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Introduce CPU_SEQID_UNSTABLE
Current CPU_SEQID users don't care about possibly changing CPU ID, but enclose it within kpreempt disable/enable in order to fend off warnings from Linux's CONFIG_DEBUG_PREEMPT. There is no need to do it. The expected way to get CPU ID while allowing for migration is to use raw_smp_processor_id. In order to make this future-proof this patch keeps CPU_SEQID as is and introduces CPU_SEQID_UNSTABLE instead, to make it clear that consumers explicitly want this behavior. Reviewed-by: Brian Behlendorf <behlendorf1@llnl.gov> Reviewed-by: Ryan Moeller <ryan@iXsystems.com> Reviewed-by: Matt Macy <mmacy@FreeBSD.org> Signed-off-by: Mateusz Guzik <mjguzik@gmail.com> Closes #11142
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@ -80,6 +80,7 @@ extern "C" {
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#define kpreempt_disable() critical_enter()
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#define kpreempt_enable() critical_exit()
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#define CPU_SEQID curcpu
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#define CPU_SEQID_UNSTABLE curcpu
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#define is_system_labeled() 0
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/*
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* Convert a single byte to/from binary-coded decimal (BCD).
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@ -76,6 +76,7 @@
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#define max_ncpus num_possible_cpus()
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#define boot_ncpus num_online_cpus()
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#define CPU_SEQID smp_processor_id()
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#define CPU_SEQID_UNSTABLE raw_smp_processor_id()
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#define is_system_labeled() 0
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#ifndef RLIM64_INFINITY
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@ -626,6 +626,7 @@ extern void delay(clock_t ticks);
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#define defclsyspri 0
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#define CPU_SEQID ((uintptr_t)pthread_self() & (max_ncpus - 1))
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#define CPU_SEQID_UNSTABLE CPU_SEQID
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#define kcred NULL
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#define CRED() NULL
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@ -1308,9 +1308,7 @@ kcf_reqid_insert(kcf_areq_node_t *areq)
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kcf_areq_node_t *headp;
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kcf_reqid_table_t *rt;
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kpreempt_disable();
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rt = kcf_reqid_table[CPU_SEQID & REQID_TABLE_MASK];
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kpreempt_enable();
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rt = kcf_reqid_table[CPU_SEQID_UNSTABLE & REQID_TABLE_MASK];
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mutex_enter(&rt->rt_lock);
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@ -167,9 +167,7 @@ aggsum_add(aggsum_t *as, int64_t delta)
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struct aggsum_bucket *asb;
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int64_t borrow;
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kpreempt_disable();
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asb = &as->as_buckets[CPU_SEQID % as->as_numbuckets];
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kpreempt_enable();
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asb = &as->as_buckets[CPU_SEQID_UNSTABLE % as->as_numbuckets];
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/* Try fast path if we already borrowed enough before. */
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mutex_enter(&asb->asc_lock);
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@ -58,10 +58,8 @@ dmu_object_alloc_impl(objset_t *os, dmu_object_type_t ot, int blocksize,
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int dnodes_per_chunk = 1 << dmu_object_alloc_chunk_shift;
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int error;
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kpreempt_disable();
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cpuobj = &os->os_obj_next_percpu[CPU_SEQID %
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cpuobj = &os->os_obj_next_percpu[CPU_SEQID_UNSTABLE %
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os->os_obj_next_percpu_len];
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kpreempt_enable();
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if (dn_slots == 0) {
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dn_slots = DNODE_MIN_SLOTS;
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@ -305,9 +305,7 @@ txg_hold_open(dsl_pool_t *dp, txg_handle_t *th)
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* significance to the chosen tx_cpu. Because.. Why not use
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* the current cpu to index into the array?
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*/
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kpreempt_disable();
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tc = &tx->tx_cpu[CPU_SEQID];
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kpreempt_enable();
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tc = &tx->tx_cpu[CPU_SEQID_UNSTABLE];
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mutex_enter(&tc->tc_open_lock);
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txg = tx->tx_open_txg;
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@ -2246,9 +2246,7 @@ zio_nowait(zio_t *zio)
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* will ensure they complete prior to unloading the pool.
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*/
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spa_t *spa = zio->io_spa;
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kpreempt_disable();
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pio = spa->spa_async_zio_root[CPU_SEQID];
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kpreempt_enable();
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pio = spa->spa_async_zio_root[CPU_SEQID_UNSTABLE];
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zio_add_child(pio, zio);
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}
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