修改编译脚本适配pqdif,同步61850日志上送逻辑
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@@ -20,8 +20,9 @@ $SRC_DIR/tinyxml2.cpp \
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./dealMsg.cpp \
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./main_thread.cpp \
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./PQSMsg.cpp \
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./pqdif_thread_processor.cpp \
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./pqdif/PQDIF.cpp \
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./pqdif_semantic_ids.cpp \
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./pqdif_thread_processor.cpp \
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./pqdif/include/cjson.c"
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INCLUDE_DIRS="-I$SRC_DIR \
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@@ -35,18 +36,20 @@ INCLUDE_DIRS="-I$SRC_DIR \
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-I./pqdif/include \
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-I. "
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LIB_DIRS="-L$LIB_DIR -L/usr/lib64 -L/usr/local/lib"
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LIB_DIRS="-L$LIB_DIR -L./pqdif/lib -L/usr/lib64 -L/usr/local/lib"
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LIBS="./cloudfront/lib/libcurl.so \
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./cloudfront/lib/libssl.so \
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./cloudfront/lib/libcrypto.so \
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./cloudfront/lib/liblog4cplus.so \
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./pqdif/lib/libpqdiflib.a \
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./pqdif/lib/libz.a \
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-lpthread -ldl -lrt \
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-lstdc++fs \
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-lz \
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./libuv.a \
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-Wl,--start-group \
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./pqdif/lib/libpqdiflib.a \
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./pqdif/lib/libz.a \
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-Wl,--end-group \
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-pthread"
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# 如果有静态 rocketmq 库就加上
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@@ -236,6 +236,14 @@ int TEST_PORT = 11000; //用于当前进程登录测试shell的端口
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std::string G_TEST_LIST = ""; //测试用的发送实际数据的终端列表
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std::vector<std::string> TESTARRAY; //解析的列表数组
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// 日志限流配置
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int G_LOG_RATE_RESET_SEC = 3600; // 1小时重置
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int G_LOG_RATE_LIMIT_SEC = 60; // 进入限流后:60秒1条
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int G_LOG_RATE_KEEP_ALL_MS = 60000; // 间隔 >= 60000ms,全部保留
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int G_LOG_RATE_KEEP_BURST_MS = 1000; // 间隔 >= 1000ms,按二级策略
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int G_LOG_RATE_KEEP_BURST_COUNT = 60; // 二级保留前60条
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int G_LOG_RATE_KEEP_HIGHFREQ_COUNT = 10; // 高频保留前10条
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//////////////////////////////////////////////////////////////////////////////////////////////////////////////////其他文件定义的函数引用声明
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bool enqueue_direct_download(const std::string& dev_id,
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@@ -413,6 +421,37 @@ void loadConfig(const std::string& filename) {
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intMap["RocketMq.TestPort"] = &TEST_PORT;
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strMap["RocketMq.TestList"] = &G_TEST_LIST;
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// ==================== 新增:日志限流配置 ====================
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intMap["LogRate.ResetSec"] = &G_LOG_RATE_RESET_SEC;
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intMap["LogRate.LimitSec"] = &G_LOG_RATE_LIMIT_SEC;
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intMap["LogRate.KeepAllMs"] = &G_LOG_RATE_KEEP_ALL_MS;
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intMap["LogRate.KeepBurstMs"] = &G_LOG_RATE_KEEP_BURST_MS;
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intMap["LogRate.KeepBurstCount"] = &G_LOG_RATE_KEEP_BURST_COUNT;
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intMap["LogRate.KeepHighFreqCount"] = &G_LOG_RATE_KEEP_HIGHFREQ_COUNT;
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// ==========================================================
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// ==================== 新增:日志限流默认值保护 ====================
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if (G_LOG_RATE_RESET_SEC <= 0)
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G_LOG_RATE_RESET_SEC = 3600;
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if (G_LOG_RATE_LIMIT_SEC <= 0)
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G_LOG_RATE_LIMIT_SEC = 60;
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if (G_LOG_RATE_KEEP_ALL_MS <= 0)
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G_LOG_RATE_KEEP_ALL_MS = 60000;
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if (G_LOG_RATE_KEEP_BURST_MS <= 0)
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G_LOG_RATE_KEEP_BURST_MS = 1000;
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if (G_LOG_RATE_KEEP_BURST_COUNT < 0)
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G_LOG_RATE_KEEP_BURST_COUNT = 60;
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if (G_LOG_RATE_KEEP_HIGHFREQ_COUNT < 0)
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G_LOG_RATE_KEEP_HIGHFREQ_COUNT = 10;
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// ================================================================
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// 2. 打开并逐行解析 INI 文件
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std::ifstream fin(filename);
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if (!fin.is_open()) {
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@@ -585,6 +624,15 @@ void printConfig() {
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printStr("WEB_FILEUPLOAD", WEB_FILEUPLOAD);
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printStr("WEB_FILEDOWNLOAD", WEB_FILEDOWNLOAD);
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std::cout << "\n// 日志限流配置\n";
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printInt("G_LOG_RATE_RESET_SEC", G_LOG_RATE_RESET_SEC);
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printInt("G_LOG_RATE_LIMIT_SEC", G_LOG_RATE_LIMIT_SEC);
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printInt("G_LOG_RATE_KEEP_ALL_MS", G_LOG_RATE_KEEP_ALL_MS);
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printInt("G_LOG_RATE_KEEP_BURST_MS", G_LOG_RATE_KEEP_BURST_MS);
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printInt("G_LOG_RATE_KEEP_BURST_COUNT", G_LOG_RATE_KEEP_BURST_COUNT);
