eepro100.c 67.9 KB
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/*
 * QEMU i8255x (PRO100) emulation
 *
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 * Copyright (C) 2006-2011 Stefan Weil
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 *
 * Portions of the code are copies from grub / etherboot eepro100.c
 * and linux e100.c.
 *
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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
 * (at your option) version 3 or any later version.
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 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * 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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 *
 * Tested features (i82559):
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 *      PXE boot (i386 guest, i386 / mips / mipsel / ppc host) ok
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 *      Linux networking (i386) ok
 *
 * Untested:
 *      Windows networking
 *
 * References:
 *
 * Intel 8255x 10/100 Mbps Ethernet Controller Family
 * Open Source Software Developer Manual
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 *
 * TODO:
 *      * PHY emulation should be separated from nic emulation.
 *        Most nic emulations could share the same phy code.
 *      * i82550 is untested. It is programmed like the i82559.
 *      * i82562 is untested. It is programmed like the i82559.
 *      * Power management (i82558 and later) is not implemented.
 *      * Wake-on-LAN is not implemented.
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 */

#include <stddef.h>             /* offsetof */
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#include "hw.h"
#include "pci.h"
#include "net.h"
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#include "eeprom93xx.h"
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#include "sysemu.h"
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#include "dma.h"
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/* QEMU sends frames smaller than 60 bytes to ethernet nics.
 * Such frames are rejected by real nics and their emulations.
 * To avoid this behaviour, other nic emulations pad received
 * frames. The following definition enables this padding for
 * eepro100, too. We keep the define around in case it might
 * become useful the future if the core networking is ever
 * changed to pad short packets itself. */
#define CONFIG_PAD_RECEIVED_FRAMES

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#define KiB 1024

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/* Debug EEPRO100 card. */
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#if 0
# define DEBUG_EEPRO100
#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

/* Set flags to 0 to disable debug output. */
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#define INT     1       /* interrupt related actions */
#define MDI     1       /* mdi related actions */
#define OTHER   1
#define RXTX    1
#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

/* 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
#define i82557C         0x82557c
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#define i82558A         0x82558a
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#define i82558B         0x82558b
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#define i82559A         0x82559a
#define i82559B         0x82559b
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#define i82559C         0x82559c
#define i82559ER        0x82559e
#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

#define PCI_MEM_SIZE            (4 * KiB)
#define PCI_IO_SIZE             64
#define PCI_FLASH_SIZE          (128 * KiB)

#define BIT(n) (1 << (n))
#define BITS(n, m) (((0xffffffffU << (31 - n)) >> (31 - n + m)) << m)

/* The SCB accepts the following controls for the Tx and Rx units: */
#define  CU_NOP         0x0000  /* No operation. */
#define  CU_START       0x0010  /* CU start. */
#define  CU_RESUME      0x0020  /* CU resume. */
#define  CU_STATSADDR   0x0040  /* Load dump counters address. */
#define  CU_SHOWSTATS   0x0050  /* Dump statistical counters. */
#define  CU_CMD_BASE    0x0060  /* Load CU base address. */
#define  CU_DUMPSTATS   0x0070  /* Dump and reset statistical counters. */
#define  CU_SRESUME     0x00a0  /* CU static resume. */

#define  RU_NOP         0x0000
#define  RX_START       0x0001
#define  RX_RESUME      0x0002
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#define  RU_ABORT       0x0004
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#define  RX_ADDR_LOAD   0x0006
#define  RX_RESUMENR    0x0007
#define INT_MASK        0x0100
#define DRVR_INT        0x0200  /* Driver generated interrupt. */

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typedef struct {
    PCIDeviceInfo pci;
    uint32_t device;
    uint8_t stats_size;
    bool has_extended_tcb_support;
    bool power_management;
} E100PCIDeviceInfo;

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/* Offsets to the various registers.
   All accesses need not be longword aligned. */
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typedef enum {
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    SCBStatus = 0,              /* Status Word. */
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    SCBAck = 1,
    SCBCmd = 2,                 /* Rx/Command Unit command and status. */
    SCBIntmask = 3,
    SCBPointer = 4,             /* General purpose pointer. */
    SCBPort = 8,                /* Misc. commands and operands.  */
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    SCBflash = 12,              /* Flash memory control. */
    SCBeeprom = 14,             /* EEPROM control. */
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    SCBCtrlMDI = 16,            /* MDI interface control. */
    SCBEarlyRx = 20,            /* Early receive byte count. */
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    SCBFlow = 24,               /* Flow Control. */
    SCBpmdr = 27,               /* Power Management Driver. */
    SCBgctrl = 28,              /* General Control. */
    SCBgstat = 29,              /* General Status. */
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} E100RegisterOffset;
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/* A speedo3 transmit buffer descriptor with two buffers... */
typedef struct {
    uint16_t status;
    uint16_t command;
    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 */
    uint8_t tx_threshold;       /* transmit threshold */
    uint8_t tbd_count;          /* TBD number */
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#if 0
    /* This constitutes two "TBD" entries: hdr and data */
    uint32_t tx_buf_addr0;  /* void *, header of frame to be transmitted.  */
    int32_t  tx_buf_size0;  /* Length of Tx hdr. */
    uint32_t tx_buf_addr1;  /* void *, data to be transmitted.  */
    int32_t  tx_buf_size1;  /* Length of Tx data. */
#endif
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} eepro100_tx_t;
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/* Receive frame descriptor. */
typedef struct {
    int16_t status;
    uint16_t command;
    uint32_t link;              /* struct RxFD * */
    uint32_t rx_buf_addr;       /* void * */
    uint16_t count;
    uint16_t size;
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    /* Ethernet frame data follows. */
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} eepro100_rx_t;
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typedef enum {
    COMMAND_EL = BIT(15),
    COMMAND_S = BIT(14),
    COMMAND_I = BIT(13),
    COMMAND_NC = BIT(4),
    COMMAND_SF = BIT(3),
    COMMAND_CMD = BITS(2, 0),
} scb_command_bit;

typedef enum {
    STATUS_C = BIT(15),
    STATUS_OK = BIT(13),
} scb_status_bit;

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typedef struct {
    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,
             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,
             rx_short_frame_errors;
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    uint32_t fc_xmt_pause, fc_rcv_pause, fc_rcv_unsupported;
    uint16_t xmt_tco_frames, rcv_tco_frames;
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    /* TODO: i82559 has six reserved statistics but a total of 24 dwords. */
    uint32_t reserved[4];
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} eepro100_stats_t;
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typedef enum {
    cu_idle = 0,
    cu_suspended = 1,
    cu_active = 2,
    cu_lpq_active = 2,
    cu_hqp_active = 3
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} cu_state_t;
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typedef enum {
    ru_idle = 0,
    ru_suspended = 1,
    ru_no_resources = 2,
    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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    /* Hash register (multicast mask array, multiple individual addresses). */
    uint8_t mult[8];
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    MemoryRegion mmio_bar;
    MemoryRegion io_bar;
    MemoryRegion flash_bar;
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    NICState *nic;
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    NICConf conf;
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    uint8_t scb_stat;           /* SCB stat/ack byte */
    uint8_t int_stat;           /* PCI interrupt status */
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    /* region must not be saved by nic_save. */
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    uint16_t mdimem[32];
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    eeprom_t *eeprom;
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    uint32_t device;            /* device variant */
    /* (cu_base + cu_offset) address the next command block in the command block list. */
    uint32_t cu_base;           /* CU base address */
    uint32_t cu_offset;         /* CU address offset */
    /* (ru_base + ru_offset) address the RFD in the Receive Frame Area. */
    uint32_t ru_base;           /* RU base address */
    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),
     * used while processing CU commands. */
    eepro100_tx_t tx;           /* transmit buffer descriptor */
    uint32_t cb_address;        /* = cu_base + cu_offset */

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    /* Statistical counters. Also used for wake-up packet (i82559). */
    eepro100_stats_t statistics;

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    /* Data in mem is always in the byte order of the controller (le).
     * It must be dword aligned to allow direct access to 32 bit values. */
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    uint8_t mem[PCI_MEM_SIZE] __attribute__((aligned(8)));
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    /* Configuration bytes. */
    uint8_t configuration[22];

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    /* vmstate for each particular nic */
    VMStateDescription *vmstate;
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    /* Quasi static device properties (no need to save them). */
    uint16_t stats_size;
    bool has_extended_tcb_support;
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} EEPRO100State;

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/* Word indices in EEPROM. */
typedef enum {
    EEPROM_CNFG_MDIX  = 0x03,
    EEPROM_ID         = 0x05,
    EEPROM_PHY_ID     = 0x06,
    EEPROM_VENDOR_ID  = 0x0c,
    EEPROM_CONFIG_ASF = 0x0d,
    EEPROM_DEVICE_ID  = 0x23,
    EEPROM_SMBUS_ADDR = 0x90,
} EEPROMOffset;

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/* Bit values for EEPROM ID word. */
typedef enum {
    EEPROM_ID_MDM = BIT(0),     /* Modem */
    EEPROM_ID_STB = BIT(1),     /* Standby Enable */
    EEPROM_ID_WMR = BIT(2),     /* ??? */
    EEPROM_ID_WOL = BIT(5),     /* Wake on LAN */
    EEPROM_ID_DPD = BIT(6),     /* Deep Power Down */
    EEPROM_ID_ALT = BIT(7),     /* */
    /* BITS(10, 8) device revision */
    EEPROM_ID_BD = BIT(11),     /* boot disable */
    EEPROM_ID_ID = BIT(13),     /* id bit */
    /* BITS(15, 14) signature */
    EEPROM_ID_VALID = BIT(14),  /* signature for valid eeprom */
} eeprom_id_bit;

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/* Default values for MDI (PHY) registers */
static const uint16_t eepro100_mdi_default[] = {
    /* MDI Registers 0 - 6, 7 */
    0x3000, 0x780d, 0x02a8, 0x0154, 0x05e1, 0x0000, 0x0000, 0x0000,
    /* MDI Registers 8 - 15 */
    0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
    /* MDI Registers 16 - 31 */
    0x0003, 0x0000, 0x0001, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
    0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
};

/* Readonly mask for MDI (PHY) registers */
static const uint16_t eepro100_mdi_mask[] = {
    0x0000, 0xffff, 0xffff, 0xffff, 0xc01f, 0xffff, 0xffff, 0x0000,
    0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
    0x0fff, 0x0000, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff, 0xffff,
    0xffff, 0xffff, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000,
};

