076c4c2633
Cosmetic changes to make code more unix-like. MFC after: 1 week
1344 lines
58 KiB
C
1344 lines
58 KiB
C
/*******************************************************************************
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Copyright (c) 2001-2002 Intel Corporation
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All rights reserved.
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Redistribution and use in source and binary forms of the Software, with or
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without modification, are permitted provided that the following conditions
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are met:
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1. Redistributions of source code of the Software may retain the above
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copyright notice, this list of conditions and the following disclaimer.
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2. Redistributions in binary form of the Software may reproduce the above
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copyright notice, this list of conditions and the following disclaimer
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in the documentation and/or other materials provided with the
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distribution.
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3. Neither the name of the Intel Corporation nor the names of its
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contributors shall be used to endorse or promote products derived from
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this Software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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ARE DISCLAIMED. IN NO EVENT SHALL THE INTEL OR ITS CONTRIBUTORS BE LIABLE
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FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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SUCH DAMAGE.
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*******************************************************************************/
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/*$FreeBSD$*/
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/* if_em_fxhw.h
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* Structures, enums, and macros for the MAC
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*/
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#ifndef _EM_MAC_H_
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#define _EM_MAC_H_
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#include <dev/em/if_em_osdep.h>
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/* Forward declarations of structures used by the shared code */
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struct em_shared_adapter;
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struct em_shared_stats;
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/* Enumerated types specific to the e1000 hardware */
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/* Media Access Controlers */
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typedef enum {
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em_82542_rev2_0 = 0,
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em_82542_rev2_1,
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em_82543,
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em_82544,
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em_82540,
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em_num_macs
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} em_mac_type;
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/* Media Types */
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typedef enum {
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em_media_type_copper = 0,
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em_media_type_fiber = 1,
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em_num_media_types
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} em_media_type;
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typedef enum {
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em_10_half = 0,
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em_10_full = 1,
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em_100_half = 2,
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em_100_full = 3
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} em_speed_duplex_type;
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/* Flow Control Settings */
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typedef enum {
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em_fc_none = 0,
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em_fc_rx_pause = 1,
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em_fc_tx_pause = 2,
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em_fc_full = 3,
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em_fc_default = 0xFF
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} em_fc_type;
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/* PCI bus types */
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typedef enum {
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em_bus_type_unknown = 0,
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em_bus_type_pci,
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em_bus_type_pcix
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} em_bus_type;
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/* PCI bus speeds */
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typedef enum {
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em_bus_speed_unknown = 0,
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em_bus_speed_33,
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em_bus_speed_66,
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em_bus_speed_100,
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em_bus_speed_133,
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em_bus_speed_reserved
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} em_bus_speed;
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/* PCI bus widths */
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typedef enum {
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em_bus_width_unknown = 0,
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em_bus_width_32,
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em_bus_width_64
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} em_bus_width;
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/* Function prototypes */
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/* Setup */
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void em_adapter_stop(struct em_shared_adapter *shared);
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boolean_t em_init_hw(struct em_shared_adapter *shared);
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void em_init_rx_addrs(struct em_shared_adapter *shared);
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/* Filters (multicast, vlan, receive) */
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void em_mc_addr_list_update(struct em_shared_adapter *shared, uint8_t * mc_addr_list, uint32_t mc_addr_count, uint32_t pad);
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uint32_t em_hash_mc_addr(struct em_shared_adapter *shared, uint8_t * mc_addr);
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void em_mta_set(struct em_shared_adapter *shared, uint32_t hash_value);
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void em_rar_set(struct em_shared_adapter *shared, uint8_t * mc_addr, uint32_t rar_index);
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void em_write_vfta(struct em_shared_adapter *shared, uint32_t offset, uint32_t value);
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void em_clear_vfta(struct em_shared_adapter *shared);
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/* Link layer setup functions */
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boolean_t em_setup_fc_and_link(struct em_shared_adapter *shared);
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boolean_t em_setup_pcs_link(struct em_shared_adapter *shared, uint32_t dev_ctrl_reg);
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void em_config_fc_after_link_up(struct em_shared_adapter *shared);
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void em_check_for_link(struct em_shared_adapter *shared);
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void em_get_speed_and_duplex(struct em_shared_adapter *shared, uint16_t * speed, uint16_t * duplex);
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/* EEPROM Functions */
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uint16_t em_read_eeprom(struct em_shared_adapter *shared, uint16_t reg);
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boolean_t em_validate_eeprom_checksum(struct em_shared_adapter *shared);
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void em_update_eeprom_checksum(struct em_shared_adapter *shared);
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boolean_t em_write_eeprom(struct em_shared_adapter *shared, uint16_t reg, uint16_t data);
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/* Everything else */
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void em_clear_hw_cntrs(struct em_shared_adapter *shared);
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boolean_t em_read_part_num(struct em_shared_adapter *shared, uint32_t * part_num);
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void em_led_on(struct em_shared_adapter *shared);
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void em_led_off(struct em_shared_adapter *shared);
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void em_get_bus_info(struct em_shared_adapter *shared);
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uint32_t em_tbi_adjust_stats(struct em_shared_adapter *shared, struct em_shared_stats *stats, uint32_t frame_len, uint8_t * mac_addr);
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void em_write_pci_cfg(struct em_shared_adapter *shared, uint32_t reg, uint16_t * value);
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/* PCI Device IDs */
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#define E1000_DEV_ID_82542 0x1000
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#define E1000_DEV_ID_82543GC_FIBER 0x1001
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#define E1000_DEV_ID_82543GC_COPPER 0x1004
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#define E1000_DEV_ID_82544EI_COPPER 0x1008
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#define E1000_DEV_ID_82544EI_FIBER 0x1009
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#define E1000_DEV_ID_82544GC_COPPER 0x100C
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#define E1000_DEV_ID_82544GC_LOM 0x100D
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#define E1000_DEV_ID_82540EM 0x100E
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#define NUM_DEV_IDS 8
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#define NODE_ADDRESS_SIZE 6
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#define ETH_LENGTH_OF_ADDRESS 6
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/* MAC decode size is 128K - This is the size of BAR0 */
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#define MAC_DECODE_SIZE (128 * 1024)
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#define E1000_82542_2_0_REV_ID 2
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#define E1000_82542_2_1_REV_ID 3
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#define SPEED_10 10
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#define SPEED_100 100
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#define SPEED_1000 1000
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#define HALF_DUPLEX 1
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#define FULL_DUPLEX 2
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/* The sizes (in bytes) of a ethernet packet */
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#define ENET_HEADER_SIZE 14
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#define MAXIMUM_ETHERNET_PACKET_SIZE 1514 /* Without FCS */
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#define MINIMUM_ETHERNET_PACKET_SIZE 60 /* Without FCS */
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#define CRC_LENGTH 4
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#define MAX_JUMBO_FRAME_SIZE 0x3F00
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/* 802.1q VLAN Packet Sizes */
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#define VLAN_TAG_SIZE 4 /* 802.3ac tag (not DMAed) */
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/* Ethertype field values */
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#define ETHERNET_IEEE_VLAN_TYPE 0x8100 /* 802.3ac packet */
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#define ETHERNET_IP_TYPE 0x0800 /* IP packets */
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#define ETHERNET_ARP_TYPE 0x0806 /* Address Resolution Protocol (ARP) */
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/* Packet Header defines */
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#define IP_PROTOCOL_TCP 6
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#define IP_PROTOCOL_UDP 0x11
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/* This defines the bits that are set in the Interrupt Mask
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* Set/Read Register. Each bit is documented below:
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* o RXDMT0 = Receive Descriptor Minimum Threshold hit (ring 0)
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* o RXSEQ = Receive Sequence Error
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*/
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#define POLL_IMS_ENABLE_MASK ( \
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E1000_IMS_RXDMT0 | \
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E1000_IMS_RXSEQ)
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/* This defines the bits that are set in the Interrupt Mask
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* Set/Read Register. Each bit is documented below:
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* o RXT0 = Receiver Timer Interrupt (ring 0)
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* o TXDW = Transmit Descriptor Written Back
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* o RXDMT0 = Receive Descriptor Minimum Threshold hit (ring 0)
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* o RXSEQ = Receive Sequence Error
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* o LSC = Link Status Change
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*/
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#define IMS_ENABLE_MASK ( \
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E1000_IMS_RXT0 | \
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E1000_IMS_TXDW | \
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E1000_IMS_RXDMT0 | \
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E1000_IMS_RXSEQ | \
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E1000_IMS_LSC)
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/* The number of high/low register pairs in the RAR. The RAR (Receive Address
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* Registers) holds the directed and multicast addresses that we monitor. We
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* reserve one of these spots for our directed address, allowing us room for
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* E1000_RAR_ENTRIES - 1 multicast addresses.
