Merge branch 'percpu-for-linus' into percpu-for-next
[linux-drm-fsl-dcu.git] / kernel / perf_counter.c
index fc3b97410bbfa7596d4bfc72c3833b72b598a735..b0bdb36ccfc82e4cbfaebb0d4054af10b55bf709 100644 (file)
@@ -42,6 +42,7 @@ static int perf_overcommit __read_mostly = 1;
 static atomic_t nr_counters __read_mostly;
 static atomic_t nr_mmap_counters __read_mostly;
 static atomic_t nr_comm_counters __read_mostly;
+static atomic_t nr_task_counters __read_mostly;
 
 /*
  * perf counter paranoia level:
@@ -87,6 +88,7 @@ void __weak hw_perf_disable(void)             { barrier(); }
 void __weak hw_perf_enable(void)               { barrier(); }
 
 void __weak hw_perf_counter_setup(int cpu)     { barrier(); }
+void __weak hw_perf_counter_setup_online(int cpu)      { barrier(); }
 
 int __weak
 hw_perf_group_sched_in(struct perf_counter *group_leader,
@@ -146,6 +148,28 @@ static void put_ctx(struct perf_counter_context *ctx)
        }
 }
 
+static void unclone_ctx(struct perf_counter_context *ctx)
+{
+       if (ctx->parent_ctx) {
+               put_ctx(ctx->parent_ctx);
+               ctx->parent_ctx = NULL;
+       }
+}
+
+/*
+ * If we inherit counters we want to return the parent counter id
+ * to userspace.
+ */
+static u64 primary_counter_id(struct perf_counter *counter)
+{
+       u64 id = counter->id;
+
+       if (counter->parent)
+               id = counter->parent->id;
+
+       return id;
+}
+
 /*
  * Get the perf_counter_context for a task and lock it.
  * This has to cope with with the fact that until it is locked,
@@ -283,6 +307,10 @@ counter_sched_out(struct perf_counter *counter,
                return;
 
        counter->state = PERF_COUNTER_STATE_INACTIVE;
+       if (counter->pending_disable) {
+               counter->pending_disable = 0;
+               counter->state = PERF_COUNTER_STATE_OFF;
+       }
        counter->tstamp_stopped = ctx->time;
        counter->pmu->disable(counter);
        counter->oncpu = -1;
@@ -1081,7 +1109,7 @@ static void perf_counter_sync_stat(struct perf_counter_context *ctx,
                __perf_counter_sync_stat(counter, next_counter);
 
                counter = list_next_entry(counter, event_entry);
-               next_counter = list_next_entry(counter, event_entry);
+               next_counter = list_next_entry(next_counter, event_entry);
        }
 }
 
@@ -1288,7 +1316,6 @@ static void perf_counter_cpu_sched_in(struct perf_cpu_context *cpuctx, int cpu)
 #define MAX_INTERRUPTS (~0ULL)
 
 static void perf_log_throttle(struct perf_counter *counter, int enable);
-static void perf_log_period(struct perf_counter *counter, u64 period);
 
 static void perf_adjust_period(struct perf_counter *counter, u64 events)
 {
@@ -1307,8 +1334,6 @@ static void perf_adjust_period(struct perf_counter *counter, u64 events)
        if (!sample_period)
                sample_period = 1;
 
-       perf_log_period(counter, sample_period);
-
        hwc->sample_period = sample_period;
 }
 
@@ -1463,10 +1488,8 @@ static void perf_counter_enable_on_exec(struct task_struct *task)
        /*
         * Unclone this context if we enabled any counter.
         */
-       if (enabled && ctx->parent_ctx) {
-               put_ctx(ctx->parent_ctx);
-               ctx->parent_ctx = NULL;
-       }
+       if (enabled)
+               unclone_ctx(ctx);
 
        spin_unlock(&ctx->lock);
 
@@ -1526,7 +1549,6 @@ __perf_counter_init_context(struct perf_counter_context *ctx,
 
 static struct perf_counter_context *find_get_context(pid_t pid, int cpu)
 {
-       struct perf_counter_context *parent_ctx;
        struct perf_counter_context *ctx;
        struct perf_cpu_context *cpuctx;
        struct task_struct *task;
@@ -1586,11 +1608,7 @@ static struct perf_counter_context *find_get_context(pid_t pid, int cpu)
  retry:
        ctx = perf_lock_task_context(task, &flags);
        if (ctx) {
-               parent_ctx = ctx->parent_ctx;
-               if (parent_ctx) {
-                       put_ctx(parent_ctx);
-                       ctx->parent_ctx = NULL;         /* no longer a clone */
-               }
+               unclone_ctx(ctx);
                spin_unlock_irqrestore(&ctx->lock, flags);
        }
 
@@ -1642,6 +1660,8 @@ static void free_counter(struct perf_counter *counter)
                        atomic_dec(&nr_mmap_counters);
                if (counter->attr.comm)
                        atomic_dec(&nr_comm_counters);
+               if (counter->attr.task)
+                       atomic_dec(&nr_task_counters);
        }
 
        if (counter->destroy)
@@ -1676,14 +1696,133 @@ static int perf_release(struct inode *inode, struct file *file)
        return 0;
 }
 
