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@@ -2,40 +2,82 @@
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* Generic helpers for smp ipi calls
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*
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* (C) Jens Axboe <jens.axboe@oracle.com> 2008
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- *
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*/
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-#include <linux/init.h>
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-#include <linux/module.h>
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-#include <linux/percpu.h>
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#include <linux/rcupdate.h>
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#include <linux/rculist.h>
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+#include <linux/kernel.h>
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+#include <linux/module.h>
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+#include <linux/percpu.h>
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+#include <linux/init.h>
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#include <linux/smp.h>
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+#include <linux/cpu.h>
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static DEFINE_PER_CPU(struct call_single_queue, call_single_queue);
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-static LIST_HEAD(call_function_queue);
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-__cacheline_aligned_in_smp DEFINE_SPINLOCK(call_function_lock);
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+
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+static struct {
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+ struct list_head queue;
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+ spinlock_t lock;
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+} call_function __cacheline_aligned_in_smp =
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+ {
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+ .queue = LIST_HEAD_INIT(call_function.queue),
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+ .lock = __SPIN_LOCK_UNLOCKED(call_function.lock),
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+ };
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enum {
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- CSD_FLAG_WAIT = 0x01,
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- CSD_FLAG_ALLOC = 0x02,
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- CSD_FLAG_LOCK = 0x04,
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+ CSD_FLAG_LOCK = 0x01,
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};
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struct call_function_data {
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- struct call_single_data csd;
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- spinlock_t lock;
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- unsigned int refs;
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- struct rcu_head rcu_head;
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- unsigned long cpumask_bits[];
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+ struct call_single_data csd;
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+ spinlock_t lock;
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+ unsigned int refs;
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+ cpumask_var_t cpumask;
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};
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struct call_single_queue {
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- struct list_head list;
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- spinlock_t lock;
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+ struct list_head list;
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+ spinlock_t lock;
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+};
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+
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+static DEFINE_PER_CPU(struct call_function_data, cfd_data) = {
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+ .lock = __SPIN_LOCK_UNLOCKED(cfd_data.lock),
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+};
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+
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+static int
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+hotplug_cfd(struct notifier_block *nfb, unsigned long action, void *hcpu)
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+{
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+ long cpu = (long)hcpu;
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+ struct call_function_data *cfd = &per_cpu(cfd_data, cpu);
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+
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+ switch (action) {
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+ case CPU_UP_PREPARE:
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+ case CPU_UP_PREPARE_FROZEN:
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+ if (!alloc_cpumask_var_node(&cfd->cpumask, GFP_KERNEL,
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+ cpu_to_node(cpu)))
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+ return NOTIFY_BAD;
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+ break;
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+
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+#ifdef CONFIG_CPU_HOTPLUG
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+ case CPU_UP_CANCELED:
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+ case CPU_UP_CANCELED_FROZEN:
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+
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+ case CPU_DEAD:
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+ case CPU_DEAD_FROZEN:
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+ free_cpumask_var(cfd->cpumask);
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+ break;
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+#endif
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+ };
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+
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+ return NOTIFY_OK;
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+}
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+
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+static struct notifier_block __cpuinitdata hotplug_cfd_notifier = {
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+ .notifier_call = hotplug_cfd,
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};
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static int __cpuinit init_call_single_data(void)
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{
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+ void *cpu = (void *)(long)smp_processor_id();
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int i;
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for_each_possible_cpu(i) {
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@@ -44,29 +86,63 @@ static int __cpuinit init_call_single_data(void)
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spin_lock_init(&q->lock);
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INIT_LIST_HEAD(&q->list);
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}
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+
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+ hotplug_cfd(&hotplug_cfd_notifier, CPU_UP_PREPARE, cpu);
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+ register_cpu_notifier(&hotplug_cfd_notifier);
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+
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return 0;
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}
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early_initcall(init_call_single_data);
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-static void csd_flag_wait(struct call_single_data *data)
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+/*
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+ * csd_lock/csd_unlock used to serialize access to per-cpu csd resources
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+ *
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+ * For non-synchronous ipi calls the csd can still be in use by the
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+ * previous function call. For multi-cpu calls its even more interesting
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+ * as we'll have to ensure no other cpu is observing our csd.