#define POLYNOMIAL 0x04c11db6

/* From FreeBSD */
/* XXX: optimize */
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static unsigned compute_mcast_idx(const uint8_t * ep)
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{
    uint32_t crc;
    int carry, i, j;
    uint8_t b;

    crc = 0xffffffff;
    for (i = 0; i < 6; i++) {
        b = *ep++;
        for (j = 0; j < 8; j++) {
            carry = ((crc & 0x80000000L) ? 1 : 0) ^ (b & 0x01);
            crc <<= 1;
            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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    return (crc & BITS(7, 2)) >> 2;
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}

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/* Read a 16 bit control/status (CSR) register. */
static uint16_t e100_read_reg2(EEPRO100State *s, E100RegisterOffset addr)
{
    assert(!((uintptr_t)&s->mem[addr] & 1));
    return le16_to_cpup((uint16_t *)&s->mem[addr]);
}

/* Read a 32 bit control/status (CSR) register. */
static uint32_t e100_read_reg4(EEPRO100State *s, E100RegisterOffset addr)
{
    assert(!((uintptr_t)&s->mem[addr] & 3));
    return le32_to_cpup((uint32_t *)&s->mem[addr]);
}

/* Write a 16 bit control/status (CSR) register. */
static void e100_write_reg2(EEPRO100State *s, E100RegisterOffset addr,
                            uint16_t val)
{
    assert(!((uintptr_t)&s->mem[addr] & 1));
    cpu_to_le16w((uint16_t *)&s->mem[addr], val);
}

/* Read a 32 bit control/status (CSR) register. */
static void e100_write_reg4(EEPRO100State *s, E100RegisterOffset addr,
                            uint32_t val)
{
    assert(!((uintptr_t)&s->mem[addr] & 3));
    cpu_to_le32w((uint32_t *)&s->mem[addr], val);
}

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#if defined(DEBUG_EEPRO100)
static const char *nic_dump(const uint8_t * buf, unsigned size)
{
    static char dump[3 * 16 + 1];
    char *p = &dump[0];
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    if (size > 16) {
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        size = 16;
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    }
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    while (size-- > 0) {
        p += sprintf(p, " %02x", *buf++);
    }
    return dump;
}
#endif                          /* DEBUG_EEPRO100 */

enum scb_stat_ack {
    stat_ack_not_ours = 0x00,
    stat_ack_sw_gen = 0x04,
    stat_ack_rnr = 0x10,
    stat_ack_cu_idle = 0x20,
    stat_ack_frame_rx = 0x40,
    stat_ack_cu_cmd_done = 0x80,
    stat_ack_not_present = 0xFF,
    stat_ack_rx = (stat_ack_sw_gen | stat_ack_rnr | stat_ack_frame_rx),
    stat_ack_tx = (stat_ack_cu_idle | stat_ack_cu_cmd_done),
};

static void disable_interrupt(EEPRO100State * s)
{
    if (s->int_stat) {
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        TRACE(INT, logout("interrupt disabled\n"));
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        qemu_irq_lower(s->dev.irq[0]);
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        s->int_stat = 0;
    }
}

static void enable_interrupt(EEPRO100State * s)
{
    if (!s->int_stat) {
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        TRACE(INT, logout("interrupt enabled\n"));
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        qemu_irq_raise(s->dev.irq[0]);
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        s->int_stat = 1;
    }
}

static void eepro100_acknowledge(EEPRO100State * s)
{
    s->scb_stat &= ~s->mem[SCBAck];
    s->mem[SCBAck] = s->scb_stat;
    if (s->scb_stat == 0) {
        disable_interrupt(s);
    }
}

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static void eepro100_interrupt(EEPRO100State * s, uint8_t status)
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{
    uint8_t mask = ~s->mem[SCBIntmask];
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    s->mem[SCBAck] |= status;
    status = s->scb_stat = s->mem[SCBAck];
    status &= (mask | 0x0f);
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#if 0
    status &= (~s->mem[SCBIntmask] | 0x0xf);
#endif
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    if (status && (mask & 0x01)) {
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        /* SCB mask and SCB Bit M do not disable interrupt. */
        enable_interrupt(s);
    } else if (s->int_stat) {
        disable_interrupt(s);
    }
}

static void eepro100_cx_interrupt(EEPRO100State * s)
{
    /* CU completed action command. */
    /* Transmit not ok (82557 only, not in emulation). */
    eepro100_interrupt(s, 0x80);
}

static void eepro100_cna_interrupt(EEPRO100State * s)
{
    /* CU left the active state. */
    eepro100_interrupt(s, 0x20);
}

static void eepro100_fr_interrupt(EEPRO100State * s)
{
    /* RU received a complete frame. */
    eepro100_interrupt(s, 0x40);
}

static void eepro100_rnr_interrupt(EEPRO100State * s)
{
    /* RU is not ready. */
    eepro100_interrupt(s, 0x10);
}

static void eepro100_mdi_interrupt(EEPRO100State * s)
{
    /* MDI completed read or write cycle. */
    eepro100_interrupt(s, 0x08);
}

static void eepro100_swi_interrupt(EEPRO100State * s)
{
    /* Software has requested an interrupt. */
    eepro100_interrupt(s, 0x04);
}

#if 0
static void eepro100_fcp_interrupt(EEPRO100State * s)
{
    /* Flow control pause interrupt (82558 and later). */
    eepro100_interrupt(s, 0x01);
}
#endif

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static void e100_pci_reset(EEPRO100State * s, E100PCIDeviceInfo *e100_device)
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{
    uint32_t device = s->device;
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    uint8_t *pci_conf = s->dev.config;
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    TRACE(OTHER, logout("%p\n", s));
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    /* PCI Status */
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    pci_set_word(pci_conf + PCI_STATUS, PCI_STATUS_DEVSEL_MEDIUM |
                                        PCI_STATUS_FAST_BACK);
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    /* PCI Latency Timer */
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    pci_set_byte(pci_conf + PCI_LATENCY_TIMER, 0x20);   /* latency timer = 32 clocks */
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    /* Capability Pointer is set by PCI framework. */
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    /* Interrupt Line */
    /* Interrupt Pin */
    pci_set_byte(pci_conf + PCI_INTERRUPT_PIN, 1);      /* interrupt pin A */
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    /* Minimum Grant */
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    pci_set_byte(pci_conf + PCI_MIN_GNT, 0x08);
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    /* Maximum Latency */
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    pci_set_byte(pci_conf + PCI_MAX_LAT, 0x18);
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    s->stats_size = e100_device->stats_size;
    s->has_extended_tcb_support = e100_device->has_extended_tcb_support;

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    switch (device) {
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    case i82550:
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    case i82551:
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    case i82557A:
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    case i82557B:
    case i82557C:
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    case i82558A:
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    case i82558B:
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    case i82559A:
    case i82559B:
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    case i82559ER:
    case i82562:
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    case i82801:
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    case i82559C:
        break;
    default:
        logout("Device %X is undefined!\n", device);
    }

533 534 535
    /* Standard TxCB. */
    s->configuration[6] |= BIT(4);

536
    /* Standard statistical counters. */
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    s->configuration[6] |= BIT(5);

    if (s->stats_size == 80) {
        /* TODO: check TCO Statistical Counters bit. Documentation not clear. */
        if (s->configuration[6] & BIT(2)) {
            /* TCO statistical counters. */
            assert(s->configuration[6] & BIT(5));
        } else {
            if (s->configuration[6] & BIT(5)) {
                /* No extended statistical counters, i82557 compatible. */
                s->stats_size = 64;
            } else {
                /* i82558 compatible. */
                s->stats_size = 76;
            }
        }
    } else {
        if (s->configuration[6] & BIT(5)) {
            /* No extended statistical counters. */
            s->stats_size = 64;
        }
    }
    assert(s->stats_size > 0 && s->stats_size <= sizeof(s->statistics));

561
    if (e100_device->power_management) {
562
        /* Power Management Capabilities */
563
        int cfg_offset = 0xdc;
564 565
        int r = pci_add_capability(&s->dev, PCI_CAP_ID_PM,
                                   cfg_offset, PCI_PM_SIZEOF);
566 567
        assert(r >= 0);
        pci_set_word(pci_conf + cfg_offset + PCI_PM_PMC, 0x7e21);
568
#if 0 /* TODO: replace dummy code for power management emulation. */
569 570 571 572
        /* TODO: Power Management Control / Status. */
        pci_set_word(pci_conf + cfg_offset + PCI_PM_CTRL, 0x0000);
        /* TODO: Ethernet Power Consumption Registers (i82559 and later). */
        pci_set_byte(pci_conf + cfg_offset + PCI_PM_PPB_EXTENSIONS, 0x0000);
573
#endif
574 575 576
    }

#if EEPROM_SIZE > 0
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    if (device == i82557C || device == i82558B || device == i82559C) {
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        /*
        TODO: get vendor id from EEPROM for i82557C or later.
        TODO: get device id from EEPROM for i82557C or later.
        TODO: status bit 4 can be disabled by EEPROM for i82558, i82559.
        TODO: header type is determined by EEPROM for i82559.
        TODO: get subsystem id from EEPROM for i82557C or later.
        TODO: get subsystem vendor id from EEPROM for i82557C or later.
        TODO: exp. rom baddr depends on a bit in EEPROM for i82558 or later.
        TODO: capability pointer depends on EEPROM for i82558.
        */
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        logout("Get device id and revision from EEPROM!!!\n");
    }
590
#endif /* EEPROM_SIZE > 0 */
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}

static void nic_selective_reset(EEPRO100State * s)
{
    size_t i;
    uint16_t *eeprom_contents = eeprom93xx_data(s->eeprom);
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#if 0
    eeprom93xx_reset(s->eeprom);
#endif
600
    memcpy(eeprom_contents, s->conf.macaddr.a, 6);
601
    eeprom_contents[EEPROM_ID] = EEPROM_ID_VALID;
602 603
    if (s->device == i82557B || s->device == i82557C)
        eeprom_contents[5] = 0x0100;
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    eeprom_contents[EEPROM_PHY_ID] = 1;
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    uint16_t sum = 0;
    for (i = 0; i < EEPROM_SIZE - 1; i++) {
        sum += eeprom_contents[i];
    }
    eeprom_contents[EEPROM_SIZE - 1] = 0xbaba - sum;
610
    TRACE(EEPROM, logout("checksum=0x%04x\n", eeprom_contents[EEPROM_SIZE - 1]));
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    memset(s->mem, 0, sizeof(s->mem));
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    e100_write_reg4(s, SCBCtrlMDI, BIT(21));
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    assert(sizeof(s->mdimem) == sizeof(eepro100_mdi_default));
    memcpy(&s->mdimem[0], &eepro100_mdi_default[0], sizeof(s->mdimem));
}

static void nic_reset(void *opaque)
{
621
    EEPRO100State *s = opaque;
622
    TRACE(OTHER, logout("%p\n", s));
623
    /* TODO: Clearing of hash register for selective reset, too? */
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    memset(&s->mult[0], 0, sizeof(s->mult));
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    nic_selective_reset(s);
}