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*/
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#define E1000_RAR_ENTRIES 16
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#define MIN_NUMBER_OF_DESCRIPTORS 8
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#define MAX_NUMBER_OF_DESCRIPTORS 0xFFF8
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/* Receive Descriptor */
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struct em_rx_desc {
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uint64_t buffer_addr; /* Address of the descriptor's data buffer */
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uint16_t length; /* Length of data DMAed into data buffer */
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uint16_t csum; /* Packet checksum */
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uint8_t status; /* Descriptor status */
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uint8_t errors; /* Descriptor Errors */
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uint16_t special;
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};
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/* Receive Decriptor bit definitions */
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#define E1000_RXD_STAT_DD 0x01 /* Descriptor Done */
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#define E1000_RXD_STAT_EOP 0x02 /* End of Packet */
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#define E1000_RXD_STAT_IXSM 0x04 /* Ignore checksum */
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#define E1000_RXD_STAT_VP 0x08 /* IEEE VLAN Packet */
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#define E1000_RXD_STAT_TCPCS 0x20 /* TCP xsum calculated */
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#define E1000_RXD_STAT_IPCS 0x40 /* IP xsum calculated */
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#define E1000_RXD_STAT_PIF 0x80 /* passed in-exact filter */
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#define E1000_RXD_ERR_CE 0x01 /* CRC Error */
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#define E1000_RXD_ERR_SE 0x02 /* Symbol Error */
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#define E1000_RXD_ERR_SEQ 0x04 /* Sequence Error */
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#define E1000_RXD_ERR_CXE 0x10 /* Carrier Extension Error */
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#define E1000_RXD_ERR_TCPE 0x20 /* TCP/UDP Checksum Error */
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#define E1000_RXD_ERR_IPE 0x40 /* IP Checksum Error */
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#define E1000_RXD_ERR_RXE 0x80 /* Rx Data Error */
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#define E1000_RXD_SPC_VLAN_MASK 0x0FFF /* VLAN ID is in lower 12 bits */
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#define E1000_RXD_SPC_PRI_MASK 0xE000 /* Priority is in upper 3 bits */
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#define E1000_RXD_SPC_PRI_SHIFT 0x000D /* Priority is in upper 3 of 16 */
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#define E1000_RXD_SPC_CFI_MASK 0x1000 /* CFI is bit 12 */
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#define E1000_RXD_SPC_CFI_SHIFT 0x000C /* CFI is bit 12 */
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/* mask to determine if packets should be dropped due to frame errors */
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#define E1000_RXD_ERR_FRAME_ERR_MASK ( \
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E1000_RXD_ERR_CE | \
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E1000_RXD_ERR_SE | \
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E1000_RXD_ERR_SEQ | \
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E1000_RXD_ERR_CXE | \
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E1000_RXD_ERR_RXE)
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/* Transmit Descriptor */
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struct em_tx_desc {
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uint64_t buffer_addr; /* Address of the descriptor's data buffer */
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union {
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uint32_t data;
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struct {
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uint16_t length; /* Data buffer length */
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uint8_t cso; /* Checksum offset */
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uint8_t cmd; /* Descriptor control */
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} flags;
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} lower;
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union {
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uint32_t data;
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struct {
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uint8_t status; /* Descriptor status */
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uint8_t css; /* Checksum start */
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uint16_t special;
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} fields;
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} upper;
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};
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/* Transmit Descriptor bit definitions */
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#define E1000_TXD_DTYP_D 0x00100000 /* Data Descriptor */
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#define E1000_TXD_DTYP_C 0x00000000 /* Context Descriptor */
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#define E1000_TXD_POPTS_IXSM 0x01 /* Insert IP checksum */
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#define E1000_TXD_POPTS_TXSM 0x02 /* Insert TCP/UDP checksum */
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#define E1000_TXD_CMD_EOP 0x01000000 /* End of Packet */
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#define E1000_TXD_CMD_IFCS 0x02000000 /* Insert FCS (Ethernet CRC) */
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#define E1000_TXD_CMD_IC 0x04000000 /* Insert Checksum */
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#define E1000_TXD_CMD_RS 0x08000000 /* Report Status */
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#define E1000_TXD_CMD_RPS 0x10000000 /* Report Packet Sent */
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#define E1000_TXD_CMD_DEXT 0x20000000 /* Descriptor extension (0 = legacy) */
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#define E1000_TXD_CMD_VLE 0x40000000 /* Add VLAN tag */
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#define E1000_TXD_CMD_IDE 0x80000000 /* Enable Tidv register */
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#define E1000_TXD_STAT_DD 0x00000001 /* Descriptor Done */
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#define E1000_TXD_STAT_EC 0x00000002 /* Excess Collisions */
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#define E1000_TXD_STAT_LC 0x00000004 /* Late Collisions */
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#define E1000_TXD_STAT_TU 0x00000008 /* Transmit underrun */
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#define E1000_TXD_CMD_TCP 0x01000000 /* TCP packet */
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#define E1000_TXD_CMD_IP 0x02000000 /* IP packet */
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#define E1000_TXD_CMD_TSE 0x04000000 /* TCP Seg enable */
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#define E1000_TXD_STAT_TC 0x00000004 /* Tx Underrun */
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/* Offload Context Descriptor */
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struct em_context_desc {
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union {
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uint32_t ip_config;
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struct {
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uint8_t ipcss; /* IP checksum start */
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uint8_t ipcso; /* IP checksum offset */
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uint16_t ipcse; /* IP checksum end */
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} ip_fields;
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} lower_setup;
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union {
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uint32_t tcp_config;
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struct {
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uint8_t tucss; /* TCP checksum start */
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uint8_t tucso; /* TCP checksum offset */
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uint16_t tucse; /* TCP checksum end */
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} tcp_fields;
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} upper_setup;
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uint32_t cmd_and_length; /* */
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union {
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uint32_t data;
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struct {
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uint8_t status; /* Descriptor status */
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uint8_t hdr_len; /* Header length */
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uint16_t mss; /* Maximum segment size */
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} fields;
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} tcp_seg_setup;
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};
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/* Offload data descriptor */
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struct em_data_desc {
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uint64_t buffer_addr; /* Address of the descriptor's buffer address */
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union {
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uint32_t data;
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struct {
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uint16_t length; /* Data buffer length */
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uint8_t typ_len_ext; /* */
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uint8_t cmd; /* */
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} flags;
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} lower;
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union {
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uint32_t data;
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struct {
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uint8_t status; /* Descriptor status */
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uint8_t popts; /* Packet Options */
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uint16_t special; /* */
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} fields;
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} upper;
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};
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/* Filters */
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#define E1000_NUM_UNICAST 16 /* Unicast filter entries */
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#define E1000_MC_TBL_SIZE 128 /* Multicast Filter Table (4096 bits) */
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#define E1000_VLAN_FILTER_TBL_SIZE 128 /* VLAN Filter Table (4096 bits) */
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/* Receive Address Register */
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struct em_rar {
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volatile uint32_t low; /* receive address low */
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volatile uint32_t high; /* receive address high */
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};
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/* The number of entries in the Multicast Table Array (MTA). */
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#define E1000_NUM_MTA_REGISTERS 128
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/* IPv4 Address Table Entry */
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struct em_ipv4_at_entry {
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volatile uint32_t ipv4_addr; /* IP Address (RW) */
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volatile uint32_t reserved;
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};
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/* Four wakeup IP addresses are supported */
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#define E1000_WAKEUP_IP_ADDRESS_COUNT_MAX 4
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#define E1000_IP4AT_SIZE E1000_WAKEUP_IP_ADDRESS_COUNT_MAX
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#define E1000_IP6AT_SIZE 1
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/* IPv6 Address Table Entry */
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struct em_ipv6_at_entry {
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volatile uint8_t ipv6_addr[16];
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};
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/* Flexible Filter Length Table Entry */
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struct em_fflt_entry {
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volatile uint32_t length; /* Flexible Filter Length (RW) */
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volatile uint32_t reserved;
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};
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/* Flexible Filter Mask Table Entry */
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struct em_ffmt_entry {
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volatile uint32_t mask; /* Flexible Filter Mask (RW) */
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volatile uint32_t reserved;
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};
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/* Flexible Filter Value Table Entry */
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struct em_ffvt_entry {
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volatile uint32_t value; /* Flexible Filter Value (RW) */
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volatile uint32_t reserved;
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};
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/* Four Flexible Filters are supported */
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#define E1000_FLEXIBLE_FILTER_COUNT_MAX 4
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/* Each Flexible Filter is at most 128 (0x80) bytes in length */
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#define E1000_FLEXIBLE_FILTER_SIZE_MAX 128
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#define E1000_FFLT_SIZE E1000_FLEXIBLE_FILTER_COUNT_MAX
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#define E1000_FFMT_SIZE E1000_FLEXIBLE_FILTER_SIZE_MAX
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#define E1000_FFVT_SIZE E1000_FLEXIBLE_FILTER_SIZE_MAX
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/* Register Set. (82543, 82544)
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*
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* Registers are defined to be 32 bits and should be accessed as 32 bit values.
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* These registers are physically located on the NIC, but are mapped into the
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* host memory address space.
