qemu_monitor.c 107.3 KB
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/*
 * qemu_monitor.c: interaction with QEMU monitor console
 *
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 * Copyright (C) 2006-2015 Red Hat, Inc.
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 * Copyright (C) 2006 Daniel P. Berrange
 *
 * This library is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 * License as published by the Free Software Foundation; either
 * version 2.1 of the License, or (at your option) any later version.
 *
 * This library is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * Lesser General Public License for more details.
 *
 * You should have received a copy of the GNU Lesser General Public
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 * License along with this library.  If not, see
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 * <http://www.gnu.org/licenses/>.
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 *
 * Author: Daniel P. Berrange <berrange@redhat.com>
 */

#include <config.h>

#include <poll.h>
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#include <sys/socket.h>
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#include <sys/un.h>
#include <unistd.h>
#include <fcntl.h>

#include "qemu_monitor.h"
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#include "qemu_monitor_text.h"
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#include "qemu_monitor_json.h"
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#include "qemu_domain.h"
#include "qemu_process.h"
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#include "virerror.h"
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#include "viralloc.h"
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#include "virlog.h"
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#include "virfile.h"
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#include "virprocess.h"
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#include "virobject.h"
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#include "virprobe.h"
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#include "virstring.h"
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#include "virtime.h"
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#ifdef WITH_DTRACE_PROBES
# include "libvirt_qemu_probes.h"
#endif

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#define VIR_FROM_THIS VIR_FROM_QEMU

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VIR_LOG_INIT("qemu.qemu_monitor");

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#define DEBUG_IO 0
#define DEBUG_RAW_IO 0
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/* We read from QEMU until seeing a \r\n pair to indicate a
 * completed reply or event. To avoid memory denial-of-service
 * though, we must have a size limit on amount of data we
 * buffer. 10 MB is large enough that it ought to cope with
 * normal QEMU replies, and small enough that we're not
 * consuming unreasonable mem.
 */
#define QEMU_MONITOR_MAX_RESPONSE (10 * 1024 * 1024)

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struct _qemuMonitor {
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    virObjectLockable parent;
69

70 71
    virCond notify;

72
    int fd;
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    /* Represents the watch number to be used for updating and
     * unregistering the monitor @fd for events in the event loop:
     * > 0: valid watch number
     * = 0: not registered
     * < 0: an error occurred during the registration of @fd */
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    int watch;
    int hasSendFD;

    virDomainObjPtr vm;

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    qemuMonitorCallbacksPtr cb;
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    void *callbackOpaque;
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    /* If there's a command being processed this will be
     * non-NULL */
    qemuMonitorMessagePtr msg;

    /* Buffer incoming data ready for Text/QMP monitor
     * code to process & find message boundaries */
    size_t bufferOffset;
    size_t bufferLength;
    char *buffer;

    /* If anything went wrong, this will be fed back
     * the next monitor msg */
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    virError lastError;

    int nextSerial;
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    bool json;
    bool waitGreeting;
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    /* cache of query-command-line-options results */
    virJSONValuePtr options;
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    /* If found, path to the virtio memballoon driver */
    char *balloonpath;
    bool ballooninit;
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    /* Log file context of the qemu process to dig for usable info */
    qemuMonitorReportDomainLogError logFunc;
    void *logOpaque;
    virFreeCallback logDestroy;
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};

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/**
 * QEMU_CHECK_MONITOR_FULL:
 * @mon: monitor pointer variable to check, evaluated multiple times, no parentheses
 * @exit: statement that is used to exit the function
 *
 * This macro checks that the monitor is valid for given operation and exits
 * the function if not. The macro also adds a debug statement regarding the
 * monitor.
 */
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#define QEMU_CHECK_MONITOR_FULL(mon, exit) \
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    do { \
        if (!mon) { \
            virReportError(VIR_ERR_INVALID_ARG, "%s", \
                           _("monitor must not be NULL")); \
            exit; \
        } \
        VIR_DEBUG("mon:%p vm:%p json:%d fd:%d", \
                  mon, mon->vm, mon->json, mon->fd); \
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        if (!mon->json) { \
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            virReportError(VIR_ERR_OPERATION_UNSUPPORTED, "%s", \
                           _("JSON monitor is required")); \
            exit; \
        } \
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    } while (0)
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/* Check monitor and return NULL on error */
#define QEMU_CHECK_MONITOR_NULL(mon) \
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    QEMU_CHECK_MONITOR_FULL(mon, return NULL)
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/* Check monitor and return -1 on error */
#define QEMU_CHECK_MONITOR(mon) \
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    QEMU_CHECK_MONITOR_FULL(mon, return -1)
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/* Check monitor and jump to the provided label */
#define QEMU_CHECK_MONITOR_GOTO(mon, label) \
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    QEMU_CHECK_MONITOR_FULL(mon, goto label)
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static virClassPtr qemuMonitorClass;
static void qemuMonitorDispose(void *obj);

static int qemuMonitorOnceInit(void)
{
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    if (!VIR_CLASS_NEW(qemuMonitor, virClassForObjectLockable()))
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        return -1;

    return 0;
}

VIR_ONCE_GLOBAL_INIT(qemuMonitor)

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VIR_ENUM_IMPL(qemuMonitorMigrationStatus,
              QEMU_MONITOR_MIGRATION_STATUS_LAST,
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              "inactive", "setup",
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              "active", "pre-switchover",
              "device", "postcopy-active",
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              "completed", "failed",
              "cancelling", "cancelled")
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VIR_ENUM_IMPL(qemuMonitorVMStatus,
              QEMU_MONITOR_VM_STATUS_LAST,
              "debug", "inmigrate", "internal-error", "io-error", "paused",
              "postmigrate", "prelaunch", "finish-migrate", "restore-vm",
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              "running", "save-vm", "shutdown", "watchdog", "guest-panicked")
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typedef enum {
    QEMU_MONITOR_BLOCK_IO_STATUS_OK,
    QEMU_MONITOR_BLOCK_IO_STATUS_FAILED,
    QEMU_MONITOR_BLOCK_IO_STATUS_NOSPACE,

    QEMU_MONITOR_BLOCK_IO_STATUS_LAST
} qemuMonitorBlockIOStatus;

VIR_ENUM_DECL(qemuMonitorBlockIOStatus)

VIR_ENUM_IMPL(qemuMonitorBlockIOStatus,
              QEMU_MONITOR_BLOCK_IO_STATUS_LAST,
              "ok", "failed", "nospace")

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VIR_ENUM_IMPL(qemuMonitorDumpStatus,
              QEMU_MONITOR_DUMP_STATUS_LAST,
              "none", "active", "completed", "failed")

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char *
qemuMonitorEscapeArg(const char *in)
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{
    int len = 0;
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    size_t i, j;
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    char *out;

    /* To pass through the QEMU monitor, we need to use escape
       sequences: \r, \n, \", \\
    */

    for (i = 0; in[i] != '\0'; i++) {
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        switch (in[i]) {
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        case '\r':
        case '\n':
        case '"':
        case '\\':
            len += 2;
            break;
        default:
            len += 1;
            break;
        }
    }

    if (VIR_ALLOC_N(out, len + 1) < 0)
        return NULL;

    for (i = j = 0; in[i] != '\0'; i++) {
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        switch (in[i]) {
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        case '\r':
            out[j++] = '\\';
            out[j++] = 'r';
            break;
        case '\n':
            out[j++] = '\\';
            out[j++] = 'n';
            break;
        case '"':
        case '\\':
            out[j++] = '\\';
            out[j++] = in[i];
            break;
        default:
            out[j++] = in[i];
            break;
        }
    }
    out[j] = '\0';

    return out;
}

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char *
qemuMonitorUnescapeArg(const char *in)
258
{
259
    size_t i, j;
260
    char *out;
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    int len = strlen(in);
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    char next;

264
    if (VIR_ALLOC_N(out, len + 1) < 0)
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        return NULL;

    for (i = j = 0; i < len; ++i) {
        next = in[i];
        if (in[i] == '\\') {
            ++i;
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            switch (in[i]) {
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            case 'r':
                next = '\r';
                break;
            case 'n':
                next = '\n';
                break;
            case '"':
            case '\\':
                next = in[i];
                break;
            default:
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                /* invalid input (including trailing '\' at end of in) */
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                VIR_FREE(out);
                return NULL;
            }
        }
        out[j++] = next;
    }
    out[j] = '\0';

    return out;
}

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#if DEBUG_RAW_IO
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# include <c-ctype.h>
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static char *
qemuMonitorEscapeNonPrintable(const char *text)
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{
301
    size_t i;
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    virBuffer buf = VIR_BUFFER_INITIALIZER;
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    for (i = 0; text[i] != '\0'; i++) {
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        if (c_isprint(text[i]) ||
            text[i] == '\n' ||
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            (text[i] == '\r' && text[i + 1] == '\n'))
            virBufferAddChar(&buf, text[i]);
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        else
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            virBufferAsprintf(&buf, "0x%02x", text[i]);
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    }
    return virBufferContentAndReset(&buf);
}
#endif

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static void
qemuMonitorDispose(void *obj)
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{
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    qemuMonitorPtr mon = obj;

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    VIR_DEBUG("mon=%p", mon);
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    if (mon->cb && mon->cb->destroy)
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        (mon->cb->destroy)(mon, mon->vm, mon->callbackOpaque);
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    virObjectUnref(mon->vm);

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    virResetError(&mon->lastError);
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    virCondDestroy(&mon->notify);
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    VIR_FREE(mon->buffer);
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    virJSONValueFree(mon->options);
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    VIR_FREE(mon->balloonpath);
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}


static int
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qemuMonitorOpenUnix(const char *monitor,
                    pid_t cpid,
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                    bool retry,
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                    unsigned long long timeout)
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{
    struct sockaddr_un addr;
    int monfd;
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    virTimeBackOffVar timebackoff;
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    int ret = -1;
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    if ((monfd = socket(AF_UNIX, SOCK_STREAM, 0)) < 0) {
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        virReportSystemError(errno,
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                             "%s", _("failed to create socket"));
        return -1;
    }

    memset(&addr, 0, sizeof(addr));
    addr.sun_family = AF_UNIX;
    if (virStrcpyStatic(addr.sun_path, monitor) == NULL) {
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        virReportError(VIR_ERR_INTERNAL_ERROR,
                       _("Monitor path %s too big for destination"), monitor);
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        goto error;
    }

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    if (retry) {
        if (virTimeBackOffStart(&timebackoff, 1, timeout * 1000) < 0)
            goto error;
        while (virTimeBackOffWait(&timebackoff)) {
            ret = connect(monfd, (struct sockaddr *)&addr, sizeof(addr));
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            if (ret == 0)
                break;
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            if ((errno == ENOENT || errno == ECONNREFUSED) &&
                (!cpid || virProcessKill(cpid, 0) == 0)) {
                /* ENOENT       : Socket may not have shown up yet
                 * ECONNREFUSED : Leftover socket hasn't been removed yet */
                continue;
            }
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            virReportSystemError(errno, "%s",
                                 _("failed to connect to monitor socket"));
            goto error;
        }
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        if (ret != 0) {
            virReportSystemError(errno, "%s",
                                 _("monitor socket did not show up"));
            goto error;
        }
    } else {
        ret = connect(monfd, (struct sockaddr *) &addr, sizeof(addr));
        if (ret < 0) {
            virReportSystemError(errno, "%s",
                                 _("failed to connect to monitor socket"));
            goto error;
        }
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    }

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    return monfd;
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396
 error:
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    VIR_FORCE_CLOSE(monfd);
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    return -1;
}

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402
static int
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qemuMonitorOpenPty(const char *monitor)
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{
    int monfd;

    if ((monfd = open(monitor, O_RDWR)) < 0) {
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        virReportError(VIR_ERR_INTERNAL_ERROR,
                       _("Unable to open monitor path %s"), monitor);
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        return -1;
    }

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    return monfd;
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}
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/* This method processes data that has been received
 * from the monitor. Looking for async events and
 * replies/errors.
 */
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static int
qemuMonitorIOProcess(qemuMonitorPtr mon)
{
    int len;
    qemuMonitorMessagePtr msg = NULL;

    /* See if there's a message & whether its ready for its reply
     * ie whether its completed writing all its data */
    if (mon->msg && mon->msg->txOffset == mon->msg->txLength)
        msg = mon->msg;

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#if DEBUG_IO
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# if DEBUG_RAW_IO
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    char *str1 = qemuMonitorEscapeNonPrintable(msg ? msg->txBuffer : "");
    char *str2 = qemuMonitorEscapeNonPrintable(mon->buffer);
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    VIR_ERROR(_("Process %d %p %p [[[[%s]]][[[%s]]]"), (int)mon->bufferOffset, mon->msg, msg, str1, str2);
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    VIR_FREE(str1);
    VIR_FREE(str2);
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# else
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    VIR_DEBUG("Process %d", (int)mon->bufferOffset);
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# endif
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#endif

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    PROBE_QUIET(QEMU_MONITOR_IO_PROCESS, "mon=%p buf=%s len=%zu",
                mon, mon->buffer, mon->bufferOffset);
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    len = qemuMonitorJSONIOProcess(mon,
                                   mon->buffer, mon->bufferOffset,
                                   msg);
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    if (len < 0)
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        return -1;

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    if (len && mon->waitGreeting)
        mon->waitGreeting = false;
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    if (len < mon->bufferOffset) {
        memmove(mon->buffer, mon->buffer + len, mon->bufferOffset - len);
        mon->bufferOffset -= len;
    } else {
        VIR_FREE(mon->buffer);
        mon->bufferOffset = mon->bufferLength = 0;
    }
463
#if DEBUG_IO
464
    VIR_DEBUG("Process done %d used %d", (int)mon->bufferOffset, len);
465
#endif
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    if (msg && msg->finished)
        virCondBroadcast(&mon->notify);
    return len;
}


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/* Call this function while holding the monitor lock. */
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static int
qemuMonitorIOWriteWithFD(qemuMonitorPtr mon,
                         const char *data,
                         size_t len,
                         int fd)
{
    struct msghdr msg;
    struct iovec iov[1];
    int ret;
    char control[CMSG_SPACE(sizeof(int))];
    struct cmsghdr *cmsg;

    memset(&msg, 0, sizeof(msg));
486
    memset(control, 0, sizeof(control));
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    iov[0].iov_base = (void *)data;
    iov[0].iov_len = len;

    msg.msg_iov = iov;
    msg.msg_iovlen = 1;

    msg.msg_control = control;
    msg.msg_controllen = sizeof(control);

    cmsg = CMSG_FIRSTHDR(&msg);
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    /* Some static analyzers, like clang 2.6-0.6.pre2, fail to see
       that our use of CMSG_FIRSTHDR will not return NULL.  */
    sa_assert(cmsg);
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    cmsg->cmsg_len = CMSG_LEN(sizeof(int));
    cmsg->cmsg_level = SOL_SOCKET;
    cmsg->cmsg_type = SCM_RIGHTS;
    memcpy(CMSG_DATA(cmsg), &fd, sizeof(int));

    do {
        ret = sendmsg(mon->fd, &msg, 0);
    } while (ret < 0 && errno == EINTR);

    return ret;
}

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Stefan Berger 已提交
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/*
 * Called when the monitor is able to write data
 * Call this function while holding the monitor lock.
 */
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static int
qemuMonitorIOWrite(qemuMonitorPtr mon)
{
    int done;
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John Ferlan 已提交
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    char *buf;
    size_t len;
524 525 526 527 528

    /* If no active message, or fully transmitted, the no-op */
    if (!mon->msg || mon->msg->txOffset == mon->msg->txLength)
        return 0;

529
    if (mon->msg->txFD != -1 && !mon->hasSendFD) {
530 531
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("Monitor does not support sending of file descriptors"));
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        return -1;
    }

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    buf = mon->msg->txBuffer + mon->msg->txOffset;
    len = mon->msg->txLength - mon->msg->txOffset;
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    if (mon->msg->txFD == -1)
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        done = write(mon->fd, buf, len);
539
    else
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        done = qemuMonitorIOWriteWithFD(mon, buf, len, mon->msg->txFD);
541

542
    PROBE(QEMU_MONITOR_IO_WRITE,
543
          "mon=%p buf=%s len=%zu ret=%d errno=%d",
544
          mon, buf, len, done, done < 0 ? errno : 0);
545

546
    if (mon->msg->txFD != -1) {
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        PROBE(QEMU_MONITOR_IO_SEND_FD,
              "mon=%p fd=%d ret=%d errno=%d",
549
              mon, mon->msg->txFD, done, done < 0 ? errno : 0);
550
    }
551

552 553 554 555
    if (done < 0) {
        if (errno == EAGAIN)
            return 0;

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        virReportSystemError(errno, "%s",
                             _("Unable to write to monitor"));
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        return -1;
    }
    mon->msg->txOffset += done;
    return done;
}

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/*
 * Called when the monitor has incoming data to read
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 * Call this function while holding the monitor lock.
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 *
 * Returns -1 on error, or number of bytes read
 */
static int
qemuMonitorIORead(qemuMonitorPtr mon)
{
    size_t avail = mon->bufferLength - mon->bufferOffset;
    int ret = 0;

    if (avail < 1024) {
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        if (mon->bufferLength >= QEMU_MONITOR_MAX_RESPONSE) {
            virReportSystemError(ERANGE,
                                 _("No complete monitor response found in %d bytes"),
                                 QEMU_MONITOR_MAX_RESPONSE);
            return -1;
        }
584
        if (VIR_REALLOC_N(mon->buffer,
585
                          mon->bufferLength + 1024) < 0)
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            return -1;
        mon->bufferLength += 1024;
        avail += 1024;
    }

    /* Read as much as we can get into our buffer,
       until we block on EAGAIN, or hit EOF */
    while (avail > 1) {
        int got;
        got = read(mon->fd,
                   mon->buffer + mon->bufferOffset,
                   avail - 1);
        if (got < 0) {
            if (errno == EAGAIN)
                break;
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            virReportSystemError(errno, "%s",
                                 _("Unable to read from monitor"));
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            ret = -1;
            break;
        }
        if (got == 0)
            break;

        ret += got;
        avail -= got;
        mon->bufferOffset += got;
        mon->buffer[mon->bufferOffset] = '\0';
    }

