2026-05-09 11:23:45 +08:00
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#include <base/BitTool.h>
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#include <eqpalg/algs/trend_slope.h>
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#include <eqpalg/utility/build_alarm_info.h>
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#include <utility/StringHelper.h>
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#include <limits>
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#include <string>
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#include <vector>
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#include "mix_cc/ihyper_db/read_data_stats.h"
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/*计算次数,采用6次出现连续3次*/
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#define CS_AVG_SIZE 6
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2026-05-09 13:30:09 +08:00
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const double MAX_SLOPE = 100000000;
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2026-05-09 11:23:45 +08:00
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TrendSlope::TrendSlope(const string name, const mix_cc::json& rule_json,
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const string ruleId)
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: AlgBase(name, rule_json, ruleId) {
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logger_.reset(new LOG("TrendSlope:" + rule_name_, AUTO_CATCH_PID));
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}
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TrendSlope::~TrendSlope() {
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2026-05-09 13:30:09 +08:00
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2026-05-09 11:23:45 +08:00
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}
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int TrendSlope::init() {
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int res = 0;
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try {
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res += AlgBase::init();
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double interval_time = std::stod(rule_json_.at("function")
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.at("limit_error")
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.at("param")
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.at("interval_time")
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.at("value")
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.get<std::string>());
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limit_time_interval_ = seconds(int(interval_time * 60));
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limit_slope_ = std::stod(rule_json_.at("function")
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.at("limit_error")
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.at("param")
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.at("diff")
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.at("value")
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.get<std::string>());
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if (limit_slope_ > 0) {
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2026-05-09 13:30:09 +08:00
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2026-05-09 11:23:45 +08:00
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this->rule_stat_.limit_down = -32768;
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this->rule_stat_.limit_up = limit_slope_;
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} else {
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this->rule_stat_.limit_down = limit_slope_;
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2026-05-09 13:30:09 +08:00
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2026-05-09 11:23:45 +08:00
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this->rule_stat_.limit_up = -32768;
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}
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this->rule_stat_.current_value = 0;
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logger_->Debug() << "区间:[" << this->rule_stat_.limit_down << ","
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<< this->rule_stat_.limit_up << "]"
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<< ",当期值:" << this->rule_stat_.current_value << endl;
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error_content_ =
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rule_json_.at("output").at("error").at("value").get<std::string>();
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logger_->Debug() << "Time interval between:" << limit_time_interval_.count()
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<< "ms,slope:" << limit_slope_ << ",报警内容:"
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<< error_content_ << endl;
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this->data_source_ = DataSource::IHDB;
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} catch (const std::exception& e) {
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std::throw_with_nested(
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mix_cc::Exception(-1, "load error", BOOST_CURRENT_LOCATION));
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}
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return res;
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}
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AlarmInfo TrendSlope::exec_mon() {
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AlarmInfo out_alarm{};
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int count_error = 0;
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this->refresh_now_time();
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this->refresh_ihd_cache();
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double avg[CS_AVG_SIZE] = {0.0};
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double f_slope = 0.0;
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double f_slope_max = 0;
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try {
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/* before --> now*/
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// 检查6个周期的时间内数据的斜率是否小于目标斜率
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for (int i = 0; i < CS_AVG_SIZE; i++) {
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query_time_range_.set_left(now_time_ -
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(limit_time_interval_ * (CS_AVG_SIZE - i)));
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query_time_range_.set_right(
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now_time_ - (limit_time_interval_ * (CS_AVG_SIZE - i - 1)));
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if (!query_time_range_.valid()) {
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logger_->Error() << "时间数据 不合法" << std::endl;
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}
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logger_->Debug() << "时间范围"
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<< mix_cc::mix_time_t(query_time_range_.get_left())
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.to_formatted_time()
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<< " "
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<< mix_cc::mix_time_t(query_time_range_.get_right())
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.to_formatted_time()
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<< std::endl;
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auto data_maybe = mix_cc::ihd::read_data_stats_maybe(
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m_tags[0], query_time_range_, HD3_STATS_TYPE_ARITH_MEAN);
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if (data_maybe.is_nothing()) {
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logger_->Error() << rule_name_ << ":ihd查询异常!" << std::endl;
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return {};
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}
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avg[i] = data_maybe.unsafe_get_just();
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logger_->Debug() << "avg[" << i << "]:" << avg[i] << endl;
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}
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string msgslope;
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for (int i = 0; i < CS_AVG_SIZE; i++) {
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if (i > 0) {
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f_slope = static_cast<int>(1000.0 * (avg[i] - avg[i - 1]) + 0.5);
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f_slope = f_slope / 1000;
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f_slope_max = (abs(f_slope_max) > abs(f_slope)) ? f_slope_max : f_slope;
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if ((limit_slope_ > 0 && f_slope > limit_slope_) ||
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(limit_slope_ < 0 && f_slope < limit_slope_)) {
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msgslope += " " + std::to_string(f_slope);
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count_error++;
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logger_->Debug() << msgslope << endl;
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} else {
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if (count_error < 3) {
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msgslope = "";
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count_error = 0;
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} else {
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break;
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}
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}
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}
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}
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2026-05-09 13:30:09 +08:00
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rule_stat_.current_value = f_slope_max;
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2026-05-09 11:23:45 +08:00
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if (count_error >= 3) {
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rule_stat_.alarm_value = rule_stat_.current_value;
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string msg = error_content_ + " 斜率变化量:" + msgslope;
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logger_->Debug() << msg << endl;
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query_time_range_.set_right(now_time_);
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query_time_range_.set_left(now_time_ -
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(limit_time_interval_ * (CS_AVG_SIZE)));
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return utility::build_alarm_info(MsgLevel::ERROR, rule_id_, rule_name_,
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"SLOPE", msg, query_time_range_);
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}
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} catch (const std::exception& e) {
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std::throw_with_nested(
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mix_cc::Exception(-1, "calc error", BOOST_CURRENT_LOCATION));
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}
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2026-05-09 13:30:09 +08:00
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2026-05-09 11:23:45 +08:00
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return out_alarm;
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}
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std::vector<AlarmInfo> TrendSlope::exec_task(mix_cc::time_range_t time_range) {
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std::vector<AlarmInfo> result;
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for (auto now_time = time_range.get_left();
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now_time <= time_range.get_right(); now_time += delay_time_) {
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this->now_time_ = now_time;
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auto rr1 = this->exec_mon();
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if (rr1.alarmed) {
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result.push_back(rr1);
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}
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}
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return result;
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}
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