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11 changed files with 624 additions and 559 deletions

View File

@@ -1,52 +0,0 @@
{
"build": {
"arduino": {
"ldscript": "nrf52840_s140_v6.ld"
},
"core": "nRF5",
"cpu": "cortex-m4",
"extra_flags": "-DARDUINO_NRF52840_FEATHER -DNRF52840_XXAA",
"f_cpu": "64000000L",
"hwids": [
["0x239A", "0x8029"],
["0x239A", "0x0029"],
["0x239A", "0x002A"],
["0x239A", "0x802A"]
],
"usb_product": "GAT562 Mesh Tracker Pro",
"mcu": "nrf52840",
"variant": "gat562_mesh_tracker_pro",
"bsp": {
"name": "adafruit"
},
"softdevice": {
"sd_flags": "-DS140",
"sd_name": "s140",
"sd_version": "6.1.1",
"sd_fwid": "0x00B6"
},
"bootloader": {
"settings_addr": "0xFF000"
}
},
"connectivity": ["bluetooth"],
"debug": {
"jlink_device": "nRF52840_xxAA",
"svd_path": "nrf52840.svd",
"openocd_target": "nrf52840-mdk-rs"
},
"frameworks": ["arduino", "freertos"],
"name": "GAT562 Mesh Tracker Pro",
"upload": {
"maximum_ram_size": 248832,
"maximum_size": 815104,
"speed": 115200,
"protocol": "nrfutil",
"protocols": ["jlink", "nrfjprog", "nrfutil", "stlink"],
"use_1200bps_touch": true,
"require_upload_port": true,
"wait_for_upload_port": true
},
"url": "http://www.gat-iot.com/",
"vendor": "GAT"
}

View File

@@ -149,6 +149,11 @@ void Screen::showSimpleBanner(const char *message, uint32_t durationMs)
// Called to trigger a banner with custom message and duration
void Screen::showOverlayBanner(BannerOverlayOptions banner_overlay_options)
{
// Don't show overlay banner if virtual keyboard is active
if (NotificationRenderer::current_notification_type == notificationTypeEnum::text_input) {
return;
}
#ifdef USE_EINK
EINK_ADD_FRAMEFLAG(dispdev, DEMAND_FAST); // Skip full refresh for all overlay menus
#endif
@@ -173,6 +178,11 @@ void Screen::showOverlayBanner(BannerOverlayOptions banner_overlay_options)
// Called to trigger a banner with custom message and duration
void Screen::showNodePicker(const char *message, uint32_t durationMs, std::function<void(uint32_t)> bannerCallback)
{
// Don't show node picker if virtual keyboard is active
if (NotificationRenderer::current_notification_type == notificationTypeEnum::text_input) {
return;
}
#ifdef USE_EINK
EINK_ADD_FRAMEFLAG(dispdev, DEMAND_FAST); // Skip full refresh for all overlay menus
#endif
@@ -196,6 +206,11 @@ void Screen::showNodePicker(const char *message, uint32_t durationMs, std::funct
void Screen::showNumberPicker(const char *message, uint32_t durationMs, uint8_t digits,
std::function<void(uint32_t)> bannerCallback)
{
// Don't show number picker if virtual keyboard is active
if (NotificationRenderer::current_notification_type == notificationTypeEnum::text_input) {
return;
}
#ifdef USE_EINK
EINK_ADD_FRAMEFLAG(dispdev, DEMAND_FAST); // Skip full refresh for all overlay menus
#endif
@@ -221,24 +236,10 @@ void Screen::showTextInput(const char *header, const char *initialText, uint32_t
{
LOG_INFO("showTextInput called with header='%s', durationMs=%d", header ? header : "NULL", durationMs);
if (NotificationRenderer::virtualKeyboard) {
delete NotificationRenderer::virtualKeyboard;
NotificationRenderer::virtualKeyboard = nullptr;
}
NotificationRenderer::textInputCallback = nullptr;
NotificationRenderer::virtualKeyboard = new VirtualKeyboard();
if (header) {
NotificationRenderer::virtualKeyboard->setHeader(header);
}
if (initialText) {
NotificationRenderer::virtualKeyboard->setInputText(initialText);
}
// Set up callback with safer cleanup mechanism
// Start OnScreenKeyboardModule session (non-touch variant)
OnScreenKeyboardModule::instance().start(header, initialText, durationMs, textCallback);
NotificationRenderer::virtualKeyboard = OnScreenKeyboardModule::instance().getKeyboard();
NotificationRenderer::textInputCallback = textCallback;
NotificationRenderer::virtualKeyboard->setCallback([textCallback](const std::string &text) { textCallback(text); });
// Store the message and set the expiration timestamp (use same pattern as other notifications)
strncpy(NotificationRenderer::alertBannerMessage, header ? header : "Text Input", 255);
@@ -1410,21 +1411,28 @@ int Screen::handleTextMessage(const meshtastic_MeshPacket *packet)
// Incoming message
devicestate.has_rx_text_message = true; // Needed to include the message frame
hasUnreadMessage = true; // Enables mail icon in the header
setFrames(FOCUS_PRESERVE); // Refresh frame list without switching view
// Only wake/force display if the configuration allows it
if (shouldWakeOnReceivedMessage()) {
setOn(true); // Wake up the screen first
forceDisplay(); // Forces screen redraw
// Always update frame list to include new message, but defer UI updates if virtual keyboard is active
if (NotificationRenderer::current_notification_type != notificationTypeEnum::text_input) {
setFrames(FOCUS_PRESERVE); // Refresh frame list without switching view
// Only wake/force display if the configuration allows it
if (shouldWakeOnReceivedMessage()) {
setOn(true); // Wake up the screen first
forceDisplay(); // Forces screen redraw
}
} else {
// Virtual keyboard is active - just mark that frames need regeneration when keyboard closes
// The devicestate and hasUnreadMessage are already set above, so message will appear later
LOG_DEBUG("Virtual keyboard active - deferring frame list update for new message");
}
// === Prepare banner content ===
// Show message alert - either as normal banner or as keyboard popup
// === Common variables ===
const meshtastic_NodeInfoLite *node = nodeDB->getMeshNode(packet->from);
const char *longName = (node && node->has_user) ? node->user.long_name : nullptr;
const char *msgRaw = reinterpret_cast<const char *>(packet->decoded.payload.bytes);
char banner[256];
// Check for bell character in message to determine alert type
bool isAlert = false;
for (size_t i = 0; i < packet->decoded.payload.size && i < 100; i++) {
@@ -1434,21 +1442,57 @@ int Screen::handleTextMessage(const meshtastic_MeshPacket *packet)
}
}
if (isAlert) {
if (longName && longName[0]) {
snprintf(banner, sizeof(banner), "Alert Received from\n%s", longName);
if (NotificationRenderer::current_notification_type != notificationTypeEnum::text_input) {
// === Normal banner mode ===
char banner[256];
if (isAlert) {
if (longName && longName[0]) {
snprintf(banner, sizeof(banner), "Alert Received from\n%s", longName);
} else {
strcpy(banner, "Alert Received");
}
} else {
strcpy(banner, "Alert Received");
if (longName && longName[0]) {
snprintf(banner, sizeof(banner), "New Message from\n%s", longName);
} else {
strcpy(banner, "New Message");
}
}
screen->showSimpleBanner(banner, 3000);
} else {
if (longName && longName[0]) {
snprintf(banner, sizeof(banner), "New Message from\n%s", longName);
// === Virtual keyboard popup mode ===
char title[64];
if (isAlert) {
if (longName && longName[0]) {
snprintf(title, sizeof(title), "Alert from %s", longName);
} else {
strcpy(title, "Alert Received");
}
} else {
strcpy(banner, "New Message");
if (longName && longName[0]) {
snprintf(title, sizeof(title), "%s", longName);
} else {
strcpy(title, "New Message");
}
}
}
screen->showSimpleBanner(banner, 3000);
// Prepare content - clean the message content
char content[200];
size_t contentLen = 0;
for (size_t i = 0; i < packet->decoded.payload.size && i < sizeof(content) - 1; i++) {
if (msgRaw[i] != '\x07' && msgRaw[i] != '\0') { // Skip bell character and null
content[contentLen++] = msgRaw[i];
}
}
content[contentLen] = '\0';
// Show popup with title and content on virtual keyboard
NotificationRenderer::showKeyboardMessagePopupWithTitle(title, content, 5000);
// Force display update to show the popup immediately
setFastFramerate();
forceDisplay();
}
}
}