615
#if DEBUG_IO
616
    VIR_DEBUG("Now read %d bytes of data", (int)mon->bufferOffset);
617
#endif
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    return ret;
}


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static void
qemuMonitorUpdateWatch(qemuMonitorPtr mon)
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{
    int events =
        VIR_EVENT_HANDLE_HANGUP |
        VIR_EVENT_HANDLE_ERROR;

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    if (!mon->watch)
        return;

633
    if (mon->lastError.code == VIR_ERR_OK) {
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        events |= VIR_EVENT_HANDLE_READABLE;

636
        if ((mon->msg && mon->msg->txOffset < mon->msg->txLength) &&
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            !mon->waitGreeting)
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            events |= VIR_EVENT_HANDLE_WRITABLE;
    }

    virEventUpdateHandle(mon->watch, events);
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}

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static void
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qemuMonitorIO(int watch, int fd, int events, void *opaque)
{
648
    qemuMonitorPtr mon = opaque;
649 650
    bool error = false;
    bool eof = false;
651
    bool hangup = false;
652

653 654
    virObjectRef(mon);

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Stefan Berger 已提交
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    /* lock access to the monitor and protect fd */
656
    virObjectLock(mon);
657
#if DEBUG_IO
658
    VIR_DEBUG("Monitor %p I/O on watch %d fd %d events %d", mon, watch, fd, events);
659
#endif
660
    if (mon->fd == -1 || mon->watch == 0) {
661
        virObjectUnlock(mon);
662 663 664
        virObjectUnref(mon);
        return;
    }
665

666
    if (mon->fd != fd || mon->watch != watch) {
667
        if (events & (VIR_EVENT_HANDLE_HANGUP | VIR_EVENT_HANDLE_ERROR))
668
            eof = true;
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        virReportError(VIR_ERR_INTERNAL_ERROR,
                       _("event from unexpected fd %d!=%d / watch %d!=%d"),
                       mon->fd, fd, mon->watch, watch);
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        error = true;
    } else if (mon->lastError.code != VIR_ERR_OK) {
674
        if (events & (VIR_EVENT_HANDLE_HANGUP | VIR_EVENT_HANDLE_ERROR))
675
            eof = true;
676
        error = true;
677
    } else {
678
        if (events & VIR_EVENT_HANDLE_WRITABLE) {
679
            if (qemuMonitorIOWrite(mon) < 0) {
680
                error = true;
681 682 683
                if (errno == ECONNRESET)
                    hangup = true;
            }
684 685
            events &= ~VIR_EVENT_HANDLE_WRITABLE;
        }
686 687

        if (!error &&
688 689
            events & VIR_EVENT_HANDLE_READABLE) {
            int got = qemuMonitorIORead(mon);
690 691
            events &= ~VIR_EVENT_HANDLE_READABLE;
            if (got < 0) {
692
                error = true;
693 694
                if (errno == ECONNRESET)
                    hangup = true;
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            } else if (got == 0) {
                eof = true;
            } else {
                /* Ignore hangup/error events if we read some data, to
                 * give time for that data to be consumed */
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                events = 0;

                if (qemuMonitorIOProcess(mon) < 0)
703
                    error = true;
704
            }
705 706
        }

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        if (events & VIR_EVENT_HANDLE_HANGUP) {
            hangup = true;
            if (!error) {
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                virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                               _("End of file from qemu monitor"));
712 713 714
                eof = true;
                events &= ~VIR_EVENT_HANDLE_HANGUP;
            }
715 716
        }

717 718
        if (!error && !eof &&
            events & VIR_EVENT_HANDLE_ERROR) {
719 720
            virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                           _("Invalid file descriptor while waiting for monitor"));
721
            eof = true;
722
            events &= ~VIR_EVENT_HANDLE_ERROR;
723 724
        }
        if (!error && events) {
725 726 727
            virReportError(VIR_ERR_INTERNAL_ERROR,
                           _("Unhandled event %d for monitor fd %d"),
                           events, mon->fd);
728
            error = true;
729 730 731
        }
    }

732
    if (error || eof) {
733
        if (hangup && mon->logFunc != NULL) {
734 735
            /* Check if an error message from qemu is available and if so, use
             * it to overwrite the actual message. It's done only in early
736 737 738
             * startup phases or during incoming migration when the message
             * from qemu is certainly more interesting than a
             * "connection reset by peer" message.
739
             */
740
            mon->logFunc(mon,
741
                         _("qemu unexpectedly closed the monitor"),
742
                         mon->logOpaque);
743 744
            virCopyLastError(&mon->lastError);
            virResetLastError();
745 746
        }

747 748 749
        if (mon->lastError.code != VIR_ERR_OK) {
            /* Already have an error, so clear any new error */
            virResetLastError();
750
        } else {
751 752
            virErrorPtr err = virGetLastError();
            if (!err)
753 754
                virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                               _("Error while processing monitor IO"));
755 756 757 758 759 760 761 762 763 764 765 766
            virCopyLastError(&mon->lastError);
            virResetLastError();
        }

        VIR_DEBUG("Error on monitor %s", NULLSTR(mon->lastError.message));
        /* If IO process resulted in an error & we have a message,
         * then wakeup that waiter */
        if (mon->msg && !mon->msg->finished) {
            mon->msg->finished = 1;
            virCondSignal(&mon->notify);
        }
    }
767 768 769

    qemuMonitorUpdateWatch(mon);

770 771 772
    /* We have to unlock to avoid deadlock against command thread,
     * but is this safe ?  I think it is, because the callback
     * will try to acquire the virDomainObjPtr mutex next */
773
    if (eof) {
J
Jiri Denemark 已提交
774
        qemuMonitorEofNotifyCallback eofNotify = mon->cb->eofNotify;
775
        virDomainObjPtr vm = mon->vm;
776

777 778
        /* Make sure anyone waiting wakes up now */
        virCondSignal(&mon->notify);
779
        virObjectUnlock(mon);
780
        VIR_DEBUG("Triggering EOF callback");
781
        (eofNotify)(mon, vm, mon->callbackOpaque);
782
        virObjectUnref(mon);
783
    } else if (error) {
J
Jiri Denemark 已提交
784
        qemuMonitorErrorNotifyCallback errorNotify = mon->cb->errorNotify;
785
        virDomainObjPtr vm = mon->vm;
786

787 788
        /* Make sure anyone waiting wakes up now */
        virCondSignal(&mon->notify);
789
        virObjectUnlock(mon);
790
        VIR_DEBUG("Triggering error callback");
791
        (errorNotify)(mon, vm, mon->callbackOpaque);
792
        virObjectUnref(mon);
793
    } else {
794
        virObjectUnlock(mon);
795
        virObjectUnref(mon);
796
    }
797 798 799
}


800 801 802 803
static qemuMonitorPtr
qemuMonitorOpenInternal(virDomainObjPtr vm,
                        int fd,
                        bool hasSendFD,
E
Eric Blake 已提交
804
                        bool json,
805 806
                        qemuMonitorCallbacksPtr cb,
                        void *opaque)
807
{
808 809
    qemuMonitorPtr mon;

810
    if (!cb->eofNotify) {
811 812
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("EOF notify callback must be supplied"));
813 814
        return NULL;
    }
815 816 817 818 819
    if (!cb->errorNotify) {
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("Error notify callback must be supplied"));
        return NULL;
    }
820

821 822 823
    if (qemuMonitorInitialize() < 0)
        return NULL;

824
    if (!(mon = virObjectLockableNew(qemuMonitorClass)))
825 826
        return NULL;

827
    if (virCondInit(&mon->notify) < 0) {
828 829
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("cannot initialize monitor condition"));
830
        goto cleanup;
831
    }
832 833
    mon->fd = fd;
    mon->hasSendFD = hasSendFD;
834
    mon->vm = virObjectRef(vm);
D
Daniel P. Berrange 已提交
835
    mon->json = json;
836
    if (json)
E
Eric Blake 已提交
837
        mon->waitGreeting = true;
838
    mon->cb = cb;
839
    mon->callbackOpaque = opaque;
840

841
    if (virSetCloseExec(mon->fd) < 0) {
842 843
        virReportError(VIR_ERR_INTERNAL_ERROR,
                       "%s", _("Unable to set monitor close-on-exec flag"));
844 845 846
        goto cleanup;
    }
    if (virSetNonBlock(mon->fd) < 0) {
847 848
        virReportError(VIR_ERR_INTERNAL_ERROR,
                       "%s", _("Unable to put monitor into non-blocking mode"));
849 850 851 852
        goto cleanup;
    }


E
Eric Blake 已提交
853
    virObjectLock(mon);
854
    if (!qemuMonitorRegister(mon)) {
E
Eric Blake 已提交
855
        virObjectUnlock(mon);
856 857
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("unable to register monitor events"));
858 859 860
        goto cleanup;
    }

861 862
    PROBE(QEMU_MONITOR_NEW,
          "mon=%p refs=%d fd=%d",
863
          mon, mon->parent.parent.u.s.refs, mon->fd);
864
    virObjectUnlock(mon);
865

866 867
    return mon;

868
 cleanup:
869 870 871 872 873 874
    /* We don't want the 'destroy' callback invoked during
     * cleanup from construction failure, because that can
     * give a double-unref on virDomainObjPtr in the caller,
     * so kill the callbacks now.
     */
    mon->cb = NULL;
875 876
    /* The caller owns 'fd' on failure */
    mon->fd = -1;
877 878 879 880
    qemuMonitorClose(mon);
    return NULL;
}

881

882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900
#define QEMU_DEFAULT_MONITOR_WAIT 30

/**
 * qemuMonitorOpen:
 * @vm: domain object
 * @config: monitor configuration
 * @json: enable JSON on the monitor
 * @timeout: number of seconds to add to default timeout
 * @cb: monitor event handles
 * @opaque: opaque data for @cb
 *
 * Opens the monitor for running qemu. It may happen that it
 * takes some time for qemu to create the monitor socket (e.g.
 * because kernel is zeroing configured hugepages), therefore we
 * wait up to default + timeout seconds for the monitor to show
 * up after which a failure is claimed.
 *
 * Returns monitor object, NULL on error.
 */
901 902 903
qemuMonitorPtr
qemuMonitorOpen(virDomainObjPtr vm,
                virDomainChrSourceDefPtr config,
E
Eric Blake 已提交
904
                bool json,
905
                bool retry,
906
                unsigned long long timeout,
907 908
                qemuMonitorCallbacksPtr cb,
                void *opaque)
909 910 911 912 913
{
    int fd;
    bool hasSendFD = false;
    qemuMonitorPtr ret;

914 915
    timeout += QEMU_DEFAULT_MONITOR_WAIT;

916 917 918
    switch (config->type) {
    case VIR_DOMAIN_CHR_TYPE_UNIX:
        hasSendFD = true;
919
        if ((fd = qemuMonitorOpenUnix(config->data.nix.path,
920
                                      vm->pid, retry, timeout)) < 0)
921 922 923 924 925 926 927 928 929 930 931 932 933 934 935
            return NULL;
        break;

    case VIR_DOMAIN_CHR_TYPE_PTY:
        if ((fd = qemuMonitorOpenPty(config->data.file.path)) < 0)
            return NULL;
        break;

    default:
        virReportError(VIR_ERR_INTERNAL_ERROR,
                       _("unable to handle monitor type: %s"),
                       virDomainChrTypeToString(config->type));
        return NULL;
    }

936
    ret = qemuMonitorOpenInternal(vm, fd, hasSendFD, json, cb, opaque);
937 938 939 940 941 942
    if (!ret)
        VIR_FORCE_CLOSE(fd);
    return ret;
}


943 944 945 946 947 948
qemuMonitorPtr
qemuMonitorOpenFD(virDomainObjPtr vm,
                  int sockfd,
                  bool json,
                  qemuMonitorCallbacksPtr cb,
                  void *opaque)
949
{
950
    return qemuMonitorOpenInternal(vm, sockfd, true, json, cb, opaque);
951 952
}

953

954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981
/**
 * qemuMonitorRegister:
 * @mon: QEMU monitor
 *
 * Registers the monitor in the event loop. The caller has to hold the
 * lock for @mon.
 *
 * Returns true in case of success, false otherwise
 */
bool
qemuMonitorRegister(qemuMonitorPtr mon)
{
    virObjectRef(mon);
    if ((mon->watch = virEventAddHandle(mon->fd,
                                        VIR_EVENT_HANDLE_HANGUP |
                                        VIR_EVENT_HANDLE_ERROR |
                                        VIR_EVENT_HANDLE_READABLE,
                                        qemuMonitorIO,
                                        mon,
                                        virObjectFreeCallback)) < 0) {
        virObjectUnref(mon);
        return false;
    }

    return true;
}


982 983 984 985 986 987 988 989 990
void
qemuMonitorUnregister(qemuMonitorPtr mon)
{
    if (mon->watch) {
        virEventRemoveHandle(mon->watch);
        mon->watch = 0;
    }
}

991 992
void
qemuMonitorClose(qemuMonitorPtr mon)
993 994
{
    if (!mon)
995
        return;
996

997
    virObjectLock(mon);
998
    PROBE(QEMU_MONITOR_CLOSE,
999
          "mon=%p refs=%d", mon, mon->parent.parent.u.s.refs);
S
Stefan Berger 已提交
1000

1001
    qemuMonitorSetDomainLogLocked(mon, NULL, NULL, NULL);
1002

S
Stefan Berger 已提交
1003
    if (mon->fd >= 0) {
1004
        qemuMonitorUnregister(mon);
S
Stefan Berger 已提交
1005
        VIR_FORCE_CLOSE(mon->fd);
1006
    }
1007

1008 1009 1010 1011 1012 1013 1014
    /* In case another thread is waiting for its monitor command to be
     * processed, we need to wake it up with appropriate error set.
     */
    if (mon->msg) {
        if (mon->lastError.code == VIR_ERR_OK) {
            virErrorPtr err = virSaveLastError();

1015
            virReportError(VIR_ERR_OPERATION_FAILED, "%s",
P
Philipp Hahn 已提交
1016
                           _("QEMU monitor was closed"));
1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028
            virCopyLastError(&mon->lastError);
            if (err) {
                virSetError(err);
                virFreeError(err);
            } else {
                virResetLastError();
            }
        }
        mon->msg->finished = 1;
        virCondSignal(&mon->notify);
    }

1029 1030 1031 1032 1033 1034
    /* Propagate existing monitor error in case the current thread has no
     * error set.
     */
    if (mon->lastError.code != VIR_ERR_OK && !virGetLastError())
        virSetError(&mon->lastError);

1035
    virObjectUnlock(mon);
1036
    virObjectUnref(mon);
1037 1038 1039
}


1040 1041
char *
qemuMonitorNextCommandID(qemuMonitorPtr mon)
1042 1043 1044
{
    char *id;

1045
    ignore_value(virAsprintf(&id, "libvirt-%d", ++mon->nextSerial));
1046 1047 1048 1049
    return id;
}


1050 1051 1052
int
qemuMonitorSend(qemuMonitorPtr mon,
                qemuMonitorMessagePtr msg)
1053
{
1054
    int ret = -1;
1055

E
Eric Blake 已提交
1056
    /* Check whether qemu quit unexpectedly */
1057 1058 1059 1060
    if (mon->lastError.code != VIR_ERR_OK) {
        VIR_DEBUG("Attempt to send command while error is set %s",
                  NULLSTR(mon->lastError.message));
        virSetError(&mon->lastError);
1061 1062 1063
        return -1;
    }

1064 1065
    mon->msg = msg;
    qemuMonitorUpdateWatch(mon);
1066

1067 1068 1069 1070
    PROBE(QEMU_MONITOR_SEND_MSG,
          "mon=%p msg=%s fd=%d",
          mon, mon->msg->txBuffer, mon->msg->txFD);

1071
    while (!mon->msg->finished) {
1072
        if (virCondWait(&mon->notify, &mon->parent.lock) < 0) {
1073 1074
            virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                           _("Unable to wait on monitor condition"));
1075
            goto cleanup;
1076 1077 1078 1079 1080 1081 1082 1083
        }
    }

    if (mon->lastError.code != VIR_ERR_OK) {
        VIR_DEBUG("Send command resulted in error %s",
                  NULLSTR(mon->lastError.message));
        virSetError(&mon->lastError);
        goto cleanup;
1084
    }
1085

1086
    ret = 0;
1087

1088
 cleanup:
1089 1090
    mon->msg = NULL;
    qemuMonitorUpdateWatch(mon);
1091

1092
    return ret;
1093
}
1094 1095


1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109
/**
 * This function returns a new virError object; the caller is responsible
 * for freeing it.
 */
virErrorPtr
qemuMonitorLastError(qemuMonitorPtr mon)
{
    if (mon->lastError.code == VIR_ERR_OK)
        return NULL;

    return virErrorCopyNew(&mon->lastError);
}


1110 1111 1112 1113 1114 1115
virJSONValuePtr
qemuMonitorGetOptions(qemuMonitorPtr mon)
{
    return mon->options;
}

1116

1117 1118 1119 1120 1121 1122
void
qemuMonitorSetOptions(qemuMonitorPtr mon, virJSONValuePtr options)
{
    mon->options = options;
}

1123 1124

/**
1125 1126 1127
 * Search the qom objects for the balloon driver object by its known names
 * of "virtio-balloon-pci" or "virtio-balloon-ccw". The entry for the driver
 * will be found by using function "qemuMonitorJSONFindLinkPath".
1128 1129 1130 1131 1132
 *
 * Once found, check the entry to ensure it has the correct property listed.
 * If it does not, then obtaining statistics from QEMU will not be possible.
 * This feature was added to QEMU 1.5.
 */
1133
static void
1134 1135
qemuMonitorInitBalloonObjectPath(qemuMonitorPtr mon,
                                 virDomainMemballoonDefPtr balloon)
1136 1137 1138
{
    ssize_t i, nprops = 0;
    char *path = NULL;
1139
    const char *name;
1140 1141 1142
    qemuMonitorJSONListPathPtr *bprops = NULL;

    if (mon->balloonpath) {
1143
        return;
1144 1145 1146
    } else if (mon->ballooninit) {
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("Cannot determine balloon device path"));
1147
        return;
1148
    }
1149
    mon->ballooninit = true;
1150