+static int perf_counter_read_size(struct perf_counter *counter)
+{
+       int entry = sizeof(u64); /* value */
+       int size = 0;
+       int nr = 1;
+
+       if (counter->attr.read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
+               size += sizeof(u64);
+
+       if (counter->attr.read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
+               size += sizeof(u64);
+
+       if (counter->attr.read_format & PERF_FORMAT_ID)
+               entry += sizeof(u64);
+
+       if (counter->attr.read_format & PERF_FORMAT_GROUP) {
+               nr += counter->group_leader->nr_siblings;
+               size += sizeof(u64);
+       }
+
+       size += entry * nr;
+
+       return size;
+}
+
+static u64 perf_counter_read_value(struct perf_counter *counter)
+{
+       struct perf_counter *child;
+       u64 total = 0;
+
+       total += perf_counter_read(counter);
+       list_for_each_entry(child, &counter->child_list, child_list)
+               total += perf_counter_read(child);
+
+       return total;
+}
+
+static int perf_counter_read_entry(struct perf_counter *counter,
+                                  u64 read_format, char __user *buf)
+{
+       int n = 0, count = 0;
+       u64 values[2];
+
+       values[n++] = perf_counter_read_value(counter);
+       if (read_format & PERF_FORMAT_ID)
+               values[n++] = primary_counter_id(counter);
+
+       count = n * sizeof(u64);
+
+       if (copy_to_user(buf, values, count))
+               return -EFAULT;
+
+       return count;
+}
+
+static int perf_counter_read_group(struct perf_counter *counter,
+                                  u64 read_format, char __user *buf)
+{
+       struct perf_counter *leader = counter->group_leader, *sub;
+       int n = 0, size = 0, err = -EFAULT;
+       u64 values[3];
+
+       values[n++] = 1 + leader->nr_siblings;
+       if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) {
+               values[n++] = leader->total_time_enabled +
+                       atomic64_read(&leader->child_total_time_enabled);
+       }
+       if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) {
+               values[n++] = leader->total_time_running +
+                       atomic64_read(&leader->child_total_time_running);
+       }
+
+       size = n * sizeof(u64);
+
+       if (copy_to_user(buf, values, size))
+               return -EFAULT;
+
+       err = perf_counter_read_entry(leader, read_format, buf + size);
+       if (err < 0)
+               return err;
+
+       size += err;
+
+       list_for_each_entry(sub, &leader->sibling_list, list_entry) {
+               err = perf_counter_read_entry(counter, read_format,
+                               buf + size);
+               if (err < 0)
+                       return err;
+
+               size += err;
+       }
+
+       return size;
+}
+
+static int perf_counter_read_one(struct perf_counter *counter,
+                                u64 read_format, char __user *buf)
+{
+       u64 values[4];
+       int n = 0;
+
+       values[n++] = perf_counter_read_value(counter);
+       if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) {
+               values[n++] = counter->total_time_enabled +
+                       atomic64_read(&counter->child_total_time_enabled);
+       }
+       if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) {
+               values[n++] = counter->total_time_running +
+                       atomic64_read(&counter->child_total_time_running);
+       }
+       if (read_format & PERF_FORMAT_ID)
+               values[n++] = primary_counter_id(counter);
+
+       if (copy_to_user(buf, values, n * sizeof(u64)))
+               return -EFAULT;
+
+       return n * sizeof(u64);
+}
+
 /*
  * Read the performance counter - simple non blocking version for now
  */
 static ssize_t
 perf_read_hw(struct perf_counter *counter, char __user *buf, size_t count)
 {
-       u64 values[4];
-       int n;
+       u64 read_format = counter->attr.read_format;
+       int ret;
 
        /*
         * Return end-of-file for a read on a counter that is in
@@ -1693,28 +1832,18 @@ perf_read_hw(struct perf_counter *counter, char __user *buf, size_t count)
        if (counter->state == PERF_COUNTER_STATE_ERROR)
                return 0;
 
+       if (count < perf_counter_read_size(counter))
+               return -ENOSPC;
+
        WARN_ON_ONCE(counter->ctx->parent_ctx);
        mutex_lock(&counter->child_mutex);
-       values[0] = perf_counter_read(counter);
-       n = 1;
-       if (counter->attr.read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
-               values[n++] = counter->total_time_enabled +
-                       atomic64_read(&counter->child_total_time_enabled);
-       if (counter->attr.read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
-               values[n++] = counter->total_time_running +
-                       atomic64_read(&counter->child_total_time_running);
-       if (counter->attr.read_format & PERF_FORMAT_ID)
-               values[n++] = counter->id;
+       if (read_format & PERF_FORMAT_GROUP)
+               ret = perf_counter_read_group(counter, read_format, buf);
+       else
+               ret = perf_counter_read_one(counter, read_format, buf);
        mutex_unlock(&counter->child_mutex);
 
-       if (count < n * sizeof(u64))
-               return -EINVAL;
-       count = n * sizeof(u64);
-
-       if (copy_to_user(buf, values, count))
-               return -EFAULT;
-
-       return count;
+       return ret;
 }
 
 static ssize_t
@@ -1811,8 +1940,6 @@ static int perf_counter_period(struct perf_counter *counter, u64 __user *arg)
 
                counter->attr.sample_freq = value;
        } else {
-               perf_log_period(counter, value);
-
                counter->attr.sample_period = value;
                counter->hw.sample_period = value;
        }
@@ -2020,7 +2147,7 @@ fail:
 
 static void perf_mmap_free_page(unsigned long addr)
 {
-       struct page *page = virt_to_page(addr);
+       struct page *page = virt_to_page((void *)addr);
 
        page->mapping = NULL;
        __free_page(page);
@@ -2220,7 +2347,7 @@ static void perf_pending_counter(struct perf_pending_entry *entry)
 
        if (counter->pending_disable) {
                counter->pending_disable = 0;
-               perf_counter_disable(counter);
+               __perf_counter_disable(counter);
        }
 
        if (counter->pending_wakeup) {
@@ -2605,7 +2732,80 @@ static u32 perf_counter_tid(struct perf_counter *counter, struct task_struct *p)
        return task_pid_nr_ns(p, counter->ns);
 }
 
