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/*
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 * QEMU i8255x (PRO100) emulation
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 *
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 * Copyright (C) 2006-2010 Stefan Weil
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 *
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 * Portions of the code are copies from grub / etherboot eepro100.c
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 * and linux e100.c.
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 *
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 * This program is free software: you can redistribute it and/or modify
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 * it under the terms of the GNU General Public License as published by
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 * the Free Software Foundation, either version 2 of the License, or
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 * (at your option) version 3 or any later version.
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 *
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 * This program is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 * GNU General Public License for more details.
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 *
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 * You should have received a copy of the GNU General Public License
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 * along with this program.  If not, see <http://www.gnu.org/licenses/>.
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 *
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 * Tested features (i82559):
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 *      PXE boot (i386) ok
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 *      Linux networking (i386) ok
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 *
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 * Untested:
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 *      non-i386 platforms
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 *      Windows networking
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 *
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 * References:
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 *
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 * Intel 8255x 10/100 Mbps Ethernet Controller Family
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 * Open Source Software Developer Manual
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 *
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 * TODO:
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 *      * PHY emulation should be separated from nic emulation.
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 *        Most nic emulations could share the same phy code.
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 *      * i82550 is untested. It is programmed like the i82559.
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 *      * i82562 is untested. It is programmed like the i82559.
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 *      * Power management (i82558 and later) is not implemented.
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 *      * Wake-on-LAN is not implemented.
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 */
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#include <stdbool.h>            /* bool */
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#include <stddef.h>             /* offsetof */
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#include "hw.h"
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#include "pci.h"
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#include "net.h"
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#include "eeprom93xx.h"
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#define KiB 1024
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/* Debug EEPRO100 card. */
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#if 0
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# define DEBUG_EEPRO100
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#endif
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#ifdef DEBUG_EEPRO100
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#define logout(fmt, ...) fprintf(stderr, "EE100\t%-24s" fmt, __func__, ## __VA_ARGS__)
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#else
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#define logout(fmt, ...) ((void)0)
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#endif
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/* Set flags to 0 to disable debug output. */
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#define INT     1       /* interrupt related actions */
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#define MDI     1       /* mdi related actions */
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#define OTHER   1
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#define RXTX    1
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#define EEPROM  1       /* eeprom related actions */
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#define TRACE(flag, command) ((flag) ? (command) : (void)0)
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#define missing(text) fprintf(stderr, "eepro100: feature is missing in this emulation: " text "\n")
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#define MAX_ETH_FRAME_SIZE 1514
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/* This driver supports several different devices which are declared here. */
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#define i82550          0x82550
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#define i82551          0x82551
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#define i82557A         0x82557a
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#define i82557B         0x82557b
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#define i82557C         0x82557c
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#define i82558A         0x82558a
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#define i82558B         0x82558b
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#define i82559A         0x82559a
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#define i82559B         0x82559b
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#define i82559C         0x82559c
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#define i82559ER        0x82559e
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#define i82562          0x82562
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#define i82801          0x82801
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/* Use 64 word EEPROM. TODO: could be a runtime option. */
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#define EEPROM_SIZE     64
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#define PCI_MEM_SIZE            (4 * KiB)
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#define PCI_IO_SIZE             64
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#define PCI_FLASH_SIZE          (128 * KiB)
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#define BIT(n) (1 << (n))
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#define BITS(n, m) (((0xffffffffU << (31 - n)) >> (31 - n + m)) << m)
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/* The SCB accepts the following controls for the Tx and Rx units: */
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#define  CU_NOP         0x0000  /* No operation. */
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#define  CU_START       0x0010  /* CU start. */
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#define  CU_RESUME      0x0020  /* CU resume. */
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#define  CU_STATSADDR   0x0040  /* Load dump counters address. */
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#define  CU_SHOWSTATS   0x0050  /* Dump statistical counters. */
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#define  CU_CMD_BASE    0x0060  /* Load CU base address. */
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#define  CU_DUMPSTATS   0x0070  /* Dump and reset statistical counters. */
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#define  CU_SRESUME     0x00a0  /* CU static resume. */
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#define  RU_NOP         0x0000
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#define  RX_START       0x0001
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#define  RX_RESUME      0x0002
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#define  RU_ABORT       0x0004
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#define  RX_ADDR_LOAD   0x0006
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#define  RX_RESUMENR    0x0007
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#define INT_MASK        0x0100
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#define DRVR_INT        0x0200  /* Driver generated interrupt. */
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typedef struct {
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    PCIDeviceInfo pci;
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    uint32_t device;
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    uint16_t device_id;
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    uint8_t revision;
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    uint8_t stats_size;
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    bool has_extended_tcb_support;
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    bool power_management;
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} E100PCIDeviceInfo;
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/* Offsets to the various registers.
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   All accesses need not be longword aligned. */
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enum speedo_offsets {
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    SCBStatus = 0,              /* Status Word. */
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    SCBAck = 1,
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    SCBCmd = 2,                 /* Rx/Command Unit command and status. */
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    SCBIntmask = 3,
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    SCBPointer = 4,             /* General purpose pointer. */
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    SCBPort = 8,                /* Misc. commands and operands.  */
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    SCBflash = 12,              /* Flash memory control. */
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    SCBeeprom = 14,             /* EEPROM control. */
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    SCBCtrlMDI = 16,            /* MDI interface control. */
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    SCBEarlyRx = 20,            /* Early receive byte count. */
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    SCBFlow = 24,               /* Flow Control. */
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    SCBpmdr = 27,               /* Power Management Driver. */
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    SCBgctrl = 28,              /* General Control. */
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    SCBgstat = 29,              /* General Status. */
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};
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/* A speedo3 transmit buffer descriptor with two buffers... */
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typedef struct {
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    uint16_t status;
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    uint16_t command;
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    uint32_t link;              /* void * */
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    uint32_t tbd_array_addr;    /* transmit buffer descriptor array address. */
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    uint16_t tcb_bytes;         /* transmit command block byte count (in lower 14 bits */
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    uint8_t tx_threshold;       /* transmit threshold */
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    uint8_t tbd_count;          /* TBD number */
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#if 0
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    /* This constitutes two "TBD" entries: hdr and data */
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    uint32_t tx_buf_addr0;  /* void *, header of frame to be transmitted.  */
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    int32_t  tx_buf_size0;  /* Length of Tx hdr. */
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    uint32_t tx_buf_addr1;  /* void *, data to be transmitted.  */
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    int32_t  tx_buf_size1;  /* Length of Tx data. */
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#endif
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} eepro100_tx_t;
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/* Receive frame descriptor. */
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typedef struct {
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    int16_t status;
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    uint16_t command;
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    uint32_t link;              /* struct RxFD * */
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    uint32_t rx_buf_addr;       /* void * */
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    uint16_t count;
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    uint16_t size;
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    char packet[MAX_ETH_FRAME_SIZE + 4];
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} eepro100_rx_t;
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typedef enum {
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    COMMAND_EL = BIT(15),
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    COMMAND_S = BIT(14),
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    COMMAND_I = BIT(13),
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    COMMAND_NC = BIT(4),
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    COMMAND_SF = BIT(3),
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    COMMAND_CMD = BITS(2, 0),
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} scb_command_bit;
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typedef enum {
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    STATUS_C = BIT(15),
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    STATUS_OK = BIT(13),
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} scb_status_bit;
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typedef struct {
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    uint32_t tx_good_frames, tx_max_collisions, tx_late_collisions,
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             tx_underruns, tx_lost_crs, tx_deferred, tx_single_collisions,
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             tx_multiple_collisions, tx_total_collisions;
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    uint32_t rx_good_frames, rx_crc_errors, rx_alignment_errors,
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             rx_resource_errors, rx_overrun_errors, rx_cdt_errors,
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             rx_short_frame_errors;
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    uint32_t fc_xmt_pause, fc_rcv_pause, fc_rcv_unsupported;
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    uint16_t xmt_tco_frames, rcv_tco_frames;
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    /* TODO: i82559 has six reserved statistics but a total of 24 dwords. */
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    uint32_t reserved[4];
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} eepro100_stats_t;
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typedef enum {
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    cu_idle = 0,
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    cu_suspended = 1,
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    cu_active = 2,
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    cu_lpq_active = 2,
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    cu_hqp_active = 3
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} cu_state_t;
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typedef enum {
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    ru_idle = 0,
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    ru_suspended = 1,
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    ru_no_resources = 2,
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    ru_ready = 4
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} ru_state_t;
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typedef struct {
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    PCIDevice dev;
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    uint8_t mult[8];            /* multicast mask array */
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    int mmio_index;
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    NICState *nic;
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    NICConf conf;
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    uint8_t scb_stat;           /* SCB stat/ack byte */
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    uint8_t int_stat;           /* PCI interrupt status */
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    /* region must not be saved by nic_save. */
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    uint32_t region[3];         /* PCI region addresses */
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    uint16_t mdimem[32];
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    eeprom_t *eeprom;
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    uint32_t device;            /* device variant */
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    uint32_t pointer;
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    /* (cu_base + cu_offset) address the next command block in the command block list. */
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    uint32_t cu_base;           /* CU base address */
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    uint32_t cu_offset;         /* CU address offset */
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    /* (ru_base + ru_offset) address the RFD in the Receive Frame Area. */
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    uint32_t ru_base;           /* RU base address */
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    uint32_t ru_offset;         /* RU address offset */
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    uint32_t statsaddr;         /* pointer to eepro100_stats_t */
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    /* Temporary status information (no need to save these values),
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     * used while processing CU commands. */
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    eepro100_tx_t tx;           /* transmit buffer descriptor */
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    uint32_t cb_address;        /* = cu_base + cu_offset */
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    /* Statistical counters. Also used for wake-up packet (i82559). */
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    eepro100_stats_t statistics;
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    /* Configuration bytes. */
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    uint8_t configuration[22];
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    /* Data in mem is always in the byte order of the controller (le). */
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    uint8_t mem[PCI_MEM_SIZE];
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    /* vmstate for each particular nic */
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    VMStateDescription *vmstate;
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    /* Quasi static device properties (no need to save them). */
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    uint16_t stats_size;
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    bool has_extended_tcb_support;
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} EEPRO100State;
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/* Word indices in EEPROM. */
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typedef enum {
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    EEPROM_CNFG_MDIX  = 0x03,