1151 1152 1153 1154 1155 1156 1157 1158
    switch (balloon->info.type) {
    case VIR_DOMAIN_DEVICE_ADDRESS_TYPE_PCI:
        name = "virtio-balloon-pci";
        break;
    case VIR_DOMAIN_DEVICE_ADDRESS_TYPE_CCW:
        name = "virtio-balloon-ccw";
        break;
    default:
1159
        return;
1160
    }
1161

1162 1163 1164
    if (qemuMonitorJSONFindLinkPath(mon, name, balloon->info.alias, &path) < 0)
        return;

1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188
    nprops = qemuMonitorJSONGetObjectListPaths(mon, path, &bprops);
    if (nprops < 0)
        goto cleanup;

    for (i = 0; i < nprops; i++) {
        if (STREQ(bprops[i]->name, "guest-stats-polling-interval")) {
            VIR_DEBUG("Found Balloon Object Path %s", path);
            mon->balloonpath = path;
            path = NULL;
            goto cleanup;
        }
    }


    /* If we get here, we found the path, but not the property */
    virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                   _("Property 'guest-stats-polling-interval' "
                     "not found on memory balloon driver."));

 cleanup:
    for (i = 0; i < nprops; i++)
        qemuMonitorJSONListPathFree(bprops[i]);
    VIR_FREE(bprops);
    VIR_FREE(path);
1189
    return;
1190 1191
}

1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206

/**
 * To update video memory size in status XML we need to load correct values from
 * QEMU.  This is supported only with JSON monitor.
 *
 * Returns 0 on success, -1 on failure and sets proper error message.
 */
int
qemuMonitorUpdateVideoMemorySize(qemuMonitorPtr mon,
                                 virDomainVideoDefPtr video,
                                 const char *videoName)
{
    int ret = -1;
    char *path = NULL;

1207 1208
    QEMU_CHECK_MONITOR(mon);

1209
    if (mon->json) {
1210 1211
        ret = qemuMonitorJSONFindLinkPath(mon, videoName,
                                          video->info.alias, &path);
1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228
        if (ret < 0) {
            if (ret == -2)
                virReportError(VIR_ERR_INTERNAL_ERROR,
                               _("Failed to find QOM Object path for "
                                 "device '%s'"), videoName);
            return -1;
        }

        ret = qemuMonitorJSONUpdateVideoMemorySize(mon, video, path);
        VIR_FREE(path);
        return ret;
    }

    return 0;
}


1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245
/**
 * To update video vram64 size in status XML we need to load correct value from
 * QEMU.  This is supported only with JSON monitor.
 *
 * Returns 0 on success, -1 on failure and sets proper error message.
 */
int
qemuMonitorUpdateVideoVram64Size(qemuMonitorPtr mon,
                                 virDomainVideoDefPtr video,
                                 const char *videoName)
{
    int ret = -1;
    char *path = NULL;

    QEMU_CHECK_MONITOR(mon);

    if (mon->json) {
1246 1247
        ret = qemuMonitorJSONFindLinkPath(mon, videoName,
                                          video->info.alias, &path);
1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264
        if (ret < 0) {
            if (ret == -2)
                virReportError(VIR_ERR_INTERNAL_ERROR,
                               _("Failed to find QOM Object path for "
                                 "device '%s'"), videoName);
            return -1;
        }

        ret = qemuMonitorJSONUpdateVideoVram64Size(mon, video, path);
        VIR_FREE(path);
        return ret;
    }

    return 0;
}


1265 1266 1267 1268 1269
int
qemuMonitorHMPCommandWithFd(qemuMonitorPtr mon,
                            const char *cmd,
                            int scm_fd,
                            char **reply)
1270
{
1271 1272 1273
    char *json_cmd = NULL;
    int ret = -1;

1274 1275
    QEMU_CHECK_MONITOR(mon);

1276 1277 1278 1279 1280 1281 1282
    /* hack to avoid complicating each call to text monitor functions */
    json_cmd = qemuMonitorUnescapeArg(cmd);
    if (!json_cmd) {
        VIR_DEBUG("Could not unescape command: %s", cmd);
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("Unable to unescape command"));
        goto cleanup;
1283
    }
1284
    ret = qemuMonitorJSONHumanCommandWithFd(mon, json_cmd, scm_fd, reply);
1285

1286
 cleanup:
1287 1288
    VIR_FREE(json_cmd);
    return ret;
1289 1290
}

1291

E
Eric Blake 已提交
1292
/* Ensure proper locking around callbacks.  */
1293 1294 1295 1296 1297 1298
#define QEMU_MONITOR_CALLBACK(mon, ret, callback, ...) \
    do { \
        virObjectRef(mon); \
        virObjectUnlock(mon); \
        if ((mon)->cb && (mon)->cb->callback) \
            (ret) = (mon)->cb->callback(mon, __VA_ARGS__, \
1299
                                        (mon)->callbackOpaque); \
1300 1301
        virObjectLock(mon); \
        virObjectUnref(mon); \
E
Eric Blake 已提交
1302
    } while (0)
1303

1304

1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318
int
qemuMonitorEmitEvent(qemuMonitorPtr mon, const char *event,
                     long long seconds, unsigned int micros,
                     const char *details)
{
    int ret = -1;
    VIR_DEBUG("mon=%p event=%s", mon, event);

    QEMU_MONITOR_CALLBACK(mon, ret, domainEvent, mon->vm, event, seconds,
                          micros, details);
    return ret;
}


1319
int
1320
qemuMonitorEmitShutdown(qemuMonitorPtr mon, virTristateBool guest)
1321 1322
{
    int ret = -1;
1323
    VIR_DEBUG("mon=%p guest=%u", mon, guest);
1324

1325
    QEMU_MONITOR_CALLBACK(mon, ret, domainShutdown, mon->vm, guest);
1326 1327 1328 1329
    return ret;
}


1330 1331
int
qemuMonitorEmitReset(qemuMonitorPtr mon)
1332 1333 1334 1335
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

E
Eric Blake 已提交
1336
    QEMU_MONITOR_CALLBACK(mon, ret, domainReset, mon->vm);
1337 1338 1339 1340
    return ret;
}


1341 1342
int
qemuMonitorEmitPowerdown(qemuMonitorPtr mon)
1343 1344 1345 1346
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

E
Eric Blake 已提交
1347
    QEMU_MONITOR_CALLBACK(mon, ret, domainPowerdown, mon->vm);
1348 1349 1350 1351
    return ret;
}


1352 1353
int
qemuMonitorEmitStop(qemuMonitorPtr mon)
1354 1355 1356 1357
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

E
Eric Blake 已提交
1358
    QEMU_MONITOR_CALLBACK(mon, ret, domainStop, mon->vm);
1359 1360 1361 1362
    return ret;
}


1363 1364
int
qemuMonitorEmitResume(qemuMonitorPtr mon)
1365 1366 1367 1368 1369 1370 1371 1372 1373
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainResume, mon->vm);
    return ret;
}


1374
int
1375 1376
qemuMonitorEmitGuestPanic(qemuMonitorPtr mon,
                          qemuMonitorEventPanicInfoPtr info)
1377 1378 1379
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);
1380
    QEMU_MONITOR_CALLBACK(mon, ret, domainGuestPanic, mon->vm, info);
1381 1382 1383 1384
    return ret;
}


1385 1386
int
qemuMonitorEmitRTCChange(qemuMonitorPtr mon, long long offset)
1387 1388 1389 1390
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

E
Eric Blake 已提交
1391
    QEMU_MONITOR_CALLBACK(mon, ret, domainRTCChange, mon->vm, offset);
1392 1393 1394 1395
    return ret;
}


1396 1397
int
qemuMonitorEmitWatchdog(qemuMonitorPtr mon, int action)
1398 1399 1400 1401
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

E
Eric Blake 已提交
1402
    QEMU_MONITOR_CALLBACK(mon, ret, domainWatchdog, mon->vm, action);
1403 1404 1405 1406
    return ret;
}


1407 1408 1409 1410 1411
int
qemuMonitorEmitIOError(qemuMonitorPtr mon,
                       const char *diskAlias,
                       int action,
                       const char *reason)
1412 1413 1414 1415
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

E
Eric Blake 已提交
1416 1417
    QEMU_MONITOR_CALLBACK(mon, ret, domainIOError, mon->vm,
                          diskAlias, action, reason);
1418 1419 1420 1421
    return ret;
}


1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433
int
qemuMonitorEmitGraphics(qemuMonitorPtr mon,
                        int phase,
                        int localFamily,
                        const char *localNode,
                        const char *localService,
                        int remoteFamily,
                        const char *remoteNode,
                        const char *remoteService,
                        const char *authScheme,
                        const char *x509dname,
                        const char *saslUsername)
1434 1435 1436 1437
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

E
Eric Blake 已提交
1438 1439 1440 1441
    QEMU_MONITOR_CALLBACK(mon, ret, domainGraphics, mon->vm, phase,
                          localFamily, localNode, localService,
                          remoteFamily, remoteNode, remoteService,
                          authScheme, x509dname, saslUsername);
1442 1443 1444
    return ret;
}

1445 1446 1447 1448 1449

int
qemuMonitorEmitTrayChange(qemuMonitorPtr mon,
                          const char *devAlias,
                          int reason)
1450 1451 1452 1453 1454 1455 1456 1457 1458 1459
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainTrayChange, mon->vm,
                          devAlias, reason);

    return ret;
}

1460 1461 1462

int
qemuMonitorEmitPMWakeup(qemuMonitorPtr mon)
O
Osier Yang 已提交
1463 1464 1465 1466 1467 1468 1469 1470 1471
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainPMWakeup, mon->vm);

    return ret;
}

1472 1473 1474

int
qemuMonitorEmitPMSuspend(qemuMonitorPtr mon)
O
Osier Yang 已提交
1475 1476 1477 1478 1479 1480 1481 1482 1483
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainPMSuspend, mon->vm);

    return ret;
}

1484 1485 1486

int
qemuMonitorEmitPMSuspendDisk(qemuMonitorPtr mon)
1487 1488 1489 1490 1491 1492 1493 1494 1495
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainPMSuspendDisk, mon->vm);

    return ret;
}

1496 1497 1498 1499 1500

int
qemuMonitorEmitBlockJob(qemuMonitorPtr mon,
                        const char *diskAlias,
                        int type,
1501 1502
                        int status,
                        const char *error)
1503 1504 1505 1506 1507
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainBlockJob, mon->vm,
1508
                          diskAlias, type, status, error);
1509 1510 1511
    return ret;
}

1512

1513 1514 1515
int
qemuMonitorEmitBalloonChange(qemuMonitorPtr mon,
                             unsigned long long actual)
1516 1517 1518 1519 1520 1521 1522 1523
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainBalloonChange, mon->vm, actual);
    return ret;
}

1524

1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537
int
qemuMonitorEmitDeviceDeleted(qemuMonitorPtr mon,
                             const char *devAlias)
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainDeviceDeleted, mon->vm, devAlias);

    return ret;
}


1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550
int
qemuMonitorEmitNicRxFilterChanged(qemuMonitorPtr mon,
                                  const char *devAlias)
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainNicRxFilterChanged, mon->vm, devAlias);

    return ret;
}


1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564
int
qemuMonitorEmitSerialChange(qemuMonitorPtr mon,
                            const char *devAlias,
                            bool connected)
{
    int ret = -1;
    VIR_DEBUG("mon=%p, devAlias='%s', connected=%d", mon, devAlias, connected);

    QEMU_MONITOR_CALLBACK(mon, ret, domainSerialChange, mon->vm, devAlias, connected);

    return ret;
}


1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576
int
qemuMonitorEmitSpiceMigrated(qemuMonitorPtr mon)
{
    int ret = -1;
    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainSpiceMigrated, mon->vm);

    return ret;
}


1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590
int
qemuMonitorEmitMigrationStatus(qemuMonitorPtr mon,
                               int status)
{
    int ret = -1;
    VIR_DEBUG("mon=%p, status=%s",
              mon, NULLSTR(qemuMonitorMigrationStatusTypeToString(status)));

    QEMU_MONITOR_CALLBACK(mon, ret, domainMigrationStatus, mon->vm, status);

    return ret;
}


1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603
int
qemuMonitorEmitMigrationPass(qemuMonitorPtr mon,
                             int pass)
{
    int ret = -1;
    VIR_DEBUG("mon=%p, pass=%d", mon, pass);

    QEMU_MONITOR_CALLBACK(mon, ret, domainMigrationPass, mon->vm, pass);

    return ret;
}


1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622
int
qemuMonitorEmitAcpiOstInfo(qemuMonitorPtr mon,
                           const char *alias,
                           const char *slotType,
                           const char *slot,
                           unsigned int source,
                           unsigned int status)
{
    int ret = -1;
    VIR_DEBUG("mon=%p, alias='%s', slotType='%s', slot='%s', source='%u' status=%u",
              mon, NULLSTR(alias), slotType, slot, source, status);

    QEMU_MONITOR_CALLBACK(mon, ret, domainAcpiOstInfo, mon->vm,
                          alias, slotType, slot, source, status);

    return ret;
}


1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640
int
qemuMonitorEmitBlockThreshold(qemuMonitorPtr mon,
                              const char *nodename,
                              unsigned long long threshold,
                              unsigned long long excess)
{
    int ret = -1;

    VIR_DEBUG("mon=%p, node-name='%s', threshold='%llu', excess='%llu'",
              mon, nodename, threshold, excess);

    QEMU_MONITOR_CALLBACK(mon, ret, domainBlockThreshold, mon->vm,
                          nodename, threshold, excess);

    return ret;
}


1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657
int
qemuMonitorEmitDumpCompleted(qemuMonitorPtr mon,
                             int status,
                             qemuMonitorDumpStatsPtr stats,
                             const char *error)
{
    int ret = -1;

    VIR_DEBUG("mon=%p", mon);

    QEMU_MONITOR_CALLBACK(mon, ret, domainDumpCompleted, mon->vm,
                          status, stats, error);

    return ret;
}


1658 1659
int
qemuMonitorSetCapabilities(qemuMonitorPtr mon)
1660
{
1661
    QEMU_CHECK_MONITOR(mon);
1662

1663 1664
    if (!mon->json)
        return 0;
1665

1666
    return qemuMonitorJSONSetCapabilities(mon);
1667 1668 1669
}


1670
int
1671
qemuMonitorStartCPUs(qemuMonitorPtr mon)
1672
{
1673
    QEMU_CHECK_MONITOR(mon);
1674

1675
    return qemuMonitorJSONStartCPUs(mon);
1676 1677 1678 1679 1680 1681
}


int
qemuMonitorStopCPUs(qemuMonitorPtr mon)
{
1682
    QEMU_CHECK_MONITOR(mon);
1683

1684
    return qemuMonitorJSONStopCPUs(mon);
1685 1686 1687
}


1688 1689 1690 1691 1692 1693 1694 1695
int
qemuMonitorCheck(qemuMonitorPtr mon)
{
    bool running;
    return qemuMonitorGetStatus(mon, &running, NULL);
}


1696
int
1697 1698 1699
qemuMonitorGetStatus(qemuMonitorPtr mon,
                     bool *running,
                     virDomainPausedReason *reason)
1700
{
1701
    VIR_DEBUG("running=%p, reason=%p", running, reason);
1702

1703
    QEMU_CHECK_MONITOR(mon);
1704

1705
    return qemuMonitorJSONGetStatus(mon, running, reason);
1706 1707 1708
}


1709 1710
int
qemuMonitorSystemPowerdown(qemuMonitorPtr mon)
1711
{
1712
    QEMU_CHECK_MONITOR(mon);
1713

1714
    return qemuMonitorJSONSystemPowerdown(mon);
1715 1716 1717
}


1718 1719
int
qemuMonitorSystemReset(qemuMonitorPtr mon)
1720
{
1721
    QEMU_CHECK_MONITOR(mon);
1722

1723
    return qemuMonitorJSONSystemReset(mon);
1724 1725 1726
}


1727 1728 1729 1730 1731 1732 1733 1734
static void
qemuMonitorCPUInfoClear(qemuMonitorCPUInfoPtr cpus,
                        size_t ncpus)
{
    size_t i;

    for (i = 0; i < ncpus; i++) {
        cpus[i].id = 0;
1735
        cpus[i].qemu_id = -1;
1736 1737 1738
        cpus[i].socket_id = -1;
        cpus[i].core_id = -1;
        cpus[i].thread_id = -1;
1739
        cpus[i].node_id = -1;
1740 1741
        cpus[i].vcpus = 0;
        cpus[i].tid = 0;
1742
        cpus[i].halted = false;
1743 1744 1745 1746 1747 1748 1749 1750

        VIR_FREE(cpus[i].qom_path);
        VIR_FREE(cpus[i].alias);
        VIR_FREE(cpus[i].type);
    }
}


1751 1752
void
qemuMonitorCPUInfoFree(qemuMonitorCPUInfoPtr cpus,
1753
                       size_t ncpus)
1754 1755 1756 1757
{
    if (!cpus)
        return;

1758 1759
    qemuMonitorCPUInfoClear(cpus, ncpus);

1760 1761 1762
    VIR_FREE(cpus);
}

1763 1764
void
qemuMonitorQueryCpusFree(struct qemuMonitorQueryCpusEntry *entries,
1765
                         size_t nentries)
1766
{
1767 1768
    size_t i;

1769 1770 1771
    if (!entries)
        return;

1772 1773 1774
    for (i = 0; i < nentries; i++)
        VIR_FREE(entries[i].qom_path);