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*
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* RW - register is both readable and writable
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* RO - register is read only
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* WO - register is write only
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* R/clr - register is read only and is cleared when read
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* A - register array
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*/
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#define E1000_CTRL 0x00000 /* Device Control - RW */
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#define E1000_STATUS 0x00008 /* Device Status - RO */
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#define E1000_EECD 0x00010 /* EEPROM/Flash Control - RW */
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#define E1000_EERD 0x00014 /* EEPROM Read - RW */
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#define E1000_CTRL_EXT 0x00018 /* Extended Device Control - RW */
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#define E1000_MDIC 0x00020 /* MDI Control - RW */
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#define E1000_FCAL 0x00028 /* Flow Control Address Low - RW */
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#define E1000_FCAH 0x0002C /* Flow Control Address High -RW */
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#define E1000_FCT 0x00030 /* Flow Control Type - RW */
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#define E1000_VET 0x00038 /* VLAN Ether Type - RW */
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#define E1000_ICR 0x000C0 /* Interrupt Cause Read - R/clr */
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#define E1000_ITR 0x000C4 /* Interrupt Throttling Rate - RW */
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#define E1000_ICS 0x000C8 /* Interrupt Cause Set - WO */
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#define E1000_IMS 0x000D0 /* Interrupt Mask Set - RW */
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#define E1000_IMC 0x000D8 /* Interrupt Mask Clear - WO */
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#define E1000_RCTL 0x00100 /* RX Control - RW */
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|
#define E1000_FCTTV 0x00170 /* Flow Control Transmit Timer Value - RW */
|
|
#define E1000_TXCW 0x00178 /* TX Configuration Word - RW */
|
|
#define E1000_RXCW 0x00180 /* RX Configuration Word - RO */
|
|
#define E1000_TCTL 0x00400 /* TX Control - RW */
|
|
#define E1000_TIPG 0x00410 /* TX Inter-packet gap -RW */
|
|
#define E1000_TBT 0x00448 /* TX Burst Timer - RW */
|
|
#define E1000_LEDCTL 0x00E00 /* LED Control - RW */
|
|
#define E1000_PBA 0x01000 /* Packet Buffer Allocation - RW */
|
|
#define E1000_FCRTL 0x02160 /* Flow Control Receive Threshold Low - RW */
|
|
#define E1000_FCRTH 0x02168 /* Flow Control Receive Threshold High - RW */
|
|
#define E1000_RDBAL 0x02800 /* RX Descriptor Base Address Low - RW */
|
|
#define E1000_RDBAH 0x02804 /* RX Descriptor Base Address High - RW */
|
|
#define E1000_RDLEN 0x02808 /* RX Descriptor Length - RW */
|
|
#define E1000_RDH 0x02810 /* RX Descriptor Head - RW */
|
|
#define E1000_RDT 0x02818 /* RX Descriptor Tail - RW */
|
|
#define E1000_RDTR 0x02820 /* RX Delay Timer - RW */
|
|
#define E1000_RXDCTL 0x02828 /* RX Descriptor Control - RW */
|
|
#define E1000_RADV 0x0282C /* RX Interrupt Absolute Delay Timer - RW */
|
|
#define E1000_RSRPD 0x02C00 /* RX Small Packet Detect - RW */
|
|
#define E1000_TXDMAC 0x03000 /* TX DMA Control - RW */
|
|
#define E1000_TDBAL 0x03800 /* TX Descriptor Base Address Low - RW */
|
|
#define E1000_TDBAH 0x03804 /* TX Descriptor Base Address High - RW */
|
|
#define E1000_TDLEN 0x03808 /* TX Descriptor Length - RW */
|
|
#define E1000_TDH 0x03810 /* TX Descriptor Head - RW */
|
|
#define E1000_TDT 0x03818 /* TX Descripotr Tail - RW */
|
|
#define E1000_TIDV 0x03820 /* TX Interrupt Delay Value - RW */
|
|
#define E1000_TXDCTL 0x03828 /* TX Descriptor Control - RW */
|
|
#define E1000_TADV 0x0382C /* TX Interrupt Absolute Delay Val - RW */
|
|
#define E1000_TSPMT 0x03830 /* TCP Segmentation PAD & Min Threshold - RW */
|
|
#define E1000_CRCERRS 0x04000 /* CRC Error Count - R/clr */
|
|
#define E1000_ALGNERRC 0x04004 /* Alignment Error Count - R/clr */
|
|
#define E1000_SYMERRS 0x04008 /* Symbol Error Count - R/clr */
|
|
#define E1000_RXERRC 0x0400C /* Receive Error Count - R/clr */
|
|
#define E1000_MPC 0x04010 /* Missed Packet Count - R/clr */
|
|
#define E1000_SCC 0x04014 /* Single Collision Count - R/clr */
|
|
#define E1000_ECOL 0x04018 /* Excessive Collision Count - R/clr */
|
|
#define E1000_MCC 0x0401C /* Multiple Collision Count - R/clr */
|
|
#define E1000_LATECOL 0x04020 /* Late Collision Count - R/clr */
|
|
#define E1000_COLC 0x04028 /* Collision Count - R/clr */
|
|
#define E1000_DC 0x04030 /* Defer Count - R/clr */
|
|
#define E1000_TNCRS 0x04034 /* TX-No CRS - R/clr */
|
|
#define E1000_SEC 0x04038 /* Sequence Error Count - R/clr */
|
|
#define E1000_CEXTERR 0x0403C /* Carrier Extension Error Count - R/clr */
|
|
#define E1000_RLEC 0x04040 /* Receive Length Error Count - R/clr */
|
|
#define E1000_XONRXC 0x04048 /* XON RX Count - R/clr */
|
|
#define E1000_XONTXC 0x0404C /* XON TX Count - R/clr */
|
|
#define E1000_XOFFRXC 0x04050 /* XOFF RX Count - R/clr */
|
|
#define E1000_XOFFTXC 0x04054 /* XOFF TX Count - R/clr */
|
|
#define E1000_FCRUC 0x04058 /* Flow Control RX Unsupported Count- R/clr */
|
|
#define E1000_PRC64 0x0405C /* Packets RX (64 bytes) - R/clr */
|
|
#define E1000_PRC127 0x04060 /* Packets RX (65-127 bytes) - R/clr */
|
|
#define E1000_PRC255 0x04064 /* Packets RX (128-255 bytes) - R/clr */
|
|
#define E1000_PRC511 0x04068 /* Packets RX (255-511 bytes) - R/clr */
|
|
#define E1000_PRC1023 0x0406C /* Packets RX (512-1023 bytes) - R/clr */
|
|
#define E1000_PRC1522 0x04070 /* Packets RX (1024-1522 bytes) - R/clr */
|
|
#define E1000_GPRC 0x04074 /* Good Packets RX Count - R/clr */
|
|
#define E1000_BPRC 0x04078 /* Broadcast Packets RX Count - R/clr */
|
|
#define E1000_MPRC 0x0407C /* Multicast Packets RX Count - R/clr */
|
|
#define E1000_GPTC 0x04080 /* Good Packets TX Count - R/clr */
|
|
#define E1000_GORCL 0x04088 /* Good Octets RX Count Low - R/clr */
|
|
#define E1000_GORCH 0x0408C /* Good Octets RX Count High - R/clr */
|
|
#define E1000_GOTCL 0x04090 /* Good Octets TX Count Low - R/clr */
|
|
#define E1000_GOTCH 0x04094 /* Good Octets TX Count High - R/clr */
|
|
#define E1000_RNBC 0x040A0 /* RX No Buffers Count - R/clr */
|
|
#define E1000_RUC 0x040A4 /* RX Undersize Count - R/clr */
|
|
#define E1000_RFC 0x040A8 /* RX Fragment Count - R/clr */
|
|
#define E1000_ROC 0x040AC /* RX Oversize Count - R/clr */
|
|
#define E1000_RJC 0x040B0 /* RX Jabber Count - R/clr */
|
|
#define E1000_MGTPRC 0x040B4 /* Management Packets RX Count - R/clr */
|
|
#define E1000_MGTPDC 0x040B8 /* Management Packets Dropped Count - R/clr */
|
|
#define E1000_MGTPTC 0x040BC /* Management Packets TX Count - R/clr */
|
|
#define E1000_TORL 0x040C0 /* Total Octets RX Low - R/clr */
|
|
#define E1000_TORH 0x040C4 /* Total Octets RX High - R/clr */
|
|
#define E1000_TOTL 0x040C8 /* Total Octets TX Low - R/clr */
|
|
#define E1000_TOTH 0x040CC /* Total Octets TX High - R/clr */
|
|
#define E1000_TPR 0x040D0 /* Total Packets RX - R/clr */
|
|
#define E1000_TPT 0x040D4 /* Total Packets TX - R/clr */
|
|
#define E1000_PTC64 0x040D8 /* Packets TX (64 bytes) - R/clr */
|
|
#define E1000_PTC127 0x040DC /* Packets TX (65-127 bytes) - R/clr */
|
|
#define E1000_PTC255 0x040E0 /* Packets TX (128-255 bytes) - R/clr */
|
|
#define E1000_PTC511 0x040E4 /* Packets TX (256-511 bytes) - R/clr */
|
|
#define E1000_PTC1023 0x040E8 /* Packets TX (512-1023 bytes) - R/clr */
|
|
#define E1000_PTC1522 0x040EC /* Packets TX (1024-1522 Bytes) - R/clr */
|
|
#define E1000_MPTC 0x040F0 /* Multicast Packets TX Count - R/clr */
|
|
#define E1000_BPTC 0x040F4 /* Broadcast Packets TX Count - R/clr */
|
|
#define E1000_TSCTC 0x040F8 /* TCP Segmentation Context TX - R/clr */
|
|
#define E1000_TSCTFC 0x040FC /* TCP Segmentation Context TX Fail - R/clr */
|
|
#define E1000_RXCSUM 0x05000 /* RX Checksum Control - RW */
|
|
#define E1000_MTA 0x05200 /* Multicast Table Array - RW Array */
|
|
#define E1000_RA 0x05400 /* Receive Address - RW Array */
|
|
#define E1000_VFTA 0x05600 /* VLAN Filter Table Array - RW Array */
|
|
#define E1000_WUC 0x05800 /* Wakeup Control - RW */
|
|
#define E1000_WUFC 0x05808 /* Wakeup Filter Control - RW */
|
|
#define E1000_WUS 0x05810 /* Wakeup Status - RO */
|
|
#define E1000_MANC 0x05820 /* Management Control - RW */
|
|
#define E1000_IPAV 0x05838 /* IP Address Valid - RW */
|
|
#define E1000_IP4AT 0x05840 /* IPv4 Address Table - RW Array */
|
|
#define E1000_IP6AT 0x05880 /* IPv6 Address Table - RW Array */
|
|
#define E1000_WUPL 0x05900 /* Wakeup Packet Length - RW */
|
|
#define E1000_WUPM 0x05A00 /* Wakeup Packet Memory - RO A */
|
|
#define E1000_FFLT 0x05F00 /* Flexible Filter Length Table - RW Array */
|
|
#define E1000_FFMT 0x09000 /* Flexible Filter Mask Table - RW Array */
|
|
#define E1000_FFVT 0x09800 /* Flexible Filter Value Table - RW Array */
|
|
|
|
/* Register Set (82542)
|
|
*
|
|
* Some of the 82542 registers are located at different offsets than they are
|
|
* in more current versions of the 8254x. Despite the difference in location,
|
|
* the registers function in the same manner.
