net.c 76.0 KB
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/*
 * QEMU System Emulator
 *
 * Copyright (c) 2003-2008 Fabrice Bellard
 *
 * Permission is hereby granted, free of charge, to any person obtaining a copy
 * of this software and associated documentation files (the "Software"), to deal
 * in the Software without restriction, including without limitation the rights
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
 * copies of the Software, and to permit persons to whom the Software is
 * furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
 * THE SOFTWARE.
 */
#include <unistd.h>
#include <fcntl.h>
#include <signal.h>
#include <time.h>
#include <errno.h>
#include <sys/time.h>
#include <zlib.h>

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/* Needed early for HOST_BSD etc. */
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#include "config-host.h"

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#ifndef _WIN32
#include <sys/times.h>
#include <sys/wait.h>
#include <termios.h>
#include <sys/mman.h>
#include <sys/ioctl.h>
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#include <sys/resource.h>
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#include <sys/socket.h>
#include <netinet/in.h>
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#include <net/if.h>
#ifdef __NetBSD__
#include <net/if_tap.h>
#endif
#ifdef __linux__
#include <linux/if_tun.h>
#endif
#include <arpa/inet.h>
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#include <dirent.h>
#include <netdb.h>
#include <sys/select.h>
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#ifdef HOST_BSD
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#include <sys/stat.h>
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#if defined(__FreeBSD__) || defined(__DragonFly__)
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#include <libutil.h>
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#else
#include <util.h>
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#endif
#elif defined (__GLIBC__) && defined (__FreeBSD_kernel__)
#include <freebsd/stdlib.h>
#else
#ifdef __linux__
#include <pty.h>
#include <malloc.h>
#include <linux/rtc.h>

/* For the benefit of older linux systems which don't supply it,
   we use a local copy of hpet.h. */
/* #include <linux/hpet.h> */
#include "hpet.h"

#include <linux/ppdev.h>
#include <linux/parport.h>
#endif
#ifdef __sun__
#include <sys/stat.h>
#include <sys/ethernet.h>
#include <sys/sockio.h>
#include <netinet/arp.h>
#include <netinet/in.h>
#include <netinet/in_systm.h>
#include <netinet/ip.h>
#include <netinet/ip_icmp.h> // must come after ip.h
#include <netinet/udp.h>
#include <netinet/tcp.h>
#include <net/if.h>
#include <syslog.h>
#include <stropts.h>
#endif
#endif
#endif

#if defined(__OpenBSD__)
#include <util.h>
#endif

#if defined(CONFIG_VDE)
#include <libvdeplug.h>
#endif

#ifdef _WIN32
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#include <windows.h>
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#include <malloc.h>
#include <sys/timeb.h>
#include <mmsystem.h>
#define getopt_long_only getopt_long
#define memalign(align, size) malloc(size)
#endif

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#include "qemu-common.h"
#include "net.h"
#include "monitor.h"
#include "sysemu.h"
#include "qemu-timer.h"
#include "qemu-char.h"
#include "audio/audio.h"
#include "qemu_socket.h"
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#include "qemu-log.h"
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#if defined(CONFIG_SLIRP)
#include "libslirp.h"
#endif


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static VLANState *first_vlan;

/***********************************************************/
/* network device redirectors */

#if defined(DEBUG_NET) || defined(DEBUG_SLIRP)
static void hex_dump(FILE *f, const uint8_t *buf, int size)
{
    int len, i, j, c;

    for(i=0;i<size;i+=16) {
        len = size - i;
        if (len > 16)
            len = 16;
        fprintf(f, "%08x ", i);
        for(j=0;j<16;j++) {
            if (j < len)
                fprintf(f, " %02x", buf[i+j]);
            else
                fprintf(f, "   ");
        }
        fprintf(f, " ");
        for(j=0;j<len;j++) {
            c = buf[i+j];
            if (c < ' ' || c > '~')
                c = '.';
            fprintf(f, "%c", c);
        }
        fprintf(f, "\n");
    }
}
#endif

static int parse_macaddr(uint8_t *macaddr, const char *p)
{
    int i;
    char *last_char;
    long int offset;

    errno = 0;
    offset = strtol(p, &last_char, 0);    
    if (0 == errno && '\0' == *last_char &&
            offset >= 0 && offset <= 0xFFFFFF) {
        macaddr[3] = (offset & 0xFF0000) >> 16;
        macaddr[4] = (offset & 0xFF00) >> 8;
        macaddr[5] = offset & 0xFF;
        return 0;
    } else {
        for(i = 0; i < 6; i++) {
            macaddr[i] = strtol(p, (char **)&p, 16);
            if (i == 5) {
                if (*p != '\0')
                    return -1;
            } else {
                if (*p != ':' && *p != '-')
                    return -1;
                p++;
            }
        }
        return 0;    
    }

    return -1;
}

static int get_str_sep(char *buf, int buf_size, const char **pp, int sep)
{
    const char *p, *p1;
    int len;
    p = *pp;
    p1 = strchr(p, sep);
    if (!p1)
        return -1;
    len = p1 - p;
    p1++;
    if (buf_size > 0) {
        if (len > buf_size - 1)
            len = buf_size - 1;
        memcpy(buf, p, len);
        buf[len] = '\0';
    }
    *pp = p1;
    return 0;
}

int parse_host_src_port(struct sockaddr_in *haddr,
                        struct sockaddr_in *saddr,
                        const char *input_str)
{
    char *str = strdup(input_str);
    char *host_str = str;
    char *src_str;
    const char *src_str2;
    char *ptr;

    /*
     * Chop off any extra arguments at the end of the string which
     * would start with a comma, then fill in the src port information
     * if it was provided else use the "any address" and "any port".
     */
    if ((ptr = strchr(str,',')))
        *ptr = '\0';

    if ((src_str = strchr(input_str,'@'))) {
        *src_str = '\0';
        src_str++;
    }

    if (parse_host_port(haddr, host_str) < 0)
        goto fail;

    src_str2 = src_str;
    if (!src_str || *src_str == '\0')
        src_str2 = ":0";

    if (parse_host_port(saddr, src_str2) < 0)
        goto fail;

    free(str);
    return(0);

fail:
    free(str);
    return -1;
}

int parse_host_port(struct sockaddr_in *saddr, const char *str)
{
    char buf[512];
    struct hostent *he;
    const char *p, *r;
    int port;

    p = str;
    if (get_str_sep(buf, sizeof(buf), &p, ':') < 0)
        return -1;
    saddr->sin_family = AF_INET;
    if (buf[0] == '\0') {
        saddr->sin_addr.s_addr = 0;
    } else {
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        if (qemu_isdigit(buf[0])) {
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            if (!inet_aton(buf, &saddr->sin_addr))
                return -1;
        } else {
            if ((he = gethostbyname(buf)) == NULL)
                return - 1;
            saddr->sin_addr = *(struct in_addr *)he->h_addr;
        }
    }
    port = strtol(p, (char **)&r, 0);
    if (r == p)
        return -1;
    saddr->sin_port = htons(port);
    return 0;
}

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#if !defined(_WIN32) && 0
static int parse_unix_path(struct sockaddr_un *uaddr, const char *str)
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{
    const char *p;
    int len;

    len = MIN(108, strlen(str));
    p = strchr(str, ',');
    if (p)
	len = MIN(len, p - str);

    memset(uaddr, 0, sizeof(*uaddr));

    uaddr->sun_family = AF_UNIX;
    memcpy(uaddr->sun_path, str, len);

    return 0;
}
#endif

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void qemu_format_nic_info_str(VLANClientState *vc, uint8_t macaddr[6])
{
    snprintf(vc->info_str, sizeof(vc->info_str),
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             "model=%s,macaddr=%02x:%02x:%02x:%02x:%02x:%02x",
             vc->model,
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             macaddr[0], macaddr[1], macaddr[2],
             macaddr[3], macaddr[4], macaddr[5]);
}

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static char *assign_name(VLANClientState *vc1, const char *model)
{
    VLANState *vlan;
    char buf[256];
    int id = 0;

    for (vlan = first_vlan; vlan; vlan = vlan->next) {
        VLANClientState *vc;

        for (vc = vlan->first_client; vc; vc = vc->next)
            if (vc != vc1 && strcmp(vc->model, model) == 0)
                id++;
    }

    snprintf(buf, sizeof(buf), "%s.%d", model, id);

    return strdup(buf);
}

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VLANClientState *qemu_new_vlan_client(VLANState *vlan,
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                                      const char *model,
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                                      const char *name,
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                                      NetCanReceive *can_receive,
                                      NetReceive *receive,
                                      NetReceiveIOV *receive_iov,
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                                      NetCleanup *cleanup,
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                                      void *opaque)
{
    VLANClientState *vc, **pvc;
    vc = qemu_mallocz(sizeof(VLANClientState));
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    vc->model = strdup(model);
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    if (name)
        vc->name = strdup(name);
    else
        vc->name = assign_name(vc, model);
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    vc->can_receive = can_receive;
    vc->receive = receive;
    vc->receive_iov = receive_iov;
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    vc->cleanup = cleanup;
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    vc->opaque = opaque;
    vc->vlan = vlan;

    vc->next = NULL;
    pvc = &vlan->first_client;
    while (*pvc != NULL)
        pvc = &(*pvc)->next;
    *pvc = vc;
    return vc;
}

void qemu_del_vlan_client(VLANClientState *vc)
{
    VLANClientState **pvc = &vc->vlan->first_client;

    while (*pvc != NULL)
        if (*pvc == vc) {
            *pvc = vc->next;
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            if (vc->cleanup) {
                vc->cleanup(vc);
            }
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            free(vc->name);
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            free(vc->model);
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            qemu_free(vc);
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            break;
        } else
            pvc = &(*pvc)->next;
}

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VLANClientState *qemu_find_vlan_client(VLANState *vlan, void *opaque)
{
    VLANClientState **pvc = &vlan->first_client;

    while (*pvc != NULL)
        if ((*pvc)->opaque == opaque)
            return *pvc;
        else
            pvc = &(*pvc)->next;

    return NULL;
}

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int qemu_can_send_packet(VLANClientState *sender)
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{
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    VLANState *vlan = sender->vlan;
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    VLANClientState *vc;

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    for (vc = vlan->first_client; vc != NULL; vc = vc->next) {
        if (vc == sender) {
            continue;
        }

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        /* no can_receive() handler, they can always receive */
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        if (!vc->can_receive || vc->can_receive(vc)) {
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            return 1;
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        }
    }
    return 0;
}

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static int
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qemu_deliver_packet(VLANClientState *sender, const uint8_t *buf, int size)
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{
    VLANClientState *vc;
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    int ret = -1;
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    sender->vlan->delivering = 1;

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    for (vc = sender->vlan->first_client; vc != NULL; vc = vc->next) {
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        ssize_t len;

        if (vc == sender) {
            continue;
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        }
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        if (vc->link_down) {
            ret = size;
            continue;
        }

        len = vc->receive(vc, buf, size);

        ret = (ret >= 0) ? ret : len;
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    }
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    sender->vlan->delivering = 0;

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    return ret;
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}

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void qemu_purge_queued_packets(VLANClientState *vc)
{
    VLANPacket **pp = &vc->vlan->send_queue;

    while (*pp != NULL) {
        VLANPacket *packet = *pp;

        if (packet->sender == vc) {
            *pp = packet->next;
            qemu_free(packet);
        } else {
            pp = &packet->next;
        }
    }
}

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void qemu_flush_queued_packets(VLANClientState *vc)
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{
    VLANPacket *packet;

    while ((packet = vc->vlan->send_queue) != NULL) {
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        int ret;

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        vc->vlan->send_queue = packet->next;
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        ret = qemu_deliver_packet(packet->sender, packet->data, packet->size);
        if (ret == 0 && packet->sent_cb != NULL) {
            packet->next = vc->vlan->send_queue;
            vc->vlan->send_queue = packet;
            break;
        }

        if (packet->sent_cb)
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            packet->sent_cb(packet->sender, ret);
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        qemu_free(packet);
    }
}