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printInt("G_LOG_RATE_KEEP_HIGHFREQ_COUNT",G_LOG_RATE_KEEP_HIGHFREQ_COUNT);
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std::cout << "-------------------------------------\n";
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}
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@@ -50,6 +50,14 @@ extern std::string subdir;
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//日志主题
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extern std::string G_LOG_TOPIC;
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// 日志限流配置
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extern int G_LOG_RATE_RESET_SEC;
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extern int G_LOG_RATE_LIMIT_SEC;
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extern int G_LOG_RATE_KEEP_ALL_MS;
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extern int G_LOG_RATE_KEEP_BURST_MS;
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extern int G_LOG_RATE_KEEP_BURST_COUNT;
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extern int G_LOG_RATE_KEEP_HIGHFREQ_COUNT;
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////////////////////////////////////////////////////////////////////////////////////////////////////
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const int LOGTYPE_DEFAULT = LOG_CODE_OTHER;
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@@ -223,10 +231,26 @@ void refresh_log_level_cache_locked()
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class SendAppender : public Appender {
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private:
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struct RateState {
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/*struct RateState {
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uint64_t hit_count = 0; // 同一条日志累计命中次数
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std::chrono::steady_clock::time_point last_emit =
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std::chrono::steady_clock::time_point::min();
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};*/
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struct RateState {
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uint64_t pass_count; // 当前周期内已放行条数
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uint64_t suppressed_count; // 当前被抑制条数
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std::chrono::steady_clock::time_point last_emit;
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std::chrono::steady_clock::time_point last_seen;
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std::chrono::steady_clock::time_point last_reset;
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bool has_emit;
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RateState()
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: pass_count(0),
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suppressed_count(0),
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last_emit(),
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last_seen(),
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last_reset(),
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has_emit(false) {}
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};
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static std::unordered_map<std::string, RateState> s_rate_map; //频率map
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@@ -240,7 +264,7 @@ private:
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}
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// 前 3 次:1 秒一次;第 3 次起:300 秒一次,一小时恢复
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static bool should_emit(const std::string& key) {
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/*static bool should_emit(const std::string& key) {
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using namespace std::chrono;
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const auto now = steady_clock::now();
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@@ -271,6 +295,96 @@ private:
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return true;
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}
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return false;
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}*/
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static bool should_emit(const std::string& key, uint64_t& suppressed_before_emit) {
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using namespace std::chrono;
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const auto now = steady_clock::now();
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suppressed_before_emit = 0;
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std::lock_guard<std::mutex> lk(s_rate_mutex);
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RateState& st = s_rate_map[key];
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const int RESET_SEC = G_LOG_RATE_RESET_SEC ; // 1小时重置
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const int LIMIT_SEC = G_LOG_RATE_LIMIT_SEC ; // 进入限流后:多久发1条 主要控制中频和高频那些,低频的都直接放行了
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// 初始化 / 强制每小时重置
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if (st.last_reset.time_since_epoch().count() == 0) {
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st.last_reset = now;
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} else {
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auto since_reset = duration_cast<seconds>(now - st.last_reset).count();
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if (since_reset >= RESET_SEC) { //重置周期
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st = RateState();
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st.last_reset = now;
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}
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}
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// 计算当前频率档位(按“本次与上次看到该key的间隔”判断)
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// >=60秒/条:全部保留
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// [1秒, 60秒):保留前60条,然后1分钟1条
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// <1秒:保留前10条,然后1分钟1条
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int allow_burst = 0;
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if (st.last_seen.time_since_epoch().count() == 0) {
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// 第一次看到,先按“全部保留”处理
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allow_burst = -1;
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} else {
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auto gap_ms = duration_cast<milliseconds>(now - st.last_seen).count();
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if (gap_ms >= G_LOG_RATE_KEEP_ALL_MS) { //什么时候不需要限流 //低频 //如果这里设置的很低,就不会限流
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allow_burst = -1; // 全部保留
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} else if (gap_ms >= G_LOG_RATE_KEEP_BURST_MS) {
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allow_burst = G_LOG_RATE_KEEP_BURST_COUNT; // 前60条 //中频 //如果这里设置的比低频低,也不会生效
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} else {
