cpu.c 29.1 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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/**
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 * virCPUCompareXML:
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 *
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 * @arch: CPU architecture
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 * @host: host CPU definition
 * @xml: XML description of either guest or host CPU to be compared with @host
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 * @failIncompatible: return an error instead of VIR_CPU_COMPARE_INCOMPATIBLE
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 *
 * 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
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 * the @host CPU. If @failIncompatible is true, the function will return
 * VIR_CPU_COMPARE_ERROR (and set VIR_ERR_CPU_INCOMPATIBLE error) when the
 * two CPUs are incompatible.
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 */
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virCPUCompareResult
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virCPUCompareXML(virArch arch,
                 virCPUDefPtr host,
                 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("arch=%s, host=%p, xml=%s",
              virArchToString(arch), host, NULLSTR(xml));

    if (!xml) {
        virReportError(VIR_ERR_INVALID_ARG, "%s", _("missing CPU definition"));
        goto cleanup;
    }
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    if (!(doc = virXMLParseStringCtxt(xml, _("(CPU_definition)"), &ctxt)))
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        goto cleanup;
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    if (!(cpu = virCPUDefParseXML(ctxt->node, ctxt, VIR_CPU_TYPE_AUTO)))
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        goto cleanup;

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

    return ret;
}


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/**
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 * virCPUCompare:
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 *
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 * @arch: CPU architecture
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 * @host: host CPU definition
 * @cpu: either guest or host CPU to be compared with @host
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 * @failIncompatible: return an error instead of VIR_CPU_COMPARE_INCOMPATIBLE
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 *
 * 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
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 * the @host CPU. If @failIncompatible is true, the function will return
 * VIR_CPU_COMPARE_ERROR (and set VIR_ERR_CPU_INCOMPATIBLE error) when the
 * two CPUs are incompatible.
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 */
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virCPUCompareResult
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virCPUCompare(virArch arch,
              virCPUDefPtr host,
              virCPUDefPtr cpu,
              bool failIncompatible)
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{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("arch=%s, host=%p, cpu=%p",
              virArchToString(arch), host, cpu);
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    if (!(driver = cpuGetSubDriver(arch)))
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        return VIR_CPU_COMPARE_ERROR;

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    if (!driver->compare) {
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        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot compare CPUs of %s architecture"),
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                       virArchToString(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(data->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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/**
 * virCPUDataNew:
 *
 * Returns an allocated memory for virCPUData or NULL on error.
 */
virCPUDataPtr
virCPUDataNew(virArch arch)
{
    virCPUDataPtr data;

    if (VIR_ALLOC(data) < 0)
        return NULL;

    data->arch = arch;

    return data;
}


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

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

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    if ((driver = cpuGetSubDriver(data->arch)) && driver->dataFree)
        driver->dataFree(data);
    else
        VIR_FREE(data);
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}


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/**
360
 * virCPUGetHost:
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 *
 * @arch: CPU architecture
363
 * @type: requested type of the CPU
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 * @nodeInfo: simplified CPU topology (optional)
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 * @models: list of CPU models that can be considered for host CPU
 * @nmodels: number of CPU models in @models
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 *
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 * Create CPU definition describing the host's CPU.
 *
 * The @type (either VIR_CPU_TYPE_HOST or VIR_CPU_TYPE_GUEST) specifies what
 * type of CPU definition should be created. Specifically, VIR_CPU_TYPE_HOST
 * CPUs may contain only features without any policy attribute. Requesting
 * VIR_CPU_TYPE_GUEST provides better results because the CPU is allowed to
 * contain disabled features.
 *
 * If @nodeInfo is not NULL (which is only allowed for VIR_CPU_TYPE_HOST CPUs),
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 * the CPU definition will have topology (sockets, cores, threads) filled in
 * according to the content of @nodeInfo. The function fails only if @nodeInfo
 * was not passed in and the assigned CPU driver was not able to detect the
 * host CPU model. In other words, a CPU definition containing just the
 * topology is a successful result even if detecting the host CPU model fails.
 *
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 * It possible to limit the CPU model which may appear in the created CPU
 * definition by passing non-NULL @models list. This is useful when requesting
 * a CPU model usable on a specific hypervisor. If @models is NULL, any CPU
 * model known to libvirt may appear in the result.
 *
388
 * Returns host CPU definition or NULL on error.
389
 */
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virCPUDefPtr
virCPUGetHost(virArch arch,
392
              virCPUType type,
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              virNodeInfoPtr nodeInfo,
              const char **models,
              unsigned int nmodels)
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{
    struct cpuArchDriver *driver;
398
    virCPUDefPtr cpu = NULL;
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    VIR_DEBUG("arch=%s, type=%s, nodeInfo=%p, models=%p, nmodels=%u",
              virArchToString(arch), virCPUTypeToString(type), nodeInfo,
              models, nmodels);
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    if (!(driver = cpuGetSubDriver(arch)))
        return NULL;