#if defined(DEBUG_EEPRO100)
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static const char * const e100_reg[PCI_IO_SIZE / 4] = {
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    "Command/Status",
    "General Pointer",
    "Port",
    "EEPROM/Flash Control",
    "MDI Control",
    "Receive DMA Byte Count",
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    "Flow Control",
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    "General Status/Control"
};

static char *regname(uint32_t addr)
{
642
    static char buf[32];
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    if (addr < PCI_IO_SIZE) {
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        const char *r = e100_reg[addr / 4];
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        if (r != 0) {
646
            snprintf(buf, sizeof(buf), "%s+%u", r, addr % 4);
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        } else {
648
            snprintf(buf, sizeof(buf), "0x%02x", addr);
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        }
    } else {
651
        snprintf(buf, sizeof(buf), "??? 0x%08x", addr);
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    }
    return buf;
}
#endif                          /* DEBUG_EEPRO100 */

/*****************************************************************************
 *
 * Command emulation.
 *
 ****************************************************************************/

#if 0
static uint16_t eepro100_read_command(EEPRO100State * s)
{
    uint16_t val = 0xffff;
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    TRACE(OTHER, logout("val=0x%04x\n", val));
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    return val;
}
#endif

/* Commands that can be put in a command list entry. */
enum commands {
    CmdNOp = 0,
    CmdIASetup = 1,
    CmdConfigure = 2,
    CmdMulticastList = 3,
    CmdTx = 4,
    CmdTDR = 5,                 /* load microcode */
    CmdDump = 6,
    CmdDiagnose = 7,

    /* And some extra flags: */
    CmdSuspend = 0x4000,        /* Suspend after completion. */
    CmdIntr = 0x2000,           /* Interrupt after completion. */
    CmdTxFlex = 0x0008,         /* Use "Flexible mode" for CmdTx command. */
};

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static cu_state_t get_cu_state(EEPRO100State * s)
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{
691
    return ((s->mem[SCBStatus] & BITS(7, 6)) >> 6);
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}

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static void set_cu_state(EEPRO100State * s, cu_state_t state)
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{
696
    s->mem[SCBStatus] = (s->mem[SCBStatus] & ~BITS(7, 6)) + (state << 6);
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}

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static ru_state_t get_ru_state(EEPRO100State * s)
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{
701
    return ((s->mem[SCBStatus] & BITS(5, 2)) >> 2);
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}

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static void set_ru_state(EEPRO100State * s, ru_state_t state)
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{
706
    s->mem[SCBStatus] = (s->mem[SCBStatus] & ~BITS(5, 2)) + (state << 2);
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}

static void dump_statistics(EEPRO100State * s)
{
    /* Dump statistical data. Most data is never changed by the emulation
     * and always 0, so we first just copy the whole block and then those
     * values which really matter.
     * Number of data should check configuration!!!
     */
716 717 718 719 720 721 722 723 724 725
    pci_dma_write(&s->dev, s->statsaddr,
                  (uint8_t *) &s->statistics, s->stats_size);
    stl_le_pci_dma(&s->dev, s->statsaddr + 0,
                   s->statistics.tx_good_frames);
    stl_le_pci_dma(&s->dev, s->statsaddr + 36,
                   s->statistics.rx_good_frames);
    stl_le_pci_dma(&s->dev, s->statsaddr + 48,
                   s->statistics.rx_resource_errors);
    stl_le_pci_dma(&s->dev, s->statsaddr + 60,
                   s->statistics.rx_short_frame_errors);
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#if 0
727 728
    stw_le_pci_dma(&s->dev, s->statsaddr + 76, s->statistics.xmt_tco_frames);
    stw_le_pci_dma(&s->dev, s->statsaddr + 78, s->statistics.rcv_tco_frames);
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    missing("CU dump statistical counters");
#endif
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}

733 734
static void read_cb(EEPRO100State *s)
{
735
    pci_dma_read(&s->dev, s->cb_address, (uint8_t *) &s->tx, sizeof(s->tx));
736 737 738 739 740 741 742
    s->tx.status = le16_to_cpu(s->tx.status);
    s->tx.command = le16_to_cpu(s->tx.command);
    s->tx.link = le32_to_cpu(s->tx.link);
    s->tx.tbd_array_addr = le32_to_cpu(s->tx.tbd_array_addr);
    s->tx.tcb_bytes = le16_to_cpu(s->tx.tcb_bytes);
}

743 744
static void tx_command(EEPRO100State *s)
{
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    uint32_t tbd_array = le32_to_cpu(s->tx.tbd_array_addr);
746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764
    uint16_t tcb_bytes = (le16_to_cpu(s->tx.tcb_bytes) & 0x3fff);
    /* Sends larger than MAX_ETH_FRAME_SIZE are allowed, up to 2600 bytes. */
    uint8_t buf[2600];
    uint16_t size = 0;
    uint32_t tbd_address = s->cb_address + 0x10;
    TRACE(RXTX, logout
        ("transmit, TBD array address 0x%08x, TCB byte count 0x%04x, TBD count %u\n",
         tbd_array, tcb_bytes, s->tx.tbd_count));

    if (tcb_bytes > 2600) {
        logout("TCB byte count too large, using 2600\n");
        tcb_bytes = 2600;
    }
    if (!((tcb_bytes > 0) || (tbd_array != 0xffffffff))) {
        logout
            ("illegal values of TBD array address and TCB byte count!\n");
    }
    assert(tcb_bytes <= sizeof(buf));
    while (size < tcb_bytes) {
765 766
        uint32_t tx_buffer_address = ldl_le_pci_dma(&s->dev, tbd_address);
        uint16_t tx_buffer_size = lduw_le_pci_dma(&s->dev, tbd_address + 4);
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#if 0
768
        uint16_t tx_buffer_el = lduw_le_pci_dma(&s->dev, tbd_address + 6);
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#endif
770 771 772 773 774
        tbd_address += 8;
        TRACE(RXTX, logout
            ("TBD (simplified mode): buffer address 0x%08x, size 0x%04x\n",
             tx_buffer_address, tx_buffer_size));
        tx_buffer_size = MIN(tx_buffer_size, sizeof(buf) - size);
775
        pci_dma_read(&s->dev, tx_buffer_address, &buf[size], tx_buffer_size);
776 777 778 779 780 781 782 783 784 785
        size += tx_buffer_size;
    }
    if (tbd_array == 0xffffffff) {
        /* Simplified mode. Was already handled by code above. */
    } else {
        /* Flexible mode. */
        uint8_t tbd_count = 0;
        if (s->has_extended_tcb_support && !(s->configuration[6] & BIT(4))) {
            /* Extended Flexible TCB. */
            for (; tbd_count < 2; tbd_count++) {
786 787 788 789 790 791
                uint32_t tx_buffer_address = ldl_le_pci_dma(&s->dev,
                                                            tbd_address);
                uint16_t tx_buffer_size = lduw_le_pci_dma(&s->dev,
                                                          tbd_address + 4);
                uint16_t tx_buffer_el = lduw_le_pci_dma(&s->dev,
                                                        tbd_address + 6);
792 793 794 795 796
                tbd_address += 8;
                TRACE(RXTX, logout
                    ("TBD (extended flexible mode): buffer address 0x%08x, size 0x%04x\n",
                     tx_buffer_address, tx_buffer_size));
                tx_buffer_size = MIN(tx_buffer_size, sizeof(buf) - size);
797 798
                pci_dma_read(&s->dev, tx_buffer_address,
                             &buf[size], tx_buffer_size);
799 800 801 802 803 804 805 806
                size += tx_buffer_size;
                if (tx_buffer_el & 1) {
                    break;
                }
            }
        }
        tbd_address = tbd_array;
        for (; tbd_count < s->tx.tbd_count; tbd_count++) {
807 808 809
            uint32_t tx_buffer_address = ldl_le_pci_dma(&s->dev, tbd_address);
            uint16_t tx_buffer_size = lduw_le_pci_dma(&s->dev, tbd_address + 4);
            uint16_t tx_buffer_el = lduw_le_pci_dma(&s->dev, tbd_address + 6);
810 811 812 813 814
            tbd_address += 8;
            TRACE(RXTX, logout
                ("TBD (flexible mode): buffer address 0x%08x, size 0x%04x\n",
                 tx_buffer_address, tx_buffer_size));
            tx_buffer_size = MIN(tx_buffer_size, sizeof(buf) - size);
815 816
            pci_dma_read(&s->dev, tx_buffer_address,
                         &buf[size], tx_buffer_size);
817 818 819 820 821 822 823 824 825 826 827
            size += tx_buffer_size;
            if (tx_buffer_el & 1) {
                break;
            }
        }
    }
    TRACE(RXTX, logout("%p sending frame, len=%d,%s\n", s, size, nic_dump(buf, size)));
    qemu_send_packet(&s->nic->nc, buf, size);
    s->statistics.tx_good_frames++;
    /* Transmit with bad status would raise an CX/TNO interrupt.
     * (82557 only). Emulation never has bad status. */
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#if 0
    eepro100_cx_interrupt(s);
#endif
831 832
}

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static void set_multicast_list(EEPRO100State *s)
{
    uint16_t multicast_count = s->tx.tbd_array_addr & BITS(13, 0);
    uint16_t i;
    memset(&s->mult[0], 0, sizeof(s->mult));
    TRACE(OTHER, logout("multicast list, multicast count = %u\n", multicast_count));
    for (i = 0; i < multicast_count; i += 6) {
        uint8_t multicast_addr[6];
841
        pci_dma_read(&s->dev, s->cb_address + 10 + i, multicast_addr, 6);
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        TRACE(OTHER, logout("multicast entry %s\n", nic_dump(multicast_addr, 6)));
        unsigned mcast_idx = compute_mcast_idx(multicast_addr);
        assert(mcast_idx < 64);
        s->mult[mcast_idx >> 3] |= (1 << (mcast_idx & 7));
    }
}