View File

@@ -49,6 +49,7 @@ const int *NotificationRenderer::optionsEnumPtr = nullptr;
std::function<void(int)> NotificationRenderer::alertBannerCallback = NULL;
bool NotificationRenderer::pauseBanner = false;
notificationTypeEnum NotificationRenderer::current_notification_type = notificationTypeEnum::none;
uint32_t NotificationRenderer::numDigits = 0;
uint32_t NotificationRenderer::currentNumber = 0;
VirtualKeyboard *NotificationRenderer::virtualKeyboard = nullptr;
@@ -85,9 +86,13 @@ void NotificationRenderer::drawSSLScreen(OLEDDisplay *display, OLEDDisplayUiStat
void NotificationRenderer::resetBanner()
{
notificationTypeEnum previousType = current_notification_type;
alertBannerMessage[0] = '\0';
current_notification_type = notificationTypeEnum::none;
OnScreenKeyboardModule::instance().clearPopup();
inEvent.inputEvent = INPUT_BROKER_NONE;
inEvent.kbchar = 0;
curSelected = 0;
@@ -100,6 +105,13 @@ void NotificationRenderer::resetBanner()
currentNumber = 0;
nodeDB->pause_sort(false);
// If we're exiting from text_input (virtual keyboard), stop module and trigger frame update
// to ensure any messages received during keyboard use are now displayed
if (previousType == notificationTypeEnum::text_input && screen) {
OnScreenKeyboardModule::instance().stop(false);
screen->setFrames(graphics::Screen::FOCUS_PRESERVE);
}
}
void NotificationRenderer::drawBannercallback(OLEDDisplay *display, OLEDDisplayUiState *state)
@@ -609,94 +621,26 @@ void NotificationRenderer::drawFrameFirmware(OLEDDisplay *display, OLEDDisplayUi
void NotificationRenderer::drawTextInput(OLEDDisplay *display, OLEDDisplayUiState *state)
{
if (virtualKeyboard) {
// Check for timeout and auto-exit if needed
if (virtualKeyboard->isTimedOut()) {
LOG_INFO("Virtual keyboard timeout - auto-exiting");
// Cancel virtual keyboard - call callback with empty string to indicate timeout
auto callback = textInputCallback; // Store callback before clearing
// Delegate session to OnScreenKeyboardModule
auto &osk = OnScreenKeyboardModule::instance();
// Clean up first to prevent re-entry
delete virtualKeyboard;
virtualKeyboard = nullptr;
textInputCallback = nullptr;
resetBanner();
// Call callback after cleanup
if (callback) {
callback("");
}
// Restore normal overlays
if (screen) {
screen->setFrames(graphics::Screen::FOCUS_PRESERVE);
}
return;
}
if (inEvent.inputEvent != INPUT_BROKER_NONE) {
if (inEvent.inputEvent == INPUT_BROKER_UP) {
// high frequency for move cursor left/right than up/down with encoders
extern ::RotaryEncoderInterruptImpl1 *rotaryEncoderInterruptImpl1;
extern ::UpDownInterruptImpl1 *upDownInterruptImpl1;
if (::rotaryEncoderInterruptImpl1 || ::upDownInterruptImpl1) {
virtualKeyboard->moveCursorLeft();
} else {
virtualKeyboard->moveCursorUp();
}
} else if (inEvent.inputEvent == INPUT_BROKER_DOWN) {
extern ::RotaryEncoderInterruptImpl1 *rotaryEncoderInterruptImpl1;
extern ::UpDownInterruptImpl1 *upDownInterruptImpl1;
if (::rotaryEncoderInterruptImpl1 || ::upDownInterruptImpl1) {
virtualKeyboard->moveCursorRight();
} else {
virtualKeyboard->moveCursorDown();
}
} else if (inEvent.inputEvent == INPUT_BROKER_LEFT) {
virtualKeyboard->moveCursorLeft();
} else if (inEvent.inputEvent == INPUT_BROKER_RIGHT) {
virtualKeyboard->moveCursorRight();
} else if (inEvent.inputEvent == INPUT_BROKER_UP_LONG) {
virtualKeyboard->moveCursorUp();
} else if (inEvent.inputEvent == INPUT_BROKER_DOWN_LONG) {
virtualKeyboard->moveCursorDown();
} else if (inEvent.inputEvent == INPUT_BROKER_ALT_PRESS) {
virtualKeyboard->moveCursorLeft();
} else if (inEvent.inputEvent == INPUT_BROKER_USER_PRESS) {
virtualKeyboard->moveCursorRight();
} else if (inEvent.inputEvent == INPUT_BROKER_SELECT) {
virtualKeyboard->handlePress();
} else if (inEvent.inputEvent == INPUT_BROKER_SELECT_LONG) {
virtualKeyboard->handleLongPress();
} else if (inEvent.inputEvent == INPUT_BROKER_CANCEL) {
auto callback = textInputCallback;
delete virtualKeyboard;
virtualKeyboard = nullptr;
textInputCallback = nullptr;
resetBanner();
if (callback) {
callback("");
}
if (screen) {
screen->setFrames(graphics::Screen::FOCUS_PRESERVE);
}
return;
}
// Consume the event after processing for virtual keyboard
inEvent.inputEvent = INPUT_BROKER_NONE;
}
// Clear the screen to avoid overlapping with underlying frames or overlays
display->setColor(BLACK);
display->fillRect(0, 0, display->getWidth(), display->getHeight());
display->setColor(WHITE);
// Draw the virtual keyboard
virtualKeyboard->draw(display, 0, 0);
} else {
// If virtualKeyboard is null, reset the banner to avoid getting stuck
LOG_INFO("Virtual keyboard is null - resetting banner");
if (!osk.isActive()) {
LOG_INFO("Virtual keyboard is not active - resetting banner");
resetBanner();
return;
}
if (inEvent.inputEvent != INPUT_BROKER_NONE) {
osk.handleInput(inEvent);
inEvent.inputEvent = INPUT_BROKER_NONE; // consume
}
// Draw. If draw returns false, session ended (timeout or cancel)
if (!osk.draw(display)) {
// Session ended, ensure banner reset and restore frames
resetBanner();
if (screen)
screen->setFrames(graphics::Screen::FOCUS_PRESERVE);
}
}
@@ -705,5 +649,152 @@ bool NotificationRenderer::isOverlayBannerShowing()
return strlen(alertBannerMessage) > 0 && (alertBannerUntil == 0 || millis() <= alertBannerUntil);
}
void NotificationRenderer::showKeyboardMessagePopupWithTitle(const char *title, const char *content, uint32_t durationMs)
{