-static void perf_counter_output(struct perf_counter *counter, int nmi,
+static void perf_output_read_one(struct perf_output_handle *handle,
+                                struct perf_counter *counter)
+{
+       u64 read_format = counter->attr.read_format;
+       u64 values[4];
+       int n = 0;
+
+       values[n++] = atomic64_read(&counter->count);
+       if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) {
+               values[n++] = counter->total_time_enabled +
+                       atomic64_read(&counter->child_total_time_enabled);
+       }
+       if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) {
+               values[n++] = counter->total_time_running +
+                       atomic64_read(&counter->child_total_time_running);
+       }
+       if (read_format & PERF_FORMAT_ID)
+               values[n++] = primary_counter_id(counter);
+
+       perf_output_copy(handle, values, n * sizeof(u64));
+}
+
+/*
+ * XXX PERF_FORMAT_GROUP vs inherited counters seems difficult.
+ */
+static void perf_output_read_group(struct perf_output_handle *handle,
+                           struct perf_counter *counter)
+{
+       struct perf_counter *leader = counter->group_leader, *sub;
+       u64 read_format = counter->attr.read_format;
+       u64 values[5];
+       int n = 0;
+
+       values[n++] = 1 + leader->nr_siblings;
+
+       if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
+               values[n++] = leader->total_time_enabled;
+
+       if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
+               values[n++] = leader->total_time_running;
+
+       if (leader != counter)
+               leader->pmu->read(leader);
+
+       values[n++] = atomic64_read(&leader->count);
+       if (read_format & PERF_FORMAT_ID)
+               values[n++] = primary_counter_id(leader);
+
+       perf_output_copy(handle, values, n * sizeof(u64));
+
+       list_for_each_entry(sub, &leader->sibling_list, list_entry) {
+               n = 0;
+
+               if (sub != counter)
+                       sub->pmu->read(sub);
+
+               values[n++] = atomic64_read(&sub->count);
+               if (read_format & PERF_FORMAT_ID)
+                       values[n++] = primary_counter_id(sub);
+
+               perf_output_copy(handle, values, n * sizeof(u64));
+       }
+}
+
+static void perf_output_read(struct perf_output_handle *handle,
+                            struct perf_counter *counter)
+{
+       if (counter->attr.read_format & PERF_FORMAT_GROUP)
+               perf_output_read_group(handle, counter);
+       else
+               perf_output_read_one(handle, counter);
+}
+
+void perf_counter_output(struct perf_counter *counter, int nmi,
                                struct perf_sample_data *data)
 {
        int ret;
@@ -2616,10 +2816,6 @@ static void perf_counter_output(struct perf_counter *counter, int nmi,
        struct {
                u32 pid, tid;
        } tid_entry;
-       struct {
-               u64 id;
-               u64 counter;
-       } group_entry;
        struct perf_callchain_entry *callchain = NULL;
        int callchain_size = 0;
        u64 time;
@@ -2661,19 +2857,21 @@ static void perf_counter_output(struct perf_counter *counter, int nmi,
        if (sample_type & PERF_SAMPLE_ID)
                header.size += sizeof(u64);
 
+       if (sample_type & PERF_SAMPLE_STREAM_ID)
+               header.size += sizeof(u64);
+
        if (sample_type & PERF_SAMPLE_CPU) {
                header.size += sizeof(cpu_entry);
 
                cpu_entry.cpu = raw_smp_processor_id();
+               cpu_entry.reserved = 0;
        }
 
        if (sample_type & PERF_SAMPLE_PERIOD)
                header.size += sizeof(u64);
 
-       if (sample_type & PERF_SAMPLE_GROUP) {
-               header.size += sizeof(u64) +
-                       counter->nr_siblings * sizeof(group_entry);
-       }
+       if (sample_type & PERF_SAMPLE_READ)
+               header.size += perf_counter_read_size(counter);
 
        if (sample_type & PERF_SAMPLE_CALLCHAIN) {
                callchain = perf_callchain(data->regs);
@@ -2685,6 +2883,18 @@ static void perf_counter_output(struct perf_counter *counter, int nmi,
                        header.size += sizeof(u64);
        }
 
+       if (sample_type & PERF_SAMPLE_RAW) {
+               int size = sizeof(u32);
+
+               if (data->raw)
+                       size += data->raw->size;
+               else
+                       size += sizeof(u32);
+
+               WARN_ON_ONCE(size & (sizeof(u64)-1));
+               header.size += size;
+       }
+
        ret = perf_output_begin(&handle, counter, header.size, nmi, 1);
        if (ret)
                return;
@@ -2703,7 +2913,13 @@ static void perf_counter_output(struct perf_counter *counter, int nmi,
        if (sample_type & PERF_SAMPLE_ADDR)
                perf_output_put(&handle, data->addr);
 
-       if (sample_type & PERF_SAMPLE_ID)
+       if (sample_type & PERF_SAMPLE_ID) {
+               u64 id = primary_counter_id(counter);
+
+               perf_output_put(&handle, id);
+       }
+
+       if (sample_type & PERF_SAMPLE_STREAM_ID)
                perf_output_put(&handle, counter->id);
 
        if (sample_type & PERF_SAMPLE_CPU)
@@ -2712,26 +2928,8 @@ static void perf_counter_output(struct perf_counter *counter, int nmi,
        if (sample_type & PERF_SAMPLE_PERIOD)
                perf_output_put(&handle, data->period);
 
