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c2fbaa4b48
syscall_name() helper, which resolves a syscall arch number to its name, is not yet available as we first need to implement event injection for it to work. Remove it from the documentation or tag its references as unavailable yet. Once it's implemented, we can just revert the current patch. Signed-off-by: Frederic Weisbecker <fweisbec@gmail.com> Cc: Tom Zanussi <tzanussi@gmail.com> Cc: Ingo Molnar <mingo@elte.hu> Cc: Steven Rostedt <rostedt@goodmis.org> Cc: Keiichi KII <k-keiichi@bx.jp.nec.com> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Paul Mackerras <paulus@samba.org> Cc: Arnaldo Carvalho de Melo <acme@redhat.com>
220 lines
7.3 KiB
Plaintext
220 lines
7.3 KiB
Plaintext
perf-trace-perl(1)
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==================
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NAME
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----
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perf-trace-perl - Process trace data with a Perl script
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SYNOPSIS
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--------
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[verse]
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'perf trace' [-s [Perl]:script[.pl] ]
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DESCRIPTION
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-----------
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This perf trace option is used to process perf trace data using perf's
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built-in Perl interpreter. It reads and processes the input file and
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displays the results of the trace analysis implemented in the given
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Perl script, if any.
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STARTER SCRIPTS
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---------------
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You can avoid reading the rest of this document by running 'perf trace
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-g perl' in the same directory as an existing perf.data trace file.
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That will generate a starter script containing a handler for each of
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the event types in the trace file; it simply prints every available
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field for each event in the trace file.
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You can also look at the existing scripts in
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~/libexec/perf-core/scripts/perl for typical examples showing how to
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do basic things like aggregate event data, print results, etc. Also,
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the check-perf-trace.pl script, while not interesting for its results,
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attempts to exercise all of the main scripting features.
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EVENT HANDLERS
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--------------
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When perf trace is invoked using a trace script, a user-defined
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'handler function' is called for each event in the trace. If there's
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no handler function defined for a given event type, the event is
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ignored (or passed to a 'trace_handled' function, see below) and the
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next event is processed.
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Most of the event's field values are passed as arguments to the
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handler function; some of the less common ones aren't - those are
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available as calls back into the perf executable (see below).
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As an example, the following perf record command can be used to record
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all sched_wakeup events in the system:
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# perf record -c 1 -f -a -M -R -e sched:sched_wakeup
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Traces meant to be processed using a script should be recorded with
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the above options: -c 1 says to sample every event, -a to enable
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system-wide collection, -M to multiplex the output, and -R to collect
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raw samples.
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The format file for the sched_wakep event defines the following fields
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(see /sys/kernel/debug/tracing/events/sched/sched_wakeup/format):
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----
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format:
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field:unsigned short common_type;
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field:unsigned char common_flags;
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field:unsigned char common_preempt_count;
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field:int common_pid;
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field:int common_lock_depth;
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field:char comm[TASK_COMM_LEN];
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field:pid_t pid;
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field:int prio;
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field:int success;
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field:int target_cpu;
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----
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The handler function for this event would be defined as:
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----
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sub sched::sched_wakeup
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{
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my ($event_name, $context, $common_cpu, $common_secs,
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$common_nsecs, $common_pid, $common_comm,
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$comm, $pid, $prio, $success, $target_cpu) = @_;
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}
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----
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The handler function takes the form subsystem::event_name.
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The $common_* arguments in the handler's argument list are the set of
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arguments passed to all event handlers; some of the fields correspond
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to the common_* fields in the format file, but some are synthesized,
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and some of the common_* fields aren't common enough to to be passed
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to every event as arguments but are available as library functions.
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Here's a brief description of each of the invariant event args:
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$event_name the name of the event as text
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$context an opaque 'cookie' used in calls back into perf
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$common_cpu the cpu the event occurred on
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$common_secs the secs portion of the event timestamp
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$common_nsecs the nsecs portion of the event timestamp
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$common_pid the pid of the current task
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$common_comm the name of the current process
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All of the remaining fields in the event's format file have
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counterparts as handler function arguments of the same name, as can be
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seen in the example above.
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The above provides the basics needed to directly access every field of
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every event in a trace, which covers 90% of what you need to know to
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write a useful trace script. The sections below cover the rest.
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SCRIPT LAYOUT
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-------------
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Every perf trace Perl script should start by setting up a Perl module
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search path and 'use'ing a few support modules (see module
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descriptions below):
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----
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use lib "$ENV{'PERF_EXEC_PATH'}/scripts/perl/Perf-Trace-Util/lib";
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use lib "./Perf-Trace-Util/lib";
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use Perf::Trace::Core;
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use Perf::Trace::Context;
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use Perf::Trace::Util;
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----
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The rest of the script can contain handler functions and support
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functions in any order.
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Aside from the event handler functions discussed above, every script
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can implement a set of optional functions:
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*trace_begin*, if defined, is called before any event is processed and
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gives scripts a chance to do setup tasks:
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----
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sub trace_begin
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{
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}
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----
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*trace_end*, if defined, is called after all events have been
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processed and gives scripts a chance to do end-of-script tasks, such
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as display results:
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----
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sub trace_end
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{
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}
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----
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*trace_unhandled*, if defined, is called after for any event that
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doesn't have a handler explicitly defined for it. The standard set
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of common arguments are passed into it:
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----
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sub trace_unhandled
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{
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my ($event_name, $context, $common_cpu, $common_secs,
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$common_nsecs, $common_pid, $common_comm) = @_;
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}
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----
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The remaining sections provide descriptions of each of the available
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built-in perf trace Perl modules and their associated functions.
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AVAILABLE MODULES AND FUNCTIONS
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-------------------------------
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The following sections describe the functions and variables available
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via the various Perf::Trace::* Perl modules. To use the functions and
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variables from the given module, add the corresponding 'use
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Perf::Trace::XXX' line to your perf trace script.
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Perf::Trace::Core Module
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~~~~~~~~~~~~~~~~~~~~~~~~
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These functions provide some essential functions to user scripts.
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The *flag_str* and *symbol_str* functions provide human-readable
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strings for flag and symbolic fields. These correspond to the strings
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and values parsed from the 'print fmt' fields of the event format
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files:
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flag_str($event_name, $field_name, $field_value) - returns the string represention corresponding to $field_value for the flag field $field_name of event $event_name
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symbol_str($event_name, $field_name, $field_value) - returns the string represention corresponding to $field_value for the symbolic field $field_name of event $event_name
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Perf::Trace::Context Module
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~~~~~~~~~~~~~~~~~~~~~~~~~~~
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Some of the 'common' fields in the event format file aren't all that
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common, but need to be made accessible to user scripts nonetheless.
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Perf::Trace::Context defines a set of functions that can be used to
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access this data in the context of the current event. Each of these
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functions expects a $context variable, which is the same as the
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$context variable passed into every event handler as the second
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argument.
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common_pc($context) - returns common_preempt count for the current event
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common_flags($context) - returns common_flags for the current event
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common_lock_depth($context) - returns common_lock_depth for the current event
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Perf::Trace::Util Module
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~~~~~~~~~~~~~~~~~~~~~~~~
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Various utility functions for use with perf trace:
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nsecs($secs, $nsecs) - returns total nsecs given secs/nsecs pair
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nsecs_secs($nsecs) - returns whole secs portion given nsecs
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nsecs_nsecs($nsecs) - returns nsecs remainder given nsecs
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nsecs_str($nsecs) - returns printable string in the form secs.nsecs
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avg($total, $n) - returns average given a sum and a total number of values
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SEE ALSO
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--------
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linkperf:perf-trace[1]
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