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static void action_command(EEPRO100State *s)
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{
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    for (;;) {
852 853 854 855
        bool bit_el;
        bool bit_s;
        bool bit_i;
        bool bit_nc;
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        uint16_t ok_status = STATUS_OK;
857 858 859 860 861 862 863 864 865 866 867 868 869 870
        s->cb_address = s->cu_base + s->cu_offset;
        read_cb(s);
        bit_el = ((s->tx.command & COMMAND_EL) != 0);
        bit_s = ((s->tx.command & COMMAND_S) != 0);
        bit_i = ((s->tx.command & COMMAND_I) != 0);
        bit_nc = ((s->tx.command & COMMAND_NC) != 0);
#if 0
        bool bit_sf = ((s->tx.command & COMMAND_SF) != 0);
#endif
        s->cu_offset = s->tx.link;
        TRACE(OTHER,
              logout("val=(cu start), status=0x%04x, command=0x%04x, link=0x%08x\n",
                     s->tx.status, s->tx.command, s->tx.link));
        switch (s->tx.command & COMMAND_CMD) {
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        case CmdNOp:
            /* Do nothing. */
            break;
        case CmdIASetup:
875
            pci_dma_read(&s->dev, s->cb_address + 8, &s->conf.macaddr.a[0], 6);
876
            TRACE(OTHER, logout("macaddr: %s\n", nic_dump(&s->conf.macaddr.a[0], 6)));
T
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877 878
            break;
        case CmdConfigure:
879 880
            pci_dma_read(&s->dev, s->cb_address + 8,
                         &s->configuration[0], sizeof(s->configuration));
881 882 883 884 885 886 887 888
            TRACE(OTHER, logout("configuration: %s\n",
                                nic_dump(&s->configuration[0], 16)));
            TRACE(OTHER, logout("configuration: %s\n",
                                nic_dump(&s->configuration[16],
                                ARRAY_SIZE(s->configuration) - 16)));
            if (s->configuration[20] & BIT(6)) {
                TRACE(OTHER, logout("Multiple IA bit\n"));
            }
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            break;
        case CmdMulticastList:
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            set_multicast_list(s);
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            break;
        case CmdTx:
894 895
            if (bit_nc) {
                missing("CmdTx: NC = 0");
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                ok_status = 0;
897 898
                break;
            }
899
            tx_command(s);
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900 901
            break;
        case CmdTDR:
902
            TRACE(OTHER, logout("load microcode\n"));
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903 904 905
            /* Starting with offset 8, the command contains
             * 64 dwords microcode which we just ignore here. */
            break;
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        case CmdDiagnose:
            TRACE(OTHER, logout("diagnose\n"));
            /* Make sure error flag is not set. */
            s->tx.status = 0;
            break;
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        default:
            missing("undefined command");
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            ok_status = 0;
914
            break;
T
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915
        }
916
        /* Write new status. */
917 918
        stw_le_pci_dma(&s->dev, s->cb_address,
                       s->tx.status | ok_status | STATUS_C);
T
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919 920 921 922 923
        if (bit_i) {
            /* CU completed action. */
            eepro100_cx_interrupt(s);
        }
        if (bit_el) {
924
            /* CU becomes idle. Terminate command loop. */
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925 926
            set_cu_state(s, cu_idle);
            eepro100_cna_interrupt(s);
S
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            break;
T
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928
        } else if (bit_s) {
S
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            /* CU becomes suspended. Terminate command loop. */
T
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930 931
            set_cu_state(s, cu_suspended);
            eepro100_cna_interrupt(s);
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            break;
T
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933 934
        } else {
            /* More entries in list. */
935
            TRACE(OTHER, logout("CU list with at least one more entry\n"));
T
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936
        }
S
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    }
    TRACE(OTHER, logout("CU list empty\n"));
    /* List is empty. Now CU is idle or suspended. */
}

static void eepro100_cu_command(EEPRO100State * s, uint8_t val)
{
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    cu_state_t cu_state;
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945 946 947 948 949
    switch (val) {
    case CU_NOP:
        /* No operation. */
        break;
    case CU_START:
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950 951 952 953 954
        cu_state = get_cu_state(s);
        if (cu_state != cu_idle && cu_state != cu_suspended) {
            /* Intel documentation says that CU must be idle or suspended
             * for the CU start command. */
            logout("unexpected CU state is %u\n", cu_state);
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        }
        set_cu_state(s, cu_active);
957
        s->cu_offset = e100_read_reg4(s, SCBPointer);
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958
        action_command(s);
T
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959 960 961 962 963 964
        break;
    case CU_RESUME:
        if (get_cu_state(s) != cu_suspended) {
            logout("bad CU resume from CU state %u\n", get_cu_state(s));
            /* Workaround for bad Linux eepro100 driver which resumes
             * from idle state. */
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#if 0
            missing("cu resume");
#endif
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            set_cu_state(s, cu_suspended);
        }
        if (get_cu_state(s) == cu_suspended) {
971
            TRACE(OTHER, logout("CU resuming\n"));
T
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972
            set_cu_state(s, cu_active);
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            action_command(s);
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974 975 976 977
        }
        break;
    case CU_STATSADDR:
        /* Load dump counters address. */
978
        s->statsaddr = e100_read_reg4(s, SCBPointer);
979 980 981 982 983 984 985 986 987
        TRACE(OTHER, logout("val=0x%02x (dump counters address)\n", val));
        if (s->statsaddr & 3) {
            /* Memory must be Dword aligned. */
            logout("unaligned dump counters address\n");
            /* Handling of misaligned addresses is undefined.
             * Here we align the address by ignoring the lower bits. */
            /* TODO: Test unaligned dump counter address on real hardware. */
            s->statsaddr &= ~3;
        }
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        break;
    case CU_SHOWSTATS:
        /* Dump statistical counters. */
991
        TRACE(OTHER, logout("val=0x%02x (dump stats)\n", val));
T
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992
        dump_statistics(s);
993
        stl_le_pci_dma(&s->dev, s->statsaddr + s->stats_size, 0xa005);
T
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        break;
    case CU_CMD_BASE:
        /* Load CU base. */
997
        TRACE(OTHER, logout("val=0x%02x (CU base address)\n", val));
998
        s->cu_base = e100_read_reg4(s, SCBPointer);
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        break;
    case CU_DUMPSTATS:
        /* Dump and reset statistical counters. */
1002
        TRACE(OTHER, logout("val=0x%02x (dump stats and reset)\n", val));
T
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        dump_statistics(s);
1004
        stl_le_pci_dma(&s->dev, s->statsaddr + s->stats_size, 0xa007);
T
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        memset(&s->statistics, 0, sizeof(s->statistics));
        break;
    case CU_SRESUME:
        /* CU static resume. */
        missing("CU static resume");
        break;
    default:
        missing("Undefined CU command");
    }
}

static void eepro100_ru_command(EEPRO100State * s, uint8_t val)
{
    switch (val) {
    case RU_NOP:
        /* No operation. */
        break;
    case RX_START:
        /* RU start. */
        if (get_ru_state(s) != ru_idle) {
            logout("RU state is %u, should be %u\n", get_ru_state(s), ru_idle);
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#if 0
            assert(!"wrong RU state");
#endif
T
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        }
        set_ru_state(s, ru_ready);
1031
        s->ru_offset = e100_read_reg4(s, SCBPointer);
1032
        TRACE(OTHER, logout("val=0x%02x (rx start)\n", val));
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        break;
    case RX_RESUME:
        /* Restart RU. */
        if (get_ru_state(s) != ru_suspended) {
            logout("RU state is %u, should be %u\n", get_ru_state(s),
                   ru_suspended);
S
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#if 0
            assert(!"wrong RU state");
#endif
T
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1042 1043 1044
        }
        set_ru_state(s, ru_ready);
        break;
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    case RU_ABORT:
        /* RU abort. */
        if (get_ru_state(s) == ru_ready) {
            eepro100_rnr_interrupt(s);
        }
        set_ru_state(s, ru_idle);
        break;
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    case RX_ADDR_LOAD:
        /* Load RU base. */
1054
        TRACE(OTHER, logout("val=0x%02x (RU base address)\n", val));
1055
        s->ru_base = e100_read_reg4(s, SCBPointer);
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        break;
    default:
        logout("val=0x%02x (undefined RU command)\n", val);
        missing("Undefined SU command");
    }
}

static void eepro100_write_command(EEPRO100State * s, uint8_t val)
{
    eepro100_ru_command(s, val & 0x0f);
    eepro100_cu_command(s, val & 0xf0);
    if ((val) == 0) {
1068
        TRACE(OTHER, logout("val=0x%02x\n", val));
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    }
    /* Clear command byte after command was accepted. */
    s->mem[SCBCmd] = 0;
}

/*****************************************************************************
 *
 * EEPROM emulation.
 *
 ****************************************************************************/

#define EEPROM_CS       0x02
#define EEPROM_SK       0x01
#define EEPROM_DI       0x04
#define EEPROM_DO       0x08

static uint16_t eepro100_read_eeprom(EEPRO100State * s)
{
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    uint16_t val = e100_read_reg2(s, SCBeeprom);
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    if (eeprom93xx_read(s->eeprom)) {
        val |= EEPROM_DO;
    } else {
        val &= ~EEPROM_DO;
    }
1093
    TRACE(EEPROM, logout("val=0x%04x\n", val));
T
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    return val;
}

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static void eepro100_write_eeprom(eeprom_t * eeprom, uint8_t val)
T
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{
1099
    TRACE(EEPROM, logout("val=0x%02x\n", val));
T
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1100

S
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    /* mask unwritable bits */
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#if 0
    val = SET_MASKED(val, 0x31, eeprom->value);
#endif
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    int eecs = ((val & EEPROM_CS) != 0);
    int eesk = ((val & EEPROM_SK) != 0);
    int eedi = ((val & EEPROM_DI) != 0);
    eeprom93xx_write(eeprom, eecs, eesk, eedi);
}

/*****************************************************************************
 *
 * MDI emulation.
 *
 ****************************************************************************/

#if defined(DEBUG_EEPRO100)
1119
static const char * const mdi_op_name[] = {
T
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    "opcode 0",
    "write",
    "read",
    "opcode 3"
};

