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tracing: Show number of constants profiled in likely profiler
Now that constants are traced, it is useful to see the number of constants that are traced in the likely/unlikely profiler in order to know if they should be ignored or not. The likely/unlikely will display a number after the "correct" number if a "constant" count exists. Signed-off-by: Steven Rostedt (VMware) <rostedt@goodmis.org>
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d45ae1f704
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134e6a034c
2 changed files with 65 additions and 18 deletions
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@ -200,25 +200,27 @@ void trace_likely_condition(struct ftrace_branch_data *f, int val, int expect)
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}
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#endif /* CONFIG_BRANCH_TRACER */
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void ftrace_likely_update(struct ftrace_branch_data *f, int val,
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void ftrace_likely_update(struct ftrace_likely_data *f, int val,
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int expect, int is_constant)
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{
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/* A constant is always correct */
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if (is_constant)
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if (is_constant) {
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f->constant++;
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val = expect;
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}
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/*
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* I would love to have a trace point here instead, but the
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* trace point code is so inundated with unlikely and likely
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* conditions that the recursive nightmare that exists is too
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* much to try to get working. At least for now.
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*/
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trace_likely_condition(f, val, expect);
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trace_likely_condition(&f->data, val, expect);
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/* FIXME: Make this atomic! */
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if (val == expect)
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f->correct++;
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f->data.correct++;
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else
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f->incorrect++;
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f->data.incorrect++;
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}
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EXPORT_SYMBOL(ftrace_likely_update);
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@ -249,29 +251,60 @@ static inline long get_incorrect_percent(struct ftrace_branch_data *p)
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return percent;
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}
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static int branch_stat_show(struct seq_file *m, void *v)
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static const char *branch_stat_process_file(struct ftrace_branch_data *p)
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{
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struct ftrace_branch_data *p = v;
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const char *f;
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long percent;
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/* Only print the file, not the path */
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f = p->file + strlen(p->file);
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while (f >= p->file && *f != '/')
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f--;
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f++;
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return ++f;
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}
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static void branch_stat_show(struct seq_file *m,
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struct ftrace_branch_data *p, const char *f)
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{
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long percent;
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/*
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* The miss is overlayed on correct, and hit on incorrect.
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*/
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percent = get_incorrect_percent(p);
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seq_printf(m, "%8lu %8lu ", p->correct, p->incorrect);
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if (percent < 0)
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seq_puts(m, " X ");
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else
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seq_printf(m, "%3ld ", percent);
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seq_printf(m, "%-30.30s %-20.20s %d\n", p->func, f, p->line);
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}
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static int branch_stat_show_normal(struct seq_file *m,
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struct ftrace_branch_data *p, const char *f)
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{
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seq_printf(m, "%8lu %8lu ", p->correct, p->incorrect);
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branch_stat_show(m, p, f);
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return 0;
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}
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static int annotate_branch_stat_show(struct seq_file *m, void *v)
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{
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struct ftrace_likely_data *p = v;
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const char *f;
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int l;
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f = branch_stat_process_file(&p->data);
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if (!p->constant)
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return branch_stat_show_normal(m, &p->data, f);
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l = snprintf(NULL, 0, "/%lu", p->constant);
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l = l > 8 ? 0 : 8 - l;
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seq_printf(m, "%8lu/%lu %*lu ",
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p->data.correct, p->constant, l, p->data.incorrect);
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branch_stat_show(m, &p->data, f);
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return 0;
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}
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@ -283,7 +316,7 @@ static void *annotated_branch_stat_start(struct tracer_stat *trace)
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static void *
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annotated_branch_stat_next(void *v, int idx)
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{
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struct ftrace_branch_data *p = v;
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struct ftrace_likely_data *p = v;
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++p;
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@ -332,7 +365,7 @@ static struct tracer_stat annotated_branch_stats = {
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.stat_next = annotated_branch_stat_next,
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.stat_cmp = annotated_branch_stat_cmp,
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.stat_headers = annotated_branch_stat_headers,
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.stat_show = branch_stat_show
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.stat_show = annotate_branch_stat_show
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};
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__init static int init_annotated_branch_stats(void)
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@ -383,12 +416,21 @@ all_branch_stat_next(void *v, int idx)
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return p;
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}
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static int all_branch_stat_show(struct seq_file *m, void *v)
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{
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struct ftrace_branch_data *p = v;
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const char *f;
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f = branch_stat_process_file(p);
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return branch_stat_show_normal(m, p, f);
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}
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static struct tracer_stat all_branch_stats = {
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.name = "branch_all",
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.stat_start = all_branch_stat_start,
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.stat_next = all_branch_stat_next,
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.stat_headers = all_branch_stat_headers,
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.stat_show = branch_stat_show
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.stat_show = all_branch_stat_show
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};
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__init static int all_annotated_branch_stats(void)
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