mirror of
https://github.com/MarekZegare4/MeshCore-Solo.git
synced 2026-07-26 23:08:11 +00:00
Previously every key press while locked reset _lock_wake_until to now+5s, so multiple presses (or spurious button events) kept extending the window. Now the 5s timer is set only when the display first wakes from dark. The unlock sequence still extends the window on each Back+Enter step. Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
1598 lines
54 KiB
C++
1598 lines
54 KiB
C++
#include "UITask.h"
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#include <helpers/TxtDataHelpers.h>
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#include "../MyMesh.h"
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#include "../MsgExpand.h"
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#include "target.h"
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#ifdef WIFI_SSID
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#include <WiFi.h>
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#endif
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#ifndef AUTO_OFF_MILLIS
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#define AUTO_OFF_MILLIS 15000 // 15 seconds
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#endif
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#define BOOT_SCREEN_MILLIS 3000 // 3 seconds
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#ifdef PIN_STATUS_LED
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#define LED_ON_MILLIS 20
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#define LED_ON_MSG_MILLIS 200
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#define LED_CYCLE_MILLIS 4000
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#endif
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#define LONG_PRESS_MILLIS 1200
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#ifndef UI_RECENT_LIST_SIZE
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#define UI_RECENT_LIST_SIZE 4
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#endif
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#if UI_HAS_JOYSTICK
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#define PRESS_LABEL "press Enter"
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#else
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#define PRESS_LABEL "long press"
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#endif
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#include "icons.h"
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class SplashScreen : public UIScreen {
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UITask* _task;
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unsigned long dismiss_after;
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char _version_info[12];
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char _plus_ver[12];
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public:
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SplashScreen(UITask* task) : _task(task) {
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// strip off dash and commit hash: v1.2.3-abcdef -> v1.2.3
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const char *ver = FIRMWARE_VERSION;
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const char *dash = strchr(ver, '-');
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int len = dash ? dash - ver : strlen(ver);
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if (len >= sizeof(_version_info)) len = sizeof(_version_info) - 1;
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memcpy(_version_info, ver, len);
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_version_info[len] = 0;
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// extract plus version: v1.15-plus.1.4-SHA -> "1.4"
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_plus_ver[0] = '\0';
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const char *plus = strstr(ver, "plus.");
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if (plus) {
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plus += 5; // skip "plus."
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const char *end = strchr(plus, '-');
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int plen = end ? end - plus : strlen(plus);
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if (plen >= (int)sizeof(_plus_ver)) plen = sizeof(_plus_ver) - 1;
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memcpy(_plus_ver, plus, plen);
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_plus_ver[plen] = '\0';
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}
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dismiss_after = millis() + BOOT_SCREEN_MILLIS;
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}
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int render(DisplayDriver& display) override {
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// meshcore logo
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display.setColor(DisplayDriver::LIGHT);
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int logoWidth = 128;
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display.drawXbm((display.width() - logoWidth) / 2, 3, meshcore_logo, logoWidth, 13);
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// version info
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display.setTextSize(2);
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display.drawTextCentered(display.width()/2, 22, _version_info);
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display.setTextSize(1);
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display.drawTextCentered(display.width()/2, 42, FIRMWARE_BUILD_DATE);
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#ifdef FIRMWARE_PLUS_BUILD
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display.fillRect(0, 53, display.width(), 10);
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display.setColor(DisplayDriver::DARK);
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char plus_label[24];
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if (_plus_ver[0])
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snprintf(plus_label, sizeof(plus_label), "Plus %s for Wio", _plus_ver);
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else
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snprintf(plus_label, sizeof(plus_label), "Plus for Wio");
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display.drawTextCentered(display.width()/2, 54, plus_label);
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display.setColor(DisplayDriver::LIGHT);
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#endif
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return 1000;
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}
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void poll() override {
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if (millis() >= dismiss_after) {
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_task->gotoHomeScreen();
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}
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}
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};
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static const int QUICK_MSGS_MAX = 10;
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// Bit positions for NodePrefs::home_pages_mask.
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// Bit=1 means page is shown. 0 in the field means ALL visible (default/unset).
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static const uint16_t HP_CLOCK = 1 << 0;
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static const uint16_t HP_RECENT = 1 << 1;
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static const uint16_t HP_RADIO = 1 << 2;
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static const uint16_t HP_BLUETOOTH = 1 << 3;
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static const uint16_t HP_ADVERT = 1 << 4;
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static const uint16_t HP_GPS = 1 << 5;
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static const uint16_t HP_SENSORS = 1 << 6;
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static const uint16_t HP_TOOLS = 1 << 7;
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static const uint16_t HP_SHUTDOWN = 1 << 8;
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static const uint16_t HP_ALL = 0x01FF;
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#include "KeyboardWidget.h"
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#include "FullscreenMsgView.h"
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#include "SensorPlaceholders.h"
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#include "SettingsScreen.h"
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#include "QuickMsgScreen.h"
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// ── Custom screens (separate files to ease upstream merges) ───────────────────
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#include "RingtoneEditorScreen.h"
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#include "BotScreen.h"