|
|
*/
|
|
#define E1000_82542_CTRL E1000_CTRL
|
|
#define E1000_82542_STATUS E1000_STATUS
|
|
#define E1000_82542_EECD E1000_EECD
|
|
#define E1000_82542_EERD E1000_EERD
|
|
#define E1000_82542_CTRL_EXT E1000_CTRL_EXT
|
|
#define E1000_82542_MDIC E1000_MDIC
|
|
#define E1000_82542_FCAL E1000_FCAL
|
|
#define E1000_82542_FCAH E1000_FCAH
|
|
#define E1000_82542_FCT E1000_FCT
|
|
#define E1000_82542_VET E1000_VET
|
|
#define E1000_82542_RA 0x00040
|
|
#define E1000_82542_ICR E1000_ICR
|
|
#define E1000_82542_ITR E1000_ITR
|
|
#define E1000_82542_ICS E1000_ICS
|
|
#define E1000_82542_IMS E1000_IMS
|
|
#define E1000_82542_IMC E1000_IMC
|
|
#define E1000_82542_RCTL E1000_RCTL
|
|
#define E1000_82542_RDTR 0x00108
|
|
#define E1000_82542_RDBAL 0x00110
|
|
#define E1000_82542_RDBAH 0x00114
|
|
#define E1000_82542_RDLEN 0x00118
|
|
#define E1000_82542_RDH 0x00120
|
|
#define E1000_82542_RDT 0x00128
|
|
#define E1000_82542_FCRTH 0x00160
|
|
#define E1000_82542_FCRTL 0x00168
|
|
#define E1000_82542_FCTTV E1000_FCTTV
|
|
#define E1000_82542_TXCW E1000_TXCW
|
|
#define E1000_82542_RXCW E1000_RXCW
|
|
#define E1000_82542_MTA 0x00200
|
|
#define E1000_82542_TCTL E1000_TCTL
|
|
#define E1000_82542_TIPG E1000_TIPG
|
|
#define E1000_82542_TDBAL 0x00420
|
|
#define E1000_82542_TDBAH 0x00424
|
|
#define E1000_82542_TDLEN 0x00428
|
|
#define E1000_82542_TDH 0x00430
|
|
#define E1000_82542_TDT 0x00438
|
|
#define E1000_82542_TIDV 0x00440
|
|
#define E1000_82542_TBT E1000_TBT
|
|
#define E1000_82542_VFTA 0x00600
|
|
#define E1000_82542_LEDCTL E1000_LEDCTL
|
|
#define E1000_82542_PBA E1000_PBA
|
|
#define E1000_82542_RXDCTL E1000_RXDCTL
|
|
#define E1000_82542_RADV E1000_RADV
|
|
#define E1000_82542_RSRPD E1000_RSRPD
|
|
#define E1000_82542_TXDMAC E1000_TXDMAC
|
|
#define E1000_82542_TXDCTL E1000_TXDCTL
|
|
#define E1000_82542_TADV E1000_TADV
|
|
#define E1000_82542_TSPMT E1000_TSPMT
|
|
#define E1000_82542_CRCERRS E1000_CRCERRS
|
|
#define E1000_82542_ALGNERRC E1000_ALGNERRC
|
|
#define E1000_82542_SYMERRS E1000_SYMERRS
|
|
#define E1000_82542_RXERRC E1000_RXERRC
|
|
#define E1000_82542_MPC E1000_MPC
|
|
#define E1000_82542_SCC E1000_SCC
|
|
#define E1000_82542_ECOL E1000_ECOL
|
|
#define E1000_82542_MCC E1000_MCC
|
|
#define E1000_82542_LATECOL E1000_LATECOL
|
|
#define E1000_82542_COLC E1000_COLC
|
|
#define E1000_82542_DC E1000_DC
|
|
#define E1000_82542_TNCRS E1000_TNCRS
|
|
#define E1000_82542_SEC E1000_SEC
|
|
#define E1000_82542_CEXTERR E1000_CEXTERR
|
|
#define E1000_82542_RLEC E1000_RLEC
|
|
#define E1000_82542_XONRXC E1000_XONRXC
|
|
#define E1000_82542_XONTXC E1000_XONTXC
|
|
#define E1000_82542_XOFFRXC E1000_XOFFRXC
|
|
#define E1000_82542_XOFFTXC E1000_XOFFTXC
|
|
#define E1000_82542_FCRUC E1000_FCRUC
|
|
#define E1000_82542_PRC64 E1000_PRC64
|
|
#define E1000_82542_PRC127 E1000_PRC127
|
|
#define E1000_82542_PRC255 E1000_PRC255
|
|
#define E1000_82542_PRC511 E1000_PRC511
|
|
#define E1000_82542_PRC1023 E1000_PRC1023
|
|
#define E1000_82542_PRC1522 E1000_PRC1522
|
|
#define E1000_82542_GPRC E1000_GPRC
|
|
#define E1000_82542_BPRC E1000_BPRC
|
|
#define E1000_82542_MPRC E1000_MPRC
|
|
#define E1000_82542_GPTC E1000_GPTC
|
|
#define E1000_82542_GORCL E1000_GORCL
|
|
#define E1000_82542_GORCH E1000_GORCH
|
|
#define E1000_82542_GOTCL E1000_GOTCL
|
|
#define E1000_82542_GOTCH E1000_GOTCH
|
|
#define E1000_82542_RNBC E1000_RNBC
|
|
#define E1000_82542_RUC E1000_RUC
|
|
#define E1000_82542_RFC E1000_RFC
|
|
#define E1000_82542_ROC E1000_ROC
|
|
#define E1000_82542_RJC E1000_RJC
|
|
#define E1000_82542_MGTPRC E1000_MGTPRC
|
|
#define E1000_82542_MGTPDC E1000_MGTPDC
|
|
#define E1000_82542_MGTPTC E1000_MGTPTC
|
|
#define E1000_82542_TORL E1000_TORL
|
|
#define E1000_82542_TORH E1000_TORH
|
|
#define E1000_82542_TOTL E1000_TOTL
|
|
#define E1000_82542_TOTH E1000_TOTH
|
|
#define E1000_82542_TPR E1000_TPR
|
|
#define E1000_82542_TPT E1000_TPT
|
|
#define E1000_82542_PTC64 E1000_PTC64
|
|
#define E1000_82542_PTC127 E1000_PTC127
|
|
#define E1000_82542_PTC255 E1000_PTC255
|
|
#define E1000_82542_PTC511 E1000_PTC511
|
|
#define E1000_82542_PTC1023 E1000_PTC1023
|
|
#define E1000_82542_PTC1522 E1000_PTC1522
|
|
#define E1000_82542_MPTC E1000_MPTC
|
|
#define E1000_82542_BPTC E1000_BPTC
|
|
#define E1000_82542_TSCTC E1000_TSCTC
|
|
#define E1000_82542_TSCTFC E1000_TSCTFC
|
|
#define E1000_82542_RXCSUM E1000_RXCSUM
|
|
#define E1000_82542_WUC E1000_WUC
|
|
#define E1000_82542_WUFC E1000_WUFC
|
|
#define E1000_82542_WUS E1000_WUS
|
|
#define E1000_82542_MANC E1000_MANC
|
|
#define E1000_82542_IPAV E1000_IPAV
|
|
#define E1000_82542_IP4AT E1000_IP4AT
|
|
#define E1000_82542_IP6AT E1000_IP6AT
|
|
#define E1000_82542_WUPL E1000_WUPL
|
|
#define E1000_82542_WUPM E1000_WUPM
|
|
#define E1000_82542_FFLT E1000_FFLT
|
|
#define E1000_82542_FFMT E1000_FFMT
|
|
#define E1000_82542_FFVT E1000_FFVT
|
|
|
|
/* Statistics counters collected by the MAC */
|
|
struct em_shared_stats {
|
|
uint64_t crcerrs;
|
|
uint64_t algnerrc;
|
|
uint64_t symerrs;
|
|
uint64_t rxerrc;
|
|
uint64_t mpc;
|
|
uint64_t scc;
|
|
uint64_t ecol;
|
|
uint64_t mcc;
|
|
uint64_t latecol;
|
|
uint64_t colc;
|
|
uint64_t dc;
|
|
uint64_t tncrs;
|
|
uint64_t sec;
|
|
uint64_t cexterr;
|
|
uint64_t rlec;
|
|
uint64_t xonrxc;
|
|
uint64_t xontxc;
|
|
uint64_t xoffrxc;
|
|
uint64_t xofftxc;
|
|
uint64_t fcruc;
|
|
uint64_t prc64;
|
|
uint64_t prc127;
|
|
uint64_t prc255;
|
|
uint64_t prc511;
|
|
uint64_t prc1023;
|
|
uint64_t prc1522;
|
|
uint64_t gprc;
|
|
uint64_t bprc;
|
|
uint64_t mprc;
|
|
uint64_t gptc;
|
|
uint64_t gorcl;
|
|
uint64_t gorch;
|
|
uint64_t gotcl;
|
|
uint64_t gotch;
|
|
uint64_t rnbc;
|
|
uint64_t ruc;
|
|
uint64_t rfc;
|
|
uint64_t roc;
|
|
uint64_t rjc;
|
|
uint64_t mgprc;
|
|
uint64_t mgpdc;
|
|
uint64_t mgptc;
|
|
uint64_t torl;
|
|
uint64_t torh;
|
|
uint64_t totl;
|
|
uint64_t toth;
|
|
uint64_t tpr;
|
|
uint64_t tpt;
|
|
uint64_t ptc64;
|
|
uint64_t ptc127;
|
|
uint64_t ptc255;
|
|
uint64_t ptc511;
|
|
uint64_t ptc1023;
|
|
uint64_t ptc1522;
|
|
uint64_t mptc;
|
|
uint64_t bptc;
|
|
uint64_t tsctc;
|
|
uint64_t tsctfc;
|
|
};
|
|
|
|
/* Structure containing variables used by the shared code (em_mac.c and
|
|
* em_phy.c)
|
|
*/
|
|
struct em_shared_adapter {
|
|
uint8_t *hw_addr;
|
|
em_mac_type mac_type;
|
|
em_media_type media_type;
|
|
void *back;
|
|
em_fc_type fc;
|
|
em_bus_speed bus_speed;
|
|
em_bus_width bus_width;
|
|
em_bus_type bus_type;
|
|
uint32_t phy_id;
|
|
uint32_t phy_addr;
|
|
uint32_t original_fc;
|
|
uint32_t txcw_reg;
|
|
uint32_t autoneg_failed;
|
|
uint32_t max_frame_size;
|
|
uint32_t min_frame_size;
|
|
uint32_t mc_filter_type;
|
|
uint32_t num_mc_addrs;
|
|
uint16_t autoneg_advertised;
|
|
uint16_t pci_cmd_word;
|
|
uint16_t fc_high_water;
|
|
uint16_t fc_low_water;
|
|
uint16_t fc_pause_time;
|
|
uint16_t device_id;
|
|
uint16_t vendor_id;
|
|
uint16_t subsystem_id;
|
|
uint16_t subsystem_vendor_id;
|
|
uint8_t revision_id;
|
|
boolean_t disable_polarity_correction;
|
|
boolean_t get_link_status;
|
|
boolean_t tbi_compatibility_en;
|
|
boolean_t tbi_compatibility_on;
|
|
boolean_t adapter_stopped;
|
|
boolean_t fc_send_xon;
|
|
boolean_t report_tx_early;
|
|
boolean_t low_profile;
|
|
uint8_t autoneg;
|
|
uint8_t mdix;
|
|
uint8_t forced_speed_duplex;
|
|
uint8_t wait_autoneg_complete;
|
|
uint8_t dma_fairness;
|
|
uint8_t mac_addr[NODE_ADDRESS_SIZE];
|
|
};
|
|
|
|
|
|
#define E1000_EEPROM_SWDPIN0 0x0001 /* SWDPIN 0 EEPROM Value */
|
|
#define E1000_EEPROM_LED_LOGIC 0x0020 /* Led Logic Word */
|
|
|
|
/* Register Bit Masks */
|
|
/* Device Control */
|
|
#define E1000_CTRL_FD 0x00000001 /* Full duplex.0=half; 1=full */
|
|
#define E1000_CTRL_BEM 0x00000002 /* Endian Mode.0=little,1=big */
|
|
#define E1000_CTRL_PRIOR 0x00000004 /* Priority on PCI. 0=rx,1=fair */
|
|
#define E1000_CTRL_LRST 0x00000008 /* Link reset. 0=normal,1=reset */
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#define E1000_CTRL_TME 0x00000010 /* Test mode. 0=normal,1=test */
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#define E1000_CTRL_SLE 0x00000020 /* Serial Link on 0=dis,1=en */
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#define E1000_CTRL_ASDE 0x00000020 /* Auto-speed detect enable */
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#define E1000_CTRL_SLU 0x00000040 /* Set link up (Force Link) */
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#define E1000_CTRL_ILOS 0x00000080 /* Invert Loss-Of Signal */
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#define E1000_CTRL_SPD_SEL 0x00000300 /* Speed Select Mask */
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#define E1000_CTRL_SPD_10 0x00000000 /* Force 10Mb */
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#define E1000_CTRL_SPD_100 0x00000100 /* Force 100Mb */
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#define E1000_CTRL_SPD_1000 0x00000200 /* Force 1Gb */
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#define E1000_CTRL_BEM32 0x00000400 /* Big Endian 32 mode */
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#define E1000_CTRL_FRCSPD 0x00000800 /* Force Speed */
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#define E1000_CTRL_FRCDPX 0x00001000 /* Force Duplex */
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#define E1000_CTRL_SWDPIN0 0x00040000 /* SWDPIN 0 value */
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#define E1000_CTRL_SWDPIN1 0x00080000 /* SWDPIN 1 value */
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#define E1000_CTRL_SWDPIN2 0x00100000 /* SWDPIN 2 value */
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#define E1000_CTRL_SWDPIN3 0x00200000 /* SWDPIN 3 value */
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#define E1000_CTRL_SWDPIO0 0x00400000 /* SWDPIN 0 Input or output */
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#define E1000_CTRL_SWDPIO1 0x00800000 /* SWDPIN 1 input or output */
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#define E1000_CTRL_SWDPIO2 0x01000000 /* SWDPIN 2 input or output */
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#define E1000_CTRL_SWDPIO3 0x02000000 /* SWDPIN 3 input or output */
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#define E1000_CTRL_RST 0x04000000 /* Global reset */
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#define E1000_CTRL_RFCE 0x08000000 /* Receive Flow Control enable */
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#define E1000_CTRL_TFCE 0x10000000 /* Transmit flow control enable */
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#define E1000_CTRL_RTE 0x20000000 /* Routing tag enable */
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#define E1000_CTRL_VME 0x40000000 /* IEEE VLAN mode enable */
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#define E1000_CTRL_PHY_RST 0x80000000 /* PHY Reset */
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/* Device Status */
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#define E1000_STATUS_FD 0x00000001 /* Full duplex.0=half,1=full */
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#define E1000_STATUS_LU 0x00000002 /* Link up.0=no,1=link */
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#define E1000_STATUS_FUNC_MASK 0x0000000C /* PCI Function Mask */
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#define E1000_STATUS_FUNC_0 0x00000000 /* Function 0 */
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#define E1000_STATUS_FUNC_1 0x00000004 /* Function 1 */