if (!title || !content || current_notification_type != notificationTypeEnum::text_input)
return;
OnScreenKeyboardModule::instance().showPopup(title, content, durationMs);
}
// drawKeyboardMessagePopup removed; OnScreenKeyboardModule handles popup drawing within draw()
// Custom inverted color version for keyboard popup - black background with white text
void NotificationRenderer::drawInvertedNotificationBox(OLEDDisplay *display, OLEDDisplayUiState *state, const char *lines[],
uint16_t totalLines, uint8_t firstOptionToShow, uint16_t maxWidth)
{
bool is_picker = false;
uint16_t lineCount = 0;
// === Layout Configuration ===
constexpr uint16_t hPadding = 5;
constexpr uint16_t vPadding = 2;
bool needs_bell = false;
uint16_t lineWidths[totalLines] = {0};
uint16_t lineLengths[totalLines] = {0};
if (maxWidth != 0)
is_picker = true;
// Setup font and alignment
display->setFont(FONT_SMALL);
display->setTextAlignment(TEXT_ALIGN_LEFT);
while (lines[lineCount] != nullptr) {
auto newlinePointer = strchr(lines[lineCount], '\n');
if (newlinePointer)
lineLengths[lineCount] = (newlinePointer - lines[lineCount]);
else
lineLengths[lineCount] = strlen(lines[lineCount]);
lineWidths[lineCount] = display->getStringWidth(lines[lineCount], lineLengths[lineCount], true);
if (!is_picker) {
if (lineWidths[lineCount] > maxWidth)
maxWidth = lineWidths[lineCount];
}
lineCount++;
}
uint16_t boxWidth = hPadding * 2 + maxWidth;
if (needs_bell) {
if (isHighResolution && boxWidth <= 150)
boxWidth += 26;
if (!isHighResolution && boxWidth <= 100)
boxWidth += 20;
}
uint16_t screenHeight = display->height();
uint8_t effectiveLineHeight = FONT_HEIGHT_SMALL - 3;
uint8_t visibleTotalLines = std::min<uint8_t>(lineCount, (screenHeight - vPadding * 2) / effectiveLineHeight);
uint16_t contentHeight = visibleTotalLines * effectiveLineHeight;
uint16_t boxHeight = contentHeight + vPadding * 2;
if (visibleTotalLines == 1) {
boxHeight += (isHighResolution) ? 4 : 3;
}
int16_t boxLeft = (display->width() / 2) - (boxWidth / 2);
if (totalLines > visibleTotalLines) {
boxWidth += (isHighResolution) ? 4 : 2;
}
int16_t boxTop = (display->height() / 2) - (boxHeight / 2);
// === Draw Box with INVERTED COLORS ===
// Add outer separation pixels (1-pixel white background around the box)
display->setColor(WHITE);
display->fillRect(boxLeft - 1, boxTop - 1, boxWidth + 2, boxHeight + 2);
// Make outer corners round by filling back with背景色 (BLACK for separation)
display->setColor(BLACK);
// Top-left outer corner
display->fillRect(boxLeft - 1, boxTop - 1, 1, 1);
// Top-right outer corner
display->fillRect(boxLeft + boxWidth, boxTop - 1, 1, 1);
// Bottom-left outer corner
display->fillRect(boxLeft - 1, boxTop + boxHeight, 1, 1);
// Bottom-right outer corner
display->fillRect(boxLeft + boxWidth, boxTop + boxHeight, 1, 1);
// Draw single pixel black border
display->setColor(BLACK);
display->drawRect(boxLeft, boxTop, boxWidth, boxHeight);
// Make inner corners round by filling white pixels at corners
display->setColor(WHITE);
display->fillRect(boxLeft, boxTop, 1, 1);
display->fillRect(boxLeft + boxWidth - 1, boxTop, 1, 1);
display->fillRect(boxLeft, boxTop + boxHeight - 1, 1, 1);
display->fillRect(boxLeft + boxWidth - 1, boxTop + boxHeight - 1, 1, 1);
// Fill interior with BLACK (inverted)
display->setColor(BLACK);
display->fillRect(boxLeft + 1, boxTop + 1, boxWidth - 2, boxHeight - 2);
// === Draw Content with WHITE text on BLACK background ===
display->setColor(WHITE);
int16_t lineY = boxTop + vPadding;
for (int i = 0; i < lineCount; i++) {
int16_t textX = boxLeft + (boxWidth - lineWidths[i]) / 2;
char lineBuffer[lineLengths[i] + 1];
strncpy(lineBuffer, lines[i], lineLengths[i]);
lineBuffer[lineLengths[i]] = '\0';
// For keyboard popup, treat first line as title if it's different from others
if (i == 0 && lineCount > 1) {
// Title line - use inverted colors (white background, black text)
display->setColor(WHITE);
int background_yOffset = 1;
// Check for low hanging characters
if (strchr(lineBuffer, 'p') || strchr(lineBuffer, 'g') || strchr(lineBuffer, 'y') || strchr(lineBuffer, 'j')) {
background_yOffset = -1;
}
display->fillRect(boxLeft + 1, boxTop + 1, boxWidth - 2, effectiveLineHeight - background_yOffset);
display->setColor(BLACK);
int yOffset = 3;
display->drawString(textX, lineY - yOffset, lineBuffer);
display->setColor(WHITE); // Reset to white for next lines
lineY += (effectiveLineHeight - 2 - background_yOffset);
} else {
// Content lines - white text on black background
display->drawString(textX, lineY, lineBuffer);
lineY += effectiveLineHeight;
}
}
// === Scroll Bar (if needed) ===
if (totalLines > visibleTotalLines) {
const uint8_t scrollBarWidth = 5;
int16_t scrollBarX = boxLeft + boxWidth - scrollBarWidth - 2;
int16_t scrollBarY = boxTop + vPadding + effectiveLineHeight;
uint16_t scrollBarHeight = boxHeight - vPadding * 2 - effectiveLineHeight;
float ratio = (float)visibleTotalLines / totalLines;
uint16_t indicatorHeight = std::max((int)(scrollBarHeight * ratio), 4);
float scrollRatio = (float)(firstOptionToShow + lineCount - visibleTotalLines) / (totalLines - visibleTotalLines);
uint16_t indicatorY = scrollBarY + scrollRatio * (scrollBarHeight - indicatorHeight);
display->setColor(WHITE);
display->drawRect(scrollBarX, scrollBarY, scrollBarWidth, scrollBarHeight);
display->fillRect(scrollBarX + 1, indicatorY, scrollBarWidth - 2, indicatorHeight);
}
}
} // namespace graphics
#endif