1126
static const char * const mdi_reg_name[] = {
T
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    "Control",
    "Status",
    "PHY Identification (Word 1)",
    "PHY Identification (Word 2)",
    "Auto-Negotiation Advertisement",
    "Auto-Negotiation Link Partner Ability",
    "Auto-Negotiation Expansion"
};
1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146

static const char *reg2name(uint8_t reg)
{
    static char buffer[10];
    const char *p = buffer;
    if (reg < ARRAY_SIZE(mdi_reg_name)) {
        p = mdi_reg_name[reg];
    } else {
        snprintf(buffer, sizeof(buffer), "reg=0x%02x", reg);
    }
    return p;
}
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#endif                          /* DEBUG_EEPRO100 */

static uint32_t eepro100_read_mdi(EEPRO100State * s)
{
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    uint32_t val = e100_read_reg4(s, SCBCtrlMDI);
T
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#ifdef DEBUG_EEPRO100
    uint8_t raiseint = (val & BIT(29)) >> 29;
    uint8_t opcode = (val & BITS(27, 26)) >> 26;
    uint8_t phy = (val & BITS(25, 21)) >> 21;
    uint8_t reg = (val & BITS(20, 16)) >> 16;
    uint16_t data = (val & BITS(15, 0));
#endif
    /* Emulation takes no time to finish MDI transaction. */
    val |= BIT(28);
    TRACE(MDI, logout("val=0x%08x (int=%u, %s, phy=%u, %s, data=0x%04x\n",
                      val, raiseint, mdi_op_name[opcode], phy,
1164
                      reg2name(reg), data));
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    return val;
}

1168
static void eepro100_write_mdi(EEPRO100State *s)
T
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{
1170
    uint32_t val = e100_read_reg4(s, SCBCtrlMDI);
T
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    uint8_t raiseint = (val & BIT(29)) >> 29;
    uint8_t opcode = (val & BITS(27, 26)) >> 26;
    uint8_t phy = (val & BITS(25, 21)) >> 21;
    uint8_t reg = (val & BITS(20, 16)) >> 16;
    uint16_t data = (val & BITS(15, 0));
1176 1177
    TRACE(MDI, logout("val=0x%08x (int=%u, %s, phy=%u, %s, data=0x%04x\n",
          val, raiseint, mdi_op_name[opcode], phy, reg2name(reg), data));
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    if (phy != 1) {
        /* Unsupported PHY address. */
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#if 0
        logout("phy must be 1 but is %u\n", phy);
#endif
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        data = 0;
    } else if (opcode != 1 && opcode != 2) {
        /* Unsupported opcode. */
        logout("opcode must be 1 or 2 but is %u\n", opcode);
        data = 0;
    } else if (reg > 6) {
        /* Unsupported register. */
        logout("register must be 0...6 but is %u\n", reg);
        data = 0;
    } else {
        TRACE(MDI, logout("val=0x%08x (int=%u, %s, phy=%u, %s, data=0x%04x\n",
                          val, raiseint, mdi_op_name[opcode], phy,
1195
                          reg2name(reg), data));
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1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260
        if (opcode == 1) {
            /* MDI write */
            switch (reg) {
            case 0:            /* Control Register */
                if (data & 0x8000) {
                    /* Reset status and control registers to default. */
                    s->mdimem[0] = eepro100_mdi_default[0];
                    s->mdimem[1] = eepro100_mdi_default[1];
                    data = s->mdimem[reg];
                } else {
                    /* Restart Auto Configuration = Normal Operation */
                    data &= ~0x0200;
                }
                break;
            case 1:            /* Status Register */
                missing("not writable");
                data = s->mdimem[reg];
                break;
            case 2:            /* PHY Identification Register (Word 1) */
            case 3:            /* PHY Identification Register (Word 2) */
                missing("not implemented");
                break;
            case 4:            /* Auto-Negotiation Advertisement Register */
            case 5:            /* Auto-Negotiation Link Partner Ability Register */
                break;
            case 6:            /* Auto-Negotiation Expansion Register */
            default:
                missing("not implemented");
            }
            s->mdimem[reg] = data;
        } else if (opcode == 2) {
            /* MDI read */
            switch (reg) {
            case 0:            /* Control Register */
                if (data & 0x8000) {
                    /* Reset status and control registers to default. */
                    s->mdimem[0] = eepro100_mdi_default[0];
                    s->mdimem[1] = eepro100_mdi_default[1];
                }
                break;
            case 1:            /* Status Register */
                s->mdimem[reg] |= 0x0020;
                break;
            case 2:            /* PHY Identification Register (Word 1) */
            case 3:            /* PHY Identification Register (Word 2) */
            case 4:            /* Auto-Negotiation Advertisement Register */
                break;
            case 5:            /* Auto-Negotiation Link Partner Ability Register */
                s->mdimem[reg] = 0x41fe;
                break;
            case 6:            /* Auto-Negotiation Expansion Register */
                s->mdimem[reg] = 0x0001;
                break;
            }
            data = s->mdimem[reg];
        }
        /* Emulation takes no time to finish MDI transaction.
         * Set MDI bit in SCB status register. */
        s->mem[SCBAck] |= 0x08;
        val |= BIT(28);
        if (raiseint) {
            eepro100_mdi_interrupt(s);
        }
    }
    val = (val & 0xffff0000) + data;
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    e100_write_reg4(s, SCBCtrlMDI, val);
T
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}

/*****************************************************************************
 *
 * Port emulation.
 *
 ****************************************************************************/

#define PORT_SOFTWARE_RESET     0
#define PORT_SELFTEST           1
#define PORT_SELECTIVE_RESET    2
#define PORT_DUMP               3
#define PORT_SELECTION_MASK     3

typedef struct {
    uint32_t st_sign;           /* Self Test Signature */
    uint32_t st_result;         /* Self Test Results */
A
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} eepro100_selftest_t;
T
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1280 1281 1282 1283 1284 1285

static uint32_t eepro100_read_port(EEPRO100State * s)
{
    return 0;
}

1286
static void eepro100_write_port(EEPRO100State *s)
T
ths 已提交
1287
{
1288
    uint32_t val = e100_read_reg4(s, SCBPort);
T
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1289 1290 1291 1292 1293 1294 1295
    uint32_t address = (val & ~PORT_SELECTION_MASK);
    uint8_t selection = (val & PORT_SELECTION_MASK);
    switch (selection) {
    case PORT_SOFTWARE_RESET:
        nic_reset(s);
        break;
    case PORT_SELFTEST:
1296
        TRACE(OTHER, logout("selftest address=0x%08x\n", address));
A
Anthony Liguori 已提交
1297
        eepro100_selftest_t data;
1298
        pci_dma_read(&s->dev, address, (uint8_t *) &data, sizeof(data));
T
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1299 1300
        data.st_sign = 0xffffffff;
        data.st_result = 0;
1301
        pci_dma_write(&s->dev, address, (uint8_t *) &data, sizeof(data));
T
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1302 1303
        break;
    case PORT_SELECTIVE_RESET:
1304
        TRACE(OTHER, logout("selective reset, selftest address=0x%08x\n", address));
T
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1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320
        nic_selective_reset(s);
        break;
    default:
        logout("val=0x%08x\n", val);
        missing("unknown port selection");
    }
}

/*****************************************************************************
 *
 * General hardware emulation.
 *
 ****************************************************************************/

static uint8_t eepro100_read1(EEPRO100State * s, uint32_t addr)
{
1321
    uint8_t val = 0;
T
ths 已提交
1322
    if (addr <= sizeof(s->mem) - sizeof(val)) {
S
Stefan Weil 已提交
1323
        val = s->mem[addr];
T
ths 已提交
1324 1325 1326 1327 1328
    }

    switch (addr) {
    case SCBStatus:
    case SCBAck:
1329
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1330 1331
        break;
    case SCBCmd:
1332
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
S
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1333 1334 1335
#if 0
        val = eepro100_read_command(s);
#endif
T
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1336 1337
        break;
    case SCBIntmask:
1338
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1339 1340
        break;
    case SCBPort + 3:
1341
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1342 1343 1344 1345
        break;
    case SCBeeprom:
        val = eepro100_read_eeprom(s);
        break;
1346 1347 1348 1349 1350 1351 1352
    case SCBCtrlMDI:
    case SCBCtrlMDI + 1:
    case SCBCtrlMDI + 2:
    case SCBCtrlMDI + 3:
        val = (uint8_t)(eepro100_read_mdi(s) >> (8 * (addr & 3)));
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
        break;
1353
    case SCBpmdr:       /* Power Management Driver Register */
T
ths 已提交
1354
        val = 0;
1355
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1356
        break;
1357 1358 1359
    case SCBgctrl:      /* General Control Register */
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
        break;
1360
    case SCBgstat:      /* General Status Register */
T
ths 已提交
1361 1362
        /* 100 Mbps full duplex, valid link */
        val = 0x07;
1363
        TRACE(OTHER, logout("addr=General Status val=%02x\n", val));
T
ths 已提交
1364 1365 1366 1367 1368 1369 1370 1371 1372 1373
        break;
    default:
        logout("addr=%s val=0x%02x\n", regname(addr), val);
        missing("unknown byte read");
    }
    return val;
}

static uint16_t eepro100_read2(EEPRO100State * s, uint32_t addr)
{
1374
    uint16_t val = 0;
T
ths 已提交
1375
    if (addr <= sizeof(s->mem) - sizeof(val)) {
S
Stefan Weil 已提交
1376
        val = e100_read_reg2(s, addr);
T
ths 已提交
1377 1378 1379 1380
    }

    switch (addr) {
    case SCBStatus:
1381
    case SCBCmd:
1382
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
T
ths 已提交
1383 1384 1385
        break;
    case SCBeeprom:
        val = eepro100_read_eeprom(s);
1386
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
T
ths 已提交
1387
        break;
1388 1389 1390 1391 1392
    case SCBCtrlMDI:
    case SCBCtrlMDI + 2:
        val = (uint16_t)(eepro100_read_mdi(s) >> (8 * (addr & 3)));
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
        break;
T
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1393 1394 1395 1396 1397 1398 1399 1400 1401
    default:
        logout("addr=%s val=0x%04x\n", regname(addr), val);
        missing("unknown word read");
    }
    return val;
}

static uint32_t eepro100_read4(EEPRO100State * s, uint32_t addr)
{
1402
    uint32_t val = 0;
T
ths 已提交
1403
    if (addr <= sizeof(s->mem) - sizeof(val)) {
S
Stefan Weil 已提交
1404
        val = e100_read_reg4(s, addr);
T
ths 已提交
1405 1406 1407 1408
    }

    switch (addr) {
    case SCBStatus:
1409
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
T
ths 已提交
1410 1411
        break;
    case SCBPointer:
1412
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
T
ths 已提交
1413 1414 1415
        break;
    case SCBPort:
        val = eepro100_read_port(s);
1416
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
T
ths 已提交
1417
        break;
1418 1419 1420 1421
    case SCBflash:
        val = eepro100_read_eeprom(s);
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
        break;
T
ths 已提交
1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433
    case SCBCtrlMDI:
        val = eepro100_read_mdi(s);
        break;
    default:
        logout("addr=%s val=0x%08x\n", regname(addr), val);
        missing("unknown longword read");
    }
    return val;
}