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#define E1000_STATUS_TXOFF 0x00000010 /* transmission paused */
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#define E1000_STATUS_TBIMODE 0x00000020 /* TBI mode */
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#define E1000_STATUS_SPEED_MASK 0x000000C0
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#define E1000_STATUS_SPEED_10 0x00000000 /* Speed 10Mb/s */
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#define E1000_STATUS_SPEED_100 0x00000040 /* Speed 100Mb/s */
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#define E1000_STATUS_SPEED_1000 0x00000080 /* Speed 1000Mb/s */
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#define E1000_STATUS_ASDV 0x00000300 /* Auto speed detect value */
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#define E1000_STATUS_MTXCKOK 0x00000400 /* MTX clock running OK */
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#define E1000_STATUS_PCI66 0x00000800 /* In 66Mhz slot */
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#define E1000_STATUS_BUS64 0x00001000 /* In 64 bit slot */
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#define E1000_STATUS_PCIX_MODE 0x00002000 /* PCI-X mode */
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#define E1000_STATUS_PCIX_SPEED 0x0000C000 /* PCI-X bus speed */
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/* Constants used to intrepret the masked PCI-X bus speed. */
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#define E1000_STATUS_PCIX_SPEED_66 0x00000000 /* PCI-X bus speed 50-66 MHz */
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#define E1000_STATUS_PCIX_SPEED_100 0x00004000 /* PCI-X bus speed 66-100 MHz */
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#define E1000_STATUS_PCIX_SPEED_133 0x00008000 /* PCI-X bus speed 100-133 MHz */
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/* EEPROM/Flash Control */
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#define E1000_EECD_SK 0x00000001 /* EEPROM Clock */
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#define E1000_EECD_CS 0x00000002 /* EEPROM Chip Select */
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#define E1000_EECD_DI 0x00000004 /* EEPROM Data In */
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#define E1000_EECD_DO 0x00000008 /* EEPROM Data Out */
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#define E1000_EECD_FWE_MASK 0x00000030
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#define E1000_EECD_FWE_DIS 0x00000010 /* Disable FLASH writes */
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#define E1000_EECD_FWE_EN 0x00000020 /* Enable FLASH writes */
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#define E1000_EECD_FWE_SHIFT 4
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#define E1000_EECD_SIZE 0x00000200 /* EEPROM Size (0=64 word 1=256 word) */
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#define E1000_EECD_REQ 0x00000040 /* EEPROM Access Request */
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#define E1000_EECD_GNT 0x00000080 /* EEPROM Access Grant */
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#define E1000_EECD_PRES 0x00000100 /* EEPROM Present */
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/* EEPROM Read */
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#define E1000_EERD_START 0x00000001 /* Start Read */
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#define E1000_EERD_DONE 0x00000010 /* Read Done */
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#define E1000_EERD_ADDR_SHIFT 8
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#define E1000_EERD_ADDR_MASK 0x0000FF00 /* Read Address */
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#define E1000_EERD_DATA_SHIFT 16
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#define E1000_EERD_DATA_MASK 0xFFFF0000 /* Read Data */
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/* Extended Device Control */
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#define E1000_CTRL_EXT_GPI0_EN 0x00000001 /* Maps SDP4 to GPI0 */
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#define E1000_CTRL_EXT_GPI1_EN 0x00000002 /* Maps SDP5 to GPI1 */
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#define E1000_CTRL_EXT_PHYINT_EN E1000_CTRL_EXT_GPI1_EN
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#define E1000_CTRL_EXT_GPI2_EN 0x00000004 /* Maps SDP6 to GPI2 */
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#define E1000_CTRL_EXT_GPI3_EN 0x00000008 /* Maps SDP7 to GPI3 */
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#define E1000_CTRL_EXT_SDP4_DATA 0x00000010 /* Value of SW Defineable Pin 4 */
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#define E1000_CTRL_EXT_SDP5_DATA 0x00000020 /* Value of SW Defineable Pin 5 */
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#define E1000_CTRL_EXT_PHY_INT E1000_CTRL_EXT_SDP5_DATA
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#define E1000_CTRL_EXT_SDP6_DATA 0x00000040 /* Value of SW Defineable Pin 6 */
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#define E1000_CTRL_EXT_SDP7_DATA 0x00000080 /* Value of SW Defineable Pin 7 */
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#define E1000_CTRL_EXT_SDP4_DIR 0x00000100 /* Direction of SDP4 0=in 1=out */
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#define E1000_CTRL_EXT_SDP5_DIR 0x00000200 /* Direction of SDP5 0=in 1=out */
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#define E1000_CTRL_EXT_SDP6_DIR 0x00000400 /* Direction of SDP6 0=in 1=out */
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#define E1000_CTRL_EXT_SDP7_DIR 0x00000800 /* Direction of SDP7 0=in 1=out */
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#define E1000_CTRL_EXT_ASDCHK 0x00001000 /* Initiate an ASD sequence */
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#define E1000_CTRL_EXT_EE_RST 0x00002000 /* Reinitialize from EEPROM */
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#define E1000_CTRL_EXT_IPS 0x00004000 /* Invert Power State */
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#define E1000_CTRL_EXT_SPD_BYPS 0x00008000 /* Speed Select Bypass */
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#define E1000_CTRL_EXT_LINK_MODE_MASK 0x00C00000
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#define E1000_CTRL_EXT_LINK_MODE_GMII 0x00000000
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#define E1000_CTRL_EXT_LINK_MODE_TBI 0x00C00000
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#define E1000_CTRL_EXT_WR_WMARK_MASK 0x03000000
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#define E1000_CTRL_EXT_WR_WMARK_256 0x00000000
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#define E1000_CTRL_EXT_WR_WMARK_320 0x01000000
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#define E1000_CTRL_EXT_WR_WMARK_384 0x02000000
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#define E1000_CTRL_EXT_WR_WMARK_448 0x03000000
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/* MDI Control */
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#define E1000_MDIC_DATA_MASK 0x0000FFFF
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#define E1000_MDIC_REG_MASK 0x001F0000
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#define E1000_MDIC_REG_SHIFT 16
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#define E1000_MDIC_PHY_MASK 0x03E00000
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#define E1000_MDIC_PHY_SHIFT 21
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#define E1000_MDIC_OP_WRITE 0x04000000
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#define E1000_MDIC_OP_READ 0x08000000
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#define E1000_MDIC_READY 0x10000000
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#define E1000_MDIC_INT_EN 0x20000000
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#define E1000_MDIC_ERROR 0x40000000
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/* LED Control */
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#define E1000_LEDCTL_LED0_MODE_MASK 0x0000000F
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#define E1000_LEDCTL_LED0_MODE_SHIFT 0
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#define E1000_LEDCTL_LED0_IVRT 0x00000040
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#define E1000_LEDCTL_LED0_BLINK 0x00000080
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#define E1000_LEDCTL_LED1_MODE_MASK 0x00000F00
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#define E1000_LEDCTL_LED1_MODE_SHIFT 8
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#define E1000_LEDCTL_LED1_IVRT 0x00004000
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#define E1000_LEDCTL_LED1_BLINK 0x00008000
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#define E1000_LEDCTL_LED2_MODE_MASK 0x000F0000
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#define E1000_LEDCTL_LED2_MODE_SHIFT 16
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#define E1000_LEDCTL_LED2_IVRT 0x00400000
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#define E1000_LEDCTL_LED2_BLINK 0x00800000
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#define E1000_LEDCTL_LED3_MODE_MASK 0x0F000000
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#define E1000_LEDCTL_LED3_MODE_SHIFT 24
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#define E1000_LEDCTL_LED3_IVRT 0x40000000
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#define E1000_LEDCTL_LED3_BLINK 0x80000000
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#define E1000_LEDCTL_MODE_LINK_10_1000 0x0
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#define E1000_LEDCTL_MODE_LINK_100_1000 0x1
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#define E1000_LEDCTL_MODE_LINK_UP 0x2
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#define E1000_LEDCTL_MODE_ACTIVITY 0x3
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#define E1000_LEDCTL_MODE_LINK_ACTIVITY 0x4
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#define E1000_LEDCTL_MODE_LINK_10 0x5
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#define E1000_LEDCTL_MODE_LINK_100 0x6
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#define E1000_LEDCTL_MODE_LINK_1000 0x7
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#define E1000_LEDCTL_MODE_PCIX_MODE 0x8
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#define E1000_LEDCTL_MODE_FULL_DUPLEX 0x9
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#define E1000_LEDCTL_MODE_COLLISION 0xA
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#define E1000_LEDCTL_MODE_BUS_SPEED 0xB
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#define E1000_LEDCTL_MODE_BUS_SIZE 0xC
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#define E1000_LEDCTL_MODE_PAUSED 0xD
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#define E1000_LEDCTL_MODE_LED_ON 0xE
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#define E1000_LEDCTL_MODE_LED_OFF 0xF
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/* Receive Address */
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#define E1000_RAH_AV 0x80000000 /* Receive descriptor valid */
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/* Interrupt Cause Read */
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#define E1000_ICR_TXDW 0x00000001 /* Transmit desc written back */