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    EEPROM_ID         = 0x05,
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    EEPROM_PHY_ID     = 0x06,
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    EEPROM_VENDOR_ID  = 0x0c,
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    EEPROM_CONFIG_ASF = 0x0d,
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    EEPROM_DEVICE_ID  = 0x23,
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    EEPROM_SMBUS_ADDR = 0x90,
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} EEPROMOffset;
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/* Bit values for EEPROM ID word. */
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typedef enum {
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    EEPROM_ID_MDM = BIT(0),     /* Modem */
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    EEPROM_ID_STB = BIT(1),     /* Standby Enable */
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    EEPROM_ID_WMR = BIT(2),     /* ??? */
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    EEPROM_ID_WOL = BIT(5),     /* Wake on LAN */
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    EEPROM_ID_DPD = BIT(6),     /* Deep Power Down */
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    EEPROM_ID_ALT = BIT(7),     /* */
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    /* BITS(10, 8) device revision */
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    EEPROM_ID_BD = BIT(11),     /* boot disable */
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    EEPROM_ID_ID = BIT(13),     /* id bit */
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    /* BITS(15, 14) signature */
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    EEPROM_ID_VALID = BIT(14),  /* signature for valid eeprom */
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} eeprom_id_bit;
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/* Default values for MDI (PHY) registers */
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static const uint16_t eepro100_mdi_default[] = {
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    /* MDI Registers 0 - 6, 7 */
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    0x3000, 0x780d, 0x02a8, 0x0154, 0x05e1, 0x0000, 0x0000, 0x0000,
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    /* MDI Registers 8 - 15 */
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    0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
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    /* MDI Registers 16 - 31 */
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    0x0003, 0x0000, 0x0001, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
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    0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
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};
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/* Readonly mask for MDI (PHY) registers */
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static const uint16_t eepro100_mdi_mask[] = {
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    0x0000, 0xffff, 0xffff, 0xffff, 0xc01f, 0xffff, 0xffff, 0x0000,
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    0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
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    0x0fff, 0x0000, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff,
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    0xffff, 0xffff, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
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};
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/* XXX: optimize */
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static void stl_le_phys(target_phys_addr_t addr, uint32_t val)
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{
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    val = cpu_to_le32(val);
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    cpu_physical_memory_write(addr, (const uint8_t *)&val, sizeof(val));
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}
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#define POLYNOMIAL 0x04c11db6
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/* From FreeBSD */
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/* XXX: optimize */
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static unsigned compute_mcast_idx(const uint8_t * ep)
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{
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    uint32_t crc;
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    int carry, i, j;
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    uint8_t b;
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    crc = 0xffffffff;
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    for (i = 0; i < 6; i++) {
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        b = *ep++;
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        for (j = 0; j < 8; j++) {
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            carry = ((crc & 0x80000000L) ? 1 : 0) ^ (b & 0x01);
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            crc <<= 1;
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            b >>= 1;
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            if (carry) {
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                crc = ((crc ^ POLYNOMIAL) | carry);
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            }
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        }
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    }
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    return (crc & BITS(7, 2)) >> 2;
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}
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#if defined(DEBUG_EEPRO100)
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static const char *nic_dump(const uint8_t * buf, unsigned size)
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{
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    static char dump[3 * 16 + 1];
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    char *p = &dump[0];
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    if (size > 16) {
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        size = 16;
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    }
349 663e8e51 ths
    while (size-- > 0) {
350 663e8e51 ths
        p += sprintf(p, " %02x", *buf++);
351 663e8e51 ths
    }
352 663e8e51 ths
    return dump;
353 663e8e51 ths
}
354 663e8e51 ths
#endif                          /* DEBUG_EEPRO100 */
355 663e8e51 ths
356 663e8e51 ths
enum scb_stat_ack {
357 663e8e51 ths
    stat_ack_not_ours = 0x00,
358 663e8e51 ths
    stat_ack_sw_gen = 0x04,
359 663e8e51 ths
    stat_ack_rnr = 0x10,
360 663e8e51 ths
    stat_ack_cu_idle = 0x20,
361 663e8e51 ths
    stat_ack_frame_rx = 0x40,
362 663e8e51 ths
    stat_ack_cu_cmd_done = 0x80,
363 663e8e51 ths
    stat_ack_not_present = 0xFF,
364 663e8e51 ths
    stat_ack_rx = (stat_ack_sw_gen | stat_ack_rnr | stat_ack_frame_rx),
365 663e8e51 ths
    stat_ack_tx = (stat_ack_cu_idle | stat_ack_cu_cmd_done),
366 663e8e51 ths
};
367 663e8e51 ths
368 663e8e51 ths
static void disable_interrupt(EEPRO100State * s)
369 663e8e51 ths
{
370 663e8e51 ths
    if (s->int_stat) {
371 aac443e6 Stefan Weil
        TRACE(INT, logout("interrupt disabled\n"));
372 273a2142 Juan Quintela
        qemu_irq_lower(s->dev.irq[0]);
373 663e8e51 ths
        s->int_stat = 0;
374 663e8e51 ths
    }
375 663e8e51 ths
}
376 663e8e51 ths
377 663e8e51 ths
static void enable_interrupt(EEPRO100State * s)
378 663e8e51 ths
{
379 663e8e51 ths
    if (!s->int_stat) {
380 aac443e6 Stefan Weil
        TRACE(INT, logout("interrupt enabled\n"));
381 273a2142 Juan Quintela
        qemu_irq_raise(s->dev.irq[0]);
382 663e8e51 ths
        s->int_stat = 1;
383 663e8e51 ths
    }
384 663e8e51 ths
}
385 663e8e51 ths
386 663e8e51 ths
static void eepro100_acknowledge(EEPRO100State * s)
387 663e8e51 ths
{
388 663e8e51 ths
    s->scb_stat &= ~s->mem[SCBAck];
389 663e8e51 ths
    s->mem[SCBAck] = s->scb_stat;
390 663e8e51 ths
    if (s->scb_stat == 0) {
391 663e8e51 ths
        disable_interrupt(s);
392 663e8e51 ths
    }
393 663e8e51 ths
}
394 663e8e51 ths
395 e715c8e8 Stefan Weil
static void eepro100_interrupt(EEPRO100State * s, uint8_t status)
396 663e8e51 ths
{
397 663e8e51 ths
    uint8_t mask = ~s->mem[SCBIntmask];
398 e715c8e8 Stefan Weil
    s->mem[SCBAck] |= status;
399 e715c8e8 Stefan Weil
    status = s->scb_stat = s->mem[SCBAck];
400 e715c8e8 Stefan Weil
    status &= (mask | 0x0f);
401 e7493b25 Stefan Weil
#if 0
402 e7493b25 Stefan Weil
    status &= (~s->mem[SCBIntmask] | 0x0xf);
403 e7493b25 Stefan Weil
#endif
404 e715c8e8 Stefan Weil
    if (status && (mask & 0x01)) {
405 663e8e51 ths
        /* SCB mask and SCB Bit M do not disable interrupt. */
406 663e8e51 ths
        enable_interrupt(s);
407 663e8e51 ths
    } else if (s->int_stat) {
408 663e8e51 ths
        disable_interrupt(s);
409 663e8e51 ths
    }
410 663e8e51 ths
}
411 663e8e51 ths
412 663e8e51 ths
static void eepro100_cx_interrupt(EEPRO100State * s)
413 663e8e51 ths
{
414 663e8e51 ths
    /* CU completed action command. */
415 663e8e51 ths
    /* Transmit not ok (82557 only, not in emulation). */
416 663e8e51 ths
    eepro100_interrupt(s, 0x80);
417 663e8e51 ths
}
418 663e8e51 ths
419 663e8e51 ths
static void eepro100_cna_interrupt(EEPRO100State * s)
420 663e8e51 ths
{
421 663e8e51 ths
    /* CU left the active state. */
422 663e8e51 ths
    eepro100_interrupt(s, 0x20);
423 663e8e51 ths
}
424 663e8e51 ths
425 663e8e51 ths
static void eepro100_fr_interrupt(EEPRO100State * s)
426 663e8e51 ths
{
427 663e8e51 ths
    /* RU received a complete frame. */
428 663e8e51 ths
    eepro100_interrupt(s, 0x40);
429 663e8e51 ths
}
430 663e8e51 ths
431 663e8e51 ths
static void eepro100_rnr_interrupt(EEPRO100State * s)
432 663e8e51 ths
{
433 663e8e51 ths
    /* RU is not ready. */
434 663e8e51 ths
    eepro100_interrupt(s, 0x10);
435 663e8e51 ths
}
436 663e8e51 ths
437 663e8e51 ths
static void eepro100_mdi_interrupt(EEPRO100State * s)
438 663e8e51 ths
{
439 663e8e51 ths
    /* MDI completed read or write cycle. */
440 663e8e51 ths
    eepro100_interrupt(s, 0x08);
441 663e8e51 ths
}
442 663e8e51 ths
443 663e8e51 ths
static void eepro100_swi_interrupt(EEPRO100State * s)
444 663e8e51 ths
{
445 663e8e51 ths
    /* Software has requested an interrupt. */
446 663e8e51 ths
    eepro100_interrupt(s, 0x04);
447 663e8e51 ths
}
448 663e8e51 ths
449 663e8e51 ths
#if 0
450 663e8e51 ths
static void eepro100_fcp_interrupt(EEPRO100State * s)
451 663e8e51 ths
{
452 663e8e51 ths
    /* Flow control pause interrupt (82558 and later). */
453 663e8e51 ths
    eepro100_interrupt(s, 0x01);
454 663e8e51 ths
}
455 663e8e51 ths
#endif
456 663e8e51 ths
457 558c8634 Stefan Weil
static void e100_pci_reset(EEPRO100State * s, E100PCIDeviceInfo *e100_device)
458 663e8e51 ths
{
459 558c8634 Stefan Weil
    /* TODO: Use pci_add_capability(&s->dev, PCI_CAP_ID_PM, ...) for PM. */
460 663e8e51 ths
    uint32_t device = s->device;
461 273a2142 Juan Quintela
    uint8_t *pci_conf = s->dev.config;
462 663e8e51 ths
463 aac443e6 Stefan Weil
    TRACE(OTHER, logout("%p\n", s));
464 663e8e51 ths
465 663e8e51 ths
    /* PCI Vendor ID */
466 deb54399 aliguori
    pci_config_set_vendor_id(pci_conf, PCI_VENDOR_ID_INTEL);
467 558c8634 Stefan Weil
    /* PCI Device ID */
468 558c8634 Stefan Weil
    pci_config_set_device_id(pci_conf, e100_device->device_id);
469 663e8e51 ths
    /* PCI Status */
470 558c8634 Stefan Weil
    if (e100_device->power_management) {
471 558c8634 Stefan Weil
        pci_set_word(pci_conf + PCI_STATUS, PCI_STATUS_DEVSEL_MEDIUM |
472 558c8634 Stefan Weil
                                            PCI_STATUS_FAST_BACK |
473 558c8634 Stefan Weil
                                            PCI_STATUS_CAP_LIST);
474 558c8634 Stefan Weil
    } else {
475 558c8634 Stefan Weil
        pci_set_word(pci_conf + PCI_STATUS, PCI_STATUS_DEVSEL_MEDIUM |
476 558c8634 Stefan Weil
                                            PCI_STATUS_FAST_BACK);
477 558c8634 Stefan Weil
    }
478 663e8e51 ths
    /* PCI Revision ID */
479 558c8634 Stefan Weil
    pci_config_set_revision(pci_conf, e100_device->revision);
480 173a543b blueswir1
    pci_config_set_class(pci_conf, PCI_CLASS_NETWORK_ETHERNET);
481 663e8e51 ths
    /* PCI Latency Timer */
482 15e89f59 Michael S. Tsirkin
    pci_set_byte(pci_conf + PCI_LATENCY_TIMER, 0x20);   /* latency timer = 32 clocks */
483 663e8e51 ths
    /* Capability Pointer */
484 558c8634 Stefan Weil
    if (e100_device->power_management) {
485 558c8634 Stefan Weil
        pci_set_byte(pci_conf + PCI_CAPABILITY_LIST, 0xdc);
486 558c8634 Stefan Weil
    } else {
487 558c8634 Stefan Weil
        pci_set_byte(pci_conf + PCI_CAPABILITY_LIST, 0x00);
488 558c8634 Stefan Weil
    }
489 663e8e51 ths
    /* Minimum Grant */
490 15e89f59 Michael S. Tsirkin
    pci_set_byte(pci_conf + PCI_MIN_GNT, 0x08);
491 663e8e51 ths
    /* Maximum Latency */
492 15e89f59 Michael S. Tsirkin
    pci_set_byte(pci_conf + PCI_MAX_LAT, 0x18);
493 663e8e51 ths
494 558c8634 Stefan Weil
    s->stats_size = e100_device->stats_size;
495 558c8634 Stefan Weil
    s->has_extended_tcb_support = e100_device->has_extended_tcb_support;
496 558c8634 Stefan Weil
497 663e8e51 ths
    switch (device) {
498 ba42b646 Stefan Weil
    case i82550:
499 663e8e51 ths
    case i82551:
500 ba42b646 Stefan Weil
    case i82557A:
501 663e8e51 ths
    case i82557B:
502 663e8e51 ths
    case i82557C:
503 ba42b646 Stefan Weil
    case i82558A:
504 663e8e51 ths
    case i82558B:
505 ba42b646 Stefan Weil
    case i82559A:
506 ba42b646 Stefan Weil
    case i82559B:
507 558c8634 Stefan Weil
    case i82559ER:
508 558c8634 Stefan Weil
    case i82562:
509 db667a12 Stefan Weil
    case i82801:
510 663e8e51 ths
        break;
511 663e8e51 ths
    case i82559C:
512 ba42b646 Stefan Weil
#if EEPROM_SIZE > 0
513 558c8634 Stefan Weil
        pci_set_word(pci_conf + PCI_SUBSYSTEM_VENDOR_ID, PCI_VENDOR_ID_INTEL);
514 15e89f59 Michael S. Tsirkin
        pci_set_word(pci_conf + PCI_SUBSYSTEM_ID, 0x0040);
515 ba42b646 Stefan Weil
#endif
516 663e8e51 ths
        break;
517 663e8e51 ths
    default:
518 663e8e51 ths
        logout("Device %X is undefined!\n", device);
519 663e8e51 ths
    }
520 663e8e51 ths
521 3dec59a1 Stefan Weil
    /* Standard TxCB. */
522 3dec59a1 Stefan Weil
    s->configuration[6] |= BIT(4);
523 3dec59a1 Stefan Weil
524 558c8634 Stefan Weil
    /* Standard statistical counters. */
525 ba42b646 Stefan Weil
    s->configuration[6] |= BIT(5);
526 ba42b646 Stefan Weil
527 ba42b646 Stefan Weil
    if (s->stats_size == 80) {
528 ba42b646 Stefan Weil
        /* TODO: check TCO Statistical Counters bit. Documentation not clear. */
529 ba42b646 Stefan Weil
        if (s->configuration[6] & BIT(2)) {
530 ba42b646 Stefan Weil
            /* TCO statistical counters. */
531 ba42b646 Stefan Weil
            assert(s->configuration[6] & BIT(5));
532 ba42b646 Stefan Weil
        } else {
533 ba42b646 Stefan Weil
            if (s->configuration[6] & BIT(5)) {
534 ba42b646 Stefan Weil
                /* No extended statistical counters, i82557 compatible. */
535 ba42b646 Stefan Weil
                s->stats_size = 64;
536 ba42b646 Stefan Weil
            } else {
537 ba42b646 Stefan Weil
                /* i82558 compatible. */
538 ba42b646 Stefan Weil
                s->stats_size = 76;
539 ba42b646 Stefan Weil
            }
540 ba42b646 Stefan Weil
        }
541 ba42b646 Stefan Weil
    } else {
542 ba42b646 Stefan Weil
        if (s->configuration[6] & BIT(5)) {
543 ba42b646 Stefan Weil
            /* No extended statistical counters. */
544 ba42b646 Stefan Weil
            s->stats_size = 64;
545 ba42b646 Stefan Weil
        }
546 ba42b646 Stefan Weil
    }
547 ba42b646 Stefan Weil
    assert(s->stats_size > 0 && s->stats_size <= sizeof(s->statistics));
548 ba42b646 Stefan Weil
549 558c8634 Stefan Weil
    if (e100_device->power_management) {
550 ba42b646 Stefan Weil
        /* Power Management Capabilities */
551 558c8634 Stefan Weil
        pci_set_byte(pci_conf + 0xdc, PCI_CAP_ID_PM);
552 ba42b646 Stefan Weil
        /* Next Item Pointer */
553 ba42b646 Stefan Weil
        /* Capability ID */
554 15e89f59 Michael S. Tsirkin
        pci_set_word(pci_conf + 0xde, 0x7e21);
555 ba42b646 Stefan Weil
        /* TODO: Power Management Control / Status. */
556 ba42b646 Stefan Weil
        /* TODO: Ethernet Power Consumption Registers (i82559 and later). */
557 ba42b646 Stefan Weil
    }
558 ba42b646 Stefan Weil
559 ba42b646 Stefan Weil
#if EEPROM_SIZE > 0
560 663e8e51 ths
    if (device == i82557C || device == i82558B || device == i82559C) {
561 e7493b25 Stefan Weil
        /*
562 e7493b25 Stefan Weil
        TODO: get vendor id from EEPROM for i82557C or later.
563 e7493b25 Stefan Weil
        TODO: get device id from EEPROM for i82557C or later.
564 e7493b25 Stefan Weil
        TODO: status bit 4 can be disabled by EEPROM for i82558, i82559.
565 e7493b25 Stefan Weil
        TODO: header type is determined by EEPROM for i82559.
566 e7493b25 Stefan Weil
        TODO: get subsystem id from EEPROM for i82557C or later.
567 e7493b25 Stefan Weil
        TODO: get subsystem vendor id from EEPROM for i82557C or later.
568 e7493b25 Stefan Weil
        TODO: exp. rom baddr depends on a bit in EEPROM for i82558 or later.
569 e7493b25 Stefan Weil
        TODO: capability pointer depends on EEPROM for i82558.
570 e7493b25 Stefan Weil
        */
571 663e8e51 ths
        logout("Get device id and revision from EEPROM!!!\n");
572 663e8e51 ths
    }
573 ba42b646 Stefan Weil
#endif /* EEPROM_SIZE > 0 */
574 663e8e51 ths
}
575 663e8e51 ths
576 663e8e51 ths
static void nic_selective_reset(EEPRO100State * s)
577 663e8e51 ths
{
578 663e8e51 ths
    size_t i;
579 663e8e51 ths
    uint16_t *eeprom_contents = eeprom93xx_data(s->eeprom);
580 e7493b25 Stefan Weil
#if 0
581 e7493b25 Stefan Weil
    eeprom93xx_reset(s->eeprom);
582 e7493b25 Stefan Weil
#endif
583 508ef936 Gerd Hoffmann
    memcpy(eeprom_contents, s->conf.macaddr.a, 6);
584 b1e87018 Stefan Weil
    eeprom_contents[EEPROM_ID] = EEPROM_ID_VALID;
585 f4e94dfe =?UTF-8?q?Reimar=20D=C3=B6ffinger?=
    if (s->device == i82557B || s->device == i82557C)
586 f4e94dfe =?UTF-8?q?Reimar=20D=C3=B6ffinger?=
        eeprom_contents[5] = 0x0100;
587 6cded3a4 Stefan Weil
    eeprom_contents[EEPROM_PHY_ID] = 1;
588 663e8e51 ths
    uint16_t sum = 0;
589 663e8e51 ths
    for (i = 0; i < EEPROM_SIZE - 1; i++) {
590 663e8e51 ths
        sum += eeprom_contents[i];
591 663e8e51 ths
    }
592 663e8e51 ths
    eeprom_contents[EEPROM_SIZE - 1] = 0xbaba - sum;
593 aac443e6 Stefan Weil
    TRACE(EEPROM, logout("checksum=0x%04x\n", eeprom_contents[EEPROM_SIZE - 1]));
594 663e8e51 ths
595 663e8e51 ths
    memset(s->mem, 0, sizeof(s->mem));
596 663e8e51 ths
    uint32_t val = BIT(21);
597 663e8e51 ths
    memcpy(&s->mem[SCBCtrlMDI], &val, sizeof(val));
598 663e8e51 ths
599 663e8e51 ths
    assert(sizeof(s->mdimem) == sizeof(eepro100_mdi_default));
600 663e8e51 ths
    memcpy(&s->mdimem[0], &eepro100_mdi_default[0], sizeof(s->mdimem));
601 663e8e51 ths
}
602 663e8e51 ths
603 663e8e51 ths
static void nic_reset(void *opaque)
604 663e8e51 ths
{
605 769cf7a5 Juan Quintela
    EEPRO100State *s = opaque;
606 aac443e6 Stefan Weil
    TRACE(OTHER, logout("%p\n", s));
607 7b8737de Stefan Weil
    /* TODO: Clearing of multicast table for selective reset, too? */
608 7b8737de Stefan Weil
    memset(&s->mult[0], 0, sizeof(s->mult));
609 663e8e51 ths
    nic_selective_reset(s);
610 663e8e51 ths
}
611 663e8e51 ths
612 663e8e51 ths
#if defined(DEBUG_EEPRO100)
613 b8f6ba0d Stefan Weil
static const char * const e100_reg[PCI_IO_SIZE / 4] = {
614 663e8e51 ths
    "Command/Status",
615 663e8e51 ths
    "General Pointer",
616 663e8e51 ths
    "Port",
617 663e8e51 ths
    "EEPROM/Flash Control",
618 663e8e51 ths
    "MDI Control",
619 663e8e51 ths
    "Receive DMA Byte Count",
620 b8f6ba0d Stefan Weil
    "Flow Control",
621 663e8e51 ths
    "General Status/Control"
622 663e8e51 ths
};
623 663e8e51 ths
624 663e8e51 ths
static char *regname(uint32_t addr)
625 663e8e51 ths
{
626 ec169288 David Benjamin
    static char buf[32];
627 663e8e51 ths
    if (addr < PCI_IO_SIZE) {
628 b8f6ba0d Stefan Weil
        const char *r = e100_reg[addr / 4];
629 663e8e51 ths
        if (r != 0) {
630 41cbc23c Stefan Weil
            snprintf(buf, sizeof(buf), "%s+%u", r, addr % 4);
631 663e8e51 ths
        } else {
632 41cbc23c Stefan Weil
            snprintf(buf, sizeof(buf), "0x%02x", addr);
633 663e8e51 ths
        }
634 663e8e51 ths
    } else {
635 41cbc23c Stefan Weil
        snprintf(buf, sizeof(buf), "??? 0x%08x", addr);
636 663e8e51 ths
    }
637 663e8e51 ths
    return buf;
638 663e8e51 ths
}
639 663e8e51 ths
#endif                          /* DEBUG_EEPRO100 */
640 663e8e51 ths
641 663e8e51 ths
/*****************************************************************************
642 663e8e51 ths
 *
643 663e8e51 ths
 * Command emulation.