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#include "NearbyScreen.h"
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#include "DashboardConfigScreen.h"
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#include "AutoAdvertScreen.h"
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#include "ToolsScreen.h"
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// ── HomeScreen ────────────────────────────────────────────────────────────────
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class HomeScreen : public UIScreen {
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enum HomePage {
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CLOCK,
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RECENT,
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RADIO,
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BLUETOOTH,
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ADVERT,
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#if ENV_INCLUDE_GPS == 1
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GPS,
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#endif
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#if UI_SENSORS_PAGE == 1
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SENSORS,
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#endif
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SETTINGS,
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TOOLS,
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QUICK_MSG,
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SHUTDOWN,
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Count // keep as last
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};
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UITask* _task;
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mesh::RTCClock* _rtc;
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SensorManager* _sensors;
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NodePrefs* _node_prefs;
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uint8_t _page;
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bool _shutdown_init;
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AdvertPath recent[UI_RECENT_LIST_SIZE];
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int pageBit(int page) const {
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if (page == CLOCK) return 0;
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if (page == RECENT) return 1;
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if (page == RADIO) return 2;
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if (page == BLUETOOTH) return 3;
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if (page == ADVERT) return 4;
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#if ENV_INCLUDE_GPS == 1
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if (page == GPS) return 5;
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#endif
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#if UI_SENSORS_PAGE == 1
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if (page == SENSORS) return 6;
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#endif
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if (page == TOOLS) return 7;
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if (page == SHUTDOWN) return 8;
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return -1; // SETTINGS, QUICK_MSG always visible
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}
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bool isPageVisible(int page) const {
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int bit = pageBit(page);
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if (bit < 0) return true;
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uint16_t mask = (_node_prefs && _node_prefs->home_pages_mask) ? _node_prefs->home_pages_mask : HP_ALL;
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return (mask >> bit) & 1;
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}
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int navPage(int from, int dir) const {
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for (int i = 1; i < (int)Count; i++) {
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int next = ((from + dir * i) % (int)Count + (int)Count) % (int)Count;
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if (isPageVisible(next)) return next;
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}
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return from;
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}
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int renderBatteryIndicator(DisplayDriver& display, uint16_t batteryMilliVolts) {
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#ifndef BATT_MIN_MILLIVOLTS
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#define BATT_MIN_MILLIVOLTS 3200
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#endif
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// LiPo discharge curve: voltage (mV) → raw capacity (%)
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static const struct { uint16_t mv; uint8_t pct; } CURVE[] = {
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{3200, 0}, {3300, 3}, {3400, 8}, {3500, 15},
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{3600, 25}, {3650, 33}, {3700, 45}, {3750, 58},
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{3800, 68}, {3900, 77}, {4000, 86}, {4100, 93}, {4200, 100}
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};
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static const int CURVE_LEN = sizeof(CURVE) / sizeof(CURVE[0]);
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auto curveAt = [&](int mv) -> int {
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if (mv <= (int)CURVE[0].mv) return CURVE[0].pct;
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if (mv >= (int)CURVE[CURVE_LEN-1].mv) return CURVE[CURVE_LEN-1].pct;
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for (int i = 1; i < CURVE_LEN; i++) {
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if (mv <= (int)CURVE[i].mv) {
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int span_mv = CURVE[i].mv - CURVE[i-1].mv;
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int span_pct = CURVE[i].pct - CURVE[i-1].pct;
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return CURVE[i-1].pct + (mv - (int)CURVE[i-1].mv) * span_pct / span_mv;
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}
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}
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return 100;
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};
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int low_mv = (_node_prefs && _node_prefs->low_batt_mv > 0)
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? (int)_node_prefs->low_batt_mv : BATT_MIN_MILLIVOLTS;
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int raw_pct = curveAt((int)batteryMilliVolts);
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int low_pct = curveAt(low_mv);
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// rescale so low_mv = 0% and 4200mV = 100%
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int pct = (low_pct >= 100) ? 0
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: (raw_pct - low_pct) * 100 / (100 - low_pct);
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if (pct < 0) pct = 0;
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if (pct > 100) pct = 100;
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uint8_t mode = (_node_prefs && _node_prefs->batt_display_mode < 3)
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? _node_prefs->batt_display_mode : 0;
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display.setTextSize(1);
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display.setColor(DisplayDriver::LIGHT);
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int battLeftX;
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if (mode == 1) { // percent
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char buf[6];
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sprintf(buf, "%d%%", pct);
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battLeftX = display.width() - display.getTextWidth(buf) - 1;
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display.setCursor(battLeftX, 0);
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display.print(buf);
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} else if (mode == 2) { // voltage
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char buf[8];
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sprintf(buf, "%u.%02uV", batteryMilliVolts / 1000, (batteryMilliVolts % 1000) / 10);
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battLeftX = display.width() - display.getTextWidth(buf) - 1;
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display.setCursor(battLeftX, 0);
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display.print(buf);
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} else { // icon