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#define E1000_ICR_TXQE 0x00000002 /* Transmit Queue empty */
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#define E1000_ICR_LSC 0x00000004 /* Link Status Change */
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#define E1000_ICR_RXSEQ 0x00000008 /* rx sequence error */
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#define E1000_ICR_RXDMT0 0x00000010 /* rx desc min. threshold (0) */
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#define E1000_ICR_RXO 0x00000040 /* rx overrun */
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#define E1000_ICR_RXT0 0x00000080 /* rx timer intr (ring 0) */
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#define E1000_ICR_MDAC 0x00000200 /* MDIO access complete */
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#define E1000_ICR_RXCFG 0x00000400 /* RX /c/ ordered set */
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#define E1000_ICR_GPI_EN0 0x00000800 /* GP Int 0 */
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#define E1000_ICR_GPI_EN1 0x00001000 /* GP Int 1 */
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#define E1000_ICR_GPI_EN2 0x00002000 /* GP Int 2 */
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#define E1000_ICR_GPI_EN3 0x00004000 /* GP Int 3 */
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#define E1000_ICR_TXD_LOW 0x00008000
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#define E1000_ICR_SRPD 0x00010000
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/* Interrupt Cause Set */
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#define E1000_ICS_TXDW E1000_ICR_TXDW /* Transmit desc written back */
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#define E1000_ICS_TXQE E1000_ICR_TXQE /* Transmit Queue empty */
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#define E1000_ICS_LSC E1000_ICR_LSC /* Link Status Change */
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#define E1000_ICS_RXSEQ E1000_ICR_RXSEQ /* rx sequence error */
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#define E1000_ICS_RXDMT0 E1000_ICR_RXDMT0 /* rx desc min. threshold */
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#define E1000_ICS_RXO E1000_ICR_RXO /* rx overrun */
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#define E1000_ICS_RXT0 E1000_ICR_RXT0 /* rx timer intr */
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#define E1000_ICS_MDAC E1000_ICR_MDAC /* MDIO access complete */
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#define E1000_ICS_RXCFG E1000_ICR_RXCFG /* RX /c/ ordered set */
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#define E1000_ICS_GPI_EN0 E1000_ICR_GPI_EN0 /* GP Int 0 */
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#define E1000_ICS_GPI_EN1 E1000_ICR_GPI_EN1 /* GP Int 1 */
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#define E1000_ICS_GPI_EN2 E1000_ICR_GPI_EN2 /* GP Int 2 */
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#define E1000_ICS_GPI_EN3 E1000_ICR_GPI_EN3 /* GP Int 3 */
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#define E1000_ICS_TXD_LOW E1000_ICR_TXD_LOW
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#define E1000_ICS_SRPD E1000_ICR_SRPD
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/* Interrupt Mask Set */
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#define E1000_IMS_TXDW E1000_ICR_TXDW /* Transmit desc written back */
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#define E1000_IMS_TXQE E1000_ICR_TXQE /* Transmit Queue empty */
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#define E1000_IMS_LSC E1000_ICR_LSC /* Link Status Change */
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#define E1000_IMS_RXSEQ E1000_ICR_RXSEQ /* rx sequence error */
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#define E1000_IMS_RXDMT0 E1000_ICR_RXDMT0 /* rx desc min. threshold */
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#define E1000_IMS_RXO E1000_ICR_RXO /* rx overrun */
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#define E1000_IMS_RXT0 E1000_ICR_RXT0 /* rx timer intr */
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#define E1000_IMS_MDAC E1000_ICR_MDAC /* MDIO access complete */
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#define E1000_IMS_RXCFG E1000_ICR_RXCFG /* RX /c/ ordered set */
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#define E1000_IMS_GPI_EN0 E1000_ICR_GPI_EN0 /* GP Int 0 */
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#define E1000_IMS_GPI_EN1 E1000_ICR_GPI_EN1 /* GP Int 1 */
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#define E1000_IMS_GPI_EN2 E1000_ICR_GPI_EN2 /* GP Int 2 */
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#define E1000_IMS_GPI_EN3 E1000_ICR_GPI_EN3 /* GP Int 3 */
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#define E1000_IMS_TXD_LOW E1000_ICR_TXD_LOW
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#define E1000_IMS_SRPD E1000_ICR_SRPD
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/* Interrupt Mask Clear */
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#define E1000_IMC_TXDW E1000_ICR_TXDW /* Transmit desc written back */
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#define E1000_IMC_TXQE E1000_ICR_TXQE /* Transmit Queue empty */
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#define E1000_IMC_LSC E1000_ICR_LSC /* Link Status Change */
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#define E1000_IMC_RXSEQ E1000_ICR_RXSEQ /* rx sequence error */
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#define E1000_IMC_RXDMT0 E1000_ICR_RXDMT0 /* rx desc min. threshold */
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#define E1000_IMC_RXO E1000_ICR_RXO /* rx overrun */
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#define E1000_IMC_RXT0 E1000_ICR_RXT0 /* rx timer intr */
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#define E1000_IMC_MDAC E1000_ICR_MDAC /* MDIO access complete */
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#define E1000_IMC_RXCFG E1000_ICR_RXCFG /* RX /c/ ordered set */
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#define E1000_IMC_GPI_EN0 E1000_ICR_GPI_EN0 /* GP Int 0 */
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#define E1000_IMC_GPI_EN1 E1000_ICR_GPI_EN1 /* GP Int 1 */
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#define E1000_IMC_GPI_EN2 E1000_ICR_GPI_EN2 /* GP Int 2 */
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#define E1000_IMC_GPI_EN3 E1000_ICR_GPI_EN3 /* GP Int 3 */
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#define E1000_IMC_TXD_LOW E1000_ICR_TXD_LOW
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#define E1000_IMC_SRPD E1000_ICR_SRPD
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/* Receive Control */
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#define E1000_RCTL_RST 0x00000001 /* Software reset */
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#define E1000_RCTL_EN 0x00000002 /* enable */
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#define E1000_RCTL_SBP 0x00000004 /* store bad packet */
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#define E1000_RCTL_UPE 0x00000008 /* unicast promiscuous enable */
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#define E1000_RCTL_MPE 0x00000010 /* multicast promiscuous enab */
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#define E1000_RCTL_LPE 0x00000020 /* long packet enable */
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#define E1000_RCTL_LBM_NO 0x00000000 /* no loopback mode */
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#define E1000_RCTL_LBM_MAC 0x00000040 /* MAC loopback mode */
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#define E1000_RCTL_LBM_SLP 0x00000080 /* serial link loopback mode */
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#define E1000_RCTL_LBM_TCVR 0x000000C0 /* tcvr loopback mode */
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#define E1000_RCTL_RDMTS_HALF 0x00000000 /* rx desc min threshold size */
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#define E1000_RCTL_RDMTS_QUAT 0x00000100 /* rx desc min threshold size */
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#define E1000_RCTL_RDMTS_EIGTH 0x00000200 /* rx desc min threshold size */
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#define E1000_RCTL_MO_SHIFT 12 /* multicast offset shift */
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#define E1000_RCTL_MO_0 0x00000000 /* multicast offset 11:0 */
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#define E1000_RCTL_MO_1 0x00001000 /* multicast offset 12:1 */
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#define E1000_RCTL_MO_2 0x00002000 /* multicast offset 13:2 */
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#define E1000_RCTL_MO_3 0x00003000 /* multicast offset 15:4 */
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#define E1000_RCTL_MDR 0x00004000 /* multicast desc ring 0 */
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#define E1000_RCTL_BAM 0x00008000 /* broadcast enable */
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/* these buffer sizes are valid if E1000_RCTL_BSEX is 0 */
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#define E1000_RCTL_SZ_2048 0x00000000 /* rx buffer size 2048 */
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#define E1000_RCTL_SZ_1024 0x00010000 /* rx buffer size 1024 */
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#define E1000_RCTL_SZ_512 0x00020000 /* rx buffer size 512 */
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#define E1000_RCTL_SZ_256 0x00030000 /* rx buffer size 256 */
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/* these buffer sizes are valid if E1000_RCTL_BSEX is 1 */
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#define E1000_RCTL_SZ_16384 0x00010000 /* rx buffer size 16384 */
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#define E1000_RCTL_SZ_8192 0x00020000 /* rx buffer size 8192 */
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#define E1000_RCTL_SZ_4096 0x00030000 /* rx buffer size 4096 */
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#define E1000_RCTL_VFE 0x00040000 /* vlan filter enable */
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#define E1000_RCTL_CFIEN 0x00080000 /* canonical form enable */
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#define E1000_RCTL_CFI 0x00100000 /* canonical form indicator */
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#define E1000_RCTL_DPF 0x00400000 /* discard pause frames */
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#define E1000_RCTL_PMCF 0x00800000 /* pass MAC control frames */
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#define E1000_RCTL_BSEX 0x02000000 /* Buffer size extension */
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/* Receive Descriptor */
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#define E1000_RDT_DELAY 0x0000ffff /* Delay timer (1=1024us) */
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#define E1000_RDT_FPDB 0x80000000 /* Flush descriptor block */
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#define E1000_RDLEN_LEN 0x0007ff80 /* descriptor length */
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#define E1000_RDH_RDH 0x0000ffff /* receive descriptor head */