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static void qemu_enqueue_packet(VLANClientState *sender,
                                const uint8_t *buf, int size,
                                NetPacketSent *sent_cb)
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{
    VLANPacket *packet;

    packet = qemu_malloc(sizeof(VLANPacket) + size);
    packet->next = sender->vlan->send_queue;
    packet->sender = sender;
    packet->size = size;
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    packet->sent_cb = sent_cb;
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    memcpy(packet->data, buf, size);
    sender->vlan->send_queue = packet;
}

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ssize_t qemu_send_packet_async(VLANClientState *sender,
                               const uint8_t *buf, int size,
                               NetPacketSent *sent_cb)
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{
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    int ret;
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    if (sender->link_down) {
        return size;
    }
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#ifdef DEBUG_NET
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    printf("vlan %d send:\n", sender->vlan->id);
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    hex_dump(stdout, buf, size);
#endif
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    if (sender->vlan->delivering) {
        qemu_enqueue_packet(sender, buf, size, NULL);
        return size;
    }

    ret = qemu_deliver_packet(sender, buf, size);
    if (ret == 0 && sent_cb != NULL) {
        qemu_enqueue_packet(sender, buf, size, sent_cb);
        return 0;
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    }
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    qemu_flush_queued_packets(sender);

    return ret;
}

void qemu_send_packet(VLANClientState *vc, const uint8_t *buf, int size)
{
    qemu_send_packet_async(vc, buf, size, NULL);
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}

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static ssize_t vc_sendv_compat(VLANClientState *vc, const struct iovec *iov,
                               int iovcnt)
{
    uint8_t buffer[4096];
    size_t offset = 0;
    int i;

    for (i = 0; i < iovcnt; i++) {
        size_t len;

        len = MIN(sizeof(buffer) - offset, iov[i].iov_len);
        memcpy(buffer + offset, iov[i].iov_base, len);
        offset += len;
    }

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    return vc->receive(vc, buffer, offset);
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}

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static ssize_t calc_iov_length(const struct iovec *iov, int iovcnt)
{
    size_t offset = 0;
    int i;

    for (i = 0; i < iovcnt; i++)
        offset += iov[i].iov_len;
    return offset;
}

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static int qemu_deliver_packet_iov(VLANClientState *sender,
                                   const struct iovec *iov, int iovcnt)
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{
    VLANClientState *vc;
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    int ret = -1;

    sender->vlan->delivering = 1;

    for (vc = sender->vlan->first_client; vc != NULL; vc = vc->next) {
        ssize_t len;

        if (vc == sender) {
            continue;
        }

        if (vc->link_down) {
            ret = calc_iov_length(iov, iovcnt);
            continue;
        }

        if (vc->receive_iov) {
            len = vc->receive_iov(vc, iov, iovcnt);
        } else {
            len = vc_sendv_compat(vc, iov, iovcnt);
        }

        ret = (ret >= 0) ? ret : len;
    }

    sender->vlan->delivering = 0;

    return ret;
}

static ssize_t qemu_enqueue_packet_iov(VLANClientState *sender,
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                                       const struct iovec *iov, int iovcnt,
                                       NetPacketSent *sent_cb)
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{
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    VLANPacket *packet;
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    size_t max_len = 0;
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    int i;
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    max_len = calc_iov_length(iov, iovcnt);
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    packet = qemu_malloc(sizeof(VLANPacket) + max_len);
    packet->next = sender->vlan->send_queue;
    packet->sender = sender;
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    packet->sent_cb = sent_cb;
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    packet->size = 0;
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    for (i = 0; i < iovcnt; i++) {
        size_t len = iov[i].iov_len;
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        memcpy(packet->data + packet->size, iov[i].iov_base, len);
        packet->size += len;
    }
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    sender->vlan->send_queue = packet;
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    return packet->size;
}
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ssize_t qemu_sendv_packet_async(VLANClientState *sender,
                                const struct iovec *iov, int iovcnt,
                                NetPacketSent *sent_cb)
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{
    int ret;

    if (sender->link_down) {
        return calc_iov_length(iov, iovcnt);
    }

    if (sender->vlan->delivering) {
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        return qemu_enqueue_packet_iov(sender, iov, iovcnt, NULL);
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    }

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    ret = qemu_deliver_packet_iov(sender, iov, iovcnt);
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    if (ret == 0 && sent_cb != NULL) {
        qemu_enqueue_packet_iov(sender, iov, iovcnt, sent_cb);
        return 0;
    }
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    qemu_flush_queued_packets(sender);

    return ret;
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}

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ssize_t
qemu_sendv_packet(VLANClientState *vc, const struct iovec *iov, int iovcnt)
{
    return qemu_sendv_packet_async(vc, iov, iovcnt, NULL);
}

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static void config_error(Monitor *mon, const char *fmt, ...)
{
    va_list ap;

    va_start(ap, fmt);
    if (mon) {
        monitor_vprintf(mon, fmt, ap);
    } else {
        fprintf(stderr, "qemu: ");
        vfprintf(stderr, fmt, ap);
        exit(1);
    }
    va_end(ap);
}

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#if defined(CONFIG_SLIRP)

/* slirp network adapter */

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#define SLIRP_CFG_HOSTFWD 1
#define SLIRP_CFG_LEGACY  2
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struct slirp_config_str {
    struct slirp_config_str *next;
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    int flags;
    char str[1024];
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    int legacy_format;
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};

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static int slirp_inited;
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static struct slirp_config_str *slirp_configs;
const char *legacy_tftp_prefix;
const char *legacy_bootp_filename;
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static VLANClientState *slirp_vc;

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static void slirp_hostfwd(Monitor *mon, const char *redir_str);
static void slirp_guestfwd(Monitor *mon, const char *config_str,
                           int legacy_format);
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#ifndef _WIN32
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static const char *legacy_smb_export;

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static void slirp_smb(const char *exported_dir, struct in_addr vserver_addr);
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#endif
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int slirp_can_output(void)
{
    return !slirp_vc || qemu_can_send_packet(slirp_vc);
}

void slirp_output(const uint8_t *pkt, int pkt_len)
{
#ifdef DEBUG_SLIRP
    printf("slirp output:\n");
    hex_dump(stdout, pkt, pkt_len);
#endif
    if (!slirp_vc)
        return;
    qemu_send_packet(slirp_vc, pkt, pkt_len);
}

int slirp_is_inited(void)
{
    return slirp_inited;
}

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static ssize_t slirp_receive(VLANClientState *vc, const uint8_t *buf, size_t size)
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{
#ifdef DEBUG_SLIRP
    printf("slirp input:\n");
    hex_dump(stdout, buf, size);
#endif
    slirp_input(buf, size);
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    return size;
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}

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static int slirp_in_use;

static void net_slirp_cleanup(VLANClientState *vc)
{
    slirp_in_use = 0;
}

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static int net_slirp_init(Monitor *mon, VLANState *vlan, const char *model,
737 738 739 740 741 742
                          const char *name, int restricted,
                          const char *vnetwork, const char *vhost,
                          const char *vhostname, const char *tftp_export,
                          const char *bootfile, const char *vdhcp_start,
                          const char *vnameserver, const char *smb_export,
                          const char *vsmbserver)
743
{
744 745 746 747
    if (slirp_in_use) {
        /* slirp only supports a single instance so far */
        return -1;
    }
748
    if (!slirp_inited) {
749 750 751 752 753 754 755 756 757 758 759 760 761 762
        /* default settings according to historic slirp */
        struct in_addr net  = { .s_addr = htonl(0x0a000000) }; /* 10.0.0.0 */
        struct in_addr mask = { .s_addr = htonl(0xff000000) }; /* 255.0.0.0 */
        struct in_addr host = { .s_addr = htonl(0x0a000202) }; /* 10.0.2.2 */
        struct in_addr dhcp = { .s_addr = htonl(0x0a00020f) }; /* 10.0.2.15 */
        struct in_addr dns  = { .s_addr = htonl(0x0a000203) }; /* 10.0.2.3 */
#ifndef _WIN32
        struct in_addr smbsrv = { .s_addr = 0 };
#endif
        char buf[20];
        uint32_t addr;
        int shift;
        char *end;

763 764 765 766 767 768
        if (!tftp_export) {
            tftp_export = legacy_tftp_prefix;
        }
        if (!bootfile) {
            bootfile = legacy_bootp_filename;
        }
769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842

        if (vnetwork) {
            if (get_str_sep(buf, sizeof(buf), &vnetwork, '/') < 0) {
                if (!inet_aton(vnetwork, &net)) {
                    return -1;
                }
                addr = ntohl(net.s_addr);
                if (!(addr & 0x80000000)) {
                    mask.s_addr = htonl(0xff000000); /* class A */
                } else if ((addr & 0xfff00000) == 0xac100000) {
                    mask.s_addr = htonl(0xfff00000); /* priv. 172.16.0.0/12 */
                } else if ((addr & 0xc0000000) == 0x80000000) {
                    mask.s_addr = htonl(0xffff0000); /* class B */
                } else if ((addr & 0xffff0000) == 0xc0a80000) {
                    mask.s_addr = htonl(0xffff0000); /* priv. 192.168.0.0/16 */
                } else if ((addr & 0xffff0000) == 0xc6120000) {
                    mask.s_addr = htonl(0xfffe0000); /* tests 198.18.0.0/15 */
                } else if ((addr & 0xe0000000) == 0xe0000000) {
                    mask.s_addr = htonl(0xffffff00); /* class C */
                } else {
                    mask.s_addr = htonl(0xfffffff0); /* multicast/reserved */
                }
            } else {
                if (!inet_aton(buf, &net)) {
                    return -1;
                }
                shift = strtol(vnetwork, &end, 10);
                if (*end != '\0') {
                    if (!inet_aton(vnetwork, &mask)) {
                        return -1;
                    }
                } else if (shift < 4 || shift > 32) {
                    return -1;
                } else {
                    mask.s_addr = htonl(0xffffffff << (32 - shift));
                }
            }
            net.s_addr &= mask.s_addr;
            host.s_addr = net.s_addr | (htonl(0x0202) & ~mask.s_addr);
            dhcp.s_addr = net.s_addr | (htonl(0x020f) & ~mask.s_addr);
            dns.s_addr  = net.s_addr | (htonl(0x0203) & ~mask.s_addr);
        }

        if (vhost && !inet_aton(vhost, &host)) {
            return -1;
        }
        if ((host.s_addr & mask.s_addr) != net.s_addr) {
            return -1;
        }

        if (vdhcp_start && !inet_aton(vdhcp_start, &dhcp)) {
            return -1;
        }
        if ((dhcp.s_addr & mask.s_addr) != net.s_addr ||
            dhcp.s_addr == host.s_addr || dhcp.s_addr == dns.s_addr) {
            return -1;
        }

        if (vnameserver && !inet_aton(vnameserver, &dns)) {
            return -1;
        }
        if ((dns.s_addr & mask.s_addr) != net.s_addr ||
            dns.s_addr == host.s_addr) {
            return -1;
        }

#ifndef _WIN32
        if (vsmbserver && !inet_aton(vsmbserver, &smbsrv)) {
            return -1;
        }
#endif

        slirp_init(restricted, net, mask, host, vhostname, tftp_export,
                   bootfile, dhcp, dns);
843
        slirp_inited = 1;
J
Jan Kiszka 已提交
844

845 846
        while (slirp_configs) {
            struct slirp_config_str *config = slirp_configs;
J
Jan Kiszka 已提交
847

848 849
            if (config->flags & SLIRP_CFG_HOSTFWD) {
                slirp_hostfwd(mon, config->str);
850
            } else {
851 852
                slirp_guestfwd(mon, config->str,
                               config->flags & SLIRP_CFG_LEGACY);
853 854
            }
            slirp_configs = config->next;
J
Jan Kiszka 已提交
855 856 857
            qemu_free(config);
        }
#ifndef _WIN32
858 859 860 861
        if (!smb_export) {
            smb_export = legacy_smb_export;
        }
        if (smb_export) {
862
            slirp_smb(smb_export, smbsrv);
J
Jan Kiszka 已提交
863 864
        }
#endif
865
    }
J
Jan Kiszka 已提交
866