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+ */
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+static void csd_lock_wait(struct call_single_data *data)
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{
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- /* Wait for response */
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- do {
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- if (!(data->flags & CSD_FLAG_WAIT))
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- break;
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+ while (data->flags & CSD_FLAG_LOCK)
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cpu_relax();
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- } while (1);
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+}
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+
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+static void csd_lock(struct call_single_data *data)
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+{
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+ csd_lock_wait(data);
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+ data->flags = CSD_FLAG_LOCK;
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+
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+ /*
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+ * prevent CPU from reordering the above assignment
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+ * to ->flags with any subsequent assignments to other
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+ * fields of the specified call_single_data structure:
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+ */
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+ smp_mb();
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+}
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+
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+static void csd_unlock(struct call_single_data *data)
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+{
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+ WARN_ON(!(data->flags & CSD_FLAG_LOCK));
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+
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+ /*
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+ * ensure we're all done before releasing data:
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+ */
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+ smp_mb();
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+
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+ data->flags &= ~CSD_FLAG_LOCK;
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}
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/*
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- * Insert a previously allocated call_single_data element for execution
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- * on the given CPU. data must already have ->func, ->info, and ->flags set.
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+ * Insert a previously allocated call_single_data element
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+ * for execution on the given CPU. data must already have
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+ * ->func, ->info, and ->flags set.
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*/
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-static void generic_exec_single(int cpu, struct call_single_data *data)
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+static
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+void generic_exec_single(int cpu, struct call_single_data *data, int wait)
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{
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struct call_single_queue *dst = &per_cpu(call_single_queue, cpu);
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- int wait = data->flags & CSD_FLAG_WAIT, ipi;
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unsigned long flags;
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+ int ipi;
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spin_lock_irqsave(&dst->lock, flags);
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ipi = list_empty(&dst->list);
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@@ -74,24 +150,21 @@ static void generic_exec_single(int cpu, struct call_single_data *data)
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spin_unlock_irqrestore(&dst->lock, flags);
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/*
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- * Make the list addition visible before sending the ipi.
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+ * The list addition should be visible before sending the IPI
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+ * handler locks the list to pull the entry off it because of
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+ * normal cache coherency rules implied by spinlocks.
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+ *
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+ * If IPIs can go out of order to the cache coherency protocol
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+ * in an architecture, sufficient synchronisation should be added
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+ * to arch code to make it appear to obey cache coherency WRT
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+ * locking and barrier primitives. Generic code isn't really
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+ * equipped to do the right thing...
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*/
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- smp_mb();
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-
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if (ipi)
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arch_send_call_function_single_ipi(cpu);
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if (wait)
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- csd_flag_wait(data);
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-}
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-
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-static void rcu_free_call_data(struct rcu_head *head)
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-{
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- struct call_function_data *data;
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-
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- data = container_of(head, struct call_function_data, rcu_head);
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-
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- kfree(data);
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+ csd_lock_wait(data);
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}
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/*
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@@ -104,99 +177,83 @@ void generic_smp_call_function_interrupt(void)
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int cpu = get_cpu();
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/*
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- * It's ok to use list_for_each_rcu() here even though we may delete
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- * 'pos', since list_del_rcu() doesn't clear ->next
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+ * Ensure entry is visible on call_function_queue after we have
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+ * entered the IPI. See comment in smp_call_function_many.
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+ * If we don't have this, then we may miss an entry on the list
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+ * and never get another IPI to process it.
