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Signed-off-by: Kristina Hanicova <khanicov@redhat.com> Reviewed-by: Ján Tomko <jtomko@redhat.com> Signed-off-by: Ján Tomko <jtomko@redhat.com>
339 lines
10 KiB
ReStructuredText
339 lines
10 KiB
ReStructuredText
QEMU Driver Threading: The Rules
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================================
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.. contents::
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This document describes how thread safety is ensured throughout
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the QEMU driver. The criteria for this model are:
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- Objects must never be exclusively locked for any prolonged time
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- Code which sleeps must be able to time out after suitable period
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- Must be safe against dispatch of asynchronous events from monitor
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Basic locking primitives
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------------------------
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There are a number of locks on various objects
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``virQEMUDriver``
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The ``qemu_conf.h`` file has inline comments describing the locking
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needs for each field. Any field marked immutable, self-locking
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can be accessed without the driver lock. For other fields there
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are typically helper APIs in ``qemu_conf.c`` that provide serialized
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access to the data. No code outside ``qemu_conf.c`` should ever
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acquire this lock
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``virDomainObj``
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Will be locked and the reference counter will be increased after calling
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any of the ``virDomainObjListFindBy{ID,Name,UUID}`` methods. The preferred way
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of decrementing the reference counter and unlocking the domain is using the
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``virDomainObjEndAPI()`` function.
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Lock must be held when changing/reading any variable in the ``virDomainObj``
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This lock must not be held for anything which sleeps/waits (i.e. monitor
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commands).
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``qemuMonitorPrivatePtr`` job conditions
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Since ``virDomainObj`` lock must not be held during sleeps, the job
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conditions provide additional protection for code making updates.
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QEMU driver uses three kinds of job conditions: asynchronous, agent
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and normal.
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Asynchronous job condition is used for long running jobs (such as
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migration) that consist of several monitor commands and it is
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desirable to allow calling a limited set of other monitor commands
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while such job is running. This allows clients to, e.g., query
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statistical data, cancel the job, or change parameters of the job.
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Normal job condition is used by all other jobs to get exclusive
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access to the monitor and also by every monitor command issued by an
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asynchronous job. When acquiring normal job condition, the job must
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specify what kind of action it is about to take and this is checked
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against the allowed set of jobs in case an asynchronous job is
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running. If the job is incompatible with current asynchronous job,
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it needs to wait until the asynchronous job ends and try to acquire
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the job again.
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Agent job condition is then used when thread wishes to talk to qemu
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agent monitor. It is possible to acquire just agent job
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(``virDomainObjBeginAgentJob``), or only normal job (``virDomainObjBeginJob``)
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but not both at the same time. Holding an agent job and a normal job would
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allow an unresponsive or malicious agent to block normal libvirt API and
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potentially result in a denial of service. Which type of job to grab
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depends whether caller wishes to communicate only with agent socket, or
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only with qemu monitor socket.
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Immediately after acquiring the ``virDomainObj`` lock, any method
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which intends to update state must acquire asynchronous, normal or
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agent job . The ``virDomainObj`` lock is released while blocking on
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these condition variables. Once the job condition is acquired, a
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method can safely release the ``virDomainObj`` lock whenever it hits
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a piece of code which may sleep/wait, and re-acquire it after the
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sleep/wait. Whenever an asynchronous job wants to talk to the
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monitor, it needs to acquire nested job (a special kind of normal
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job) to obtain exclusive access to the monitor.
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Since the ``virDomainObj`` lock was dropped while waiting for the
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job condition, it is possible that the domain is no longer active
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when the condition is finally obtained. The monitor lock is only
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safe to grab after verifying that the domain is still active.
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``qemuMonitor`` mutex
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Lock to be used when invoking any monitor command to ensure safety
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wrt any asynchronous events that may be dispatched from the monitor.
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It should be acquired before running a command.
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The job condition *MUST* be held before acquiring the monitor lock
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The ``virDomainObj`` lock *MUST* be held before acquiring the monitor
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lock.
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The ``virDomainObj`` lock *MUST* then be released when invoking the
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monitor command.
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Helper methods
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--------------
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To lock the ``virDomainObj``
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``virObjectLock()``
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- Acquires the ``virDomainObj`` lock
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``virObjectUnlock()``
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- Releases the ``virDomainObj`` lock
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To acquire the normal job condition
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``virDomainObjBeginJob()``
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- Waits until the job is compatible with current async job or no
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async job is running
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- Waits for ``job.cond`` condition ``job.active != 0`` using ``virDomainObj``
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mutex
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- Rechecks if the job is still compatible and repeats waiting if it
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isn't
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- Sets ``job.active`` to the job type
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``virDomainObjEndJob()``
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- Sets job.active to 0
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- Signals on job.cond condition
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To acquire the agent job condition
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``virDomainObjBeginAgentJob()``
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- Waits until there is no other agent job set
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- Sets ``job.agentActive`` to the job type
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``virDomainObjEndAgentJob()``
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- Sets ``job.agentActive`` to 0
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- Signals on ``job.cond`` condition
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To acquire the asynchronous job condition
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``virDomainObjBeginAsyncJob()``
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- Waits until no async job is running
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- Waits for ``job.cond`` condition ``job.active != 0`` using ``virDomainObj``
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mutex
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- Rechecks if any async job was started while waiting on ``job.cond``
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and repeats waiting in that case
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- Sets ``job.asyncJob`` to the asynchronous job type
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``virDomainObjEndAsyncJob()``
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- Sets ``job.asyncJob`` to 0
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- Broadcasts on ``job.asyncCond`` condition
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To acquire the QEMU monitor lock
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``qemuDomainObjEnterMonitor()``
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- Acquires the ``qemuMonitorObj`` lock
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- Releases the ``virDomainObj`` lock
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``qemuDomainObjExitMonitor()``
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- Releases the ``qemuMonitorObj`` lock
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- Acquires the ``virDomainObj`` lock
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These functions must not be used by an asynchronous job.
