forked from Minki/linux
jbd2: avoid pointless scanning of checkpoint lists
Yuanhan has reported that when he is running fsync(2) heavy workload creating new files over ramdisk, significant amount of time is spent in __jbd2_journal_clean_checkpoint_list() trying to clean old transactions (but they cannot be cleaned up because flusher hasn't yet checkpointed those buffers). The workload can be generated by: fs_mark -d /fs/ram0/1 -D 2 -N 2560 -n 1000000 -L 1 -S 1 -s 4096 Reduce the amount of scanning by stopping to scan the transaction list once we find a transaction that cannot be checkpointed. Note that this way of cleaning is still enough to keep freeing space in the journal after fully checkpointed transactions. Reported-and-tested-by: Yuanhan Liu <yuanhan.liu@linux.intel.com> Signed-off-by: Jan Kara <jack@suse.cz> Signed-off-by: Theodore Ts'o <tytso@mit.edu>
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@ -420,7 +420,6 @@ int jbd2_cleanup_journal_tail(journal_t *journal)
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* Find all the written-back checkpoint buffers in the given list and
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* release them.
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*
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* Called with the journal locked.
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* Called with j_list_lock held.
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* Returns number of buffers reaped (for debug)
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*/
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@ -440,12 +439,12 @@ static int journal_clean_one_cp_list(struct journal_head *jh, int *released)
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jh = next_jh;
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next_jh = jh->b_cpnext;
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ret = __try_to_free_cp_buf(jh);
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if (ret) {
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freed++;
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if (ret == 2) {
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*released = 1;
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return freed;
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}
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if (!ret)
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return freed;
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freed++;
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if (ret == 2) {
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*released = 1;
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return freed;
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}
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/*
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* This function only frees up some memory
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@ -465,7 +464,6 @@ static int journal_clean_one_cp_list(struct journal_head *jh, int *released)
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*
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* Find all the written-back checkpoint buffers in the journal and release them.
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*
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* Called with the journal locked.
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* Called with j_list_lock held.
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* Returns number of buffers reaped (for debug)
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*/
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@ -473,7 +471,8 @@ static int journal_clean_one_cp_list(struct journal_head *jh, int *released)
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int __jbd2_journal_clean_checkpoint_list(journal_t *journal)
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{
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transaction_t *transaction, *last_transaction, *next_transaction;
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int ret = 0;
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int ret;
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int freed = 0;
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int released;
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transaction = journal->j_checkpoint_transactions;
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@ -485,17 +484,21 @@ int __jbd2_journal_clean_checkpoint_list(journal_t *journal)
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do {
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transaction = next_transaction;
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next_transaction = transaction->t_cpnext;
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ret += journal_clean_one_cp_list(transaction->
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ret = journal_clean_one_cp_list(transaction->
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t_checkpoint_list, &released);
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/*
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* This function only frees up some memory if possible so we
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* dont have an obligation to finish processing. Bail out if
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* preemption requested:
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*/
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if (need_resched())
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if (need_resched()) {
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freed += ret;
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goto out;
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if (released)
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}
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if (released) {
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freed += ret;
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continue;
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}
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/*
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* It is essential that we are as careful as in the case of
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* t_checkpoint_list with removing the buffer from the list as
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@ -503,11 +506,12 @@ int __jbd2_journal_clean_checkpoint_list(journal_t *journal)
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*/
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ret += journal_clean_one_cp_list(transaction->
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t_checkpoint_io_list, &released);
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if (need_resched())
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freed += ret;
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if (need_resched() || !ret)
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goto out;
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} while (transaction != last_transaction);
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out:
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return ret;
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return freed;
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}
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/*
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