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#define E1000_RDT_RDT 0x0000ffff /* receive descriptor tail */
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/* Flow Control */
|
|
#define E1000_FCRTH_RTH 0x0000FFF8 /* Mask Bits[15:3] for RTH */
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#define E1000_FCRTH_XFCE 0x80000000 /* External Flow Control Enable */
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#define E1000_FCRTL_RTL 0x0000FFF8 /* Mask Bits[15:3] for RTL */
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#define E1000_FCRTL_XONE 0x80000000 /* Enable XON frame transmission */
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/* Receive Descriptor Control */
|
|
#define E1000_RXDCTL_PTHRESH 0x0000003F /* RXDCTL Prefetch Threshold */
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#define E1000_RXDCTL_HTHRESH 0x00003F00 /* RXDCTL Host Threshold */
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#define E1000_RXDCTL_WTHRESH 0x003F0000 /* RXDCTL Writeback Threshold */
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#define E1000_RXDCTL_GRAN 0x01000000 /* RXDCTL Granularity */
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/* Transmit Descriptor Control */
|
|
#define E1000_TXDCTL_PTHRESH 0x000000FF /* TXDCTL Prefetch Threshold */
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#define E1000_TXDCTL_HTHRESH 0x0000FF00 /* TXDCTL Host Threshold */
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#define E1000_TXDCTL_WTHRESH 0x00FF0000 /* TXDCTL Writeback Threshold */
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#define E1000_TXDCTL_GRAN 0x01000000 /* TXDCTL Granularity */
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#define E1000_TXDCTL_LWTHRESH 0xFE000000 /* TXDCTL Low Threshold */
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/* Transmit Configuration Word */
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|
#define E1000_TXCW_FD 0x00000020 /* TXCW full duplex */
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|
#define E1000_TXCW_HD 0x00000040 /* TXCW half duplex */
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|
#define E1000_TXCW_PAUSE 0x00000080 /* TXCW sym pause request */
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|
#define E1000_TXCW_ASM_DIR 0x00000100 /* TXCW astm pause direction */
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#define E1000_TXCW_PAUSE_MASK 0x00000180 /* TXCW pause request mask */
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|
#define E1000_TXCW_RF 0x00003000 /* TXCW remote fault */
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|
#define E1000_TXCW_NP 0x00008000 /* TXCW next page */
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#define E1000_TXCW_CW 0x0000ffff /* TxConfigWord mask */
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|
#define E1000_TXCW_TXC 0x40000000 /* Transmit Config control */
|
|
#define E1000_TXCW_ANE 0x80000000 /* Auto-neg enable */
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|
|
/* Receive Configuration Word */
|
|
#define E1000_RXCW_CW 0x0000ffff /* RxConfigWord mask */
|
|
#define E1000_RXCW_NC 0x04000000 /* Receive config no carrier */
|
|
#define E1000_RXCW_IV 0x08000000 /* Receive config invalid */
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|
#define E1000_RXCW_CC 0x10000000 /* Receive config change */
|
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#define E1000_RXCW_C 0x20000000 /* Receive config */
|
|
#define E1000_RXCW_SYNCH 0x40000000 /* Receive config synch */
|
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#define E1000_RXCW_ANC 0x80000000 /* Auto-neg complete */
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|
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/* Transmit Control */
|
|
#define E1000_TCTL_RST 0x00000001 /* software reset */
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#define E1000_TCTL_EN 0x00000002 /* enable tx */
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#define E1000_TCTL_BCE 0x00000004 /* busy check enable */
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#define E1000_TCTL_PSP 0x00000008 /* pad short packets */
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#define E1000_TCTL_CT 0x00000ff0 /* collision threshold */
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#define E1000_TCTL_COLD 0x003ff000 /* collision distance */
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#define E1000_TCTL_SWXOFF 0x00400000 /* SW Xoff transmission */
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#define E1000_TCTL_PBE 0x00800000 /* Packet Burst Enable */
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#define E1000_TCTL_RTLC 0x01000000 /* Re-transmit on late collision */
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#define E1000_TCTL_NRTU 0x02000000 /* No Re-transmit on underrun */
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/* Receive Checksum Control */
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#define E1000_RXCSUM_PCSS_MASK 0x000000FF /* Packet Checksum Start */
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#define E1000_RXCSUM_IPOFL 0x00000100 /* IPv4 checksum offload */
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#define E1000_RXCSUM_TUOFL 0x00000200 /* TCP / UDP checksum offload */
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#define E1000_RXCSUM_IPV6OFL 0x00000400 /* IPv6 checksum offload */
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/* Definitions for power management and wakeup registers */
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/* Wake Up Control */
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#define E1000_WUC_APME 0x00000001 /* APM Enable */
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#define E1000_WUC_PME_EN 0x00000002 /* PME Enable */
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#define E1000_WUC_PME_STATUS 0x00000004 /* PME Status */
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#define E1000_WUC_APMPME 0x00000008 /* Assert PME on APM Wakeup */
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/* Wake Up Filter Control */
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#define E1000_WUFC_LNKC 0x00000001 /* Link Status Change Wakeup Enable */
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#define E1000_WUFC_MAG 0x00000002 /* Magic Packet Wakeup Enable */
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#define E1000_WUFC_EX 0x00000004 /* Directed Exact Wakeup Enable */
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#define E1000_WUFC_MC 0x00000008 /* Directed Multicast Wakeup Enable */
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#define E1000_WUFC_BC 0x00000010 /* Broadcast Wakeup Enable */
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#define E1000_WUFC_ARP 0x00000020 /* ARP Request Packet Wakeup Enable */
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#define E1000_WUFC_IPV4 0x00000040 /* Directed IPv4 Packet Wakeup Enable */
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#define E1000_WUFC_IPV6 0x00000080 /* Directed IPv6 Packet Wakeup Enable */
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#define E1000_WUFC_FLX0 0x00010000 /* Flexible Filter 0 Enable */
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#define E1000_WUFC_FLX1 0x00020000 /* Flexible Filter 1 Enable */
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#define E1000_WUFC_FLX2 0x00040000 /* Flexible Filter 2 Enable */
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#define E1000_WUFC_FLX3 0x00080000 /* Flexible Filter 3 Enable */
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#define E1000_WUFC_ALL_FILTERS 0x000F00FF /* Mask for all wakeup filters */
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#define E1000_WUFC_FLX_OFFSET 16 /* Offset to the Flexible Filters bits */
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#define E1000_WUFC_FLX_FILTERS 0x000F0000 /* Mask for the 4 flexible filters */
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/* Wake Up Status */
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#define E1000_WUS_LNKC 0x00000001 /* Link Status Changed */
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#define E1000_WUS_MAG 0x00000002 /* Magic Packet Received */
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#define E1000_WUS_EX 0x00000004 /* Directed Exact Received */
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#define E1000_WUS_MC 0x00000008 /* Directed Multicast Received */
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#define E1000_WUS_BC 0x00000010 /* Broadcast Received */
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#define E1000_WUS_ARP 0x00000020 /* ARP Request Packet Received */
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#define E1000_WUS_IPV4 0x00000040 /* Directed IPv4 Packet Wakeup Received */
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#define E1000_WUS_IPV6 0x00000080 /* Directed IPv6 Packet Wakeup Received */
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#define E1000_WUS_FLX0 0x00010000 /* Flexible Filter 0 Match */
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#define E1000_WUS_FLX1 0x00020000 /* Flexible Filter 1 Match */
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#define E1000_WUS_FLX2 0x00040000 /* Flexible Filter 2 Match */
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#define E1000_WUS_FLX3 0x00080000 /* Flexible Filter 3 Match */
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#define E1000_WUS_FLX_FILTERS 0x000F0000 /* Mask for the 4 flexible filters */
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/* Management Control */
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#define E1000_MANC_SMBUS_EN 0x00000001 /* SMBus Enabled - RO */
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#define E1000_MANC_ASF_EN 0x00000002 /* ASF Enabled - RO */
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#define E1000_MANC_R_ON_FORCE 0x00000004 /* Reset on Force TCO - RO */
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#define E1000_MANC_RMCP_EN 0x00000100 /* Enable RCMP 026Fh Filtering */
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#define E1000_MANC_0298_EN 0x00000200 /* Enable RCMP 0298h Filtering */
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#define E1000_MANC_IPV4_EN 0x00000400 /* Enable IPv4 */
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#define E1000_MANC_IPV6_EN 0x00000800 /* Enable IPv6 */
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#define E1000_MANC_SNAP_EN 0x00001000 /* Accept LLC/SNAP */
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#define E1000_MANC_ARP_EN 0x00002000 /* Enable ARP Request Filtering */
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#define E1000_MANC_NEIGHBOR_EN 0x00004000 /* Enable Neighbor Discovery
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* Filtering */
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#define E1000_MANC_TCO_RESET 0x00010000 /* TCO Reset Occurred */
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#define E1000_MANC_RCV_TCO_EN 0x00020000 /* Receive TCO Packets Enabled */
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#define E1000_MANC_REPORT_STATUS 0x00040000 /* Status Reporting Enabled */
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#define E1000_MANC_SMB_REQ 0x01000000 /* SMBus Request */