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const int iconWidth = 24, iconHeight = 8;
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battLeftX = display.width() - iconWidth - 5;
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display.drawRect(battLeftX, 0, iconWidth, iconHeight);
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display.fillRect(battLeftX + iconWidth, iconHeight / 4, 3, iconHeight / 2);
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int fillWidth = (pct * (iconWidth - 4)) / 100;
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display.fillRect(battLeftX + 2, 2, fillWidth, iconHeight - 4);
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}
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#ifdef PIN_BUZZER
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if (_task->isBuzzerQuiet()) {
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display.setColor(DisplayDriver::LIGHT);
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display.drawXbm(battLeftX - 9, 0, muted_icon, 8, 8);
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}
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#endif
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// BT connection indicator (left of muted/battery icons)
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int leftmostX = battLeftX;
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if (_task->isSerialEnabled()) {
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#ifdef PIN_BUZZER
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int btX = battLeftX - 18;
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#else
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int btX = battLeftX - 9;
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#endif
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if (_task->hasConnection()) {
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display.setColor(DisplayDriver::LIGHT);
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display.fillRect(btX - 1, 0, 7, 7);
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display.setColor(DisplayDriver::DARK);
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display.setCursor(btX, 0);
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display.print("B");
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display.setColor(DisplayDriver::LIGHT);
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} else {
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display.setColor(DisplayDriver::LIGHT);
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display.setCursor(btX, 0);
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display.print("b");
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}
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leftmostX = btX - 1;
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// "A" indicator — left of BT, blinks 50% duty at 1s period
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if (_node_prefs && _node_prefs->advert_auto_interval_sec > 0) {
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int aX = leftmostX - 8;
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if ((millis() % 4000) < 2000) {
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display.setColor(DisplayDriver::LIGHT);
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display.fillRect(aX - 1, 0, 7, 7);
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display.setColor(DisplayDriver::DARK);
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display.setCursor(aX, 0);
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display.print("A");
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display.setColor(DisplayDriver::LIGHT);
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}
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leftmostX = aX - 1;
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}
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}
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return leftmostX;
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}
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CayenneLPP sensors_lpp;
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int sensors_nb = 0;
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bool sensors_scroll = false;
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int sensors_scroll_offset = 0;
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int next_sensors_refresh = 0;
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void refresh_sensors() {
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if (millis() > next_sensors_refresh) {
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sensors_lpp.reset();
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sensors_nb = 0;
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sensors_lpp.addVoltage(TELEM_CHANNEL_SELF, (float)board.getBattMilliVolts() / 1000.0f);
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sensors.querySensors(0xFF, sensors_lpp);
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LPPReader reader (sensors_lpp.getBuffer(), sensors_lpp.getSize());
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uint8_t channel, type;
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while(reader.readHeader(channel, type)) {
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reader.skipData(type);
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sensors_nb ++;
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}
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sensors_scroll = sensors_nb > UI_RECENT_LIST_SIZE;
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#if AUTO_OFF_MILLIS > 0
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next_sensors_refresh = millis() + 5000; // refresh sensor values every 5 sec
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#else
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next_sensors_refresh = millis() + 60000; // refresh sensor values every 1 min
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#endif
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}
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}
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public:
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HomeScreen(UITask* task, mesh::RTCClock* rtc, SensorManager* sensors, NodePrefs* node_prefs)
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: _task(task), _rtc(rtc), _sensors(sensors), _node_prefs(node_prefs), _page(0),
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_shutdown_init(false), sensors_lpp(200) { }
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void poll() override {
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if (_shutdown_init && !_task->isButtonPressed()) { // must wait for USR button to be released
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_task->shutdown();
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}
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}
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int render(DisplayDriver& display) override {
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char tmp[80];
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// node name + battery — hidden on CLOCK page (full screen used for dashboard)
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if (_page != CLOCK) {
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display.setTextSize(1);
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display.setColor(DisplayDriver::LIGHT);
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char filtered_name[sizeof(_node_prefs->node_name)];
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display.translateUTF8ToBlocks(filtered_name, _node_prefs->node_name, sizeof(filtered_name));
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int rightEdge = renderBatteryIndicator(display, _task->getBattMilliVolts());
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display.setColor(DisplayDriver::LIGHT);
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display.drawTextEllipsized(0, 0, rightEdge - 2, filtered_name);
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}
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// ensure current page is visible (e.g. after settings change)
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if (!isPageVisible(_page)) _page = navPage(_page, +1);
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// curr page indicator — hidden on CLOCK page (full screen used for dashboard)
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if (_page != CLOCK) {
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int vis_count = 0, curr_vis = 0;
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for (int i = 0; i < (int)Count; i++) {
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if (!isPageVisible(i)) continue;
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if (i == _page) curr_vis = vis_count;
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vis_count++;
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}
