# event_analyzing_sample.py: general event handler in python # # Current perf report is already very powerful with the annotation integrated, # and this script is not trying to be as powerful as perf report, but # providing end user/developer a flexible way to analyze the events other # than trace points. # # The 2 database related functions in this script just show how to gather # the basic information, and users can modify and write their own functions # according to their specific requirement. # # The first function "show_general_events" just does a basic grouping for all # generic events with the help of sqlite, and the 2nd one "show_pebs_ll" is # for a x86 HW PMU event: PEBS with load latency data. # import os import sys import math import struct import sqlite3 sys.path.append(os.environ['PERF_EXEC_PATH'] + \ '/scripts/python/Perf-Trace-Util/lib/Perf/Trace') from perf_trace_context import * from EventClass import * # # If the perf.data has a big number of samples, then the insert operation # will be very time consuming (about 10+ minutes for 10000 samples) if the # .db database is on disk. Move the .db file to RAM based FS to speedup # the handling, which will cut the time down to several seconds. # con = sqlite3.connect("/dev/shm/perf.db") con.isolation_level = None def trace_begin(): print "In trace_begin:\n" # # Will create several tables at the start, pebs_ll is for PEBS data with # load latency info, while gen_events is for general event. # con.execute(""" create table if not exists gen_events ( name text, symbol text, comm text, dso text );""") con.execute(""" create table if not exists pebs_ll ( name text, symbol text, comm text, dso text, flags integer, ip integer, status integer, dse integer, dla integer, lat integer );""") # # Create and insert event object to a database so that user could # do more analysis with simple database commands. # def process_event(param_dict): event_attr = param_dict["attr"] sample = param_dict["sample"] raw_buf = param_dict["raw_buf"] comm = param_dict["comm"] name = param_dict["ev_name"] # Symbol and dso info are not always resolved if (param_dict.has_key("dso")): dso = param_dict["dso"] else: dso = "Unknown_dso" if (param_dict.has_key("symbol")): symbol = param_dict["symbol"] else: symbol = "Unknown_symbol" # Create the event object and insert it to the right table in database event = create_event(name, comm, dso, symbol, raw_buf) insert_db(event) def insert_db(event): if event.ev_type == EVTYPE_GENERIC: con.execute("insert into gen_events values(?, ?, ?, ?)", (event.name, event.symbol, event.comm, event.dso)) elif event.ev_type == EVTYPE_PEBS_LL: event.ip &= 0x7fffffffffffffff event.dla &= 0x7fffffffffffffff con.execute("insert into pebs_ll values (?, ?, ?, ?, ?, ?, ?, ?, ?, ?)", (event.name, event.symbol, event.comm, event.dso, event.flags, event.ip, event.status, event.dse, event.dla, event.lat)) def trace_end(): print "In trace_end:\n" # We show the basic info for the 2 type of event classes show_general_events() show_pebs_ll() con.close() # # As the event number may be very big, so we can't use linear way # to show the histogram in real number, but use a log2 algorithm. # def num2sym(num): # Each number will have at least one '#' snum = '#' * (int)(math.log(num, 2) + 1) return snum def show_general_events(): # Check the total record number in the table count = con.execute("select count(*) from gen_events") for t in count: print "There is %d records in gen_events table" % t[0] if t[0] == 0: return print "Statistics about the general events grouped by thread/symbol/dso: \n" # Group by thread commq = con.execute("select comm, count(comm) from gen_events group by comm order by -count(comm)") print "\n%16s %8s %16s\n%s" % ("comm", "number", "histogram", "="*42) for row in commq: print "%16s %8d %s" % (row[0], row[1], num2sym(row[1])) # Group by symbol print "\n%32s %8s %16s\n%s" % ("symbol", "number", "histogram", "="*58) symbolq = con.execute("select symbol, count(symbol) from gen_events group by symbol order by -count(symbol)") for row in symbolq: print "%32s %8d %s" % (row[0], row[1], num2sym(row[1])) # Group by dso print "\n%40s %8s %16s\n%s" % ("dso", "number", "histogram", "="*74) dsoq = con.execute("select dso, count(dso) from gen_events group by dso order by -count(dso)") for row in dsoq: print "%40s %8d %s" % (row[0], row[1], num2sym(row[1])) # # This