    if (VIR_ALLOC(cpu) < 0)
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        return NULL;

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    switch (type) {
    case VIR_CPU_TYPE_HOST:
        cpu->arch = arch;
        cpu->type = type;
        break;

    case VIR_CPU_TYPE_GUEST:
        if (nodeInfo) {
            virReportError(VIR_ERR_INVALID_ARG,
                           _("cannot set topology for CPU type '%s'"),
                           virCPUTypeToString(type));
            goto error;
        }
        cpu->type = type;
        break;

    case VIR_CPU_TYPE_AUTO:
    case VIR_CPU_TYPE_LAST:
        virReportError(VIR_ERR_INVALID_ARG,
                       _("unsupported CPU type: %s"),
                       virCPUTypeToString(type));
        goto error;
    }
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    if (nodeInfo) {
        cpu->sockets = nodeInfo->sockets;
        cpu->cores = nodeInfo->cores;
        cpu->threads = nodeInfo->threads;
    }

    /* Try to get the host CPU model, but don't really fail if nodeInfo is
     * filled in.
     */
    if (driver->getHost) {
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        if (driver->getHost(cpu, models, nmodels) < 0 &&
            !nodeInfo)
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            goto error;
    } else if (nodeInfo) {
        VIR_DEBUG("cannot detect host CPU model for %s architecture",
                  virArchToString(arch));
    } else {
451
        virReportError(VIR_ERR_NO_SUPPORT,
452
                       _("cannot detect host CPU model for %s architecture"),
453
                       virArchToString(arch));
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        goto error;
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    }

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    return cpu;

 error:
    virCPUDefFree(cpu);
    return NULL;
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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;
498
    size_t i;
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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++)
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            VIR_DEBUG("models[%zu]=%s", i, NULLSTR(models[i]));
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    }

510
    if (xmlCPUs == NULL && ncpus != 0) {
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        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))
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        goto error;
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    for (i = 0; i < ncpus; i++) {
525
        if (!(doc = virXMLParseStringCtxt(xmlCPUs[i], _("(CPU_definition)"), &ctxt)))
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            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;
    }

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

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    cpustr = virCPUDefFormat(cpu, NULL, false);
542

543
 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)
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{
    struct cpuArchDriver *driver;
590
    size_t i;
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    VIR_DEBUG("ncpus=%u, nmodels=%u", ncpus, nmodels);
    if (cpus) {
        for (i = 0; i < ncpus; i++)
595
            VIR_DEBUG("cpus[%zu]=%p", i, cpus[i]);
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    }
    if (models) {
        for (i = 0; i < nmodels; i++)
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            VIR_DEBUG("models[%zu]=%s", i, NULLSTR(models[i]));
600
    }
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    if (cpus == NULL && ncpus != 0) {
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        virReportError(VIR_ERR_INTERNAL_ERROR,
                       "%s", _("nonzero ncpus doesn't match with NULL cpus"));
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        return NULL;
    }

    if (ncpus < 1) {
609
        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;
        }
    }

626
    if (models == NULL && nmodels != 0) {
627 628
        virReportError(VIR_ERR_INTERNAL_ERROR,
                       "%s", _("nonzero nmodels doesn't match with NULL models"));
629 630 631 632 633 634 635
        return NULL;
    }

