cpu.c 21.1 KB
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/*
 * cpu.c: internal functions for CPU manipulation
 *
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 * Copyright (C) 2009-2013 Red Hat, Inc.
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 *
 * 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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 *
 * Authors:
 *      Jiri Denemark <jdenemar@redhat.com>
 */

#include <config.h>

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#include "virlog.h"
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#include "viralloc.h"
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#include "virxml.h"
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#include "cpu.h"
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#include "cpu_map.h"
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#include "cpu_x86.h"
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#include "cpu_ppc64.h"
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#include "cpu_s390.h"
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#include "cpu_arm.h"
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#include "util/virstring.h"
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#define VIR_FROM_THIS VIR_FROM_CPU

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VIR_LOG_INIT("cpu.cpu");

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static struct cpuArchDriver *drivers[] = {
    &cpuDriverX86,
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    &cpuDriverPPC64,
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    &cpuDriverS390,
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    &cpuDriverArm,
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};


static struct cpuArchDriver *
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cpuGetSubDriver(virArch arch)
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{
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    size_t i;
    size_t j;
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    if (arch == VIR_ARCH_NONE) {
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        virReportError(VIR_ERR_INTERNAL_ERROR,
                       "%s", _("undefined hardware architecture"));
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        return NULL;
    }

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    for (i = 0; i < ARRAY_CARDINALITY(drivers); i++) {
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        for (j = 0; j < drivers[i]->narch; j++) {
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            if (arch == drivers[i]->arch[j])
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                return drivers[i];
        }
    }

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    virReportError(VIR_ERR_NO_SUPPORT,
                   _("'%s' architecture is not supported by CPU driver"),
                   virArchToString(arch));
    return NULL;
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}


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static struct cpuArchDriver *
cpuGetSubDriverByName(const char *name)
{
    size_t i;

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    for (i = 0; i < ARRAY_CARDINALITY(drivers); i++) {
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        if (STREQ_NULLABLE(name, drivers[i]->name))
            return drivers[i];
    }

    virReportError(VIR_ERR_INTERNAL_ERROR,
                   _("CPU driver '%s' does not exist"),
                   name);
    return NULL;
}


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/**
 * cpuCompareXML:
 *
 * @host: host CPU definition
 * @xml: XML description of either guest or host CPU to be compared with @host
 *
 * Compares the CPU described by @xml with @host CPU.
 *
 * Returns VIR_CPU_COMPARE_ERROR on error, VIR_CPU_COMPARE_INCOMPATIBLE when
 * the two CPUs are incompatible, VIR_CPU_COMPARE_IDENTICAL when the two CPUs
 * are identical, VIR_CPU_COMPARE_SUPERSET when the @xml CPU is a superset of
 * the @host CPU.
 */
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virCPUCompareResult
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cpuCompareXML(virCPUDefPtr host,
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              const char *xml,
              bool failIncompatible)
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{
    xmlDocPtr doc = NULL;
    xmlXPathContextPtr ctxt = NULL;
    virCPUDefPtr cpu = NULL;
    virCPUCompareResult ret = VIR_CPU_COMPARE_ERROR;

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    VIR_DEBUG("host=%p, xml=%s", host, NULLSTR(xml));

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    if (!(doc = virXMLParseStringCtxt(xml, _("(CPU_definition)"), &ctxt)))
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        goto cleanup;
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    cpu = virCPUDefParseXML(ctxt->node, ctxt, VIR_CPU_TYPE_AUTO);
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    if (cpu == NULL)
        goto cleanup;