867
    slirp_vc = qemu_new_vlan_client(vlan, model, name, NULL, slirp_receive,
J
Jan Kiszka 已提交
868
                                    NULL, net_slirp_cleanup, NULL);
869
    slirp_vc->info_str[0] = '\0';
870
    slirp_in_use = 1;
871 872 873
    return 0;
}

874
static void net_slirp_hostfwd_remove(Monitor *mon, const char *port_str)
875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899
{
    int host_port;
    char buf[256] = "";
    const char *p = port_str;
    int is_udp = 0;
    int n;

    if (!mon)
        return;

    if (!port_str || !port_str[0])
        goto fail_syntax;

    get_str_sep(buf, sizeof(buf), &p, ':');

    if (!strcmp(buf, "tcp") || buf[0] == '\0') {
        is_udp = 0;
    } else if (!strcmp(buf, "udp")) {
        is_udp = 1;
    } else {
        goto fail_syntax;
    }

    host_port = atoi(p);

900
    n = slirp_remove_hostfwd(is_udp, host_port);
901

902 903
    monitor_printf(mon, "removed %d host forwarding rules for %s port %d\n",
                   n, is_udp ? "udp" : "tcp", host_port);
904 905 906 907 908 909
    return;

 fail_syntax:
    monitor_printf(mon, "invalid format\n");
}

910
static void slirp_hostfwd(Monitor *mon, const char *redir_str)
911
{
912
    struct in_addr guest_addr = { .s_addr = 0 };
913
    int host_port, guest_port;
J
Jan Kiszka 已提交
914
    const char *p;
915
    char buf[256];
J
Jan Kiszka 已提交
916
    int is_udp;
917
    char *end;
918

919
    p = redir_str;
J
Jan Kiszka 已提交
920
    if (get_str_sep(buf, sizeof(buf), &p, ':') < 0) {
921
        goto fail_syntax;
J
Jan Kiszka 已提交
922
    }
923
    if (!strcmp(buf, "tcp") || buf[0] == '\0') {
924 925 926 927
        is_udp = 0;
    } else if (!strcmp(buf, "udp")) {
        is_udp = 1;
    } else {
928
        goto fail_syntax;
929 930
    }

J
Jan Kiszka 已提交
931
    if (get_str_sep(buf, sizeof(buf), &p, ':') < 0) {
932
        goto fail_syntax;
J
Jan Kiszka 已提交
933
    }
934 935
    host_port = strtol(buf, &end, 0);
    if (*end != '\0' || host_port < 1 || host_port > 65535) {
936
        goto fail_syntax;
J
Jan Kiszka 已提交
937
    }
938

J
Jan Kiszka 已提交
939
    if (get_str_sep(buf, sizeof(buf), &p, ':') < 0) {
940
        goto fail_syntax;
J
Jan Kiszka 已提交
941
    }
942
    if (buf[0] != '\0' && !inet_aton(buf, &guest_addr)) {
943
        goto fail_syntax;
J
Jan Kiszka 已提交
944
    }
945

946 947
    guest_port = strtol(p, &end, 0);
    if (*end != '\0' || guest_port < 1 || guest_port > 65535) {
948
        goto fail_syntax;
J
Jan Kiszka 已提交
949
    }
950

951 952 953
    if (slirp_add_hostfwd(is_udp, host_port, guest_addr, guest_port) < 0) {
        config_error(mon, "could not set up host forwarding rule '%s'\n",
                     redir_str);
954 955
    }
    return;
956 957

 fail_syntax:
958
    config_error(mon, "invalid host forwarding rule '%s'\n", redir_str);
959 960
}

J
Jan Kiszka 已提交
961 962 963 964 965 966 967 968 969
void net_slirp_redir(Monitor *mon, const char *redir_str, const char *redir_opt2)
{
    struct slirp_config_str *config;

    if (!slirp_inited) {
        if (mon) {
            monitor_printf(mon, "user mode network stack not in use\n");
        } else {
            config = qemu_malloc(sizeof(*config));
970
            pstrcpy(config->str, sizeof(config->str), redir_str);
971
            config->flags = SLIRP_CFG_HOSTFWD;
972 973
            config->next = slirp_configs;
            slirp_configs = config;
J
Jan Kiszka 已提交
974 975 976 977 978
        }
        return;
    }

    if (!strcmp(redir_str, "remove")) {
979
        net_slirp_hostfwd_remove(mon, redir_opt2);
J
Jan Kiszka 已提交
980 981 982
        return;
    }

983
    slirp_hostfwd(mon, redir_str);
J
Jan Kiszka 已提交
984 985
}

986 987 988 989 990 991 992 993 994 995 996
#ifndef _WIN32

static char smb_dir[1024];

static void erase_dir(char *dir_name)
{
    DIR *d;
    struct dirent *de;
    char filename[1024];

    /* erase all the files in the directory */
997
    if ((d = opendir(dir_name)) != NULL) {
998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020
        for(;;) {
            de = readdir(d);
            if (!de)
                break;
            if (strcmp(de->d_name, ".") != 0 &&
                strcmp(de->d_name, "..") != 0) {
                snprintf(filename, sizeof(filename), "%s/%s",
                         smb_dir, de->d_name);
                if (unlink(filename) != 0)  /* is it a directory? */
                    erase_dir(filename);
            }
        }
        closedir(d);
        rmdir(dir_name);
    }
}

/* automatic user mode samba server configuration */
static void smb_exit(void)
{
    erase_dir(smb_dir);
}

1021
static void slirp_smb(const char *exported_dir, struct in_addr vserver_addr)
1022 1023 1024 1025 1026 1027
{
    char smb_conf[1024];
    char smb_cmdline[1024];
    FILE *f;

    /* XXX: better tmp dir construction */
1028
    snprintf(smb_dir, sizeof(smb_dir), "/tmp/qemu-smb.%ld", (long)getpid());
1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066
    if (mkdir(smb_dir, 0700) < 0) {
        fprintf(stderr, "qemu: could not create samba server dir '%s'\n", smb_dir);
        exit(1);
    }
    snprintf(smb_conf, sizeof(smb_conf), "%s/%s", smb_dir, "smb.conf");

    f = fopen(smb_conf, "w");
    if (!f) {
        fprintf(stderr, "qemu: could not create samba server configuration file '%s'\n", smb_conf);
        exit(1);
    }
    fprintf(f,
            "[global]\n"
            "private dir=%s\n"
            "smb ports=0\n"
            "socket address=127.0.0.1\n"
            "pid directory=%s\n"
            "lock directory=%s\n"
            "log file=%s/log.smbd\n"
            "smb passwd file=%s/smbpasswd\n"
            "security = share\n"
            "[qemu]\n"
            "path=%s\n"
            "read only=no\n"
            "guest ok=yes\n",
            smb_dir,
            smb_dir,
            smb_dir,
            smb_dir,
            smb_dir,
            exported_dir
            );
    fclose(f);
    atexit(smb_exit);

    snprintf(smb_cmdline, sizeof(smb_cmdline), "%s -s %s",
             SMBD_COMMAND, smb_conf);

1067 1068 1069 1070
    if (slirp_add_exec(0, smb_cmdline, vserver_addr, 139) < 0) {
        fprintf(stderr, "conflicting/invalid smbserver address\n");
        exit(1);
    }
1071 1072
}

1073
/* automatic user mode samba server configuration (legacy interface) */
J
Jan Kiszka 已提交
1074 1075
void net_slirp_smb(const char *exported_dir)
{
1076 1077
    struct in_addr vserver_addr = { .s_addr = 0 };

1078
    if (legacy_smb_export) {
J
Jan Kiszka 已提交
1079 1080 1081
        fprintf(stderr, "-smb given twice\n");
        exit(1);
    }
1082
    legacy_smb_export = exported_dir;
J
Jan Kiszka 已提交
1083
    if (slirp_inited) {
1084
        slirp_smb(exported_dir, vserver_addr);
J
Jan Kiszka 已提交
1085 1086 1087
    }
}

1088
#endif /* !defined(_WIN32) */
J
Jan Kiszka 已提交
1089

A
aliguori 已提交
1090
void do_info_slirp(Monitor *mon)
1091 1092 1093 1094
{
    slirp_stats();
}

1095
struct GuestFwd {
1096
    CharDriverState *hd;
1097
    struct in_addr server;
1098
    int port;
1099
};
1100

1101
static int guestfwd_can_read(void *opaque)
1102
{
1103 1104
    struct GuestFwd *fwd = opaque;
    return slirp_socket_can_recv(fwd->server, fwd->port);
1105 1106
}

1107
static void guestfwd_read(void *opaque, const uint8_t *buf, int size)
1108
{
1109 1110
    struct GuestFwd *fwd = opaque;
    slirp_socket_recv(fwd->server, fwd->port, buf, size);
1111 1112
}

1113 1114
static void slirp_guestfwd(Monitor *mon, const char *config_str,
                           int legacy_format)
1115
{
1116 1117 1118 1119 1120
    struct in_addr server = { .s_addr = 0 };
    struct GuestFwd *fwd;
    const char *p;
    char buf[128];
    char *end;
1121 1122
    int port;

1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147
    p = config_str;
    if (legacy_format) {
        if (get_str_sep(buf, sizeof(buf), &p, ':') < 0) {
            goto fail_syntax;
        }
    } else {
        if (get_str_sep(buf, sizeof(buf), &p, ':') < 0) {
            goto fail_syntax;
        }
        if (strcmp(buf, "tcp") && buf[0] != '\0') {
            goto fail_syntax;
        }
        if (get_str_sep(buf, sizeof(buf), &p, ':') < 0) {
            goto fail_syntax;
        }
        if (buf[0] != '\0' && !inet_aton(buf, &server)) {
            goto fail_syntax;
        }
        if (get_str_sep(buf, sizeof(buf), &p, '-') < 0) {
            goto fail_syntax;
        }
    }
    port = strtol(buf, &end, 10);
    if (*end != '\0' || port < 1 || port > 65535) {
        goto fail_syntax;
1148 1149
    }

1150 1151 1152 1153 1154 1155 1156
    fwd = qemu_malloc(sizeof(struct GuestFwd));
    snprintf(buf, sizeof(buf), "guestfwd.tcp:%d", port);
    fwd->hd = qemu_chr_open(buf, p, NULL);
    if (!fwd->hd) {
        config_error(mon, "could not open guest forwarding device '%s'\n",
                     buf);
        qemu_free(fwd);
1157 1158
        return;
    }
1159 1160
    fwd->server = server;
    fwd->port = port;
1161

1162 1163 1164 1165 1166 1167 1168 1169
    if (slirp_add_exec(3, fwd->hd, server, port) < 0) {
        config_error(mon, "conflicting/invalid host:port in guest forwarding "
                     "rule '%s'\n", config_str);
        qemu_free(fwd);
        return;
    }
    qemu_chr_add_handlers(fwd->hd, guestfwd_can_read, guestfwd_read,
                          NULL, fwd);
1170
    return;
1171 1172 1173

 fail_syntax:
    config_error(mon, "invalid guest forwarding rule '%s'\n", config_str);
1174 1175
}

1176 1177 1178 1179 1180 1181 1182 1183
#endif /* CONFIG_SLIRP */

#if !defined(_WIN32)

typedef struct TAPState {
    VLANClientState *vc;
    int fd;
    char down_script[1024];
1184
    char down_script_arg[128];
1185
    uint8_t buf[4096];
1186
    unsigned int read_poll : 1;
1187
    unsigned int write_poll : 1;
1188 1189
} TAPState;

1190 1191
static int launch_script(const char *setup_script, const char *ifname, int fd);