static void eepro100_write1(EEPRO100State * s, uint32_t addr, uint8_t val)
{
1434 1435
    /* SCBStatus is readonly. */
    if (addr > SCBStatus && addr <= sizeof(s->mem) - sizeof(val)) {
S
Stefan Weil 已提交
1436
        s->mem[addr] = val;
T
ths 已提交
1437 1438 1439 1440
    }

    switch (addr) {
    case SCBStatus:
1441
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1442 1443
        break;
    case SCBAck:
1444
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1445 1446 1447
        eepro100_acknowledge(s);
        break;
    case SCBCmd:
1448
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1449 1450 1451
        eepro100_write_command(s, val);
        break;
    case SCBIntmask:
1452
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1453 1454 1455 1456 1457
        if (val & BIT(1)) {
            eepro100_swi_interrupt(s);
        }
        eepro100_interrupt(s, 0);
        break;
1458 1459 1460 1461 1462 1463
    case SCBPointer:
    case SCBPointer + 1:
    case SCBPointer + 2:
    case SCBPointer + 3:
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
        break;
1464 1465 1466 1467 1468
    case SCBPort:
    case SCBPort + 1:
    case SCBPort + 2:
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
        break;
T
ths 已提交
1469
    case SCBPort + 3:
1470 1471 1472
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
        eepro100_write_port(s);
        break;
1473
    case SCBFlow:       /* does not exist on 82557 */
T
ths 已提交
1474 1475
    case SCBFlow + 1:
    case SCBFlow + 2:
1476
    case SCBpmdr:       /* does not exist on 82557 */
1477
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1478 1479
        break;
    case SCBeeprom:
1480
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
T
ths 已提交
1481 1482
        eepro100_write_eeprom(s->eeprom, val);
        break;
1483 1484 1485 1486 1487 1488 1489 1490 1491
    case SCBCtrlMDI:
    case SCBCtrlMDI + 1:
    case SCBCtrlMDI + 2:
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
        break;
    case SCBCtrlMDI + 3:
        TRACE(OTHER, logout("addr=%s val=0x%02x\n", regname(addr), val));
        eepro100_write_mdi(s);
        break;
T
ths 已提交
1492 1493 1494 1495 1496 1497 1498 1499
    default:
        logout("addr=%s val=0x%02x\n", regname(addr), val);
        missing("unknown byte write");
    }
}

static void eepro100_write2(EEPRO100State * s, uint32_t addr, uint16_t val)
{
1500 1501
    /* SCBStatus is readonly. */
    if (addr > SCBStatus && addr <= sizeof(s->mem) - sizeof(val)) {
S
Stefan Weil 已提交
1502
        e100_write_reg2(s, addr, val);
T
ths 已提交
1503 1504 1505 1506
    }

    switch (addr) {
    case SCBStatus:
1507
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
1508
        s->mem[SCBAck] = (val >> 8);
T
ths 已提交
1509 1510 1511
        eepro100_acknowledge(s);
        break;
    case SCBCmd:
1512
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
T
ths 已提交
1513 1514 1515
        eepro100_write_command(s, val);
        eepro100_write1(s, SCBIntmask, val >> 8);
        break;
1516 1517 1518 1519
    case SCBPointer:
    case SCBPointer + 2:
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
        break;
1520 1521 1522 1523 1524 1525 1526
    case SCBPort:
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
        break;
    case SCBPort + 2:
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
        eepro100_write_port(s);
        break;
T
ths 已提交
1527
    case SCBeeprom:
1528
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
T
ths 已提交
1529 1530
        eepro100_write_eeprom(s->eeprom, val);
        break;
1531 1532 1533 1534 1535 1536 1537
    case SCBCtrlMDI:
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
        break;
    case SCBCtrlMDI + 2:
        TRACE(OTHER, logout("addr=%s val=0x%04x\n", regname(addr), val));
        eepro100_write_mdi(s);
        break;
T
ths 已提交
1538 1539 1540 1541 1542 1543 1544 1545 1546
    default:
        logout("addr=%s val=0x%04x\n", regname(addr), val);
        missing("unknown word write");
    }
}

static void eepro100_write4(EEPRO100State * s, uint32_t addr, uint32_t val)
{
    if (addr <= sizeof(s->mem) - sizeof(val)) {
S
Stefan Weil 已提交
1547
        e100_write_reg4(s, addr, val);
T
ths 已提交
1548 1549 1550 1551
    }

    switch (addr) {
    case SCBPointer:
1552
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
T
ths 已提交
1553 1554
        break;
    case SCBPort:
1555
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
1556
        eepro100_write_port(s);
T
ths 已提交
1557
        break;
1558 1559 1560 1561 1562
    case SCBflash:
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
        val = val >> 16;
        eepro100_write_eeprom(s->eeprom, val);
        break;
T
ths 已提交
1563
    case SCBCtrlMDI:
1564 1565
        TRACE(OTHER, logout("addr=%s val=0x%08x\n", regname(addr), val));
        eepro100_write_mdi(s);
T
ths 已提交
1566 1567 1568 1569 1570 1571 1572
        break;
    default:
        logout("addr=%s val=0x%08x\n", regname(addr), val);
        missing("unknown longword write");
    }
}

A
Avi Kivity 已提交
1573 1574
static uint64_t eepro100_read(void *opaque, target_phys_addr_t addr,
                              unsigned size)
T
ths 已提交
1575 1576 1577
{
    EEPRO100State *s = opaque;

A
Avi Kivity 已提交
1578 1579 1580 1581 1582 1583
    switch (size) {
    case 1: return eepro100_read1(s, addr);
    case 2: return eepro100_read2(s, addr);
    case 4: return eepro100_read4(s, addr);
    default: abort();
    }
T
ths 已提交
1584 1585
}

A
Avi Kivity 已提交
1586 1587
static void eepro100_write(void *opaque, target_phys_addr_t addr,
                           uint64_t data, unsigned size)
T
ths 已提交
1588 1589 1590
{
    EEPRO100State *s = opaque;

A
Avi Kivity 已提交
1591 1592 1593 1594 1595 1596
    switch (size) {
    case 1: return eepro100_write1(s, addr, data);
    case 2: return eepro100_write2(s, addr, data);
    case 4: return eepro100_write4(s, addr, data);
    default: abort();
    }
T
ths 已提交
1597 1598
}

A
Avi Kivity 已提交
1599 1600 1601 1602
static const MemoryRegionOps eepro100_ops = {
    .read = eepro100_read,
    .write = eepro100_write,
    .endianness = DEVICE_LITTLE_ENDIAN,
T
ths 已提交
1603 1604
};

1605
static int nic_can_receive(VLANClientState *nc)
T
ths 已提交
1606
{
1607
    EEPRO100State *s = DO_UPCAST(NICState, nc, nc)->opaque;
1608
    TRACE(RXTX, logout("%p\n", s));
T
ths 已提交
1609
    return get_ru_state(s) == ru_ready;
S
Stefan Weil 已提交
1610 1611 1612
#if 0
    return !eepro100_buffer_full(s);
#endif
T
ths 已提交
1613 1614
}

1615
static ssize_t nic_receive(VLANClientState *nc, const uint8_t * buf, size_t size)
T
ths 已提交
1616 1617 1618 1619 1620
{
    /* TODO:
     * - Magic packets should set bit 30 in power management driver register.
     * - Interesting packets should set bit 29 in power management driver register.
     */
1621
    EEPRO100State *s = DO_UPCAST(NICState, nc, nc)->opaque;
T
ths 已提交
1622
    uint16_t rfd_status = 0xa000;
1623 1624 1625
#if defined(CONFIG_PAD_RECEIVED_FRAMES)
    uint8_t min_buf[60];
#endif
T
ths 已提交
1626 1627 1628
    static const uint8_t broadcast_macaddr[6] =
        { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };

1629 1630 1631 1632 1633 1634 1635 1636 1637 1638
#if defined(CONFIG_PAD_RECEIVED_FRAMES)
    /* Pad to minimum Ethernet frame length */
    if (size < sizeof(min_buf)) {
        memcpy(min_buf, buf, size);
        memset(&min_buf[size], 0, sizeof(min_buf) - size);
        buf = min_buf;
        size = sizeof(min_buf);
    }
#endif

T
ths 已提交
1639 1640 1641
    if (s->configuration[8] & 0x80) {
        /* CSMA is disabled. */
        logout("%p received while CSMA is disabled\n", s);
1642
        return -1;
1643
#if !defined(CONFIG_PAD_RECEIVED_FRAMES)
1644
    } else if (size < 64 && (s->configuration[7] & BIT(0))) {
T
ths 已提交
1645 1646
        /* Short frame and configuration byte 7/0 (discard short receive) set:
         * Short frame is discarded */
1647
        logout("%p received short frame (%zu byte)\n", s, size);
T
ths 已提交
1648
        s->statistics.rx_short_frame_errors++;
S
Stefan Weil 已提交
1649 1650
        return -1;
#endif
1651
    } else if ((size > MAX_ETH_FRAME_SIZE + 4) && !(s->configuration[18] & BIT(3))) {
T
ths 已提交
1652 1653
        /* Long frame and configuration byte 18/3 (long receive ok) not set:
         * Long frames are discarded. */
1654
        logout("%p received long frame (%zu byte), ignored\n", s, size);
1655
        return -1;
S
Stefan Weil 已提交
1656
    } else if (memcmp(buf, s->conf.macaddr.a, 6) == 0) {       /* !!! */
T
ths 已提交
1657 1658
        /* Frame matches individual address. */
        /* TODO: check configuration byte 15/4 (ignore U/L). */
1659
        TRACE(RXTX, logout("%p received frame for me, len=%zu\n", s, size));
T
ths 已提交
1660 1661
    } else if (memcmp(buf, broadcast_macaddr, 6) == 0) {
        /* Broadcast frame. */
1662
        TRACE(RXTX, logout("%p received broadcast, len=%zu\n", s, size));
T
ths 已提交
1663
        rfd_status |= 0x0002;
S
Stefan Weil 已提交
1664
    } else if (buf[0] & 0x01) {
T
ths 已提交
1665
        /* Multicast frame. */
S
Stefan Weil 已提交
1666
        TRACE(RXTX, logout("%p received multicast, len=%zu,%s\n", s, size, nic_dump(buf, size)));
1667
        if (s->configuration[21] & BIT(3)) {
S
Stefan Weil 已提交
1668 1669 1670 1671 1672 1673
          /* Multicast all bit is set, receive all multicast frames. */
        } else {
          unsigned mcast_idx = compute_mcast_idx(buf);
          assert(mcast_idx < 64);
          if (s->mult[mcast_idx >> 3] & (1 << (mcast_idx & 7))) {
            /* Multicast frame is allowed in hash table. */
1674
          } else if (s->configuration[15] & BIT(0)) {
S
Stefan Weil 已提交
1675 1676 1677 1678 1679 1680
              /* Promiscuous: receive all. */
              rfd_status |= 0x0004;
          } else {
              TRACE(RXTX, logout("%p multicast ignored\n", s));
              return -1;
          }
T
ths 已提交
1681
        }
S
Stefan Weil 已提交
1682
        /* TODO: Next not for promiscuous mode? */
T
ths 已提交
1683
        rfd_status |= 0x0002;
1684
    } else if (s->configuration[15] & BIT(0)) {
T
ths 已提交
1685
        /* Promiscuous: receive all. */
1686
        TRACE(RXTX, logout("%p received frame in promiscuous mode, len=%zu\n", s, size));
T
ths 已提交
1687
        rfd_status |= 0x0004;
1688 1689 1690 1691 1692 1693 1694 1695 1696 1697
    } else if (s->configuration[20] & BIT(6)) {
        /* Multiple IA bit set. */
        unsigned mcast_idx = compute_mcast_idx(buf);
        assert(mcast_idx < 64);
        if (s->mult[mcast_idx >> 3] & (1 << (mcast_idx & 7))) {
            TRACE(RXTX, logout("%p accepted, multiple IA bit set\n", s));
        } else {
            TRACE(RXTX, logout("%p frame ignored, multiple IA bit set\n", s));
            return -1;
        }
T
ths 已提交
1698
    } else {
1699
        TRACE(RXTX, logout("%p received frame, ignored, len=%zu,%s\n", s, size,
1700
              nic_dump(buf, size)));
1701
        return size;
T
ths 已提交
1702 1703 1704
    }