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    ret = cpuCompare(host, cpu, failIncompatible);
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 cleanup:
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    virCPUDefFree(cpu);
    xmlXPathFreeContext(ctxt);
    xmlFreeDoc(doc);

    return ret;
}


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/**
 * cpuCompare:
 *
 * @host: host CPU definition
 * @cpu: either guest or host CPU to be compared with @host
 *
 * Compares the CPU described by @cpu with @host CPU.
 *
 * Returns VIR_CPU_COMPARE_ERROR on error, VIR_CPU_COMPARE_INCOMPATIBLE when
 * the two CPUs are incompatible, VIR_CPU_COMPARE_IDENTICAL when the two CPUs
 * are identical, VIR_CPU_COMPARE_SUPERSET when the @cpu CPU is a superset of
 * the @host CPU.
 */
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virCPUCompareResult
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cpuCompare(virCPUDefPtr host,
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           virCPUDefPtr cpu,
           bool failIncompatible)
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{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("host=%p, cpu=%p", host, cpu);

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    if ((driver = cpuGetSubDriver(host->arch)) == NULL)
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        return VIR_CPU_COMPARE_ERROR;

    if (driver->compare == NULL) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot compare CPUs of %s architecture"),
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                       virArchToString(host->arch));
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        return VIR_CPU_COMPARE_ERROR;
    }

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    return driver->compare(host, cpu, failIncompatible);
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}


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/**
 * cpuDecode:
 *
 * @cpu: CPU definition stub to be filled in
 * @data: internal CPU data to be decoded into @cpu definition
 * @models: list of CPU models that can be considered when decoding @data
 * @nmodels: number of CPU models in @models
 * @preferred: CPU models that should be used if possible
 *
 * Decodes internal CPU data into a CPU definition consisting of a CPU model
 * and a list of CPU features. The @cpu model stub is supposed to have arch,
 * type, match and fallback members set, this function will add the rest. If
 * @models list is NULL, all models supported by libvirt will be considered
 * when decoding the data. In general, this function will select the model
 * closest to the CPU specified by @data unless @preferred is non-NULL, in
 * which case the @preferred model will be used as long as it is compatible
 * with @data.
 *
 * For VIR_ARCH_I686 and VIR_ARCH_X86_64 architectures this means the computed
 * CPU definition will have the shortest possible list of additional features.
 * When @preferred is non-NULL, the @preferred model will be used even if
 * other models would result in a shorter list of additional features.
 *
 * Returns 0 on success, -1 on error.
 */
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int
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cpuDecode(virCPUDefPtr cpu,
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          const virCPUData *data,
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          const char **models,
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          unsigned int nmodels,
          const char *preferred)
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{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("cpu=%p, data=%p, nmodels=%u, preferred=%s",
              cpu, data, nmodels, NULLSTR(preferred));
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    if (models) {
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        size_t i;
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        for (i = 0; i < nmodels; i++)
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            VIR_DEBUG("models[%zu]=%s", i, NULLSTR(models[i]));
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    }

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    if (models == NULL && nmodels != 0) {
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        virReportError(VIR_ERR_INVALID_ARG, "%s",
                       _("nonzero nmodels doesn't match with NULL models"));
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        return -1;
    }

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    if (cpu->type > VIR_CPU_TYPE_GUEST ||
        cpu->mode != VIR_CPU_MODE_CUSTOM) {
        virReportError(VIR_ERR_INVALID_ARG, "%s",
                       _("invalid CPU definition stub"));
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        return -1;
    }

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    if ((driver = cpuGetSubDriver(cpu->arch)) == NULL)
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        return -1;

    if (driver->decode == NULL) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot decode CPU data for %s architecture"),
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                       virArchToString(cpu->arch));
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        return -1;
    }

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    return driver->decode(cpu, data, models, nmodels, preferred, 0);
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}