644 663e8e51 ths
 *
645 663e8e51 ths
 ****************************************************************************/
646 663e8e51 ths
647 663e8e51 ths
#if 0
648 663e8e51 ths
static uint16_t eepro100_read_command(EEPRO100State * s)
649 663e8e51 ths
{
650 663e8e51 ths
    uint16_t val = 0xffff;
651 e7493b25 Stefan Weil
    TRACE(OTHER, logout("val=0x%04x\n", val));
652 663e8e51 ths
    return val;
653 663e8e51 ths
}
654 663e8e51 ths
#endif
655 663e8e51 ths
656 663e8e51 ths
/* Commands that can be put in a command list entry. */
657 663e8e51 ths
enum commands {
658 663e8e51 ths
    CmdNOp = 0,
659 663e8e51 ths
    CmdIASetup = 1,
660 663e8e51 ths
    CmdConfigure = 2,
661 663e8e51 ths
    CmdMulticastList = 3,
662 663e8e51 ths
    CmdTx = 4,
663 663e8e51 ths
    CmdTDR = 5,                 /* load microcode */
664 663e8e51 ths
    CmdDump = 6,
665 663e8e51 ths
    CmdDiagnose = 7,
666 663e8e51 ths
667 663e8e51 ths
    /* And some extra flags: */
668 663e8e51 ths
    CmdSuspend = 0x4000,        /* Suspend after completion. */
669 663e8e51 ths
    CmdIntr = 0x2000,           /* Interrupt after completion. */
670 663e8e51 ths
    CmdTxFlex = 0x0008,         /* Use "Flexible mode" for CmdTx command. */
671 663e8e51 ths
};
672 663e8e51 ths
673 c227f099 Anthony Liguori
static cu_state_t get_cu_state(EEPRO100State * s)
674 663e8e51 ths
{
675 ced5296a Stefan Weil
    return ((s->mem[SCBStatus] & BITS(7, 6)) >> 6);
676 663e8e51 ths
}
677 663e8e51 ths
678 c227f099 Anthony Liguori
static void set_cu_state(EEPRO100State * s, cu_state_t state)
679 663e8e51 ths
{
680 ced5296a Stefan Weil
    s->mem[SCBStatus] = (s->mem[SCBStatus] & ~BITS(7, 6)) + (state << 6);
681 663e8e51 ths
}
682 663e8e51 ths
683 c227f099 Anthony Liguori
static ru_state_t get_ru_state(EEPRO100State * s)
684 663e8e51 ths
{
685 ced5296a Stefan Weil
    return ((s->mem[SCBStatus] & BITS(5, 2)) >> 2);
686 663e8e51 ths
}
687 663e8e51 ths
688 c227f099 Anthony Liguori
static void set_ru_state(EEPRO100State * s, ru_state_t state)
689 663e8e51 ths
{
690 ced5296a Stefan Weil
    s->mem[SCBStatus] = (s->mem[SCBStatus] & ~BITS(5, 2)) + (state << 2);
691 663e8e51 ths
}
692 663e8e51 ths
693 663e8e51 ths
static void dump_statistics(EEPRO100State * s)
694 663e8e51 ths
{
695 663e8e51 ths
    /* Dump statistical data. Most data is never changed by the emulation
696 663e8e51 ths
     * and always 0, so we first just copy the whole block and then those
697 663e8e51 ths
     * values which really matter.
698 663e8e51 ths
     * Number of data should check configuration!!!
699 663e8e51 ths
     */
700 ba42b646 Stefan Weil
    cpu_physical_memory_write(s->statsaddr,
701 ba42b646 Stefan Weil
                              (uint8_t *) & s->statistics, s->stats_size);
702 ba42b646 Stefan Weil
    stl_le_phys(s->statsaddr + 0, s->statistics.tx_good_frames);
703 ba42b646 Stefan Weil
    stl_le_phys(s->statsaddr + 36, s->statistics.rx_good_frames);
704 ba42b646 Stefan Weil
    stl_le_phys(s->statsaddr + 48, s->statistics.rx_resource_errors);
705 ba42b646 Stefan Weil
    stl_le_phys(s->statsaddr + 60, s->statistics.rx_short_frame_errors);
706 e7493b25 Stefan Weil
#if 0
707 e7493b25 Stefan Weil
    stw_le_phys(s->statsaddr + 76, s->statistics.xmt_tco_frames);
708 e7493b25 Stefan Weil
    stw_le_phys(s->statsaddr + 78, s->statistics.rcv_tco_frames);
709 e7493b25 Stefan Weil
    missing("CU dump statistical counters");
710 e7493b25 Stefan Weil
#endif
711 663e8e51 ths
}
712 663e8e51 ths
713 3d0f4b9b Stefan Weil
static void read_cb(EEPRO100State *s)
714 3d0f4b9b Stefan Weil
{
715 3d0f4b9b Stefan Weil
    cpu_physical_memory_read(s->cb_address, (uint8_t *) &s->tx, sizeof(s->tx));
716 3d0f4b9b Stefan Weil
    s->tx.status = le16_to_cpu(s->tx.status);
717 3d0f4b9b Stefan Weil
    s->tx.command = le16_to_cpu(s->tx.command);
718 3d0f4b9b Stefan Weil
    s->tx.link = le32_to_cpu(s->tx.link);
719 3d0f4b9b Stefan Weil
    s->tx.tbd_array_addr = le32_to_cpu(s->tx.tbd_array_addr);
720 3d0f4b9b Stefan Weil
    s->tx.tcb_bytes = le16_to_cpu(s->tx.tcb_bytes);
721 3d0f4b9b Stefan Weil
}
722 3d0f4b9b Stefan Weil
723 f3a52e50 Stefan Weil
static void tx_command(EEPRO100State *s)
724 f3a52e50 Stefan Weil
{
725 7b8737de Stefan Weil
    uint32_t tbd_array = le32_to_cpu(s->tx.tbd_array_addr);
726 f3a52e50 Stefan Weil
    uint16_t tcb_bytes = (le16_to_cpu(s->tx.tcb_bytes) & 0x3fff);
727 f3a52e50 Stefan Weil
    /* Sends larger than MAX_ETH_FRAME_SIZE are allowed, up to 2600 bytes. */
728 f3a52e50 Stefan Weil
    uint8_t buf[2600];
729 f3a52e50 Stefan Weil
    uint16_t size = 0;
730 f3a52e50 Stefan Weil
    uint32_t tbd_address = s->cb_address + 0x10;
731 f3a52e50 Stefan Weil
    TRACE(RXTX, logout
732 f3a52e50 Stefan Weil
        ("transmit, TBD array address 0x%08x, TCB byte count 0x%04x, TBD count %u\n",
733 f3a52e50 Stefan Weil
         tbd_array, tcb_bytes, s->tx.tbd_count));
734 f3a52e50 Stefan Weil
735 f3a52e50 Stefan Weil
    if (tcb_bytes > 2600) {
736 f3a52e50 Stefan Weil
        logout("TCB byte count too large, using 2600\n");
737 f3a52e50 Stefan Weil
        tcb_bytes = 2600;
738 f3a52e50 Stefan Weil
    }
739 f3a52e50 Stefan Weil
    if (!((tcb_bytes > 0) || (tbd_array != 0xffffffff))) {
740 f3a52e50 Stefan Weil
        logout
741 f3a52e50 Stefan Weil
            ("illegal values of TBD array address and TCB byte count!\n");
742 f3a52e50 Stefan Weil
    }
743 f3a52e50 Stefan Weil
    assert(tcb_bytes <= sizeof(buf));
744 f3a52e50 Stefan Weil
    while (size < tcb_bytes) {
745 f3a52e50 Stefan Weil
        uint32_t tx_buffer_address = ldl_phys(tbd_address);
746 f3a52e50 Stefan Weil
        uint16_t tx_buffer_size = lduw_phys(tbd_address + 4);
747 e7493b25 Stefan Weil
#if 0
748 e7493b25 Stefan Weil
        uint16_t tx_buffer_el = lduw_phys(tbd_address + 6);
749 e7493b25 Stefan Weil
#endif
750 f3a52e50 Stefan Weil
        tbd_address += 8;
751 f3a52e50 Stefan Weil
        TRACE(RXTX, logout
752 f3a52e50 Stefan Weil
            ("TBD (simplified mode): buffer address 0x%08x, size 0x%04x\n",
753 f3a52e50 Stefan Weil
             tx_buffer_address, tx_buffer_size));
754 f3a52e50 Stefan Weil
        tx_buffer_size = MIN(tx_buffer_size, sizeof(buf) - size);
755 f3a52e50 Stefan Weil
        cpu_physical_memory_read(tx_buffer_address, &buf[size],
756 f3a52e50 Stefan Weil
                                 tx_buffer_size);
757 f3a52e50 Stefan Weil
        size += tx_buffer_size;
758 f3a52e50 Stefan Weil
    }
759 f3a52e50 Stefan Weil
    if (tbd_array == 0xffffffff) {
760 f3a52e50 Stefan Weil
        /* Simplified mode. Was already handled by code above. */
761 f3a52e50 Stefan Weil
    } else {
762 f3a52e50 Stefan Weil
        /* Flexible mode. */
763 f3a52e50 Stefan Weil
        uint8_t tbd_count = 0;
764 f3a52e50 Stefan Weil
        if (s->has_extended_tcb_support && !(s->configuration[6] & BIT(4))) {
765 f3a52e50 Stefan Weil
            /* Extended Flexible TCB. */
766 f3a52e50 Stefan Weil
            for (; tbd_count < 2; tbd_count++) {
767 f3a52e50 Stefan Weil
                uint32_t tx_buffer_address = ldl_phys(tbd_address);
768 f3a52e50 Stefan Weil
                uint16_t tx_buffer_size = lduw_phys(tbd_address + 4);
769 f3a52e50 Stefan Weil
                uint16_t tx_buffer_el = lduw_phys(tbd_address + 6);
770 f3a52e50 Stefan Weil
                tbd_address += 8;
771 f3a52e50 Stefan Weil
                TRACE(RXTX, logout
772 f3a52e50 Stefan Weil
                    ("TBD (extended flexible mode): buffer address 0x%08x, size 0x%04x\n",
773 f3a52e50 Stefan Weil
                     tx_buffer_address, tx_buffer_size));
774 f3a52e50 Stefan Weil
                tx_buffer_size = MIN(tx_buffer_size, sizeof(buf) - size);
775 f3a52e50 Stefan Weil
                cpu_physical_memory_read(tx_buffer_address, &buf[size],
776 f3a52e50 Stefan Weil
                                         tx_buffer_size);
777 f3a52e50 Stefan Weil
                size += tx_buffer_size;
778 f3a52e50 Stefan Weil
                if (tx_buffer_el & 1) {
779 f3a52e50 Stefan Weil
                    break;
780 f3a52e50 Stefan Weil
                }
781 f3a52e50 Stefan Weil
            }
782 f3a52e50 Stefan Weil
        }
783 f3a52e50 Stefan Weil
        tbd_address = tbd_array;
784 f3a52e50 Stefan Weil
        for (; tbd_count < s->tx.tbd_count; tbd_count++) {
785 f3a52e50 Stefan Weil
            uint32_t tx_buffer_address = ldl_phys(tbd_address);
786 f3a52e50 Stefan Weil
            uint16_t tx_buffer_size = lduw_phys(tbd_address + 4);
787 f3a52e50 Stefan Weil
            uint16_t tx_buffer_el = lduw_phys(tbd_address + 6);
788 f3a52e50 Stefan Weil
            tbd_address += 8;
789 f3a52e50 Stefan Weil
            TRACE(RXTX, logout
790 f3a52e50 Stefan Weil
                ("TBD (flexible mode): buffer address 0x%08x, size 0x%04x\n",
791 f3a52e50 Stefan Weil
                 tx_buffer_address, tx_buffer_size));
792 f3a52e50 Stefan Weil
            tx_buffer_size = MIN(tx_buffer_size, sizeof(buf) - size);
793 f3a52e50 Stefan Weil
            cpu_physical_memory_read(tx_buffer_address, &buf[size],
794 f3a52e50 Stefan Weil
                                     tx_buffer_size);
795 f3a52e50 Stefan Weil
            size += tx_buffer_size;
796 f3a52e50 Stefan Weil
            if (tx_buffer_el & 1) {
797 f3a52e50 Stefan Weil
                break;
798 f3a52e50 Stefan Weil
            }
799 f3a52e50 Stefan Weil
        }
800 f3a52e50 Stefan Weil
    }
801 f3a52e50 Stefan Weil
    TRACE(RXTX, logout("%p sending frame, len=%d,%s\n", s, size, nic_dump(buf, size)));
802 f3a52e50 Stefan Weil
    qemu_send_packet(&s->nic->nc, buf, size);
803 f3a52e50 Stefan Weil
    s->statistics.tx_good_frames++;
804 f3a52e50 Stefan Weil
    /* Transmit with bad status would raise an CX/TNO interrupt.