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#define E1000_MANC_SMB_GNT 0x02000000 /* SMBus Grant */
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#define E1000_MANC_SMB_CLK_IN 0x04000000 /* SMBus Clock In */
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#define E1000_MANC_SMB_DATA_IN 0x08000000 /* SMBus Data In */
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#define E1000_MANC_SMB_DATA_OUT 0x10000000 /* SMBus Data Out */
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#define E1000_MANC_SMB_CLK_OUT 0x20000000 /* SMBus Clock Out */
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#define E1000_MANC_SMB_DATA_OUT_SHIFT 28 /* SMBus Data Out Shift */
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#define E1000_MANC_SMB_CLK_OUT_SHIFT 29 /* SMBus Clock Out Shift */
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/* Wake Up Packet Length */
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#define E1000_WUPL_LENGTH_MASK 0x0FFF /* Only the lower 12 bits are valid */
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#define E1000_MDALIGN 4096
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/* EEPROM Commands */
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#define EEPROM_READ_OPCODE 0x6 /* EERPOM read opcode */
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#define EEPROM_WRITE_OPCODE 0x5 /* EERPOM write opcode */
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#define EEPROM_ERASE_OPCODE 0x7 /* EERPOM erase opcode */
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#define EEPROM_EWEN_OPCODE 0x13 /* EERPOM erase/write enable */
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#define EEPROM_EWDS_OPCODE 0x10 /* EERPOM erast/write disable */
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/* EEPROM Word Offsets */
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#define EEPROM_INIT_CONTROL1_REG 0x000A
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#define EEPROM_INIT_CONTROL2_REG 0x000F
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#define EEPROM_FLASH_VERSION 0x0032
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#define EEPROM_CHECKSUM_REG 0x003F
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/* Mask bits for fields in Word 0x0a of the EEPROM */
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#define EEPROM_WORD0A_ILOS 0x0010
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#define EEPROM_WORD0A_SWDPIO 0x01E0
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#define EEPROM_WORD0A_LRST 0x0200
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#define EEPROM_WORD0A_FD 0x0400
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#define EEPROM_WORD0A_66MHZ 0x0800
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/* Mask bits for fields in Word 0x0f of the EEPROM */
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#define EEPROM_WORD0F_PAUSE_MASK 0x3000
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#define EEPROM_WORD0F_PAUSE 0x1000
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#define EEPROM_WORD0F_ASM_DIR 0x2000
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#define EEPROM_WORD0F_ANE 0x0800
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#define EEPROM_WORD0F_SWPDIO_EXT 0x00F0
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/* For checksumming, the sum of all words in the EEPROM should equal 0xBABA. */
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#define EEPROM_SUM 0xBABA
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/* EEPROM Map defines (WORD OFFSETS)*/
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#define EEPROM_NODE_ADDRESS_BYTE_0 0
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#define EEPROM_PBA_BYTE_1 8
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/* EEPROM Map Sizes (Byte Counts) */
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#define PBA_SIZE 4
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/* Collision related configuration parameters */
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#define E1000_COLLISION_THRESHOLD 16
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#define E1000_CT_SHIFT 4
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#define E1000_FDX_COLLISION_DISTANCE 64
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#define E1000_HDX_COLLISION_DISTANCE 64
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#define E1000_GB_HDX_COLLISION_DISTANCE 512
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#define E1000_COLD_SHIFT 12
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/* The number of Transmit and Receive Descriptors must be a multiple of 8 */
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#define REQ_TX_DESCRIPTOR_MULTIPLE 8
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#define REQ_RX_DESCRIPTOR_MULTIPLE 8
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/* Default values for the transmit IPG register */
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#define DEFAULT_82542_TIPG_IPGT 10
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#define DEFAULT_82543_TIPG_IPGT_FIBER 9
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#define DEFAULT_82543_TIPG_IPGT_COPPER 8
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#define E1000_TIPG_IPGT_MASK 0x000003FF
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#define E1000_TIPG_IPGR1_MASK 0x000FFC00
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#define E1000_TIPG_IPGR2_MASK 0x3FF00000
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#define DEFAULT_82542_TIPG_IPGR1 2
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#define DEFAULT_82543_TIPG_IPGR1 8
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#define E1000_TIPG_IPGR1_SHIFT 10
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#define DEFAULT_82542_TIPG_IPGR2 10
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#define DEFAULT_82543_TIPG_IPGR2 6
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#define E1000_TIPG_IPGR2_SHIFT 20
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#define E1000_TXDMAC_DPP 0x00000001
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/* PBA constants */
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#define E1000_PBA_16K 0x0010 /* 16KB, default TX allocation */
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#define E1000_PBA_24K 0x0018
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#define E1000_PBA_40K 0x0028
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#define E1000_PBA_48K 0x0030 /* 48KB, default RX allocation */
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/* Flow Control Constants */
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#define FLOW_CONTROL_ADDRESS_LOW 0x00C28001
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#define FLOW_CONTROL_ADDRESS_HIGH 0x00000100
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#define FLOW_CONTROL_TYPE 0x8808
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/* The historical defaults for the flow control values are given below. */
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#define FC_DEFAULT_HI_THRESH (0x8000) /* 32KB */
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#define FC_DEFAULT_LO_THRESH (0x4000) /* 16KB */
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#define FC_DEFAULT_TX_TIMER (0x100) /* ~130 us */
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/* The number of bits that we need to shift right to move the "pause"
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* bits from the EEPROM (bits 13:12) to the "pause" (bits 8:7) field
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* in the TXCW register
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*/
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#define PAUSE_SHIFT 5
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/* The number of bits that we need to shift left to move the "SWDPIO"
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* bits from the EEPROM (bits 8:5) to the "SWDPIO" (bits 25:22) field
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* in the CTRL register
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*/
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#define SWDPIO_SHIFT 17
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/* The number of bits that we need to shift left to move the "SWDPIO_EXT"
|
|
* bits from the EEPROM word F (bits 7:4) to the bits 11:8 of The
|
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* Extended CTRL register.
|
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* in the CTRL register
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*/
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#define SWDPIO__EXT_SHIFT 4
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/* The number of bits that we need to shift left to move the "ILOS"
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* bit from the EEPROM (bit 4) to the "ILOS" (bit 7) field
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* in the CTRL register
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*/
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#define ILOS_SHIFT 3
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#define RECEIVE_BUFFER_ALIGN_SIZE (256)
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/* The number of milliseconds we wait for auto-negotiation to complete */
|
|
#define LINK_UP_TIMEOUT 500
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#define E1000_TX_BUFFER_SIZE ((uint32_t)1514)
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|
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/* The carrier extension symbol, as received by the NIC. */
|
|
#define CARRIER_EXTENSION 0x0F
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|
|
|
/* TBI_ACCEPT macro definition:
|
|
*
|
|
* This macro requires:
|
|
* adapter = a pointer to struct em_shared_adapter
|
|
* status = the 8 bit status field of the RX descriptor with EOP set
|
|
* error = the 8 bit error field of the RX descriptor with EOP set
|
|
* length = the sum of all the length fields of the RX descriptors that
|
|
* make up the current frame
|
|
* last_byte = the last byte of the frame DMAed by the hardware
|
|
* max_frame_length = the maximum frame length we want to accept.
|
|
* min_frame_length = the minimum frame length we want to accept.
|
|
*
|
|
* This macro is a conditional that should be used in the interrupt
|
|
* handler's Rx processing routine when RxErrors have been detected.
|
|
*
|
|
* Typical use:
|
|
* ...
|
|
* if (TBI_ACCEPT) {
|
|
* accept_frame = TRUE;
|
|
* em_tbi_adjust_stats(adapter, MacAddress);
|
|
* frame_length--;
|
|
* } else {
|
|
* accept_frame = FALSE;
|
|
* }
|
|
* ...
|
|
*/
|
|
|
|
#define TBI_ACCEPT(adapter, status, errors, length, last_byte) \
|
|
((adapter)->tbi_compatibility_on && \
|
|
(((errors) & E1000_RXD_ERR_FRAME_ERR_MASK) == E1000_RXD_ERR_CE) && \
|
|
((last_byte) == CARRIER_EXTENSION) && \
|
|
(((status) & E1000_RXD_STAT_VP) ? \
|
|
(((length) > ((adapter)->min_frame_size - VLAN_TAG_SIZE)) && \
|
|
((length) <= ((adapter)->max_frame_size + 1))) : \
|
|
(((length) > (adapter)->min_frame_size) && \
|
|
((length) <= ((adapter)->max_frame_size + VLAN_TAG_SIZE + 1)))))
|
|
|
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#endif /* _EM_MAC_H_ */
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