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int y = 14;
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int x = display.width() / 2 - 5 * (vis_count - 1);
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int vi = 0;
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for (int i = 0; i < (int)Count; i++) {
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if (!isPageVisible(i)) continue;
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if (vi == curr_vis) display.fillRect(x-1, y-1, 3, 3);
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else display.fillRect(x, y, 1, 1);
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x += 10; vi++;
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}
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}
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if (_page == HomePage::CLOCK) {
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uint32_t unix_ts = _rtc->getCurrentTime();
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if (unix_ts < 1000000000UL) {
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display.setColor(DisplayDriver::LIGHT);
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display.setTextSize(1);
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display.drawTextCentered(display.width() / 2, 25, "! No time sync");
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display.drawTextCentered(display.width() / 2, 40, "Enable GPS or");
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display.drawTextCentered(display.width() / 2, 51, "connect app");
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} else {
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int8_t tz = _node_prefs ? _node_prefs->tz_offset_hours : 0;
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unix_ts += (int32_t)tz * 3600;
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time_t t = (time_t)unix_ts;
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struct tm* ti = gmtime(&t);
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char buf[24];
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display.setColor(DisplayDriver::LIGHT);
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display.setTextSize(2);
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bool show_sec = !_node_prefs || !_node_prefs->clock_hide_seconds;
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if (show_sec)
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sprintf(buf, "%02d:%02d:%02d", ti->tm_hour, ti->tm_min, ti->tm_sec);
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else
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sprintf(buf, "%02d:%02d", ti->tm_hour, ti->tm_min);
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display.drawTextCentered(display.width() / 2, 0, buf);
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display.setTextSize(1);
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static const char* wd[] = {"Sun","Mon","Tue","Wed","Thu","Fri","Sat"};
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static const char* mo[] = {"Jan","Feb","Mar","Apr","May","Jun","Jul","Aug","Sep","Oct","Nov","Dec"};
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sprintf(buf, "%s %d %s %d", wd[ti->tm_wday], ti->tm_mday, mo[ti->tm_mon], 1900 + ti->tm_year);
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display.drawTextCentered(display.width() / 2, 19, buf);
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display.fillRect(0, 28, display.width(), 1);
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// dashboard data fields
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if (_node_prefs) {
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refresh_sensors();
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static const int FIELD_Y[] = { 31, 41, 51 };
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for (int fi = 0; fi < 3; fi++) {
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uint8_t field = _node_prefs->dashboard_fields[fi];
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if (field == DASH_NONE) continue;
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char label[10], val[20];
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label[0] = '\0';
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val[0] = '\0';
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if (field == DASH_BATT) {
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strcpy(label, "Batt");
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uint16_t mv = _task->getBattMilliVolts();
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if (mv > 0) snprintf(val, sizeof(val), "%u.%02uV", mv/1000, (mv%1000)/10);
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else strcpy(val, "--");
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} else if (field == DASH_GPS) {
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strcpy(label, "GPS");
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#if ENV_INCLUDE_GPS == 1
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LocationProvider* loc = sensors.getLocationProvider();
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if (loc && loc->isValid())
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snprintf(val, sizeof(val), "%.3f %.3f",
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loc->getLatitude()/1000000.0f, loc->getLongitude()/1000000.0f);
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else
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strcpy(val, "no fix");
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#else
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strcpy(val, "--");
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#endif
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} else if (field == DASH_NODES) {
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strcpy(label, "Nodes");
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snprintf(val, sizeof(val), "%d", the_mesh.getNumContacts());
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} else if (field == DASH_MSGS) {
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strcpy(label, "Msgs");
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int unread = _task->getDMUnreadTotal() + _task->getChannelUnreadCount() + _task->getRoomUnreadCount();
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snprintf(val, sizeof(val), "%d", unread);
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} else {
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uint8_t lpp_type = 0;
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switch (field) {
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case DASH_TEMP: strcpy(label, "Temp"); lpp_type = LPP_TEMPERATURE; break;
|
|
case DASH_HUM: strcpy(label, "Hum"); lpp_type = LPP_RELATIVE_HUMIDITY; break;
|
|
case DASH_PRES: strcpy(label, "Pres"); lpp_type = LPP_BAROMETRIC_PRESSURE; break;
|
|
case DASH_ALT: strcpy(label, "Alt"); lpp_type = LPP_ALTITUDE; break;
|
|
case DASH_LUX: strcpy(label, "Lux"); lpp_type = LPP_LUMINOSITY; break;
|
|
case DASH_CO2: strcpy(label, "CO2"); lpp_type = LPP_CONCENTRATION; break;
|
|
}
|
|
if (lpp_type) {
|
|
LPPReader r(sensors_lpp.getBuffer(), sensors_lpp.getSize());
|
|
uint8_t ch, type;
|
|
while (r.readHeader(ch, type)) {
|
|
if (type == lpp_type) {
|
|
float v;
|
|
switch (lpp_type) {
|
|
case LPP_TEMPERATURE: r.readTemperature(v); snprintf(val, sizeof(val), "%.1f\xf8""C", v); break;
|
|
case LPP_RELATIVE_HUMIDITY: r.readRelativeHumidity(v); snprintf(val, sizeof(val), "%.0f%%", v); break;
|
|
case LPP_BAROMETRIC_PRESSURE: r.readPressure(v); snprintf(val, sizeof(val), "%.0fhPa", v); break;
|
|
case LPP_ALTITUDE: r.readAltitude(v); snprintf(val, sizeof(val), "%.0fm", v); break;
|
|
case LPP_LUMINOSITY: r.readLuminosity(v); snprintf(val, sizeof(val), "%.0flux", v); break;
|
|
case LPP_CONCENTRATION: r.readConcentration(v); snprintf(val, sizeof(val), "%.0fppm", v); break;
|
|
}
|
|
break;
|
|
}
|
|
r.skipData(type);
|
|
}
|
|
}
|
|
if (!val[0]) strcpy(val, "--");
|
|
}
|
|
|
|
if (val[0] && label[0]) {
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
display.setCursor(0, FIELD_Y[fi]);
|
|
display.print(label);
|
|
int vw = display.getTextWidth(val);
|
|
display.setCursor(display.width() - vw - 1, FIELD_Y[fi]);
|
|
display.print(val);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
} else if (_page == HomePage::RECENT) {
|
|
the_mesh.getRecentlyHeard(recent, UI_RECENT_LIST_SIZE);
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
int y = 20;
|
|
for (int i = 0; i < UI_RECENT_LIST_SIZE; i++, y += 11) {
|
|
auto a = &recent[i];
|
|
if (a->name[0] == 0) continue; // empty slot
|
|
int secs = _rtc->getCurrentTime() - a->recv_timestamp;
|
|
if (secs < 60) {
|
|
sprintf(tmp, "%ds", secs);
|
|
} else if (secs < 60*60) {
|
|
sprintf(tmp, "%dm", secs / 60);
|
|
} else {
|
|
sprintf(tmp, "%dh", secs / (60*60));
|
|
}
|
|
|
|
int timestamp_width = display.getTextWidth(tmp);
|
|
int max_name_width = display.width() - timestamp_width - 1;
|
|
|
|
char filtered_recent_name[sizeof(a->name)];
|
|
display.translateUTF8ToBlocks(filtered_recent_name, a->name, sizeof(filtered_recent_name));