805 f3a52e50 Stefan Weil
     * (82557 only). Emulation never has bad status. */
806 e7493b25 Stefan Weil
#if 0
807 e7493b25 Stefan Weil
    eepro100_cx_interrupt(s);
808 e7493b25 Stefan Weil
#endif
809 f3a52e50 Stefan Weil
}
810 f3a52e50 Stefan Weil
811 7b8737de Stefan Weil
static void set_multicast_list(EEPRO100State *s)
812 7b8737de Stefan Weil
{
813 7b8737de Stefan Weil
    uint16_t multicast_count = s->tx.tbd_array_addr & BITS(13, 0);
814 7b8737de Stefan Weil
    uint16_t i;
815 7b8737de Stefan Weil
    memset(&s->mult[0], 0, sizeof(s->mult));
816 7b8737de Stefan Weil
    TRACE(OTHER, logout("multicast list, multicast count = %u\n", multicast_count));
817 7b8737de Stefan Weil
    for (i = 0; i < multicast_count; i += 6) {
818 7b8737de Stefan Weil
        uint8_t multicast_addr[6];
819 7b8737de Stefan Weil
        cpu_physical_memory_read(s->cb_address + 10 + i, multicast_addr, 6);
820 7b8737de Stefan Weil
        TRACE(OTHER, logout("multicast entry %s\n", nic_dump(multicast_addr, 6)));
821 7b8737de Stefan Weil
        unsigned mcast_idx = compute_mcast_idx(multicast_addr);
822 7b8737de Stefan Weil
        assert(mcast_idx < 64);
823 7b8737de Stefan Weil
        s->mult[mcast_idx >> 3] |= (1 << (mcast_idx & 7));
824 7b8737de Stefan Weil
    }
825 7b8737de Stefan Weil
}
826 7b8737de Stefan Weil
827 5fa9a0ae Stefan Weil
static void action_command(EEPRO100State *s)
828 663e8e51 ths
{
829 5fa9a0ae Stefan Weil
    for (;;) {
830 3d0f4b9b Stefan Weil
        bool bit_el;
831 3d0f4b9b Stefan Weil
        bool bit_s;
832 3d0f4b9b Stefan Weil
        bool bit_i;
833 3d0f4b9b Stefan Weil
        bool bit_nc;
834 75f5a6cc Stefan Weil
        uint16_t ok_status = STATUS_OK;
835 3d0f4b9b Stefan Weil
        s->cb_address = s->cu_base + s->cu_offset;
836 3d0f4b9b Stefan Weil
        read_cb(s);
837 3d0f4b9b Stefan Weil
        bit_el = ((s->tx.command & COMMAND_EL) != 0);
838 3d0f4b9b Stefan Weil
        bit_s = ((s->tx.command & COMMAND_S) != 0);
839 3d0f4b9b Stefan Weil
        bit_i = ((s->tx.command & COMMAND_I) != 0);
840 3d0f4b9b Stefan Weil
        bit_nc = ((s->tx.command & COMMAND_NC) != 0);
841 3d0f4b9b Stefan Weil
#if 0
842 3d0f4b9b Stefan Weil
        bool bit_sf = ((s->tx.command & COMMAND_SF) != 0);
843 3d0f4b9b Stefan Weil
#endif
844 3d0f4b9b Stefan Weil
        s->cu_offset = s->tx.link;
845 3d0f4b9b Stefan Weil
        TRACE(OTHER,
846 3d0f4b9b Stefan Weil
              logout("val=(cu start), status=0x%04x, command=0x%04x, link=0x%08x\n",
847 3d0f4b9b Stefan Weil
                     s->tx.status, s->tx.command, s->tx.link));
848 3d0f4b9b Stefan Weil
        switch (s->tx.command & COMMAND_CMD) {
849 663e8e51 ths
        case CmdNOp:
850 663e8e51 ths
            /* Do nothing. */
851 663e8e51 ths
            break;
852 663e8e51 ths
        case CmdIASetup:
853 f3a52e50 Stefan Weil
            cpu_physical_memory_read(s->cb_address + 8, &s->conf.macaddr.a[0], 6);
854 ce0e58b3 Stefan Weil
            TRACE(OTHER, logout("macaddr: %s\n", nic_dump(&s->conf.macaddr.a[0], 6)));
855 663e8e51 ths
            break;
856 663e8e51 ths
        case CmdConfigure:
857 f3a52e50 Stefan Weil
            cpu_physical_memory_read(s->cb_address + 8, &s->configuration[0],
858 663e8e51 ths
                                     sizeof(s->configuration));
859 aac443e6 Stefan Weil
            TRACE(OTHER, logout("configuration: %s\n", nic_dump(&s->configuration[0], 16)));
860 663e8e51 ths
            break;
861 663e8e51 ths
        case CmdMulticastList:
862 7b8737de Stefan Weil
            set_multicast_list(s);
863 663e8e51 ths
            break;
864 663e8e51 ths
        case CmdTx:
865 7f1e9d4e Kevin Wolf
            if (bit_nc) {
866 7f1e9d4e Kevin Wolf
                missing("CmdTx: NC = 0");
867 75f5a6cc Stefan Weil
                ok_status = 0;
868 7f1e9d4e Kevin Wolf
                break;
869 7f1e9d4e Kevin Wolf
            }
870 f3a52e50 Stefan Weil
            tx_command(s);
871 663e8e51 ths
            break;
872 663e8e51 ths
        case CmdTDR:
873 aac443e6 Stefan Weil
            TRACE(OTHER, logout("load microcode\n"));
874 663e8e51 ths
            /* Starting with offset 8, the command contains
875 663e8e51 ths
             * 64 dwords microcode which we just ignore here. */
876 663e8e51 ths
            break;
877 f80a7fc3 Stefan Weil
        case CmdDiagnose:
878 f80a7fc3 Stefan Weil
            TRACE(OTHER, logout("diagnose\n"));
879 f80a7fc3 Stefan Weil
            /* Make sure error flag is not set. */
880 f80a7fc3 Stefan Weil
            s->tx.status = 0;
881 f80a7fc3 Stefan Weil
            break;
882 663e8e51 ths
        default:
883 663e8e51 ths
            missing("undefined command");
884 75f5a6cc Stefan Weil
            ok_status = 0;
885 7f1e9d4e Kevin Wolf
            break;
886 663e8e51 ths
        }
887 7f1e9d4e Kevin Wolf
        /* Write new status. */
888 75f5a6cc Stefan Weil
        stw_phys(s->cb_address, s->tx.status | ok_status | STATUS_C);
889 663e8e51 ths
        if (bit_i) {
890 663e8e51 ths
            /* CU completed action. */
891 663e8e51 ths
            eepro100_cx_interrupt(s);
892 663e8e51 ths
        }
893 663e8e51 ths
        if (bit_el) {
894 aac443e6 Stefan Weil
            /* CU becomes idle. Terminate command loop. */
895 663e8e51 ths
            set_cu_state(s, cu_idle);
896 663e8e51 ths
            eepro100_cna_interrupt(s);
897 5fa9a0ae Stefan Weil
            break;
898 663e8e51 ths
        } else if (bit_s) {
899 5fa9a0ae Stefan Weil
            /* CU becomes suspended. Terminate command loop. */
900 663e8e51 ths
            set_cu_state(s, cu_suspended);
901 663e8e51 ths
            eepro100_cna_interrupt(s);
902 5fa9a0ae Stefan Weil
            break;
903 663e8e51 ths
        } else {
904 663e8e51 ths
            /* More entries in list. */
905 aac443e6 Stefan Weil
            TRACE(OTHER, logout("CU list with at least one more entry\n"));
906 663e8e51 ths
        }
907 5fa9a0ae Stefan Weil
    }
908 5fa9a0ae Stefan Weil
    TRACE(OTHER, logout("CU list empty\n"));
909 5fa9a0ae Stefan Weil
    /* List is empty. Now CU is idle or suspended. */
910 5fa9a0ae Stefan Weil
}
911 5fa9a0ae Stefan Weil
912 5fa9a0ae Stefan Weil
static void eepro100_cu_command(EEPRO100State * s, uint8_t val)
913 5fa9a0ae Stefan Weil
{
914 cb25a3fb Stefan Weil
    cu_state_t cu_state;
915 5fa9a0ae Stefan Weil
    switch (val) {
916 5fa9a0ae Stefan Weil
    case CU_NOP:
917 5fa9a0ae Stefan Weil
        /* No operation. */
918 5fa9a0ae Stefan Weil
        break;
919 5fa9a0ae Stefan Weil
    case CU_START:
920 cb25a3fb Stefan Weil
        cu_state = get_cu_state(s);
921 cb25a3fb Stefan Weil
        if (cu_state != cu_idle && cu_state != cu_suspended) {
922 cb25a3fb Stefan Weil
            /* Intel documentation says that CU must be idle or suspended
923 cb25a3fb Stefan Weil
             * for the CU start command. */
924 cb25a3fb Stefan Weil
            logout("unexpected CU state is %u\n", cu_state);
925 5fa9a0ae Stefan Weil
        }
926 5fa9a0ae Stefan Weil
        set_cu_state(s, cu_active);
927 5fa9a0ae Stefan Weil
        s->cu_offset = s->pointer;
928 5fa9a0ae Stefan Weil
        action_command(s);
929 663e8e51 ths
        break;
930 663e8e51 ths
    case CU_RESUME:
931 663e8e51 ths
        if (get_cu_state(s) != cu_suspended) {
932 663e8e51 ths
            logout("bad CU resume from CU state %u\n", get_cu_state(s));
933 663e8e51 ths
            /* Workaround for bad Linux eepro100 driver which resumes
934 663e8e51 ths
             * from idle state. */
935 e7493b25 Stefan Weil
#if 0
936 e7493b25 Stefan Weil
            missing("cu resume");
937 e7493b25 Stefan Weil
#endif
938 663e8e51 ths
            set_cu_state(s, cu_suspended);
939 663e8e51 ths
        }
940 663e8e51 ths
        if (get_cu_state(s) == cu_suspended) {
941 aac443e6 Stefan Weil
            TRACE(OTHER, logout("CU resuming\n"));
942 663e8e51 ths
            set_cu_state(s, cu_active);
943 5fa9a0ae Stefan Weil
            action_command(s);
944 663e8e51 ths
        }
945 663e8e51 ths
        break;
946 663e8e51 ths
    case CU_STATSADDR:
947 663e8e51 ths
        /* Load dump counters address. */
948 663e8e51 ths
        s->statsaddr = s->pointer;
949 aac443e6 Stefan Weil
        TRACE(OTHER, logout("val=0x%02x (status address)\n", val));
950 663e8e51 ths
        break;
951 663e8e51 ths
    case CU_SHOWSTATS:
952 663e8e51 ths
        /* Dump statistical counters. */
953 aac443e6 Stefan Weil
        TRACE(OTHER, logout("val=0x%02x (dump stats)\n", val));
954 663e8e51 ths
        dump_statistics(s);
955 ba42b646 Stefan Weil
        stl_le_phys(s->statsaddr + s->stats_size, 0xa005);
956 663e8e51 ths
        break;
957 663e8e51 ths
    case CU_CMD_BASE:
958 663e8e51 ths
        /* Load CU base. */
959 aac443e6 Stefan Weil
        TRACE(OTHER, logout("val=0x%02x (CU base address)\n", val));
960 663e8e51 ths
        s->cu_base = s->pointer;
961 663e8e51 ths
        break;
962 663e8e51 ths
    case CU_DUMPSTATS:
963 663e8e51 ths
        /* Dump and reset statistical counters. */
964 aac443e6 Stefan Weil
        TRACE(OTHER, logout("val=0x%02x (dump stats and reset)\n", val));
965 663e8e51 ths
        dump_statistics(s);
966 ba42b646 Stefan Weil
        stl_le_phys(s->statsaddr + s->stats_size, 0xa007);
967 663e8e51 ths
        memset(&s->statistics, 0, sizeof(s->statistics));
968 663e8e51 ths
        break;
969 663e8e51 ths
    case CU_SRESUME:
970 663e8e51 ths
        /* CU static resume. */
971 663e8e51 ths
        missing("CU static resume");
972 663e8e51 ths
        break;
973 663e8e51 ths
    default:
974 663e8e51 ths
        missing("Undefined CU command");
975 663e8e51 ths
    }
976 663e8e51 ths
}
977 663e8e51 ths
978 663e8e51 ths
static void eepro100_ru_command(EEPRO100State * s, uint8_t val)
979 663e8e51 ths
{
980 663e8e51 ths
    switch (val) {
981 663e8e51 ths
    case RU_NOP:
982 663e8e51 ths
        /* No operation. */
983 663e8e51 ths
        break;
984 663e8e51 ths
    case RX_START:
985 663e8e51 ths
        /* RU start. */
986 663e8e51 ths
        if (get_ru_state(s) != ru_idle) {
987 663e8e51 ths
            logout("RU state is %u, should be %u\n", get_ru_state(s), ru_idle);
988 e7493b25 Stefan Weil
#if 0
989 e7493b25 Stefan Weil
            assert(!"wrong RU state");
990 e7493b25 Stefan Weil
#endif
991 663e8e51 ths
        }
992 663e8e51 ths
        set_ru_state(s, ru_ready);
993 663e8e51 ths
        s->ru_offset = s->pointer;
994 aac443e6 Stefan Weil
        TRACE(OTHER, logout("val=0x%02x (rx start)\n", val));
995 663e8e51 ths
        break;
996 663e8e51 ths
    case RX_RESUME:
997 663e8e51 ths
        /* Restart RU. */
998 663e8e51 ths
        if (get_ru_state(s) != ru_suspended) {
999 663e8e51 ths
            logout("RU state is %u, should be %u\n", get_ru_state(s),
1000 663e8e51 ths
                   ru_suspended);
1001 e7493b25 Stefan Weil
#if 0
1002 e7493b25 Stefan Weil
            assert(!"wrong RU state");
1003 e7493b25 Stefan Weil
#endif
1004 663e8e51 ths
        }
1005 663e8e51 ths
        set_ru_state(s, ru_ready);
1006 663e8e51 ths
        break;
1007 e824012b Stefan Weil
    case RU_ABORT:
1008 e824012b Stefan Weil
        /* RU abort. */
1009 e824012b Stefan Weil
        if (get_ru_state(s) == ru_ready) {
1010 e824012b Stefan Weil
            eepro100_rnr_interrupt(s);
1011 e824012b Stefan Weil
        }
1012 e824012b Stefan Weil
        set_ru_state(s, ru_idle);
1013 e824012b Stefan Weil
        break;
1014 663e8e51 ths
    case RX_ADDR_LOAD:
1015 663e8e51 ths
        /* Load RU base. */
1016 aac443e6 Stefan Weil
        TRACE(OTHER, logout("val=0x%02x (RU base address)\n", val));
1017 663e8e51 ths
        s->ru_base = s->pointer;
1018 663e8e51 ths
        break;
1019 663e8e51 ths
    default:
1020 663e8e51 ths
        logout("val=0x%02x (undefined RU command)\n", val);
1021 663e8e51 ths
        missing("Undefined SU command");
1022 663e8e51 ths
    }
1023 663e8e51 ths
}
1024 663e8e51 ths
1025 663e8e51 ths
static void eepro100_write_command(EEPRO100State * s, uint8_t val)
1026 663e8e51 ths
{
1027 663e8e51 ths
    eepro100_ru_command(s, val & 0x0f);
1028 663e8e51 ths
    eepro100_cu_command(s, val & 0xf0);
1029 663e8e51 ths
    if ((val) == 0) {
1030 aac443e6 Stefan Weil
        TRACE(OTHER, logout("val=0x%02x\n", val));
1031 663e8e51 ths
    }
1032 663e8e51 ths
    /* Clear command byte after command was accepted. */
1033 663e8e51 ths
    s->mem[SCBCmd] = 0;
1034 663e8e51 ths
}
1035 663e8e51 ths
1036 663e8e51 ths
/*****************************************************************************
1037 663e8e51 ths
 *
1038 663e8e51 ths
 * EEPROM emulation.
1039 663e8e51 ths
 *
1040 663e8e51 ths
 ****************************************************************************/
1041 663e8e51 ths
1042 663e8e51 ths
#define EEPROM_CS       0x02
1043 663e8e51 ths
#define EEPROM_SK       0x01
1044 663e8e51 ths
#define EEPROM_DI       0x04
1045 663e8e51 ths
#define EEPROM_DO       0x08
1046 663e8e51 ths
1047 663e8e51 ths
static uint16_t eepro100_read_eeprom(EEPRO100State * s)
1048 663e8e51 ths
{
1049 663e8e51 ths
    uint16_t val;
1050 663e8e51 ths
    memcpy(&val, &s->mem[SCBeeprom], sizeof(val));
1051 663e8e51 ths
    if (eeprom93xx_read(s->eeprom)) {
1052 663e8e51 ths
        val |= EEPROM_DO;
1053 663e8e51 ths
    } else {
1054 663e8e51 ths
        val &= ~EEPROM_DO;
1055 663e8e51 ths
    }
1056 aac443e6 Stefan Weil
    TRACE(EEPROM, logout("val=0x%04x\n", val));
1057 663e8e51 ths
    return val;
1058 663e8e51 ths
}
1059 663e8e51 ths
1060 c227f099 Anthony Liguori
static void eepro100_write_eeprom(eeprom_t * eeprom, uint8_t val)
1061 663e8e51 ths
{
1062 aac443e6 Stefan Weil
    TRACE(EEPROM, logout("val=0x%02x\n", val));
1063 663e8e51 ths
1064 663e8e51 ths
    /* mask unwriteable bits */
1065 e7493b25 Stefan Weil
#if 0
1066 e7493b25 Stefan Weil
    val = SET_MASKED(val, 0x31, eeprom->value);
1067 e7493b25 Stefan Weil
#endif
1068 663e8e51 ths
1069 663e8e51 ths
    int eecs = ((val & EEPROM_CS) != 0);
1070 663e8e51 ths
    int eesk = ((val & EEPROM_SK) != 0);
1071 663e8e51 ths
    int eedi = ((val & EEPROM_DI) != 0);
1072 663e8e51 ths
    eeprom93xx_write(eeprom, eecs, eesk, eedi);
1073 663e8e51 ths
}
1074 663e8e51 ths
1075 663e8e51 ths
static void eepro100_write_pointer(EEPRO100State * s, uint32_t val)
1076 663e8e51 ths
{
1077 663e8e51 ths
    s->pointer = le32_to_cpu(val);
1078 aac443e6 Stefan Weil
    TRACE(OTHER, logout("val=0x%08x\n", val));
1079 663e8e51 ths
}
1080 663e8e51 ths
1081 663e8e51 ths
/*****************************************************************************
1082 663e8e51 ths
 *
1083 663e8e51 ths
 * MDI emulation.