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/**
 * cpuEncode:
 *
 * @arch: CPU architecture
 * @cpu: CPU definition to be encoded into internal CPU driver representation
 * @forced: where to store CPU data corresponding to forced features
 * @required: where to store CPU data corresponding to required features
 * @optional: where to store CPU data corresponding to optional features
 * @disabled: where to store CPU data corresponding to disabled features
 * @forbidden: where to store CPU data corresponding to forbidden features
 * @vendor: where to store CPU data corresponding to CPU vendor
 *
 * Encode CPU definition from @cpu into internal CPU driver representation.
 * Any of @forced, @required, @optional, @disabled, @forbidden and @vendor
 * arguments can be NULL in case the caller is not interested in the
 * corresponding data.
 *
 * Returns 0 on success, -1 on error.
 */
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int
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cpuEncode(virArch arch,
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          const virCPUDef *cpu,
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          virCPUDataPtr *forced,
          virCPUDataPtr *required,
          virCPUDataPtr *optional,
          virCPUDataPtr *disabled,
          virCPUDataPtr *forbidden,
          virCPUDataPtr *vendor)
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{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("arch=%s, cpu=%p, forced=%p, required=%p, "
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              "optional=%p, disabled=%p, forbidden=%p, vendor=%p",
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              virArchToString(arch), cpu, forced, required,
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              optional, disabled, forbidden, vendor);
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    if (!cpu->model) {
        virReportError(VIR_ERR_INVALID_ARG, "%s",
                       _("no guest CPU model specified"));
        return -1;
    }

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    if ((driver = cpuGetSubDriver(arch)) == NULL)
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        return -1;

    if (driver->encode == NULL) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot encode CPU data for %s architecture"),
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                       virArchToString(arch));
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        return -1;
    }

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    return driver->encode(arch, cpu, forced, required,
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                          optional, disabled, forbidden, vendor);
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}


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/**
 * cpuDataFree:
 *
 * @data: CPU data structure to be freed
 *
 * Free internal CPU data.
 *
 * Returns nothing.
 */
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void
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cpuDataFree(virCPUDataPtr data)
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{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("data=%p", data);
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    if (data == NULL)
        return;

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    if ((driver = cpuGetSubDriver(data->arch)) == NULL)
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        return;

    if (driver->free == NULL) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot free CPU data for %s architecture"),
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                       virArchToString(data->arch));
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        return;
    }

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    (driver->free)(data);
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}


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/**
 * cpuNodeData:
 *
 * @arch: CPU architecture
 *
 * Returns CPU data for host CPU or NULL on error.
 */
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virCPUDataPtr
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cpuNodeData(virArch arch)
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{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("arch=%s", virArchToString(arch));
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345
    if ((driver = cpuGetSubDriver(arch)) == NULL)
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        return NULL;

    if (driver->nodeData == NULL) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot get node CPU data for %s architecture"),
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                       virArchToString(arch));
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        return NULL;
    }

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    return driver->nodeData(arch);
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}


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/**
 * cpuGuestData:
 *
 * @host: host CPU definition
 * @guest: guest CPU definition
 * @data: computed guest CPU data
 * @msg: error message describing why the @guest and @host CPUs are considered
 *       incompatible
 *
 * Computes guest CPU data for the @guest CPU definition when run on the @host
 * CPU.
 *
 * Returns VIR_CPU_COMPARE_ERROR on error, VIR_CPU_COMPARE_INCOMPATIBLE when
 * the two CPUs are incompatible (@msg will describe the incompatibility),
 * VIR_CPU_COMPARE_IDENTICAL when the two CPUs are identical,
 * VIR_CPU_COMPARE_SUPERSET when the @guest CPU is a superset of the @host CPU.
 */
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virCPUCompareResult
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cpuGuestData(virCPUDefPtr host,
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             virCPUDefPtr guest,
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             virCPUDataPtr *data,
380
             char **msg)
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{
    struct cpuArchDriver *driver;

384
    VIR_DEBUG("host=%p, guest=%p, data=%p, msg=%p", host, guest, data, msg);
385

386
    if ((driver = cpuGetSubDriver(host->arch)) == NULL)
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        return VIR_CPU_COMPARE_ERROR;

    if (driver->guestData == NULL) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot compute guest CPU data for %s architecture"),
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                       virArchToString(host->arch));
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        return VIR_CPU_COMPARE_ERROR;
    }