-       /*
-        * XXX PERF_SAMPLE_GROUP vs inherited counters seems difficult.
-        */
-       if (sample_type & PERF_SAMPLE_GROUP) {
-               struct perf_counter *leader, *sub;
-               u64 nr = counter->nr_siblings;
-
-               perf_output_put(&handle, nr);
-
-               leader = counter->group_leader;
-               list_for_each_entry(sub, &leader->sibling_list, list_entry) {
-                       if (sub != counter)
-                               sub->pmu->read(sub);
-
-                       group_entry.id = sub->id;
-                       group_entry.counter = atomic64_read(&sub->count);
-
-                       perf_output_put(&handle, group_entry);
-               }
-       }
+       if (sample_type & PERF_SAMPLE_READ)
+               perf_output_read(&handle, counter);
 
        if (sample_type & PERF_SAMPLE_CALLCHAIN) {
                if (callchain)
@@ -2742,6 +2940,22 @@ static void perf_counter_output(struct perf_counter *counter, int nmi,
                }
        }
 
+       if (sample_type & PERF_SAMPLE_RAW) {
+               if (data->raw) {
+                       perf_output_put(&handle, data->raw->size);
+                       perf_output_copy(&handle, data->raw->data, data->raw->size);
+               } else {
+                       struct {
+                               u32     size;
+                               u32     data;
+                       } raw = {
+                               .size = sizeof(u32),
+                               .data = 0,
+                       };
+                       perf_output_put(&handle, raw);
+               }
+       }
+
        perf_output_end(&handle);
 }
 
@@ -2754,8 +2968,6 @@ struct perf_read_event {
 
        u32                             pid;
        u32                             tid;
-       u64                             value;
-       u64                             format[3];
 };
 
 static void
@@ -2767,87 +2979,74 @@ perf_counter_read_event(struct perf_counter *counter,
                .header = {
                        .type = PERF_EVENT_READ,
                        .misc = 0,
-                       .size = sizeof(event) - sizeof(event.format),
+                       .size = sizeof(event) + perf_counter_read_size(counter),
                },
                .pid = perf_counter_pid(counter, task),
                .tid = perf_counter_tid(counter, task),
-               .value = atomic64_read(&counter->count),
        };
-       int ret, i = 0;
-
-       if (counter->attr.read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) {
-               event.header.size += sizeof(u64);
-               event.format[i++] = counter->total_time_enabled;
-       }
-
-       if (counter->attr.read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) {
-               event.header.size += sizeof(u64);
-               event.format[i++] = counter->total_time_running;
-       }
-
-       if (counter->attr.read_format & PERF_FORMAT_ID) {
-               u64 id;
-
-               event.header.size += sizeof(u64);
-               if (counter->parent)
-                       id = counter->parent->id;
-               else
-                       id = counter->id;
-
-               event.format[i++] = id;
-       }
+       int ret;
 
        ret = perf_output_begin(&handle, counter, event.header.size, 0, 0);
        if (ret)
                return;
 
-       perf_output_copy(&handle, &event, event.header.size);
+       perf_output_put(&handle, event);
+       perf_output_read(&handle, counter);
+
        perf_output_end(&handle);
 }
 
 /*
- * fork tracking
+ * task tracking -- fork/exit
+ *
+ * enabled by: attr.comm | attr.mmap | attr.task
  */
 
-struct perf_fork_event {
-       struct task_struct      *task;
+struct perf_task_event {
+       struct task_struct              *task;
+       struct perf_counter_context     *task_ctx;
 
        struct {
                struct perf_event_header        header;
 
                u32                             pid;
                u32                             ppid;
+               u32                             tid;
+               u32                             ptid;
        } event;
 };
 
-static void perf_counter_fork_output(struct perf_counter *counter,
-                                    struct perf_fork_event *fork_event)
+static void perf_counter_task_output(struct perf_counter *counter,
+                                    struct perf_task_event *task_event)
 {
        struct perf_output_handle handle;
-       int size = fork_event->event.header.size;
-       struct task_struct *task = fork_event->task;
+       int size = task_event->event.header.size;
+       struct task_struct *task = task_event->task;
        int ret = perf_output_begin(&handle, counter, size, 0, 0);
 
        if (ret)
                return;
 
-       fork_event->event.pid = perf_counter_pid(counter, task);
-       fork_event->event.ppid = perf_counter_pid(counter, task->real_parent);
+       task_event->event.pid = perf_counter_pid(counter, task);
+       task_event->event.ppid = perf_counter_pid(counter, current);
+
+       task_event->event.tid = perf_counter_tid(counter, task);
+       task_event->event.ptid = perf_counter_tid(counter, current);
 
-       perf_output_put(&handle, fork_event->event);
+       perf_output_put(&handle, task_event->event);
        perf_output_end(&handle);
 }
 
-static int perf_counter_fork_match(struct perf_counter *counter)
+static int perf_counter_task_match(struct perf_counter *counter)
 {
-       if (counter->attr.comm || counter->attr.mmap)
+       if (counter->attr.comm || counter->attr.mmap || counter->attr.task)
                return 1;
 
        return 0;
 }
 
-static void perf_counter_fork_ctx(struct perf_counter_context *ctx,
-                                 struct perf_fork_event *fork_event)
+static void perf_counter_task_ctx(struct perf_counter_context *ctx,
+                                 struct perf_task_event *task_event)
 {
        struct perf_counter *counter;
 
@@ -2856,51 +3055,62 @@ static void perf_counter_fork_ctx(struct perf_counter_context *ctx,
 
        rcu_read_lock();
        list_for_each_entry_rcu(counter, &ctx->event_list, event_entry) {
-               if (perf_counter_fork_match(counter))
-                       perf_counter_fork_output(counter, fork_event);
+               if (perf_counter_task_match(counter))
+                       perf_counter_task_output(counter, task_event);
        }
        rcu_read_unlock();
 }
 