1192 1193
static int tap_can_send(void *opaque);
static void tap_send(void *opaque);
1194
static void tap_writable(void *opaque);
1195 1196 1197 1198 1199 1200

static void tap_update_fd_handler(TAPState *s)
{
    qemu_set_fd_handler2(s->fd,
                         s->read_poll  ? tap_can_send : NULL,
                         s->read_poll  ? tap_send     : NULL,
1201
                         s->write_poll ? tap_writable : NULL,
1202 1203 1204 1205 1206 1207 1208 1209 1210
                         s);
}

static void tap_read_poll(TAPState *s, int enable)
{
    s->read_poll = !!enable;
    tap_update_fd_handler(s);
}

1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225
static void tap_write_poll(TAPState *s, int enable)
{
    s->write_poll = !!enable;
    tap_update_fd_handler(s);
}

static void tap_writable(void *opaque)
{
    TAPState *s = opaque;

    tap_write_poll(s, 0);

    qemu_flush_queued_packets(s->vc);
}

1226
static ssize_t tap_receive_iov(VLANClientState *vc, const struct iovec *iov,
A
aliguori 已提交
1227 1228
                               int iovcnt)
{
1229
    TAPState *s = vc->opaque;
A
aliguori 已提交
1230 1231 1232 1233
    ssize_t len;

    do {
        len = writev(s->fd, iov, iovcnt);
1234 1235 1236 1237 1238 1239
    } while (len == -1 && errno == EINTR);

    if (len == -1 && errno == EAGAIN) {
        tap_write_poll(s, 1);
        return 0;
    }
A
aliguori 已提交
1240 1241 1242 1243

    return len;
}

1244
static ssize_t tap_receive(VLANClientState *vc, const uint8_t *buf, size_t size)
1245
{
1246
    TAPState *s = vc->opaque;
1247 1248 1249 1250 1251 1252 1253
    ssize_t len;

    do {
        len = write(s->fd, buf, size);
    } while (len == -1 && (errno == EINTR || errno == EAGAIN));

    return len;
1254 1255
}

1256 1257 1258 1259 1260 1261 1262
static int tap_can_send(void *opaque)
{
    TAPState *s = opaque;

    return qemu_can_send_packet(s->vc);
}

1263
#ifdef __sun__
1264 1265
static ssize_t tap_read_packet(int tapfd, uint8_t *buf, int maxlen)
{
1266 1267
    struct strbuf sbuf;
    int f = 0;
1268 1269

    sbuf.maxlen = maxlen;
1270
    sbuf.buf = (char *)buf;
1271 1272 1273

    return getmsg(tapfd, NULL, &sbuf, &f) >= 0 ? sbuf.len : -1;
}
1274
#else
1275 1276 1277 1278
static ssize_t tap_read_packet(int tapfd, uint8_t *buf, int maxlen)
{
    return read(tapfd, buf, maxlen);
}
1279
#endif
1280

1281
static void tap_send_completed(VLANClientState *vc, ssize_t len)
1282 1283
{
    TAPState *s = vc->opaque;
1284
    tap_read_poll(s, 1);
1285 1286
}

1287 1288 1289 1290 1291
static void tap_send(void *opaque)
{
    TAPState *s = opaque;
    int size;

1292 1293 1294 1295 1296 1297 1298 1299
    do {
        size = tap_read_packet(s->fd, s->buf, sizeof(s->buf));
        if (size <= 0) {
            break;
        }

        size = qemu_send_packet_async(s->vc, s->buf, size, tap_send_completed);
        if (size == 0) {
1300
            tap_read_poll(s, 0);
1301 1302
        }
    } while (size > 0);
1303 1304
}

1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316
static void tap_set_sndbuf(TAPState *s, int sndbuf, Monitor *mon)
{
#ifdef TUNSETSNDBUF
    if (ioctl(s->fd, TUNSETSNDBUF, &sndbuf) == -1) {
        config_error(mon, "TUNSETSNDBUF ioctl failed: %s\n",
                     strerror(errno));
    }
#else
    config_error(mon, "No '-net tap,sndbuf=<nbytes>' support available\n");
#endif
}

1317 1318 1319 1320
static void tap_cleanup(VLANClientState *vc)
{
    TAPState *s = vc->opaque;

1321 1322
    qemu_purge_queued_packets(vc);

1323 1324 1325
    if (s->down_script[0])
        launch_script(s->down_script, s->down_script_arg, s->fd);

1326
    tap_read_poll(s, 0);
1327
    tap_write_poll(s, 0);
1328 1329 1330 1331
    close(s->fd);
    qemu_free(s);
}

1332 1333
/* fd support */

1334 1335 1336 1337
static TAPState *net_tap_fd_init(VLANState *vlan,
                                 const char *model,
                                 const char *name,
                                 int fd)
1338 1339 1340 1341 1342
{
    TAPState *s;

    s = qemu_mallocz(sizeof(TAPState));
    s->fd = fd;
1343 1344
    s->vc = qemu_new_vlan_client(vlan, model, name, NULL, tap_receive,
                                 tap_receive_iov, tap_cleanup, s);
1345
    tap_read_poll(s, 1);
1346
    snprintf(s->vc->info_str, sizeof(s->vc->info_str), "fd=%d", fd);
1347 1348 1349
    return s;
}

1350
#if defined (HOST_BSD) || defined (__FreeBSD_kernel__)
1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375
static int tap_open(char *ifname, int ifname_size)
{
    int fd;
    char *dev;
    struct stat s;

    TFR(fd = open("/dev/tap", O_RDWR));
    if (fd < 0) {
        fprintf(stderr, "warning: could not open /dev/tap: no virtual network emulation\n");
        return -1;
    }

    fstat(fd, &s);
    dev = devname(s.st_rdev, S_IFCHR);
    pstrcpy(ifname, ifname_size, dev);

    fcntl(fd, F_SETFL, O_NONBLOCK);
    return fd;
}
#elif defined(__sun__)
#define TUNNEWPPA       (('T'<<16) | 0x0001)
/*
 * Allocate TAP device, returns opened fd.
 * Stores dev name in the first arg(must be large enough).
 */
1376
static int tap_alloc(char *dev, size_t dev_size)
1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392
{
    int tap_fd, if_fd, ppa = -1;
    static int ip_fd = 0;
    char *ptr;

    static int arp_fd = 0;
    int ip_muxid, arp_muxid;
    struct strioctl  strioc_if, strioc_ppa;
    int link_type = I_PLINK;;
    struct lifreq ifr;
    char actual_name[32] = "";

    memset(&ifr, 0x0, sizeof(ifr));

    if( *dev ){
       ptr = dev;
1393
       while( *ptr && !qemu_isdigit((int)*ptr) ) ptr++;
1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504
       ppa = atoi(ptr);
    }

    /* Check if IP device was opened */
    if( ip_fd )
       close(ip_fd);

    TFR(ip_fd = open("/dev/udp", O_RDWR, 0));
    if (ip_fd < 0) {
       syslog(LOG_ERR, "Can't open /dev/ip (actually /dev/udp)");
       return -1;
    }

    TFR(tap_fd = open("/dev/tap", O_RDWR, 0));
    if (tap_fd < 0) {
       syslog(LOG_ERR, "Can't open /dev/tap");
       return -1;
    }

    /* Assign a new PPA and get its unit number. */
    strioc_ppa.ic_cmd = TUNNEWPPA;
    strioc_ppa.ic_timout = 0;
    strioc_ppa.ic_len = sizeof(ppa);
    strioc_ppa.ic_dp = (char *)&ppa;
    if ((ppa = ioctl (tap_fd, I_STR, &strioc_ppa)) < 0)
       syslog (LOG_ERR, "Can't assign new interface");

    TFR(if_fd = open("/dev/tap", O_RDWR, 0));
    if (if_fd < 0) {
       syslog(LOG_ERR, "Can't open /dev/tap (2)");
       return -1;
    }
    if(ioctl(if_fd, I_PUSH, "ip") < 0){
       syslog(LOG_ERR, "Can't push IP module");
       return -1;
    }

    if (ioctl(if_fd, SIOCGLIFFLAGS, &ifr) < 0)
	syslog(LOG_ERR, "Can't get flags\n");

    snprintf (actual_name, 32, "tap%d", ppa);
    pstrcpy(ifr.lifr_name, sizeof(ifr.lifr_name), actual_name);

    ifr.lifr_ppa = ppa;
    /* Assign ppa according to the unit number returned by tun device */

    if (ioctl (if_fd, SIOCSLIFNAME, &ifr) < 0)
        syslog (LOG_ERR, "Can't set PPA %d", ppa);
    if (ioctl(if_fd, SIOCGLIFFLAGS, &ifr) <0)
        syslog (LOG_ERR, "Can't get flags\n");
    /* Push arp module to if_fd */
    if (ioctl (if_fd, I_PUSH, "arp") < 0)
        syslog (LOG_ERR, "Can't push ARP module (2)");

    /* Push arp module to ip_fd */
    if (ioctl (ip_fd, I_POP, NULL) < 0)
        syslog (LOG_ERR, "I_POP failed\n");
    if (ioctl (ip_fd, I_PUSH, "arp") < 0)
        syslog (LOG_ERR, "Can't push ARP module (3)\n");
    /* Open arp_fd */
    TFR(arp_fd = open ("/dev/tap", O_RDWR, 0));
    if (arp_fd < 0)
       syslog (LOG_ERR, "Can't open %s\n", "/dev/tap");

    /* Set ifname to arp */
    strioc_if.ic_cmd = SIOCSLIFNAME;
    strioc_if.ic_timout = 0;
    strioc_if.ic_len = sizeof(ifr);
    strioc_if.ic_dp = (char *)&ifr;
    if (ioctl(arp_fd, I_STR, &strioc_if) < 0){
        syslog (LOG_ERR, "Can't set ifname to arp\n");
    }

    if((ip_muxid = ioctl(ip_fd, I_LINK, if_fd)) < 0){
       syslog(LOG_ERR, "Can't link TAP device to IP");
       return -1;
    }

    if ((arp_muxid = ioctl (ip_fd, link_type, arp_fd)) < 0)
        syslog (LOG_ERR, "Can't link TAP device to ARP");

    close (if_fd);

    memset(&ifr, 0x0, sizeof(ifr));
    pstrcpy(ifr.lifr_name, sizeof(ifr.lifr_name), actual_name);
    ifr.lifr_ip_muxid  = ip_muxid;
    ifr.lifr_arp_muxid = arp_muxid;

    if (ioctl (ip_fd, SIOCSLIFMUXID, &ifr) < 0)
    {
      ioctl (ip_fd, I_PUNLINK , arp_muxid);
      ioctl (ip_fd, I_PUNLINK, ip_muxid);
      syslog (LOG_ERR, "Can't set multiplexor id");
    }

    snprintf(dev, dev_size, "tap%d", ppa);
    return tap_fd;
}

static int tap_open(char *ifname, int ifname_size)
{
    char  dev[10]="";
    int fd;
    if( (fd = tap_alloc(dev, sizeof(dev))) < 0 ){
       fprintf(stderr, "Cannot allocate TAP device\n");
       return -1;
    }
    pstrcpy(ifname, ifname_size, dev);
    fcntl(fd, F_SETFL, O_NONBLOCK);
    return fd;
}
M
malc 已提交
1505 1506 1507 1508 1509 1510
#elif defined (_AIX)
static int tap_open(char *ifname, int ifname_size)
{
    fprintf (stderr, "no tap on AIX\n");
    return -1;
}
1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541
#else
static int tap_open(char *ifname, int ifname_size)
{
    struct ifreq ifr;
    int fd, ret;

