENABLE 0x02000000 /* Enable specific Tx Queue */
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/* Tx Queue Arbitration Priority 0=low, 1=high */
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/* Additional Receive Descriptor Control definitions */
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#define E1000_RXDCTL_QUEUE_ENABLE 0x02000000 /* Enable specific Rx Queue */
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/* Direct Cache Access (DCA) definitions */
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#define E1000_DCA_CTRL_DCA_MODE_DISABLE 0x01 /* DCA Disable */
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#define E1000_DCA_CTRL_DCA_MODE_CB2 0x02 /* DCA Mode CB2 */
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#define E1000_DCA_RXCTRL_CPUID_MASK 0x0000001F /* Rx CPUID Mask */
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#define E1000_DCA_RXCTRL_DESC_DCA_EN BIT(5) /* DCA Rx Desc enable */
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#define E1000_DCA_RXCTRL_HEAD_DCA_EN BIT(6) /* DCA Rx Desc header enable */
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#define E1000_DCA_RXCTRL_DATA_DCA_EN BIT(7) /* DCA Rx Desc payload enable */
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#define E1000_DCA_RXCTRL_DESC_RRO_EN BIT(9) /* DCA Rx rd Desc Relax Order */
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#define E1000_DCA_TXCTRL_CPUID_MASK 0x0000001F /* Tx CPUID Mask */
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#define E1000_DCA_TXCTRL_DESC_DCA_EN BIT(5) /* DCA Tx Desc enable */
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#define E1000_DCA_TXCTRL_DESC_RRO_EN BIT(9) /* Tx rd Desc Relax Order */
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#define E1000_DCA_TXCTRL_TX_WB_RO_EN BIT(11) /* Tx Desc writeback RO bit */
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#define E1000_DCA_TXCTRL_DATA_RRO_EN BIT(13) /* Tx rd data Relax Order */
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/* Additional DCA related definitions, note change in position of CPUID */
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#define E1000_DCA_TXCTRL_CPUID_MASK_82576 0xFF000000 /* Tx CPUID Mask */
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#define E1000_DCA_RXCTRL_CPUID_MASK_82576 0xFF000000 /* Rx CPUID Mask */
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#define E1000_DCA_TXCTRL_CPUID_SHIFT 24 /* Tx CPUID now in the last byte */
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#define E1000_DCA_RXCTRL_CPUID_SHIFT 24 /* Rx CPUID now in the last byte */
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/* ETQF register bit definitions */
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#define E1000_ETQF_FILTER_ENABLE BIT(26)
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#define E1000_ETQF_1588 BIT(30)
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#define E1000_ETQF_IMM_INT BIT(29)
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#define E1000_ETQF_QUEUE_ENABLE BIT(31)
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#define E1000_ETQF_QUEUE_SHIFT 16
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#define E1000_ETQF_QUEUE_MASK 0x00070000
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#define E1000_ETQF_ETYPE_MASK 0x0000FFFF
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/* FTQF register bit definitions */
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#define E1000_FTQF_VF_BP 0x00008000
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#define E1000_FTQF_1588_TIME_STAMP 0x08000000
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#define E1000_FTQF_MASK 0xF0000000
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#define E1000_FTQF_MASK_PROTO_BP 0x10000000
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#define E1000_FTQF_MASK_SOURCE_PORT_BP 0x80000000
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#define E1000_NVM_APME_82575 0x0400
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#define MAX_NUM_VFS 8
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#define E1000_DTXSWC_MAC_SPOOF_MASK 0x000000FF /* Per VF MAC spoof control */
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#define E1000_DTXSWC_VLAN_SPOOF_MASK 0x0000FF00 /* Per VF VLAN spoof control */
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#define E1000_DTXSWC_LLE_MASK 0x00FF0000 /* Per VF Local LB enables */
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#define E1000_DTXSWC_VLAN_SPOOF_SHIFT 8
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#define E1000_DTXSWC_VMDQ_LOOPBACK_EN BIT(31) /* global VF LB enable */
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/* Easy defines for setting default pool, would normally be left a zero */
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#define E1000_VT_CTL_DEFAULT_POOL_SHIFT 7
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#define E1000_VT_CTL_DEFAULT_POOL_MASK (0x7 << E1000_VT_CTL_DEFAULT_POOL_SHIFT)
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/* Other useful VMD_CTL register defines */
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#define E1000_VT_CTL_IGNORE_MAC BIT(28)
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#define E1000_VT_CTL_DISABLE_DEF_POOL BIT(29)
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#define E1000_VT_CTL_VM_REPL_EN BIT(30)
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/* Per VM Offload register setup */