-static void perf_counter_fork_event(struct perf_fork_event *fork_event)
+static void perf_counter_task_event(struct perf_task_event *task_event)
 {
        struct perf_cpu_context *cpuctx;
-       struct perf_counter_context *ctx;
+       struct perf_counter_context *ctx = task_event->task_ctx;
 
        cpuctx = &get_cpu_var(perf_cpu_context);
-       perf_counter_fork_ctx(&cpuctx->ctx, fork_event);
+       perf_counter_task_ctx(&cpuctx->ctx, task_event);
        put_cpu_var(perf_cpu_context);
 
        rcu_read_lock();
-       /*
-        * doesn't really matter which of the child contexts the
-        * events ends up in.
-        */
-       ctx = rcu_dereference(current->perf_counter_ctxp);
+       if (!ctx)
+               ctx = rcu_dereference(task_event->task->perf_counter_ctxp);
        if (ctx)
-               perf_counter_fork_ctx(ctx, fork_event);
+               perf_counter_task_ctx(ctx, task_event);
        rcu_read_unlock();
 }
 
-void perf_counter_fork(struct task_struct *task)
+static void perf_counter_task(struct task_struct *task,
+                             struct perf_counter_context *task_ctx,
+                             int new)
 {
-       struct perf_fork_event fork_event;
+       struct perf_task_event task_event;
 
        if (!atomic_read(&nr_comm_counters) &&
-           !atomic_read(&nr_mmap_counters))
+           !atomic_read(&nr_mmap_counters) &&
+           !atomic_read(&nr_task_counters))
                return;
 
-       fork_event = (struct perf_fork_event){
-               .task   = task,
-               .event  = {
+       task_event = (struct perf_task_event){
+               .task     = task,
+               .task_ctx = task_ctx,
+               .event    = {
                        .header = {
-                               .type = PERF_EVENT_FORK,
-                               .size = sizeof(fork_event.event),
+                               .type = new ? PERF_EVENT_FORK : PERF_EVENT_EXIT,
+                               .misc = 0,
+                               .size = sizeof(task_event.event),
                        },
+                       /* .pid  */
+                       /* .ppid */
+                       /* .tid  */
+                       /* .ptid */
                },
        };
 
-       perf_counter_fork_event(&fork_event);
+       perf_counter_task_event(&task_event);
+}
+
+void perf_counter_fork(struct task_struct *task)
+{
+       perf_counter_task(task, NULL, 1);
 }
 
 /*
@@ -2968,8 +3178,10 @@ static void perf_counter_comm_event(struct perf_comm_event *comm_event)
        struct perf_cpu_context *cpuctx;
        struct perf_counter_context *ctx;
        unsigned int size;
-       char *comm = comm_event->task->comm;
+       char comm[TASK_COMM_LEN];
 
+       memset(comm, 0, sizeof(comm));
+       strncpy(comm, comm_event->task->comm, sizeof(comm));
        size = ALIGN(strlen(comm)+1, sizeof(u64));
 
        comm_event->comm = comm;
@@ -3004,8 +3216,16 @@ void perf_counter_comm(struct task_struct *task)
 
        comm_event = (struct perf_comm_event){
                .task   = task,
+               /* .comm      */
+               /* .comm_size */
                .event  = {
-                       .header = { .type = PERF_EVENT_COMM, },
+                       .header = {
+                               .type = PERF_EVENT_COMM,
+                               .misc = 0,
+                               /* .size */
+                       },
+                       /* .pid */
+                       /* .tid */
                },
        };
 
@@ -3088,8 +3308,15 @@ static void perf_counter_mmap_event(struct perf_mmap_event *mmap_event)
        char *buf = NULL;
        const char *name;
 
+       memset(tmp, 0, sizeof(tmp));
+
        if (file) {
-               buf = kzalloc(PATH_MAX, GFP_KERNEL);
+               /*
+                * d_path works from the end of the buffer backwards, so we
+                * need to add enough zero bytes after the string to handle
+                * the 64bit alignment we do later.
+                */
+               buf = kzalloc(PATH_MAX + sizeof(u64), GFP_KERNEL);
                if (!buf) {
                        name = strncpy(tmp, "//enomem", sizeof(tmp));
                        goto got_name;
@@ -3100,9 +3327,11 @@ static void perf_counter_mmap_event(struct perf_mmap_event *mmap_event)
                        goto got_name;
                }
        } else {
-               name = arch_vma_name(mmap_event->vma);
-               if (name)
+               if (arch_vma_name(mmap_event->vma)) {
+                       name = strncpy(tmp, arch_vma_name(mmap_event->vma),
+                                      sizeof(tmp));
                        goto got_name;
+               }
 
                if (!vma->vm_mm) {
                        name = strncpy(tmp, "[vdso]", sizeof(tmp));
@@ -3147,8 +3376,16 @@ void __perf_counter_mmap(struct vm_area_struct *vma)
 
        mmap_event = (struct perf_mmap_event){
                .vma    = vma,
+               /* .file_name */
+               /* .file_size */
                .event  = {
-                       .header = { .type = PERF_EVENT_MMAP, },
+                       .header = {
+                               .type = PERF_EVENT_MMAP,
+                               .misc = 0,
+                               /* .size */
+                       },
+                       /* .pid */
+                       /* .tid */
                        .start  = vma->vm_start,
                        .len    = vma->vm_end - vma->vm_start,
                        .pgoff  = vma->vm_pgoff,
@@ -3158,49 +3395,6 @@ void __perf_counter_mmap(struct vm_area_struct *vma)
        perf_counter_mmap_event(&mmap_event);
 }
 