1775 1776 1777
    VIR_FREE(entries);
}

1778

1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790
/**
 * Legacy approach doesn't allow out of order cpus, thus no complex matching
 * algorithm is necessary */
static void
qemuMonitorGetCPUInfoLegacy(struct qemuMonitorQueryCpusEntry *cpuentries,
                            size_t ncpuentries,
                            qemuMonitorCPUInfoPtr vcpus,
                            size_t maxvcpus)
{
    size_t i;

    for (i = 0; i < maxvcpus; i++) {
1791
        if (i < ncpuentries) {
1792
            vcpus[i].tid = cpuentries[i].tid;
1793
            vcpus[i].halted = cpuentries[i].halted;
1794
            vcpus[i].qemu_id = cpuentries[i].qemu_id;
1795
        }
1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808

        /* for legacy hotplug to work we need to fake the vcpu count added by
         * enabling a given vcpu */
        vcpus[i].vcpus = 1;
    }
}


/**
 * qemuMonitorGetCPUInfoHotplug:
 *
 * This function stitches together data retrieved via query-hotpluggable-cpus
 * which returns entities on the hotpluggable level (which may describe more
1809 1810
 * than one guest logical vcpu) with the output of query-cpus (or
 * query-cpus-fast), having an entry per enabled guest logical vcpu.
1811 1812 1813 1814
 *
 * query-hotpluggable-cpus conveys following information:
 * - topology information and number of logical vcpus this entry creates
 * - device type name of the entry that needs to be used when hotplugging
1815 1816
 * - qom path in qemu which can be used to map the entry against
 *   query-cpus[-fast]
1817
 *
1818
 * query-cpus[-fast] conveys following information:
1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841
 * - thread id of a given guest logical vcpu
 * - order in which the vcpus were inserted
 * - qom path to allow mapping the two together
 *
 * The libvirt's internal structure has an entry for each possible (even
 * disabled) guest vcpu. The purpose is to map the data together so that we are
 * certain of the thread id mapping and the information required for vcpu
 * hotplug.
 *
 * This function returns 0 on success and -1 on error, but does not report
 * libvirt errors so that fallback approach can be used.
 */
static int
qemuMonitorGetCPUInfoHotplug(struct qemuMonitorQueryHotpluggableCpusEntry *hotplugvcpus,
                             size_t nhotplugvcpus,
                             struct qemuMonitorQueryCpusEntry *cpuentries,
                             size_t ncpuentries,
                             qemuMonitorCPUInfoPtr vcpus,
                             size_t maxvcpus)
{
    char *tmp;
    int order = 1;
    size_t totalvcpus = 0;
1842
    size_t mastervcpu; /* this iterator is used for iterating hotpluggable entities */
1843
    size_t slavevcpu; /* this corresponds to subentries of a hotpluggable entry */
1844
    size_t anyvcpu; /* this iterator is used for any vcpu entry in the result */
1845 1846 1847 1848 1849 1850 1851 1852
    size_t i;
    size_t j;

    /* ensure that the total vcpu count reported by query-hotpluggable-cpus equals
     * to the libvirt maximum cpu count */
    for (i = 0; i < nhotplugvcpus; i++)
        totalvcpus += hotplugvcpus[i].vcpus;

1853
    /* trim '/thread...' suffix from the data returned by query-cpus[-fast] */
1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865
    for (i = 0; i < ncpuentries; i++) {
        if (cpuentries[i].qom_path &&
            (tmp = strstr(cpuentries[i].qom_path, "/thread")))
            *tmp = '\0';
    }

    if (totalvcpus != maxvcpus) {
        VIR_DEBUG("expected '%zu' total vcpus got '%zu'", maxvcpus, totalvcpus);
        return -1;
    }

    /* Note the order in which the hotpluggable entities are inserted by
1866
     * matching them to the query-cpus[-fast] entries */
1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884
    for (i = 0; i < ncpuentries; i++) {
        for (j = 0; j < nhotplugvcpus; j++) {
            if (!cpuentries[i].qom_path ||
                !hotplugvcpus[j].qom_path ||
                STRNEQ(cpuentries[i].qom_path, hotplugvcpus[j].qom_path))
                continue;

            /* add ordering info for hotpluggable entries */
            if (hotplugvcpus[j].enable_id == 0)
                hotplugvcpus[j].enable_id = order++;

            break;
        }
    }

    /* transfer appropriate data from the hotpluggable list to corresponding
     * entries. the entries returned by qemu may in fact describe multiple
     * logical vcpus in the guest */
1885
    mastervcpu = 0;
1886
    for (i = 0; i < nhotplugvcpus; i++) {
1887 1888 1889
        vcpus[mastervcpu].online = !!hotplugvcpus[i].qom_path;
        vcpus[mastervcpu].hotpluggable = !!hotplugvcpus[i].alias ||
                                         !vcpus[mastervcpu].online;
1890 1891 1892
        vcpus[mastervcpu].socket_id = hotplugvcpus[i].socket_id;
        vcpus[mastervcpu].core_id = hotplugvcpus[i].core_id;
        vcpus[mastervcpu].thread_id = hotplugvcpus[i].thread_id;
1893
        vcpus[mastervcpu].node_id = hotplugvcpus[i].node_id;
1894 1895 1896 1897 1898 1899
        vcpus[mastervcpu].vcpus = hotplugvcpus[i].vcpus;
        VIR_STEAL_PTR(vcpus[mastervcpu].qom_path, hotplugvcpus[i].qom_path);
        VIR_STEAL_PTR(vcpus[mastervcpu].alias, hotplugvcpus[i].alias);
        VIR_STEAL_PTR(vcpus[mastervcpu].type, hotplugvcpus[i].type);
        vcpus[mastervcpu].id = hotplugvcpus[i].enable_id;

1900 1901 1902 1903 1904 1905
        /* copy state information to slave vcpus */
        for (slavevcpu = mastervcpu + 1; slavevcpu < mastervcpu + hotplugvcpus[i].vcpus; slavevcpu++) {
            vcpus[slavevcpu].online = vcpus[mastervcpu].online;
            vcpus[slavevcpu].hotpluggable = vcpus[mastervcpu].hotpluggable;
        }

1906 1907
        /* calculate next master vcpu (hotpluggable unit) entry */
        mastervcpu += hotplugvcpus[i].vcpus;
1908 1909 1910 1911 1912 1913
    }

    /* match entries from query cpus to the output array taking into account
     * multi-vcpu objects */
    for (j = 0; j < ncpuentries; j++) {
        /* find the correct entry or beginning of group of entries */
1914 1915 1916
        for (anyvcpu = 0; anyvcpu < maxvcpus; anyvcpu++) {
            if (cpuentries[j].qom_path && vcpus[anyvcpu].qom_path &&
                STREQ(cpuentries[j].qom_path, vcpus[anyvcpu].qom_path))
1917 1918 1919
                break;
        }

1920
        if (anyvcpu == maxvcpus) {
1921
            VIR_DEBUG("too many query-cpus[-fast] entries for a given "
1922 1923 1924 1925
                      "query-hotpluggable-cpus entry");
            return -1;
        }

1926
        if (vcpus[anyvcpu].vcpus != 1) {
1927
            /* find a possibly empty vcpu thread for core granularity systems */
1928 1929
            for (; anyvcpu < maxvcpus; anyvcpu++) {
                if (vcpus[anyvcpu].tid == 0)
1930 1931 1932 1933
                    break;
            }
        }

1934
        vcpus[anyvcpu].qemu_id = cpuentries[j].qemu_id;
1935
        vcpus[anyvcpu].tid = cpuentries[j].tid;
1936
        vcpus[anyvcpu].halted = cpuentries[j].halted;
1937 1938 1939 1940 1941 1942
    }

    return 0;
}


1943 1944 1945
/**
 * qemuMonitorGetCPUInfo:
 * @mon: monitor
1946 1947
 * @vcpus: pointer filled by array of qemuMonitorCPUInfo structures
 * @maxvcpus: total possible number of vcpus
1948
 * @hotplug: query data relevant for hotplug support
1949
 * @fast: use QMP query-cpus-fast if supported
1950 1951 1952 1953
 *
 * Detects VCPU information. If qemu doesn't support or fails reporting
 * information this function will return success as other parts of libvirt
 * are able to cope with that.
1954
 *
1955 1956
 * Returns 0 on success (including if qemu didn't report any data) and
 *  -1 on error (reports libvirt error).
1957
 */
1958 1959
int
qemuMonitorGetCPUInfo(qemuMonitorPtr mon,
1960
                      qemuMonitorCPUInfoPtr *vcpus,
1961
                      size_t maxvcpus,
1962 1963
                      bool hotplug,
                      bool fast)
1964
{
1965 1966
    struct qemuMonitorQueryHotpluggableCpusEntry *hotplugcpus = NULL;
    size_t nhotplugcpus = 0;
1967 1968
    struct qemuMonitorQueryCpusEntry *cpuentries = NULL;
    size_t ncpuentries = 0;
1969 1970
    int ret = -1;
    int rc;
1971
    qemuMonitorCPUInfoPtr info = NULL;
1972

1973
    QEMU_CHECK_MONITOR(mon);
1974

1975 1976 1977
    if (VIR_ALLOC_N(info, maxvcpus) < 0)
        return -1;

1978 1979 1980
    if (!mon->json)
        hotplug = false;

1981 1982 1983 1984 1985 1986 1987
    /* initialize a few non-zero defaults */
    qemuMonitorCPUInfoClear(info, maxvcpus);

    if (hotplug &&
        (qemuMonitorJSONGetHotpluggableCPUs(mon, &hotplugcpus, &nhotplugcpus)) < 0)
        goto cleanup;

1988 1989
    rc = qemuMonitorJSONQueryCPUs(mon, &cpuentries, &ncpuentries, hotplug,
                                  fast);
1990 1991

    if (rc < 0) {
1992
        if (!hotplug && rc == -2) {
1993 1994 1995 1996
            VIR_STEAL_PTR(*vcpus, info);
            ret = 0;
        }

1997 1998 1999
        goto cleanup;
    }

2000 2001 2002 2003 2004 2005 2006 2007 2008
    if (!hotplugcpus ||
        qemuMonitorGetCPUInfoHotplug(hotplugcpus, nhotplugcpus,
                                     cpuentries, ncpuentries,
                                     info, maxvcpus) < 0) {
        /* Fallback to the legacy algorithm. Hotplug paths will make sure that
         * the apropriate data is present */
        qemuMonitorCPUInfoClear(info, maxvcpus);
        qemuMonitorGetCPUInfoLegacy(cpuentries, ncpuentries, info, maxvcpus);
    }
2009 2010 2011 2012 2013

    VIR_STEAL_PTR(*vcpus, info);
    ret = 0;

 cleanup:
2014
    qemuMonitorQueryHotpluggableCpusFree(hotplugcpus, nhotplugcpus);
2015
    qemuMonitorQueryCpusFree(cpuentries, ncpuentries);
2016
    qemuMonitorCPUInfoFree(info, maxvcpus);
2017
    return ret;
2018 2019
}

2020

2021 2022 2023 2024
/**
 * qemuMonitorGetCpuHalted:
 *
 * Returns a bitmap of vcpu id's that are halted. The id's correspond to the
2025
 * 'CPU' field as reported by query-cpus[-fast]'.
2026 2027 2028
 */
virBitmapPtr
qemuMonitorGetCpuHalted(qemuMonitorPtr mon,
2029
                        size_t maxvcpus,
2030
                        bool fast)
2031 2032 2033 2034 2035 2036 2037 2038 2039
{
    struct qemuMonitorQueryCpusEntry *cpuentries = NULL;
    size_t ncpuentries = 0;
    size_t i;
    int rc;
    virBitmapPtr ret = NULL;

    QEMU_CHECK_MONITOR_NULL(mon);

2040 2041
    rc = qemuMonitorJSONQueryCPUs(mon, &cpuentries, &ncpuentries, false,
                                  fast);
2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059

    if (rc < 0)
        goto cleanup;

    if (!(ret = virBitmapNew(maxvcpus)))
        goto cleanup;

    for (i = 0; i < ncpuentries; i++) {
        if (cpuentries[i].halted)
            ignore_value(virBitmapSetBit(ret, cpuentries[i].qemu_id));
    }

 cleanup:
    qemuMonitorQueryCpusFree(cpuentries, ncpuentries);
    return ret;
}


2060 2061 2062 2063
int
qemuMonitorSetLink(qemuMonitorPtr mon,
                   const char *name,
                   virDomainNetInterfaceLinkState state)
2064
{
2065
    VIR_DEBUG("name=%s, state=%u", name, state);
2066

2067
    QEMU_CHECK_MONITOR(mon);
2068

2069
    return qemuMonitorJSONSetLink(mon, name, state);
2070
}
2071

2072 2073 2074

int
qemuMonitorGetVirtType(qemuMonitorPtr mon,
2075
                       virDomainVirtType *virtType)
2076
{
2077
    QEMU_CHECK_MONITOR(mon);
2078

2079
    return qemuMonitorJSONGetVirtType(mon, virtType);
2080 2081 2082
}


2083 2084 2085 2086
/**
 * Returns: 0 if balloon not supported, +1 if balloon query worked
 * or -1 on failure
 */
2087 2088 2089
int
qemuMonitorGetBalloonInfo(qemuMonitorPtr mon,
                          unsigned long long *currmem)
2090
{
2091
    QEMU_CHECK_MONITOR(mon);
2092

2093
    return qemuMonitorJSONGetBalloonInfo(mon, currmem);
2094 2095 2096
}


2097 2098
int
qemuMonitorGetMemoryStats(qemuMonitorPtr mon,
2099
                          virDomainMemballoonDefPtr balloon,
2100 2101
                          virDomainMemoryStatPtr stats,
                          unsigned int nr_stats)
2102
{
2103
    VIR_DEBUG("stats=%p nstats=%u", stats, nr_stats);
2104

2105
    QEMU_CHECK_MONITOR(mon);
2106

2107 2108 2109
    qemuMonitorInitBalloonObjectPath(mon, balloon);
    return qemuMonitorJSONGetMemoryStats(mon, mon->balloonpath,
                                         stats, nr_stats);
2110 2111
}

2112

2113 2114 2115 2116 2117 2118 2119
/**
 * qemuMonitorSetMemoryStatsPeriod:
 *
 * This function sets balloon stats update period.
 *
 * Returns 0 on success and -1 on error, but does *not* set an error.
 */
2120 2121
int
qemuMonitorSetMemoryStatsPeriod(qemuMonitorPtr mon,
2122
                                virDomainMemballoonDefPtr balloon,
2123
                                int period)
2124 2125 2126 2127
{
    int ret = -1;
    VIR_DEBUG("mon=%p period=%d", mon, period);

2128
    if (!mon)
2129 2130
        return -1;

2131 2132 2133 2134
    if (!mon->json)
        return -1;

    if (period < 0)
2135 2136
        return -1;

2137
    qemuMonitorInitBalloonObjectPath(mon, balloon);
2138
    if (mon->balloonpath) {
2139 2140
        ret = qemuMonitorJSONSetMemoryStatsPeriod(mon, mon->balloonpath,
                                                  period);
2141 2142 2143 2144 2145 2146 2147 2148 2149

        /*
         * Most of the calls to this function are supposed to be
         * non-fatal and the only one that should be fatal wants its
         * own error message.  More details for debugging will be in
         * the log file.
         */
        if (ret < 0)
            virResetLastError();
2150 2151 2152 2153
    }
    return ret;
}

2154

2155 2156 2157 2158 2159 2160
int
qemuMonitorBlockIOStatusToError(const char *status)
{
    int st = qemuMonitorBlockIOStatusTypeFromString(status);

    if (st < 0) {
2161 2162
        virReportError(VIR_ERR_INTERNAL_ERROR,
                       _("unknown block IO status: %s"), status);
2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180
        return -1;
    }

    switch ((qemuMonitorBlockIOStatus) st) {
    case QEMU_MONITOR_BLOCK_IO_STATUS_OK:
        return VIR_DOMAIN_DISK_ERROR_NONE;
    case QEMU_MONITOR_BLOCK_IO_STATUS_FAILED:
        return VIR_DOMAIN_DISK_ERROR_UNSPEC;
    case QEMU_MONITOR_BLOCK_IO_STATUS_NOSPACE:
        return VIR_DOMAIN_DISK_ERROR_NO_SPACE;

    /* unreachable */
    case QEMU_MONITOR_BLOCK_IO_STATUS_LAST:
        break;
    }
    return -1;
}

2181

2182 2183 2184 2185 2186 2187 2188 2189 2190 2191
static void
qemuDomainDiskInfoFree(void *value, const void *name ATTRIBUTE_UNUSED)
{
    struct qemuDomainDiskInfo *info = value;

    VIR_FREE(info->nodename);
    VIR_FREE(info);
}


2192 2193
virHashTablePtr
qemuMonitorGetBlockInfo(qemuMonitorPtr mon)
2194 2195
{
    int ret;
2196 2197
    virHashTablePtr table;

2198
    QEMU_CHECK_MONITOR_NULL(mon);
2199

2200
    if (!(table = virHashCreate(32, qemuDomainDiskInfoFree)))
2201 2202
        return NULL;