View File

@@ -4,6 +4,7 @@
#include "OLEDDisplayUi.h"
#include "graphics/Screen.h"
#include "graphics/VirtualKeyboard.h"
#include "modules/OnScreenKeyboardModule.h"
#include <functional>
#include <string>
#define MAX_LINES 5
@@ -31,6 +32,7 @@ class NotificationRenderer
static bool pauseBanner;
static void resetBanner();
static void showKeyboardMessagePopupWithTitle(const char *title, const char *content, uint32_t durationMs);
static void drawBannercallback(OLEDDisplay *display, OLEDDisplayUiState *state);
static void drawAlertBannerOverlay(OLEDDisplay *display, OLEDDisplayUiState *state);
static void drawNumberPicker(OLEDDisplay *display, OLEDDisplayUiState *state);
@@ -38,6 +40,8 @@ class NotificationRenderer
static void drawTextInput(OLEDDisplay *display, OLEDDisplayUiState *state);
static void drawNotificationBox(OLEDDisplay *display, OLEDDisplayUiState *state, const char *lines[MAX_LINES + 1],
uint16_t totalLines, uint8_t firstOptionToShow, uint16_t maxWidth = 0);
static void drawInvertedNotificationBox(OLEDDisplay *display, OLEDDisplayUiState *state, const char *lines[],
uint16_t totalLines, uint8_t firstOptionToShow, uint16_t maxWidth = 0);
static void drawCriticalFaultFrame(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
static void drawSSLScreen(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);