|
|
display.drawTextEllipsized(0, y, max_name_width, filtered_recent_name);
|
|
display.setCursor(display.width() - timestamp_width - 1, y);
|
|
display.print(tmp);
|
|
}
|
|
} else if (_page == HomePage::RADIO) {
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
display.setTextSize(1);
|
|
// freq / sf
|
|
display.setCursor(0, 20);
|
|
sprintf(tmp, "FQ: %06.3f SF: %d", _node_prefs->freq, _node_prefs->sf);
|
|
display.print(tmp);
|
|
|
|
display.setCursor(0, 31);
|
|
sprintf(tmp, "BW: %03.2f CR: %d", _node_prefs->bw, _node_prefs->cr);
|
|
display.print(tmp);
|
|
|
|
// tx power, noise floor
|
|
display.setCursor(0, 42);
|
|
sprintf(tmp, "TX: %ddBm", _node_prefs->tx_power_dbm);
|
|
display.print(tmp);
|
|
display.setCursor(0, 53);
|
|
sprintf(tmp, "Noise floor: %d", radio_driver.getNoiseFloor());
|
|
display.print(tmp);
|
|
} else if (_page == HomePage::BLUETOOTH) {
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
display.drawXbm((display.width() - 32) / 2, 14,
|
|
_task->isSerialEnabled() ? bluetooth_on : bluetooth_off,
|
|
32, 32);
|
|
display.setTextSize(1);
|
|
if (_task->isSerialEnabled() && !_task->hasConnection() && the_mesh.getBLEPin() != 0) {
|
|
char pin_buf[16];
|
|
snprintf(pin_buf, sizeof(pin_buf), "PIN: %d", the_mesh.getBLEPin());
|
|
display.drawTextCentered(display.width() / 2, 49, pin_buf);
|
|
}
|
|
display.drawTextCentered(display.width() / 2, 57, "toggle: " PRESS_LABEL);
|
|
} else if (_page == HomePage::ADVERT) {
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
display.drawXbm((display.width() - 32) / 2, 18, advert_icon, 32, 32);
|
|
display.drawTextCentered(display.width() / 2, 64 - 11, "advert: " PRESS_LABEL);
|
|
#if ENV_INCLUDE_GPS == 1
|
|
} else if (_page == HomePage::GPS) {
|
|
LocationProvider* nmea = sensors.getLocationProvider();
|
|
char buf[50];
|
|
int y = 18;
|
|
bool gps_state = _task->getGPSState();
|
|
#ifdef PIN_GPS_SWITCH
|
|
bool hw_gps_state = digitalRead(PIN_GPS_SWITCH);
|
|
if (gps_state != hw_gps_state) {
|
|
strcpy(buf, gps_state ? "gps off(hw)" : "gps off(sw)");
|
|
} else {
|
|
strcpy(buf, gps_state ? "gps on" : "gps off");
|
|
}
|
|
#else
|
|
strcpy(buf, gps_state ? "gps on" : "gps off");
|
|
#endif
|
|
display.drawTextLeftAlign(0, y, buf);
|
|
if (nmea == NULL) {
|
|
y = y + 12;
|
|
display.drawTextLeftAlign(0, y, "Can't access GPS");
|
|
} else {
|
|
strcpy(buf, nmea->isValid()?"fix":"no fix");
|
|
display.drawTextRightAlign(display.width()-1, y, buf);
|
|
y = y + 12;
|
|
display.drawTextLeftAlign(0, y, "sat");
|
|
sprintf(buf, "%d", nmea->satellitesCount());
|
|
display.drawTextRightAlign(display.width()-1, y, buf);
|
|
y = y + 12;
|
|
display.drawTextLeftAlign(0, y, "pos");
|
|
sprintf(buf, "%.4f %.4f",
|
|
nmea->getLatitude()/1000000., nmea->getLongitude()/1000000.);
|
|
display.drawTextRightAlign(display.width()-1, y, buf);
|
|
y = y + 12;
|
|
display.drawTextLeftAlign(0, y, "alt");
|
|
sprintf(buf, "%.2f", nmea->getAltitude()/1000.);
|
|
display.drawTextRightAlign(display.width()-1, y, buf);
|
|
y = y + 12;
|
|
}
|
|
#endif
|
|
#if UI_SENSORS_PAGE == 1
|
|
} else if (_page == HomePage::SENSORS) {
|
|
int y = 18;
|
|
refresh_sensors();
|
|
|
|
uint8_t avail_types[16];
|
|
int avail_count = _sensors ? _sensors->getAvailableLPPTypes(avail_types, 16) : 0;
|
|
bool need_scroll = avail_count > UI_RECENT_LIST_SIZE;
|
|
int offset = need_scroll ? (sensors_scroll_offset % avail_count) : 0;
|
|
int show_n = need_scroll ? UI_RECENT_LIST_SIZE : avail_count;
|
|
|
|
for (int i = 0; i < show_n; i++) {
|
|
uint8_t target = avail_types[(offset + i) % avail_count];
|
|
|
|
// scan LPP buffer for this type
|
|
LPPReader r(sensors_lpp.getBuffer(), sensors_lpp.getSize());
|
|
uint8_t ch, type;
|
|
bool found = false;
|
|
char buf[22] = "--";
|
|
while (r.readHeader(ch, type)) {
|
|
if (type == target) {
|
|
float v, v2, v3;
|
|
switch (type) {
|
|
case LPP_GPS:
|
|
r.readGPS(v, v2, v3);
|
|
if (v != 0 || v2 != 0) snprintf(buf, sizeof(buf), "%.4f %.4f", v, v2);
|
|
break;
|
|
case LPP_VOLTAGE: r.readVoltage(v); snprintf(buf, sizeof(buf), "%.2fV", v); break;
|
|
case LPP_CURRENT: r.readCurrent(v); snprintf(buf, sizeof(buf), "%.3fA", v); break;
|
|
case LPP_POWER: r.readPower(v); snprintf(buf, sizeof(buf), "%.1fW", v); break;
|
|
case LPP_TEMPERATURE:r.readTemperature(v); snprintf(buf, sizeof(buf), "%.1f\xf8""C", v); break;
|
|
case LPP_RELATIVE_HUMIDITY: r.readRelativeHumidity(v); snprintf(buf, sizeof(buf), "%.0f%%", v); break;
|
|
case LPP_BAROMETRIC_PRESSURE: r.readPressure(v); snprintf(buf, sizeof(buf), "%.1fhPa", v); break;
|
|
case LPP_ALTITUDE: r.readAltitude(v); snprintf(buf, sizeof(buf), "%.0fm", v); break;
|
|
case LPP_LUMINOSITY: r.readLuminosity(v); snprintf(buf, sizeof(buf), "%.0flux", v); break;
|
|
case LPP_PERCENTAGE: r.readPercentage(v); snprintf(buf, sizeof(buf), "%.0f%%", v); break;
|
|
case LPP_DISTANCE: r.readDistance(v); snprintf(buf, sizeof(buf), "%.2fm", v); break;
|
|
case LPP_CONCENTRATION: r.readConcentration(v); snprintf(buf, sizeof(buf), "%.0fppm", v); break;
|
|
default: r.skipData(type); continue;
|
|
}
|
|
found = true;
|
|
break;
|
|
}
|
|
r.skipData(type);
|
|
}
|
|
(void)found;
|
|
|
|
static const struct { uint8_t type; const char* name; } TYPE_NAMES[] = {
|
|
{ LPP_VOLTAGE, "voltage" },
|
|
{ LPP_GPS, "gps" },
|
|
{ LPP_TEMPERATURE, "temp" },
|
|
{ LPP_RELATIVE_HUMIDITY, "humidity" },
|
|
{ LPP_BAROMETRIC_PRESSURE,"pressure" },
|
|
{ LPP_ALTITUDE, "altitude" },
|
|
{ LPP_CURRENT, "current" },
|
|
{ LPP_POWER, "power" },
|
|
{ LPP_LUMINOSITY, "light" },
|
|
{ LPP_PERCENTAGE, "moisture" },
|
|
{ LPP_DISTANCE, "distance" },
|
|
{ LPP_CONCENTRATION, "CO2" },
|
|
};
|
|
const char* name = "sensor";
|
|
for (auto& tn : TYPE_NAMES) { if (tn.type == target) { name = tn.name; break; } }
|
|
|
|
display.setCursor(0, y);
|
|
display.print(name);
|
|
display.setCursor(display.width() - display.getTextWidth(buf) - 1, y);
|
|
display.print(buf);
|
|
y += 12;
|
|
}
|
|
if (need_scroll) sensors_scroll_offset = (sensors_scroll_offset + 1) % avail_count;
|
|
else sensors_scroll_offset = 0;
|
|
#endif
|
|
} else if (_page == HomePage::SETTINGS) {
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
display.setTextSize(1);
|
|
display.drawTextCentered(display.width() / 2, 22, "Settings");
|
|
display.drawTextCentered(display.width() / 2, 50, PRESS_LABEL " to open");
|
|
} else if (_page == HomePage::TOOLS) {
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
display.setTextSize(1);
|
|
display.drawTextCentered(display.width() / 2, 22, "Tools");
|
|
display.drawTextCentered(display.width() / 2, 50, PRESS_LABEL " to open");
|
|
} else if (_page == HomePage::QUICK_MSG) {
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
display.setTextSize(1);
|
|
display.drawTextCentered(display.width() / 2, 22, "Messages");
|
|
int total_unread = _task->getDMUnreadTotal() + _task->getChannelUnreadCount() + _task->getRoomUnreadCount();
|
|
if (total_unread > 0) {
|
|
char badge[20];
|
|
snprintf(badge, sizeof(badge), "%d unread", total_unread);
|
|
display.drawTextCentered(display.width() / 2, 35, badge);
|
|
}
|
|
display.drawTextCentered(display.width() / 2, 50, PRESS_LABEL " to open");
|
|
} else if (_page == HomePage::SHUTDOWN) {
|
|
display.setColor(DisplayDriver::LIGHT);
|
|
display.setTextSize(1);
|
|
if (_shutdown_init) {
|
|
display.drawTextCentered(display.width() / 2, 34, "hibernating...");
|
|
} else {
|
|
display.drawXbm((display.width() - 32) / 2, 18, power_icon, 32, 32);
|
|
display.drawTextCentered(display.width() / 2, 64 - 11, "hibernate:" PRESS_LABEL);
|
|
}
|
|
}
|
|
bool auto_adv = _node_prefs && _node_prefs->advert_auto_interval_sec > 0;
|
|
if (_page == HomePage::CLOCK) {
|
|
bool show_sec = !_node_prefs || !_node_prefs->clock_hide_seconds;
|
|
return auto_adv ? 1000 : (show_sec ? 1000 : 60000);
|
|
}
|
|
return auto_adv ? 1000 : 5000;
|
|
}
|
|
|
|
bool handleInput(char c) override {
|
|
if (c == KEY_LEFT || c == KEY_PREV) {
|
|
_page = navPage(_page, -1);
|
|
return true;
|
|
}
|
|
if (c == KEY_NEXT || c == KEY_RIGHT) {
|
|
_page = navPage(_page, +1);
|
|
if (_page == HomePage::RECENT) {
|
|
_task->showAlert("Recent adverts", 800);
|
|
}
|
|
return true;
|
|
}
|
|
if (c == KEY_ENTER && _page == HomePage::BLUETOOTH) {
|
|
if (_task->isSerialEnabled()) { // toggle Bluetooth on/off
|
|
_task->disableSerial();
|
|
} else {
|
|
_task->enableSerial();
|
|
}
|
|
return true;
|
|
}
|
|
if (c == KEY_ENTER && _page == HomePage::ADVERT) {
|
|
_task->notify(UIEventType::ack);
|
|
if (the_mesh.advert()) {
|
|
_task->showAlert("Advert sent!", 1000);
|
|
} else {
|
|
_task->showAlert("Advert failed..", 1000);
|
|
}
|
|
return true;
|
|
}
|
|
#if ENV_INCLUDE_GPS == 1
|
|
if (c == KEY_ENTER && _page == HomePage::GPS) {
|
|
_task->toggleGPS();
|
|
return true;
|
|
}
|
|
#endif
|
|
#if UI_SENSORS_PAGE == 1
|
|
if (c == KEY_ENTER && _page == HomePage::SENSORS) {
|
|
_task->toggleGPS();
|
|
next_sensors_refresh=0;
|
|
return true;
|
|
}
|
|
#endif
|
|
if (c == KEY_ENTER && _page == HomePage::SETTINGS) {
|
|
_task->gotoSettingsScreen();
|
|
return true;
|
|
}
|
|
if (c == KEY_ENTER && _page == HomePage::TOOLS) {
|
|
_task->gotoToolsScreen();