2203
    ret = qemuMonitorJSONGetBlockInfo(mon, table);
2204 2205 2206 2207 2208 2209 2210 2211 2212

    if (ret < 0) {
        virHashFree(table);
        return NULL;
    }

    return table;
}

2213

2214 2215 2216 2217 2218 2219 2220 2221 2222
/**
 * qemuMonitorQueryBlockstats:
 * @mon: monitor object
 *
 * Returns data from a call to 'query-blockstats'.
 */
virJSONValuePtr
qemuMonitorQueryBlockstats(qemuMonitorPtr mon)
{
2223
    QEMU_CHECK_MONITOR_NULL(mon);
2224 2225 2226 2227 2228

    return qemuMonitorJSONQueryBlockstats(mon);
}


2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239
/**
 * qemuMonitorGetAllBlockStatsInfo:
 * @mon: monitor object
 * @ret_stats: pointer that is filled with a hash table containing the stats
 * @backingChain: recurse into the backing chain of devices
 *
 * Creates a hash table in @ret_stats with block stats of all devices. In case
 * @backingChain is true @ret_stats will additionally contain stats for
 * backing chain members of block devices.
 *
 * Returns < 0 on error, count of supported block stats fields on success.
2240 2241 2242
 */
int
qemuMonitorGetAllBlockStatsInfo(qemuMonitorPtr mon,
2243 2244
                                virHashTablePtr *ret_stats,
                                bool backingChain)
2245
{
2246
    int ret = -1;
2247 2248 2249
    VIR_DEBUG("ret_stats=%p, backing=%d", ret_stats, backingChain);

    QEMU_CHECK_MONITOR(mon);
2250

2251 2252 2253
    if (!(*ret_stats = virHashCreate(10, virHashValueFree)))
        goto error;

2254 2255
    ret = qemuMonitorJSONGetAllBlockStatsInfo(mon, *ret_stats,
                                              backingChain);
2256

2257 2258 2259 2260
    if (ret < 0)
        goto error;

    return ret;
2261 2262 2263 2264 2265

 error:
    virHashFree(*ret_stats);
    *ret_stats = NULL;
    return -1;
2266 2267
}

2268 2269

/* Updates "stats" to fill virtual and physical size of the image */
2270 2271 2272 2273
int
qemuMonitorBlockStatsUpdateCapacity(qemuMonitorPtr mon,
                                    virHashTablePtr stats,
                                    bool backingChain)
2274
{
2275
    VIR_DEBUG("stats=%p, backing=%d", stats, backingChain);
2276

2277
    QEMU_CHECK_MONITOR(mon);
2278

2279
    return qemuMonitorJSONBlockStatsUpdateCapacity(mon, stats, backingChain);
2280 2281 2282
}


2283 2284 2285 2286
int
qemuMonitorBlockResize(qemuMonitorPtr mon,
                       const char *device,
                       unsigned long long size)
2287
{
2288 2289 2290
    VIR_DEBUG("device=%s size=%llu", device, size);

    QEMU_CHECK_MONITOR(mon);
2291

2292
    return qemuMonitorJSONBlockResize(mon, device, size);
2293
}
2294

2295 2296 2297 2298

int
qemuMonitorSetVNCPassword(qemuMonitorPtr mon,
                          const char *password)
2299
{
2300
    VIR_DEBUG("password=%p", password);
2301

2302
    QEMU_CHECK_MONITOR(mon);
2303

2304 2305 2306
    if (!password)
        password = "";

2307
    return qemuMonitorJSONSetVNCPassword(mon, password);
2308 2309
}

2310 2311 2312

static const char *
qemuMonitorTypeToProtocol(int type)
2313 2314 2315 2316 2317 2318 2319
{
    switch (type) {
    case VIR_DOMAIN_GRAPHICS_TYPE_VNC:
        return "vnc";
    case VIR_DOMAIN_GRAPHICS_TYPE_SPICE:
        return "spice";
    default:
2320 2321 2322
        virReportError(VIR_ERR_INVALID_ARG,
                       _("unsupported protocol type %s"),
                       virDomainGraphicsTypeToString(type));
2323 2324 2325 2326
        return NULL;
    }
}

2327

2328
/* Returns -2 if not supported with this monitor connection */
2329 2330 2331 2332 2333
int
qemuMonitorSetPassword(qemuMonitorPtr mon,
                       int type,
                       const char *password,
                       const char *action_if_connected)
2334 2335 2336 2337 2338 2339
{
    const char *protocol = qemuMonitorTypeToProtocol(type);

    if (!protocol)
        return -1;

2340 2341
    VIR_DEBUG("protocol=%s, password=%p, action_if_connected=%s",
              protocol, password, action_if_connected);
2342

2343
    QEMU_CHECK_MONITOR(mon);
2344 2345 2346 2347 2348 2349 2350

    if (!password)
        password = "";

    if (!action_if_connected)
        action_if_connected = "keep";

2351
    return qemuMonitorJSONSetPassword(mon, protocol, password, action_if_connected);
2352 2353
}

2354 2355 2356 2357 2358

int
qemuMonitorExpirePassword(qemuMonitorPtr mon,
                          int type,
                          const char *expire_time)
2359 2360 2361 2362 2363 2364
{
    const char *protocol = qemuMonitorTypeToProtocol(type);

    if (!protocol)
        return -1;

2365
    VIR_DEBUG("protocol=%s, expire_time=%s", protocol, expire_time);
2366

2367
    QEMU_CHECK_MONITOR(mon);
2368 2369 2370 2371

    if (!expire_time)
        expire_time = "now";

2372
    return qemuMonitorJSONExpirePassword(mon, protocol, expire_time);
2373
}
2374

2375

2376 2377 2378 2379
/*
 * Returns: 0 if balloon not supported, +1 if balloon adjust worked
 * or -1 on failure
 */
2380 2381
int
qemuMonitorSetBalloon(qemuMonitorPtr mon,
2382
                      unsigned long long newmem)
2383
{
2384
    VIR_DEBUG("newmem=%llu", newmem);
2385

2386
    QEMU_CHECK_MONITOR(mon);
2387

2388
    return qemuMonitorJSONSetBalloon(mon, newmem);
2389 2390
}

2391

2392 2393 2394
/*
 * Returns: 0 if CPU modification was successful or -1 on failure
 */
2395 2396
int
qemuMonitorSetCPU(qemuMonitorPtr mon, int cpu, bool online)
2397
{
2398
    VIR_DEBUG("cpu=%d online=%d", cpu, online);
2399

2400
    QEMU_CHECK_MONITOR(mon);
2401

2402
    return qemuMonitorJSONSetCPU(mon, cpu, online);
2403 2404 2405
}


2406 2407 2408 2409
int
qemuMonitorEjectMedia(qemuMonitorPtr mon,
                      const char *dev_name,
                      bool force)
2410
{
2411
    VIR_DEBUG("dev_name=%s force=%d", dev_name, force);
2412

2413
    QEMU_CHECK_MONITOR(mon);
2414

2415
    return qemuMonitorJSONEjectMedia(mon, dev_name, force);
2416 2417 2418
}


2419 2420 2421 2422 2423
int
qemuMonitorChangeMedia(qemuMonitorPtr mon,
                       const char *dev_name,
                       const char *newmedia,
                       const char *format)
2424
{
2425
    VIR_DEBUG("dev_name=%s newmedia=%s format=%s", dev_name, newmedia, format);
2426

2427
    QEMU_CHECK_MONITOR(mon);
2428

2429
    return qemuMonitorJSONChangeMedia(mon, dev_name, newmedia, format);
2430 2431 2432
}


2433 2434 2435 2436 2437
int
qemuMonitorSaveVirtualMemory(qemuMonitorPtr mon,
                             unsigned long long offset,
                             size_t length,
                             const char *path)
2438
{
2439
    VIR_DEBUG("offset=%llu length=%zu path=%s", offset, length, path);
2440

2441
    QEMU_CHECK_MONITOR(mon);
2442

2443
    return qemuMonitorJSONSaveVirtualMemory(mon, offset, length, path);
2444 2445
}

2446 2447 2448 2449 2450 2451

int
qemuMonitorSavePhysicalMemory(qemuMonitorPtr mon,
                              unsigned long long offset,
                              size_t length,
                              const char *path)
2452
{
2453
    VIR_DEBUG("offset=%llu length=%zu path=%s", offset, length, path);
2454

2455
    QEMU_CHECK_MONITOR(mon);
2456

2457
    return qemuMonitorJSONSavePhysicalMemory(mon, offset, length, path);
2458 2459 2460
}


2461 2462 2463
int
qemuMonitorSetMigrationSpeed(qemuMonitorPtr mon,
                             unsigned long bandwidth)
2464
{
2465
    VIR_DEBUG("bandwidth=%lu", bandwidth);
2466

2467
    QEMU_CHECK_MONITOR(mon);
2468

2469 2470 2471 2472 2473 2474 2475
    if (bandwidth > QEMU_DOMAIN_MIG_BANDWIDTH_MAX) {
        virReportError(VIR_ERR_OVERFLOW,
                       _("bandwidth must be less than %llu"),
                       QEMU_DOMAIN_MIG_BANDWIDTH_MAX + 1ULL);
        return -1;
    }

2476
    return qemuMonitorJSONSetMigrationSpeed(mon, bandwidth);
2477 2478
}

2479

2480 2481 2482
int
qemuMonitorSetMigrationDowntime(qemuMonitorPtr mon,
                                unsigned long long downtime)
2483
{
2484
    VIR_DEBUG("downtime=%llu", downtime);
2485

2486
    QEMU_CHECK_MONITOR(mon);
2487

2488
    return qemuMonitorJSONSetMigrationDowntime(mon, downtime);
2489 2490 2491
}


2492 2493 2494 2495
int
qemuMonitorGetMigrationCacheSize(qemuMonitorPtr mon,
                                 unsigned long long *cacheSize)
{
2496
    VIR_DEBUG("cacheSize=%p", cacheSize);
2497

2498
    QEMU_CHECK_MONITOR(mon);
2499 2500 2501 2502

    return qemuMonitorJSONGetMigrationCacheSize(mon, cacheSize);
}

2503

2504 2505 2506 2507
int
qemuMonitorSetMigrationCacheSize(qemuMonitorPtr mon,
                                 unsigned long long cacheSize)
{
2508
    VIR_DEBUG("cacheSize=%llu", cacheSize);
2509

2510
    QEMU_CHECK_MONITOR(mon);
2511 2512 2513 2514 2515

    return qemuMonitorJSONSetMigrationCacheSize(mon, cacheSize);
}


2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526
/**
 * qemuMonitorGetMigrationParams:
 * @mon: Pointer to the monitor object.
 * @params: Where to store migration parameters.
 *
 * If QEMU does not support querying migration parameters, the function will
 * set @params to NULL and return 0 (success). The caller is responsible for
 * freeing @params.
 *
 * Returns 0 on success, -1 on error.
 */
2527
int
2528
qemuMonitorGetMigrationParams(qemuMonitorPtr mon,
2529
                              virJSONValuePtr *params)
2530
{
2531
    QEMU_CHECK_MONITOR(mon);
2532

2533
    return qemuMonitorJSONGetMigrationParams(mon, params);
2534 2535
}

2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546

/**
 * qemuMonitorSetMigrationParams:
 * @mon: Pointer to the monitor object.
 * @params: Migration parameters.
 *
 * The @params object is consumed and should not be referenced by the caller
 * after this function returns.
 *
 * Returns 0 on success, -1 on error.
 */
2547
int
2548
qemuMonitorSetMigrationParams(qemuMonitorPtr mon,
2549 2550
                              virJSONValuePtr params)
{
2551
    QEMU_CHECK_MONITOR_GOTO(mon, error);
2552

2553
    return qemuMonitorJSONSetMigrationParams(mon, params);
2554 2555 2556 2557

 error:
    virJSONValueFree(params);
    return -1;
2558 2559 2560
}


2561
int
2562
qemuMonitorGetMigrationStats(qemuMonitorPtr mon,
2563 2564
                             qemuMonitorMigrationStatsPtr stats,
                             char **error)
2565
{
2566
    QEMU_CHECK_MONITOR(mon);
2567

2568 2569 2570
    if (error)
        *error = NULL;

2571
    return qemuMonitorJSONGetMigrationStats(mon, stats, error);
2572 2573 2574
}


2575 2576 2577 2578
int
qemuMonitorMigrateToFd(qemuMonitorPtr mon,
                       unsigned int flags,
                       int fd)
E
Eric Blake 已提交
2579 2580
{
    int ret;
2581
    VIR_DEBUG("fd=%d flags=0x%x", fd, flags);
E
Eric Blake 已提交
2582

2583
    QEMU_CHECK_MONITOR(mon);
E
Eric Blake 已提交
2584 2585 2586 2587

    if (qemuMonitorSendFileHandle(mon, "migrate", fd) < 0)
        return -1;

2588
    ret = qemuMonitorJSONMigrate(mon, flags, "fd:migrate");
E
Eric Blake 已提交
2589 2590 2591

    if (ret < 0) {
        if (qemuMonitorCloseFileHandle(mon, "migrate") < 0)
2592
            VIR_WARN("failed to close migration handle");
E
Eric Blake 已提交
2593 2594 2595 2596 2597 2598
    }

    return ret;
}


2599 2600 2601 2602 2603 2604
int
qemuMonitorMigrateToHost(qemuMonitorPtr mon,
                         unsigned int flags,
                         const char *protocol,
                         const char *hostname,
                         int port)
2605
{
D
Daniel P. Berrange 已提交
2606
    int ret;
2607
    char *uri = NULL;
2608
    VIR_DEBUG("hostname=%s port=%d flags=0x%x", hostname, port, flags);
2609

2610
    QEMU_CHECK_MONITOR(mon);
2611

2612 2613 2614 2615
    if (strchr(hostname, ':')) {
        if (virAsprintf(&uri, "%s:[%s]:%d", protocol, hostname, port) < 0)
            return -1;
    } else if (virAsprintf(&uri, "%s:%s:%d", protocol, hostname, port) < 0) {
2616
        return -1;
2617
    }
2618

2619
    ret = qemuMonitorJSONMigrate(mon, flags, uri);
2620 2621

    VIR_FREE(uri);
D
Daniel P. Berrange 已提交
2622
    return ret;
2623 2624 2625
}


2626 2627
int
qemuMonitorMigrateCancel(qemuMonitorPtr mon)
2628
{
2629
    QEMU_CHECK_MONITOR(mon);
2630

2631
    return qemuMonitorJSONMigrateCancel(mon);
2632 2633
}

2634

2635 2636 2637 2638
int
qemuMonitorQueryDump(qemuMonitorPtr mon,
                     qemuMonitorDumpStatsPtr stats)
{
2639
    QEMU_CHECK_MONITOR(mon);
2640 2641 2642 2643 2644

    return qemuMonitorJSONQueryDump(mon, stats);
}


2645 2646 2647
/**
 * Returns 1 if @capability is supported, 0 if it's not, or -1 on error.
 */
2648 2649 2650
int
qemuMonitorGetDumpGuestMemoryCapability(qemuMonitorPtr mon,
                                        const char *capability)
2651
{
2652
    VIR_DEBUG("capability=%s", capability);
2653

2654
    QEMU_CHECK_MONITOR(mon);
2655 2656 2657 2658 2659 2660 2661 2662

    /* No capability is supported without JSON monitor */
    if (!mon->json)
        return 0;

    return qemuMonitorJSONGetDumpGuestMemoryCapability(mon, capability);
}

2663

2664
int
2665 2666 2667 2668
qemuMonitorDumpToFd(qemuMonitorPtr mon,
                    int fd,
                    const char *dumpformat,
                    bool detach)
2669 2670
{
    int ret;
2671
    VIR_DEBUG("fd=%d dumpformat=%s", fd, dumpformat);
2672

2673
    QEMU_CHECK_MONITOR(mon);
2674 2675 2676 2677

    if (qemuMonitorSendFileHandle(mon, "dump", fd) < 0)
        return -1;

2678
    ret = qemuMonitorJSONDump(mon, "fd:dump", dumpformat, detach);
2679 2680 2681 2682 2683 2684 2685 2686

    if (ret < 0) {
        if (qemuMonitorCloseFileHandle(mon, "dump") < 0)
            VIR_WARN("failed to close dumping handle");
    }

    return ret;
}
2687

2688 2689 2690 2691 2692 2693 2694 2695

int
qemuMonitorGraphicsRelocate(qemuMonitorPtr mon,
                            int type,
                            const char *hostname,
                            int port,
                            int tlsPort,
                            const char *tlsSubject)
2696
{
2697 2698 2699 2700
    VIR_DEBUG("type=%d hostname=%s port=%d tlsPort=%d tlsSubject=%s",
              type, hostname, port, tlsPort, NULLSTR(tlsSubject));

    QEMU_CHECK_MONITOR(mon);
2701

2702 2703 2704 2705 2706 2707
    return qemuMonitorJSONGraphicsRelocate(mon,
                                           type,
                                           hostname,
                                           port,
                                           tlsPort,
                                           tlsSubject);
2708 2709 2710
}


2711 2712 2713 2714
int
qemuMonitorSendFileHandle(qemuMonitorPtr mon,
                          const char *fdname,
                          int fd)
2715
{
2716
    VIR_DEBUG("fdname=%s fd=%d", fdname, fd);
2717

2718
    QEMU_CHECK_MONITOR(mon);
2719

2720
    if (fd < 0) {
2721 2722
        virReportError(VIR_ERR_INVALID_ARG, "%s",
                       _("fd must be valid"));
2723 2724 2725 2726
        return -1;
    }

    if (!mon->hasSendFD) {
2727
        virReportError(VIR_ERR_OPERATION_UNSUPPORTED,
2728 2729
                       _("qemu is not using a unix socket monitor, "
                         "cannot send fd %s"), fdname);
2730 2731 2732
        return -1;
    }

2733
    return qemuMonitorJSONSendFileHandle(mon, fdname, fd);
2734 2735 2736
}


2737 2738 2739
int
qemuMonitorCloseFileHandle(qemuMonitorPtr mon,
                           const char *fdname)
2740
{
2741 2742 2743
    int ret = -1;
    virErrorPtr error;

2744
    VIR_DEBUG("fdname=%s", fdname);
2745

2746 2747
    error = virSaveLastError();

2748
    QEMU_CHECK_MONITOR_GOTO(mon, cleanup);
2749

2750
    ret = qemuMonitorJSONCloseFileHandle(mon, fdname);
2751

2752
 cleanup:
2753 2754 2755 2756
    if (error) {
        virSetError(error);
        virFreeError(error);
    }
D
Daniel P. Berrange 已提交
2757
    return ret;
2758 2759 2760
}