View File

@@ -653,11 +653,12 @@ bool CannedMessageModule::handleMessageSelectorInput(const InputEvent *event, bo
runState = CANNED_MESSAGE_RUN_STATE_SENDING_ACTIVE;
currentMessageIndex = -1;
UIFrameEvent e;
e.action = UIFrameEvent::Action::REGENERATE_FRAMESET;
this->notifyObservers(&e);
screen->forceDisplay();
// IMPORTANT: Don't delete virtual keyboard here - it's still executing!
// Just clear the callback to prevent further input
graphics::NotificationRenderer::textInputCallback = nullptr;
// Schedule keyboard cleanup for next run cycle
// This allows the current submitText() method to complete safely
setIntervalFromNow(500);
return;
} else {
@@ -1003,11 +1004,11 @@ int32_t CannedMessageModule::runOnce()
// Normal module disable/idle handling
if ((this->runState == CANNED_MESSAGE_RUN_STATE_DISABLED) || (this->runState == CANNED_MESSAGE_RUN_STATE_INACTIVE)) {
// Clean up virtual keyboard if needed when going inactive
if (graphics::NotificationRenderer::virtualKeyboard && graphics::NotificationRenderer::textInputCallback == nullptr) {
// Clean up virtual keyboard if needed when going inactive, but only if virtual keyboard is not actively being used
if (graphics::NotificationRenderer::virtualKeyboard && graphics::NotificationRenderer::textInputCallback == nullptr &&
graphics::NotificationRenderer::current_notification_type != graphics::notificationTypeEnum::text_input) {
LOG_INFO("Performing delayed virtual keyboard cleanup");
delete graphics::NotificationRenderer::virtualKeyboard;
graphics::NotificationRenderer::virtualKeyboard = nullptr;
graphics::OnScreenKeyboardModule::instance().stop(false);
}
temporaryMessage = "";
@@ -1024,9 +1025,7 @@ int32_t CannedMessageModule::runOnce()
// Clean up virtual keyboard after sending
if (graphics::NotificationRenderer::virtualKeyboard) {
LOG_INFO("Cleaning up virtual keyboard after message send");
delete graphics::NotificationRenderer::virtualKeyboard;
graphics::NotificationRenderer::virtualKeyboard = nullptr;
graphics::NotificationRenderer::textInputCallback = nullptr;
graphics::OnScreenKeyboardModule::instance().stop(false);
graphics::NotificationRenderer::resetBanner();
}
@@ -1081,12 +1080,13 @@ int32_t CannedMessageModule::runOnce()
this->cursor = 0;
this->runState = CANNED_MESSAGE_RUN_STATE_INACTIVE;
// Clean up virtual keyboard if it exists during timeout
if (graphics::NotificationRenderer::virtualKeyboard) {
// Clean up virtual keyboard if it exists during timeout, but only if it's not actively being used by another process
if (graphics::NotificationRenderer::virtualKeyboard &&
graphics::NotificationRenderer::current_notification_type == graphics::notificationTypeEnum::text_input) {
LOG_INFO("Virtual keyboard is active - not cleaning up due to CannedMessage timeout");
} else if (graphics::NotificationRenderer::virtualKeyboard) {
LOG_INFO("Cleaning up virtual keyboard due to module timeout");
delete graphics::NotificationRenderer::virtualKeyboard;
graphics::NotificationRenderer::virtualKeyboard = nullptr;
graphics::NotificationRenderer::textInputCallback = nullptr;
graphics::OnScreenKeyboardModule::instance().stop(false);
graphics::NotificationRenderer::resetBanner();
}

View File

@@ -0,0 +1,279 @@
#include "configuration.h"
#if HAS_SCREEN
#include "graphics/SharedUIDisplay.h"
#include "graphics/draw/NotificationRenderer.h" // drawInvertedNotificationBox signature reuse
#include "input/RotaryEncoderInterruptImpl1.h"
#include "input/UpDownInterruptImpl1.h"
#include "modules/OnScreenKeyboardModule.h"
#include <Arduino.h>
#include <algorithm>
namespace graphics
{
OnScreenKeyboardModule &OnScreenKeyboardModule::instance()
{
static OnScreenKeyboardModule inst;
return inst;
}
OnScreenKeyboardModule::~OnScreenKeyboardModule()
{
if (keyboard) {
delete keyboard;
keyboard = nullptr;
}
}
void OnScreenKeyboardModule::start(const char *header, const char *initialText, uint32_t,
std::function<void(const std::string &)> cb)
{
if (keyboard) {
delete keyboard;
keyboard = nullptr;
}
keyboard = new VirtualKeyboard();
callback = cb;
if (header)
keyboard->setHeader(header);
if (initialText)
keyboard->setInputText(initialText);
// Route VK submission/cancel events back into the module
keyboard->setCallback([this](const std::string &text) {
if (text.empty()) {
this->onCancel();
} else {
this->onSubmit(text);
}
});
// Maintain legacy compatibility hooks
NotificationRenderer::virtualKeyboard = keyboard;
NotificationRenderer::textInputCallback = callback;
}
void OnScreenKeyboardModule::stop(bool callEmptyCallback)
{
auto cb = callback;
callback = nullptr;
if (keyboard) {
delete keyboard;
keyboard = nullptr;
}
// Keep NotificationRenderer legacy pointers in sync
NotificationRenderer::virtualKeyboard = nullptr;
NotificationRenderer::textInputCallback = nullptr;
clearPopup();
if (callEmptyCallback && cb)
cb("");
}
bool OnScreenKeyboardModule::isActive() const
{
return keyboard != nullptr;
}
void OnScreenKeyboardModule::handleInput(const InputEvent &event)
{
if (!keyboard)
return;
// Auto-timeout check handled in draw() to centralize state transitions.
switch (event.inputEvent) {
case INPUT_BROKER_UP: {
if (::rotaryEncoderInterruptImpl1 || ::upDownInterruptImpl1)
keyboard->moveCursorLeft();
else
keyboard->moveCursorUp();
break;
}
case INPUT_BROKER_DOWN: {
if (::rotaryEncoderInterruptImpl1 || ::upDownInterruptImpl1)
keyboard->moveCursorRight();
else
keyboard->moveCursorDown();
break;
}
case INPUT_BROKER_LEFT:
keyboard->moveCursorLeft();
break;
case INPUT_BROKER_RIGHT:
keyboard->moveCursorRight();
break;
case INPUT_BROKER_UP_LONG:
keyboard->moveCursorUp();
break;
case INPUT_BROKER_DOWN_LONG:
keyboard->moveCursorDown();
break;
case INPUT_BROKER_ALT_PRESS:
keyboard->moveCursorLeft();
break;
case INPUT_BROKER_USER_PRESS:
keyboard->moveCursorRight();
break;
case INPUT_BROKER_SELECT:
keyboard->handlePress();
break;
case INPUT_BROKER_SELECT_LONG:
keyboard->handleLongPress();
break;
case INPUT_BROKER_CANCEL:
onCancel();
break;
default:
break;
}
}
bool OnScreenKeyboardModule::draw(OLEDDisplay *display)
{
if (!keyboard)
return false;
// Timeout
if (keyboard->isTimedOut()) {
onCancel();
return false;
}
// Clear full screen behind keyboard
display->setColor(BLACK);
display->fillRect(0, 0, display->getWidth(), display->getHeight());
display->setColor(WHITE);
keyboard->draw(display, 0, 0);
// Draw popup overlay if needed
drawPopup(display);
return true;
}
void OnScreenKeyboardModule::onSubmit(const std::string &text)
{
auto cb = callback;
stop(false);
if (cb)
cb(text);
}
void OnScreenKeyboardModule::onCancel()
{
stop(true);
}
void OnScreenKeyboardModule::showPopup(const char *title, const char *content, uint32_t durationMs)
{
if (!title || !content)
return;
strncpy(popupTitle, title, sizeof(popupTitle) - 1);
popupTitle[sizeof(popupTitle) - 1] = '\0';
strncpy(popupMessage, content, sizeof(popupMessage) - 1);
popupMessage[sizeof(popupMessage) - 1] = '\0';
popupUntil = millis() + durationMs;
popupVisible = true;
}
void OnScreenKeyboardModule::clearPopup()
{
popupTitle[0] = '\0';
popupMessage[0] = '\0';
popupUntil = 0;
popupVisible = false;
}
void OnScreenKeyboardModule::drawPopup(OLEDDisplay *display)
{
if (!popupVisible)
return;
if (millis() > popupUntil || popupMessage[0] == '\0') {
popupVisible = false;
return;
}
// Build lines and leverage NotificationRenderer inverted box drawing for consistent style
constexpr uint16_t maxContentLines = 3;
const bool hasTitle = popupTitle[0] != '\0';
display->setFont(FONT_SMALL);
display->setTextAlignment(TEXT_ALIGN_LEFT);
const uint16_t maxWrapWidth = display->width() - 40;
auto wrapText = [&](const char *text, uint16_t availableWidth) -> std::vector<std::string> {
std::vector<std::string> wrapped;
std::string current;
std::string word;
const char *p = text;
while (*p && wrapped.size() < maxContentLines) {
while (*p && (*p == ' ' || *p == '\t' || *p == '\n' || *p == '\r')) {
if (*p == '\n') {
if (!current.empty()) {
wrapped.push_back(current);
current.clear();
if (wrapped.size() >= maxContentLines)
break;
}
}
++p;
}
if (!*p || wrapped.size() >= maxContentLines)
break;
word.clear();
while (*p && *p != ' ' && *p != '\t' && *p != '\n' && *p != '\r')
word += *p++;
if (word.empty())
continue;
std::string test = current.empty() ? word : (current + " " + word);
uint16_t w = display->getStringWidth(test.c_str(), test.length(), true);
if (w <= availableWidth)
current = test;
else {
if (!current.empty()) {
wrapped.push_back(current);
current = word;
if (wrapped.size() >= maxContentLines)
break;
} else {
current = word;
while (current.size() > 1 &&
display->getStringWidth(current.c_str(), current.length(), true) > availableWidth)
current.pop_back();
}
}
}
if (!current.empty() && wrapped.size() < maxContentLines)
wrapped.push_back(current);
return wrapped;
};
std::vector<std::string> allLines;
if (hasTitle)
allLines.emplace_back(popupTitle);
char buf[sizeof(popupMessage)];
strncpy(buf, popupMessage, sizeof(buf) - 1);
buf[sizeof(buf) - 1] = '\0';
char *paragraph = strtok(buf, "\n");
while (paragraph && allLines.size() < maxContentLines + (hasTitle ? 1 : 0)) {
auto wrapped = wrapText(paragraph, maxWrapWidth);
for (const auto &ln : wrapped) {
if (allLines.size() >= maxContentLines + (hasTitle ? 1 : 0))
break;
allLines.push_back(ln);
}
paragraph = strtok(nullptr, "\n");
}
std::vector<const char *> ptrs;
for (const auto &ln : allLines)
ptrs.push_back(ln.c_str());
ptrs.push_back(nullptr);
// Use the inverted notification box already present in NotificationRenderer
NotificationRenderer::drawInvertedNotificationBox(display, nullptr, ptrs.data(), allLines.size(), 0, 0);
}
} // namespace graphics
#endif // HAS_SCREEN