|
|
return true;
|
|
}
|
|
if (c == KEY_ENTER && _page == HomePage::QUICK_MSG) {
|
|
_task->gotoQuickMsgScreen();
|
|
return true;
|
|
}
|
|
if (c == KEY_ENTER && _page == HomePage::SHUTDOWN) {
|
|
_shutdown_init = true; // need to wait for button to be released
|
|
return true;
|
|
}
|
|
if (c == KEY_CONTEXT_MENU && _page == HomePage::CLOCK) {
|
|
_task->gotoDashboardConfig();
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
};
|
|
|
|
|
|
void UITask::begin(DisplayDriver* display, SensorManager* sensors, NodePrefs* node_prefs) {
|
|
_display = display;
|
|
_sensors = sensors;
|
|
_node_prefs = node_prefs;
|
|
uint32_t aoff = autoOffMillis();
|
|
_auto_off = millis() + (aoff > 0 ? aoff : AUTO_OFF_MILLIS);
|
|
|
|
#if defined(PIN_USER_BTN)
|
|
user_btn.begin();
|
|
#endif
|
|
#if defined(PIN_USER_BTN_ANA)
|
|
analog_btn.begin();
|
|
#endif
|
|
|
|
if (_display != NULL) {
|
|
_display->turnOn();
|
|
}
|
|
|
|
#ifdef PIN_BUZZER
|
|
buzzer.quiet(_node_prefs->buzzer_quiet);
|
|
buzzer.setVolume(_node_prefs->buzzer_volume);
|
|
buzzer.begin();
|
|
#endif
|
|
|
|
#ifdef PIN_VIBRATION
|
|
vibration.begin();
|
|
#endif
|
|
|
|
// Set default quick message if slot 0 is empty (first boot)
|
|
if (_node_prefs && _node_prefs->custom_msgs[0][0] == '\0') {
|
|
strncpy(_node_prefs->custom_msgs[0], "OK", sizeof(_node_prefs->custom_msgs[0]) - 1);
|
|
}
|
|
|
|
ui_started_at = millis();
|
|
_alert_expiry = 0;
|
|
_batt_mv = AbstractUITask::getBattMilliVolts(); // seed EMA with first reading
|
|
|
|
splash = new SplashScreen(this);
|
|
home = new HomeScreen(this, &rtc_clock, sensors, node_prefs);
|
|
settings = new SettingsScreen(this);
|
|
quick_msg = new QuickMsgScreen(this);
|
|
tools_screen = new ToolsScreen(this);
|
|
ringtone_edit = new RingtoneEditorScreen(this, node_prefs);
|
|
bot_screen = new BotScreen(this, node_prefs);
|
|
nearby_screen = new NearbyScreen(this);
|
|
dashboard_config = new DashboardConfigScreen(this, node_prefs);
|
|
auto_advert_screen = new AutoAdvertScreen(this, node_prefs);
|
|
setCurrScreen(splash);
|
|
|
|
applyBrightness();
|
|
}
|
|
|
|
void UITask::gotoSettingsScreen() {
|
|
((SettingsScreen*)settings)->markClean();
|
|
setCurrScreen(settings);
|
|
}
|
|
|
|
void UITask::gotoToolsScreen() {
|
|
setCurrScreen(tools_screen);
|
|
}
|
|
|
|
void UITask::gotoRingtoneEditor(int slot) {
|
|
((RingtoneEditorScreen*)ringtone_edit)->enter(slot);
|
|
setCurrScreen(ringtone_edit);
|
|
}
|
|
|
|
void UITask::gotoBotScreen() {
|
|
((BotScreen*)bot_screen)->enter();
|
|
setCurrScreen(bot_screen);
|
|
}
|
|
|
|
void UITask::gotoNearbyScreen() {
|
|
((NearbyScreen*)nearby_screen)->enter();
|
|
setCurrScreen(nearby_screen);
|
|
}
|
|
|
|
void UITask::gotoDashboardConfig() {
|
|
((DashboardConfigScreen*)dashboard_config)->enter();
|
|
setCurrScreen(dashboard_config);
|
|
}
|
|
|
|
void UITask::gotoAutoAdvertScreen() {
|
|
((AutoAdvertScreen*)auto_advert_screen)->enter();
|
|
setCurrScreen(auto_advert_screen);
|
|
}
|
|
|
|
void UITask::playMelody(const char* melody) {
|
|
#ifdef PIN_BUZZER
|
|
buzzer.playForced(melody);
|
|
#endif
|
|
}
|
|
|
|
void UITask::stopMelody() {
|
|
#ifdef PIN_BUZZER
|
|
buzzer.stop();
|
|
#endif
|
|
}
|
|
|
|
bool UITask::isMelodyPlaying() {
|
|
#ifdef PIN_BUZZER
|
|
return buzzer.isPlaying();
|
|
#else
|
|
return false;
|
|
#endif
|
|
}
|
|
|
|
void UITask::gotoQuickMsgScreen() {
|
|
((QuickMsgScreen*)quick_msg)->reset();
|
|
setCurrScreen(quick_msg);
|
|
}
|
|
|
|
void UITask::addChannelMsg(uint8_t channel_idx, const char* text) {
|
|
_last_notif_ch_idx = (int)channel_idx;
|
|
((QuickMsgScreen*)quick_msg)->addChannelMsg(channel_idx, text);
|
|
}
|
|
|
|
int UITask::getChannelUnreadCount() const {
|
|
return ((QuickMsgScreen*)quick_msg)->getTotalChannelUnread();
|
|
}
|
|
|
|
void UITask::addDMMsg(const uint8_t* pub_key, bool outgoing, const char* text) {
|
|
((QuickMsgScreen*)quick_msg)->addDMMsg(pub_key, outgoing, text);
|
|
}
|
|
|
|
int UITask::getDMUnreadTotal() const {
|
|
int total = 0;
|
|
for (int i = 0; i < DM_UNREAD_TABLE_SIZE; i++)
|
|
total += _dm_unread_table[i].count;
|
|
return total;
|
|
}
|
|
|
|
void UITask::showAlert(const char* text, int duration_millis) {
|
|
snprintf(_alert, sizeof(_alert), "%s", text);
|
|
_alert_expiry = millis() + duration_millis;
|
|
}
|
|
|
|
static void buildMelodyFromPrefs(const NodePrefs* p, int slot, char* buf, int size) {
|
|
static const uint16_t BPM_OPTS[] = { 60, 90, 120, 150, 180 };
|
|
static const uint8_t DUR_VALS[] = { 4, 8, 16, 32 };
|
|
static const char PITCHES[] = { 'p', 'c', 'd', 'e', 'f', 'g', 'a', 'b' };
|
|
const uint8_t* notes = (slot == 2) ? p->ringtone2_notes : p->ringtone_notes;
|
|
uint8_t len = (slot == 2) ? p->ringtone2_len : p->ringtone_len;
|
|
uint8_t bpm_i = (slot == 2) ? p->ringtone2_bpm_idx : p->ringtone_bpm_idx;
|
|
if (len == 0) { buf[0] = '\0'; return; }
|
|
uint16_t bpm = BPM_OPTS[bpm_i < 5 ? bpm_i : 2];
|
|
int pos = snprintf(buf, size, "Ring:d=8,o=5,b=%u:", bpm);
|
|
for (int i = 0; i < len && pos < size - 8; i++) {
|
|
if (i > 0 && pos < size - 1) buf[pos++] = ',';
|
|
uint8_t pitch = notes[i] & 0x07;
|
|
uint8_t octave = ((notes[i] >> 3) & 0x03) + 4;
|
|
uint8_t dur_val = DUR_VALS[(notes[i] >> 5) & 0x03];
|
|
if (pitch == 0) pos += snprintf(buf + pos, size - pos, "%dp", dur_val);
|
|
else pos += snprintf(buf + pos, size - pos, "%d%c%d", dur_val, PITCHES[pitch], octave);
|
|
}
|
|
if (pos < size) buf[pos] = '\0';
|
|
}
|
|
|
|
void UITask::notify(UIEventType t) {
|
|
#if defined(PIN_BUZZER)
|
|
switch(t){
|
|
case UIEventType::contactMessage: {
|
|
bool play = false;
|
|
bool force = false;
|
|
if (_last_notif_dm_valid && _node_prefs) {
|
|
uint8_t state = 0;
|
|
for (int i = 0; i < NodePrefs::DM_NOTIF_TABLE_MAX; i++) {
|
|
if (_node_prefs->dm_notif[i].state &&
|
|
memcmp(_node_prefs->dm_notif[i].prefix, _last_notif_dm_prefix, 4) == 0) {
|
|
state = _node_prefs->dm_notif[i].state; break;
|
|
}
|
|
}
|
|
if (state == 2) { play = true; force = true; } // force-on
|
|
else if (state == 1) { /* muted */ }
|
|
else { play = !buzzer.isQuiet(); } // default: follow global
|
|
} else {
|
|
play = !buzzer.isQuiet();
|
|
}
|
|
_last_notif_dm_valid = false;
|
|
if (play) {
|
|
int slot = _node_prefs ? (int)_node_prefs->notif_melody_dm : 0;
|
|
if (_node_prefs) {
|
|
for (int i = 0; i < NodePrefs::DM_MELODY_TABLE_MAX; i++)
|
|
if (_node_prefs->dm_melody[i].slot &&
|
|
memcmp(_node_prefs->dm_melody[i].prefix, _last_notif_dm_prefix, 4) == 0)
|
|
{ slot = _node_prefs->dm_melody[i].slot; break; }
|
|
}
|
|
bool custom_played = false;
|
|
if (slot > 0 && _node_prefs) {
|
|
buildMelodyFromPrefs(_node_prefs, slot, _notif_mel_buf, sizeof(_notif_mel_buf));
|
|
if (_notif_mel_buf[0]) {
|
|
if (force) buzzer.playForced(_notif_mel_buf); else buzzer.play(_notif_mel_buf);
|
|
custom_played = true;
|
|
}
|
|
}
|
|
if (!custom_played) {
|
|
if (force) buzzer.playForced("MsgRcv3:d=4,o=6,b=200:32e,32g,32b,16c7");
|
|
else buzzer.play("MsgRcv3:d=4,o=6,b=200:32e,32g,32b,16c7");
|
|
}
|
|
}
|
|
break;
|
|
}
|
|
case UIEventType::channelMessage: {
|
|
bool play = false;
|
|
bool force = false;
|
|
if (_last_notif_ch_idx >= 0 && _last_notif_ch_idx < 64 && _node_prefs) {
|
|
uint64_t mask = 1ULL << _last_notif_ch_idx;
|
|
if (_node_prefs->ch_notif_override & mask) {
|
|
if (!(_node_prefs->ch_notif_muted & mask)) { play = true; force = true; }
|
|
} else {
|
|
play = !buzzer.isQuiet();
|
|
}
|
|
} else {
|
|
play = !buzzer.isQuiet();
|
|
}
|
|
if (play) {
|
|
int slot = _node_prefs ? (int)_node_prefs->notif_melody_ch : 0;
|
|
if (_last_notif_ch_idx >= 0 && _last_notif_ch_idx < 64 && _node_prefs) {
|
|
uint64_t mask = 1ULL << _last_notif_ch_idx;
|
|
if (_node_prefs->ch_notif_melody_set & mask)
|
|
slot = (_node_prefs->ch_notif_melody_2 & mask) ? 2 : 1;
|
|
}
|
|
bool custom_played = false;
|
|
if (slot > 0 && _node_prefs) {
|
|
buildMelodyFromPrefs(_node_prefs, slot, _notif_mel_buf, sizeof(_notif_mel_buf));
|
|
if (_notif_mel_buf[0]) {
|
|
if (force) buzzer.playForced(_notif_mel_buf); else buzzer.play(_notif_mel_buf);
|
|
custom_played = true;
|
|
}
|
|
}
|
|
if (!custom_played) {
|
|
if (force) buzzer.playForced("kerplop:d=16,o=6,b=120:32g#,32c#");
|
|
else buzzer.play("kerplop:d=16,o=6,b=120:32g#,32c#");
|
|
}
|
|
}
|
|
_last_notif_ch_idx = -1;
|
|
break;
|
|
}
|
|
case UIEventType::ack:
|
|
buzzer.play("ack:d=32,o=8,b=120:c");
|
|
break;
|
|
case UIEventType::roomMessage:
|
|
case UIEventType::newContactMessage:
|
|
case UIEventType::none:
|
|
default:
|
|
break;
|
|
}
|
|
#endif
|
|
|
|
#ifdef PIN_VIBRATION
|
|
// Trigger vibration for all UI events except none
|
|
if (t != UIEventType::none) {
|
|
vibration.trigger();
|
|
}
|
|
#endif
|
|
}
|
|
|
|
|
|
void UITask::msgRead(int msgcount) {
|
|
_msgcount = msgcount;
|
|
if (msgcount == 0) {
|
|
_room_unread = 0;
|
|
memset(_dm_unread_table, 0, sizeof(_dm_unread_table));
|
|
((QuickMsgScreen*)quick_msg)->clearAllChannelUnread();
|
|
}
|
|
}
|
|
|
|
void UITask::newMsg(uint8_t path_len, const char* from_name, const char* text, int msgcount, uint8_t contact_type, const uint8_t* pub_key) {
|
|
_msgcount = msgcount;
|
|
if (contact_type == ADV_TYPE_ROOM && _room_unread < _msgcount) _room_unread++;