    TFR(fd = open("/dev/net/tun", O_RDWR));
    if (fd < 0) {
        fprintf(stderr, "warning: could not open /dev/net/tun: no virtual network emulation\n");
        return -1;
    }
    memset(&ifr, 0, sizeof(ifr));
    ifr.ifr_flags = IFF_TAP | IFF_NO_PI;
    if (ifname[0] != '\0')
        pstrcpy(ifr.ifr_name, IFNAMSIZ, ifname);
    else
        pstrcpy(ifr.ifr_name, IFNAMSIZ, "tap%d");
    ret = ioctl(fd, TUNSETIFF, (void *) &ifr);
    if (ret != 0) {
        fprintf(stderr, "warning: could not configure /dev/net/tun: no virtual network emulation\n");
        close(fd);
        return -1;
    }
    pstrcpy(ifname, ifname_size, ifr.ifr_name);
    fcntl(fd, F_SETFL, O_NONBLOCK);
    return fd;
}
#endif

static int launch_script(const char *setup_script, const char *ifname, int fd)
{
1542
    sigset_t oldmask, mask;
1543 1544 1545 1546
    int pid, status;
    char *args[3];
    char **parg;

1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561
    sigemptyset(&mask);
    sigaddset(&mask, SIGCHLD);
    sigprocmask(SIG_BLOCK, &mask, &oldmask);

    /* try to launch network script */
    pid = fork();
    if (pid == 0) {
        int open_max = sysconf(_SC_OPEN_MAX), i;

        for (i = 0; i < open_max; i++) {
            if (i != STDIN_FILENO &&
                i != STDOUT_FILENO &&
                i != STDERR_FILENO &&
                i != fd) {
                close(i);
1562 1563
            }
        }
1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581
        parg = args;
        *parg++ = (char *)setup_script;
        *parg++ = (char *)ifname;
        *parg++ = NULL;
        execv(setup_script, args);
        _exit(1);
    } else if (pid > 0) {
        while (waitpid(pid, &status, 0) != pid) {
            /* loop */
        }
        sigprocmask(SIG_SETMASK, &oldmask, NULL);

        if (WIFEXITED(status) && WEXITSTATUS(status) == 0) {
            return 0;
        }
    }
    fprintf(stderr, "%s: could not launch network script\n", setup_script);
    return -1;
1582 1583
}

1584 1585 1586
static TAPState *net_tap_init(VLANState *vlan, const char *model,
                              const char *name, const char *ifname1,
                              const char *setup_script, const char *down_script)
1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597
{
    TAPState *s;
    int fd;
    char ifname[128];

    if (ifname1 != NULL)
        pstrcpy(ifname, sizeof(ifname), ifname1);
    else
        ifname[0] = '\0';
    TFR(fd = tap_open(ifname, sizeof(ifname)));
    if (fd < 0)
1598
        return NULL;
1599 1600 1601

    if (!setup_script || !strcmp(setup_script, "no"))
        setup_script = "";
1602 1603 1604
    if (setup_script[0] != '\0' &&
        launch_script(setup_script, ifname, fd)) {
        return NULL;
1605
    }
1606
    s = net_tap_fd_init(vlan, model, name, fd);
1607
    snprintf(s->vc->info_str, sizeof(s->vc->info_str),
1608 1609
             "ifname=%s,script=%s,downscript=%s",
             ifname, setup_script, down_script);
1610
    if (down_script && strcmp(down_script, "no")) {
1611
        snprintf(s->down_script, sizeof(s->down_script), "%s", down_script);
1612 1613
        snprintf(s->down_script_arg, sizeof(s->down_script_arg), "%s", ifname);
    }
1614
    return s;
1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630
}

#endif /* !_WIN32 */

#if defined(CONFIG_VDE)
typedef struct VDEState {
    VLANClientState *vc;
    VDECONN *vde;
} VDEState;

static void vde_to_qemu(void *opaque)
{
    VDEState *s = opaque;
    uint8_t buf[4096];
    int size;

1631
    size = vde_recv(s->vde, (char *)buf, sizeof(buf), 0);
1632 1633 1634 1635 1636
    if (size > 0) {
        qemu_send_packet(s->vc, buf, size);
    }
}

1637
static ssize_t vde_receive(VLANClientState *vc, const uint8_t *buf, size_t size)
1638
{
1639
    VDEState *s = vc->opaque;
1640
    ssize_t ret;
1641 1642 1643 1644 1645 1646

    do {
      ret = vde_send(s->vde, (const char *)buf, size, 0);
    } while (ret < 0 && errno == EINTR);

    return ret;
1647 1648
}

1649 1650 1651 1652 1653 1654 1655 1656
static void vde_cleanup(VLANClientState *vc)
{
    VDEState *s = vc->opaque;
    qemu_set_fd_handler(vde_datafd(s->vde), NULL, NULL, NULL);
    vde_close(s->vde);
    qemu_free(s);
}

1657 1658
static int net_vde_init(VLANState *vlan, const char *model,
                        const char *name, const char *sock,
1659
                        int port, const char *group, int mode)
1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671
{
    VDEState *s;
    char *init_group = strlen(group) ? (char *)group : NULL;
    char *init_sock = strlen(sock) ? (char *)sock : NULL;

    struct vde_open_args args = {
        .port = port,
        .group = init_group,
        .mode = mode,
    };

    s = qemu_mallocz(sizeof(VDEState));
1672
    s->vde = vde_open(init_sock, (char *)"QEMU", &args);
1673 1674 1675 1676
    if (!s->vde){
        free(s);
        return -1;
    }
1677
    s->vc = qemu_new_vlan_client(vlan, model, name, NULL, vde_receive,
1678
                                 NULL, vde_cleanup, s);
1679
    qemu_set_fd_handler(vde_datafd(s->vde), vde_to_qemu, NULL, s);
1680
    snprintf(s->vc->info_str, sizeof(s->vc->info_str), "sock=%s,fd=%d",
1681 1682 1683 1684 1685 1686 1687 1688 1689 1690
             sock, vde_datafd(s->vde));
    return 0;
}
#endif

/* network connection */
typedef struct NetSocketState {
    VLANClientState *vc;
    int fd;
    int state; /* 0 = getting length, 1 = getting data */
1691 1692
    unsigned int index;
    unsigned int packet_len;
1693 1694 1695 1696 1697 1698
    uint8_t buf[4096];
    struct sockaddr_in dgram_dst; /* contains inet host and port destination iff connectionless (SOCK_DGRAM) */
} NetSocketState;

typedef struct NetSocketListenState {
    VLANState *vlan;
1699
    char *model;
1700
    char *name;
1701 1702 1703 1704
    int fd;
} NetSocketListenState;

/* XXX: we consider we can send the whole packet without blocking */
1705
static ssize_t net_socket_receive(VLANClientState *vc, const uint8_t *buf, size_t size)
1706
{
1707
    NetSocketState *s = vc->opaque;
1708 1709 1710 1711
    uint32_t len;
    len = htonl(size);

    send_all(s->fd, (const uint8_t *)&len, sizeof(len));
1712
    return send_all(s->fd, buf, size);
1713 1714
}

1715
static ssize_t net_socket_receive_dgram(VLANClientState *vc, const uint8_t *buf, size_t size)
1716
{
1717
    NetSocketState *s = vc->opaque;
1718

1719
    return sendto(s->fd, (const void *)buf, size, 0,
1720
                  (struct sockaddr *)&s->dgram_dst, sizeof(s->dgram_dst));
1721 1722 1723 1724 1725
}

static void net_socket_send(void *opaque)
{
    NetSocketState *s = opaque;
1726 1727
    int size, err;
    unsigned l;
1728 1729 1730
    uint8_t buf1[4096];
    const uint8_t *buf;

B
Blue Swirl 已提交
1731
    size = recv(s->fd, (void *)buf1, sizeof(buf1), 0);
1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765
    if (size < 0) {
        err = socket_error();
        if (err != EWOULDBLOCK)
            goto eoc;
    } else if (size == 0) {
        /* end of connection */
    eoc:
        qemu_set_fd_handler(s->fd, NULL, NULL, NULL);
        closesocket(s->fd);
        return;
    }
    buf = buf1;
    while (size > 0) {
        /* reassemble a packet from the network */
        switch(s->state) {
        case 0:
            l = 4 - s->index;
            if (l > size)
                l = size;
            memcpy(s->buf + s->index, buf, l);
            buf += l;
            size -= l;
            s->index += l;
            if (s->index == 4) {
                /* got length */
                s->packet_len = ntohl(*(uint32_t *)s->buf);
                s->index = 0;
                s->state = 1;
            }
            break;
        case 1:
            l = s->packet_len - s->index;
            if (l > size)
                l = size;
1766 1767 1768 1769 1770 1771 1772 1773 1774
            if (s->index + l <= sizeof(s->buf)) {
                memcpy(s->buf + s->index, buf, l);
            } else {
                fprintf(stderr, "serious error: oversized packet received,"
                    "connection terminated.\n");
                s->state = 0;
                goto eoc;
            }

1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792
            s->index += l;
            buf += l;
            size -= l;
            if (s->index >= s->packet_len) {
                qemu_send_packet(s->vc, s->buf, s->packet_len);
                s->index = 0;
                s->state = 0;
            }
            break;
        }
    }
}

static void net_socket_send_dgram(void *opaque)
{
    NetSocketState *s = opaque;
    int size;

B
Blue Swirl 已提交
1793
    size = recv(s->fd, (void *)s->buf, sizeof(s->buf), 0);
1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863
    if (size < 0)
        return;
    if (size == 0) {
        /* end of connection */
        qemu_set_fd_handler(s->fd, NULL, NULL, NULL);
        return;
    }
    qemu_send_packet(s->vc, s->buf, size);
}

static int net_socket_mcast_create(struct sockaddr_in *mcastaddr)
{
    struct ip_mreq imr;
    int fd;
    int val, ret;
    if (!IN_MULTICAST(ntohl(mcastaddr->sin_addr.s_addr))) {
	fprintf(stderr, "qemu: error: specified mcastaddr \"%s\" (0x%08x) does not contain a multicast address\n",
		inet_ntoa(mcastaddr->sin_addr),
                (int)ntohl(mcastaddr->sin_addr.s_addr));
	return -1;

    }
    fd = socket(PF_INET, SOCK_DGRAM, 0);
    if (fd < 0) {
        perror("socket(PF_INET, SOCK_DGRAM)");
        return -1;
    }

    val = 1;
    ret=setsockopt(fd, SOL_SOCKET, SO_REUSEADDR,
                   (const char *)&val, sizeof(val));
    if (ret < 0) {
	perror("setsockopt(SOL_SOCKET, SO_REUSEADDR)");
	goto fail;
    }

    ret = bind(fd, (struct sockaddr *)mcastaddr, sizeof(*mcastaddr));
    if (ret < 0) {
        perror("bind");
        goto fail;
    }

    /* Add host to multicast group */
    imr.imr_multiaddr = mcastaddr->sin_addr;
    imr.imr_interface.s_addr = htonl(INADDR_ANY);

    ret = setsockopt(fd, IPPROTO_IP, IP_ADD_MEMBERSHIP,
                     (const char *)&imr, sizeof(struct ip_mreq));
    if (ret < 0) {
	perror("setsockopt(IP_ADD_MEMBERSHIP)");
	goto fail;
    }

    /* Force mcast msgs to loopback (eg. several QEMUs in same host */
    val = 1;
    ret=setsockopt(fd, IPPROTO_IP, IP_MULTICAST_LOOP,
                   (const char *)&val, sizeof(val));
    if (ret < 0) {
	perror("setsockopt(SOL_IP, IP_MULTICAST_LOOP)");
	goto fail;
    }

    socket_set_nonblock(fd);
    return fd;
fail:
    if (fd >= 0)
        closesocket(fd);
    return -1;
}

1864 1865 1866 1867 1868 1869 1870 1871
static void net_socket_cleanup(VLANClientState *vc)
{
    NetSocketState *s = vc->opaque;
    qemu_set_fd_handler(s->fd, NULL, NULL, NULL);
    close(s->fd);
    qemu_free(s);
}

1872 1873 1874
static NetSocketState *net_socket_fd_init_dgram(VLANState *vlan,
                                                const char *model,
                                                const char *name,
1875
                                                int fd, int is_connected)
1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915
{
    struct sockaddr_in saddr;
    int newfd;
    socklen_t saddr_len;
    NetSocketState *s;

