job.c: make job_mutex and job_lock/unlock() public
job mutex will be used to protect the job struct elements and list, replacing AioContext locks. Right now use a shared lock for all jobs, in order to keep things simple. Once the AioContext lock is gone, we can introduce per-job locks. To simplify the switch from aiocontext to job lock, introduce *nop* lock/unlock functions and macros. We want to always call job_lock/unlock outside the AioContext locks, and not vice-versa, otherwise we might get a deadlock. This is not straightforward to do, and that's why we start with nop functions. Once everything is protected by job_lock/unlock, we can change the nop into an actual mutex and remove the aiocontext lock. Since job_mutex is already being used, add static real_job_{lock/unlock} for the existing usage. Signed-off-by: Emanuele Giuseppe Esposito <eesposit@redhat.com> Reviewed-by: Stefan Hajnoczi <stefanha@redhat.com> Reviewed-by: Vladimir Sementsov-Ogievskiy <vsementsov@yandex-team.ru> Message-Id: <20220926093214.506243-2-eesposit@redhat.com> Signed-off-by: Kevin Wolf <kwolf@redhat.com>
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@ -303,6 +303,30 @@ typedef enum JobCreateFlags {
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JOB_MANUAL_DISMISS = 0x04,
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} JobCreateFlags;
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extern QemuMutex job_mutex;
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#define JOB_LOCK_GUARD() /* QEMU_LOCK_GUARD(&job_mutex) */
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#define WITH_JOB_LOCK_GUARD() /* WITH_QEMU_LOCK_GUARD(&job_mutex) */
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/**
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* job_lock:
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*
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* Take the mutex protecting the list of jobs and their status.
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* Most functions called by the monitor need to call job_lock
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* and job_unlock manually. On the other hand, function called
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* by the block jobs themselves and by the block layer will take the
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* lock for you.
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*/
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void job_lock(void);
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/**
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* job_unlock:
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*
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* Release the mutex protecting the list of jobs and their status.
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*/
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void job_unlock(void);
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/**
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* Allocate and return a new job transaction. Jobs can be added to the
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* transaction using job_txn_add_job().
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35
job.c
35
job.c
@ -32,6 +32,12 @@
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#include "trace/trace-root.h"
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#include "qapi/qapi-events-job.h"
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/*
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* job_mutex protects the jobs list, but also makes the
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* struct job fields thread-safe.
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*/
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QemuMutex job_mutex;
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static QLIST_HEAD(, Job) jobs = QLIST_HEAD_INITIALIZER(jobs);
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/* Job State Transition Table */
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@ -74,17 +80,22 @@ struct JobTxn {
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int refcnt;
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};
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/* Right now, this mutex is only needed to synchronize accesses to job->busy
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* and job->sleep_timer, such as concurrent calls to job_do_yield and
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* job_enter. */
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static QemuMutex job_mutex;
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void job_lock(void)
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{
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/* nop */
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}
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static void job_lock(void)
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void job_unlock(void)
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{
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/* nop */
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}
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static void real_job_lock(void)
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{
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qemu_mutex_lock(&job_mutex);
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}
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static void job_unlock(void)
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static void real_job_unlock(void)
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{
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qemu_mutex_unlock(&job_mutex);
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}
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@ -450,21 +461,21 @@ void job_enter_cond(Job *job, bool(*fn)(Job *job))
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return;
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}
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job_lock();
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real_job_lock();
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if (job->busy) {
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job_unlock();
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real_job_unlock();
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return;
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}
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if (fn && !fn(job)) {
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job_unlock();
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real_job_unlock();
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return;
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}
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assert(!job->deferred_to_main_loop);
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timer_del(&job->sleep_timer);
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job->busy = true;
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job_unlock();
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real_job_unlock();
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aio_co_enter(job->aio_context, job->co);
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}
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@ -481,13 +492,13 @@ void job_enter(Job *job)
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* called explicitly. */
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static void coroutine_fn job_do_yield(Job *job, uint64_t ns)
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{
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job_lock();
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real_job_lock();
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if (ns != -1) {
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timer_mod(&job->sleep_timer, ns);
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}
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job->busy = false;
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job_event_idle(job);
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job_unlock();
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real_job_unlock();
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qemu_coroutine_yield();
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/* Set by job_enter_cond() before re-entering the coroutine. */
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