|
|
if (contact_type == ADV_TYPE_CHAT && pub_key != nullptr) {
|
|
memcpy(_last_notif_dm_prefix, pub_key, 4);
|
|
_last_notif_dm_valid = true;
|
|
int slot = -1, empty_slot = -1;
|
|
for (int i = 0; i < DM_UNREAD_TABLE_SIZE; i++) {
|
|
if (_dm_unread_table[i].count > 0 && memcmp(_dm_unread_table[i].prefix, pub_key, 4) == 0) { slot = i; break; }
|
|
if (empty_slot < 0 && _dm_unread_table[i].count == 0) empty_slot = i;
|
|
}
|
|
if (slot >= 0) {
|
|
if (_dm_unread_table[slot].count < 99) _dm_unread_table[slot].count++;
|
|
} else if (empty_slot >= 0) {
|
|
memcpy(_dm_unread_table[empty_slot].prefix, pub_key, 4);
|
|
_dm_unread_table[empty_slot].count = 1;
|
|
}
|
|
}
|
|
|
|
char alert_buf[80];
|
|
snprintf(alert_buf, sizeof(alert_buf), "Msg: %.20s", from_name);
|
|
showAlert(alert_buf, 3000);
|
|
|
|
if (_display != NULL && !_locked) {
|
|
if (!_display->isOn() && !hasConnection()) {
|
|
_display->turnOn();
|
|
}
|
|
if (_display->isOn()) {
|
|
uint32_t aoff = autoOffMillis();
|
|
if (aoff > 0) _auto_off = millis() + aoff;
|
|
_next_refresh = 100;
|
|
}
|
|
}
|
|
}
|
|
|
|
void UITask::userLedHandler() {
|
|
#ifdef PIN_STATUS_LED
|
|
int cur_time = millis();
|
|
if (cur_time > next_led_change) {
|
|
if (led_state == 0) {
|
|
led_state = 1;
|
|
if (_msgcount > 0) {
|
|
last_led_increment = LED_ON_MSG_MILLIS;
|
|
} else {
|
|
last_led_increment = LED_ON_MILLIS;
|
|
}
|
|
next_led_change = cur_time + last_led_increment;
|
|
} else {
|
|
led_state = 0;
|
|
next_led_change = cur_time + LED_CYCLE_MILLIS - last_led_increment;
|
|
}
|
|
digitalWrite(PIN_STATUS_LED, led_state == LED_STATE_ON);
|
|
}
|
|
#endif
|
|
}
|
|
|
|
void UITask::setCurrScreen(UIScreen* c) {
|
|
curr = c;
|
|
_next_refresh = 100;
|
|
}
|
|
|
|
/*
|
|
hardware-agnostic pre-shutdown activity should be done here
|
|
*/
|
|
void UITask::shutdown(bool restart){
|
|
the_mesh.saveRTCTime();
|
|
|
|
#ifdef PIN_BUZZER
|
|
/* note: we have a choice here -
|
|
we can do a blocking buzzer.loop() with non-deterministic consequences
|
|
or we can set a flag and delay the shutdown for a couple of seconds
|
|
while a non-blocking buzzer.loop() plays out in UITask::loop()
|
|
*/
|
|
buzzer.shutdown();
|
|
uint32_t buzzer_timer = millis(); // fail-safe shutdown
|
|
while (buzzer.isPlaying() && (millis() - buzzer_timer) < 2500)
|
|
buzzer.loop();
|
|
|
|
#endif // PIN_BUZZER
|
|
|
|
if (restart) {
|
|
_board->reboot();
|
|
} else {
|
|
_display->turnOff();
|
|
radio_driver.powerOff();
|
|
_board->powerOff();
|
|
}
|
|
}
|
|
|
|
bool UITask::isButtonPressed() const {
|
|
#ifdef PIN_USER_BTN
|
|
return user_btn.isPressed();
|
|
#else
|
|
return false;
|
|
#endif
|
|
}
|
|
|
|
static void formatDashVal(uint8_t field, char* val, int val_len, uint16_t batt_mv) {
|
|
val[0] = '\0';
|
|
switch (field) {
|
|
case DASH_NONE: return;
|
|
case DASH_BATT:
|
|
if (batt_mv > 0) snprintf(val, val_len, "%u.%02uV", batt_mv/1000, (batt_mv%1000)/10);
|
|
else strcpy(val, "--");
|
|
return;
|
|
case DASH_NODES:
|
|
snprintf(val, val_len, "%d nodes", the_mesh.getNumContacts());
|
|
return;
|
|
#if ENV_INCLUDE_GPS == 1
|
|
case DASH_GPS: {
|
|
LocationProvider* loc = sensors.getLocationProvider();
|
|
if (loc && loc->isValid())
|
|
snprintf(val, val_len, "%.2f %.2f",
|
|
loc->getLatitude()/1000000.0f, loc->getLongitude()/1000000.0f);
|
|
else strcpy(val, "no fix");
|
|
return;
|
|
}
|
|
#endif
|
|
default: break;
|
|
}
|
|
// LPP sensor fields: query sensors into a local buffer
|
|
uint8_t lpp_type = 0;
|
|
switch (field) {
|
|
case DASH_TEMP: lpp_type = LPP_TEMPERATURE; break;
|
|
case DASH_HUM: lpp_type = LPP_RELATIVE_HUMIDITY; break;
|
|
case DASH_PRES: lpp_type = LPP_BAROMETRIC_PRESSURE; break;
|
|
case DASH_ALT: lpp_type = LPP_ALTITUDE; break;
|
|
case DASH_LUX: lpp_type = LPP_LUMINOSITY; break;
|
|
case DASH_CO2: lpp_type = LPP_CONCENTRATION; break;
|
|
}
|
|
if (lpp_type) {
|
|
CayenneLPP lpp(200);
|
|
lpp.reset();
|
|
sensors.querySensors(0xFF, lpp);
|
|
LPPReader r(lpp.getBuffer(), lpp.getSize());
|
|
uint8_t ch, type;
|
|
while (r.readHeader(ch, type)) {
|
|
if (type == lpp_type) {
|
|
float v;
|
|
switch (lpp_type) {
|
|
case LPP_TEMPERATURE: r.readTemperature(v); snprintf(val, val_len, "%.1f\xf8""C", v); return;
|
|
case LPP_RELATIVE_HUMIDITY: r.readRelativeHumidity(v); snprintf(val, val_len, "%.0f%%", v); return;
|
|
case LPP_BAROMETRIC_PRESSURE: r.readPressure(v); snprintf(val, val_len, "%.0fhPa", v); return;
|
|
case LPP_ALTITUDE: r.readAltitude(v); snprintf(val, val_len, "%.0fm", v); return;
|
|
case LPP_LUMINOSITY: r.readLuminosity(v); snprintf(val, val_len, "%.0flux", v); return;
|
|
case LPP_CONCENTRATION: r.readConcentration(v); snprintf(val, val_len, "%.0fppm", v); return;
|
|
}
|
|
}
|
|
r.skipData(type);
|
|
}
|
|
strcpy(val, "--");
|
|
}
|
|
}
|
|
|
|
void UITask::loop() {
|
|
char c = 0;
|
|
#if UI_HAS_JOYSTICK
|
|
int ev = user_btn.check();
|
|
if (ev == BUTTON_EVENT_CLICK) {
|
|
if (back_btn.isPressed()) {
|
|
// Enter clicked while Back is held — lock/unlock sequence
|
|
if (_display && !_display->isOn()) {
|
|
_display->turnOn(); // turn on display so hints are visible
|
|
}
|
|
_lock_wake_until = millis() + 5000; // keep display on during sequence
|
|
if (millis() - _lock_seq_ms > 3000) _lock_seq_count = 0; // timeout reset
|
|
_lock_seq_count++;
|
|
_lock_seq_ms = millis();
|
|
_next_refresh = 0; // update hint immediately on each press
|
|
if (_lock_seq_count >= 3) {
|
|
_lock_seq_count = 0;
|
|
_lock_seq_used = true; // suppress Back release click
|
|
_locked = !_locked;
|
|
if (_locked) {
|
|
_lock_wake_until = millis() + 2000;
|
|
} else {
|
|
if (_display && !_display->isOn()) _display->turnOn();
|
|
uint32_t aoff = autoOffMillis();
|
|
if (aoff > 0) _auto_off = millis() + aoff;
|
|
}
|
|
}
|
|
// eat the Enter — don't pass to curr
|
|
} else {
|
|
c = checkDisplayOn(KEY_ENTER);
|
|
}
|
|
} else if (ev == BUTTON_EVENT_LONG_PRESS) {
|
|
c = handleLongPress(KEY_ENTER); // REVISIT: could be mapped to different key code
|
|
}
|
|
#if UI_HAS_JOYSTICK_UPDOWN
|
|
ev = joystick_up.check();
|
|
if (ev == BUTTON_EVENT_CLICK) {
|
|
c = checkDisplayOn(KEY_UP);
|
|
}
|
|
ev = joystick_down.check();
|
|
if (ev == BUTTON_EVENT_CLICK) {
|
|
c = checkDisplayOn(KEY_DOWN);
|
|
}
|
|
#endif
|
|
ev = joystick_left.check();
|
|
if (ev == BUTTON_EVENT_CLICK) {
|
|
c = checkDisplayOn(KEY_LEFT);
|
|
} else if (ev == BUTTON_EVENT_LONG_PRESS) {
|
|
c = handleLongPress(KEY_LEFT);
|
|
}
|
|
ev = joystick_right.check();
|
|
if (ev == BUTTON_EVENT_CLICK) {
|
|
c = checkDisplayOn(KEY_RIGHT);
|
|
} else if (ev == BUTTON_EVENT_LONG_PRESS) {
|
|
c = handleLongPress(KEY_RIGHT);
|
|
}
|
|
if (_lock_seq_used && millis() - _lock_seq_ms > 5000) {
|
|
_lock_seq_used = false; // safety reset if Back release event was missed
|
|
}
|
|
ev = back_btn.check();
|
|
if (ev == BUTTON_EVENT_CLICK) {
|
|
if (_lock_seq_count > 0 || _lock_seq_used) {
|
|
// Back released mid-sequence or after completing it — cancel/suppress
|
|
_lock_seq_count = 0;
|
|
_lock_seq_used = false;
|
|
} else {
|
|
c = checkDisplayOn(KEY_CANCEL);
|
|
}
|
|
} else if (ev == BUTTON_EVENT_TRIPLE_CLICK) {
|
|
if (!_locked) c = handleTripleClick(KEY_SELECT);
|
|
}
|
|
#elif defined(PIN_USER_BTN)
|
|
int ev = user_btn.check();
|
|
if (ev == BUTTON_EVENT_CLICK) {
|
|
c = checkDisplayOn(KEY_NEXT);
|
|
} else if (ev == BUTTON_EVENT_LONG_PRESS) {
|
|
c = handleLongPress(KEY_ENTER);
|
|
} else if (ev == BUTTON_EVENT_DOUBLE_CLICK) {
|
|
c = handleDoubleClick(KEY_PREV);
|
|
} else if (ev == BUTTON_EVENT_TRIPLE_CLICK) {
|
|
c = handleTripleClick(KEY_SELECT);
|
|
}
|
|
#endif
|
|
#if defined(PIN_USER_BTN_ANA)
|
|
if (abs(millis() - _analogue_pin_read_millis) > 10) {
|
|
ev = analog_btn.check();
|
|
if (ev == BUTTON_EVENT_CLICK) {
|
|
c = checkDisplayOn(KEY_NEXT);
|
|
} else if (ev == BUTTON_EVENT_LONG_PRESS) {
|
|
c = handleLongPress(KEY_ENTER);
|
|
} else if (ev == BUTTON_EVENT_DOUBLE_CLICK) {
|
|
c = handleDoubleClick(KEY_PREV);
|
|
} else if (ev == BUTTON_EVENT_TRIPLE_CLICK) {
|
|
c = handleTripleClick(KEY_SELECT);
|
|
}
|
|
_analogue_pin_read_millis = millis();
|
|
}
|
|
#endif
|
|
#if defined(BACKLIGHT_BTN)
|
|
if (millis() > next_backlight_btn_check) {
|
|
bool touch_state = digitalRead(PIN_BUTTON2);
|
|
#if defined(DISP_BACKLIGHT)
|
|
digitalWrite(DISP_BACKLIGHT, !touch_state);
|
|
#elif defined(EXP_PIN_BACKLIGHT)
|
|
expander.digitalWrite(EXP_PIN_BACKLIGHT, !touch_state);
|
|
#endif
|
|
next_backlight_btn_check = millis() + 300;
|
|
}
|
|
#endif
|
|
|
|
if (c != 0) {
|
|
if (!_locked && curr) {
|
|
curr->handleInput(c);
|
|
{ uint32_t aoff = autoOffMillis(); if (aoff > 0) _auto_off = millis() + aoff; } // extend auto-off timer
|
|
_next_refresh = 100; // trigger refresh
|
|
} else if (_locked) {
|
|
// Locked: eat all keys — wake window is set only when display first turns on
|
|
_next_refresh = 0;
|
|
}
|
|
}
|
|
|
|
userLedHandler();
|
|
|
|
#ifdef PIN_BUZZER
|
|
if (_node_prefs && _node_prefs->buzzer_auto) {
|
|
bool should_quiet = hasConnection();
|
|
if (buzzer.isQuiet() != should_quiet) {
|
|
buzzer.quiet(should_quiet);
|
|
_next_refresh = 0;
|
|
}
|
|
}
|
|
if (buzzer.isPlaying()) buzzer.loop();