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

    if (driver->baseline == NULL) {
636 637
        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot compute baseline CPU of %s architecture"),
638
                       virArchToString(cpus[0]->arch));
639 640 641
        return NULL;
    }

642
    return driver->baseline(cpus, ncpus, models, nmodels, flags);
643
}
644 645


646
/**
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 * virCPUUpdate:
648
 *
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 * @arch: CPU architecture
 * @guest: guest CPU definition to be updated
651 652 653
 * @host: host CPU definition
 *
 * Updates @guest CPU definition according to @host CPU. This is required to
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 * support guest CPU definitions specified relatively to host CPU, such as
 * CPUs with VIR_CPU_MODE_CUSTOM and optional features or
 * VIR_CPU_MATCH_MINIMUM, or CPUs with VIR_CPU_MODE_HOST_MODEL.
 * When the guest CPU was not specified relatively, the function does nothing
 * and returns success.
659 660 661
 *
 * Returns 0 on success, -1 on error.
 */
662
int
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virCPUUpdate(virArch arch,
             virCPUDefPtr guest,
             const virCPUDef *host)
666 667 668
{
    struct cpuArchDriver *driver;

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    VIR_DEBUG("arch=%s, guest=%p mode=%s model=%s, host=%p model=%s",
              virArchToString(arch), guest, virCPUModeTypeToString(guest->mode),
              NULLSTR(guest->model), host, NULLSTR(host ? host->model : NULL));
672

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    if (!(driver = cpuGetSubDriver(arch)))
674 675
        return -1;

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    if (guest->mode == VIR_CPU_MODE_HOST_PASSTHROUGH)
        return 0;

    if (guest->mode == VIR_CPU_MODE_CUSTOM &&
        guest->match != VIR_CPU_MATCH_MINIMUM) {
        size_t i;
        bool optional = false;

        for (i = 0; i < guest->nfeatures; i++) {
            if (guest->features[i].policy == VIR_CPU_FEATURE_OPTIONAL) {
                optional = true;
                break;
            }
        }

        if (!optional)
            return 0;
    }

    /* We get here if guest CPU is either
     *  - host-model
     *  - custom with minimum match
     *  - custom with optional features
     */
    if (!driver->update) {
701
        virReportError(VIR_ERR_NO_SUPPORT,
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                       _("cannot update guest CPU for %s architecture"),
                       virArchToString(arch));
704 705 706
        return -1;
    }

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    if (driver->update(guest, host) < 0)
        return -1;

    VIR_DEBUG("model=%s", NULLSTR(guest->model));
    return 0;
712
}
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714

715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758
/**
 * virCPUUpdateLive:
 *
 * @arch: CPU architecture
 * @cpu: guest CPU definition to be updated
 * @dataEnabled: CPU data of the virtual CPU
 * @dataDisabled: CPU data with features requested by @cpu but disabled by the
 *                hypervisor
 *
 * Update custom mode CPU according to the virtual CPU created by the
 * hypervisor.
 *
 * Returns -1 on error,
 *          0 when the CPU was successfully updated,
 *          1 when the operation does not make sense on the CPU or it is not
 *            supported for the given architecture.
 */
int
virCPUUpdateLive(virArch arch,
                 virCPUDefPtr cpu,
                 virCPUDataPtr dataEnabled,
                 virCPUDataPtr dataDisabled)
{
    struct cpuArchDriver *driver;

    VIR_DEBUG("arch=%s, cpu=%p, dataEnabled=%p, dataDisabled=%p",
              virArchToString(arch), cpu, dataEnabled, dataDisabled);

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

    if (!driver->updateLive)
        return 1;

    if (cpu->mode != VIR_CPU_MODE_CUSTOM)
        return 1;

    if (driver->updateLive(cpu, dataEnabled, dataDisabled) < 0)
        return -1;

    return 0;
}


759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794
/**
 * virCPUCheckFeature:
 *
 * @arch: CPU architecture
 * @cpu: CPU definition
 * @feature: feature to be checked for
 *
 * Checks whether @feature is supported by the CPU described by @cpu.
 *
 * Returns 1 if the feature is supported, 0 if it's not supported, or
 * -1 on error.
 */
int
virCPUCheckFeature(virArch arch,
                   const virCPUDef *cpu,
                   const char *feature)
{
    struct cpuArchDriver *driver;