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To acquire the QEMU monitor lock as part of an asynchronous job
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``qemuDomainObjEnterMonitorAsync()``
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- Validates that the right async job is still running
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- Acquires the ``qemuMonitorObj`` lock
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- Releases the ``virDomainObj`` lock
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- Validates that the VM is still active
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qemuDomainObjExitMonitor()
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- Releases the ``qemuMonitorObj`` lock
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- Acquires the ``virDomainObj`` lock
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These functions are for use inside an asynchronous job; the caller
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must check for a return of -1 (VM not running, so nothing to exit).
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Helper functions may also call this with ``VIR_ASYNC_JOB_NONE`` when
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used from a sync job (such as when first starting a domain).
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To keep a domain alive while waiting on a remote command
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``qemuDomainObjEnterRemote()``
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- Releases the ``virDomainObj`` lock
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``qemuDomainObjExitRemote()``
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- Acquires the ``virDomainObj`` lock
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Design patterns
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---------------
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* Accessing something directly to do with a ``virDomainObj``::
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virDomainObj *obj;
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obj = qemuDomObjFromDomain(dom);
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...do work...
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virDomainObjEndAPI(&obj);
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* Updating something directly to do with a ``virDomainObj``::
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virDomainObj *obj;
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obj = qemuDomObjFromDomain(dom);
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virDomainObjBeginJob(obj, VIR_JOB_TYPE);
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...do work...
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virDomainObjEndJob(obj);
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virDomainObjEndAPI(&obj);
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* Invoking a monitor command on a ``virDomainObj``::
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virDomainObj *obj;
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qemuDomainObjPrivate *priv;
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obj = qemuDomObjFromDomain(dom);
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virDomainObjBeginJob(obj, VIR_JOB_TYPE);
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...do prep work...
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if (virDomainObjIsActive(vm)) {
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qemuDomainObjEnterMonitor(obj);
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qemuMonitorXXXX(priv->mon);
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qemuDomainObjExitMonitor(obj);
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}
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...do final work...
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virDomainObjEndJob(obj);
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virDomainObjEndAPI(&obj);
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* Invoking an agent command on a ``virDomainObj``::
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virDomainObj *obj;
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qemuAgent *agent;
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obj = qemuDomObjFromDomain(dom);
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virDomainObjBeginAgentJob(obj, VIR_AGENT_JOB_TYPE);
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...do prep work...
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if (!qemuDomainAgentAvailable(obj, true))
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goto cleanup;
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agent = qemuDomainObjEnterAgent(obj);
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qemuAgentXXXX(agent, ..);
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qemuDomainObjExitAgent(obj, agent);
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...do final work...
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virDomainObjEndAgentJob(obj);
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virDomainObjEndAPI(&obj);
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* Running asynchronous job::
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virDomainObj *obj;
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qemuDomainObjPrivate *priv;
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obj = qemuDomObjFromDomain(dom);
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virDomainObjBeginAsyncJob(obj, VIR_ASYNC_JOB_TYPE);
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qemuDomainObjSetAsyncJobMask(obj, allowedJobs);
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...do prep work...
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if (qemuDomainObjEnterMonitorAsync(driver, obj,
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VIR_ASYNC_JOB_TYPE) < 0) {
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/* domain died in the meantime */
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goto error;
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}
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...start qemu job...
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qemuDomainObjExitMonitor(obj);
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while (!finished) {
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if (qemuDomainObjEnterMonitorAsync(driver, obj,
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VIR_ASYNC_JOB_TYPE) < 0) {
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/* domain died in the meantime */
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goto error;
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}
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...monitor job progress...
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qemuDomainObjExitMonitor(obj);
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virObjectUnlock(obj);
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sleep(aWhile);
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virObjectLock(obj);
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}
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...do final work...
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virDomainObjEndAsyncJob(obj);
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virDomainObjEndAPI(&obj);
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* Coordinating with a remote server for migration::
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virDomainObj *obj;
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qemuDomainObjPrivate *priv;
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obj = qemuDomObjFromDomain(dom);
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virDomainObjBeginAsyncJob(obj, VIR_ASYNC_JOB_TYPE);
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...do prep work...
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if (virDomainObjIsActive(vm)) {
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qemuDomainObjEnterRemote(obj);
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...communicate with remote...
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qemuDomainObjExitRemote(obj);
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/* domain may have been stopped while we were talking to remote */
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if (!virDomainObjIsActive(vm)) {
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qemuReportError(VIR_ERR_INTERNAL_ERROR, "%s",
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_("guest unexpectedly quit"));
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}
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}
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...do final work...
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virDomainObjEndAsyncJob(obj);
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virDomainObjEndAPI(&obj);
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