1084 663e8e51 ths
 *
1085 663e8e51 ths
 ****************************************************************************/
1086 663e8e51 ths
1087 663e8e51 ths
#if defined(DEBUG_EEPRO100)
1088 6a0b9cc9 Reimar Dรถffinger
static const char * const mdi_op_name[] = {
1089 663e8e51 ths
    "opcode 0",
1090 663e8e51 ths
    "write",
1091 663e8e51 ths
    "read",
1092 663e8e51 ths
    "opcode 3"
1093 663e8e51 ths
};
1094 663e8e51 ths
1095 6a0b9cc9 Reimar Dรถffinger
static const char * const mdi_reg_name[] = {
1096 663e8e51 ths
    "Control",
1097 663e8e51 ths
    "Status",
1098 663e8e51 ths
    "PHY Identification (Word 1)",
1099 663e8e51 ths
    "PHY Identification (Word 2)",
1100 663e8e51 ths
    "Auto-Negotiation Advertisement",
1101 663e8e51 ths
    "Auto-Negotiation Link Partner Ability",
1102 663e8e51 ths
    "Auto-Negotiation Expansion"
1103 663e8e51 ths
};
1104 aac443e6 Stefan Weil
1105 aac443e6 Stefan Weil
static const char *reg2name(uint8_t reg)
1106 aac443e6 Stefan Weil
{
1107 aac443e6 Stefan Weil
    static char buffer[10];
1108 aac443e6 Stefan Weil
    const char *p = buffer;
1109 aac443e6 Stefan Weil
    if (reg < ARRAY_SIZE(mdi_reg_name)) {
1110 aac443e6 Stefan Weil
        p = mdi_reg_name[reg];
1111 aac443e6 Stefan Weil
    } else {
1112 aac443e6 Stefan Weil
        snprintf(buffer, sizeof(buffer), "reg=0x%02x", reg);
1113 aac443e6 Stefan Weil
    }
1114 aac443e6 Stefan Weil
    return p;
1115 aac443e6 Stefan Weil
}
1116 663e8e51 ths
#endif                          /* DEBUG_EEPRO100 */
1117 663e8e51 ths
1118 663e8e51 ths
static uint32_t eepro100_read_mdi(EEPRO100State * s)
1119 663e8e51 ths
{
1120 663e8e51 ths
    uint32_t val;
1121 663e8e51 ths
    memcpy(&val, &s->mem[0x10], sizeof(val));
1122 663e8e51 ths
1123 663e8e51 ths
#ifdef DEBUG_EEPRO100
1124 663e8e51 ths
    uint8_t raiseint = (val & BIT(29)) >> 29;
1125 663e8e51 ths
    uint8_t opcode = (val & BITS(27, 26)) >> 26;
1126 663e8e51 ths
    uint8_t phy = (val & BITS(25, 21)) >> 21;
1127 663e8e51 ths
    uint8_t reg = (val & BITS(20, 16)) >> 16;
1128 663e8e51 ths
    uint16_t data = (val & BITS(15, 0));
1129 663e8e51 ths
#endif
1130 663e8e51 ths
    /* Emulation takes no time to finish MDI transaction. */
1131 663e8e51 ths
    val |= BIT(28);
1132 663e8e51 ths
    TRACE(MDI, logout("val=0x%08x (int=%u, %s, phy=%u, %s, data=0x%04x\n",
1133 663e8e51 ths
                      val, raiseint, mdi_op_name[opcode], phy,
1134 aac443e6 Stefan Weil
                      reg2name(reg), data));
1135 663e8e51 ths
    return val;
1136 663e8e51 ths
}
1137 663e8e51 ths
1138 663e8e51 ths
static void eepro100_write_mdi(EEPRO100State * s, uint32_t val)
1139 663e8e51 ths
{
1140 663e8e51 ths
    uint8_t raiseint = (val & BIT(29)) >> 29;
1141 663e8e51 ths
    uint8_t opcode = (val & BITS(27, 26)) >> 26;
1142 663e8e51 ths
    uint8_t phy = (val & BITS(25, 21)) >> 21;
1143 663e8e51 ths
    uint8_t reg = (val & BITS(20, 16)) >> 16;
1144 663e8e51 ths
    uint16_t data = (val & BITS(15, 0));
1145 aac443e6 Stefan Weil
    TRACE(MDI, logout("val=0x%08x (int=%u, %s, phy=%u, %s, data=0x%04x\n",
1146 aac443e6 Stefan Weil
          val, raiseint, mdi_op_name[opcode], phy, reg2name(reg), data));
1147 663e8e51 ths
    if (phy != 1) {
1148 663e8e51 ths
        /* Unsupported PHY address. */
1149 e7493b25 Stefan Weil
#if 0
1150 e7493b25 Stefan Weil
        logout("phy must be 1 but is %u\n", phy);
1151 e7493b25 Stefan Weil
#endif
1152 663e8e51 ths
        data = 0;
1153 663e8e51 ths
    } else if (opcode != 1 && opcode != 2) {
1154 663e8e51 ths
        /* Unsupported opcode. */
1155 663e8e51 ths
        logout("opcode must be 1 or 2 but is %u\n", opcode);
1156 663e8e51 ths
        data = 0;
1157 663e8e51 ths
    } else if (reg > 6) {
1158 663e8e51 ths
        /* Unsupported register. */
1159 663e8e51 ths
        logout("register must be 0...6 but is %u\n", reg);
1160 663e8e51 ths
        data = 0;
1161 663e8e51 ths
    } else {
1162 663e8e51 ths
        TRACE(MDI, logout("val=0x%08x (int=%u, %s, phy=%u, %s, data=0x%04x\n",
1163 663e8e51 ths
                          val, raiseint, mdi_op_name[opcode], phy,
1164 aac443e6 Stefan Weil
                          reg2name(reg), data));
1165 663e8e51 ths
        if (opcode == 1) {
1166 663e8e51 ths
            /* MDI write */
1167 663e8e51 ths
            switch (reg) {
1168 663e8e51 ths
            case 0:            /* Control Register */
1169 663e8e51 ths
                if (data & 0x8000) {
1170 663e8e51 ths
                    /* Reset status and control registers to default. */
1171 663e8e51 ths
                    s->mdimem[0] = eepro100_mdi_default[0];
1172 663e8e51 ths
                    s->mdimem[1] = eepro100_mdi_default[1];
1173 663e8e51 ths
                    data = s->mdimem[reg];
1174 663e8e51 ths
                } else {
1175 663e8e51 ths
                    /* Restart Auto Configuration = Normal Operation */
1176 663e8e51 ths
                    data &= ~0x0200;
1177 663e8e51 ths
                }
1178 663e8e51 ths
                break;
1179 663e8e51 ths
            case 1:            /* Status Register */
1180 663e8e51 ths
                missing("not writable");
1181 663e8e51 ths
                data = s->mdimem[reg];
1182 663e8e51 ths
                break;
1183 663e8e51 ths
            case 2:            /* PHY Identification Register (Word 1) */
1184 663e8e51 ths
            case 3:            /* PHY Identification Register (Word 2) */
1185 663e8e51 ths
                missing("not implemented");
1186 663e8e51 ths
                break;
1187 663e8e51 ths
            case 4:            /* Auto-Negotiation Advertisement Register */
1188 663e8e51 ths
            case 5:            /* Auto-Negotiation Link Partner Ability Register */
1189 663e8e51 ths
                break;
1190 663e8e51 ths
            case 6:            /* Auto-Negotiation Expansion Register */
1191 663e8e51 ths
            default:
1192 663e8e51 ths
                missing("not implemented");
1193 663e8e51 ths
            }
1194 663e8e51 ths
            s->mdimem[reg] = data;
1195 663e8e51 ths
        } else if (opcode == 2) {
1196 663e8e51 ths
            /* MDI read */
1197 663e8e51 ths
            switch (reg) {
1198 663e8e51 ths
            case 0:            /* Control Register */
1199 663e8e51 ths
                if (data & 0x8000) {
1200 663e8e51 ths
                    /* Reset status and control registers to default. */
1201 663e8e51 ths
                    s->mdimem[0] = eepro100_mdi_default[0];
1202 663e8e51 ths
                    s->mdimem[1] = eepro100_mdi_default[1];
1203 663e8e51 ths
                }
1204 663e8e51 ths
                break;
1205 663e8e51 ths
            case 1:            /* Status Register */
1206 663e8e51 ths
                s->mdimem[reg] |= 0x0020;
1207 663e8e51 ths
                break;
1208 663e8e51 ths
            case 2:            /* PHY Identification Register (Word 1) */
1209 663e8e51 ths
            case 3:            /* PHY Identification Register (Word 2) */
1210 663e8e51 ths
            case 4:            /* Auto-Negotiation Advertisement Register */
1211 663e8e51 ths
                break;
1212 663e8e51 ths
            case 5:            /* Auto-Negotiation Link Partner Ability Register */
1213 663e8e51 ths
                s->mdimem[reg] = 0x41fe;
1214 663e8e51 ths
                break;
1215 663e8e51 ths
            case 6:            /* Auto-Negotiation Expansion Register */
1216 663e8e51 ths
                s->mdimem[reg] = 0x0001;
1217 663e8e51 ths
                break;
1218 663e8e51 ths
            }
1219 663e8e51 ths
            data = s->mdimem[reg];
1220 663e8e51 ths
        }
1221 663e8e51 ths
        /* Emulation takes no time to finish MDI transaction.
1222 663e8e51 ths
         * Set MDI bit in SCB status register. */
1223 663e8e51 ths
        s->mem[SCBAck] |= 0x08;
1224 663e8e51 ths
        val |= BIT(28);
1225 663e8e51 ths
        if (raiseint) {
1226 663e8e51 ths
            eepro100_mdi_interrupt(s);
1227 663e8e51 ths
        }
1228 663e8e51 ths
    }
1229 663e8e51 ths
    val = (val & 0xffff0000) + data;
1230 663e8e51 ths
    memcpy(&s->mem[0x10], &val, sizeof(val));
1231 663e8e51 ths
}
1232 663e8e51 ths
1233 663e8e51 ths
/*****************************************************************************
1234 663e8e51 ths
 *
1235 663e8e51 ths
 * Port emulation.
1236 663e8e51 ths
 *
1237 663e8e51 ths
 ****************************************************************************/
1238 663e8e51 ths
1239 663e8e51 ths
#define PORT_SOFTWARE_RESET     0
1240 663e8e51 ths
#define PORT_SELFTEST           1
1241 663e8e51 ths
#define PORT_SELECTIVE_RESET    2
1242 663e8e51 ths
#define PORT_DUMP               3
1243 663e8e51 ths
#define PORT_SELECTION_MASK     3
1244 663e8e51 ths
1245 663e8e51 ths
typedef struct {
1246 663e8e51 ths
    uint32_t st_sign;           /* Self Test Signature */
1247 663e8e51 ths
    uint32_t st_result;         /* Self Test Results */
1248 c227f099 Anthony Liguori
} eepro100_selftest_t;
1249 663e8e51 ths
1250 663e8e51 ths
static uint32_t eepro100_read_port(EEPRO100State * s)
1251 663e8e51 ths
{
1252 663e8e51 ths
    return 0;
1253 663e8e51 ths
}
1254 663e8e51 ths
1255 663e8e51 ths
static void eepro100_write_port(EEPRO100State * s, uint32_t val)
1256 663e8e51 ths
{
1257 663e8e51 ths
    val = le32_to_cpu(val);
1258 663e8e51 ths
    uint32_t address = (val & ~PORT_SELECTION_MASK);
1259 663e8e51 ths
    uint8_t selection = (val & PORT_SELECTION_MASK);
1260 663e8e51 ths
    switch (selection) {
1261 663e8e51 ths
    case PORT_SOFTWARE_RESET:
1262 663e8e51 ths
        nic_reset(s);
1263 663e8e51 ths
        break;
1264 663e8e51 ths
    case PORT_SELFTEST:
1265 aac443e6 Stefan Weil
        TRACE(OTHER, logout("selftest address=0x%08x\n", address));
1266 c227f099 Anthony Liguori
        eepro100_selftest_t data;
1267 663e8e51 ths
        cpu_physical_memory_read(address, (uint8_t *) & data, sizeof(data));
1268 663e8e51 ths
        data.st_sign = 0xffffffff;
1269 663e8e51 ths
        data.st_result = 0;
1270 663e8e51 ths
        cpu_physical_memory_write(address, (uint8_t *) & data, sizeof(data));
1271 663e8e51 ths
        break;
1272 663e8e51 ths
    case PORT_SELECTIVE_RESET:
1273 aac443e6 Stefan Weil
        TRACE(OTHER, logout("selective reset, selftest address=0x%08x\n", address));
1274 663e8e51 ths
        nic_selective_reset(s);
1275 663e8e51 ths
        break;
1276 663e8e51 ths
    default:
1277 663e8e51 ths
        logout("val=0x%08x\n", val);
1278 663e8e51 ths
        missing("unknown port selection");
1279 663e8e51 ths
    }
1280 663e8e51 ths
}
1281 663e8e51 ths
1282 663e8e51 ths
/*****************************************************************************
1283 663e8e51 ths
 *
1284 663e8e51 ths
 * General hardware emulation.