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@@ -0,0 +1,69 @@
#pragma once
#include "configuration.h"
#if HAS_SCREEN
#include "graphics/Screen.h" // InputEvent
#include "graphics/VirtualKeyboard.h"
#include <OLEDDisplay.h>
#include <functional>
#include <string>
namespace graphics
{
// Lightweight UI module to manage on-screen keyboard (non-touch).
class OnScreenKeyboardModule
{
public:
static OnScreenKeyboardModule &instance();
// Begin a keyboard session
void start(const char *header, const char *initialText,
uint32_t /*durationMs unused here - NotificationRenderer controls banner timeout*/,
std::function<void(const std::string &)> callback);
// Stop current session (optionally call callback with empty string)
void stop(bool callEmptyCallback);
// Session status
bool isActive() const;
// Event handling + drawing
void handleInput(const InputEvent &event);
// Draw keyboard and any overlay popup; return false if session ended (timeout or submit/cancel)
bool draw(OLEDDisplay *display);
// Popup helpers (title/content shown above keyboard)
void showPopup(const char *title, const char *content, uint32_t durationMs);
void clearPopup();
// Compatibility: expose underlying keyboard pointer for existing callsites
VirtualKeyboard *getKeyboard() const { return keyboard; }
private:
OnScreenKeyboardModule() = default;
~OnScreenKeyboardModule();
OnScreenKeyboardModule(const OnScreenKeyboardModule &) = delete;
OnScreenKeyboardModule &operator=(const OnScreenKeyboardModule &) = delete;
// Internal helpers
void onSubmit(const std::string &text);
void onCancel();
// Popup rendering
void drawPopup(OLEDDisplay *display);
VirtualKeyboard *keyboard = nullptr;
std::function<void(const std::string &)> callback;
// Popup state
char popupTitle[64] = {0};
char popupMessage[256] = {0};
uint32_t popupUntil = 0;
bool popupVisible = false;
};
} // namespace graphics
#endif // HAS_SCREEN