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+ */
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+ smp_mb();
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+
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+ /*
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+ * It's ok to use list_for_each_rcu() here even though we may
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+ * delete 'pos', since list_del_rcu() doesn't clear ->next
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*/
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- rcu_read_lock();
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- list_for_each_entry_rcu(data, &call_function_queue, csd.list) {
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+ list_for_each_entry_rcu(data, &call_function.queue, csd.list) {
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int refs;
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- if (!cpumask_test_cpu(cpu, to_cpumask(data->cpumask_bits)))
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+ spin_lock(&data->lock);
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+ if (!cpumask_test_cpu(cpu, data->cpumask)) {
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+ spin_unlock(&data->lock);
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continue;
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+ }
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+ cpumask_clear_cpu(cpu, data->cpumask);
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+ spin_unlock(&data->lock);
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data->csd.func(data->csd.info);
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spin_lock(&data->lock);
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- cpumask_clear_cpu(cpu, to_cpumask(data->cpumask_bits));
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WARN_ON(data->refs == 0);
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- data->refs--;
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- refs = data->refs;
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+ refs = --data->refs;
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+ if (!refs) {
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+ spin_lock(&call_function.lock);
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+ list_del_rcu(&data->csd.list);
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+ spin_unlock(&call_function.lock);
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+ }
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spin_unlock(&data->lock);
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if (refs)
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continue;
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- spin_lock(&call_function_lock);
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- list_del_rcu(&data->csd.list);
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- spin_unlock(&call_function_lock);
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-
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- if (data->csd.flags & CSD_FLAG_WAIT) {
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- /*
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- * serialize stores to data with the flag clear
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- * and wakeup
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- */
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- smp_wmb();
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- data->csd.flags &= ~CSD_FLAG_WAIT;
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- }
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- if (data->csd.flags & CSD_FLAG_ALLOC)
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- call_rcu(&data->rcu_head, rcu_free_call_data);
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+ csd_unlock(&data->csd);
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}
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- rcu_read_unlock();
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put_cpu();
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}
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/*
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- * Invoked by arch to handle an IPI for call function single. Must be called
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- * from the arch with interrupts disabled.
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+ * Invoked by arch to handle an IPI for call function single. Must be
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+ * called from the arch with interrupts disabled.
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*/
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void generic_smp_call_function_single_interrupt(void)
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{
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struct call_single_queue *q = &__get_cpu_var(call_single_queue);
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+ unsigned int data_flags;
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LIST_HEAD(list);
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- /*
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- * Need to see other stores to list head for checking whether
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- * list is empty without holding q->lock
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- */
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- smp_read_barrier_depends();
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- while (!list_empty(&q->list)) {
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- unsigned int data_flags;
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-
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- spin_lock(&q->lock);
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- list_replace_init(&q->list, &list);
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- spin_unlock(&q->lock);
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-
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- while (!list_empty(&list)) {
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- struct call_single_data *data;
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-
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- data = list_entry(list.next, struct call_single_data,
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- list);
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- list_del(&data->list);
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-
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- /*
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- * 'data' can be invalid after this call if
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- * flags == 0 (when called through
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- * generic_exec_single(), so save them away before
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- * making the call.
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- */
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- data_flags = data->flags;
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-
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- data->func(data->info);
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-
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- if (data_flags & CSD_FLAG_WAIT) {
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- smp_wmb();
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- data->flags &= ~CSD_FLAG_WAIT;
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- } else if (data_flags & CSD_FLAG_LOCK) {
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- smp_wmb();
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- data->flags &= ~CSD_FLAG_LOCK;
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- } else if (data_flags & CSD_FLAG_ALLOC)
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- kfree(data);
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- }
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+ spin_lock(&q->lock);
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+ list_replace_init(&q->list, &list);
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+ spin_unlock(&q->lock);
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+
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+ while (!list_empty(&list)) {
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+ struct call_single_data *data;
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+
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+ data = list_entry(list.next, struct call_single_data, list);
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+ list_del(&data->list);
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+
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+ /*
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+ * 'data' can be invalid after this call if flags == 0
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+ * (when called through generic_exec_single()),
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+ * so save them away before making the call:
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+ */
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+ data_flags = data->flags;
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+
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+ data->func(data->info);
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+
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/*
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- * See comment on outer loop
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+ * Unlocked CSDs are valid through generic_exec_single():
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*/
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- smp_read_barrier_depends();
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+ if (data_flags & CSD_FLAG_LOCK)
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+ csd_unlock(data);
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}
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}
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@@ -215,65 +272,45 @@ static DEFINE_PER_CPU(struct call_single_data, csd_data);
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int smp_call_function_single(int cpu, void (*func) (void *info), void *info,
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int wait)
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{
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- struct call_single_data d;
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+ struct call_single_data d = {
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+ .flags = 0,
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+ };
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unsigned long flags;
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- /* prevent preemption and reschedule on another processor,
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- as well as CPU removal */
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- int me = get_cpu();
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+ int this_cpu;
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int err = 0;
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+ /*
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+ * prevent preemption and reschedule on another processor,
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+ * as well as CPU removal
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+ */
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+ this_cpu = get_cpu();
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+
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/* Can deadlock when called with interrupts disabled */
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- WARN_ON(irqs_disabled());
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+ WARN_ON_ONCE(irqs_disabled() && !oops_in_progress);
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- if (cpu == me) {
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+ if (cpu == this_cpu) {
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local_irq_save(flags);
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func(info);
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local_irq_restore(flags);
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- } else if ((unsigned)cpu < nr_cpu_ids && cpu_online(cpu)) {
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- struct call_single_data *data;
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+ } else {
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+ if ((unsigned)cpu < nr_cpu_ids && cpu_online(cpu)) {
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+ struct call_single_data *data = &d;
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+
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+ if (!wait)
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+ data = &__get_cpu_var(csd_data);
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- if (!wait) {
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- /*
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- * We are calling a function on a single CPU
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- * and we are not going to wait for it to finish.