    /* fd passed: multicast: "learn" dgram_dst address from bound address and save it
     * Because this may be "shared" socket from a "master" process, datagrams would be recv()
     * by ONLY ONE process: we must "clone" this dgram socket --jjo
     */

    if (is_connected) {
	if (getsockname(fd, (struct sockaddr *) &saddr, &saddr_len) == 0) {
	    /* must be bound */
	    if (saddr.sin_addr.s_addr==0) {
		fprintf(stderr, "qemu: error: init_dgram: fd=%d unbound, cannot setup multicast dst addr\n",
			fd);
		return NULL;
	    }
	    /* clone dgram socket */
	    newfd = net_socket_mcast_create(&saddr);
	    if (newfd < 0) {
		/* error already reported by net_socket_mcast_create() */
		close(fd);
		return NULL;
	    }
	    /* clone newfd to fd, close newfd */
	    dup2(newfd, fd);
	    close(newfd);

	} else {
	    fprintf(stderr, "qemu: error: init_dgram: fd=%d failed getsockname(): %s\n",
		    fd, strerror(errno));
	    return NULL;
	}
    }

    s = qemu_mallocz(sizeof(NetSocketState));
    s->fd = fd;

1916
    s->vc = qemu_new_vlan_client(vlan, model, name, NULL, net_socket_receive_dgram,
1917
                                 NULL, net_socket_cleanup, s);
1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935
    qemu_set_fd_handler(s->fd, net_socket_send_dgram, NULL, s);

    /* mcast: save bound address as dst */
    if (is_connected) s->dgram_dst=saddr;

    snprintf(s->vc->info_str, sizeof(s->vc->info_str),
	    "socket: fd=%d (%s mcast=%s:%d)",
	    fd, is_connected? "cloned" : "",
	    inet_ntoa(saddr.sin_addr), ntohs(saddr.sin_port));
    return s;
}

static void net_socket_connect(void *opaque)
{
    NetSocketState *s = opaque;
    qemu_set_fd_handler(s->fd, net_socket_send, NULL, s);
}

1936 1937 1938
static NetSocketState *net_socket_fd_init_stream(VLANState *vlan,
                                                 const char *model,
                                                 const char *name,
1939
                                                 int fd, int is_connected)
1940 1941 1942 1943
{
    NetSocketState *s;
    s = qemu_mallocz(sizeof(NetSocketState));
    s->fd = fd;
1944
    s->vc = qemu_new_vlan_client(vlan, model, name, NULL, net_socket_receive,
1945
                                 NULL, net_socket_cleanup, s);
1946 1947 1948 1949 1950 1951 1952 1953 1954 1955
    snprintf(s->vc->info_str, sizeof(s->vc->info_str),
             "socket: fd=%d", fd);
    if (is_connected) {
        net_socket_connect(s);
    } else {
        qemu_set_fd_handler(s->fd, NULL, net_socket_connect, s);
    }
    return s;
}

1956 1957
static NetSocketState *net_socket_fd_init(VLANState *vlan,
                                          const char *model, const char *name,
1958
                                          int fd, int is_connected)
1959 1960 1961 1962 1963 1964 1965 1966 1967 1968
{
    int so_type=-1, optlen=sizeof(so_type);

    if(getsockopt(fd, SOL_SOCKET, SO_TYPE, (char *)&so_type,
        (socklen_t *)&optlen)< 0) {
	fprintf(stderr, "qemu: error: getsockopt(SO_TYPE) for fd=%d failed\n", fd);
	return NULL;
    }
    switch(so_type) {
    case SOCK_DGRAM:
1969
        return net_socket_fd_init_dgram(vlan, model, name, fd, is_connected);
1970
    case SOCK_STREAM:
1971
        return net_socket_fd_init_stream(vlan, model, name, fd, is_connected);
1972 1973 1974
    default:
        /* who knows ... this could be a eg. a pty, do warn and continue as stream */
        fprintf(stderr, "qemu: warning: socket type=%d for fd=%d is not SOCK_DGRAM or SOCK_STREAM\n", so_type, fd);
1975
        return net_socket_fd_init_stream(vlan, model, name, fd, is_connected);
1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996
    }
    return NULL;
}

static void net_socket_accept(void *opaque)
{
    NetSocketListenState *s = opaque;
    NetSocketState *s1;
    struct sockaddr_in saddr;
    socklen_t len;
    int fd;

    for(;;) {
        len = sizeof(saddr);
        fd = accept(s->fd, (struct sockaddr *)&saddr, &len);
        if (fd < 0 && errno != EINTR) {
            return;
        } else if (fd >= 0) {
            break;
        }
    }
1997
    s1 = net_socket_fd_init(s->vlan, s->model, s->name, fd, 1);
1998 1999 2000 2001 2002 2003 2004 2005 2006
    if (!s1) {
        closesocket(fd);
    } else {
        snprintf(s1->vc->info_str, sizeof(s1->vc->info_str),
                 "socket: connection from %s:%d",
                 inet_ntoa(saddr.sin_addr), ntohs(saddr.sin_port));
    }
}

2007 2008 2009
static int net_socket_listen_init(VLANState *vlan,
                                  const char *model,
                                  const char *name,
2010
                                  const char *host_str)
2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042
{
    NetSocketListenState *s;
    int fd, val, ret;
    struct sockaddr_in saddr;

    if (parse_host_port(&saddr, host_str) < 0)
        return -1;

    s = qemu_mallocz(sizeof(NetSocketListenState));

    fd = socket(PF_INET, SOCK_STREAM, 0);
    if (fd < 0) {
        perror("socket");
        return -1;
    }
    socket_set_nonblock(fd);

    /* allow fast reuse */
    val = 1;
    setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, (const char *)&val, sizeof(val));

    ret = bind(fd, (struct sockaddr *)&saddr, sizeof(saddr));
    if (ret < 0) {
        perror("bind");
        return -1;
    }
    ret = listen(fd, 0);
    if (ret < 0) {
        perror("listen");
        return -1;
    }
    s->vlan = vlan;
2043
    s->model = strdup(model);
2044
    s->name = name ? strdup(name) : NULL;
2045 2046 2047 2048 2049
    s->fd = fd;
    qemu_set_fd_handler(fd, net_socket_accept, NULL, s);
    return 0;
}

2050 2051 2052
static int net_socket_connect_init(VLANState *vlan,
                                   const char *model,
                                   const char *name,
2053
                                   const char *host_str)
2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090
{
    NetSocketState *s;
    int fd, connected, ret, err;
    struct sockaddr_in saddr;

    if (parse_host_port(&saddr, host_str) < 0)
        return -1;

    fd = socket(PF_INET, SOCK_STREAM, 0);
    if (fd < 0) {
        perror("socket");
        return -1;
    }
    socket_set_nonblock(fd);

    connected = 0;
    for(;;) {
        ret = connect(fd, (struct sockaddr *)&saddr, sizeof(saddr));
        if (ret < 0) {
            err = socket_error();
            if (err == EINTR || err == EWOULDBLOCK) {
            } else if (err == EINPROGRESS) {
                break;
#ifdef _WIN32
            } else if (err == WSAEALREADY) {
                break;
#endif
            } else {
                perror("connect");
                closesocket(fd);
                return -1;
            }
        } else {
            connected = 1;
            break;
        }
    }
2091
    s = net_socket_fd_init(vlan, model, name, fd, connected);
2092 2093 2094 2095 2096 2097 2098 2099
    if (!s)
        return -1;
    snprintf(s->vc->info_str, sizeof(s->vc->info_str),
             "socket: connect to %s:%d",
             inet_ntoa(saddr.sin_addr), ntohs(saddr.sin_port));
    return 0;
}

2100 2101 2102
static int net_socket_mcast_init(VLANState *vlan,
                                 const char *model,
                                 const char *name,
2103
                                 const char *host_str)
2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116
{
    NetSocketState *s;
    int fd;
    struct sockaddr_in saddr;

    if (parse_host_port(&saddr, host_str) < 0)
        return -1;


    fd = net_socket_mcast_create(&saddr);
    if (fd < 0)
	return -1;

2117
    s = net_socket_fd_init(vlan, model, name, fd, 0);
2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129
    if (!s)
        return -1;

    s->dgram_dst = saddr;

    snprintf(s->vc->info_str, sizeof(s->vc->info_str),
             "socket: mcast=%s:%d",
             inet_ntoa(saddr.sin_addr), ntohs(saddr.sin_port));
    return 0;

}

2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156
typedef struct DumpState {
    VLANClientState *pcap_vc;
    int fd;
    int pcap_caplen;
} DumpState;

#define PCAP_MAGIC 0xa1b2c3d4

struct pcap_file_hdr {
    uint32_t magic;
    uint16_t version_major;
    uint16_t version_minor;
    int32_t thiszone;
    uint32_t sigfigs;
    uint32_t snaplen;
    uint32_t linktype;
};

struct pcap_sf_pkthdr {
    struct {
        int32_t tv_sec;
        int32_t tv_usec;
    } ts;
    uint32_t caplen;
    uint32_t len;
};

2157
static ssize_t dump_receive(VLANClientState *vc, const uint8_t *buf, size_t size)
2158
{
2159
    DumpState *s = vc->opaque;
2160 2161 2162 2163 2164 2165
    struct pcap_sf_pkthdr hdr;
    int64_t ts;
    int caplen;

    /* Early return in case of previous error. */
    if (s->fd < 0) {
2166
        return size;
2167 2168
    }

J
Jan Kiszka 已提交
2169
    ts = muldiv64(qemu_get_clock(vm_clock), 1000000, ticks_per_sec);
2170 2171
    caplen = size > s->pcap_caplen ? s->pcap_caplen : size;

J
Jan Kiszka 已提交
2172
    hdr.ts.tv_sec = ts / 1000000;
2173 2174 2175 2176 2177 2178 2179 2180 2181
    hdr.ts.tv_usec = ts % 1000000;
    hdr.caplen = caplen;
    hdr.len = size;
    if (write(s->fd, &hdr, sizeof(hdr)) != sizeof(hdr) ||
        write(s->fd, buf, caplen) != caplen) {
        qemu_log("-net dump write error - stop dump\n");
        close(s->fd);
        s->fd = -1;
    }
2182 2183

    return size;
2184 2185 2186 2187 2188 2189 2190 2191 2192 2193
}

static void net_dump_cleanup(VLANClientState *vc)
{
    DumpState *s = vc->opaque;

    close(s->fd);
    qemu_free(s);
}

2194
static int net_dump_init(Monitor *mon, VLANState *vlan, const char *device,
2195 2196 2197 2198 2199 2200 2201
                         const char *name, const char *filename, int len)
{
    struct pcap_file_hdr hdr;
    DumpState *s;

    s = qemu_malloc(sizeof(DumpState));

2202
    s->fd = open(filename, O_CREAT | O_WRONLY | O_BINARY, 0644);
2203
    if (s->fd < 0) {
2204
        config_error(mon, "-net dump: can't open %s\n", filename);
2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218
        return -1;
    }

    s->pcap_caplen = len;

    hdr.magic = PCAP_MAGIC;
    hdr.version_major = 2;
    hdr.version_minor = 4;
    hdr.thiszone = 0;
    hdr.sigfigs = 0;
    hdr.snaplen = s->pcap_caplen;
    hdr.linktype = 1;

    if (write(s->fd, &hdr, sizeof(hdr)) < sizeof(hdr)) {
2219
        config_error(mon, "-net dump write error: %s\n", strerror(errno));
2220 2221 2222 2223 2224
        close(s->fd);
        qemu_free(s);
        return -1;
    }

2225
    s->pcap_vc = qemu_new_vlan_client(vlan, device, name, NULL, dump_receive, NULL,
2226 2227 2228 2229 2230 2231
                                      net_dump_cleanup, s);
    snprintf(s->pcap_vc->info_str, sizeof(s->pcap_vc->info_str),
             "dump to %s (len=%d)", filename, len);
    return 0;
}