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#define E1000_VMOLR_RLPML_MASK 0x00003FFF /* Long Packet Maximum Length mask */
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#define E1000_VMOLR_LPE 0x00010000 /* Accept Long packet */
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#define E1000_VMOLR_RSSE 0x00020000 /* Enable RSS */
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#define E1000_VMOLR_AUPE 0x01000000 /* Accept untagged packets */
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#define E1000_VMOLR_ROMPE 0x02000000 /* Accept overflow multicast */
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#define E1000_VMOLR_ROPE 0x04000000 /* Accept overflow unicast */
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#define E1000_VMOLR_BAM 0x08000000 /* Accept Broadcast packets */
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#define E1000_VMOLR_MPME 0x10000000 /* Multicast promiscuous mode */
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#define E1000_VMOLR_STRVLAN 0x40000000 /* Vlan stripping enable */
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#define E1000_VMOLR_STRCRC 0x80000000 /* CRC stripping enable */
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#define E1000_DVMOLR_HIDEVLAN 0x20000000 /* Hide vlan enable */
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#define E1000_DVMOLR_STRVLAN 0x40000000 /* Vlan stripping enable */
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#define E1000_DVMOLR_STRCRC 0x80000000 /* CRC stripping enable */
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#define E1000_VLVF_ARRAY_SIZE 32
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#define E1000_VLVF_VLANID_MASK 0x00000FFF
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#define E1000_VLVF_POOLSEL_SHIFT 12
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#define E1000_VLVF_POOLSEL_MASK (0xFF << E1000_VLVF_POOLSEL_SHIFT)
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#define E1000_VLVF_LVLAN 0x00100000
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#define E1000_VLVF_VLANID_ENABLE 0x80000000
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#define E1000_VMVIR_VLANA_DEFAULT 0x40000000 /* Always use default VLAN */
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#define E1000_VMVIR_VLANA_NEVER 0x80000000 /* Never insert VLAN tag */
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#define E1000_IOVCTL 0x05BBC
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#define E1000_IOVCTL_REUSE_VFQ 0x00000001
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#define E1000_RPLOLR_STRVLAN 0x40000000
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#define E1000_RPLOLR_STRCRC 0x80000000
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#define E1000_DTXCTL_8023LL 0x0004
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#define E1000_DTXCTL_VLAN_ADDED 0x0008
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#define E1000_DTXCTL_OOS_ENABLE 0x0010
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#define E1000_DTXCTL_MDP_EN 0x0020
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#define E1000_DTXCTL_SPOOF_INT 0x0040
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#define E1000_EEPROM_PCS_AUTONEG_DISABLE_BIT BIT(14)
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#define ALL_QUEUES 0xFFFF
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/* RX packet buffer size defines */
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#define E1000_RXPBS_SIZE_MASK_82576 0x0000007F
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void igb_vmdq_set_anti_spoofing_pf(struct e1000_hw *, bool, int);
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void igb_vmdq_set_loopback_pf(struct e1000_hw *, bool);
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void igb_vmdq_set_replication_pf(struct e1000_hw *, bool);
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u16 igb_rxpbs_adjust_82580(u32 data);
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s32 igb_read_emi_reg(struct e1000_hw *, u16 addr, u16 *data);
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s32 igb_set_eee_i350(struct e1000_hw *, bool adv1G, bool adv100M);
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s32 igb_set_eee_i354(struct e1000_hw *, bool adv1G, bool adv100M);
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s32 igb_get_eee_status_i354(struct e1000_hw *hw, bool *status);
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#define E1000_I2C_THERMAL_SENSOR_ADDR 0xF8
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#define E1000_EMC_INTERNAL_DATA 0x00
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#define E1000_EMC_INTERNAL_THERM_LIMIT 0x20
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#define E1000_EMC_DIODE1_DATA 0x01
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#define E1000_EMC_DIODE1_THERM_LIMIT 0x19
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#define E1000_EMC_DIODE2_DATA 0x23
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#define E1000_EMC_DIODE2_THERM_LIMIT 0x1A
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#define E1000_EMC_DIODE3_DATA 0x2A
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#define E1000_EMC_DIODE3_THERM_LIMIT 0x30
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#endif
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