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- * We first try to allocate the data, but if we
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- * fail, we fall back to use a per cpu data to pass
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- * the information to that CPU. Since all callers
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- * of this code will use the same data, we must
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- * synchronize the callers to prevent a new caller
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- * from corrupting the data before the callee
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- * can access it.
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- *
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- * The CSD_FLAG_LOCK is used to let us know when
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- * the IPI handler is done with the data.
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- * The first caller will set it, and the callee
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- * will clear it. The next caller must wait for
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- * it to clear before we set it again. This
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- * will make sure the callee is done with the
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- * data before a new caller will use it.
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- */
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- data = kmalloc(sizeof(*data), GFP_ATOMIC);
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- if (data)
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- data->flags = CSD_FLAG_ALLOC;
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- else {
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- data = &per_cpu(csd_data, me);
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|
|
- while (data->flags & CSD_FLAG_LOCK)
|
|
|
- cpu_relax();
|
|
|
- data->flags = CSD_FLAG_LOCK;
|
|
|
- }
|
|
|
+ csd_lock(data);
|
|
|
+
|
|
|
+ data->func = func;
|
|
|
+ data->info = info;
|
|
|
+ generic_exec_single(cpu, data, wait);
|
|
|
} else {
|
|
|
- data = &d;
|
|
|
- data->flags = CSD_FLAG_WAIT;
|
|
|
+ err = -ENXIO; /* CPU not online */
|
|
|
}
|
|
|
-
|
|
|
- data->func = func;
|
|
|
- data->info = info;
|
|
|
- generic_exec_single(cpu, data);
|
|
|
- } else {
|
|
|
- err = -ENXIO; /* CPU not online */
|
|
|
}
|
|
|
|
|
|
put_cpu();
|
|
|
+
|
|
|
return err;
|
|
|
}
|
|
|
EXPORT_SYMBOL(smp_call_function_single);
|
|
@@ -283,23 +320,26 @@ EXPORT_SYMBOL(smp_call_function_single);
|
|
|
* @cpu: The CPU to run on.
|
|
|
* @data: Pre-allocated and setup data structure
|
|
|
*
|
|
|
- * Like smp_call_function_single(), but allow caller to pass in a pre-allocated
|
|
|
- * data structure. Useful for embedding @data inside other structures, for
|
|
|
- * instance.
|
|
|
- *
|
|
|
+ * Like smp_call_function_single(), but allow caller to pass in a
|
|
|
+ * pre-allocated data structure. Useful for embedding @data inside
|
|
|
+ * other structures, for instance.
|
|
|
*/
|
|
|
-void __smp_call_function_single(int cpu, struct call_single_data *data)
|
|
|
+void __smp_call_function_single(int cpu, struct call_single_data *data,
|
|
|
+ int wait)
|
|
|
{
|
|
|
+ csd_lock(data);
|
|
|
+
|
|
|
/* Can deadlock when called with interrupts disabled */
|
|
|
- WARN_ON((data->flags & CSD_FLAG_WAIT) && irqs_disabled());
|
|
|
+ WARN_ON_ONCE(wait && irqs_disabled() && !oops_in_progress);
|
|
|
|
|
|
- generic_exec_single(cpu, data);
|
|
|
+ generic_exec_single(cpu, data, wait);
|
|
|
}
|
|
|
|
|
|
-/* FIXME: Shim for archs using old arch_send_call_function_ipi API. */
|
|
|
+/* Deprecated: shim for archs using old arch_send_call_function_ipi API. */
|
|
|
+
|
|
|
#ifndef arch_send_call_function_ipi_mask
|
|
|
-#define arch_send_call_function_ipi_mask(maskp) \
|
|
|
- arch_send_call_function_ipi(*(maskp))
|
|
|
+# define arch_send_call_function_ipi_mask(maskp) \
|
|
|
+ arch_send_call_function_ipi(*(maskp))
|
|
|
#endif
|
|
|
|
|
|
/**
|
|
@@ -307,7 +347,8 @@ void __smp_call_function_single(int cpu, struct call_single_data *data)
|
|
|
* @mask: The set of cpus to run on (only runs on online subset).