2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249
/* find or alloc a new VLAN */
VLANState *qemu_find_vlan(int id)
{
    VLANState **pvlan, *vlan;
    for(vlan = first_vlan; vlan != NULL; vlan = vlan->next) {
        if (vlan->id == id)
            return vlan;
    }
    vlan = qemu_mallocz(sizeof(VLANState));
    vlan->id = id;
    vlan->next = NULL;
    pvlan = &first_vlan;
    while (*pvlan != NULL)
        pvlan = &(*pvlan)->next;
    *pvlan = vlan;
    return vlan;
}

2250 2251 2252 2253 2254 2255 2256 2257 2258 2259
static int nic_get_free_idx(void)
{
    int index;

    for (index = 0; index < MAX_NICS; index++)
        if (!nd_table[index].used)
            return index;
    return -1;
}

2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293
void qemu_check_nic_model(NICInfo *nd, const char *model)
{
    const char *models[2];

    models[0] = model;
    models[1] = NULL;

    qemu_check_nic_model_list(nd, models, model);
}

void qemu_check_nic_model_list(NICInfo *nd, const char * const *models,
                               const char *default_model)
{
    int i, exit_status = 0;

    if (!nd->model)
        nd->model = strdup(default_model);

    if (strcmp(nd->model, "?") != 0) {
        for (i = 0 ; models[i]; i++)
            if (strcmp(nd->model, models[i]) == 0)
                return;

        fprintf(stderr, "qemu: Unsupported NIC model: %s\n", nd->model);
        exit_status = 1;
    }

    fprintf(stderr, "qemu: Supported NIC models: ");
    for (i = 0 ; models[i]; i++)
        fprintf(stderr, "%s%c", models[i], models[i+1] ? ',' : '\n');

    exit(exit_status);
}

2294
int net_client_init(Monitor *mon, const char *device, const char *p)
2295 2296 2297 2298
{
    char buf[1024];
    int vlan_id, ret;
    VLANState *vlan;
2299
    char *name = NULL;
2300 2301 2302 2303 2304 2305

    vlan_id = 0;
    if (get_param_value(buf, sizeof(buf), "vlan", p)) {
        vlan_id = strtol(buf, NULL, 0);
    }
    vlan = qemu_find_vlan(vlan_id);
2306

2307
    if (get_param_value(buf, sizeof(buf), "name", p)) {
2308
        name = qemu_strdup(buf);
2309
    }
2310
    if (!strcmp(device, "nic")) {
2311
        static const char * const nic_params[] = {
2312
            "vlan", "name", "macaddr", "model", "addr", "vectors", NULL
2313
        };
2314 2315
        NICInfo *nd;
        uint8_t *macaddr;
2316
        int idx = nic_get_free_idx();
2317

2318
        if (check_params(buf, sizeof(buf), nic_params, p) < 0) {
2319 2320 2321
            config_error(mon, "invalid parameter '%s' in '%s'\n", buf, p);
            ret = -1;
            goto out;
2322
        }
2323
        if (idx == -1 || nb_nics >= MAX_NICS) {
2324
            config_error(mon, "Too Many NICs\n");
2325 2326
            ret = -1;
            goto out;
2327
        }
2328
        nd = &nd_table[idx];
2329 2330 2331 2332 2333 2334
        macaddr = nd->macaddr;
        macaddr[0] = 0x52;
        macaddr[1] = 0x54;
        macaddr[2] = 0x00;
        macaddr[3] = 0x12;
        macaddr[4] = 0x34;
2335
        macaddr[5] = 0x56 + idx;
2336 2337 2338

        if (get_param_value(buf, sizeof(buf), "macaddr", p)) {
            if (parse_macaddr(macaddr, buf) < 0) {
2339
                config_error(mon, "invalid syntax for ethernet address\n");
2340 2341
                ret = -1;
                goto out;
2342 2343 2344 2345 2346
            }
        }
        if (get_param_value(buf, sizeof(buf), "model", p)) {
            nd->model = strdup(buf);
        }
2347 2348 2349
        if (get_param_value(buf, sizeof(buf), "addr", p)) {
            nd->devaddr = strdup(buf);
        }
2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365
        nd->nvectors = NIC_NVECTORS_UNSPECIFIED;
        if (get_param_value(buf, sizeof(buf), "vectors", p)) {
            char *endptr;
            long vectors = strtol(buf, &endptr, 0);
            if (*endptr) {
                config_error(mon, "invalid syntax for # of vectors\n");
                ret = -1;
                goto out;
            }
            if (vectors < 0 || vectors > 0x7ffffff) {
                config_error(mon, "invalid # of vectors\n");
                ret = -1;
                goto out;
            }
            nd->nvectors = vectors;
        }
2366
        nd->vlan = vlan;
2367
        nd->name = name;
2368
        nd->used = 1;
2369
        name = NULL;
2370 2371
        nb_nics++;
        vlan->nb_guest_devs++;
2372
        ret = idx;
2373 2374
    } else
    if (!strcmp(device, "none")) {
2375
        if (*p != '\0') {
2376 2377 2378
            config_error(mon, "'none' takes no parameters\n");
            ret = -1;
            goto out;
2379
        }
2380 2381 2382 2383 2384 2385
        /* does nothing. It is needed to signal that no network cards
           are wanted */
        ret = 0;
    } else
#ifdef CONFIG_SLIRP
    if (!strcmp(device, "user")) {
2386
        static const char * const slirp_params[] = {
2387 2388 2389
            "vlan", "name", "hostname", "restrict", "ip", "net", "host",
            "tftp", "bootfile", "dhcpstart", "dns", "smb", "smbserver",
            "hostfwd", "guestfwd", NULL
2390
        };
2391
        struct slirp_config_str *config;
2392 2393 2394 2395
        int restricted = 0;
        char *vnet = NULL;
        char *vhost = NULL;
        char *vhostname = NULL;
2396 2397
        char *tftp_export = NULL;
        char *bootfile = NULL;
2398 2399
        char *vdhcp_start = NULL;
        char *vnamesrv = NULL;
2400
        char *smb_export = NULL;
2401
        char *vsmbsrv = NULL;
2402
        const char *q;
J
Jan Kiszka 已提交
2403

2404
        if (check_params(buf, sizeof(buf), slirp_params, p) < 0) {
2405 2406 2407
            config_error(mon, "invalid parameter '%s' in '%s'\n", buf, p);
            ret = -1;
            goto out;
2408
        }
2409 2410 2411 2412 2413 2414 2415 2416 2417 2418 2419 2420
        if (get_param_value(buf, sizeof(buf), "ip", p)) {
            /* emulate legacy parameter */
            vnet = qemu_malloc(strlen(buf) + strlen("/24") + 1);
            strcpy(vnet, buf);
            strcat(vnet, "/24");
        }
        if (get_param_value(buf, sizeof(buf), "net", p)) {
            vnet = qemu_strdup(buf);
        }
        if (get_param_value(buf, sizeof(buf), "host", p)) {
            vhost = qemu_strdup(buf);
        }
2421
        if (get_param_value(buf, sizeof(buf), "hostname", p)) {
2422
            vhostname = qemu_strdup(buf);
2423
        }
2424
        if (get_param_value(buf, sizeof(buf), "restrict", p)) {
J
Jan Kiszka 已提交
2425
            restricted = (buf[0] == 'y') ? 1 : 0;
2426
        }
2427 2428 2429 2430 2431
        if (get_param_value(buf, sizeof(buf), "dhcpstart", p)) {
            vdhcp_start = qemu_strdup(buf);
        }
        if (get_param_value(buf, sizeof(buf), "dns", p)) {
            vnamesrv = qemu_strdup(buf);
2432
        }
2433 2434 2435 2436 2437 2438 2439 2440
        if (get_param_value(buf, sizeof(buf), "tftp", p)) {
            tftp_export = qemu_strdup(buf);
        }
        if (get_param_value(buf, sizeof(buf), "bootfile", p)) {
            bootfile = qemu_strdup(buf);
        }
        if (get_param_value(buf, sizeof(buf), "smb", p)) {
            smb_export = qemu_strdup(buf);
2441 2442 2443
            if (get_param_value(buf, sizeof(buf), "smbserver", p)) {
                vsmbsrv = qemu_strdup(buf);
            }
2444 2445 2446 2447 2448
        }
        q = p;
        while (1) {
            config = qemu_malloc(sizeof(*config));
            if (!get_next_param_value(config->str, sizeof(config->str),
2449
                                      "hostfwd", &q)) {
2450 2451
                break;
            }
2452
            config->flags = SLIRP_CFG_HOSTFWD;
2453 2454 2455 2456 2457 2458 2459 2460
            config->next = slirp_configs;
            slirp_configs = config;
            config = NULL;
        }
        q = p;
        while (1) {
            config = qemu_malloc(sizeof(*config));
            if (!get_next_param_value(config->str, sizeof(config->str),
2461
                                      "guestfwd", &q)) {
2462 2463 2464 2465 2466 2467 2468 2469
                break;
            }
            config->flags = 0;
            config->next = slirp_configs;
            slirp_configs = config;
            config = NULL;
        }
        qemu_free(config);
2470
        vlan->nb_host_devs++;
2471 2472 2473 2474 2475 2476
        ret = net_slirp_init(mon, vlan, device, name, restricted, vnet, vhost,
                             vhostname, tftp_export, bootfile, vdhcp_start,
                             vnamesrv, smb_export, vsmbsrv);
        qemu_free(vnet);
        qemu_free(vhost);
        qemu_free(vhostname);
2477 2478
        qemu_free(tftp_export);
        qemu_free(bootfile);
2479 2480
        qemu_free(vdhcp_start);
        qemu_free(vnamesrv);
2481
        qemu_free(smb_export);
2482
        qemu_free(vsmbsrv);
2483
    } else if (!strcmp(device, "channel")) {
2484 2485 2486 2487 2488
        if (!slirp_inited) {
            struct slirp_config_str *config;

            config = qemu_malloc(sizeof(*config));
            pstrcpy(config->str, sizeof(config->str), p);
2489
            config->flags = SLIRP_CFG_LEGACY;
2490 2491 2492
            config->next = slirp_configs;
            slirp_configs = config;
        } else {
2493
            slirp_guestfwd(mon, p, 1);
2494 2495
        }
        ret = 0;
2496 2497 2498 2499
    } else
#endif
#ifdef _WIN32
    if (!strcmp(device, "tap")) {
2500 2501 2502
        static const char * const tap_params[] = {
            "vlan", "name", "ifname", NULL
        };
2503
        char ifname[64];
2504

