Merge pull request #722 from fdlamotte/techo_epd_damage

Techo epd damage
This commit is contained in:
ripplebiz
2025-09-04 13:25:09 +10:00
committed by GitHub
5 changed files with 69 additions and 21 deletions

View File

@@ -3,7 +3,9 @@
#include "../MyMesh.h" #include "../MyMesh.h"
#include "target.h" #include "target.h"
#define AUTO_OFF_MILLIS 15000 // 15 seconds #ifndef AUTO_OFF_MILLIS
#define AUTO_OFF_MILLIS 15000 // 15 seconds
#endif
#define BOOT_SCREEN_MILLIS 3000 // 3 seconds #define BOOT_SCREEN_MILLIS 3000 // 3 seconds
#ifdef PIN_STATUS_LED #ifdef PIN_STATUS_LED
@@ -321,7 +323,11 @@ public:
display.setColor(DisplayDriver::LIGHT); display.setColor(DisplayDriver::LIGHT);
display.printWordWrap(p->msg, display.width()); display.printWordWrap(p->msg, display.width());
#if AUTO_OFF_MILLIS==0 // probably e-ink
return 10000; // 10 s
#else
return 1000; // next render after 1000 ms return 1000; // next render after 1000 ms
#endif
} }
bool handleInput(char c) override { bool handleInput(char c) override {
@@ -419,38 +425,34 @@ void UITask::newMsg(uint8_t path_len, const char* from_name, const char* text, i
if (_display != NULL) { if (_display != NULL) {
if (!_display->isOn()) _display->turnOn(); if (!_display->isOn()) _display->turnOn();
_auto_off = millis() + AUTO_OFF_MILLIS; // extend the auto-off timer _auto_off = millis() + AUTO_OFF_MILLIS; // extend the auto-off timer
_next_refresh = 0; // trigger refresh _next_refresh = 100; // trigger refresh
} }
} }
void UITask::userLedHandler() { void UITask::userLedHandler() {
#ifdef PIN_STATUS_LED #ifdef PIN_STATUS_LED
static int state = 0;
static int next_change = 0;
static int last_increment = 0;
int cur_time = millis(); int cur_time = millis();
if (cur_time > next_change) { if (cur_time > next_led_change) {
if (state == 0) { if (led_state == 0) {
state = 1; led_state = 1;
if (_msgcount > 0) { if (_msgcount > 0) {
last_increment = LED_ON_MSG_MILLIS; last_led_increment = LED_ON_MSG_MILLIS;
} else { } else {
last_increment = LED_ON_MILLIS; last_led_increment = LED_ON_MILLIS;
} }
next_change = cur_time + last_increment; next_led_change = cur_time + last_led_increment;
} else { } else {
state = 0; led_state = 0;
next_change = cur_time + LED_CYCLE_MILLIS - last_increment; next_led_change = cur_time + LED_CYCLE_MILLIS - last_led_increment;
} }
digitalWrite(PIN_STATUS_LED, state); digitalWrite(PIN_STATUS_LED, led_state);
} }
#endif #endif
} }
void UITask::setCurrScreen(UIScreen* c) { void UITask::setCurrScreen(UIScreen* c) {
curr = c; curr = c;
_next_refresh = 0; _next_refresh = 100;
} }
/* /*
@@ -519,11 +521,18 @@ void UITask::loop() {
c = handleLongPress(KEY_ENTER); c = handleLongPress(KEY_ENTER);
} }
#endif #endif
#if defined(DISP_BACKLIGHT) && defined(BACKLIGHT_BTN)
if (millis() > next_backlight_btn_check) {
bool touch_state = digitalRead(PIN_BUTTON2);
digitalWrite(DISP_BACKLIGHT, !touch_state);
next_backlight_btn_check = millis() + 300;
}
#endif
if (c != 0 && curr) { if (c != 0 && curr) {
curr->handleInput(c); curr->handleInput(c);
_auto_off = millis() + AUTO_OFF_MILLIS; // extend auto-off timer _auto_off = millis() + AUTO_OFF_MILLIS; // extend auto-off timer
_next_refresh = 0; // trigger refresh _next_refresh = 100; // trigger refresh
} }
userLedHandler(); userLedHandler();
@@ -553,9 +562,11 @@ void UITask::loop() {
} }
_display->endFrame(); _display->endFrame();
} }
#if AUTO_OFF_MILLIS > 0
if (millis() > _auto_off) { if (millis() > _auto_off) {
_display->turnOff(); _display->turnOff();
} }
#endif
} }
#ifdef AUTO_SHUTDOWN_MILLIVOLTS #ifdef AUTO_SHUTDOWN_MILLIVOLTS