1285 663e8e51 ths
 *
1286 663e8e51 ths
 ****************************************************************************/
1287 663e8e51 ths
1288 663e8e51 ths
static uint8_t eepro100_read1(EEPRO100State * s, uint32_t addr)
1289 663e8e51 ths
{
1290 663e8e51 ths
    uint8_t val;
1291 663e8e51 ths
    if (addr <= sizeof(s->mem) - sizeof(val)) {
1292 663e8e51 ths
        memcpy(&val, &s->mem[addr], sizeof(val));
1293 663e8e51 ths
    }
1294 663e8e51 ths
1295 663e8e51 ths
    switch (addr) {
1296 663e8e51 ths
    case SCBStatus:
1297 663e8e51 ths
    case SCBAck:
1298 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
1299 663e8e51 ths
        break;
1300 663e8e51 ths
    case SCBCmd:
1301 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
1302 e7493b25 Stefan Weil
#if 0
1303 e7493b25 Stefan Weil
        val = eepro100_read_command(s);
1304 e7493b25 Stefan Weil
#endif
1305 663e8e51 ths
        break;
1306 663e8e51 ths
    case SCBIntmask:
1307 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
1308 663e8e51 ths
        break;
1309 663e8e51 ths
    case SCBPort + 3:
1310 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
1311 663e8e51 ths
        break;
1312 663e8e51 ths
    case SCBeeprom:
1313 663e8e51 ths
        val = eepro100_read_eeprom(s);
1314 663e8e51 ths
        break;
1315 0908bba1 Stefan Weil
    case SCBpmdr:       /* Power Management Driver Register */
1316 663e8e51 ths
        val = 0;
1317 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
1318 663e8e51 ths
        break;
1319 0908bba1 Stefan Weil
    case SCBgstat:      /* General Status Register */
1320 663e8e51 ths
        /* 100 Mbps full duplex, valid link */
1321 663e8e51 ths
        val = 0x07;
1322 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=General Status val=%02x\n", val));
1323 663e8e51 ths
        break;
1324 663e8e51 ths
    default:
1325 663e8e51 ths
        logout("addr=%s val=0x%02x\n", regname(addr), val);
1326 663e8e51 ths
        missing("unknown byte read");
1327 663e8e51 ths
    }
1328 663e8e51 ths
    return val;
1329 663e8e51 ths
}
1330 663e8e51 ths
1331 663e8e51 ths
static uint16_t eepro100_read2(EEPRO100State * s, uint32_t addr)
1332 663e8e51 ths
{
1333 663e8e51 ths
    uint16_t val;
1334 663e8e51 ths
    if (addr <= sizeof(s->mem) - sizeof(val)) {
1335 663e8e51 ths
        memcpy(&val, &s->mem[addr], sizeof(val));
1336 663e8e51 ths
    }
1337 663e8e51 ths
1338 663e8e51 ths
    switch (addr) {
1339 663e8e51 ths
    case SCBStatus:
1340 dbbaaff6 =?UTF-8?q?Reimar=20D=C3=B6ffinger?=
    case SCBCmd:
1341 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
1342 663e8e51 ths
        break;
1343 663e8e51 ths
    case SCBeeprom:
1344 663e8e51 ths
        val = eepro100_read_eeprom(s);
1345 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
1346 663e8e51 ths
        break;
1347 663e8e51 ths
    default:
1348 663e8e51 ths
        logout("addr=%s val=0x%04x\n", regname(addr), val);
1349 663e8e51 ths
        missing("unknown word read");
1350 663e8e51 ths
    }
1351 663e8e51 ths
    return val;
1352 663e8e51 ths
}
1353 663e8e51 ths
1354 663e8e51 ths
static uint32_t eepro100_read4(EEPRO100State * s, uint32_t addr)
1355 663e8e51 ths
{
1356 663e8e51 ths
    uint32_t val;
1357 663e8e51 ths
    if (addr <= sizeof(s->mem) - sizeof(val)) {
1358 663e8e51 ths
        memcpy(&val, &s->mem[addr], sizeof(val));
1359 663e8e51 ths
    }
1360 663e8e51 ths
1361 663e8e51 ths
    switch (addr) {
1362 663e8e51 ths
    case SCBStatus:
1363 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
1364 663e8e51 ths
        break;
1365 663e8e51 ths
    case SCBPointer:
1366 e7493b25 Stefan Weil
#if 0
1367 e7493b25 Stefan Weil
        val = eepro100_read_pointer(s);
1368 e7493b25 Stefan Weil
#endif
1369 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
1370 663e8e51 ths
        break;
1371 663e8e51 ths
    case SCBPort:
1372 663e8e51 ths
        val = eepro100_read_port(s);
1373 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
1374 663e8e51 ths
        break;
1375 663e8e51 ths
    case SCBCtrlMDI:
1376 663e8e51 ths
        val = eepro100_read_mdi(s);
1377 663e8e51 ths
        break;
1378 663e8e51 ths
    default:
1379 663e8e51 ths
        logout("addr=%s val=0x%08x\n", regname(addr), val);
1380 663e8e51 ths
        missing("unknown longword read");
1381 663e8e51 ths
    }
1382 663e8e51 ths
    return val;
1383 663e8e51 ths
}
1384 663e8e51 ths
1385 663e8e51 ths
static void eepro100_write1(EEPRO100State * s, uint32_t addr, uint8_t val)
1386 663e8e51 ths
{
1387 e74818f3 Stefan Weil
    /* SCBStatus is readonly. */
1388 e74818f3 Stefan Weil
    if (addr > SCBStatus && addr <= sizeof(s->mem) - sizeof(val)) {
1389 663e8e51 ths
        memcpy(&s->mem[addr], &val, sizeof(val));
1390 663e8e51 ths
    }
1391 663e8e51 ths
1392 aac443e6 Stefan Weil
    TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
1393 663e8e51 ths
1394 663e8e51 ths
    switch (addr) {
1395 663e8e51 ths
    case SCBStatus:
1396 663e8e51 ths
        break;
1397 663e8e51 ths
    case SCBAck:
1398 663e8e51 ths
        eepro100_acknowledge(s);
1399 663e8e51 ths
        break;
1400 663e8e51 ths
    case SCBCmd:
1401 663e8e51 ths
        eepro100_write_command(s, val);
1402 663e8e51 ths
        break;
1403 663e8e51 ths
    case SCBIntmask:
1404 663e8e51 ths
        if (val & BIT(1)) {
1405 663e8e51 ths
            eepro100_swi_interrupt(s);
1406 663e8e51 ths
        }
1407 663e8e51 ths
        eepro100_interrupt(s, 0);
1408 663e8e51 ths
        break;
1409 663e8e51 ths
    case SCBPort + 3:
1410 aac443e6 Stefan Weil
    case SCBFlow:       /* does not exist on 82557 */
1411 3257d2b6 ths
    case SCBFlow + 1:
1412 3257d2b6 ths
    case SCBFlow + 2:
1413 0908bba1 Stefan Weil
    case SCBpmdr:       /* does not exist on 82557 */
1414 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
1415 663e8e51 ths
        break;
1416 663e8e51 ths
    case SCBeeprom:
1417 663e8e51 ths
        eepro100_write_eeprom(s->eeprom, val);
1418 663e8e51 ths
        break;
1419 663e8e51 ths
    default:
1420 663e8e51 ths
        logout("addr=%s val=0x%02x\n", regname(addr), val);
1421 663e8e51 ths
        missing("unknown byte write");
1422 663e8e51 ths
    }
1423 663e8e51 ths
}
1424 663e8e51 ths
1425 663e8e51 ths
static void eepro100_write2(EEPRO100State * s, uint32_t addr, uint16_t val)
1426 663e8e51 ths
{
1427 e74818f3 Stefan Weil
    /* SCBStatus is readonly. */
1428 e74818f3 Stefan Weil
    if (addr > SCBStatus && addr <= sizeof(s->mem) - sizeof(val)) {
1429 663e8e51 ths
        memcpy(&s->mem[addr], &val, sizeof(val));
1430 663e8e51 ths
    }
1431 663e8e51 ths
1432 aac443e6 Stefan Weil
    TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
1433 663e8e51 ths
1434 663e8e51 ths
    switch (addr) {
1435 663e8e51 ths
    case SCBStatus:
1436 e74818f3 Stefan Weil
        s->mem[SCBAck] = (val >> 8);
1437 663e8e51 ths
        eepro100_acknowledge(s);
1438 663e8e51 ths
        break;
1439 663e8e51 ths
    case SCBCmd:
1440 663e8e51 ths
        eepro100_write_command(s, val);
1441 663e8e51 ths
        eepro100_write1(s, SCBIntmask, val >> 8);
1442 663e8e51 ths
        break;
1443 663e8e51 ths
    case SCBeeprom:
1444 663e8e51 ths
        eepro100_write_eeprom(s->eeprom, val);
1445 663e8e51 ths
        break;
1446 663e8e51 ths
    default:
1447 663e8e51 ths
        logout("addr=%s val=0x%04x\n", regname(addr), val);
1448 663e8e51 ths
        missing("unknown word write");
1449 663e8e51 ths
    }
1450 663e8e51 ths
}
1451 663e8e51 ths
1452 663e8e51 ths
static void eepro100_write4(EEPRO100State * s, uint32_t addr, uint32_t val)
1453 663e8e51 ths
{
1454 663e8e51 ths
    if (addr <= sizeof(s->mem) - sizeof(val)) {
1455 663e8e51 ths
        memcpy(&s->mem[addr], &val, sizeof(val));
1456 663e8e51 ths
    }
1457 663e8e51 ths
1458 663e8e51 ths
    switch (addr) {
1459 663e8e51 ths
    case SCBPointer:
1460 663e8e51 ths
        eepro100_write_pointer(s, val);
1461 663e8e51 ths
        break;
1462 663e8e51 ths
    case SCBPort:
1463 aac443e6 Stefan Weil
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
1464 663e8e51 ths
        eepro100_write_port(s, val);
1465 663e8e51 ths
        break;
1466 663e8e51 ths
    case SCBCtrlMDI:
1467 663e8e51 ths
        eepro100_write_mdi(s, val);
1468 663e8e51 ths
        break;
1469 663e8e51 ths
    default:
1470 663e8e51 ths
        logout("addr=%s val=0x%08x\n", regname(addr), val);
1471 663e8e51 ths
        missing("unknown longword write");
1472 663e8e51 ths
    }
1473 663e8e51 ths
}
1474 663e8e51 ths
1475 aac443e6 Stefan Weil
/*****************************************************************************
1476 aac443e6 Stefan Weil
 *
1477 aac443e6 Stefan Weil
 * Port mapped I/O.
1478 aac443e6 Stefan Weil
 *
1479 aac443e6 Stefan Weil
 ****************************************************************************/
1480 aac443e6 Stefan Weil
1481 663e8e51 ths
static uint32_t ioport_read1(void *opaque, uint32_t addr)
1482 663e8e51 ths
{
1483 663e8e51 ths
    EEPRO100State *s = opaque;
1484 e7493b25 Stefan Weil
#if 0
1485 e7493b25 Stefan Weil
    logout("addr=%s\n", regname(addr));
1486 e7493b25 Stefan Weil
#endif
1487 663e8e51 ths
    return eepro100_read1(s, addr - s->region[1]);
1488 663e8e51 ths
}
1489 663e8e51 ths
1490 663e8e51 ths
static uint32_t ioport_read2(void *opaque, uint32_t addr)
1491 663e8e51 ths
{
1492 663e8e51 ths
    EEPRO100State *s = opaque;
1493 663e8e51 ths
    return eepro100_read2(s, addr - s->region[1]);
1494 663e8e51 ths
}
1495 663e8e51 ths
1496 663e8e51 ths
static uint32_t ioport_read4(void *opaque, uint32_t addr)
1497 663e8e51 ths
{
1498 663e8e51 ths
    EEPRO100State *s = opaque;
1499 663e8e51 ths
    return eepro100_read4(s, addr - s->region[1]);
1500 663e8e51 ths
}
1501 663e8e51 ths
1502 663e8e51 ths
static void ioport_write1(void *opaque, uint32_t addr, uint32_t val)
1503 663e8e51 ths
{
1504 663e8e51 ths
    EEPRO100State *s = opaque;
1505 e7493b25 Stefan Weil
#if 0
1506 e7493b25 Stefan Weil
    logout("addr=%s val=0x%02x\n", regname(addr), val);
1507 e7493b25 Stefan Weil
#endif
1508 663e8e51 ths
    eepro100_write1(s, addr - s->region[1], val);
1509 663e8e51 ths
}
1510 663e8e51 ths
1511 663e8e51 ths
static void ioport_write2(void *opaque, uint32_t addr, uint32_t val)
1512 663e8e51 ths
{
1513 663e8e51 ths
    EEPRO100State *s = opaque;
1514 663e8e51 ths
    eepro100_write2(s, addr - s->region[1], val);
1515 663e8e51 ths
}
1516 663e8e51 ths
1517 663e8e51 ths
static void ioport_write4(void *opaque, uint32_t addr, uint32_t val)
1518 663e8e51 ths
{
1519 663e8e51 ths
    EEPRO100State *s = opaque;
1520 663e8e51 ths
    eepro100_write4(s, addr - s->region[1], val);
1521 663e8e51 ths
}
1522 663e8e51 ths
1523 663e8e51 ths
/***********************************************************/
1524 663e8e51 ths
/* PCI EEPRO100 definitions */
1525 663e8e51 ths
1526 663e8e51 ths
static void pci_map(PCIDevice * pci_dev, int region_num,
1527 6e355d90 Isaku Yamahata
                    pcibus_t addr, pcibus_t size, int type)
1528 663e8e51 ths
{
1529 273a2142 Juan Quintela
    EEPRO100State *s = DO_UPCAST(EEPRO100State, dev, pci_dev);
1530 663e8e51 ths
1531 89e8b13c Isaku Yamahata
    TRACE(OTHER, logout("region %d, addr=0x%08"FMT_PCIBUS", "
1532 89e8b13c Isaku Yamahata
          "size=0x%08"FMT_PCIBUS", type=%d\n",
1533 aac443e6 Stefan Weil
          region_num, addr, size, type));
1534 663e8e51 ths
1535 663e8e51 ths
    assert(region_num == 1);
1536 663e8e51 ths
    register_ioport_write(addr, size, 1, ioport_write1, s);
1537 663e8e51 ths
    register_ioport_read(addr, size, 1, ioport_read1, s);
1538 663e8e51 ths
    register_ioport_write(addr, size, 2, ioport_write2, s);
1539 663e8e51 ths
    register_ioport_read(addr, size, 2, ioport_read2, s);
1540 663e8e51 ths
    register_ioport_write(addr, size, 4, ioport_write4, s);
1541 663e8e51 ths
    register_ioport_read(addr, size, 4, ioport_read4, s);
1542 663e8e51 ths
1543 663e8e51 ths
    s->region[region_num] = addr;
1544 663e8e51 ths
}
1545 663e8e51 ths
1546 aac443e6 Stefan Weil
/*****************************************************************************
1547 aac443e6 Stefan Weil
 *
1548 aac443e6 Stefan Weil
 * Memory mapped I/O.
1549 aac443e6 Stefan Weil
 *
1550 aac443e6 Stefan Weil
 ****************************************************************************/
1551 aac443e6 Stefan Weil
1552 c227f099 Anthony Liguori
static void pci_mmio_writeb(void *opaque, target_phys_addr_t addr, uint32_t val)
1553 663e8e51 ths
{
1554 663e8e51 ths
    EEPRO100State *s = opaque;
1555 e7493b25 Stefan Weil
#if 0
1556 e7493b25 Stefan Weil
    logout("addr=%s val=0x%02x\n", regname(addr), val);
1557 e7493b25 Stefan Weil
#endif
1558 663e8e51 ths
    eepro100_write1(s, addr, val);
1559 663e8e51 ths
}
1560 663e8e51 ths
1561 c227f099 Anthony Liguori
static void pci_mmio_writew(void *opaque, target_phys_addr_t addr, uint32_t val)
1562 663e8e51 ths
{
1563 663e8e51 ths
    EEPRO100State *s = opaque;
1564 e7493b25 Stefan Weil
#if 0
1565 e7493b25 Stefan Weil
    logout("addr=%s val=0x%02x\n", regname(addr), val);
1566 e7493b25 Stefan Weil
#endif
1567 663e8e51 ths
    eepro100_write2(s, addr, val);
1568 663e8e51 ths
}
1569 663e8e51 ths
1570 c227f099 Anthony Liguori
static void pci_mmio_writel(void *opaque, target_phys_addr_t addr, uint32_t val)
1571 663e8e51 ths
{
1572 663e8e51 ths
    EEPRO100State *s = opaque;
1573 e7493b25 Stefan Weil
#if 0
1574 e7493b25 Stefan Weil
    logout("addr=%s val=0x%02x\n", regname(addr), val);
1575 e7493b25 Stefan Weil
#endif
1576 663e8e51 ths
    eepro100_write4(s, addr, val);
1577 663e8e51 ths
}
1578 663e8e51 ths
1579 c227f099 Anthony Liguori
static uint32_t pci_mmio_readb(void *opaque, target_phys_addr_t addr)
1580 663e8e51 ths
{
1581 663e8e51 ths
    EEPRO100State *s = opaque;
1582 e7493b25 Stefan Weil
#if 0
1583 e7493b25 Stefan Weil
    logout("addr=%s\n", regname(addr));
1584 e7493b25 Stefan Weil
#endif
1585 663e8e51 ths
    return eepro100_read1(s, addr);
1586 663e8e51 ths
}
1587 663e8e51 ths
1588 c227f099 Anthony Liguori
static uint32_t pci_mmio_readw(void *opaque, target_phys_addr_t addr)
1589 663e8e51 ths
{
1590 663e8e51 ths
    EEPRO100State *s = opaque;
1591 e7493b25 Stefan Weil
#if 0
1592 e7493b25 Stefan Weil
    logout("addr=%s\n", regname(addr));
1593 e7493b25 Stefan Weil
#endif
1594 663e8e51 ths
    return eepro100_read2(s, addr);
1595 663e8e51 ths
}
1596 663e8e51 ths
1597 c227f099 Anthony Liguori
static uint32_t pci_mmio_readl(void *opaque, target_phys_addr_t addr)
1598 663e8e51 ths
{
1599 663e8e51 ths
    EEPRO100State *s = opaque;
1600 e7493b25 Stefan Weil
#if 0
1601 e7493b25 Stefan Weil
    logout("addr=%s\n", regname(addr));
1602 e7493b25 Stefan Weil
#endif
1603 663e8e51 ths
    return eepro100_read4(s, addr);
1604 663e8e51 ths
}
1605 663e8e51 ths
1606 d60efc6b Blue Swirl
static CPUWriteMemoryFunc * const pci_mmio_write[] = {
1607 663e8e51 ths
    pci_mmio_writeb,
1608 663e8e51 ths
    pci_mmio_writew,
1609 663e8e51 ths
    pci_mmio_writel
1610 663e8e51 ths
};
1611 663e8e51 ths
1612 d60efc6b Blue Swirl
static CPUReadMemoryFunc * const pci_mmio_read[] = {
1613 663e8e51 ths
    pci_mmio_readb,
1614 663e8e51 ths
    pci_mmio_readw,
1615 663e8e51 ths
    pci_mmio_readl
1616 663e8e51 ths
};
1617 663e8e51 ths
1618 663e8e51 ths
static void pci_mmio_map(PCIDevice * pci_dev, int region_num,
1619 6e355d90 Isaku Yamahata
                         pcibus_t addr, pcibus_t size, int type)
1620 663e8e51 ths
{
1621 273a2142 Juan Quintela
    EEPRO100State *s = DO_UPCAST(EEPRO100State, dev, pci_dev);
1622 663e8e51 ths
1623 89e8b13c Isaku Yamahata
    TRACE(OTHER, logout("region %d, addr=0x%08"FMT_PCIBUS", "
1624 89e8b13c Isaku Yamahata
          "size=0x%08"FMT_PCIBUS", type=%d\n",
1625 aac443e6 Stefan Weil
          region_num, addr, size, type));
1626 663e8e51 ths
1627 663e8e51 ths
    if (region_num == 0) {
1628 663e8e51 ths
        /* Map control / status registers. */
1629 273a2142 Juan Quintela
        cpu_register_physical_memory(addr, size, s->mmio_index);
1630 273a2142 Juan Quintela
        s->region[region_num] = addr;
1631 663e8e51 ths
    }
1632 663e8e51 ths
}
1633 663e8e51 ths
1634 e00e365e Mark McLoughlin
static int nic_can_receive(VLANClientState *nc)
1635 663e8e51 ths
{
1636 e00e365e Mark McLoughlin
    EEPRO100State *s = DO_UPCAST(NICState, nc, nc)->opaque;
1637 aac443e6 Stefan Weil
    TRACE(RXTX, logout("%p\n", s));
1638 663e8e51 ths
    return get_ru_state(s) == ru_ready;
1639 e7493b25 Stefan Weil
#if 0
1640 e7493b25 Stefan Weil
    return !eepro100_buffer_full(s);
1641 e7493b25 Stefan Weil
#endif
1642 663e8e51 ths
}
1643 663e8e51 ths
1644 e00e365e Mark McLoughlin
static ssize_t nic_receive(VLANClientState *nc, const uint8_t * buf, size_t size)
1645 663e8e51 ths
{
1646 663e8e51 ths
    /* TODO:
1647 663e8e51 ths
     * - Magic packets should set bit 30 in power management driver register.