    if (get_ru_state(s) != ru_ready) {
1705 1706
        /* No resources available. */
        logout("no resources, state=%u\n", get_ru_state(s));
S
Stefan Weil 已提交
1707 1708
        /* TODO: RNR interrupt only at first failed frame? */
        eepro100_rnr_interrupt(s);
T
ths 已提交
1709
        s->statistics.rx_resource_errors++;
S
Stefan Weil 已提交
1710 1711 1712
#if 0
        assert(!"no resources");
#endif
1713
        return -1;
T
ths 已提交
1714
    }
S
Stefan Weil 已提交
1715
    /* !!! */
A
Anthony Liguori 已提交
1716
    eepro100_rx_t rx;
1717 1718
    pci_dma_read(&s->dev, s->ru_base + s->ru_offset,
                 (uint8_t *) &rx, sizeof(eepro100_rx_t));
T
ths 已提交
1719 1720
    uint16_t rfd_command = le16_to_cpu(rx.command);
    uint16_t rfd_size = le16_to_cpu(rx.size);
1721 1722 1723 1724 1725 1726

    if (size > rfd_size) {
        logout("Receive buffer (%" PRId16 " bytes) too small for data "
            "(%zu bytes); data truncated\n", rfd_size, size);
        size = rfd_size;
    }
1727
#if !defined(CONFIG_PAD_RECEIVED_FRAMES)
T
ths 已提交
1728 1729 1730
    if (size < 64) {
        rfd_status |= 0x0080;
    }
1731
#endif
1732 1733
    TRACE(OTHER, logout("command 0x%04x, link 0x%08x, addr 0x%08x, size %u\n",
          rfd_command, rx.link, rx.rx_buf_addr, rfd_size));
1734 1735 1736 1737
    stw_le_pci_dma(&s->dev, s->ru_base + s->ru_offset +
                offsetof(eepro100_rx_t, status), rfd_status);
    stw_le_pci_dma(&s->dev, s->ru_base + s->ru_offset +
                offsetof(eepro100_rx_t, count), size);
T
ths 已提交
1738
    /* Early receive interrupt not supported. */
S
Stefan Weil 已提交
1739 1740 1741
#if 0
    eepro100_er_interrupt(s);
#endif
T
ths 已提交
1742
    /* Receive CRC Transfer not supported. */
1743
    if (s->configuration[18] & BIT(2)) {
1744 1745 1746
        missing("Receive CRC Transfer");
        return -1;
    }
T
ths 已提交
1747
    /* TODO: check stripping enable bit. */
S
Stefan Weil 已提交
1748 1749 1750
#if 0
    assert(!(s->configuration[17] & BIT(0)));
#endif
1751 1752
    pci_dma_write(&s->dev, s->ru_base + s->ru_offset +
                  sizeof(eepro100_rx_t), buf, size);
T
ths 已提交
1753 1754 1755
    s->statistics.rx_good_frames++;
    eepro100_fr_interrupt(s);
    s->ru_offset = le32_to_cpu(rx.link);
1756
    if (rfd_command & COMMAND_EL) {
T
ths 已提交
1757
        /* EL bit is set, so this was the last frame. */
1758 1759
        logout("receive: Running out of frames\n");
        set_ru_state(s, ru_suspended);
T
ths 已提交
1760
    }
1761
    if (rfd_command & COMMAND_S) {
T
ths 已提交
1762 1763 1764
        /* S bit is set. */
        set_ru_state(s, ru_suspended);
    }
1765
    return size;
T
ths 已提交
1766 1767
}

J
Juan Quintela 已提交
1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791
static const VMStateDescription vmstate_eepro100 = {
    .version_id = 3,
    .minimum_version_id = 2,
    .minimum_version_id_old = 2,
    .fields      = (VMStateField []) {
        VMSTATE_PCI_DEVICE(dev, EEPRO100State),
        VMSTATE_UNUSED(32),
        VMSTATE_BUFFER(mult, EEPRO100State),
        VMSTATE_BUFFER(mem, EEPRO100State),
        /* Save all members of struct between scb_stat and mem. */
        VMSTATE_UINT8(scb_stat, EEPRO100State),
        VMSTATE_UINT8(int_stat, EEPRO100State),
        VMSTATE_UNUSED(3*4),
        VMSTATE_MACADDR(conf.macaddr, EEPRO100State),
        VMSTATE_UNUSED(19*4),
        VMSTATE_UINT16_ARRAY(mdimem, EEPRO100State, 32),
        /* The eeprom should be saved and restored by its own routines. */
        VMSTATE_UINT32(device, EEPRO100State),
        /* TODO check device. */
        VMSTATE_UINT32(cu_base, EEPRO100State),
        VMSTATE_UINT32(cu_offset, EEPRO100State),
        VMSTATE_UINT32(ru_base, EEPRO100State),
        VMSTATE_UINT32(ru_offset, EEPRO100State),
        VMSTATE_UINT32(statsaddr, EEPRO100State),
1792
        /* Save eepro100_stats_t statistics. */
J
Juan Quintela 已提交
1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816
        VMSTATE_UINT32(statistics.tx_good_frames, EEPRO100State),
        VMSTATE_UINT32(statistics.tx_max_collisions, EEPRO100State),
        VMSTATE_UINT32(statistics.tx_late_collisions, EEPRO100State),
        VMSTATE_UINT32(statistics.tx_underruns, EEPRO100State),
        VMSTATE_UINT32(statistics.tx_lost_crs, EEPRO100State),
        VMSTATE_UINT32(statistics.tx_deferred, EEPRO100State),
        VMSTATE_UINT32(statistics.tx_single_collisions, EEPRO100State),
        VMSTATE_UINT32(statistics.tx_multiple_collisions, EEPRO100State),
        VMSTATE_UINT32(statistics.tx_total_collisions, EEPRO100State),
        VMSTATE_UINT32(statistics.rx_good_frames, EEPRO100State),
        VMSTATE_UINT32(statistics.rx_crc_errors, EEPRO100State),
        VMSTATE_UINT32(statistics.rx_alignment_errors, EEPRO100State),
        VMSTATE_UINT32(statistics.rx_resource_errors, EEPRO100State),
        VMSTATE_UINT32(statistics.rx_overrun_errors, EEPRO100State),
        VMSTATE_UINT32(statistics.rx_cdt_errors, EEPRO100State),
        VMSTATE_UINT32(statistics.rx_short_frame_errors, EEPRO100State),
        VMSTATE_UINT32(statistics.fc_xmt_pause, EEPRO100State),
        VMSTATE_UINT32(statistics.fc_rcv_pause, EEPRO100State),
        VMSTATE_UINT32(statistics.fc_rcv_unsupported, EEPRO100State),
        VMSTATE_UINT16(statistics.xmt_tco_frames, EEPRO100State),
        VMSTATE_UINT16(statistics.rcv_tco_frames, EEPRO100State),
        /* Configuration bytes. */
        VMSTATE_BUFFER(configuration, EEPRO100State),
        VMSTATE_END_OF_LIST()
1817
    }
J
Juan Quintela 已提交
1818
};
T
ths 已提交
1819

1820
static void nic_cleanup(VLANClientState *nc)
1821
{
1822
    EEPRO100State *s = DO_UPCAST(NICState, nc, nc)->opaque;
1823

1824
    s->nic = NULL;
1825 1826
}

S
Stefan Weil 已提交
1827
static int pci_nic_uninit(PCIDevice *pci_dev)
1828
{
S
Stefan Weil 已提交
1829
    EEPRO100State *s = DO_UPCAST(EEPRO100State, dev, pci_dev);
1830

A
Avi Kivity 已提交
1831 1832 1833
    memory_region_destroy(&s->mmio_bar);
    memory_region_destroy(&s->io_bar);
    memory_region_destroy(&s->flash_bar);
A
Alex Williamson 已提交
1834
    vmstate_unregister(&pci_dev->qdev, s->vmstate, s);
1835
    eeprom93xx_free(&pci_dev->qdev, s->eeprom);
1836
    qemu_del_vlan_client(&s->nic->nc);
1837 1838 1839
    return 0;
}

1840 1841 1842 1843 1844 1845 1846 1847
static NetClientInfo net_eepro100_info = {
    .type = NET_CLIENT_TYPE_NIC,
    .size = sizeof(NICState),
    .can_receive = nic_can_receive,
    .receive = nic_receive,
    .cleanup = nic_cleanup,
};

1848
static int e100_nic_init(PCIDevice *pci_dev)
T
ths 已提交
1849
{
1850
    EEPRO100State *s = DO_UPCAST(EEPRO100State, dev, pci_dev);
1851 1852
    E100PCIDeviceInfo *e100_device = DO_UPCAST(E100PCIDeviceInfo, pci.qdev,
                                               pci_dev->qdev.info);
T
ths 已提交
1853