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@@ -26,6 +26,12 @@ class UITask : public AbstractUITask {
unsigned long _alert_expiry; unsigned long _alert_expiry;
int _msgcount; int _msgcount;
unsigned long ui_started_at, next_batt_chck; unsigned long ui_started_at, next_batt_chck;
int next_backlight_btn_check = 0;
#ifdef PIN_STATUS_LED
int led_state = 0;
int next_led_change = 0;
int last_led_increment = 0;
#endif
UIScreen* splash; UIScreen* splash;
UIScreen* home; UIScreen* home;

View File

@@ -19,6 +19,7 @@ bool GxEPDDisplay::begin() {
display.fillScreen(GxEPD_WHITE); display.fillScreen(GxEPD_WHITE);
display.display(true); display.display(true);
#if DISP_BACKLIGHT #if DISP_BACKLIGHT
digitalWrite(DISP_BACKLIGHT, LOW);
pinMode(DISP_BACKLIGHT, OUTPUT); pinMode(DISP_BACKLIGHT, OUTPUT);
#endif #endif
_init = true; _init = true;
@@ -27,14 +28,14 @@ bool GxEPDDisplay::begin() {
void GxEPDDisplay::turnOn() { void GxEPDDisplay::turnOn() {
if (!_init) begin(); if (!_init) begin();
#if DISP_BACKLIGHT #if defined(DISP_BACKLIGHT) && !defined(BACKLIGHT_BTN)
digitalWrite(DISP_BACKLIGHT, HIGH); digitalWrite(DISP_BACKLIGHT, HIGH);
#endif #endif
_isOn = true; _isOn = true;
} }
void GxEPDDisplay::turnOff() { void GxEPDDisplay::turnOff() {
#if DISP_BACKLIGHT #if defined(DISP_BACKLIGHT) && !defined(BACKLIGHT_BTN)
digitalWrite(DISP_BACKLIGHT, LOW); digitalWrite(DISP_BACKLIGHT, LOW);
#endif #endif
_isOn = false; _isOn = false;
@@ -43,14 +44,17 @@ void GxEPDDisplay::turnOff() {
void GxEPDDisplay::clear() { void GxEPDDisplay::clear() {
display.fillScreen(GxEPD_WHITE); display.fillScreen(GxEPD_WHITE);
display.setTextColor(GxEPD_BLACK); display.setTextColor(GxEPD_BLACK);
display_crc.reset();
} }
void GxEPDDisplay::startFrame(Color bkg) { void GxEPDDisplay::startFrame(Color bkg) {
display.fillScreen(GxEPD_WHITE); display.fillScreen(GxEPD_WHITE);
display.setTextColor(_curr_color = GxEPD_BLACK); display.setTextColor(_curr_color = GxEPD_BLACK);
display_crc.reset();
} }
void GxEPDDisplay::setTextSize(int sz) { void GxEPDDisplay::setTextSize(int sz) {
display_crc.update<int>(sz);
switch(sz) { switch(sz) {
case 1: // Small case 1: // Small
display.setFont(&FreeSans9pt7b); display.setFont(&FreeSans9pt7b);
@@ -68,6 +72,7 @@ void GxEPDDisplay::setTextSize(int sz) {
} }
void GxEPDDisplay::setColor(Color c) { void GxEPDDisplay::setColor(Color c) {
display_crc.update<Color> (c);
// colours need to be inverted for epaper displays // colours need to be inverted for epaper displays
if (c == DARK) { if (c == DARK) {
display.setTextColor(_curr_color = GxEPD_WHITE); display.setTextColor(_curr_color = GxEPD_WHITE);
@@ -77,22 +82,38 @@ void GxEPDDisplay::setColor(Color c) {
} }
void GxEPDDisplay::setCursor(int x, int y) { void GxEPDDisplay::setCursor(int x, int y) {
display_crc.update<int>(x);
display_crc.update<int>(y);
display.setCursor(x*SCALE_X, (y+10)*SCALE_Y); display.setCursor(x*SCALE_X, (y+10)*SCALE_Y);
} }
void GxEPDDisplay::print(const char* str) { void GxEPDDisplay::print(const char* str) {
display_crc.update<char>(str, strlen(str));
display.print(str); display.print(str);
} }
void GxEPDDisplay::fillRect(int x, int y, int w, int h) { void GxEPDDisplay::fillRect(int x, int y, int w, int h) {
display_crc.update<int>(x);
display_crc.update<int>(y);
display_crc.update<int>(w);
display_crc.update<int>(h);
display.fillRect(x*SCALE_X, y*SCALE_Y, w*SCALE_X, h*SCALE_Y, _curr_color); display.fillRect(x*SCALE_X, y*SCALE_Y, w*SCALE_X, h*SCALE_Y, _curr_color);
} }
void GxEPDDisplay::drawRect(int x, int y, int w, int h) { void GxEPDDisplay::drawRect(int x, int y, int w, int h) {
display_crc.update<int>(x);
display_crc.update<int>(y);
display_crc.update<int>(w);
display_crc.update<int>(h);
display.drawRect(x*SCALE_X, y*SCALE_Y, w*SCALE_X, h*SCALE_Y, _curr_color); display.drawRect(x*SCALE_X, y*SCALE_Y, w*SCALE_X, h*SCALE_Y, _curr_color);
} }
void GxEPDDisplay::drawXbm(int x, int y, const uint8_t* bits, int w, int h) { void GxEPDDisplay::drawXbm(int x, int y, const uint8_t* bits, int w, int h) {
display_crc.update<int>(x);
display_crc.update<int>(y);
display_crc.update<int>(w);
display_crc.update<int>(h);
display_crc.update<uint8_t>(bits, w * h / 8);
// Calculate the base position in display coordinates // Calculate the base position in display coordinates
uint16_t startX = x * SCALE_X; uint16_t startX = x * SCALE_X;
uint16_t startY = y * SCALE_Y; uint16_t startY = y * SCALE_Y;
@@ -136,5 +157,9 @@ uint16_t GxEPDDisplay::getTextWidth(const char* str) {
} }
void GxEPDDisplay::endFrame() { void GxEPDDisplay::endFrame() {
display.display(true); uint32_t crc = display_crc.finalize();
if (crc != last_display_crc_value) {
display.display(true);
last_display_crc_value = crc;
}
} }