2761 2762 2763 2764 2765 2766
/* Add the open file descriptor FD into the non-negative set FDSET.
 * If NAME is present, it will be passed along for logging purposes.
 * Returns the counterpart fd that qemu received, or -1 on error.  */
int
qemuMonitorAddFd(qemuMonitorPtr mon, int fdset, int fd, const char *name)
{
2767
    VIR_DEBUG("fdset=%d, fd=%d, name=%s", fdset, fd, NULLSTR(name));
2768

2769
    QEMU_CHECK_MONITOR(mon);
2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783

    if (fd < 0 || fdset < 0) {
        virReportError(VIR_ERR_INVALID_ARG, "%s",
                       _("fd and fdset must be valid"));
        return -1;
    }

    if (!mon->hasSendFD) {
        virReportError(VIR_ERR_OPERATION_UNSUPPORTED,
                       _("qemu is not using a unix socket monitor, "
                         "cannot send fd %s"), NULLSTR(name));
        return -1;
    }

2784
    return qemuMonitorJSONAddFd(mon, fdset, fd, name);
2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796
}


/* Remove one of qemu's fds from the given FDSET, or if FD is
 * negative, remove the entire set.  Preserve any previous error on
 * entry.  Returns 0 on success, -1 on error.  */
int
qemuMonitorRemoveFd(qemuMonitorPtr mon, int fdset, int fd)
{
    int ret = -1;
    virErrorPtr error;

2797
    VIR_DEBUG("fdset=%d, fd=%d", fdset, fd);
2798 2799 2800

    error = virSaveLastError();

2801
    QEMU_CHECK_MONITOR_GOTO(mon, cleanup);
2802

2803
    ret = qemuMonitorJSONRemoveFd(mon, fdset, fd);
2804

2805
 cleanup:
2806 2807 2808 2809 2810 2811 2812 2813
    if (error) {
        virSetError(error);
        virFreeError(error);
    }
    return ret;
}


2814 2815 2816 2817 2818
int
qemuMonitorAddNetdev(qemuMonitorPtr mon,
                     const char *netdevstr,
                     int *tapfd, char **tapfdName, int tapfdSize,
                     int *vhostfd, char **vhostfdName, int vhostfdSize)
2819
{
2820
    int ret = -1;
2821
    size_t i = 0, j = 0;
2822

2823
    VIR_DEBUG("netdevstr=%s tapfd=%p tapfdName=%p tapfdSize=%d"
2824
              "vhostfd=%p vhostfdName=%p vhostfdSize=%d",
2825
              netdevstr, tapfd, tapfdName, tapfdSize,
2826
              vhostfd, vhostfdName, vhostfdSize);
2827

2828
    QEMU_CHECK_MONITOR(mon);
2829

2830 2831 2832 2833 2834 2835 2836
    for (i = 0; i < tapfdSize; i++) {
        if (qemuMonitorSendFileHandle(mon, tapfdName[i], tapfd[i]) < 0)
            goto cleanup;
    }
    for (j = 0; j < vhostfdSize; j++) {
        if (qemuMonitorSendFileHandle(mon, vhostfdName[j], vhostfd[j]) < 0)
            goto cleanup;
2837 2838
    }

2839
    ret = qemuMonitorJSONAddNetdev(mon, netdevstr);
2840

2841
 cleanup:
2842
    if (ret < 0) {
2843 2844 2845 2846 2847 2848 2849 2850
        while (i--) {
            if (qemuMonitorCloseFileHandle(mon, tapfdName[i]) < 0)
                VIR_WARN("failed to close device handle '%s'", tapfdName[i]);
        }
        while (j--) {
            if (qemuMonitorCloseFileHandle(mon, vhostfdName[j]) < 0)
                VIR_WARN("failed to close device handle '%s'", vhostfdName[j]);
        }
2851 2852
    }

2853 2854 2855
    return ret;
}

2856 2857 2858 2859

int
qemuMonitorRemoveNetdev(qemuMonitorPtr mon,
                        const char *alias)
2860
{
2861
    VIR_DEBUG("alias=%s", alias);
2862

2863
    QEMU_CHECK_MONITOR(mon);
2864

2865
    return qemuMonitorJSONRemoveNetdev(mon, alias);
2866 2867 2868
}


2869 2870 2871 2872
int
qemuMonitorQueryRxFilter(qemuMonitorPtr mon, const char *alias,
                         virNetDevRxFilterPtr *filter)
{
2873
    VIR_DEBUG("alias=%s filter=%p", alias, filter);
2874

2875
    QEMU_CHECK_MONITOR(mon);
2876 2877

    return qemuMonitorJSONQueryRxFilter(mon, alias, filter);
2878 2879 2880
}


2881
void
2882 2883 2884 2885 2886 2887 2888 2889 2890 2891
qemuMonitorChardevInfoFree(void *data,
                           const void *name ATTRIBUTE_UNUSED)
{
    qemuMonitorChardevInfoPtr info = data;

    VIR_FREE(info->ptyPath);
    VIR_FREE(info);
}


2892 2893 2894
int
qemuMonitorGetChardevInfo(qemuMonitorPtr mon,
                          virHashTablePtr *retinfo)
2895
{
2896
    int ret;
2897 2898
    virHashTablePtr info = NULL;

2899
    VIR_DEBUG("retinfo=%p", retinfo);
2900

2901
    QEMU_CHECK_MONITOR_GOTO(mon, error);
2902

2903
    if (!(info = virHashCreate(10, qemuMonitorChardevInfoFree)))
2904 2905
        goto error;

2906
    ret = qemuMonitorJSONGetChardevInfo(mon, info);
2907 2908 2909 2910 2911 2912 2913 2914 2915 2916 2917

    if (ret < 0)
        goto error;

    *retinfo = info;
    return 0;

 error:
    virHashFree(info);
    *retinfo = NULL;
    return -1;
2918
}
2919 2920


2921 2922 2923 2924 2925 2926 2927
/**
 * qemuMonitorDriveDel:
 * @mon: monitor object
 * @drivestr: identifier of drive to delete.
 *
 * Attempts to remove a host drive.
 * Returns 1 if unsupported, 0 if ok, and -1 on other failure */
2928 2929 2930
int
qemuMonitorDriveDel(qemuMonitorPtr mon,
                    const char *drivestr)
2931
{
2932
    VIR_DEBUG("drivestr=%s", drivestr);
2933

2934
    QEMU_CHECK_MONITOR(mon);
2935

2936 2937
    /* there won't be a direct replacement for drive_del in QMP */
    return qemuMonitorTextDriveDel(mon, drivestr);
2938 2939
}

2940 2941 2942 2943

int
qemuMonitorDelDevice(qemuMonitorPtr mon,
                     const char *devalias)
2944
{
2945
    VIR_DEBUG("devalias=%s", devalias);
2946

2947
    QEMU_CHECK_MONITOR(mon);
2948

2949
    return qemuMonitorJSONDelDevice(mon, devalias);
2950 2951
}

2952

2953 2954 2955 2956 2957
int
qemuMonitorAddDeviceWithFd(qemuMonitorPtr mon,
                           const char *devicestr,
                           int fd,
                           const char *fdname)
2958
{
2959
    VIR_DEBUG("device=%s fd=%d fdname=%s", devicestr, fd, NULLSTR(fdname));
2960 2961
    int ret;

2962
    QEMU_CHECK_MONITOR(mon);
2963

2964 2965 2966
    if (fd >= 0 && qemuMonitorSendFileHandle(mon, fdname, fd) < 0)
        return -1;

2967
    ret = qemuMonitorJSONAddDevice(mon, devicestr);
2968 2969 2970 2971 2972 2973

    if (ret < 0 && fd >= 0) {
        if (qemuMonitorCloseFileHandle(mon, fdname) < 0)
            VIR_WARN("failed to close device handle '%s'", fdname);
    }

2974 2975 2976
    return ret;
}

2977 2978 2979 2980

int
qemuMonitorAddDevice(qemuMonitorPtr mon,
                     const char *devicestr)
2981 2982 2983 2984
{
    return qemuMonitorAddDeviceWithFd(mon, devicestr, -1, NULL);
}

2985

2986 2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997
/**
 * qemuMonitorAddDeviceArgs:
 * @mon: monitor object
 * @args: arguments for device add, consumed on success or failure
 *
 * Adds a device described by @args. Requires JSON monitor.
 * Returns 0 on success -1 on error.
 */
int
qemuMonitorAddDeviceArgs(qemuMonitorPtr mon,
                         virJSONValuePtr args)
{
2998
    QEMU_CHECK_MONITOR(mon);
2999 3000 3001 3002 3003

    return qemuMonitorJSONAddDeviceArgs(mon, args);
}


3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034 3035 3036 3037 3038 3039 3040 3041 3042 3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105
virJSONValuePtr
qemuMonitorCreateObjectPropsWrap(const char *type,
                                 const char *alias,
                                 virJSONValuePtr *props)
{
    virJSONValuePtr ret;

    ignore_value(virJSONValueObjectCreate(&ret,
                                          "s:qom-type", type,
                                          "s:id", alias,
                                          "A:props", props,
                                          NULL));
    return ret;
}



/**
 * qemuMonitorCreateObjectProps:
 * @propsret: returns full object properties
 * @type: Type name of object to add
 * @objalias: Alias of the new object
 * @...: Optional arguments for the given object. See virJSONValueObjectAddVArgs.
 *
 * Returns a JSONValue containing everything on success and NULL on error.
 */
int
qemuMonitorCreateObjectProps(virJSONValuePtr *propsret,
                             const char *type,
                             const char *alias,
                             ...)
{
    virJSONValuePtr props = NULL;
    int ret = -1;
    va_list args;

    *propsret = NULL;

    va_start(args, alias);

    if (!(virJSONValueObjectCreateVArgs(&props, args)))
        goto cleanup;

    if (!(*propsret = qemuMonitorCreateObjectPropsWrap(type, alias, &props)))
        goto cleanup;

    ret = 0;

 cleanup:
    virJSONValueFree(props);
    va_end(args);
    return ret;
}


/**
 * qemuMonitorAddObject:
 * @mon: Pointer to monitor object
 * @props: Optional arguments for the given type. The object is consumed and
 *         the pointer is cleared.
 * @alias: If not NULL, returns the alias of the added object if it was added
 *         successfully to qemu. Caller should free the returned pointer.
 *
 * Returns 0 on success -1 on error.
 */
int
qemuMonitorAddObject(qemuMonitorPtr mon,
                     virJSONValuePtr *props,
                     char **alias)
{
    const char *type = virJSONValueObjectGetString(*props, "qom-type");
    const char *id = virJSONValueObjectGetString(*props, "id");
    char *tmp = NULL;
    int ret = -1;

    VIR_DEBUG("type=%s id=%s", NULLSTR(type), NULLSTR(id));

    QEMU_CHECK_MONITOR_GOTO(mon, cleanup);

    if (!id) {
        virReportError(VIR_ERR_INTERNAL_ERROR,
                       _("missing alias for qemu object '%s'"), NULLSTR(type));
        goto cleanup;
    }

    if (alias && VIR_STRDUP(tmp, id) < 0)
        goto cleanup;

    ret = qemuMonitorJSONAddObject(mon, *props);
    *props = NULL;

    if (alias)
        VIR_STEAL_PTR(*alias, tmp);

 cleanup:
    VIR_FREE(tmp);
    virJSONValueFree(*props);
    *props = NULL;
    return ret;
}


3106 3107 3108 3109
int
qemuMonitorDelObject(qemuMonitorPtr mon,
                     const char *objalias)
{
3110
    VIR_DEBUG("objalias=%s", objalias);
3111

3112
    QEMU_CHECK_MONITOR(mon);
3113

3114
    return qemuMonitorJSONDelObject(mon, objalias);
3115 3116 3117
}


3118 3119 3120
int
qemuMonitorAddDrive(qemuMonitorPtr mon,
                    const char *drivestr)
3121
{
3122
    VIR_DEBUG("drive=%s", drivestr);
3123

3124
    QEMU_CHECK_MONITOR(mon);
3125

3126 3127
    /* there won't ever be a direct QMP replacement for this function */
    return qemuMonitorTextAddDrive(mon, drivestr);
3128
}
3129 3130


3131 3132
int
qemuMonitorCreateSnapshot(qemuMonitorPtr mon, const char *name)
C
Chris Lalancette 已提交
3133
{
3134
    VIR_DEBUG("name=%s", name);
C
Chris Lalancette 已提交
3135

3136
    QEMU_CHECK_MONITOR(mon);
3137

3138 3139
    /* there won't ever be a direct QMP replacement for this function */
    return qemuMonitorTextCreateSnapshot(mon, name);
C
Chris Lalancette 已提交
3140 3141
}

3142 3143
int
qemuMonitorLoadSnapshot(qemuMonitorPtr mon, const char *name)
C
Chris Lalancette 已提交
3144
{
3145
    VIR_DEBUG("name=%s", name);
C
Chris Lalancette 已提交
3146

3147
    QEMU_CHECK_MONITOR(mon);
3148

3149 3150
    /* there won't ever be a direct QMP replacement for this function */
    return qemuMonitorTextLoadSnapshot(mon, name);
C
Chris Lalancette 已提交
3151 3152
}

3153 3154 3155

int
qemuMonitorDeleteSnapshot(qemuMonitorPtr mon, const char *name)
C
Chris Lalancette 已提交
3156
{
3157
    VIR_DEBUG("name=%s", name);
C
Chris Lalancette 已提交
3158

3159
    QEMU_CHECK_MONITOR(mon);
3160

3161 3162
    /* there won't ever be a direct QMP replacement for this function */
    return qemuMonitorTextDeleteSnapshot(mon, name);
C
Chris Lalancette 已提交
3163
}
3164

3165

3166 3167 3168 3169
/* Use the snapshot_blkdev command to convert the existing file for
 * device into a read-only backing file of a new qcow2 image located
 * at file.  */
int
3170
qemuMonitorDiskSnapshot(qemuMonitorPtr mon, virJSONValuePtr actions,
3171 3172
                        const char *device, const char *file,
                        const char *format, bool reuse)
3173
{
3174 3175
    VIR_DEBUG("actions=%p, device=%s, file=%s, format=%s, reuse=%d",
              actions, device, file, format, reuse);
3176

3177
    QEMU_CHECK_MONITOR(mon);
3178 3179

    return qemuMonitorJSONDiskSnapshot(mon, actions, device, file, format, reuse);
3180 3181
}

3182

3183
/* Start a drive-mirror block job.  bandwidth is in bytes/sec.  */
3184 3185 3186
int
qemuMonitorDriveMirror(qemuMonitorPtr mon,
                       const char *device, const char *file,
3187
                       const char *format, unsigned long long bandwidth,
3188
                       unsigned int granularity, unsigned long long buf_size,
3189 3190
                       unsigned int flags)
{
3191
    VIR_DEBUG("device=%s, file=%s, format=%s, bandwidth=%lld, "
3192
              "granularity=%#x, buf_size=%lld, flags=0x%x",
3193
              device, file, NULLSTR(format), bandwidth, granularity,
3194
              buf_size, flags);
3195

3196
    QEMU_CHECK_MONITOR(mon);
3197 3198 3199

    return qemuMonitorJSONDriveMirror(mon, device, file, format, bandwidth,
                                      granularity, buf_size, flags);
3200 3201
}

3202

3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217
int
qemuMonitorBlockdevMirror(qemuMonitorPtr mon,
                          const char *jobname,
                          const char *device,
                          const char *target,
                          unsigned long long bandwidth,
                          unsigned int granularity,
                          unsigned long long buf_size,
                          unsigned int flags)
{
    VIR_DEBUG("jobname=%s, device=%s, target=%s, bandwidth=%lld, "
              "granularity=%#x, buf_size=%lld, flags=0x%x",
              NULLSTR(jobname), device, target, bandwidth, granularity,
              buf_size, flags);

3218
    QEMU_CHECK_MONITOR(mon);
3219 3220 3221 3222 3223 3224

    return qemuMonitorJSONBlockdevMirror(mon, jobname, device, target, bandwidth,
                                         granularity, buf_size, flags);
}


3225 3226
/* Use the transaction QMP command to run atomic snapshot commands.  */
int
3227
qemuMonitorTransaction(qemuMonitorPtr mon, virJSONValuePtr *actions)
3228
{
3229
    VIR_DEBUG("actions=%p", *actions);
3230

3231
    QEMU_CHECK_MONITOR(mon);
3232 3233

    return qemuMonitorJSONTransaction(mon, actions);
3234 3235
}

3236

3237
/* Start a block-commit block job.  bandwidth is in bytes/sec.  */
3238 3239 3240
int
qemuMonitorBlockCommit(qemuMonitorPtr mon, const char *device,
                       const char *top, const char *base,
3241
                       const char *backingName,
3242
                       unsigned long long bandwidth)
3243
{
3244 3245
    VIR_DEBUG("device=%s, top=%s, base=%s, backingName=%s, bandwidth=%llu",
              device, top, base, NULLSTR(backingName), bandwidth);
3246

3247
    QEMU_CHECK_MONITOR(mon);
3248 3249 3250

    return qemuMonitorJSONBlockCommit(mon, device, top, base,
                                         backingName, bandwidth);
3251 3252
}

3253 3254 3255 3256 3257

/* Probe whether active commits are supported by a given qemu binary. */
bool
qemuMonitorSupportsActiveCommit(qemuMonitorPtr mon)
{
3258
    if (!mon || !mon->json)
3259 3260
        return false;

3261
    return qemuMonitorJSONBlockCommit(mon, "bogus", NULL, NULL, NULL, 0) == -2;
3262 3263 3264
}


3265 3266 3267 3268 3269 3270 3271 3272
/* Determine the name that qemu is using for tracking the backing
 * element TARGET within the chain starting at TOP.  */
char *
qemuMonitorDiskNameLookup(qemuMonitorPtr mon,
                          const char *device,
                          virStorageSourcePtr top,
                          virStorageSourcePtr target)
{
3273
    QEMU_CHECK_MONITOR_NULL(mon);
3274 3275 3276 3277 3278

    return qemuMonitorJSONDiskNameLookup(mon, device, top, target);
}


3279
/* Use the block-job-complete monitor command to pivot a block copy job.  */
3280
int
3281 3282
qemuMonitorDrivePivot(qemuMonitorPtr mon,
                      const char *device)
3283
{
3284
    VIR_DEBUG("device=%s", device);
3285