2505
        if (check_params(buf, sizeof(buf), tap_params, p) < 0) {
2506 2507 2508
            config_error(mon, "invalid parameter '%s' in '%s'\n", buf, p);
            ret = -1;
            goto out;
2509
        }
2510
        if (get_param_value(ifname, sizeof(ifname), "ifname", p) <= 0) {
2511
            config_error(mon, "tap: no interface name\n");
2512 2513
            ret = -1;
            goto out;
2514 2515
        }
        vlan->nb_host_devs++;
2516
        ret = tap_win32_init(vlan, device, name, ifname);
2517
    } else
M
malc 已提交
2518
#elif defined (_AIX)
2519 2520
#else
    if (!strcmp(device, "tap")) {
2521
        char ifname[64], chkbuf[64];
2522
        char setup_script[1024], down_script[1024];
2523
        TAPState *s;
2524 2525 2526
        int fd;
        vlan->nb_host_devs++;
        if (get_param_value(buf, sizeof(buf), "fd", p) > 0) {
2527 2528 2529
            static const char * const fd_params[] = {
                "vlan", "name", "fd", "sndbuf", NULL
            };
2530
            if (check_params(chkbuf, sizeof(chkbuf), fd_params, p) < 0) {
2531 2532 2533
                config_error(mon, "invalid parameter '%s' in '%s'\n", chkbuf, p);
                ret = -1;
                goto out;
2534
            }
2535 2536
            fd = strtol(buf, NULL, 0);
            fcntl(fd, F_SETFL, O_NONBLOCK);
2537
            s = net_tap_fd_init(vlan, device, name, fd);
2538
        } else {
2539
            static const char * const tap_params[] = {
2540
                "vlan", "name", "ifname", "script", "downscript", "sndbuf", NULL
2541
            };
2542
            if (check_params(chkbuf, sizeof(chkbuf), tap_params, p) < 0) {
2543 2544 2545
                config_error(mon, "invalid parameter '%s' in '%s'\n", chkbuf, p);
                ret = -1;
                goto out;
2546
            }
2547 2548 2549 2550 2551 2552 2553 2554 2555
            if (get_param_value(ifname, sizeof(ifname), "ifname", p) <= 0) {
                ifname[0] = '\0';
            }
            if (get_param_value(setup_script, sizeof(setup_script), "script", p) == 0) {
                pstrcpy(setup_script, sizeof(setup_script), DEFAULT_NETWORK_SCRIPT);
            }
            if (get_param_value(down_script, sizeof(down_script), "downscript", p) == 0) {
                pstrcpy(down_script, sizeof(down_script), DEFAULT_NETWORK_DOWN_SCRIPT);
            }
2556 2557 2558
            s = net_tap_init(vlan, device, name, ifname, setup_script, down_script);
        }
        if (s != NULL) {
2559 2560 2561
            if (get_param_value(buf, sizeof(buf), "sndbuf", p)) {
                tap_set_sndbuf(s, atoi(buf), mon);
            }
2562 2563 2564
            ret = 0;
        } else {
            ret = -1;
2565 2566 2567 2568
        }
    } else
#endif
    if (!strcmp(device, "socket")) {
2569
        char chkbuf[64];
2570
        if (get_param_value(buf, sizeof(buf), "fd", p) > 0) {
2571 2572 2573
            static const char * const fd_params[] = {
                "vlan", "name", "fd", NULL
            };
2574
            int fd;
2575
            if (check_params(chkbuf, sizeof(chkbuf), fd_params, p) < 0) {
2576 2577 2578
                config_error(mon, "invalid parameter '%s' in '%s'\n", chkbuf, p);
                ret = -1;
                goto out;
2579
            }
2580 2581
            fd = strtol(buf, NULL, 0);
            ret = -1;
2582
            if (net_socket_fd_init(vlan, device, name, fd, 1))
2583 2584
                ret = 0;
        } else if (get_param_value(buf, sizeof(buf), "listen", p) > 0) {
2585 2586 2587
            static const char * const listen_params[] = {
                "vlan", "name", "listen", NULL
            };
2588
            if (check_params(chkbuf, sizeof(chkbuf), listen_params, p) < 0) {
2589 2590 2591
                config_error(mon, "invalid parameter '%s' in '%s'\n", chkbuf, p);
                ret = -1;
                goto out;
2592
            }
2593
            ret = net_socket_listen_init(vlan, device, name, buf);
2594
        } else if (get_param_value(buf, sizeof(buf), "connect", p) > 0) {
2595 2596 2597
            static const char * const connect_params[] = {
                "vlan", "name", "connect", NULL
            };
2598
            if (check_params(chkbuf, sizeof(chkbuf), connect_params, p) < 0) {
2599 2600 2601
                config_error(mon, "invalid parameter '%s' in '%s'\n", chkbuf, p);
                ret = -1;
                goto out;
2602
            }
2603
            ret = net_socket_connect_init(vlan, device, name, buf);
2604
        } else if (get_param_value(buf, sizeof(buf), "mcast", p) > 0) {
2605 2606 2607
            static const char * const mcast_params[] = {
                "vlan", "name", "mcast", NULL
            };
2608
            if (check_params(chkbuf, sizeof(chkbuf), mcast_params, p) < 0) {
2609 2610 2611
                config_error(mon, "invalid parameter '%s' in '%s'\n", chkbuf, p);
                ret = -1;
                goto out;
2612
            }
2613
            ret = net_socket_mcast_init(vlan, device, name, buf);
2614
        } else {
2615
            config_error(mon, "Unknown socket options: %s\n", p);
2616 2617
            ret = -1;
            goto out;
2618 2619 2620 2621 2622
        }
        vlan->nb_host_devs++;
    } else
#ifdef CONFIG_VDE
    if (!strcmp(device, "vde")) {
2623 2624 2625
        static const char * const vde_params[] = {
            "vlan", "name", "sock", "port", "group", "mode", NULL
        };
2626 2627
        char vde_sock[1024], vde_group[512];
	int vde_port, vde_mode;
2628

2629
        if (check_params(buf, sizeof(buf), vde_params, p) < 0) {
2630 2631 2632
            config_error(mon, "invalid parameter '%s' in '%s'\n", buf, p);
            ret = -1;
            goto out;
2633
        }
2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650
        vlan->nb_host_devs++;
        if (get_param_value(vde_sock, sizeof(vde_sock), "sock", p) <= 0) {
	    vde_sock[0] = '\0';
	}
	if (get_param_value(buf, sizeof(buf), "port", p) > 0) {
	    vde_port = strtol(buf, NULL, 10);
	} else {
	    vde_port = 0;
	}
	if (get_param_value(vde_group, sizeof(vde_group), "group", p) <= 0) {
	    vde_group[0] = '\0';
	}
	if (get_param_value(buf, sizeof(buf), "mode", p) > 0) {
	    vde_mode = strtol(buf, NULL, 8);
	} else {
	    vde_mode = 0700;
	}
2651
	ret = net_vde_init(vlan, device, name, vde_sock, vde_port, vde_group, vde_mode);
2652 2653
    } else
#endif
2654 2655 2656 2657 2658 2659 2660 2661 2662
    if (!strcmp(device, "dump")) {
        int len = 65536;

        if (get_param_value(buf, sizeof(buf), "len", p) > 0) {
            len = strtol(buf, NULL, 0);
        }
        if (!get_param_value(buf, sizeof(buf), "file", p)) {
            snprintf(buf, sizeof(buf), "qemu-vlan%d.pcap", vlan_id);
        }
2663
        ret = net_dump_init(mon, vlan, device, name, buf, len);
2664
    } else {
2665
        config_error(mon, "Unknown network device: %s\n", device);
2666 2667
        ret = -1;
        goto out;
2668 2669
    }
    if (ret < 0) {
2670
        config_error(mon, "Could not initialize device '%s'\n", device);
2671
    }
2672
out:
2673
    qemu_free(name);
2674 2675 2676
    return ret;
}

2677 2678 2679 2680 2681 2682 2683 2684
void net_client_uninit(NICInfo *nd)
{
    nd->vlan->nb_guest_devs--;
    nb_nics--;
    nd->used = 0;
    free((void *)nd->model);
}

2685 2686 2687
static int net_host_check_device(const char *device)
{
    int i;
2688
    const char *valid_param_list[] = { "tap", "socket", "dump"
2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704
#ifdef CONFIG_SLIRP
                                       ,"user"
#endif
#ifdef CONFIG_VDE
                                       ,"vde"
#endif
    };
    for (i = 0; i < sizeof(valid_param_list) / sizeof(char *); i++) {
        if (!strncmp(valid_param_list[i], device,
                     strlen(valid_param_list[i])))
            return 1;
    }

    return 0;
}

A
aliguori 已提交
2705
void net_host_device_add(Monitor *mon, const char *device, const char *opts)
2706 2707
{
    if (!net_host_check_device(device)) {
A
aliguori 已提交
2708
        monitor_printf(mon, "invalid host network device %s\n", device);
2709 2710
        return;
    }
2711
    if (net_client_init(mon, device, opts ? opts : "") < 0) {
2712 2713
        monitor_printf(mon, "adding host network device %s failed\n", device);
    }
2714 2715
}

A
aliguori 已提交
2716
void net_host_device_remove(Monitor *mon, int vlan_id, const char *device)
2717 2718 2719 2720 2721 2722
{
    VLANState *vlan;
    VLANClientState *vc;

    vlan = qemu_find_vlan(vlan_id);

2723 2724
    for (vc = vlan->first_client; vc != NULL; vc = vc->next) {
        if (!strcmp(vc->name, device)) {
2725
            break;
2726 2727
        }
    }
2728 2729

    if (!vc) {
A
aliguori 已提交
2730
        monitor_printf(mon, "can't find device %s\n", device);
2731 2732
        return;
    }
2733 2734 2735 2736
    if (!net_host_check_device(vc->model)) {
        monitor_printf(mon, "invalid host network device %s\n", device);
        return;
    }
2737 2738 2739
    qemu_del_vlan_client(vc);
}

2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756
int net_client_parse(const char *str)
{
    const char *p;
    char *q;
    char device[64];

    p = str;
    q = device;
    while (*p != '\0' && *p != ',') {
        if ((q - device) < sizeof(device) - 1)
            *q++ = *p;
        p++;
    }
    *q = '\0';
    if (*p == ',')
        p++;

2757
    return net_client_init(NULL, device, p);
2758 2759
}

2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779
void net_set_boot_mask(int net_boot_mask)
{
    int i;

    /* Only the first four NICs may be bootable */
    net_boot_mask = net_boot_mask & 0xF;

    for (i = 0; i < nb_nics; i++) {
        if (net_boot_mask & (1 << i)) {
            nd_table[i].bootable = 1;
            net_boot_mask &= ~(1 << i);
        }
    }

    if (net_boot_mask) {
        fprintf(stderr, "Cannot boot from non-existent NIC\n");
        exit(1);
    }
}

A
aliguori 已提交
2780
void do_info_network(Monitor *mon)
2781 2782 2783 2784 2785
{
    VLANState *vlan;
    VLANClientState *vc;

    for(vlan = first_vlan; vlan != NULL; vlan = vlan->next) {
A
aliguori 已提交
2786
        monitor_printf(mon, "VLAN %d devices:\n", vlan->id);
2787
        for(vc = vlan->first_client; vc != NULL; vc = vc->next)
A
aliguori 已提交
2788
            monitor_printf(mon, "  %s: %s\n", vc->name, vc->info_str);
2789 2790 2791
    }
}

A
aliguori 已提交
2792
int do_set_link(Monitor *mon, const char *name, const char *up_or_down)
2793 2794 2795 2796 2797 2798 2799
{
    VLANState *vlan;
    VLANClientState *vc = NULL;

    for (vlan = first_vlan; vlan != NULL; vlan = vlan->next)
        for (vc = vlan->first_client; vc != NULL; vc = vc->next)
            if (strcmp(vc->name, name) == 0)
2800 2801
                goto done;
done:
2802 2803

    if (!vc) {
A
aliguori 已提交
2804
        monitor_printf(mon, "could not find network device '%s'", name);
2805 2806 2807 2808 2809 2810 2811 2812
        return 0;
    }

    if (strcmp(up_or_down, "up") == 0)
        vc->link_down = 0;
    else if (strcmp(up_or_down, "down") == 0)
        vc->link_down = 1;
    else
A
aliguori 已提交
2813 2814
        monitor_printf(mon, "invalid link status '%s'; only 'up' or 'down' "
                       "valid\n", up_or_down);
2815

2816 2817 2818
    if (vc->link_status_changed)
        vc->link_status_changed(vc);

2819 2820 2821
    return 1;
}

2822 2823 2824 2825 2826 2827
void net_cleanup(void)
{
    VLANState *vlan;

    /* close network clients */
    for(vlan = first_vlan; vlan != NULL; vlan = vlan->next) {
2828
        VLANClientState *vc = vlan->first_client;
2829

2830 2831
        while (vc) {
            VLANClientState *next = vc->next;
2832

2833 2834 2835
            qemu_del_vlan_client(vc);

            vc = next;
2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854
        }
    }
}

void net_client_check(void)
{
    VLANState *vlan;

    for(vlan = first_vlan; vlan != NULL; vlan = vlan->next) {
        if (vlan->nb_guest_devs == 0 && vlan->nb_host_devs == 0)
            continue;
        if (vlan->nb_guest_devs == 0)
            fprintf(stderr, "Warning: vlan %d with no nics\n", vlan->id);
        if (vlan->nb_host_devs == 0)
            fprintf(stderr,
                    "Warning: vlan %d is not connected to host network\n",
                    vlan->id);
    }
}