    VIR_DEBUG("arch=%s, cpu=%p, feature=%s",
              virArchToString(arch), cpu, feature);

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

    if (!driver->checkFeature) {
        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot check guest CPU feature for %s architecture"),
                       virArchToString(arch));
        return -1;
    }

    return driver->checkFeature(cpu, feature);
}


795
/**
796
 * virCPUDataCheckFeature:
797
 *
798
 * @data: CPU data
799 800 801 802 803 804 805
 * @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
807 808
virCPUDataCheckFeature(const virCPUData *data,
                       const char *feature)
D
Daniel P. Berrange 已提交
809 810 811
{
    struct cpuArchDriver *driver;

812 813
    VIR_DEBUG("arch=%s, data=%p, feature=%s",
              virArchToString(data->arch), data, feature);
D
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814

815
    if (!(driver = cpuGetSubDriver(data->arch)))
D
Daniel P. Berrange 已提交
816 817
        return -1;

818
    if (!driver->dataCheckFeature) {
819
        virReportError(VIR_ERR_NO_SUPPORT,
820
                       _("cannot check guest CPU feature for %s architecture"),
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                       virArchToString(data->arch));
D
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822 823 824
        return -1;
    }

825
    return driver->dataCheckFeature(data, feature);
D
Daniel P. Berrange 已提交
826
}
827

828 829

/**
J
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830
 * virCPUDataFormat:
831 832 833 834 835 836 837
 *
 * @data: internal CPU representation
 *
 * Formats @data into XML for test purposes.
 *
 * Returns string representation of the XML describing @data or NULL on error.
 */
838
char *
J
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839
virCPUDataFormat(const virCPUData *data)
840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857
{
    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);
}

858 859

/**
J
Jiri Denemark 已提交
860
 * virCPUDataParse:
861
 *
J
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862
 * @xmlStr: XML string produced by virCPUDataFormat
863 864 865 866 867
 *
 * Parses XML representation of virCPUData structure for test purposes.
 *
 * Returns internal CPU data structure parsed from the XML or NULL on error.
 */
868
virCPUDataPtr
J
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869
virCPUDataParse(const char *xmlStr)
870 871
{
    struct cpuArchDriver *driver;
872 873 874 875
    xmlDocPtr xml = NULL;
    xmlXPathContextPtr ctxt = NULL;
    virCPUDataPtr data = NULL;
    char *arch = NULL;
876

877
    VIR_DEBUG("xmlStr=%s", xmlStr);
878

879 880 881 882 883 884 885 886 887 888 889 890 891 892
    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;
893 894 895

    if (!driver->dataParse) {
        virReportError(VIR_ERR_NO_SUPPORT,
896 897
                       _("cannot parse %s CPU data"), arch);
        goto cleanup;
898 899
    }

900 901 902 903 904 905 906
    data = driver->dataParse(ctxt);

 cleanup:
    xmlXPathFreeContext(ctxt);
    xmlFreeDoc(xml);
    VIR_FREE(arch);
    return data;
907 908
}

909 910 911 912 913 914 915 916 917 918 919 920

/** virCPUModelIsAllowed:
 *
 * @model: CPU model to be checked
 * @models: list of supported CPU models
 * @nmodels: number of models in @models
 *
 * Checks whether @model can be found in the list of supported @models.
 * If @models is empty, all models are supported.
 *
 * Returns true if @model is supported, false otherwise.
 */
921
bool
922 923 924
virCPUModelIsAllowed(const char *model,
                     const char **models,
                     unsigned int nmodels)
925
{
926
    size_t i;
927 928 929 930 931 932 933 934 935 936

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

    for (i = 0; i < nmodels; i++) {
        if (models[i] && STREQ(models[i], model))
            return true;
    }
    return false;
}
937