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@@ -1,15 +0,0 @@
; GAT562 Mesh Tracker Pro with Trackball support
[env:gat562_mesh_tracker_pro]
extends = nrf52840_base
board = gat562_mesh_tracker_pro
board_level = extra
build_flags = ${nrf52840_base.build_flags}
-I variants/nrf52840/gat562_mesh_tracker_pro
-D GAT562_MESH_TRACKER_PRO
-DGPS_POWER_TOGGLE ; comment this line to disable triple press function on the user button to turn off gps entirely.
-DRADIOLIB_EXCLUDE_SX128X=1
-DRADIOLIB_EXCLUDE_SX127X=1
-DRADIOLIB_EXCLUDE_LR11X0=1
build_src_filter = ${nrf52_base.build_src_filter} +<../variants/nrf52840/gat562_mesh_tracker_pro>
lib_deps =
${nrf52840_base.lib_deps}

View File

@@ -1,54 +0,0 @@
/*
Copyright (c) 2014-2015 Arduino LLC. All right reserved.
Copyright (c) 2016 Sandeep Mistry All right reserved.
Copyright (c) 2018, Adafruit Industries (adafruit.com)
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
See the GNU Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "variant.h"
#include "nrf.h"
#include "wiring_constants.h"
#include "wiring_digital.h"
const uint32_t g_ADigitalPinMap[] = {
// P0
0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31,
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// LED1 & LED2
pinMode(PIN_LED1, OUTPUT);
ledOff(PIN_LED1);
pinMode(PIN_LED2, OUTPUT);
ledOff(PIN_LED2);
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// Initialize trackball pins as inputs with pullup
#ifdef HAS_TRACKBALL
pinMode(TB_UP, INPUT_PULLUP);
pinMode(TB_DOWN, INPUT_PULLUP);
pinMode(TB_LEFT, INPUT_PULLUP);
pinMode(TB_RIGHT, INPUT_PULLUP);
pinMode(TB_PRESS, INPUT_PULLUP);
#endif
}