3286
    QEMU_CHECK_MONITOR(mon);
3287 3288

    return qemuMonitorJSONDrivePivot(mon, device);
3289 3290
}

3291 3292 3293 3294 3295 3296

int
qemuMonitorArbitraryCommand(qemuMonitorPtr mon,
                            const char *cmd,
                            char **reply,
                            bool hmp)
3297
{
3298 3299 3300
    VIR_DEBUG("cmd=%s, reply=%p, hmp=%d", cmd, reply, hmp);

    QEMU_CHECK_MONITOR(mon);
3301

3302
    return qemuMonitorJSONArbitraryCommand(mon, cmd, reply, hmp);
3303
}
3304 3305


3306 3307
int
qemuMonitorInjectNMI(qemuMonitorPtr mon)
3308
{
3309
    QEMU_CHECK_MONITOR(mon);
3310

3311
    return qemuMonitorJSONInjectNMI(mon);
3312
}
3313

3314 3315 3316 3317 3318 3319

int
qemuMonitorSendKey(qemuMonitorPtr mon,
                   unsigned int holdtime,
                   unsigned int *keycodes,
                   unsigned int nkeycodes)
3320
{
3321 3322 3323
    VIR_DEBUG("holdtime=%u, nkeycodes=%u", holdtime, nkeycodes);

    QEMU_CHECK_MONITOR(mon);
3324

3325
    return qemuMonitorJSONSendKey(mon, holdtime, keycodes, nkeycodes);
3326 3327
}

3328 3329 3330

int
qemuMonitorScreendump(qemuMonitorPtr mon,
3331 3332
                      const char *device,
                      unsigned int head,
3333
                      const char *file)
3334
{
3335
    VIR_DEBUG("file=%s", file);
3336

3337
    QEMU_CHECK_MONITOR(mon);
3338

3339
    return qemuMonitorJSONScreendump(mon, device, head, file);
3340
}
3341

3342

3343
/* bandwidth is in bytes/sec */
3344
int
3345 3346 3347 3348
qemuMonitorBlockStream(qemuMonitorPtr mon,
                       const char *device,
                       const char *base,
                       const char *backingName,
3349
                       unsigned long long bandwidth)
3350
{
3351 3352
    VIR_DEBUG("device=%s, base=%s, backingName=%s, bandwidth=%lluB",
              device, NULLSTR(base), NULLSTR(backingName), bandwidth);
3353

3354
    QEMU_CHECK_MONITOR(mon);
3355

3356
    return qemuMonitorJSONBlockStream(mon, device, base, backingName, bandwidth);
3357
}
3358

3359

3360 3361
int
qemuMonitorBlockJobCancel(qemuMonitorPtr mon,
3362
                          const char *device)
3363
{
3364
    VIR_DEBUG("device=%s", device);
3365

3366
    QEMU_CHECK_MONITOR(mon);
3367

3368
    return qemuMonitorJSONBlockJobCancel(mon, device);
3369 3370 3371
}


3372 3373 3374
int
qemuMonitorBlockJobSetSpeed(qemuMonitorPtr mon,
                            const char *device,
3375
                            unsigned long long bandwidth)
3376
{
3377
    VIR_DEBUG("device=%s, bandwidth=%lluB", device, bandwidth);
3378

3379
    QEMU_CHECK_MONITOR(mon);
3380

3381
    return qemuMonitorJSONBlockJobSetSpeed(mon, device, bandwidth);
3382 3383 3384
}


3385 3386 3387
virHashTablePtr
qemuMonitorGetAllBlockJobInfo(qemuMonitorPtr mon)
{
3388
    QEMU_CHECK_MONITOR_NULL(mon);
3389 3390 3391 3392 3393 3394 3395 3396 3397
    return qemuMonitorJSONGetAllBlockJobInfo(mon);
}


/**
 * qemuMonitorGetBlockJobInfo:
 * Parse Block Job information, and populate info for the named device.
 * Return 1 if info available, 0 if device has no block job, and -1 on error.
 */
3398
int
3399 3400 3401
qemuMonitorGetBlockJobInfo(qemuMonitorPtr mon,
                           const char *alias,
                           qemuMonitorBlockJobInfoPtr info)
3402
{
3403 3404 3405
    virHashTablePtr all;
    qemuMonitorBlockJobInfoPtr data;
    int ret = 0;
3406

3407 3408 3409 3410
    VIR_DEBUG("alias=%s, info=%p", alias, info);

    if (!(all = qemuMonitorGetAllBlockJobInfo(mon)))
        return -1;
3411

3412 3413 3414 3415 3416 3417 3418
    if ((data = virHashLookup(all, alias))) {
        *info = *data;
        ret = 1;
    }

    virHashFree(all);
    return ret;
3419 3420 3421
}


3422 3423 3424 3425
int
qemuMonitorSetBlockIoThrottle(qemuMonitorPtr mon,
                              const char *device,
                              virDomainBlockIoTuneInfoPtr info,
3426
                              bool supportMaxOptions,
3427
                              bool supportGroupNameOption,
3428
                              bool supportMaxLengthOptions)
3429
{
3430 3431 3432
    VIR_DEBUG("device=%p, info=%p", device, info);

    QEMU_CHECK_MONITOR(mon);
3433

3434 3435 3436 3437
    return qemuMonitorJSONSetBlockIoThrottle(mon, device, info,
                                             supportMaxOptions,
                                             supportGroupNameOption,
                                             supportMaxLengthOptions);
3438 3439
}

3440 3441 3442 3443

int
qemuMonitorGetBlockIoThrottle(qemuMonitorPtr mon,
                              const char *device,
3444
                              virDomainBlockIoTuneInfoPtr reply)
3445
{
3446 3447 3448
    VIR_DEBUG("device=%p, reply=%p", device, reply);

    QEMU_CHECK_MONITOR(mon);
3449

3450
    return qemuMonitorJSONGetBlockIoThrottle(mon, device, reply);
3451 3452 3453
}


3454 3455
int
qemuMonitorVMStatusToPausedReason(const char *status)
3456 3457 3458 3459 3460 3461 3462
{
    int st;

    if (!status)
        return VIR_DOMAIN_PAUSED_UNKNOWN;

    if ((st = qemuMonitorVMStatusTypeFromString(status)) < 0) {
P
Philipp Hahn 已提交
3463
        VIR_WARN("QEMU reported unknown VM status: '%s'", status);
3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485
        return VIR_DOMAIN_PAUSED_UNKNOWN;
    }

    switch ((qemuMonitorVMStatus) st) {
    case QEMU_MONITOR_VM_STATUS_DEBUG:
    case QEMU_MONITOR_VM_STATUS_INTERNAL_ERROR:
    case QEMU_MONITOR_VM_STATUS_RESTORE_VM:
        return VIR_DOMAIN_PAUSED_UNKNOWN;

    case QEMU_MONITOR_VM_STATUS_INMIGRATE:
    case QEMU_MONITOR_VM_STATUS_POSTMIGRATE:
    case QEMU_MONITOR_VM_STATUS_FINISH_MIGRATE:
        return VIR_DOMAIN_PAUSED_MIGRATION;

    case QEMU_MONITOR_VM_STATUS_IO_ERROR:
        return VIR_DOMAIN_PAUSED_IOERROR;

    case QEMU_MONITOR_VM_STATUS_PAUSED:
    case QEMU_MONITOR_VM_STATUS_PRELAUNCH:
        return VIR_DOMAIN_PAUSED_USER;

    case QEMU_MONITOR_VM_STATUS_RUNNING:
P
Philipp Hahn 已提交
3486
        VIR_WARN("QEMU reports the guest is paused but status is 'running'");
3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497
        return VIR_DOMAIN_PAUSED_UNKNOWN;

    case QEMU_MONITOR_VM_STATUS_SAVE_VM:
        return VIR_DOMAIN_PAUSED_SAVE;

    case QEMU_MONITOR_VM_STATUS_SHUTDOWN:
        return VIR_DOMAIN_PAUSED_SHUTTING_DOWN;

    case QEMU_MONITOR_VM_STATUS_WATCHDOG:
        return VIR_DOMAIN_PAUSED_WATCHDOG;

3498
    case QEMU_MONITOR_VM_STATUS_GUEST_PANICKED:
3499
        return VIR_DOMAIN_PAUSED_CRASHED;
3500

3501 3502 3503 3504 3505 3506
    /* unreachable from this point on */
    case QEMU_MONITOR_VM_STATUS_LAST:
        ;
    }
    return VIR_DOMAIN_PAUSED_UNKNOWN;
}
3507 3508


3509 3510 3511 3512 3513 3514
int
qemuMonitorOpenGraphics(qemuMonitorPtr mon,
                        const char *protocol,
                        int fd,
                        const char *fdname,
                        bool skipauth)
3515
{
3516 3517
    VIR_DEBUG("protocol=%s fd=%d fdname=%s skipauth=%d",
              protocol, fd, NULLSTR(fdname), skipauth);
3518 3519
    int ret;

3520
    QEMU_CHECK_MONITOR(mon);
3521 3522 3523 3524

    if (qemuMonitorSendFileHandle(mon, fdname, fd) < 0)
        return -1;

3525
    ret = qemuMonitorJSONOpenGraphics(mon, protocol, fdname, skipauth);
3526 3527 3528 3529 3530 3531 3532 3533

    if (ret < 0) {
        if (qemuMonitorCloseFileHandle(mon, fdname) < 0)
            VIR_WARN("failed to close device handle '%s'", fdname);
    }

    return ret;
}
3534

3535 3536 3537

int
qemuMonitorSystemWakeup(qemuMonitorPtr mon)
3538
{
3539
    QEMU_CHECK_MONITOR(mon);
3540 3541 3542

    return qemuMonitorJSONSystemWakeup(mon);
}
3543

3544 3545 3546 3547 3548 3549 3550

int
qemuMonitorGetVersion(qemuMonitorPtr mon,
                      int *major,
                      int *minor,
                      int *micro,
                      char **package)
3551
{
3552 3553
    VIR_DEBUG("major=%p minor=%p micro=%p package=%p",
              major, minor, micro, package);
3554

3555
    QEMU_CHECK_MONITOR(mon);
3556 3557 3558

    return qemuMonitorJSONGetVersion(mon, major, minor, micro, package);
}
3559

3560 3561 3562 3563

int
qemuMonitorGetMachines(qemuMonitorPtr mon,
                       qemuMonitorMachineInfoPtr **machines)
3564
{
3565
    VIR_DEBUG("machines=%p", machines);
3566

3567
    QEMU_CHECK_MONITOR(mon);
3568 3569 3570 3571

    return qemuMonitorJSONGetMachines(mon, machines);
}

3572 3573 3574

void
qemuMonitorMachineInfoFree(qemuMonitorMachineInfoPtr machine)
3575 3576 3577 3578 3579 3580 3581
{
    if (!machine)
        return;
    VIR_FREE(machine->name);
    VIR_FREE(machine->alias);
    VIR_FREE(machine);
}
3582

3583 3584 3585

int
qemuMonitorGetCPUDefinitions(qemuMonitorPtr mon,
3586
                             qemuMonitorCPUDefInfoPtr **cpus)
3587
{
3588
    VIR_DEBUG("cpus=%p", cpus);
3589

3590
    QEMU_CHECK_MONITOR(mon);
3591 3592 3593

    return qemuMonitorJSONGetCPUDefinitions(mon, cpus);
}
3594 3595


3596 3597 3598 3599 3600
void
qemuMonitorCPUDefInfoFree(qemuMonitorCPUDefInfoPtr cpu)
{
    if (!cpu)
        return;
3601 3602

    virStringListFree(cpu->blockers);
3603 3604 3605 3606 3607
    VIR_FREE(cpu->name);
    VIR_FREE(cpu);
}


3608 3609
int
qemuMonitorGetCPUModelExpansion(qemuMonitorPtr mon,
3610
                                qemuMonitorCPUModelExpansionType type,
3611
                                const char *model_name,
3612
                                bool migratable,
3613 3614
                                qemuMonitorCPUModelInfoPtr *model_info)
{
3615 3616
    VIR_DEBUG("type=%d model_name=%s migratable=%d",
              type, model_name, migratable);
3617

3618
    QEMU_CHECK_MONITOR(mon);
3619

3620 3621
    return qemuMonitorJSONGetCPUModelExpansion(mon, type, model_name,
                                               migratable, model_info);
3622 3623 3624 3625 3626 3627 3628 3629 3630 3631 3632
}


void
qemuMonitorCPUModelInfoFree(qemuMonitorCPUModelInfoPtr model_info)
{
    size_t i;

    if (!model_info)
        return;

3633
    for (i = 0; i < model_info->nprops; i++) {
3634
        VIR_FREE(model_info->props[i].name);
3635 3636 3637
        if (model_info->props[i].type == QEMU_MONITOR_CPU_PROPERTY_STRING)
            VIR_FREE(model_info->props[i].value.string);
    }
3638

3639
    VIR_FREE(model_info->props);
3640 3641 3642 3643 3644 3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659
    VIR_FREE(model_info->name);
    VIR_FREE(model_info);
}


qemuMonitorCPUModelInfoPtr
qemuMonitorCPUModelInfoCopy(const qemuMonitorCPUModelInfo *orig)
{
    qemuMonitorCPUModelInfoPtr copy;
    size_t i;

    if (VIR_ALLOC(copy) < 0)
        goto error;

    if (VIR_ALLOC_N(copy->props, orig->nprops) < 0)
        goto error;

    if (VIR_STRDUP(copy->name, orig->name) < 0)
        goto error;

3660
    copy->migratability = orig->migratability;
3661 3662 3663 3664 3665 3666
    copy->nprops = orig->nprops;

    for (i = 0; i < orig->nprops; i++) {
        if (VIR_STRDUP(copy->props[i].name, orig->props[i].name) < 0)
            goto error;

3667
        copy->props[i].migratable = orig->props[i].migratable;
3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686
        copy->props[i].type = orig->props[i].type;
        switch (orig->props[i].type) {
        case QEMU_MONITOR_CPU_PROPERTY_BOOLEAN:
            copy->props[i].value.boolean = orig->props[i].value.boolean;
            break;

        case QEMU_MONITOR_CPU_PROPERTY_STRING:
            if (VIR_STRDUP(copy->props[i].value.string,
                           orig->props[i].value.string) < 0)
                goto error;
            break;

        case QEMU_MONITOR_CPU_PROPERTY_NUMBER:
            copy->props[i].value.number = orig->props[i].value.number;
            break;

        case QEMU_MONITOR_CPU_PROPERTY_LAST:
            break;
        }
3687 3688 3689 3690 3691 3692 3693 3694 3695 3696
    }

    return copy;

 error:
    qemuMonitorCPUModelInfoFree(copy);
    return NULL;
}


3697 3698 3699
int
qemuMonitorGetCommands(qemuMonitorPtr mon,
                       char ***commands)
3700
{
3701
    VIR_DEBUG("commands=%p", commands);
3702

3703
    QEMU_CHECK_MONITOR(mon);
3704 3705 3706

    return qemuMonitorJSONGetCommands(mon, commands);
}
3707 3708


3709 3710 3711
int
qemuMonitorGetEvents(qemuMonitorPtr mon,
                     char ***events)
3712
{
3713
    VIR_DEBUG("events=%p", events);
3714

3715
    QEMU_CHECK_MONITOR(mon);
3716 3717 3718

    return qemuMonitorJSONGetEvents(mon, events);
}
3719 3720


3721 3722 3723 3724 3725
/* Collect the parameters associated with a given command line option.
 * Return count of known parameters or -1 on error.  */
int
qemuMonitorGetCommandLineOptionParameters(qemuMonitorPtr mon,
                                          const char *option,
3726 3727
                                          char ***params,
                                          bool *found)
3728
{
3729
    VIR_DEBUG("option=%s params=%p", option, params);
3730

3731
    QEMU_CHECK_MONITOR(mon);
3732

3733 3734
    return qemuMonitorJSONGetCommandLineOptionParameters(mon, option,
                                                         params, found);
3735 3736 3737
}


3738 3739 3740 3741
int
qemuMonitorGetKVMState(qemuMonitorPtr mon,
                       bool *enabled,
                       bool *present)
3742
{
3743
    VIR_DEBUG("enabled=%p present=%p", enabled, present);
3744

3745
    QEMU_CHECK_MONITOR(mon);
3746 3747 3748 3749 3750

    return qemuMonitorJSONGetKVMState(mon, enabled, present);
}


3751 3752 3753
int
qemuMonitorGetObjectTypes(qemuMonitorPtr mon,
                          char ***types)
3754
{
3755
    VIR_DEBUG("types=%p", types);
3756

3757
    QEMU_CHECK_MONITOR(mon);
3758 3759 3760

    return qemuMonitorJSONGetObjectTypes(mon, types);
}
3761 3762


3763
int
3764 3765
qemuMonitorGetDeviceProps(qemuMonitorPtr mon,
                          const char *device,
3766
                          char ***props)
3767
{
3768
    VIR_DEBUG("device=%s props=%p", device, props);
3769

3770
    QEMU_CHECK_MONITOR(mon);
3771

3772
    return qemuMonitorJSONGetDeviceProps(mon, device, props);
3773
}
3774 3775


3776 3777 3778 3779 3780 3781 3782
int
qemuMonitorGetObjectProps(qemuMonitorPtr mon,
                          const char *object,
                          char ***props)
{
    VIR_DEBUG("object=%s props=%p", object, props);