-/*
- * Log sample_period changes so that analyzing tools can re-normalize the
- * event flow.
- */
-
-struct freq_event {
-       struct perf_event_header        header;
-       u64                             time;
-       u64                             id;
-       u64                             period;
-};
-
-static void perf_log_period(struct perf_counter *counter, u64 period)
-{
-       struct perf_output_handle handle;
-       struct freq_event event;
-       int ret;
-
-       if (counter->hw.sample_period == period)
-               return;
-
-       if (counter->attr.sample_type & PERF_SAMPLE_PERIOD)
-               return;
-
-       event = (struct freq_event) {
-               .header = {
-                       .type = PERF_EVENT_PERIOD,
-                       .misc = 0,
-                       .size = sizeof(event),
-               },
-               .time = sched_clock(),
-               .id = counter->id,
-               .period = period,
-       };
-
-       ret = perf_output_begin(&handle, counter, sizeof(event), 1, 0);
-       if (ret)
-               return;
-
-       perf_output_put(&handle, event);
-       perf_output_end(&handle);
-}
-
 /*
  * IRQ throttle logging
  */
@@ -3214,16 +3408,21 @@ static void perf_log_throttle(struct perf_counter *counter, int enable)
                struct perf_event_header        header;
                u64                             time;
                u64                             id;
+               u64                             stream_id;
        } throttle_event = {
                .header = {
-                       .type = PERF_EVENT_THROTTLE + 1,
+                       .type = PERF_EVENT_THROTTLE,
                        .misc = 0,
                        .size = sizeof(throttle_event),
                },
-               .time   = sched_clock(),
-               .id     = counter->id,
+               .time           = sched_clock(),
+               .id             = primary_counter_id(counter),
+               .stream_id      = counter->id,
        };
 
+       if (enable)
+               throttle_event.header.type = PERF_EVENT_UNTHROTTLE;
+
        ret = perf_output_begin(&handle, counter, sizeof(throttle_event), 1, 0);
        if (ret)
                return;
@@ -3300,125 +3499,111 @@ int perf_counter_overflow(struct perf_counter *counter, int nmi,
  * Generic software counter infrastructure
  */
 
-static void perf_swcounter_update(struct perf_counter *counter)
+/*
+ * We directly increment counter->count and keep a second value in
+ * counter->hw.period_left to count intervals. This period counter
+ * is kept in the range [-sample_period, 0] so that we can use the
+ * sign as trigger.
+ */
+
+static u64 perf_swcounter_set_period(struct perf_counter *counter)
 {
        struct hw_perf_counter *hwc = &counter->hw;
-       u64 prev, now;
-       s64 delta;
+       u64 period = hwc->last_period;
+       u64 nr, offset;
+       s64 old, val;
+
+       hwc->last_period = hwc->sample_period;
 
 again:
-       prev = atomic64_read(&hwc->prev_count);
-       now = atomic64_read(&hwc->count);
-       if (atomic64_cmpxchg(&hwc->prev_count, prev, now) != prev)
-               goto again;
+       old = val = atomic64_read(&hwc->period_left);
+       if (val < 0)
+               return 0;
 
-       delta = now - prev;
+       nr = div64_u64(period + val, period);
+       offset = nr * period;
+       val -= offset;
+       if (atomic64_cmpxchg(&hwc->period_left, old, val) != old)
+               goto again;
 
-       atomic64_add(delta, &counter->count);
-       atomic64_sub(delta, &hwc->period_left);
+       return nr;
 }
 
-static void perf_swcounter_set_period(struct perf_counter *counter)
+static void perf_swcounter_overflow(struct perf_counter *counter,
+                                   int nmi, struct perf_sample_data *data)
 {
        struct hw_perf_counter *hwc = &counter->hw;
-       s64 left = atomic64_read(&hwc->period_left);
-       s64 period = hwc->sample_period;
+       u64 overflow;
 
-       if (unlikely(left <= -period)) {
-               left = period;
-               atomic64_set(&hwc->period_left, left);
-               hwc->last_period = period;
-       }
+       data->period = counter->hw.last_period;
+       overflow = perf_swcounter_set_period(counter);
 
-       if (unlikely(left <= 0)) {
-               left += period;
-               atomic64_add(period, &hwc->period_left);
-               hwc->last_period = period;
-       }
+       if (hwc->interrupts == MAX_INTERRUPTS)
+               return;
 
-       atomic64_set(&hwc->prev_count, -left);
-       atomic64_set(&hwc->count, -left);
+       for (; overflow; overflow--) {
+               if (perf_counter_overflow(counter, nmi, data)) {
+                       /*
+                        * We inhibit the overflow from happening when
+                        * hwc->interrupts == MAX_INTERRUPTS.
+                        */
+                       break;
+               }
+       }
 }
 
-static enum hrtimer_restart perf_swcounter_hrtimer(struct hrtimer *hrtimer)
+static void perf_swcounter_unthrottle(struct perf_counter *counter)
 {
-       enum hrtimer_restart ret = HRTIMER_RESTART;
-       struct perf_sample_data data;
-       struct perf_counter *counter;
-       u64 period;
-
-       counter = container_of(hrtimer, struct perf_counter, hw.hrtimer);
-       counter->pmu->read(counter);
-
-       data.addr = 0;
-       data.regs = get_irq_regs();
        /*
-        * In case we exclude kernel IPs or are somehow not in interrupt
-        * context, provide the next best thing, the user IP.
+        * Nothing to do, we already reset hwc->interrupts.
         */
-       if ((counter->attr.exclude_kernel || !data.regs) &&
-                       !counter->attr.exclude_user)
-               data.regs = task_pt_regs(current);
+}
 