View File

@@ -1,300 +0,0 @@
/*
Copyright (c) 2014-2015 Arduino LLC. All right reserved.
Copyright (c) 2016 Sandeep Mistry All right reserved.
Copyright (c) 2018, Adafruit Industries (adafruit.com)
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
See the GNU Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef _VARIANT_GAT562_MESH_TRACKER_PRO_
#define _VARIANT_GAT562_MESH_TRACKER_PRO_
// led pin 2 (blue), see https://github.com/meshtastic/firmware/blob/master/src/mesh/NodeDB.cpp#L723
#define RAK4630
/** Master clock frequency */
#define VARIANT_MCK (64000000ul)
#define USE_LFXO // Board uses 32khz crystal for LF
// define USE_LFRC // Board uses RC for LF
/*----------------------------------------------------------------------------
* Headers
*----------------------------------------------------------------------------*/
#include "WVariant.h"
#ifdef __cplusplus
extern "C" {
#endif // __cplusplus
// Number of pins defined in PinDescription array
#define PINS_COUNT (48)
#define NUM_DIGITAL_PINS (48)
#define NUM_ANALOG_INPUTS (6)
#define NUM_ANALOG_OUTPUTS (0)
// LEDs
#define PIN_LED1 (35)
#define PIN_LED2 (36)
#define LED_BUILTIN PIN_LED1
#define LED_CONN PIN_LED2
#define LED_GREEN PIN_LED1
#define LED_BLUE PIN_LED2
#define LED_STATE_ON 1 // State when LED is litted
/*
* Buttons
*/
#define CANCEL_BUTTON_PIN 9
#define BUTTON_NEED_PULLUP
#define CANCEL_BUTTON_ACTIVE_LOW true
#define CANCEL_BUTTON_ACTIVE_PULLUP false
/*
* Analog pins
*/
#define PIN_A0 (5)
#define PIN_A1 (31)
#define PIN_A2 (28)
#define PIN_A3 (29)
#define PIN_A4 (30)
#define PIN_A5 (31)
#define PIN_A6 (0xff)
#define PIN_A7 (0xff)
static const uint8_t A0 = PIN_A0;
static const uint8_t A1 = PIN_A1;
static const uint8_t A2 = PIN_A2;
static const uint8_t A3 = PIN_A3;
static const uint8_t A4 = PIN_A4;
static const uint8_t A5 = PIN_A5;
static const uint8_t A6 = PIN_A6;
static const uint8_t A7 = PIN_A7;
#define ADC_RESOLUTION 14
// Other pins
#define PIN_AREF (2)
#define PIN_NFC1 (9)
#define PIN_NFC2 (10)
static const uint8_t AREF = PIN_AREF;
/*
* Serial interfaces
*/
#define PIN_SERIAL1_RX (15)
#define PIN_SERIAL1_TX (16)
// Connected to Jlink CDC
#define PIN_SERIAL2_RX (8)
#define PIN_SERIAL2_TX (6)
/*
* SPI Interfaces
*/
#define SPI_INTERFACES_COUNT 2
#define PIN_SPI_MISO (45)
#define PIN_SPI_MOSI (44)
#define PIN_SPI_SCK (43)
#define PIN_SPI1_MISO (29) // (0 + 29)
#define PIN_SPI1_MOSI (30) // (0 + 30)
#define PIN_SPI1_SCK (3) // (0 + 3)
static const uint8_t SS = 42;
static const uint8_t MOSI = PIN_SPI_MOSI;
static const uint8_t MISO = PIN_SPI_MISO;
static const uint8_t SCK = PIN_SPI_SCK;
/*
* eink display pins
*/
// #define PIN_EINK_CS (0 + 26)
// #define PIN_EINK_BUSY (0 + 4)
// #define PIN_EINK_DC (0 + 17)
// #define PIN_EINK_RES (-1)
// #define PIN_EINK_SCLK (0 + 3)
// #define PIN_EINK_MOSI (0 + 30) // also called SDI
// #define USE_EINK
// Display - OLED connected via I2C
#define HAS_SCREEN 1
#define USE_SSD1306
// RAKRGB
// #define HAS_NCP5623
/*
* Wire Interfaces
*/
#define WIRE_INTERFACES_COUNT 1
#define PIN_WIRE_SDA (13)
#define PIN_WIRE_SCL (14)
// QSPI Pins
#define PIN_QSPI_SCK 3
#define PIN_QSPI_CS 26
#define PIN_QSPI_IO0 30
#define PIN_QSPI_IO1 29
#define PIN_QSPI_IO2 28
#define PIN_QSPI_IO3 2
// On-board QSPI Flash
#define EXTERNAL_FLASH_DEVICES IS25LP080D
#define EXTERNAL_FLASH_USE_QSPI
/* @note RAK5005-O GPIO mapping to RAK4631 GPIO ports
RAK5005-O <-> nRF52840
IO1 <-> P0.17 (Arduino GPIO number 17)
IO2 <-> P1.02 (Arduino GPIO number 34)
IO3 <-> P0.21 (Arduino GPIO number 21)
IO4 <-> P0.04 (Arduino GPIO number 4)
IO5 <-> P0.09 (Arduino GPIO number 9)
IO6 <-> P0.10 (Arduino GPIO number 10)
IO7 <-> P0.28 (Arduino GPIO number 28)
SW1 <-> P0.01 (Arduino GPIO number 1)
A0 <-> P0.04/AIN2 (Arduino Analog A2
A1 <-> P0.31/AIN7 (Arduino Analog A7
SPI_CS <-> P0.26 (Arduino GPIO number 26)
*/
// RAK4630 LoRa module
/* Setup of the SX1262 LoRa module ( https://docs.rakwireless.com/Product-Categories/WisBlock/RAK4631/Datasheet/ )
P1.10 NSS SPI NSS (Arduino GPIO number 42)
P1.11 SCK SPI CLK (Arduino GPIO number 43)
P1.12 MOSI SPI MOSI (Arduino GPIO number 44)
P1.13 MISO SPI MISO (Arduino GPIO number 45)
P1.14 BUSY BUSY signal (Arduino GPIO number 46)
P1.15 DIO1 DIO1 event interrupt (Arduino GPIO number 47)
P1.06 NRESET NRESET manual reset of the SX1262 (Arduino GPIO number 38)
Important for successful SX1262 initialization:
* Setup DIO2 to control the antenna switch
* Setup DIO3 to control the TCXO power supply
* Setup the SX1262 to use it's DCDC regulator and not the LDO
* RAK4630 schematics show GPIO P1.07 connected to the antenna switch, but it should not be initialized, as DIO2 will do the
control of the antenna switch
SO GPIO 39/TXEN MAY NOT BE DEFINED FOR SUCCESSFUL OPERATION OF THE SX1262 - TG
*/
// configure the SET pin on the RAK12039 sensor board to disable the sensor while not reading
// air quality telemetry. PIN_NFC2 doesn't seem to be used anywhere else in the codebase, but if
// you're having problems with your node behaving weirdly when a RAK12039 board isn't connected,
// try disabling this.
// #define PMSA003I_ENABLE_PIN PIN_NFC2
// #define DETECTION_SENSOR_EN 4
#define USE_SX1262
#define SX126X_CS (42)
#define SX126X_DIO1 (47)
#define SX126X_BUSY (46)
#define SX126X_RESET (38)
// #define SX126X_TXEN (39)
// #define SX126X_RXEN (37)
#define SX126X_POWER_EN (37)
// DIO2 controlls an antenna switch and the TCXO voltage is controlled by DIO3
#define SX126X_DIO2_AS_RF_SWITCH
#define SX126X_DIO3_TCXO_VOLTAGE 1.8
// Testing USB detection
#define NRF_APM
// enables 3.3V periphery like GPS or IO Module
// Do not toggle this for GPS power savings
#define PIN_3V3_EN (34)
// RAK1910 GPS module
// If using the wisblock GPS module and pluged into Port A on WisBlock base
// IO1 is hooked to PPS (pin 12 on header) = gpio 17
// IO2 is hooked to GPS RESET = gpio 34, but it can not be used to this because IO2 is ALSO used to control 3V3_S power (1 is on).
// Therefore must be 1 to keep peripherals powered
// Power is on the controllable 3V3_S rail
// #define PIN_GPS_RESET (34)
// #define PIN_GPS_EN PIN_3V3_EN
#define PIN_GPS_PPS (17) // Pulse per second input from the GPS
#define GPS_BAUDRATE 9600
#define GPS_RX_PIN PIN_SERIAL1_RX
#define GPS_TX_PIN PIN_SERIAL1_TX
// Define pin to enable GPS toggle (set GPIO to LOW) via user button triple press
// RAK12002 RTC Module
// #define RV3028_RTC (uint8_t)0b1010010
// RAK18001 Buzzer in Slot C
// #define PIN_BUZZER 21 // IO3 is PWM2
// NEW: set this via protobuf instead!
// Battery
// The battery sense is hooked to pin A0 (5)
#define BATTERY_PIN PIN_A0
// and has 12 bit resolution
#define BATTERY_SENSE_RESOLUTION_BITS 12
#define BATTERY_SENSE_RESOLUTION 4096.0
#undef AREF_VOLTAGE
#define AREF_VOLTAGE 3.0
#define VBAT_AR_INTERNAL AR_INTERNAL_3_0
#define ADC_MULTIPLIER 1.73
// #define HAS_RTC 1
// #define HAS_ETHERNET 1
// #define RAK_4631 1
// #define PIN_ETHERNET_RESET 21
// #define PIN_ETHERNET_SS PIN_EINK_CS
// #define ETH_SPI_PORT SPI1
// #define AQ_SET_PIN 10
// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
// Trackball Configuration
// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
#define CANNED_MESSAGE_MODULE_ENABLE 1
#define CANNED_MESSAGE_ADD_CONFIRMATION 1
// Trackball pins
#define HAS_TRACKBALL 1
#define TB_LEFT 30 // P0.30
#define TB_DOWN 4 // P0.04
#define TB_RIGHT 31 // P0.31
#define TB_UP 28 // P0.28
#define TB_PRESS 26 // P0.26 (SELECT)
#define TB_DIRECTION FALLING
#ifdef __cplusplus
}
#endif
/*----------------------------------------------------------------------------
* Arduino objects - C++ only
*----------------------------------------------------------------------------*/
#endif

View File

@@ -2,7 +2,6 @@
[env:meshtiny]
extends = nrf52840_base
board = meshtiny
board_level = extra
build_flags = ${nrf52840_base.build_flags} -Ivariants/nrf52840/meshtiny -D MESHTINY
-D USE_PIN_BUZZER
-D MESHTASTIC_EXCLUDE_GPS=1