ESP32: add CPUUsageTracker – core-0 load averages (1/5/15 min)
Track CPU utilisation on core 0 using a FreeRTOS tick hook that increments per-tick idle/busy counters, sampled every 5s by an esp_timer callback. Exponential moving averages with Linux-style time constants (1 / 5 / 15 min) are maintained in software: DECAY1 = exp(-5/60) ≈ 0.9200 (1-minute window) DECAY5 = exp(-5/300) ≈ 0.9835 (5-minute window) DECAY15 = exp(-5/900) ≈ 0.9945 (15-minute window) Core 1 is excluded intentionally: it runs the Arduino loopTask at 100% load for LoRa packet processing, so its figure is always 1.0 and carries no diagnostic value. All other tasks are pinned to core 0 by task_pinning.c, so core-0 load reflects the true system utilisation. New files: arch/esp32/CPUUsageTracker.h – class declaration arch/esp32/CPUUsageTracker.cpp – tick hook + esp_timer sampling Integration: MyMesh::begin() calls _cpu_tracker.begin() on ESP32 builds. formatStatsReply() emits "load_avg":[<1m>,<5m>,<15m>] in the compact stats JSON payload. formatWebStatsSummaryJson() adds the same field to the web-panel stats endpoint under core.load_avg. The web-panel HUD gains a "Load Avg" metric tile showing all three values side-by-side; the core-metrics grid is widened from 4 to 5 columns. The tile is rendered conditionally so older firmware (or non-ESP32 builds) that omit the field degrade gracefully. CPUUsageTracker.cpp is added to the esp32_base build_src_filter in platformio.ini.
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@@ -0,0 +1,51 @@
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#ifdef ESP32
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#include "CPUUsageTracker.h"
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#include "esp_freertos_hooks.h"
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volatile uint32_t CPUUsageTracker::s_idle_ticks = 0;
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volatile uint32_t CPUUsageTracker::s_busy_ticks = 0;
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TaskHandle_t CPUUsageTracker::s_idle_handle = nullptr;
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void IRAM_ATTR CPUUsageTracker::s_tick_hook() { // ← was CPUsageTracker (typo)
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if (xTaskGetCurrentTaskHandle() == s_idle_handle) {
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s_idle_ticks++;
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} else {
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s_busy_ticks++;
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}
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}
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void CPUUsageTracker::s_sample_cb(void* arg) {
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static_cast<CPUUsageTracker*>(arg)->_onSample(); // ← was CpuUsageTracker (old name)
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}
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void CPUUsageTracker::_onSample() {
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uint32_t busy = s_busy_ticks;
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uint32_t idle = s_idle_ticks;
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uint32_t db = busy - _last_busy;
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uint32_t di = idle - _last_idle;
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_last_busy = busy;
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_last_idle = idle;
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uint32_t total = db + di;
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float sample = (total > 0) ? (float)db / total : 0.0f;
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_avg1 = DECAY1 * _avg1 + (1.0f - DECAY1) * sample;
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_avg5 = DECAY5 * _avg5 + (1.0f - DECAY5) * sample;
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_avg15 = DECAY15 * _avg15 + (1.0f - DECAY15) * sample;
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}
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void CPUUsageTracker::begin() {
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s_idle_handle = xTaskGetIdleTaskHandleForCPU(0);
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esp_register_freertos_tick_hook_for_cpu(s_tick_hook, 0);
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esp_timer_create_args_t args = {
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.callback = s_sample_cb,
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.arg = this,
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.dispatch_method = ESP_TIMER_TASK,
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.name = "cpu_avg"
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};
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esp_timer_create(&args, &_timer);
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esp_timer_start_periodic(_timer, 5000000ULL); // 5 seconds
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}
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#endif
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@@ -0,0 +1,40 @@
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#pragma once
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#ifdef ESP32
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#include <stdint.h>
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#include "esp_attr.h"
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#include "esp_timer.h"
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#include "freertos/FreeRTOS.h"
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#include "freertos/task.h"
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class CPUUsageTracker {
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public:
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void begin();
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float getLoadAvg1() const { return _avg1; }
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float getLoadAvg5() const { return _avg5; }
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float getLoadAvg15() const { return _avg15; }
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private:
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static constexpr float DECAY1 = 0.920044415f; // exp(-5/60)
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static constexpr float DECAY5 = 0.983471454f; // exp(-5/300)
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static constexpr float DECAY15 = 0.994459848f; // exp(-5/900)
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static volatile uint32_t s_idle_ticks;
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static volatile uint32_t s_busy_ticks;
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static TaskHandle_t s_idle_handle;
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static void IRAM_ATTR s_tick_hook();
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static void s_sample_cb(void* arg);
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uint32_t _last_idle = 0;
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uint32_t _last_busy = 0;
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float _avg1 = 0.0f;
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float _avg5 = 0.0f;
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float _avg15 = 0.0f;
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esp_timer_handle_t _timer = nullptr;
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void _onSample();
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};
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#endif
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@@ -1269,6 +1269,9 @@ MyMesh::MyMesh(mesh::MainBoard &board, mesh::Radio &radio, mesh::MillisecondCloc
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void MyMesh::begin(FILESYSTEM *fs, ArchiveStorage* archive) {
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mesh::Mesh::begin();
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#if defined(ESP32)
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_cpu_tracker.begin();
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#endif
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_fs = fs;
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_archive = archive;
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last_millis = millis();