938

939
/**
J
Jiri Denemark 已提交
940
 * virCPUGetModels:
941
 *
J
Jiri Denemark 已提交
942
 * @arch: CPU architecture
943
 * @models: where to store the NULL-terminated list of supported models
944
 *
945 946 947 948
 * Fetches all CPU models supported by libvirt on @archName. If there are
 * no restrictions on CPU models on @archName (i.e., the CPU model is just
 * passed directly to a hypervisor), this function returns 0 and sets
 * @models to NULL.
949
 *
950 951
 * Returns number of supported CPU models, 0 if any CPU model is supported,
 * or -1 on error.
952
 */
953
int
J
Jiri Denemark 已提交
954
virCPUGetModels(virArch arch, char ***models)
955 956 957
{
    struct cpuArchDriver *driver;

J
Jiri Denemark 已提交
958
    VIR_DEBUG("arch=%s", virArchToString(arch));
959

960
    if (!(driver = cpuGetSubDriver(arch)))
961
        return -1;
962

963
    if (!driver->getModels) {
964 965 966
        if (models)
            *models = NULL;
        return 0;
967
    }
968

969
    return driver->getModels(models);
970
}
J
Jiri Denemark 已提交
971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991


/**
 * virCPUTranslate:
 *
 * @arch: CPU architecture
 * @cpu: CPU definition to be translated
 * @models: NULL-terminated list of allowed CPU models (NULL if all are allowed)
 * @nmodels: number of CPU models in @models
 *
 * Translates @cpu model (if allowed by @cpu->fallback) to a closest CPU model
 * from @models list.
 *
 * The function does nothing (and returns 0) if @cpu does not have to be
 * translated.
 *
 * Returns -1 on error, 0 on success.
 */
int
virCPUTranslate(virArch arch,
                virCPUDefPtr cpu,
992
                const char **models,
J
Jiri Denemark 已提交
993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006
                unsigned int nmodels)
{
    struct cpuArchDriver *driver;

    VIR_DEBUG("arch=%s, cpu=%p, model=%s, models=%p, nmodels=%u",
              virArchToString(arch), cpu, NULLSTR(cpu->model), models, nmodels);

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

    if (cpu->mode == VIR_CPU_MODE_HOST_MODEL ||
        cpu->mode == VIR_CPU_MODE_HOST_PASSTHROUGH)
        return 0;

1007
    if (virCPUModelIsAllowed(cpu->model, models, nmodels))
J
Jiri Denemark 已提交
1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023
        return 0;

    if (cpu->fallback != VIR_CPU_FALLBACK_ALLOW) {
        virReportError(VIR_ERR_CONFIG_UNSUPPORTED,
                       _("CPU model %s is not supported by hypervisor"),
                       cpu->model);
        return -1;
    }

    if (!driver->translate) {
        virReportError(VIR_ERR_NO_SUPPORT,
                       _("cannot translate CPU model %s to a supported model"),
                       cpu->model);
        return -1;
    }

1024
    if (driver->translate(cpu, models, nmodels) < 0)
J
Jiri Denemark 已提交
1025 1026 1027 1028 1029
        return -1;

    VIR_DEBUG("model=%s", NULLSTR(cpu->model));
    return 0;
}
1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064


/**
 * virCPUConvertLegacy:
 *
 * @arch: CPU architecture
 * @cpu: CPU definition to be converted
 *
 * Convert legacy CPU definition into one that the corresponding cpu driver
 * will be able to work with. Currently this is only implemented by the PPC
 * driver, which needs to convert legacy POWERx_v* names into POWERx.
 *
 * Returns -1 on error, 0 on success.
 */
int
virCPUConvertLegacy(virArch arch,
                    virCPUDefPtr cpu)
{
    struct cpuArchDriver *driver;

    VIR_DEBUG("arch=%s, cpu=%p, model=%s",
              virArchToString(arch), cpu, NULLSTR(cpu->model));

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

    if (!driver->convertLegacy)
        return 0;

    if (driver->convertLegacy(cpu) < 0)
        return -1;

    VIR_DEBUG("model=%s", NULLSTR(cpu->model));
    return 0;
}