|
|
|
* @func: The function to run. This must be fast and non-blocking.
|
|
|
* @info: An arbitrary pointer to pass to the function.
|
|
|
- * @wait: If true, wait (atomically) until function has completed on other CPUs.
|
|
|
+ * @wait: If true, wait (atomically) until function has completed
|
|
|
+ * on other CPUs.
|
|
|
*
|
|
|
* If @wait is true, then returns once @func has returned. Note that @wait
|
|
|
* will be implicitly turned on in case of allocation failures, since
|
|
@@ -318,27 +359,27 @@ void __smp_call_function_single(int cpu, struct call_single_data *data)
|
|
|
* must be disabled when calling this function.
|
|
|
*/
|
|
|
void smp_call_function_many(const struct cpumask *mask,
|
|
|
- void (*func)(void *), void *info,
|
|
|
- bool wait)
|
|
|
+ void (*func)(void *), void *info, bool wait)
|
|
|
{
|
|
|
struct call_function_data *data;
|
|
|
unsigned long flags;
|
|
|
- int cpu, next_cpu;
|
|
|
+ int cpu, next_cpu, this_cpu = smp_processor_id();
|
|
|
|
|
|
/* Can deadlock when called with interrupts disabled */
|
|
|
- WARN_ON(irqs_disabled());
|
|
|
+ WARN_ON_ONCE(irqs_disabled() && !oops_in_progress);
|
|
|
|
|
|
- /* So, what's a CPU they want? Ignoring this one. */
|
|
|
+ /* So, what's a CPU they want? Ignoring this one. */
|
|
|
cpu = cpumask_first_and(mask, cpu_online_mask);
|
|
|
- if (cpu == smp_processor_id())
|
|
|
+ if (cpu == this_cpu)
|
|
|
cpu = cpumask_next_and(cpu, mask, cpu_online_mask);
|
|
|
+
|
|
|
/* No online cpus? We're done. */
|
|
|
if (cpu >= nr_cpu_ids)
|
|
|
return;
|
|
|
|
|
|
/* Do we have another CPU which isn't us? */
|
|
|
next_cpu = cpumask_next_and(cpu, mask, cpu_online_mask);
|
|
|
- if (next_cpu == smp_processor_id())
|
|
|
+ if (next_cpu == this_cpu)
|
|
|
next_cpu = cpumask_next_and(next_cpu, mask, cpu_online_mask);
|
|
|
|
|
|
/* Fastpath: do that cpu by itself. */
|
|
@@ -347,43 +388,40 @@ void smp_call_function_many(const struct cpumask *mask,
|
|
|
return;
|
|
|
}
|
|
|
|
|
|
- data = kmalloc(sizeof(*data) + cpumask_size(), GFP_ATOMIC);
|
|
|
- if (unlikely(!data)) {
|
|
|
- /* Slow path. */
|
|
|
- for_each_online_cpu(cpu) {
|
|
|
- if (cpu == smp_processor_id())
|
|
|
- continue;
|
|
|
- if (cpumask_test_cpu(cpu, mask))
|
|
|
- smp_call_function_single(cpu, func, info, wait);
|
|
|
- }
|
|
|
- return;
|
|
|
- }
|
|
|
+ data = &__get_cpu_var(cfd_data);
|
|
|
+ csd_lock(&data->csd);
|
|
|
|
|
|
- spin_lock_init(&data->lock);
|
|
|
- data->csd.flags = CSD_FLAG_ALLOC;
|
|
|
- if (wait)
|
|
|
- data->csd.flags |= CSD_FLAG_WAIT;
|
|
|
+ spin_lock_irqsave(&data->lock, flags);
|
|
|
data->csd.func = func;
|
|
|
data->csd.info = info;
|
|
|
- cpumask_and(to_cpumask(data->cpumask_bits), mask, cpu_online_mask);
|
|
|
- cpumask_clear_cpu(smp_processor_id(), to_cpumask(data->cpumask_bits));
|
|
|