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    return driver->guestData(host, guest, data, msg);
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}
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/**
 * cpuBaselineXML:
 *
 * @xmlCPUs: list of host CPU XML descriptions
 * @ncpus: number of CPUs in @xmlCPUs
 * @models: list of CPU models that can be considered for the baseline CPU
 * @nmodels: number of CPU models in @models
 * @flags: bitwise-OR of virConnectBaselineCPUFlags
 *
 * Computes the most feature-rich CPU which is compatible with all given
 * host CPUs. If @models array is NULL, all models supported by libvirt will
 * be considered when computing the baseline CPU model, otherwise the baseline
 * CPU model will be one of the provided CPU @models.
 *
 * If @flags includes VIR_CONNECT_BASELINE_CPU_EXPAND_FEATURES then libvirt
 * will explicitly list all CPU features that are part of the host CPU,
 * without this flag features that are part of the CPU model will not be
 * listed.
 *
 * Returns XML description of the baseline CPU or NULL on error.
 */
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char *
cpuBaselineXML(const char **xmlCPUs,
               unsigned int ncpus,
               const char **models,
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               unsigned int nmodels,
               unsigned int flags)
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{
    xmlDocPtr doc = NULL;
    xmlXPathContextPtr ctxt = NULL;
    virCPUDefPtr *cpus = NULL;
    virCPUDefPtr cpu = NULL;
    char *cpustr;
433
    size_t i;
434

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    VIR_DEBUG("ncpus=%u, nmodels=%u", ncpus, nmodels);
    if (xmlCPUs) {
        for (i = 0; i < ncpus; i++)
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            VIR_DEBUG("xmlCPUs[%zu]=%s", i, NULLSTR(xmlCPUs[i]));
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    }
    if (models) {
        for (i = 0; i < nmodels; i++)
442
            VIR_DEBUG("models[%zu]=%s", i, NULLSTR(models[i]));
443 444
    }

445
    if (xmlCPUs == NULL && ncpus != 0) {
446 447
        virReportError(VIR_ERR_INTERNAL_ERROR,
                       "%s", _("nonzero ncpus doesn't match with NULL xmlCPUs"));
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        return NULL;
    }

    if (ncpus < 1) {
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        virReportError(VIR_ERR_INVALID_ARG, "%s", _("No CPUs given"));
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        return NULL;
    }

    if (VIR_ALLOC_N(cpus, ncpus))
457
        goto error;
458 459

    for (i = 0; i < ncpus; i++) {
460
        if (!(doc = virXMLParseStringCtxt(xmlCPUs[i], _("(CPU_definition)"), &ctxt)))
461 462
            goto error;

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        cpus[i] = virCPUDefParseXML(ctxt->node, ctxt, VIR_CPU_TYPE_HOST);
        if (cpus[i] == NULL)
            goto error;

        xmlXPathFreeContext(ctxt);
        xmlFreeDoc(doc);
        ctxt = NULL;
        doc = NULL;
    }

473
    if (!(cpu = cpuBaseline(cpus, ncpus, models, nmodels, flags)))
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        goto error;

476
    cpustr = virCPUDefFormat(cpu, NULL, false);
477

478
 cleanup:
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    if (cpus) {
        for (i = 0; i < ncpus; i++)
            virCPUDefFree(cpus[i]);
        VIR_FREE(cpus);
    }
    virCPUDefFree(cpu);
    xmlXPathFreeContext(ctxt);
    xmlFreeDoc(doc);

    return cpustr;

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 error:
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    cpustr = NULL;
    goto cleanup;
}