-       if (data.regs) {
-               if (perf_counter_overflow(counter, 0, &data))
-                       ret = HRTIMER_NORESTART;
-       }
+static void perf_swcounter_add(struct perf_counter *counter, u64 nr,
+                              int nmi, struct perf_sample_data *data)
+{
+       struct hw_perf_counter *hwc = &counter->hw;
 
-       period = max_t(u64, 10000, counter->hw.sample_period);
-       hrtimer_forward_now(hrtimer, ns_to_ktime(period));
+       atomic64_add(nr, &counter->count);
 
-       return ret;
-}
+       if (!hwc->sample_period)
+               return;
 
-static void perf_swcounter_overflow(struct perf_counter *counter,
-                                   int nmi, struct perf_sample_data *data)
-{
-       data->period = counter->hw.last_period;
+       if (!data->regs)
+               return;
 
-       perf_swcounter_update(counter);
-       perf_swcounter_set_period(counter);
-       if (perf_counter_overflow(counter, nmi, data))
-               /* soft-disable the counter */
-               ;
+       if (!atomic64_add_negative(nr, &hwc->period_left))
+               perf_swcounter_overflow(counter, nmi, data);
 }
 
 static int perf_swcounter_is_counting(struct perf_counter *counter)
 {
-       struct perf_counter_context *ctx;
-       unsigned long flags;
-       int count;
-
+       /*
+        * The counter is active, we're good!
+        */
        if (counter->state == PERF_COUNTER_STATE_ACTIVE)
                return 1;
 
+       /*
+        * The counter is off/error, not counting.
+        */
        if (counter->state != PERF_COUNTER_STATE_INACTIVE)
                return 0;
 
        /*
-        * If the counter is inactive, it could be just because
-        * its task is scheduled out, or because it's in a group
-        * which could not go on the PMU.  We want to count in
-        * the first case but not the second.  If the context is
-        * currently active then an inactive software counter must
-        * be the second case.  If it's not currently active then
-        * we need to know whether the counter was active when the
-        * context was last active, which we can determine by
-        * comparing counter->tstamp_stopped with ctx->time.
-        *
-        * We are within an RCU read-side critical section,
-        * which protects the existence of *ctx.
+        * The counter is inactive, if the context is active
+        * we're part of a group that didn't make it on the 'pmu',
+        * not counting.
         */
-       ctx = counter->ctx;
-       spin_lock_irqsave(&ctx->lock, flags);
-       count = 1;
-       /* Re-check state now we have the lock */
-       if (counter->state < PERF_COUNTER_STATE_INACTIVE ||
-           counter->ctx->is_active ||
-           counter->tstamp_stopped < ctx->time)
-               count = 0;
-       spin_unlock_irqrestore(&ctx->lock, flags);
-       return count;
+       if (counter->ctx->is_active)
+               return 0;
+
+       /*
+        * We're inactive and the context is too, this means the
+        * task is scheduled out, we're counting events that happen
+        * to us, like migration events.
+        */
+       return 1;
 }
 
 static int perf_swcounter_match(struct perf_counter *counter,
@@ -3444,15 +3629,6 @@ static int perf_swcounter_match(struct perf_counter *counter,
        return 1;
 }
 
-static void perf_swcounter_add(struct perf_counter *counter, u64 nr,
-                              int nmi, struct perf_sample_data *data)
-{
-       int neg = atomic64_add_negative(nr, &counter->hw.count);
-
-       if (counter->hw.sample_period && !neg && data->regs)
-               perf_swcounter_overflow(counter, nmi, data);
-}
-
 static void perf_swcounter_ctx_event(struct perf_counter_context *ctx,
                                     enum perf_type_id type,
                                     u32 event, u64 nr, int nmi,
@@ -3531,26 +3707,65 @@ void __perf_swcounter_event(u32 event, u64 nr, int nmi,
 
 static void perf_swcounter_read(struct perf_counter *counter)
 {
-       perf_swcounter_update(counter);
 }
 
 static int perf_swcounter_enable(struct perf_counter *counter)
 {
-       perf_swcounter_set_period(counter);
+       struct hw_perf_counter *hwc = &counter->hw;
+
+       if (hwc->sample_period) {
+               hwc->last_period = hwc->sample_period;
+               perf_swcounter_set_period(counter);
+       }
        return 0;
 }
 
 static void perf_swcounter_disable(struct perf_counter *counter)
 {
-       perf_swcounter_update(counter);
 }
 
 static const struct pmu perf_ops_generic = {
        .enable         = perf_swcounter_enable,
        .disable        = perf_swcounter_disable,
        .read           = perf_swcounter_read,
+       .unthrottle     = perf_swcounter_unthrottle,
 };
 
+/*
+ * hrtimer based swcounter callback
+ */
+
+static enum hrtimer_restart perf_swcounter_hrtimer(struct hrtimer *hrtimer)
+{
+       enum hrtimer_restart ret = HRTIMER_RESTART;
+       struct perf_sample_data data;
+       struct perf_counter *counter;
+       u64 period;
+
+       counter = container_of(hrtimer, struct perf_counter, hw.hrtimer);
+       counter->pmu->read(counter);
+
+       data.addr = 0;
+       data.regs = get_irq_regs();
+       /*
+        * In case we exclude kernel IPs or are somehow not in interrupt
+        * context, provide the next best thing, the user IP.
+        */
+       if ((counter->attr.exclude_kernel || !data.regs) &&
+                       !counter->attr.exclude_user)
+               data.regs = task_pt_regs(current);
+
+       if (data.regs) {
+               if (perf_counter_overflow(counter, 0, &data))
+                       ret = HRTIMER_NORESTART;
+       }
+
+       period = max_t(u64, 10000, counter->hw.sample_period);
+       hrtimer_forward_now(hrtimer, ns_to_ktime(period));
+
+       return ret;
+}
+
 /*
  * Software counter: cpu wall time clock
  */
@@ -3668,17 +3883,24 @@ static const struct pmu perf_ops_task_clock = {
 };
 