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allow_burst = G_LOG_RATE_KEEP_HIGHFREQ_COUNT; // 前10条 //高频
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}
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}
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st.last_seen = now;
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// 档位1:全部保留
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if (allow_burst == -1) {
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suppressed_before_emit = st.suppressed_count;
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st.suppressed_count = 0;
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st.pass_count++;
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st.last_emit = now;
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st.has_emit = true;
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return true;
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}
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// 档位2/3:先放前N条
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if (st.pass_count < (uint64_t)allow_burst) {
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suppressed_before_emit = st.suppressed_count;
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st.suppressed_count = 0;
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st.pass_count++;
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st.last_emit = now;
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st.has_emit = true;
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return true;
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}
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// 超过前N条后:进入 1分钟1条
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if (!st.has_emit) {
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suppressed_before_emit = st.suppressed_count;
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st.suppressed_count = 0;
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st.pass_count++;
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st.last_emit = now;
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st.has_emit = true;
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return true;
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}
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auto elapsed = duration_cast<seconds>(now - st.last_emit).count();
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if (elapsed >= LIMIT_SEC) {
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suppressed_before_emit = st.suppressed_count;
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st.suppressed_count = 0;
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st.pass_count++;
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st.last_emit = now;
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st.has_emit = true;
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return true;
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}
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// 本条被抑制
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st.suppressed_count++;
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return false;
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}
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@@ -396,8 +510,17 @@ protected:
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// ★新增:限频判断(同一条日志前 5 次 1 秒一次;之后 300 秒一次)
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const std::string key = make_key(logger_name, level, code, msg);
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if (!should_emit(key)) {
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return;
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uint64_t suppressed_before_emit = 0;
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if (!should_emit(key, suppressed_before_emit)) return;
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// 如果本次输出前压掉过日志,则在 log 文本后追加统计
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std::string final_msg = msg;
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if (suppressed_before_emit > 0) {
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std::ostringstream suppressed_oss;
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suppressed_oss << msg << " 【已过滤重复同类日志 "
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<< suppressed_before_emit
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<< " 条】";
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final_msg = suppressed_oss.str();
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}
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std::ostringstream oss;
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@@ -409,7 +532,7 @@ protected:
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<< "\",\"grade\":\"" << get_level_str(level)
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// ★建议:code 用数字(不是字符串)
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<< "\",\"code\":" << code
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<< ",\"log\":\"" << escape_json(msg) << "\"}";
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<< ",\"log\":\"" << escape_json(final_msg) << "\"}";
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queue_data_t connect_info;
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connect_info.strTopic = G_LOG_TOPIC;
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@@ -244,6 +244,8 @@ void process_received_message(string mac, string id,const char* data, size_t len
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//装置主动上送报文 暂态事件报文/暂态波形文件报文
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if (udata[8] == static_cast<unsigned char>(MsgResponseType::Response_Event)) {
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//处理主动上送的暂态事件报文
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std::cout << "GET: MsgResponseType::Response_Event";
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DIY_INFOLOG_CODE(id, 1, static_cast<int>(LogCode::LOG_CODE_TRANSIENT), "收到装置主动上送的暂态事件信息报文");
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NewTaglogbuffer event = NewTaglogbuffer::createFromData(parser.RecvData.data(), parser.RecvData.size());
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//获取测点id
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@@ -365,6 +367,8 @@ void process_received_message(string mac, string id,const char* data, size_t len
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}
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else if (udata[8] == static_cast<unsigned char>(MsgResponseType::Response_ActiveSOEInfo)) {
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//处理主动上送的波形文件信息报文
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std::cout << "GET: MsgResponseType::Response_ActiveSOEInfo";
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DIY_INFOLOG_CODE(id, 1, static_cast<int>(LogCode::LOG_CODE_TRANSIENT), "收到装置主动上送的暂态波形文件信息报文");
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unsigned char file_type = udata[12];//录波文件类型数 cfg dat hdr 1-3
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unsigned char line_id = udata[13];//录波测点 1-6
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const uint8_t* data_ptr = parser.RecvData.data() + 2;//数据体去除前两位
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