1648 663e8e51 ths
     * - Interesting packets should set bit 29 in power management driver register.
1649 663e8e51 ths
     */
1650 e00e365e Mark McLoughlin
    EEPRO100State *s = DO_UPCAST(NICState, nc, nc)->opaque;
1651 663e8e51 ths
    uint16_t rfd_status = 0xa000;
1652 663e8e51 ths
    static const uint8_t broadcast_macaddr[6] =
1653 663e8e51 ths
        { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
1654 663e8e51 ths
1655 663e8e51 ths
    /* TODO: check multiple IA bit. */
1656 7f1e9d4e Kevin Wolf
    if (s->configuration[20] & BIT(6)) {
1657 7f1e9d4e Kevin Wolf
        missing("Multiple IA bit");
1658 7f1e9d4e Kevin Wolf
        return -1;
1659 7f1e9d4e Kevin Wolf
    }
1660 663e8e51 ths
1661 663e8e51 ths
    if (s->configuration[8] & 0x80) {
1662 663e8e51 ths
        /* CSMA is disabled. */
1663 663e8e51 ths
        logout("%p received while CSMA is disabled\n", s);
1664 4f1c942b Mark McLoughlin
        return -1;
1665 ced5296a Stefan Weil
    } else if (size < 64 && (s->configuration[7] & BIT(0))) {
1666 663e8e51 ths
        /* Short frame and configuration byte 7/0 (discard short receive) set:
1667 663e8e51 ths
         * Short frame is discarded */
1668 067d01de Stefan Weil
        logout("%p received short frame (%zu byte)\n", s, size);
1669 663e8e51 ths
        s->statistics.rx_short_frame_errors++;
1670 e7493b25 Stefan Weil
#if 0
1671 e7493b25 Stefan Weil
        return -1;
1672 e7493b25 Stefan Weil
#endif
1673 ced5296a Stefan Weil
    } else if ((size > MAX_ETH_FRAME_SIZE + 4) && !(s->configuration[18] & BIT(3))) {
1674 663e8e51 ths
        /* Long frame and configuration byte 18/3 (long receive ok) not set:
1675 663e8e51 ths
         * Long frames are discarded. */
1676 067d01de Stefan Weil
        logout("%p received long frame (%zu byte), ignored\n", s, size);
1677 4f1c942b Mark McLoughlin
        return -1;
1678 e7493b25 Stefan Weil
    } else if (memcmp(buf, s->conf.macaddr.a, 6) == 0) {       /* !!! */
1679 663e8e51 ths
        /* Frame matches individual address. */
1680 663e8e51 ths
        /* TODO: check configuration byte 15/4 (ignore U/L). */
1681 067d01de Stefan Weil
        TRACE(RXTX, logout("%p received frame for me, len=%zu\n", s, size));
1682 663e8e51 ths
    } else if (memcmp(buf, broadcast_macaddr, 6) == 0) {
1683 663e8e51 ths
        /* Broadcast frame. */
1684 067d01de Stefan Weil
        TRACE(RXTX, logout("%p received broadcast, len=%zu\n", s, size));
1685 663e8e51 ths
        rfd_status |= 0x0002;
1686 7b8737de Stefan Weil
    } else if (buf[0] & 0x01) {
1687 663e8e51 ths
        /* Multicast frame. */
1688 7b8737de Stefan Weil
        TRACE(RXTX, logout("%p received multicast, len=%zu,%s\n", s, size, nic_dump(buf, size)));
1689 7f1e9d4e Kevin Wolf
        if (s->configuration[21] & BIT(3)) {
1690 7b8737de Stefan Weil
          /* Multicast all bit is set, receive all multicast frames. */
1691 7b8737de Stefan Weil
        } else {
1692 7b8737de Stefan Weil
          unsigned mcast_idx = compute_mcast_idx(buf);
1693 7b8737de Stefan Weil
          assert(mcast_idx < 64);
1694 7b8737de Stefan Weil
          if (s->mult[mcast_idx >> 3] & (1 << (mcast_idx & 7))) {
1695 7b8737de Stefan Weil
            /* Multicast frame is allowed in hash table. */
1696 ced5296a Stefan Weil
          } else if (s->configuration[15] & BIT(0)) {
1697 7b8737de Stefan Weil
              /* Promiscuous: receive all. */
1698 7b8737de Stefan Weil
              rfd_status |= 0x0004;
1699 7b8737de Stefan Weil
          } else {
1700 7b8737de Stefan Weil
              TRACE(RXTX, logout("%p multicast ignored\n", s));
1701 7b8737de Stefan Weil
              return -1;
1702 7b8737de Stefan Weil
          }
1703 663e8e51 ths
        }
1704 7b8737de Stefan Weil
        /* TODO: Next not for promiscuous mode? */
1705 663e8e51 ths
        rfd_status |= 0x0002;
1706 ced5296a Stefan Weil
    } else if (s->configuration[15] & BIT(0)) {
1707 663e8e51 ths
        /* Promiscuous: receive all. */
1708 067d01de Stefan Weil
        TRACE(RXTX, logout("%p received frame in promiscuous mode, len=%zu\n", s, size));
1709 663e8e51 ths
        rfd_status |= 0x0004;
1710 663e8e51 ths
    } else {
1711 067d01de Stefan Weil
        TRACE(RXTX, logout("%p received frame, ignored, len=%zu,%s\n", s, size,
1712 aac443e6 Stefan Weil
              nic_dump(buf, size)));
1713 4f1c942b Mark McLoughlin
        return size;
1714 663e8e51 ths
    }
1715 663e8e51 ths
1716 663e8e51 ths
    if (get_ru_state(s) != ru_ready) {
1717 aac443e6 Stefan Weil
        /* No resources available. */
1718 aac443e6 Stefan Weil
        logout("no resources, state=%u\n", get_ru_state(s));
1719 e824012b Stefan Weil
        /* TODO: RNR interrupt only at first failed frame? */
1720 e824012b Stefan Weil
        eepro100_rnr_interrupt(s);
1721 663e8e51 ths
        s->statistics.rx_resource_errors++;
1722 e7493b25 Stefan Weil
#if 0
1723 e7493b25 Stefan Weil
        assert(!"no resources");
1724 e7493b25 Stefan Weil
#endif
1725 4f1c942b Mark McLoughlin
        return -1;
1726 663e8e51 ths
    }
1727 e7493b25 Stefan Weil
    /* !!! */
1728 c227f099 Anthony Liguori
    eepro100_rx_t rx;
1729 663e8e51 ths
    cpu_physical_memory_read(s->ru_base + s->ru_offset, (uint8_t *) & rx,
1730 c227f099 Anthony Liguori
                             offsetof(eepro100_rx_t, packet));
1731 663e8e51 ths
    uint16_t rfd_command = le16_to_cpu(rx.command);
1732 663e8e51 ths
    uint16_t rfd_size = le16_to_cpu(rx.size);
1733 7f1e9d4e Kevin Wolf
1734 7f1e9d4e Kevin Wolf
    if (size > rfd_size) {
1735 7f1e9d4e Kevin Wolf
        logout("Receive buffer (%" PRId16 " bytes) too small for data "
1736 7f1e9d4e Kevin Wolf
            "(%zu bytes); data truncated\n", rfd_size, size);
1737 7f1e9d4e Kevin Wolf
        size = rfd_size;
1738 7f1e9d4e Kevin Wolf
    }
1739 663e8e51 ths
    if (size < 64) {
1740 663e8e51 ths
        rfd_status |= 0x0080;
1741 663e8e51 ths
    }
1742 aac443e6 Stefan Weil
    TRACE(OTHER, logout("command 0x%04x, link 0x%08x, addr 0x%08x, size %u\n",
1743 aac443e6 Stefan Weil
          rfd_command, rx.link, rx.rx_buf_addr, rfd_size));
1744 c227f099 Anthony Liguori
    stw_phys(s->ru_base + s->ru_offset + offsetof(eepro100_rx_t, status),
1745 663e8e51 ths
             rfd_status);
1746 c227f099 Anthony Liguori
    stw_phys(s->ru_base + s->ru_offset + offsetof(eepro100_rx_t, count), size);
1747 663e8e51 ths
    /* Early receive interrupt not supported. */
1748 e7493b25 Stefan Weil
#if 0
1749 e7493b25 Stefan Weil
    eepro100_er_interrupt(s);
1750 e7493b25 Stefan Weil
#endif
1751 663e8e51 ths
    /* Receive CRC Transfer not supported. */
1752 ced5296a Stefan Weil
    if (s->configuration[18] & BIT(2)) {
1753 7f1e9d4e Kevin Wolf
        missing("Receive CRC Transfer");
1754 7f1e9d4e Kevin Wolf
        return -1;
1755 7f1e9d4e Kevin Wolf
    }
1756 663e8e51 ths
    /* TODO: check stripping enable bit. */
1757 e7493b25 Stefan Weil
#if 0
1758 e7493b25 Stefan Weil
    assert(!(s->configuration[17] & BIT(0)));
1759 e7493b25 Stefan Weil
#endif
1760 663e8e51 ths
    cpu_physical_memory_write(s->ru_base + s->ru_offset +
1761 c227f099 Anthony Liguori
                              offsetof(eepro100_rx_t, packet), buf, size);
1762 663e8e51 ths
    s->statistics.rx_good_frames++;
1763 663e8e51 ths
    eepro100_fr_interrupt(s);
1764 663e8e51 ths
    s->ru_offset = le32_to_cpu(rx.link);
1765 ced5296a Stefan Weil
    if (rfd_command & COMMAND_EL) {
1766 663e8e51 ths
        /* EL bit is set, so this was the last frame. */
1767 7f1e9d4e Kevin Wolf
        logout("receive: Running out of frames\n");
1768 7f1e9d4e Kevin Wolf
        set_ru_state(s, ru_suspended);
1769 663e8e51 ths
    }
1770 ced5296a Stefan Weil
    if (rfd_command & COMMAND_S) {
1771 663e8e51 ths
        /* S bit is set. */
1772 663e8e51 ths
        set_ru_state(s, ru_suspended);
1773 663e8e51 ths
    }
1774 4f1c942b Mark McLoughlin
    return size;
1775 663e8e51 ths
}
1776 663e8e51 ths
1777 151b2986 Juan Quintela
static const VMStateDescription vmstate_eepro100 = {
1778 151b2986 Juan Quintela
    .version_id = 3,
1779 151b2986 Juan Quintela
    .minimum_version_id = 2,
1780 151b2986 Juan Quintela
    .minimum_version_id_old = 2,
1781 151b2986 Juan Quintela
    .fields      = (VMStateField []) {
1782 151b2986 Juan Quintela
        VMSTATE_PCI_DEVICE(dev, EEPRO100State),
1783 151b2986 Juan Quintela
        VMSTATE_UNUSED(32),
1784 151b2986 Juan Quintela
        VMSTATE_BUFFER(mult, EEPRO100State),
1785 151b2986 Juan Quintela
        VMSTATE_BUFFER(mem, EEPRO100State),
1786 151b2986 Juan Quintela
        /* Save all members of struct between scb_stat and mem. */
1787 151b2986 Juan Quintela
        VMSTATE_UINT8(scb_stat, EEPRO100State),
1788 151b2986 Juan Quintela
        VMSTATE_UINT8(int_stat, EEPRO100State),
1789 151b2986 Juan Quintela
        VMSTATE_UNUSED(3*4),
1790 151b2986 Juan Quintela
        VMSTATE_MACADDR(conf.macaddr, EEPRO100State),
1791 151b2986 Juan Quintela
        VMSTATE_UNUSED(19*4),
1792 151b2986 Juan Quintela
        VMSTATE_UINT16_ARRAY(mdimem, EEPRO100State, 32),
1793 151b2986 Juan Quintela
        /* The eeprom should be saved and restored by its own routines. */
1794 151b2986 Juan Quintela
        VMSTATE_UINT32(device, EEPRO100State),
1795 151b2986 Juan Quintela
        /* TODO check device. */
1796 151b2986 Juan Quintela
        VMSTATE_UINT32(pointer, EEPRO100State),
1797 151b2986 Juan Quintela
        VMSTATE_UINT32(cu_base, EEPRO100State),
1798 151b2986 Juan Quintela
        VMSTATE_UINT32(cu_offset, EEPRO100State),
1799 151b2986 Juan Quintela
        VMSTATE_UINT32(ru_base, EEPRO100State),
1800 151b2986 Juan Quintela
        VMSTATE_UINT32(ru_offset, EEPRO100State),
1801 151b2986 Juan Quintela
        VMSTATE_UINT32(statsaddr, EEPRO100State),
1802 ba42b646 Stefan Weil
        /* Save eepro100_stats_t statistics. */
1803 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_good_frames, EEPRO100State),
1804 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_max_collisions, EEPRO100State),
1805 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_late_collisions, EEPRO100State),
1806 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_underruns, EEPRO100State),
1807 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_lost_crs, EEPRO100State),
1808 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_deferred, EEPRO100State),
1809 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_single_collisions, EEPRO100State),
1810 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_multiple_collisions, EEPRO100State),
1811 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.tx_total_collisions, EEPRO100State),
1812 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.rx_good_frames, EEPRO100State),
1813 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.rx_crc_errors, EEPRO100State),
1814 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.rx_alignment_errors, EEPRO100State),
1815 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.rx_resource_errors, EEPRO100State),
1816 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.rx_overrun_errors, EEPRO100State),
1817 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.rx_cdt_errors, EEPRO100State),
1818 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.rx_short_frame_errors, EEPRO100State),
1819 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.fc_xmt_pause, EEPRO100State),
1820 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.fc_rcv_pause, EEPRO100State),
1821 151b2986 Juan Quintela
        VMSTATE_UINT32(statistics.fc_rcv_unsupported, EEPRO100State),
1822 151b2986 Juan Quintela
        VMSTATE_UINT16(statistics.xmt_tco_frames, EEPRO100State),
1823 151b2986 Juan Quintela
        VMSTATE_UINT16(statistics.rcv_tco_frames, EEPRO100State),
1824 151b2986 Juan Quintela
        /* Configuration bytes. */
1825 151b2986 Juan Quintela
        VMSTATE_BUFFER(configuration, EEPRO100State),
1826 151b2986 Juan Quintela
        VMSTATE_END_OF_LIST()
1827 aac443e6 Stefan Weil
    }
1828 151b2986 Juan Quintela
};
1829 663e8e51 ths
1830 e00e365e Mark McLoughlin
static void nic_cleanup(VLANClientState *nc)
1831 b946a153 aliguori
{
1832 e00e365e Mark McLoughlin
    EEPRO100State *s = DO_UPCAST(NICState, nc, nc)->opaque;
1833 b946a153 aliguori
1834 e00e365e Mark McLoughlin
    s->nic = NULL;
1835 b946a153 aliguori
}
1836 b946a153 aliguori
1837 c4c270e2 Stefan Weil
static int pci_nic_uninit(PCIDevice *pci_dev)
1838 b946a153 aliguori
{
1839 c4c270e2 Stefan Weil
    EEPRO100State *s = DO_UPCAST(EEPRO100State, dev, pci_dev);
1840 b946a153 aliguori
1841 b946a153 aliguori
    cpu_unregister_io_memory(s->mmio_index);
1842 151b2986 Juan Quintela