|
|
#endif
|
|
|
|
if (curr) curr->poll();
|
|
|
|
if (_display != NULL && _display->isOn()) {
|
|
if (_locked && millis() > _lock_wake_until) {
|
|
_display->turnOff();
|
|
} else if (_locked && millis() >= _next_refresh) {
|
|
_display->startFrame();
|
|
// Lock screen: clock + unlock hint popup
|
|
uint32_t unix_ts = rtc_clock.getCurrentTime();
|
|
_display->setColor(DisplayDriver::LIGHT);
|
|
if (unix_ts < 1000000000UL) {
|
|
_display->setTextSize(1);
|
|
_display->drawTextCentered(_display->width() / 2, 20, "No time sync");
|
|
} else {
|
|
int8_t tz = _node_prefs ? _node_prefs->tz_offset_hours : 0;
|
|
unix_ts += (int32_t)tz * 3600;
|
|
time_t t = (time_t)unix_ts;
|
|
struct tm* ti = gmtime(&t);
|
|
char buf[12];
|
|
_display->setTextSize(2);
|
|
sprintf(buf, "%02d:%02d", ti->tm_hour, ti->tm_min);
|
|
_display->drawTextCentered(_display->width() / 2, 8, buf);
|
|
_display->setTextSize(1);
|
|
static const char* wd[] = {"Sun","Mon","Tue","Wed","Thu","Fri","Sat"};
|
|
static const char* mo[] = {"Jan","Feb","Mar","Apr","May","Jun","Jul","Aug","Sep","Oct","Nov","Dec"};
|
|
sprintf(buf, "%s %d %s", wd[ti->tm_wday], ti->tm_mday, mo[ti->tm_mon]);
|
|
_display->drawTextCentered(_display->width() / 2, 26, buf);
|
|
|
|
// Two sensor values side by side (dashboard_fields[0] and [1])
|
|
if (_node_prefs) {
|
|
char v0[20] = "", v1[20] = "";
|
|
formatDashVal(_node_prefs->dashboard_fields[0], v0, sizeof(v0), _batt_mv);
|
|
formatDashVal(_node_prefs->dashboard_fields[1], v1, sizeof(v1), _batt_mv);
|
|
if (v0[0] || v1[0]) {
|
|
_display->setTextSize(1);
|
|
_display->setColor(DisplayDriver::LIGHT);
|
|
if (v0[0] && v1[0]) {
|
|
_display->setCursor(0, 37);
|
|
_display->print(v0);
|
|
int vw = _display->getTextWidth(v1);
|
|
_display->setCursor(_display->width() - vw, 37);
|
|
_display->print(v1);
|
|
} else {
|
|
const char* sv = v0[0] ? v0 : v1;
|
|
_display->drawTextCentered(_display->width() / 2, 37, sv);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
// Hint popup at bottom (like alert style)
|
|
_display->setTextSize(1);
|
|
const char* hint = _lock_seq_count == 0 ? "Hold Back + 3xEnter" :
|
|
_lock_seq_count == 1 ? "Enter x2 more..." : "Enter x1 more...";
|
|
int p = 3;
|
|
int hy = _display->height() - 13;
|
|
int hw = _display->getTextWidth(hint);
|
|
int hx = (_display->width() - hw) / 2;
|
|
_display->setColor(DisplayDriver::LIGHT);
|
|
_display->fillRect(hx - p, hy - p, hw + p*2, 8 + p*2);
|
|
_display->setColor(DisplayDriver::DARK);
|
|
_display->setCursor(hx, hy);
|
|
_display->print(hint);
|
|
_display->endFrame();
|
|
_next_refresh = millis() + 1000;
|
|
} else if (!_locked && millis() >= _next_refresh && curr) {
|
|
_display->startFrame();
|
|
int delay_millis = curr->render(*_display);
|
|
if (millis() < _alert_expiry && curr == home) { // render alert only on home screen
|
|
_display->setTextSize(1);
|
|
int y = _display->height() / 3;
|
|
int p = _display->height() / 32;
|
|
_display->setColor(DisplayDriver::DARK);
|
|
_display->fillRect(p, y, _display->width() - p*2, y);
|
|
_display->setColor(DisplayDriver::LIGHT); // draw box border
|
|
_display->drawRect(p, y, _display->width() - p*2, y);
|
|
_display->drawTextCentered(_display->width() / 2, y + p*3, _alert);
|
|
_next_refresh = _alert_expiry; // will need refresh when alert is dismissed
|
|
} else {
|
|
_next_refresh = millis() + delay_millis;
|
|
}
|
|
_display->endFrame();
|
|
}
|
|
#if AUTO_OFF_MILLIS > 0
|
|
if (!_locked && autoOffMillis() > 0 && millis() > _auto_off) {
|
|
_display->turnOff();
|
|
#ifdef PIN_LED
|
|
digitalWrite(PIN_LED, LOW); // turn off status LED with display to save power
|
|
#endif
|
|
if (_node_prefs && _node_prefs->auto_lock) {
|
|
_locked = true;
|
|
_lock_wake_until = 0;
|
|
}
|
|
}
|
|
#endif
|
|
}
|
|
|
|
#ifdef PIN_VIBRATION
|
|
vibration.loop();
|
|
#endif
|
|
|
|
if (millis() > next_batt_chck) {
|
|
uint16_t raw = AbstractUITask::getBattMilliVolts();
|
|
if (raw > 0) {
|
|
// EMA filter: alpha=0.2 (80% old, 20% new) — smooths ADC noise from uneven load
|
|
_batt_mv = (_batt_mv == 0) ? raw : (uint16_t)((_batt_mv * 4u + raw) / 5u);
|
|
}
|
|
uint16_t low_mv = _node_prefs ? _node_prefs->low_batt_mv : 0;
|
|
if (low_mv > 0 && _batt_mv > 0 && _batt_mv < low_mv) {
|
|
if (_display != NULL) {
|
|
_display->startFrame();
|
|
_display->setTextSize(1);
|
|
_display->setColor(DisplayDriver::LIGHT);
|
|
_display->drawTextCentered(_display->width() / 2, 24, "Low Battery");
|
|
_display->drawTextCentered(_display->width() / 2, 36, "Shutting down");
|
|
_display->endFrame();
|
|
delay(2000);
|
|
}
|
|
shutdown();
|
|
}
|
|
next_batt_chck = millis() + 8000;
|
|
}
|
|
}
|
|
|
|
char UITask::checkDisplayOn(char c) {
|
|
if (_display != NULL) {
|
|
if (!_display->isOn()) {
|
|
_display->turnOn();
|
|
#ifdef PIN_LED
|
|
digitalWrite(PIN_LED, LOW); // ensure LED is off when waking display (userLedHandler takes over)
|
|
#endif
|
|
if (_locked) {
|
|
_lock_wake_until = millis() + 5000;
|
|
_next_refresh = 0;
|
|
return 0; // eat the waking key press
|
|
}
|
|
c = 0;
|
|
}
|
|
if (!_locked) {
|
|
uint32_t aoff = autoOffMillis();
|
|
if (aoff > 0) _auto_off = millis() + aoff; // extend auto-off timer
|
|
}
|
|
_next_refresh = 0; // trigger refresh
|
|
}
|
|
return c;
|
|
}
|
|
|
|
char UITask::handleLongPress(char c) {
|
|
if (millis() - ui_started_at < 8000) { // long press in first 8 seconds since startup -> CLI/rescue
|
|
the_mesh.enterCLIRescue();
|
|
return 0;
|
|
}
|
|
if (c == KEY_ENTER) return KEY_CONTEXT_MENU;
|
|
return c;
|
|
}
|
|
|
|
char UITask::handleDoubleClick(char c) {
|
|
MESH_DEBUG_PRINTLN("UITask: double click triggered");
|
|
checkDisplayOn(c);
|
|
return c;
|
|
}
|
|
|
|
char UITask::handleTripleClick(char c) {
|
|
MESH_DEBUG_PRINTLN("UITask: triple click triggered");
|
|
checkDisplayOn(c);
|
|
toggleBuzzer();
|
|
c = 0;
|
|
return c;
|
|
}
|
|
|
|
bool UITask::getGPSState() {
|
|
if (_sensors != NULL) {
|
|
int num = _sensors->getNumSettings();
|
|
for (int i = 0; i < num; i++) {
|
|
if (strcmp(_sensors->getSettingName(i), "gps") == 0) {
|
|
return !strcmp(_sensors->getSettingValue(i), "1");
|
|
}
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
void UITask::toggleGPS() {
|
|
if (_sensors != NULL) {
|
|
// toggle GPS on/off
|
|
int num = _sensors->getNumSettings();
|
|
for (int i = 0; i < num; i++) {
|
|
if (strcmp(_sensors->getSettingName(i), "gps") == 0) {
|
|
if (strcmp(_sensors->getSettingValue(i), "1") == 0) {
|
|
_sensors->setSettingValue("gps", "0");
|
|
_node_prefs->gps_enabled = 0;
|
|
notify(UIEventType::ack);
|
|
} else {
|
|
_sensors->setSettingValue("gps", "1");
|
|
_node_prefs->gps_enabled = 1;
|
|
notify(UIEventType::ack);
|
|
}
|
|
the_mesh.savePrefs();
|
|
showAlert(_node_prefs->gps_enabled ? "GPS: Enabled" : "GPS: Disabled", 800);
|
|
_next_refresh = 0;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void UITask::applyTxPower() {
|
|
if (_node_prefs == NULL) return;
|
|
radio_set_tx_power(_node_prefs->tx_power_dbm);
|
|
}
|
|
|
|
void UITask::applyGPSInterval() {
|
|
if (_node_prefs == NULL) return;
|
|
char buf[12];
|
|
sprintf(buf, "%u", _node_prefs->gps_interval);
|
|
sensors.setSettingValue("gps_interval", buf);
|
|
}
|
|
|
|
void UITask::applyBrightness() {
|
|
if (_display != NULL && _node_prefs != NULL) {
|
|
_display->setBrightness(_node_prefs->display_brightness);
|
|
}
|
|
}
|
|
|
|
void UITask::setBrightnessLevel(uint8_t level) {
|
|
if (_node_prefs == NULL) return;
|
|
if (level > 4) level = 4;
|
|
_node_prefs->display_brightness = level;
|
|
applyBrightness();
|
|
_next_refresh = 0;
|
|
}
|
|
|
|
void UITask::setBuzzerVolumeLevel(uint8_t level) {
|
|
#ifdef PIN_BUZZER
|
|
if (_node_prefs == NULL) return;
|
|
if (level > 4) level = 4;
|
|
_node_prefs->buzzer_volume = level;
|
|
buzzer.setVolume(level);
|
|
if (level > 0) buzzer.playForced("Vol:d=16,o=5,b=120:c");
|
|
_next_refresh = 0;
|
|
#endif
|
|
}
|
|
|
|
void UITask::toggleBuzzer() {
|
|
#ifdef PIN_BUZZER
|
|
if (_node_prefs) _node_prefs->buzzer_auto = 0; // exit auto mode
|
|
if (buzzer.isQuiet()) {
|
|
buzzer.quiet(false);
|
|
notify(UIEventType::ack);
|
|
} else {
|
|
buzzer.quiet(true);
|
|
}
|
|
if (_node_prefs) _node_prefs->buzzer_quiet = buzzer.isQuiet();
|
|
the_mesh.savePrefs();
|
|
showAlert(buzzer.isQuiet() ? "Buzzer: OFF" : "Buzzer: ON", 800);
|
|
_next_refresh = 0;
|
|
#endif
|
|
}
|
|
|
|
int UITask::getBuzzerMode() {
|
|
#ifdef PIN_BUZZER
|
|
if (_node_prefs && _node_prefs->buzzer_auto) return 2;
|
|
return buzzer.isQuiet() ? 1 : 0;
|
|
#else
|
|
return 1;
|
|
#endif
|
|
}
|
|
|
|
void UITask::cycleBuzzerMode() {
|
|
#ifdef PIN_BUZZER
|
|
if (!_node_prefs) return;
|
|
int mode = getBuzzerMode();
|
|
mode = (mode + 1) % 3; // ON(0) → OFF(1) → Auto(2) → ON
|
|
_node_prefs->buzzer_auto = (mode == 2) ? 1 : 0;
|
|
if (mode == 0) { buzzer.quiet(false); _node_prefs->buzzer_quiet = 0; notify(UIEventType::ack); }
|
|
if (mode == 1) { buzzer.quiet(true); _node_prefs->buzzer_quiet = 1; }
|
|
if (mode == 2) { buzzer.quiet(hasConnection()); }
|
|
static const char* labels[] = { "Buzzer: ON", "Buzzer: OFF", "Buzzer: Auto" };
|
|
showAlert(labels[mode], 800);
|
|
_next_refresh = 0;
|
|
#endif
|
|
}
|