function just shows the basic info, and we could do more with the # data in the tables, like checking the function parameters when some # big latency events happen. # def show_pebs_ll(): count = con.execute("select count(*) from pebs_ll") for t in count: print "There is %d records in pebs_ll table" % t[0] if t[0] == 0: return print "Statistics about the PEBS Load Latency events grouped by thread/symbol/dse/latency: \n" # Group by thread commq = con.execute("select comm, count(comm) from pebs_ll group by comm order by -count(comm)") print "\n%16s %8s %16s\n%s" % ("comm", "number", "histogram", "="*42) for row in commq: print "%16s %8d %s" % (row[0], row[1], num2sym(row[1])) # Group by symbol print "\n%32s %8s %16s\n%s" % ("symbol", "number", "histogram", "="*58) symbolq = con.execute("select symbol, count(symbol) from pebs_ll group by symbol order by -count(symbol)") for row in symbolq: print "%32s %8d %s" % (row[0], row[1], num2sym(row[1])) # Group by dse dseq = con.execute("select dse, count(dse) from pebs_ll group by dse order by -count(dse)") print "\n%32s %8s %16s\n%s" % ("dse", "number", "histogram", "="*58) for row in dseq: print "%32s %8d %s" % (row[0], row[1], num2sym(row[1])) # Group by latency latq = con.execute("select lat, count(lat) from pebs_ll group by lat order by lat") print "\n%32s %8s %16s\n%s" % ("latency", "number", "histogram", "="*58) for row in latq: print "%32s %8d %s" % (row[0], row[1], num2sym(row[1])) def trace_unhandled(event_name, context, event_fields_dict): print ' '.join(['%s=%s'%(k,str(v))for k,v in sorted(event_fields_dict.items())]) ff14a9882f2c485fe533c6ce64ea2675'>commitdiff
path: root/kernel/sysctl_check.c
e'>vxlan: get rid of redundant vxlan_dev.flags
AgeCommit message (Expand)Author
2009-11-11sysctl: Remove dead code from sysctl_checkEric W. Biederman
2009-10-29sysctl: fix false positives when PROC_SYSCTL=nAlexey Dobriyan
2009-02-01net: add ARP notify option for devicesStephen Hemminger
2008-10-30[XFS] remove restricted chown parameter from xfs linuxTim Shimmin
2008-07-25sysctl: check for bogus modesAlexey Dobriyan
Matthias Schiffer
2016-11-15vxlan: remove unsed vxlan_dev_dst_port()pravin shelar
2016-10-29vxlan: avoid using stale vxlan socket.pravin shelar
2016-09-10net/ip_tunnels: Introduce tunnel_id_to_key32() and key32_to_tunnel_id()Amir Vadai
2016-06-17net: Remove deprecated tunnel specific UDP offload functionsAlexander Duyck
2016-06-17net: Merge VXLAN and GENEVE push notifiers into a single notifierAlexander Duyck
2016-06-17vxlan/geneve: Include udp_tunnel.h in vxlan/geneve.h and fixup includesAlexander Duyck
2016-05-04Merge git://git.kernel.org/pub/scm/linux/kernel/git/davem/netDavid S. Miller
2016-05-03vxlan: Add checksum check to the features check functionAlexander Duyck
2016-04-21vxlan: break dependency with netdev driversHannes Frederic Sowa
2016-04-16vxlan: synchronously and race-free destruction of vxlan socketsHannes Frederic Sowa
2016-04-07vxlan: change vxlan to use UDP socket GROTom Herbert
2016-04-06vxlan: implement GPEJiri Benc
2016-03-21vxlan: fix sparse warningsJiri Benc
2016-03-11vxlan: support setting IPv6 flow labelDaniel Borkmann
2016-02-21VXLAN: Support outer IPv4 Tx checksums by defaultAlexander Duyck
2016-02-18vxlan: tun_id is 64bit, not 32bitJiri Benc
2016-02-17vxlan: keep flags and vni in network byte orderJiri Benc
2016-02-17vxlan: introduce vxlan_hdrJiri Benc
2016-02-16net: use dst_cache for vxlan devicePaolo Abeni
2016-02-07vxlan: restructure vxlan.h definitionsJiri Benc
2016-02-07vxlan: remove duplicated macrosJiri Benc
2016-02-07vxlan: cleanup typesJiri Benc
2015-12-17Merge git://git.kernel.org/pub/scm/linux/kernel/git/davem/netDavid S. Miller
2015-12-15net: Rename NETIF_F_ALL_CSUM to NETIF_F_CSUM_MASKTom Herbert
2015-12-05vxlan: fix incorrect RCO bit in VXLAN headerJiri Benc
2015-09-26vxlan: support both IPv4 and IPv6 sockets in a single vxlan deviceJiri Benc
2015-08-25vxlan: fix multiple inclusion of vxlan.hJiri Benc
2015-08-23vxlan: GRO support at tunnel layerTom Herbert
2015-08-20vxlan: provide access function for vxlan socket address familyJiri Benc
2015-08-07vxlan: combine VXLAN_FLOWBASED into VXLAN_COLLECT_METADATAAlexei Starovoitov
2015-07-21openvswitch: Use regular VXLAN net_device deviceThomas Graf
2015-07-21vxlan: Factor out device configurationThomas Graf
2015-07-21vxlan: Flow based tunnelingThomas Graf