    vmstate_unregister(s->vmstate, s);
1843 508ef936 Gerd Hoffmann
    eeprom93xx_free(s->eeprom);
1844 e00e365e Mark McLoughlin
    qemu_del_vlan_client(&s->nic->nc);
1845 b946a153 aliguori
    return 0;
1846 b946a153 aliguori
}
1847 b946a153 aliguori
1848 e00e365e Mark McLoughlin
static NetClientInfo net_eepro100_info = {
1849 e00e365e Mark McLoughlin
    .type = NET_CLIENT_TYPE_NIC,
1850 e00e365e Mark McLoughlin
    .size = sizeof(NICState),
1851 e00e365e Mark McLoughlin
    .can_receive = nic_can_receive,
1852 e00e365e Mark McLoughlin
    .receive = nic_receive,
1853 e00e365e Mark McLoughlin
    .cleanup = nic_cleanup,
1854 e00e365e Mark McLoughlin
};
1855 e00e365e Mark McLoughlin
1856 558c8634 Stefan Weil
static int e100_nic_init(PCIDevice *pci_dev)
1857 663e8e51 ths
{
1858 273a2142 Juan Quintela
    EEPRO100State *s = DO_UPCAST(EEPRO100State, dev, pci_dev);
1859 558c8634 Stefan Weil
    E100PCIDeviceInfo *e100_device = DO_UPCAST(E100PCIDeviceInfo, pci.qdev,
1860 558c8634 Stefan Weil
                                               pci_dev->qdev.info);
1861 663e8e51 ths
1862 aac443e6 Stefan Weil
    TRACE(OTHER, logout("\n"));
1863 663e8e51 ths
1864 558c8634 Stefan Weil
    s->device = e100_device->device;
1865 663e8e51 ths
1866 558c8634 Stefan Weil
    e100_pci_reset(s, e100_device);
1867 663e8e51 ths
1868 663e8e51 ths
    /* Add 64 * 2 EEPROM. i82557 and i82558 support a 64 word EEPROM,
1869 663e8e51 ths
     * i82559 and later support 64 or 256 word EEPROM. */
1870 663e8e51 ths
    s->eeprom = eeprom93xx_new(EEPROM_SIZE);
1871 663e8e51 ths
1872 663e8e51 ths
    /* Handler for memory-mapped I/O */
1873 273a2142 Juan Quintela
    s->mmio_index =
1874 1eed09cb Avi Kivity
        cpu_register_io_memory(pci_mmio_read, pci_mmio_write, s);
1875 663e8e51 ths
1876 273a2142 Juan Quintela
    pci_register_bar(&s->dev, 0, PCI_MEM_SIZE,
1877 0392a017 Isaku Yamahata
                           PCI_BASE_ADDRESS_SPACE_MEMORY |
1878 0392a017 Isaku Yamahata
                           PCI_BASE_ADDRESS_MEM_PREFETCH, pci_mmio_map);
1879 0392a017 Isaku Yamahata
    pci_register_bar(&s->dev, 1, PCI_IO_SIZE, PCI_BASE_ADDRESS_SPACE_IO,
1880 663e8e51 ths
                           pci_map);
1881 0392a017 Isaku Yamahata
    pci_register_bar(&s->dev, 2, PCI_FLASH_SIZE, PCI_BASE_ADDRESS_SPACE_MEMORY,
1882 663e8e51 ths
                           pci_mmio_map);
1883 663e8e51 ths
1884 508ef936 Gerd Hoffmann
    qemu_macaddr_default_if_unset(&s->conf.macaddr);
1885 ce0e58b3 Stefan Weil
    logout("macaddr: %s\n", nic_dump(&s->conf.macaddr.a[0], 6));
1886 663e8e51 ths
    assert(s->region[1] == 0);
1887 663e8e51 ths
1888 663e8e51 ths
    nic_reset(s);
1889 663e8e51 ths
1890 e00e365e Mark McLoughlin
    s->nic = qemu_new_nic(&net_eepro100_info, &s->conf,
1891 e00e365e Mark McLoughlin
                          pci_dev->qdev.info->name, pci_dev->qdev.id, s);
1892 663e8e51 ths
1893 e00e365e Mark McLoughlin
    qemu_format_nic_info_str(&s->nic->nc, s->conf.macaddr.a);
1894 e00e365e Mark McLoughlin
    TRACE(OTHER, logout("%s\n", s->nic->nc.info_str));
1895 663e8e51 ths
1896 a08d4367 Jan Kiszka
    qemu_register_reset(nic_reset, s);
1897 663e8e51 ths
1898 151b2986 Juan Quintela
    s->vmstate = qemu_malloc(sizeof(vmstate_eepro100));
1899 151b2986 Juan Quintela
    memcpy(s->vmstate, &vmstate_eepro100, sizeof(vmstate_eepro100));
1900 e00e365e Mark McLoughlin
    s->vmstate->name = s->nic->nc.model;
1901 151b2986 Juan Quintela
    vmstate_register(-1, s->vmstate, s);
1902 4e9df06a Stefan Weil
1903 81a322d4 Gerd Hoffmann
    return 0;
1904 663e8e51 ths
}
1905 663e8e51 ths
1906 558c8634 Stefan Weil
static E100PCIDeviceInfo e100_devices[] = {
1907 0aab0d3a Gerd Hoffmann
    {
1908 558c8634 Stefan Weil
        .pci.qdev.name = "i82550",
1909 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82550 Ethernet",
1910 558c8634 Stefan Weil
        .device = i82550,
1911 558c8634 Stefan Weil
        /* TODO: check device id. */
1912 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82551IT,
1913 558c8634 Stefan Weil
        /* Revision ID: 0x0c, 0x0d, 0x0e. */
1914 558c8634 Stefan Weil
        .revision = 0x0e,
1915 558c8634 Stefan Weil
        /* TODO: check size of statistical counters. */
1916 558c8634 Stefan Weil
        .stats_size = 80,
1917 558c8634 Stefan Weil
        /* TODO: check extended tcb support. */
1918 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
1919 558c8634 Stefan Weil
        .power_management = true,
1920 0aab0d3a Gerd Hoffmann
    },{
1921 558c8634 Stefan Weil
        .pci.qdev.name = "i82551",
1922 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82551 Ethernet",
1923 558c8634 Stefan Weil
        .device = i82551,
1924 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82551IT,
1925 558c8634 Stefan Weil
        /* Revision ID: 0x0f, 0x10. */
1926 558c8634 Stefan Weil
        .revision = 0x0f,
1927 558c8634 Stefan Weil
        /* TODO: check size of statistical counters. */
1928 558c8634 Stefan Weil
        .stats_size = 80,
1929 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
1930 558c8634 Stefan Weil
        .power_management = true,
1931 c4c270e2 Stefan Weil
    },{
1932 558c8634 Stefan Weil
        .pci.qdev.name = "i82557a",
1933 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82557A Ethernet",
1934 558c8634 Stefan Weil
        .device = i82557A,
1935 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82557,
1936 558c8634 Stefan Weil
        .revision = 0x01,
1937 558c8634 Stefan Weil
        .power_management = false,
1938 0aab0d3a Gerd Hoffmann
    },{
1939 558c8634 Stefan Weil
        .pci.qdev.name = "i82557b",
1940 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82557B Ethernet",
1941 558c8634 Stefan Weil
        .device = i82557B,
1942 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82557,
1943 558c8634 Stefan Weil
        .revision = 0x02,
1944 558c8634 Stefan Weil
        .power_management = false,
1945 c4c270e2 Stefan Weil
    },{
1946 558c8634 Stefan Weil
        .pci.qdev.name = "i82557c",
1947 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82557C Ethernet",
1948 558c8634 Stefan Weil
        .device = i82557C,
1949 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82557,
1950 558c8634 Stefan Weil
        .revision = 0x03,
1951 558c8634 Stefan Weil
        .power_management = false,
1952 c4c270e2 Stefan Weil
    },{
1953 558c8634 Stefan Weil
        .pci.qdev.name = "i82558a",
1954 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82558A Ethernet",
1955 558c8634 Stefan Weil
        .device = i82558A,
1956 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82557,
1957 558c8634 Stefan Weil
        .revision = 0x04,
1958 558c8634 Stefan Weil
        .stats_size = 76,
1959 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
1960 558c8634 Stefan Weil
        .power_management = true,
1961 c4c270e2 Stefan Weil
    },{
1962 558c8634 Stefan Weil
        .pci.qdev.name = "i82558b",
1963 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82558B Ethernet",
1964 558c8634 Stefan Weil
        .device = i82558B,
1965 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82557,
1966 558c8634 Stefan Weil
        .revision = 0x05,
1967 558c8634 Stefan Weil
        .stats_size = 76,
1968 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
1969 558c8634 Stefan Weil
        .power_management = true,
1970 c4c270e2 Stefan Weil
    },{
1971 558c8634 Stefan Weil
        .pci.qdev.name = "i82559a",
1972 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82559A Ethernet",
1973 558c8634 Stefan Weil
        .device = i82559A,
1974 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82557,
1975 558c8634 Stefan Weil
        .revision = 0x06,
1976 558c8634 Stefan Weil
        .stats_size = 80,
1977 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
1978 558c8634 Stefan Weil
        .power_management = true,
1979 c4c270e2 Stefan Weil
    },{
1980 558c8634 Stefan Weil
        .pci.qdev.name = "i82559b",
1981 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82559B Ethernet",
1982 558c8634 Stefan Weil
        .device = i82559B,
1983 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82557,
1984 558c8634 Stefan Weil
        .revision = 0x07,
1985 558c8634 Stefan Weil
        .stats_size = 80,
1986 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
1987 558c8634 Stefan Weil
        .power_management = true,
1988 c4c270e2 Stefan Weil
    },{
1989 558c8634 Stefan Weil
        .pci.qdev.name = "i82559c",
1990 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82559C Ethernet",
1991 558c8634 Stefan Weil
        .device = i82559C,
1992 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82557,
1993 558c8634 Stefan Weil
#if 0
1994 558c8634 Stefan Weil
        .revision = 0x08,
1995 558c8634 Stefan Weil
#endif
1996 558c8634 Stefan Weil
        /* TODO: Windows wants revision id 0x0c. */
1997 558c8634 Stefan Weil
        .revision = 0x0c,
1998 558c8634 Stefan Weil
        .stats_size = 80,
1999 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
2000 558c8634 Stefan Weil
        .power_management = true,
2001 0aab0d3a Gerd Hoffmann
    },{
2002 558c8634 Stefan Weil
        .pci.qdev.name = "i82559er",
2003 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82559ER Ethernet",
2004 558c8634 Stefan Weil
        .device = i82559ER,
2005 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82551IT,
2006 558c8634 Stefan Weil
        .revision = 0x09,
2007 558c8634 Stefan Weil
        .stats_size = 80,
2008 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
2009 558c8634 Stefan Weil
        .power_management = true,
2010 c4c270e2 Stefan Weil
    },{
2011 558c8634 Stefan Weil
        .pci.qdev.name = "i82562",
2012 558c8634 Stefan Weil
        .pci.qdev.desc = "Intel i82562 Ethernet",
2013 558c8634 Stefan Weil
        .device = i82562,
2014 558c8634 Stefan Weil
        /* TODO: check device id. */
2015 558c8634 Stefan Weil
        .device_id = PCI_DEVICE_ID_INTEL_82551IT,
2016 558c8634 Stefan Weil
        /* TODO: wrong revision id. */
2017 558c8634 Stefan Weil
        .revision = 0x0e,
2018 558c8634 Stefan Weil
        .stats_size = 80,
2019 558c8634 Stefan Weil
        .has_extended_tcb_support = true,
2020 558c8634 Stefan Weil
        .power_management = true,
2021 db667a12 Stefan Weil
    },{
2022 db667a12 Stefan Weil
        /* Toshiba Tecra 8200. */
2023 db667a12 Stefan Weil
        .pci.qdev.name = "i82801",
2024 db667a12 Stefan Weil
        .pci.qdev.desc = "Intel i82801 Ethernet",
2025 db667a12 Stefan Weil
        .device = i82801,
2026 db667a12 Stefan Weil
        .device_id = 0x2449,
2027 db667a12 Stefan Weil
        .revision = 0x03,
2028 db667a12 Stefan Weil
        .stats_size = 80,
2029 db667a12 Stefan Weil
        .has_extended_tcb_support = true,
2030 db667a12 Stefan Weil
        .power_management = true,
2031 0aab0d3a Gerd Hoffmann
    }
2032 0aab0d3a Gerd Hoffmann
};
2033 0aab0d3a Gerd Hoffmann
2034 558c8634 Stefan Weil
static Property e100_properties[] = {
2035 558c8634 Stefan Weil
    DEFINE_NIC_PROPERTIES(EEPRO100State, conf),
2036 558c8634 Stefan Weil
    DEFINE_PROP_END_OF_LIST(),
2037 558c8634 Stefan Weil
};
2038 558c8634 Stefan Weil
2039 9d07d757 Paul Brook
static void eepro100_register_devices(void)
2040 663e8e51 ths
{
2041 558c8634 Stefan Weil
    size_t i;
2042 558c8634 Stefan Weil
    for (i = 0; i < ARRAY_SIZE(e100_devices); i++) {
2043 558c8634 Stefan Weil
        PCIDeviceInfo *pci_dev = &e100_devices[i].pci;
2044 558c8634 Stefan Weil
        switch (e100_devices[i].device_id) {
2045 558c8634 Stefan Weil
            case PCI_DEVICE_ID_INTEL_82551IT:
2046 558c8634 Stefan Weil
                pci_dev->romfile = "gpxe-eepro100-80861209.rom";
2047 558c8634 Stefan Weil
                break;
2048 558c8634 Stefan Weil
            case PCI_DEVICE_ID_INTEL_82557:
2049 558c8634 Stefan Weil
                pci_dev->romfile = "gpxe-eepro100-80861229.rom";
2050 558c8634 Stefan Weil
                break;
2051 db667a12 Stefan Weil
            case 0x2449:
2052 db667a12 Stefan Weil
                pci_dev->romfile = "gpxe-eepro100-80862449.rom";
2053 db667a12 Stefan Weil
                break;
2054 558c8634 Stefan Weil
        }
2055 558c8634 Stefan Weil
        pci_dev->init = e100_nic_init;
2056 558c8634 Stefan Weil
        pci_dev->exit = pci_nic_uninit;
2057 558c8634 Stefan Weil
        pci_dev->qdev.props = e100_properties;
2058 558c8634 Stefan Weil
        pci_dev->qdev.size = sizeof(EEPRO100State);
2059 558c8634 Stefan Weil
        pci_qdev_register(pci_dev);
2060 558c8634 Stefan Weil
    }
2061 663e8e51 ths
}
2062 663e8e51 ths
2063 9d07d757 Paul Brook
device_init(eepro100_register_devices)