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/**
 * cpuBaseline:
 *
 * @cpus: list of host CPU definitions
 * @ncpus: number of CPUs in @cpus
 * @models: list of CPU models that can be considered for the baseline CPU
 * @nmodels: number of CPU models in @models
 * @flags: bitwise-OR of virConnectBaselineCPUFlags
 *
 * Computes the most feature-rich CPU which is compatible with all given
 * host CPUs. If @models array is NULL, all models supported by libvirt will
 * be considered when computing the baseline CPU model, otherwise the baseline
 * CPU model will be one of the provided CPU @models.
 *
 * If @flags includes VIR_CONNECT_BASELINE_CPU_EXPAND_FEATURES then libvirt
 * will explicitly list all CPU features that are part of the host CPU,
 * without this flag features that are part of the CPU model will not be
 * listed.
 *
 * Returns baseline CPU definition or NULL on error.
 */
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virCPUDefPtr
cpuBaseline(virCPUDefPtr *cpus,
            unsigned int ncpus,
            const char **models,
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            unsigned int nmodels,
            unsigned int flags)
523 524
{
    struct cpuArchDriver *driver;
525
    size_t i;
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    VIR_DEBUG("ncpus=%u, nmodels=%u", ncpus, nmodels);
    if (cpus) {
        for (i = 0; i < ncpus; i++)
530
            VIR_DEBUG("cpus[%zu]=%p", i, cpus[i]);
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    }
    if (models) {
        for (i = 0; i < nmodels; i++)
534
            VIR_DEBUG("models[%zu]=%s", i, NULLSTR(models[i]));
535
    }
536 537

    if (cpus == NULL && ncpus != 0) {
538 539
        virReportError(VIR_ERR_INTERNAL_ERROR,
                       "%s", _("nonzero ncpus doesn't match with NULL cpus"));
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        return NULL;
    }

    if (ncpus < 1) {
544
        virReportError(VIR_ERR_INVALID_ARG, "%s", _("No CPUs given"));
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        return NULL;
    }

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    for (i = 0; i < ncpus; i++) {
        if (!cpus[i]) {
            virReportError(VIR_ERR_INVALID_ARG,
                           _("invalid CPU definition at index %zu"), i);
            return NULL;
        }
        if (!cpus[i]->model) {
            virReportError(VIR_ERR_INVALID_ARG,
                           _("no CPU model specified at index %zu"), i);
            return NULL;
        }
    }

561
    if (models == NULL && nmodels != 0) {
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        virReportError(VIR_ERR_INTERNAL_ERROR,
                       "%s", _("nonzero nmodels doesn't match with NULL models"));
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        return NULL;
    }

    if ((driver = cpuGetSubDriver(cpus[0]->arch)) == NULL)
        return NULL;

    if (driver->baseline == NULL) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot compute baseline CPU of %s architecture"),
573
                       virArchToString(cpus[0]->arch));
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        return NULL;
    }

577
    return driver->baseline(cpus, ncpus, models, nmodels, flags);
578
}
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/**
 * cpuUpdate:
 *
 * @guest: guest CPU definition
 * @host: host CPU definition
 *
 * Updates @guest CPU definition according to @host CPU. This is required to
 * support guest CPU definition which are relative to host CPU, such as CPUs
 * with VIR_CPU_MODE_CUSTOM and optional features or VIR_CPU_MATCH_MINIMUM, or
 * CPUs with non-custom mode (VIR_CPU_MODE_HOST_MODEL,
 * VIR_CPU_MODE_HOST_PASSTHROUGH).
 *
 * Returns 0 on success, -1 on error.
 */
595 596
int
cpuUpdate(virCPUDefPtr guest,
597
          const virCPUDef *host)
598 599 600 601 602 603 604 605 606
{
    struct cpuArchDriver *driver;

    VIR_DEBUG("guest=%p, host=%p", guest, host);

    if ((driver = cpuGetSubDriver(host->arch)) == NULL)
        return -1;

    if (driver->update == NULL) {
607 608
        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot update guest CPU data for %s architecture"),
609
                       virArchToString(host->arch));
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        return -1;
    }

    return driver->update(guest, host);
}
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/**
 * cpuHasFeature:
 *
 * @data: internal CPU representation
 * @feature: feature to be checked for
 *
 * Checks whether @feature is supported by the CPU described by @data.
 *
 * Returns 1 if the feature is supported, 0 if it's not supported, or
 * -1 on error.
 */
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int
629
cpuHasFeature(const virCPUData *data,
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              const char *feature)
{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("data=%p, feature=%s", data, feature);
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    if ((driver = cpuGetSubDriver(data->arch)) == NULL)
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        return -1;