1854
    TRACE(OTHER, logout("\n"));
T
ths 已提交
1855

1856
    s->device = e100_device->device;
T
ths 已提交
1857

1858
    e100_pci_reset(s, e100_device);
T
ths 已提交
1859 1860 1861

    /* Add 64 * 2 EEPROM. i82557 and i82558 support a 64 word EEPROM,
     * i82559 and later support 64 or 256 word EEPROM. */
1862
    s->eeprom = eeprom93xx_new(&pci_dev->qdev, EEPROM_SIZE);
T
ths 已提交
1863 1864

    /* Handler for memory-mapped I/O */
A
Avi Kivity 已提交
1865 1866
    memory_region_init_io(&s->mmio_bar, &eepro100_ops, s, "eepro100-mmio",
                          PCI_MEM_SIZE);
1867
    pci_register_bar(&s->dev, 0, PCI_BASE_ADDRESS_MEM_PREFETCH, &s->mmio_bar);
A
Avi Kivity 已提交
1868 1869
    memory_region_init_io(&s->io_bar, &eepro100_ops, s, "eepro100-io",
                          PCI_IO_SIZE);
1870
    pci_register_bar(&s->dev, 1, PCI_BASE_ADDRESS_SPACE_IO, &s->io_bar);
A
Avi Kivity 已提交
1871 1872 1873
    /* FIXME: flash aliases to mmio?! */
    memory_region_init_io(&s->flash_bar, &eepro100_ops, s, "eepro100-flash",
                          PCI_FLASH_SIZE);
1874
    pci_register_bar(&s->dev, 2, 0, &s->flash_bar);
T
ths 已提交
1875

1876
    qemu_macaddr_default_if_unset(&s->conf.macaddr);
1877
    logout("macaddr: %s\n", nic_dump(&s->conf.macaddr.a[0], 6));
T
ths 已提交
1878 1879 1880

    nic_reset(s);

1881 1882
    s->nic = qemu_new_nic(&net_eepro100_info, &s->conf,
                          pci_dev->qdev.info->name, pci_dev->qdev.id, s);
T
ths 已提交
1883

1884 1885
    qemu_format_nic_info_str(&s->nic->nc, s->conf.macaddr.a);
    TRACE(OTHER, logout("%s\n", s->nic->nc.info_str));
T
ths 已提交
1886

1887
    qemu_register_reset(nic_reset, s);
T
ths 已提交
1888

1889
    s->vmstate = g_malloc(sizeof(vmstate_eepro100));
J
Juan Quintela 已提交
1890
    memcpy(s->vmstate, &vmstate_eepro100, sizeof(vmstate_eepro100));
1891
    s->vmstate->name = s->nic->nc.model;
A
Alex Williamson 已提交
1892
    vmstate_register(&pci_dev->qdev, -1, s->vmstate, s);
S
Stefan Weil 已提交
1893

1894 1895
    add_boot_device_path(s->conf.bootindex, &pci_dev->qdev, "/ethernet-phy@0");

1896
    return 0;
T
ths 已提交
1897 1898
}

1899
static E100PCIDeviceInfo e100_devices[] = {
1900
    {
1901 1902 1903 1904
        .pci.qdev.name = "i82550",
        .pci.qdev.desc = "Intel i82550 Ethernet",
        .device = i82550,
        /* TODO: check device id. */
1905
        .pci.device_id = PCI_DEVICE_ID_INTEL_82551IT,
1906
        /* Revision ID: 0x0c, 0x0d, 0x0e. */
1907
        .pci.revision = 0x0e,
1908 1909 1910 1911 1912
        /* TODO: check size of statistical counters. */
        .stats_size = 80,
        /* TODO: check extended tcb support. */
        .has_extended_tcb_support = true,
        .power_management = true,
S
Stefan Weil 已提交
1913
    },{
1914 1915 1916
        .pci.qdev.name = "i82551",
        .pci.qdev.desc = "Intel i82551 Ethernet",
        .device = i82551,
1917
        .pci.device_id = PCI_DEVICE_ID_INTEL_82551IT,
1918
        /* Revision ID: 0x0f, 0x10. */
1919
        .pci.revision = 0x0f,
1920 1921 1922 1923
        /* TODO: check size of statistical counters. */
        .stats_size = 80,
        .has_extended_tcb_support = true,
        .power_management = true,
1924
    },{
1925 1926 1927
        .pci.qdev.name = "i82557a",
        .pci.qdev.desc = "Intel i82557A Ethernet",
        .device = i82557A,
1928 1929
        .pci.device_id = PCI_DEVICE_ID_INTEL_82557,
        .pci.revision = 0x01,
1930
        .power_management = false,
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Stefan Weil 已提交
1931
    },{
1932 1933 1934
        .pci.qdev.name = "i82557b",
        .pci.qdev.desc = "Intel i82557B Ethernet",
        .device = i82557B,
1935 1936
        .pci.device_id = PCI_DEVICE_ID_INTEL_82557,
        .pci.revision = 0x02,
1937
        .power_management = false,
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1938
    },{
1939 1940 1941
        .pci.qdev.name = "i82557c",
        .pci.qdev.desc = "Intel i82557C Ethernet",
        .device = i82557C,
1942 1943
        .pci.device_id = PCI_DEVICE_ID_INTEL_82557,
        .pci.revision = 0x03,
1944
        .power_management = false,
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1945
    },{
1946 1947 1948
        .pci.qdev.name = "i82558a",
        .pci.qdev.desc = "Intel i82558A Ethernet",
        .device = i82558A,
1949 1950
        .pci.device_id = PCI_DEVICE_ID_INTEL_82557,
        .pci.revision = 0x04,
1951 1952 1953
        .stats_size = 76,
        .has_extended_tcb_support = true,
        .power_management = true,
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1954
    },{
1955 1956 1957
        .pci.qdev.name = "i82558b",
        .pci.qdev.desc = "Intel i82558B Ethernet",
        .device = i82558B,
1958 1959
        .pci.device_id = PCI_DEVICE_ID_INTEL_82557,
        .pci.revision = 0x05,
1960 1961 1962
        .stats_size = 76,
        .has_extended_tcb_support = true,
        .power_management = true,
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1963
    },{
1964 1965 1966
        .pci.qdev.name = "i82559a",
        .pci.qdev.desc = "Intel i82559A Ethernet",
        .device = i82559A,
1967 1968
        .pci.device_id = PCI_DEVICE_ID_INTEL_82557,
        .pci.revision = 0x06,
1969 1970 1971
        .stats_size = 80,
        .has_extended_tcb_support = true,
        .power_management = true,
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Stefan Weil 已提交
1972
    },{
1973 1974 1975
        .pci.qdev.name = "i82559b",
        .pci.qdev.desc = "Intel i82559B Ethernet",
        .device = i82559B,
1976 1977
        .pci.device_id = PCI_DEVICE_ID_INTEL_82557,
        .pci.revision = 0x07,
1978 1979 1980
        .stats_size = 80,
        .has_extended_tcb_support = true,
        .power_management = true,
1981
    },{
1982 1983 1984
        .pci.qdev.name = "i82559c",
        .pci.qdev.desc = "Intel i82559C Ethernet",
        .device = i82559C,
1985
        .pci.device_id = PCI_DEVICE_ID_INTEL_82557,
1986
#if 0
1987
        .pci.revision = 0x08,
1988 1989
#endif
        /* TODO: Windows wants revision id 0x0c. */
1990 1991 1992 1993 1994
        .pci.revision = 0x0c,
#if EEPROM_SIZE > 0
        .pci.subsystem_vendor_id = PCI_VENDOR_ID_INTEL,
        .pci.subsystem_id = 0x0040,
#endif
1995 1996 1997
        .stats_size = 80,
        .has_extended_tcb_support = true,
        .power_management = true,
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1998
    },{
1999 2000 2001
        .pci.qdev.name = "i82559er",
        .pci.qdev.desc = "Intel i82559ER Ethernet",
        .device = i82559ER,
2002 2003
        .pci.device_id = PCI_DEVICE_ID_INTEL_82551IT,
        .pci.revision = 0x09,
2004 2005 2006
        .stats_size = 80,
        .has_extended_tcb_support = true,
        .power_management = true,
2007
    },{
2008 2009 2010 2011
        .pci.qdev.name = "i82562",
        .pci.qdev.desc = "Intel i82562 Ethernet",
        .device = i82562,
        /* TODO: check device id. */
2012
        .pci.device_id = PCI_DEVICE_ID_INTEL_82551IT,
2013
        /* TODO: wrong revision id. */
2014
        .pci.revision = 0x0e,
2015 2016 2017
        .stats_size = 80,
        .has_extended_tcb_support = true,
        .power_management = true,
2018 2019 2020 2021 2022
    },{
        /* Toshiba Tecra 8200. */
        .pci.qdev.name = "i82801",
        .pci.qdev.desc = "Intel i82801 Ethernet",
        .device = i82801,
2023 2024
        .pci.device_id = 0x2449,
        .pci.revision = 0x03,
2025 2026 2027
        .stats_size = 80,
        .has_extended_tcb_support = true,
        .power_management = true,
2028 2029 2030
    }
};

2031 2032 2033 2034 2035
static Property e100_properties[] = {
    DEFINE_NIC_PROPERTIES(EEPRO100State, conf),
    DEFINE_PROP_END_OF_LIST(),
};

P
Paul Brook 已提交
2036
static void eepro100_register_devices(void)
T
ths 已提交
2037
{
2038 2039 2040
    size_t i;
    for (i = 0; i < ARRAY_SIZE(e100_devices); i++) {
        PCIDeviceInfo *pci_dev = &e100_devices[i].pci;
2041 2042
        /* We use the same rom file for all device ids.
           QEMU fixes the device id during rom load. */
2043 2044
        pci_dev->vendor_id = PCI_VENDOR_ID_INTEL;
        pci_dev->class_id = PCI_CLASS_NETWORK_ETHERNET;
2045
        pci_dev->romfile = "pxe-eepro100.rom";
2046 2047 2048 2049 2050 2051
        pci_dev->init = e100_nic_init;
        pci_dev->exit = pci_nic_uninit;
        pci_dev->qdev.props = e100_properties;
        pci_dev->qdev.size = sizeof(EEPRO100State);
        pci_qdev_register(pci_dev);
    }
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2052 2053
}

P
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2054
device_init(eepro100_register_devices)