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@@ -17,6 +17,7 @@
#define GxEPD2_DRIVER_CLASS GxEPD2_150_BN // DEPG0150BN 200x200, SSD1681, (FPC8101), TTGO T5 V2.4.1 #define GxEPD2_DRIVER_CLASS GxEPD2_150_BN // DEPG0150BN 200x200, SSD1681, (FPC8101), TTGO T5 V2.4.1
#include <epd/GxEPD2_150_BN.h> // 1.54" b/w #include <epd/GxEPD2_150_BN.h> // 1.54" b/w
#include <CRC32.h>
#include "DisplayDriver.h" #include "DisplayDriver.h"
@@ -29,6 +30,8 @@ class GxEPDDisplay : public DisplayDriver {
bool _init = false; bool _init = false;
bool _isOn = false; bool _isOn = false;
uint16_t _curr_color; uint16_t _curr_color;
CRC32 display_crc;
int last_display_crc_value = 0;
public: public:
// there is a margin in y... // there is a margin in y...

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@@ -74,10 +74,12 @@ build_flags =
-D MAX_CONTACTS=100 -D MAX_CONTACTS=100
-D MAX_GROUP_CHANNELS=8 -D MAX_GROUP_CHANNELS=8
-D BLE_PIN_CODE=123456 -D BLE_PIN_CODE=123456
-D BLE_DEBUG_LOGGING=1 ; -D BLE_DEBUG_LOGGING=1
-D DISPLAY_CLASS=GxEPDDisplay -D DISPLAY_CLASS=GxEPDDisplay
-D OFFLINE_QUEUE_SIZE=256 -D OFFLINE_QUEUE_SIZE=256
-D UI_RECENT_LIST_SIZE=9 -D UI_RECENT_LIST_SIZE=9
-D BACKLIGHT_BTN=PIN_BUTTON2
-D AUTO_OFF_MILLIS=0
; -D MESH_PACKET_LOGGING=1 ; -D MESH_PACKET_LOGGING=1
; -D MESH_DEBUG=1 ; -D MESH_DEBUG=1
build_src_filter = ${LilyGo_Techo.build_src_filter} build_src_filter = ${LilyGo_Techo.build_src_filter}
@@ -91,3 +93,4 @@ lib_deps =
${LilyGo_Techo.lib_deps} ${LilyGo_Techo.lib_deps}
densaugeo/base64 @ ~1.4.0 densaugeo/base64 @ ~1.4.0
zinggjm/GxEPD2 @ 1.6.2 zinggjm/GxEPD2 @ 1.6.2
bakercp/CRC32 @ ^2.0.0