    if (driver->hasFeature == NULL) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot check guest CPU data for %s architecture"),
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                       virArchToString(data->arch));
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        return -1;
    }

    return driver->hasFeature(data, feature);
}
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/**
 * cpuDataFormat:
 *
 * @data: internal CPU representation
 *
 * Formats @data into XML for test purposes.
 *
 * Returns string representation of the XML describing @data or NULL on error.
 */
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char *
cpuDataFormat(const virCPUData *data)
{
    struct cpuArchDriver *driver;

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

    if (!(driver = cpuGetSubDriver(data->arch)))
        return NULL;

    if (!driver->dataFormat) {
        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot format %s CPU data"),
                       virArchToString(data->arch));
        return NULL;
    }

    return driver->dataFormat(data);
}

679 680 681 682 683 684 685 686 687 688

/**
 * cpuDataParse:
 *
 * @xmlStr: XML string produced by cpuDataFormat
 *
 * Parses XML representation of virCPUData structure for test purposes.
 *
 * Returns internal CPU data structure parsed from the XML or NULL on error.
 */
689
virCPUDataPtr
690
cpuDataParse(const char *xmlStr)
691 692
{
    struct cpuArchDriver *driver;
693 694 695 696
    xmlDocPtr xml = NULL;
    xmlXPathContextPtr ctxt = NULL;
    virCPUDataPtr data = NULL;
    char *arch = NULL;
697

698
    VIR_DEBUG("xmlStr=%s", xmlStr);
699

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    if (!(xml = virXMLParseStringCtxt(xmlStr, _("CPU data"), &ctxt))) {
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("cannot parse CPU data"));
        goto cleanup;
    }

    if (!(arch = virXPathString("string(/cpudata/@arch)", ctxt))) {
        virReportError(VIR_ERR_INTERNAL_ERROR, "%s",
                       _("missing CPU data architecture"));
        goto cleanup;
    }

    if (!(driver = cpuGetSubDriverByName(arch)))
        goto cleanup;
714 715 716

    if (!driver->dataParse) {
        virReportError(VIR_ERR_NO_SUPPORT,
717 718
                       _("cannot parse %s CPU data"), arch);
        goto cleanup;
719 720
    }

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    data = driver->dataParse(ctxt);

 cleanup:
    xmlXPathFreeContext(ctxt);
    xmlFreeDoc(xml);
    VIR_FREE(arch);
    return data;
728 729
}

730 731 732 733 734
bool
cpuModelIsAllowed(const char *model,
                  const char **models,
                  unsigned int nmodels)
{
735
    size_t i;
736 737 738 739 740 741 742 743 744 745

    if (!models || !nmodels)
        return true;

    for (i = 0; i < nmodels; i++) {
        if (models[i] && STREQ(models[i], model))
            return true;
    }
    return false;
}
746

747 748 749
/**
 * cpuGetModels:
 *
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 * @arch: CPU architecture
751
 * @models: where to store the NULL-terminated list of supported models
752 753 754 755 756
 *
 * Fetches all CPU models supported by libvirt on @archName.
 *
 * Returns number of supported CPU models or -1 on error.
 */
757
int
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cpuGetModels(virArch arch, char ***models)
759 760 761
{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("arch=%s", virArchToString(arch));
763 764 765 766 767

    driver = cpuGetSubDriver(arch);
    if (driver == NULL) {
        virReportError(VIR_ERR_INVALID_ARG,
                       _("cannot find a driver for the architecture %s"),
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Jiri Denemark 已提交
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                       virArchToString(arch));
769
        return -1;
770 771
    }

772 773 774 775 776 777
    if (!driver->getModels) {
        virReportError(VIR_ERR_NO_SUPPORT,
                       _("CPU driver for %s has no CPU model support"),
                       virArchToString(arch));
        return -1;
    }
778

779
    return driver->getModels(models);
780
}