mirror of
https://github.com/ntop/ntopng.git
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212 lines
7 KiB
C++
212 lines
7 KiB
C++
/*
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*
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* (C) 2013-25 - ntop.org
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*
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*
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*/
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#include "ntop_includes.h"
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ticks ThreadedActivityStats::tickspersec = Utils::gettickspersec();
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/* ******************************************* */
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ThreadedActivityStats::ThreadedActivityStats(const ThreadedActivity *ta) {
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// if(trace_new_delete) ntop->getTrace()->traceEvent(TRACE_NORMAL, "[new] %s", __FILE__);
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memset(&ta_stats, 0, sizeof(ta_stats));
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last_start_time = in_progress_since = 0;
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last_queued_time = deadline = scheduled_time = 0;
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last_duration_ms = max_duration_ms = 0;
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threaded_activity = ta;
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num_not_executed = num_is_slow = 0;
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not_executed = is_slow = false;
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progress = 0;
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state = threaded_activity_state_unknown;
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}
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/* ******************************************* */
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ThreadedActivityStats::~ThreadedActivityStats() {}
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/* ******************************************* */
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void ThreadedActivityStats::incTimeseriesWriteDrops(u_long num_drops) {
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ta_stats.timeseries.write.tot_drops += num_drops;
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}
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/* ******************************************* */
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void ThreadedActivityStats::updateTimeseriesWriteStats(ticks cur_ticks) {
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threaded_activity_timeseries_delta_stats_t *last_stats =
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&ta_stats.timeseries.write.last;
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/* Increase overall total stats */
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ta_stats.timeseries.write.tot_calls++;
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/* Increase delta stats */
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last_stats->tot_ticks += cur_ticks;
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last_stats->tot_calls++;
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if (cur_ticks > last_stats->max_ticks) last_stats->max_ticks = cur_ticks;
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}
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/* ******************************************* */
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void ThreadedActivityStats::updateStatsQueuedTime(time_t queued_time) {
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last_queued_time = queued_time;
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}
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/* ******************************************* */
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void ThreadedActivityStats::updateStatsBegin(struct timeval *begin) {
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in_progress_since = last_start_time = begin->tv_sec;
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/* Start over */
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memset(&ta_stats.timeseries.write.last, 0,
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sizeof(ta_stats.timeseries.write.last));
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ta_stats.alerts.has_drops = false;
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}
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/* ******************************************* */
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void ThreadedActivityStats::updateStatsEnd(u_long duration_ms) {
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/* Update time and progress information */
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in_progress_since = 0;
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last_duration_ms = duration_ms;
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if (duration_ms > max_duration_ms) max_duration_ms = duration_ms;
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/* Update Timeseries stats for the last run which has just ended with this
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* call */
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if (ta_stats.timeseries.write.last.tot_calls > 0)
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ta_stats.timeseries.write.last_max_call_duration_ms =
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ta_stats.timeseries.write.last.max_ticks / (float)tickspersec * 1000,
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ta_stats.timeseries.write.last_avg_call_duration_ms =
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ta_stats.timeseries.write.last.tot_ticks / (float)tickspersec /
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ta_stats.timeseries.write.last.tot_calls * 1000;
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else
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ta_stats.timeseries.write.last_max_call_duration_ms =
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ta_stats.timeseries.write.last_avg_call_duration_ms = 0;
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}
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/* ******************************************* */
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void ThreadedActivityStats::luaTimeseriesStats(lua_State *vm) {
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threaded_activity_timeseries_stats_t *cur_stats = &ta_stats.timeseries.write;
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lua_newtable(vm);
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lua_newtable(vm); /* "write" */
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/* Overall totals */
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lua_push_uint64_table_entry(vm, "tot_calls", (u_int64_t)cur_stats->tot_calls);
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lua_push_uint64_table_entry(vm, "tot_drops", (u_int64_t)cur_stats->tot_drops);
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/* Stats for the last run */
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lua_newtable(vm); /* "last" */
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lua_push_float_table_entry(vm, "max_call_duration_ms",
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cur_stats->last_max_call_duration_ms);
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lua_push_float_table_entry(vm, "avg_call_duration_ms",
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cur_stats->last_avg_call_duration_ms);
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lua_push_bool_table_entry(vm, "is_slow", cur_stats->last_slow);
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lua_pushstring(vm, "last");
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lua_insert(vm, -2);
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lua_settable(vm, -3);
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lua_pushstring(vm, "write");
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lua_insert(vm, -2);
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lua_settable(vm, -3);
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lua_pushstring(vm, "timeseries");
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lua_insert(vm, -2);
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lua_settable(vm, -3);
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}
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/* ******************************************* */
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void ThreadedActivityStats::setNotExecutedActivity(bool _not_executed) {
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not_executed = _not_executed;
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if (_not_executed) num_not_executed++;
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}
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/* ******************************************* */
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void ThreadedActivityStats::setSlowPeriodicActivity(bool _slow) {
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is_slow = _slow;
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if (_slow) num_is_slow++;
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}
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/* ******************************************* */
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void ThreadedActivityStats::lua(lua_State *vm) {
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lua_newtable(vm);
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lua_push_uint64_table_entry(vm, "max_duration_ms",
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(u_int64_t)max_duration_ms);
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lua_push_uint64_table_entry(vm, "last_duration_ms",
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(u_int64_t)last_duration_ms);
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lua_pushstring(vm, "duration");
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lua_insert(vm, -2);
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lua_settable(vm, -3);
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luaTimeseriesStats(vm);
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if (in_progress_since)
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lua_push_uint64_table_entry(vm, "in_progress_since", in_progress_since);
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if (last_start_time)
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lua_push_uint64_table_entry(vm, "last_start_time", last_start_time);
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if (last_queued_time)
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lua_push_uint64_table_entry(vm, "last_queued_time", last_queued_time);
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if (not_executed) lua_push_bool_table_entry(vm, "not_executed", true);
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if (num_not_executed)
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lua_push_uint64_table_entry(vm, "num_not_executed", num_not_executed);
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if (is_slow) lua_push_bool_table_entry(vm, "is_slow", true);
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if (num_is_slow) lua_push_uint64_table_entry(vm, "num_is_slow", num_is_slow);
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if (hasAlertsDrops()) lua_push_bool_table_entry(vm, "alerts_drops", true);
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lua_push_uint64_table_entry(vm, "scheduled_time", scheduled_time);
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lua_push_uint64_table_entry(vm, "deadline", deadline);
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lua_push_int32_table_entry(vm, "progress", progress);
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}
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/* ******************************************* */
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void ThreadedActivityStats::setState(ThreadedActivityState next_state) {
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if (((state == threaded_activity_state_queued) &&
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(next_state != threaded_activity_state_running)) ||
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((state == threaded_activity_state_running) &&
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(next_state != threaded_activity_state_sleeping)))
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ntop->getTrace()->traceEvent(
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TRACE_ERROR, "Internal error. Invalid state transition: %s -> %s",
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Utils::get_state_label(state), Utils::get_state_label(next_state));
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else {
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#ifdef THREAD_DEBUG
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/* Everything is OK, let's set the state. */
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ntop->getTrace()->traceEvent(TRACE_NORMAL, "State transition: %s -> %s",
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Utils::get_state_label(state),
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Utils::get_state_label(next_state));
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#endif
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state = next_state;
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}
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}
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