- data->refs = cpumask_weight(to_cpumask(data->cpumask_bits));
|
|
|
+ cpumask_and(data->cpumask, mask, cpu_online_mask);
|
|
|
+ cpumask_clear_cpu(this_cpu, data->cpumask);
|
|
|
+ data->refs = cpumask_weight(data->cpumask);
|
|
|
|
|
|
- spin_lock_irqsave(&call_function_lock, flags);
|
|
|
- list_add_tail_rcu(&data->csd.list, &call_function_queue);
|
|
|
- spin_unlock_irqrestore(&call_function_lock, flags);
|
|
|
+ spin_lock(&call_function.lock);
|
|
|
+ /*
|
|
|
+ * Place entry at the _HEAD_ of the list, so that any cpu still
|
|
|
+ * observing the entry in generic_smp_call_function_interrupt()
|
|
|
+ * will not miss any other list entries:
|
|
|
+ */
|
|
|
+ list_add_rcu(&data->csd.list, &call_function.queue);
|
|
|
+ spin_unlock(&call_function.lock);
|
|
|
+
|
|
|
+ spin_unlock_irqrestore(&data->lock, flags);
|
|
|
|
|
|
/*
|
|
|
* Make the list addition visible before sending the ipi.
|
|
|
+ * (IPIs must obey or appear to obey normal Linux cache
|
|
|
+ * coherency rules -- see comment in generic_exec_single).
|
|
|
*/
|
|
|
smp_mb();
|
|
|
|
|
|
/* Send a message to all CPUs in the map */
|
|
|
- arch_send_call_function_ipi_mask(to_cpumask(data->cpumask_bits));
|
|
|
+ arch_send_call_function_ipi_mask(data->cpumask);
|
|
|
|
|
|
- /* optionally wait for the CPUs to complete */
|
|
|
+ /* Optionally wait for the CPUs to complete */
|
|
|
if (wait)
|
|
|
- csd_flag_wait(&data->csd);
|
|
|
+ csd_lock_wait(&data->csd);
|
|
|
}
|
|
|
EXPORT_SYMBOL(smp_call_function_many);
|
|
|
|
|
@@ -391,7 +429,8 @@ EXPORT_SYMBOL(smp_call_function_many);
|
|
|
* smp_call_function(): Run a function on all other CPUs.
|
|
|
* @func: The function to run. This must be fast and non-blocking.
|
|
|
* @info: An arbitrary pointer to pass to the function.
|
|
|
- * @wait: If true, wait (atomically) until function has completed on other CPUs.
|
|
|
+ * @wait: If true, wait (atomically) until function has completed
|
|
|
+ * on other CPUs.
|
|
|
*
|
|
|
* Returns 0.
|
|
|
*
|
|
@@ -407,26 +446,27 @@ int smp_call_function(void (*func)(void *), void *info, int wait)
|
|
|
preempt_disable();
|
|
|
smp_call_function_many(cpu_online_mask, func, info, wait);
|
|
|
preempt_enable();
|
|
|
+
|
|
|
return 0;
|
|
|
}
|
|
|
EXPORT_SYMBOL(smp_call_function);
|
|
|
|
|
|
void ipi_call_lock(void)
|
|
|
{
|
|
|
- spin_lock(&call_function_lock);
|
|
|
+ spin_lock(&call_function.lock);
|
|
|
}
|
|
|
|
|
|
void ipi_call_unlock(void)
|
|
|
{
|
|
|
- spin_unlock(&call_function_lock);
|
|
|
+ spin_unlock(&call_function.lock);
|
|
|
}
|
|
|
|
|
|
void ipi_call_lock_irq(void)
|
|
|
{
|
|
|
- spin_lock_irq(&call_function_lock);
|
|
|
+ spin_lock_irq(&call_function.lock);
|
|
|
}
|
|
|
|
|
|
void ipi_call_unlock_irq(void)
|
|
|
{
|
|
|
- spin_unlock_irq(&call_function_lock);
|
|
|
+ spin_unlock_irq(&call_function.lock);
|
|
|
}
|