 #ifdef CONFIG_EVENT_PROFILE
-void perf_tpcounter_event(int event_id)
+void perf_tpcounter_event(int event_id, u64 addr, u64 count, void *record,
+                         int entry_size)
 {
+       struct perf_raw_record raw = {
+               .size = entry_size,
+               .data = record,
+       };
+
        struct perf_sample_data data = {
-               .regs = get_irq_regs();
-               .addr = 0,
+               .regs = get_irq_regs(),
+               .addr = addr,
+               .raw = &raw,
        };
 
        if (!data.regs)
                data.regs = task_pt_regs(current);
 
-       do_perf_swcounter_event(PERF_TYPE_TRACEPOINT, event_id, 1, 1, &data);
+       do_perf_swcounter_event(PERF_TYPE_TRACEPOINT, event_id, count, 1, &data);
 }
 EXPORT_SYMBOL_GPL(perf_tpcounter_event);
 
@@ -3687,16 +3909,20 @@ extern void ftrace_profile_disable(int);
 
 static void tp_perf_counter_destroy(struct perf_counter *counter)
 {
-       ftrace_profile_disable(perf_event_id(&counter->attr));
+       ftrace_profile_disable(counter->attr.config);
 }
 
 static const struct pmu *tp_perf_counter_init(struct perf_counter *counter)
 {
-       int event_id = perf_event_id(&counter->attr);
-       int ret;
+       /*
+        * Raw tracepoint data is a severe data leak, only allow root to
+        * have these.
+        */
+       if ((counter->attr.sample_type & PERF_SAMPLE_RAW) &&
+                       !capable(CAP_SYS_ADMIN))
+               return ERR_PTR(-EPERM);
 
-       ret = ftrace_profile_enable(event_id);
-       if (ret)
+       if (ftrace_profile_enable(counter->attr.config))
                return NULL;
 
        counter->destroy = tp_perf_counter_destroy;
@@ -3829,9 +4055,9 @@ perf_counter_alloc(struct perf_counter_attr *attr,
        atomic64_set(&hwc->period_left, hwc->sample_period);
 
        /*
-        * we currently do not support PERF_SAMPLE_GROUP on inherited counters
+        * we currently do not support PERF_FORMAT_GROUP on inherited counters
         */
-       if (attr->inherit && (attr->sample_type & PERF_SAMPLE_GROUP))
+       if (attr->inherit && (attr->read_format & PERF_FORMAT_GROUP))
                goto done;
 
        switch (attr->type) {
@@ -3874,6 +4100,8 @@ done:
                        atomic_inc(&nr_mmap_counters);
                if (counter->attr.comm)
                        atomic_inc(&nr_comm_counters);
+               if (counter->attr.task)
+                       atomic_inc(&nr_task_counters);
        }
 
        return counter;
@@ -4235,8 +4463,10 @@ void perf_counter_exit_task(struct task_struct *child)
        struct perf_counter_context *child_ctx;
        unsigned long flags;
 
-       if (likely(!child->perf_counter_ctxp))
+       if (likely(!child->perf_counter_ctxp)) {
+               perf_counter_task(child, NULL, 0);
                return;
+       }
 
        local_irq_save(flags);
        /*
@@ -4255,17 +4485,20 @@ void perf_counter_exit_task(struct task_struct *child)
         */
        spin_lock(&child_ctx->lock);
        child->perf_counter_ctxp = NULL;
-       if (child_ctx->parent_ctx) {
-               /*
-                * This context is a clone; unclone it so it can't get
-                * swapped to another process while we're removing all
-                * the counters from it.
-                */
-               put_ctx(child_ctx->parent_ctx);
-               child_ctx->parent_ctx = NULL;
-       }
-       spin_unlock(&child_ctx->lock);
-       local_irq_restore(flags);
+       /*
+        * If this context is a clone; unclone it so it can't get
+        * swapped to another process while we're removing all
+        * the counters from it.
+        */
+       unclone_ctx(child_ctx);
+       spin_unlock_irqrestore(&child_ctx->lock, flags);
+
+       /*
+        * Report the task dead after unscheduling the counters so that we
+        * won't get any samples after PERF_EVENT_EXIT. We can however still
+        * get a few PERF_EVENT_READ events.
+        */
+       perf_counter_task(child, child_ctx, 0);
 
        /*
         * We can recurse on the same lock type through:
@@ -4486,6 +4719,11 @@ perf_cpu_notify(struct notifier_block *self, unsigned long action, void *hcpu)
                perf_counter_init_cpu(cpu);
                break;
 
+       case CPU_ONLINE:
+       case CPU_ONLINE_FROZEN:
+               hw_perf_counter_setup_online(cpu);
+               break;
+
        case CPU_DOWN_PREPARE:
        case CPU_DOWN_PREPARE_FROZEN:
                perf_counter_exit_cpu(cpu);
@@ -4510,6 +4748,8 @@ void __init perf_counter_init(void)
 {
        perf_cpu_notify(&perf_cpu_nb, (unsigned long)CPU_UP_PREPARE,
                        (void *)(long)smp_processor_id());
+       perf_cpu_notify(&perf_cpu_nb, (unsigned long)CPU_ONLINE,
+                       (void *)(long)smp_processor_id());
        register_cpu_notifier(&perf_cpu_nb);
 }