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block, bfq: deschedule empty bfq_queues not referred by any process
Since commit3726112ec7
("block, bfq: re-schedule empty queues if they deserve I/O plugging"), to prevent the service guarantees of a bfq_queue from being violated, the bfq_queue may be left busy, i.e., scheduled for service, even if empty (see comments in __bfq_bfqq_expire() for details). But, if no process will send requests to the bfq_queue any longer, then there is no point in keeping the bfq_queue scheduled for service. In addition, keeping the bfq_queue scheduled for service, but with no process reference any longer, may cause the bfq_queue to be freed when descheduled from service. But this is assumed to never happen, and causes a UAF if it happens. This, in turn, caused crashes [1, 2]. This commit fixes this issue by descheduling an empty bfq_queue when it remains with not process reference. [1] https://bugzilla.redhat.com/show_bug.cgi?id=1767539 [2] https://bugzilla.kernel.org/show_bug.cgi?id=205447 Fixes:3726112ec7
("block, bfq: re-schedule empty queues if they deserve I/O plugging") Reported-by: Chris Evich <cevich@redhat.com> Reported-by: Patrick Dung <patdung100@gmail.com> Reported-by: Thorsten Schubert <tschubert@bafh.org> Tested-by: Thorsten Schubert <tschubert@bafh.org> Tested-by: Oleksandr Natalenko <oleksandr@natalenko.name> Signed-off-by: Paolo Valente <paolo.valente@linaro.org> Signed-off-by: Jens Axboe <axboe@kernel.dk>
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5e559561a8
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@ -2713,6 +2713,28 @@ static void bfq_bfqq_save_state(struct bfq_queue *bfqq)
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}
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}
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static
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void bfq_release_process_ref(struct bfq_data *bfqd, struct bfq_queue *bfqq)
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{
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/*
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* To prevent bfqq's service guarantees from being violated,
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* bfqq may be left busy, i.e., queued for service, even if
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* empty (see comments in __bfq_bfqq_expire() for
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* details). But, if no process will send requests to bfqq any
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* longer, then there is no point in keeping bfqq queued for
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* service. In addition, keeping bfqq queued for service, but
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* with no process ref any longer, may have caused bfqq to be
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* freed when dequeued from service. But this is assumed to
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* never happen.
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*/
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if (bfq_bfqq_busy(bfqq) && RB_EMPTY_ROOT(&bfqq->sort_list) &&
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bfqq != bfqd->in_service_queue)
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bfq_del_bfqq_busy(bfqd, bfqq, false);
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bfq_put_queue(bfqq);
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}
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static void
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bfq_merge_bfqqs(struct bfq_data *bfqd, struct bfq_io_cq *bic,
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struct bfq_queue *bfqq, struct bfq_queue *new_bfqq)
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@ -2783,8 +2805,7 @@ bfq_merge_bfqqs(struct bfq_data *bfqd, struct bfq_io_cq *bic,
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*/
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new_bfqq->pid = -1;
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bfqq->bic = NULL;
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/* release process reference to bfqq */
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bfq_put_queue(bfqq);
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bfq_release_process_ref(bfqd, bfqq);
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}
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static bool bfq_allow_bio_merge(struct request_queue *q, struct request *rq,
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@ -4899,7 +4920,7 @@ static void bfq_exit_bfqq(struct bfq_data *bfqd, struct bfq_queue *bfqq)
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bfq_put_cooperator(bfqq);
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bfq_put_queue(bfqq); /* release process reference */
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bfq_release_process_ref(bfqd, bfqq);
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}
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static void bfq_exit_icq_bfqq(struct bfq_io_cq *bic, bool is_sync)
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@ -5001,8 +5022,7 @@ static void bfq_check_ioprio_change(struct bfq_io_cq *bic, struct bio *bio)
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bfqq = bic_to_bfqq(bic, false);
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if (bfqq) {
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/* release process reference on this queue */
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bfq_put_queue(bfqq);
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bfq_release_process_ref(bfqd, bfqq);
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bfqq = bfq_get_queue(bfqd, bio, BLK_RW_ASYNC, bic);
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bic_set_bfqq(bic, bfqq, false);
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}
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@ -5963,7 +5983,7 @@ bfq_split_bfqq(struct bfq_io_cq *bic, struct bfq_queue *bfqq)
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bfq_put_cooperator(bfqq);
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bfq_put_queue(bfqq);
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bfq_release_process_ref(bfqq->bfqd, bfqq);
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return NULL;
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}
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