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@@ -1529,9 +1532,10 @@ void MyMesh::removeNeighbor(const uint8_t *pubkey, int key_len) {
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void MyMesh::formatStatsReply(char *reply, size_t reply_size) {
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snprintf(reply,
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reply_size,
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"{\"battery_mv\":%u,\"uptime_secs\":%u,\"errors\":%u,\"queue_len\":%u}",
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"{\"battery_mv\":%u,\"uptime_secs\":%u,\"load_avg\":[%.2f,%.2f,%.2f],\"errors\":%u,\"queue_len\":%u}",
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getBatteryMilliVolts(true),
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_ms->getMillis() / 1000,
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_cpu_tracker.getLoadAvg1(), _cpu_tracker.getLoadAvg5(), _cpu_tracker.getLoadAvg15(),
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_err_flags,
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_mgr->getOutboundTotal());
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}
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@@ -2527,7 +2531,7 @@ bool MyMesh::formatWebStatsSummaryJson(char* reply, size_t reply_size) {
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"\"archive\":{\"logical\":\"%s\",\"available\":%s,\"path\":\"%s\",\"type\":\"%s\","
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"\"total_bytes\":%llu,\"used_bytes\":%llu},"
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"\"core\":{\"battery_mv\":%u,\"battery_pct\":%d,\"battery_display_pct\":%d,\"battery_min_mv\":%u,\"battery_max_mv\":%u,"
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"\"uptime_secs\":%lu,\"errors\":%u,\"queue_len\":%u,"
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"\"uptime_secs\":%lu,\"load_avg\":[%.2f,%.2f,%.2f],\"errors\":%u,\"queue_len\":%u,"
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"\"external_power\":%s,\"charging\":%s,\"vbus\":%s},"
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"\"radio\":{\"noise_floor\":%d,\"last_rssi\":%.2f,\"last_snr\":%.2f,\"tx_air_secs\":%lu,\"rx_air_secs\":%lu},"
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"\"packets\":{\"recv\":%u,\"sent\":%u,\"flood_tx\":%u,\"direct_tx\":%u,\"flood_rx\":%u,\"direct_rx\":%u,"
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@@ -2560,6 +2564,7 @@ bool MyMesh::formatWebStatsSummaryJson(char* reply, size_t reply_size) {
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battery_min_mv,
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battery_max_mv,
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static_cast<unsigned long>(uptime_millis / 1000),
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_cpu_tracker.getLoadAvg1(), _cpu_tracker.getLoadAvg5(), _cpu_tracker.getLoadAvg15(),
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_err_flags,
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static_cast<unsigned>(_mgr->getOutboundTotal()),
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board.isExternalPowered() ? "true" : "false",
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@@ -11,6 +11,7 @@
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#include <LittleFS.h>
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#elif defined(ESP32)
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#include <SPIFFS.h>
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#include "../../arch/esp32/CPUUsageTracker.h"
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#endif
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#ifdef WITH_RS232_BRIDGE
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@@ -176,6 +177,9 @@ class MyMesh : public mesh::Mesh, public CommonCLICallbacks, public WebPanelComm
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#endif
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#if defined(ESP_PLATFORM) && WITH_WEB_PANEL
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WebService web;
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#endif
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#if defined(ESP32)
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CPUUsageTracker _cpu_tracker;
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#endif
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StatsHistory _stats_history;
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struct {
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@@ -69,6 +69,7 @@ build_flags = ${arduino_base.build_flags}
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build_src_filter = ${arduino_base.build_src_filter}
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+<../arch/esp32/task_pinning.c>
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+<../arch/esp32/tls_cipher_restrict.c>
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+<../arch/esp32/CPUUsageTracker.cpp>
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[esp32_ota]
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lib_deps =
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@@ -494,11 +494,13 @@ const char kWebPanelAppHtml[] PROGMEM = R"HTML(
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.metric-grid-4 { grid-template-columns:repeat(4,minmax(0,1fr)); }
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.core-grid { display:grid; grid-template-columns:repeat(3,minmax(0,1fr)); gap:12px; }
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.core-grid .hud-row { align-content:start; }
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.core-metrics { grid-template-columns:repeat(4,minmax(0,1fr)); }
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.core-metrics { grid-template-columns:repeat(5,minmax(0,1fr)); }
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.metric { background:rgba(255,255,255,.45); border:1px solid var(--border); border-radius:12px; padding:10px; }
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:root[data-theme="dark"] .metric { background:rgba(0,0,0,.16); }
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.metric-label { font-size:11px; color:var(--text-muted); text-transform:uppercase; letter-spacing:.06em; }
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.metric-value { margin-top:4px; font-size:16px; font-weight:700; color:var(--text); }
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.metric-spread { display:flex; justify-content:space-between; margin-top:4px; }
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.metric-spread span { font-size:16px; font-weight:700; color:var(--text); }
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.events-table-wrap { overflow-x:auto; border:1px solid var(--border); border-radius:12px; }
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.events-table { width:100%; border-collapse:collapse; }
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.events-table th, .events-table td { padding:10px 12px; text-align:left; font-size:13px; }
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@@ -1457,6 +1459,14 @@ const char kWebPanelAppHtml[] PROGMEM = R"HTML(
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<div class="metric-grid core-metrics">
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${renderMetric("Uptime", formatDuration(core.uptime_secs))}
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${renderMetric("Battery", (core.battery_mv || 0) + " mV")}
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${Array.isArray(core.load_avg) ? `<div class="metric">
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<div class="metric-label">Load Avg</div>
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<div class="metric-spread">
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<span>${core.load_avg[0].toFixed(2)}</span>
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<span>${core.load_avg[1].toFixed(2)}</span>
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<span>${core.load_avg[2].toFixed(2)}</span>
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</div>
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</div>` : ""}
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${renderMetric("Queue", String(core.queue_len ?? 0))}
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${renderMetric("Errors", String(core.errors ?? 0))}
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</div>
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