3783
    QEMU_CHECK_MONITOR(mon);
3784 3785 3786 3787 3788

    return qemuMonitorJSONGetObjectProps(mon, object, props);
}


3789 3790
char *
qemuMonitorGetTargetArch(qemuMonitorPtr mon)
3791
{
3792
    QEMU_CHECK_MONITOR_NULL(mon);
3793 3794 3795

    return qemuMonitorJSONGetTargetArch(mon);
}
3796 3797


3798 3799 3800 3801
int
qemuMonitorGetMigrationCapabilities(qemuMonitorPtr mon,
                                    char ***capabilities)
{
3802
    QEMU_CHECK_MONITOR(mon);
3803 3804 3805 3806 3807 3808 3809 3810 3811

    /* No capability is supported without JSON monitor */
    if (!mon->json)
        return 0;

    return qemuMonitorJSONGetMigrationCapabilities(mon, capabilities);
}


3812 3813 3814 3815 3816 3817 3818 3819 3820 3821
/**
 * qemuMonitorSetMigrationCapabilities:
 * @mon: Pointer to the monitor object.
 * @caps: Migration capabilities.
 *
 * The @caps object is consumed and should not be referenced by the caller
 * after this function returns.
 *
 * Returns 0 on success, -1 on error.
 */
3822 3823
int
qemuMonitorSetMigrationCapabilities(qemuMonitorPtr mon,
3824
                                    virJSONValuePtr caps)
3825
{
3826
    QEMU_CHECK_MONITOR_GOTO(mon, error);
3827

3828
    return qemuMonitorJSONSetMigrationCapabilities(mon, caps);
3829

3830 3831 3832
 error:
    virJSONValueFree(caps);
    return -1;
3833 3834 3835
}


A
Andrea Bolognani 已提交
3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846
/**
 * qemuMonitorGetGICCapabilities:
 * @mon: QEMU monitor
 * @capabilities: where to store the GIC capabilities
 *
 * See qemuMonitorJSONGetGICCapabilities().
 */
int
qemuMonitorGetGICCapabilities(qemuMonitorPtr mon,
                              virGICCapability **capabilities)
{
3847
    QEMU_CHECK_MONITOR(mon);
A
Andrea Bolognani 已提交
3848 3849 3850 3851 3852

    return qemuMonitorJSONGetGICCapabilities(mon, capabilities);
}


3853 3854 3855
int
qemuMonitorNBDServerStart(qemuMonitorPtr mon,
                          const char *host,
3856 3857
                          unsigned int port,
                          const char *tls_alias)
3858
{
3859
    VIR_DEBUG("host=%s port=%u tls_alias=%s", host, port, NULLSTR(tls_alias));
3860

3861
    QEMU_CHECK_MONITOR(mon);
3862

3863
    return qemuMonitorJSONNBDServerStart(mon, host, port, tls_alias);
3864
}
3865

3866 3867 3868 3869 3870

int
qemuMonitorNBDServerAdd(qemuMonitorPtr mon,
                        const char *deviceID,
                        bool writable)
3871
{
3872
    VIR_DEBUG("deviceID=%s", deviceID);
3873

3874
    QEMU_CHECK_MONITOR(mon);
3875 3876 3877

    return qemuMonitorJSONNBDServerAdd(mon, deviceID, writable);
}
3878

3879 3880 3881

int
qemuMonitorNBDServerStop(qemuMonitorPtr mon)
3882
{
3883
    QEMU_CHECK_MONITOR(mon);
3884 3885 3886

    return qemuMonitorJSONNBDServerStop(mon);
}
S
Stefan Berger 已提交
3887 3888


3889 3890
int
qemuMonitorGetTPMModels(qemuMonitorPtr mon,
S
Stefan Berger 已提交
3891 3892
                            char ***tpmmodels)
{
3893
    VIR_DEBUG("tpmmodels=%p", tpmmodels);
S
Stefan Berger 已提交
3894

3895
    QEMU_CHECK_MONITOR(mon);
S
Stefan Berger 已提交
3896 3897 3898 3899 3900

    return qemuMonitorJSONGetTPMModels(mon, tpmmodels);
}


3901 3902 3903
int
qemuMonitorGetTPMTypes(qemuMonitorPtr mon,
                       char ***tpmtypes)
S
Stefan Berger 已提交
3904
{
3905
    VIR_DEBUG("tpmtypes=%p", tpmtypes);
S
Stefan Berger 已提交
3906

3907
    QEMU_CHECK_MONITOR(mon);
S
Stefan Berger 已提交
3908 3909 3910

    return qemuMonitorJSONGetTPMTypes(mon, tpmtypes);
}
3911

3912 3913 3914 3915 3916

int
qemuMonitorAttachCharDev(qemuMonitorPtr mon,
                         const char *chrID,
                         virDomainChrSourceDefPtr chr)
3917
{
3918
    VIR_DEBUG("chrID=%s chr=%p", chrID, chr);
3919

3920
    QEMU_CHECK_MONITOR(mon);
3921 3922 3923

    return qemuMonitorJSONAttachCharDev(mon, chrID, chr);
}
3924

3925 3926 3927 3928

int
qemuMonitorDetachCharDev(qemuMonitorPtr mon,
                         const char *chrID)
3929
{
3930
    VIR_DEBUG("chrID=%s", chrID);
3931

3932
    QEMU_CHECK_MONITOR(mon);
3933 3934 3935

    return qemuMonitorJSONDetachCharDev(mon, chrID);
}
3936

3937

3938 3939 3940 3941
int
qemuMonitorGetDeviceAliases(qemuMonitorPtr mon,
                            char ***aliases)
{
3942
    VIR_DEBUG("aliases=%p", aliases);
3943

3944
    QEMU_CHECK_MONITOR(mon);
3945 3946 3947

    return qemuMonitorJSONGetDeviceAliases(mon, aliases);
}
3948 3949 3950


/**
3951 3952
 * qemuMonitorSetDomainLogLocked:
 * @mon: Locked monitor object to set the log file reading on
3953 3954 3955
 * @func: the callback to report errors
 * @opaque: data to pass to @func
 * @destroy: optional callback to free @opaque
3956 3957 3958 3959
 *
 * Set the file descriptor of the open VM log file to report potential
 * early startup errors of qemu. This function requires @mon to be
 * locked already!
3960
 */
3961
void
3962 3963 3964 3965
qemuMonitorSetDomainLogLocked(qemuMonitorPtr mon,
                              qemuMonitorReportDomainLogError func,
                              void *opaque,
                              virFreeCallback destroy)
3966
{
3967 3968
    if (mon->logDestroy && mon->logOpaque)
        mon->logDestroy(mon->logOpaque);
3969

3970 3971 3972
    mon->logFunc = func;
    mon->logOpaque = opaque;
    mon->logDestroy = destroy;
3973
}
3974 3975


3976 3977 3978 3979 3980 3981 3982 3983 3984 3985 3986 3987 3988 3989 3990 3991 3992 3993 3994 3995 3996 3997 3998
/**
 * qemuMonitorSetDomainLog:
 * @mon: Unlocked monitor object to set the log file reading on
 * @func: the callback to report errors
 * @opaque: data to pass to @func
 * @destroy: optional callback to free @opaque
 *
 * Set the file descriptor of the open VM log file to report potential
 * early startup errors of qemu. This functions requires @mon to be
 * unlocked.
 */
void
qemuMonitorSetDomainLog(qemuMonitorPtr mon,
                        qemuMonitorReportDomainLogError func,
                        void *opaque,
                        virFreeCallback destroy)
{
    virObjectLock(mon);
    qemuMonitorSetDomainLogLocked(mon, func, opaque, destroy);
    virObjectUnlock(mon);
}


3999 4000 4001 4002
/**
 * qemuMonitorJSONGetGuestCPU:
 * @mon: Pointer to the monitor
 * @arch: arch of the guest
4003
 * @data: returns the cpu data
4004
 * @disabled: returns the CPU data for features which were disabled by QEMU
4005 4006 4007
 *
 * Retrieve the definition of the guest CPU from a running qemu instance.
 *
4008 4009
 * Returns 0 on success, -2 if the operation is not supported by the guest,
 * -1 on other errors.
4010
 */
4011
int
4012
qemuMonitorGetGuestCPU(qemuMonitorPtr mon,
4013
                       virArch arch,
4014 4015
                       virCPUDataPtr *data,
                       virCPUDataPtr *disabled)
4016
{
4017 4018
    VIR_DEBUG("arch=%s data=%p disabled=%p",
              virArchToString(arch), data, disabled);
4019

4020
    QEMU_CHECK_MONITOR(mon);
4021

4022
    *data = NULL;
4023 4024
    if (disabled)
        *disabled = NULL;
4025

4026
    return qemuMonitorJSONGetGuestCPU(mon, arch, data, disabled);
4027
}
4028

4029

4030 4031 4032 4033 4034 4035 4036 4037 4038 4039 4040 4041 4042 4043 4044
/**
 * qemuMonitorRTCResetReinjection:
 * @mon: Pointer to the monitor
 *
 * Issue rtc-reset-reinjection command.
 * This should be used in cases where guest time is restored via
 * guest agent, so RTC injection is not needed (in fact it would
 * confuse guest's RTC).
 *
 * Returns 0 on success
 *        -1 on error.
 */
int
qemuMonitorRTCResetReinjection(qemuMonitorPtr mon)
{
4045
    QEMU_CHECK_MONITOR(mon);
4046 4047 4048

    return qemuMonitorJSONRTCResetReinjection(mon);
}
4049

4050

4051 4052 4053 4054 4055 4056 4057 4058 4059 4060 4061 4062 4063
/**
 * qemuMonitorGetIOThreads:
 * @mon: Pointer to the monitor
 * @iothreads: Location to return array of IOThreadInfo data
 *
 * Issue query-iothreads command.
 * Retrieve the list of iothreads defined/running for the machine
 *
 * Returns count of IOThreadInfo structures on success
 *        -1 on error.
 */
int
qemuMonitorGetIOThreads(qemuMonitorPtr mon,
4064
                        qemuMonitorIOThreadInfoPtr **iothreads)
4065 4066
{

4067
    VIR_DEBUG("iothreads=%p", iothreads);
4068

4069
    QEMU_CHECK_MONITOR(mon);
4070

4071
    /* Requires JSON to make the query */
4072
    if (!mon->json) {
4073 4074
        *iothreads = NULL;
        return 0;
4075 4076 4077 4078 4079
    }

    return qemuMonitorJSONGetIOThreads(mon, iothreads);
}

4080

4081 4082 4083 4084 4085 4086 4087 4088 4089 4090 4091 4092 4093 4094 4095 4096
/**
 * qemuMonitorGetMemoryDeviceInfo:
 * @mon: pointer to the monitor
 * @info: Location to return the hash of qemuMonitorMemoryDeviceInfo
 *
 * Retrieve state and addresses of frontend memory devices present in
 * the guest.
 *
 * Returns 0 on success and fills @info with a newly allocated struct; if the
 * data can't be retrieved due to lack of support in qemu, returns -2. On
 * other errors returns -1.
 */
int
qemuMonitorGetMemoryDeviceInfo(qemuMonitorPtr mon,
                               virHashTablePtr *info)
{
4097
    VIR_DEBUG("info=%p", info);
4098 4099 4100 4101
    int ret;

    *info = NULL;

4102
    QEMU_CHECK_MONITOR(mon);
4103 4104 4105 4106 4107 4108 4109 4110 4111 4112 4113 4114 4115 4116

    if (!mon->json)
        return -2;

    if (!(*info = virHashCreate(10, virHashValueFree)))
        return -1;

    if ((ret = qemuMonitorJSONGetMemoryDeviceInfo(mon, *info)) < 0) {
        virHashFree(*info);
        *info = NULL;
    }

    return ret;
}
4117 4118 4119 4120 4121 4122 4123 4124


int
qemuMonitorMigrateIncoming(qemuMonitorPtr mon,
                           const char *uri)
{
    VIR_DEBUG("uri=%s", uri);

4125
    QEMU_CHECK_MONITOR(mon);
4126 4127 4128

    return qemuMonitorJSONMigrateIncoming(mon, uri);
}
4129 4130 4131 4132 4133


int
qemuMonitorMigrateStartPostCopy(qemuMonitorPtr mon)
{
4134
    QEMU_CHECK_MONITOR(mon);
4135 4136 4137

    return qemuMonitorJSONMigrateStartPostCopy(mon);
}
4138

4139 4140 4141 4142 4143 4144 4145

int
qemuMonitorMigrateContinue(qemuMonitorPtr mon,
                           qemuMonitorMigrationStatus status)
{
    VIR_DEBUG("status=%s", qemuMonitorMigrationStatusTypeToString(status));

4146
    QEMU_CHECK_MONITOR(mon);
4147 4148 4149 4150 4151

    return qemuMonitorJSONMigrateContinue(mon, status);
}


4152 4153 4154 4155
int
qemuMonitorGetRTCTime(qemuMonitorPtr mon,
                      struct tm *tm)
{
4156
    QEMU_CHECK_MONITOR(mon);
4157 4158 4159

    return qemuMonitorJSONGetRTCTime(mon, tm);
}
4160 4161


4162
virJSONValuePtr
4163 4164
qemuMonitorQueryQMPSchema(qemuMonitorPtr mon)
{
4165
    QEMU_CHECK_MONITOR_NULL(mon);
4166 4167 4168

    return qemuMonitorJSONQueryQMPSchema(mon);
}
4169 4170 4171 4172 4173 4174 4175


int
qemuMonitorSetBlockThreshold(qemuMonitorPtr mon,
                             const char *nodename,
                             unsigned long long threshold)
{
4176
    VIR_DEBUG("node='%s', threshold=%llu", nodename, threshold);
4177

4178
    QEMU_CHECK_MONITOR(mon);
4179 4180 4181

    return qemuMonitorJSONSetBlockThreshold(mon, nodename, threshold);
}
4182 4183 4184 4185 4186


virJSONValuePtr
qemuMonitorQueryNamedBlockNodes(qemuMonitorPtr mon)
{
4187
    QEMU_CHECK_MONITOR_NULL(mon);
4188 4189 4190

    return qemuMonitorJSONQueryNamedBlockNodes(mon);
}
4191 4192


4193 4194 4195 4196 4197 4198 4199 4200 4201 4202 4203 4204 4205 4206
char *
qemuMonitorGuestPanicEventInfoFormatMsg(qemuMonitorEventPanicInfoPtr info)
{
    char *ret = NULL;

    switch (info->type) {
    case QEMU_MONITOR_EVENT_PANIC_INFO_TYPE_HYPERV:
        ignore_value(virAsprintf(&ret,
                                 "hyper-v: arg1='0x%llx', arg2='0x%llx', "
                                 "arg3='0x%llx', arg4='0x%llx', arg5='0x%llx'",
                                 info->data.hyperv.arg1, info->data.hyperv.arg2,
                                 info->data.hyperv.arg3, info->data.hyperv.arg4,
                                 info->data.hyperv.arg5));
        break;
4207 4208 4209 4210 4211 4212 4213 4214
    case QEMU_MONITOR_EVENT_PANIC_INFO_TYPE_S390:
        ignore_value(virAsprintf(&ret, "s390: core='%d' psw-mask='0x%016llx' "
                                 "psw-addr='0x%016llx' reason='%s'",
                                 info->data.s390.core,
                                 info->data.s390.psw_mask,
                                 info->data.s390.psw_addr,
                                 info->data.s390.reason));
        break;
4215 4216 4217 4218 4219 4220 4221 4222 4223
    case QEMU_MONITOR_EVENT_PANIC_INFO_TYPE_NONE:
    case QEMU_MONITOR_EVENT_PANIC_INFO_TYPE_LAST:
        break;
    }

    return ret;
}


4224 4225 4226 4227 4228 4229
void
qemuMonitorEventPanicInfoFree(qemuMonitorEventPanicInfoPtr info)
{
    if (!info)
        return;

4230 4231 4232 4233 4234 4235 4236 4237 4238 4239
    switch (info->type) {
    case QEMU_MONITOR_EVENT_PANIC_INFO_TYPE_S390:
        VIR_FREE(info->data.s390.reason);
        break;
    case QEMU_MONITOR_EVENT_PANIC_INFO_TYPE_NONE:
    case QEMU_MONITOR_EVENT_PANIC_INFO_TYPE_HYPERV:
    case QEMU_MONITOR_EVENT_PANIC_INFO_TYPE_LAST:
        break;
    }

4240 4241
    VIR_FREE(info);
}
M
Michal Privoznik 已提交
4242 4243 4244 4245 4246 4247 4248 4249


int
qemuMonitorSetWatchdogAction(qemuMonitorPtr mon,
                             const char *action)
{
    VIR_DEBUG("watchdogAction=%s", action);

4250
    QEMU_CHECK_MONITOR(mon);
M
Michal Privoznik 已提交
4251 4252 4253

    return qemuMonitorJSONSetWatchdogAction(mon, action);
}
4254 4255 4256 4257 4258 4259 4260 4261 4262 4263 4264 4265 4266 4267 4268 4269 4270


/**
 * qemuMonitorBlockdevAdd:
 * @mon: monitor object
 * @props: JSON object describing the blockdev to add
 *
 * Adds a new block device (BDS) to qemu. Note that @props is always consumed
 * by this function and should not be accessed after calling this function.
 */
int
qemuMonitorBlockdevAdd(qemuMonitorPtr mon,
                       virJSONValuePtr props)
{
    VIR_DEBUG("props=%p (node-name=%s)", props,
              NULLSTR(virJSONValueObjectGetString(props, "node-name")));

4271
    QEMU_CHECK_MONITOR_GOTO(mon, error);
4272 4273 4274 4275 4276 4277 4278 4279 4280 4281 4282 4283 4284 4285 4286

    return qemuMonitorJSONBlockdevAdd(mon, props);

 error:
    virJSONValueFree(props);
    return -1;
}


int
qemuMonitorBlockdevDel(qemuMonitorPtr mon,
                       const char *nodename)
{
    VIR_DEBUG("nodename=%s", nodename);

4287
    QEMU_CHECK_MONITOR(mon);
4288 4289 4290

    return qemuMonitorJSONBlockdevDel(mon, nodename);
}