Add support for OrangeClock PCB, add README
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7 changed files with 124 additions and 4 deletions
5
.github/workflows/tagging.yml
vendored
5
.github/workflows/tagging.yml
vendored
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@ -37,6 +37,11 @@ jobs:
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version: esp32s2
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version: esp32s2
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- name: lolin_s3_mini
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- name: lolin_s3_mini
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version: esp32s3
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version: esp32s3
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- name: orangeclock
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version: esp32s3
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exclude:
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- chip: orangeclock
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epd_variant: 213epd
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runs-on: ubuntu-latest
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runs-on: ubuntu-latest
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permissions:
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permissions:
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contents: write
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contents: write
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13
README.md
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13
README.md
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@ -0,0 +1,13 @@
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# OrangeBTClock (working title)
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[![BTClock CI](https://github.com/btclock/OrangeBTClock/actions/workflows/tagging.yml/badge.svg)](https://github.com/btclock/OrangeBTClock/actions/workflows/tagging.yml)
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Firmware for cheap ESP32-S2/S3 hardware combined with a eInk display
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See releases for prebuilt binaries, ready to flash (e.g. with the [esphome web flasher](https://web.esphome.io/))
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## Development
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- [PlatformIO](https://platformio.org/platformio-ide).
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- [Node.js](https://nodejs.org/en) and [yarn](https://yarnpkg.com/).
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62
boards/orangeclock.json
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62
boards/orangeclock.json
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@ -0,0 +1,62 @@
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{
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"build": {
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"arduino":{
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"ldscript": "esp32s3_out.ld",
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"partitions": "default_8MB.csv",
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"memory_type": "qio_opi"
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},
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"core": "esp32",
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"extra_flags": [
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"-DBOARD_HAS_PSRAM",
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"-DARDUINO_ORANGECLOCK",
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"-DARDUINO_ESP32S3_DEV",
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"-DIS_ORANGECLOCK",
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"-DARDUINO_USB_MODE=1",
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"-DARDUINO_RUNNING_CORE=1",
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"-DARDUINO_EVENT_RUNNING_CORE=1",
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"-DARDUINO_USB_CDC_ON_BOOT=1"
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],
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"f_cpu": "240000000L",
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"f_flash": "80000000L",
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"flash_mode": "qio",
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"psram_type": "opi",
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"espidf": {
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"sdkconfig_path": "boards"
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},
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"hwids": [
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[
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"0x303A",
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"0x1001"
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]
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],
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"mcu": "esp32s3",
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"variant": "esp32s3"
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},
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"connectivity": [
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"bluetooth",
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"wifi"
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],
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"debug": {
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"default_tool": "esp-builtin",
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"onboard_tools": [
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"esp-builtin"
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],
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"openocd_target": "esp32s3.cfg"
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},
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"frameworks": [
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"arduino",
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"espidf"
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],
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"name": "OrangeClock",
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"upload": {
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"flash_size": "8MB",
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"maximum_ram_size": 327680,
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"maximum_size": 16777216,
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"use_1200bps_touch": true,
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"wait_for_upload_port": true,
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"require_upload_port": true,
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"speed": 460800
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},
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"url": "http://github.com/btclock",
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"vendor": "BTClock"
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}
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@ -10,7 +10,7 @@
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[platformio]
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[platformio]
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data_dir = data/build_gz
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data_dir = data/build_gz
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default_envs = lolin_s2_mini_213epd, lolin_s2_mini_29epd, lolin_s3_mini_213epd, lolin_s3_mini_29epd
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default_envs = lolin_s2_mini_213epd, lolin_s2_mini_29epd, lolin_s3_mini_213epd, lolin_s3_mini_29epd, orangeclock_29epd
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[btclock_base]
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[btclock_base]
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platform = espressif32
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platform = espressif32
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@ -29,7 +29,7 @@ lib_deps =
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bblanchon/ArduinoJson@^7.0.3
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bblanchon/ArduinoJson@^7.0.3
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mathieucarbou/ESP Async WebServer
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mathieucarbou/ESP Async WebServer
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gilmaimon/ArduinoWebsockets@^0.5.3
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gilmaimon/ArduinoWebsockets@^0.5.3
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fastled/FastLED@^3.6.0
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[env:lolin_s2_mini]
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[env:lolin_s2_mini]
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extends = btclock_base
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extends = btclock_base
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board = lolin_s2_mini
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board = lolin_s2_mini
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@ -60,4 +60,13 @@ build_flags =
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extends = env:lolin_s3_mini
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extends = env:lolin_s3_mini
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build_flags =
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build_flags =
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${btclock_base.build_flags}
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${btclock_base.build_flags}
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-D VERSION_EPD_2_9
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-D VERSION_EPD_2_9
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[env:orangeclock_29epd]
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extends = btclock_base
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board = orangeclock
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build_flags =
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${btclock_base.build_flags}
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-D VERSION_EPD_2_9
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-D IS_ORANGECLOCK
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@ -92,6 +92,7 @@ void setupWifi()
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WiFiManager wm;
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WiFiManager wm;
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#ifndef ARDUINO_ORANGECLOCK
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// Touch pin 14 to reset
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// Touch pin 14 to reset
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if (touchRead(14) > 9000)
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if (touchRead(14) > 9000)
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{
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{
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@ -108,6 +109,7 @@ void setupWifi()
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wm.resetSettings();
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wm.resetSettings();
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}
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}
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}
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}
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#endif
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String softAP_SSID =
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String softAP_SSID =
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String("OrangeBTClock");
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String("OrangeBTClock");
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@ -51,7 +51,7 @@ void setupDisplay()
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// display.fillRect(0, row1, display.width(), 54, GxEPD_BLACK);
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// display.fillRect(0, row1, display.width(), 54, GxEPD_BLACK);
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display.displayWindow(0, row1, display.width(), row2);
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display.displayWindow(0, row1, display.width(), row2);
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display.display(true);
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display.display(false);
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// display.fillRect(0, row2, display.width(), 54, GxEPD_BLACK);
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// display.fillRect(0, row2, display.width(), 54, GxEPD_BLACK);
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// display.displayWindow(0, row2, display.width(), 54);
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// display.displayWindow(0, row2, display.width(), 54);
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29
src/main.cpp
29
src/main.cpp
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#include "config.hpp"
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#include "config.hpp"
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#include "webserver.hpp"
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#include "webserver.hpp"
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#include <data.hpp>
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#include <data.hpp>
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#include <FastLED.h>
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#define uS_TO_S_FACTOR 1000000 /* Conversion factor for micro seconds to seconds */
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#define uS_TO_S_FACTOR 1000000 /* Conversion factor for micro seconds to seconds */
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#define TIME_TO_SLEEP 5 /* Time ESP32 will go to sleep (in seconds) */
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#define TIME_TO_SLEEP 5 /* Time ESP32 will go to sleep (in seconds) */
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@ -21,6 +22,10 @@ GxEPD2_BW<EPD_CLASS, EPD_CLASS::HEIGHT> display = EPD_CLASS(4, 2, 3, 1);
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GxEPD2_BW<EPD_CLASS, EPD_CLASS::HEIGHT> display = EPD_CLASS(5, 3, 2, 1);
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GxEPD2_BW<EPD_CLASS, EPD_CLASS::HEIGHT> display = EPD_CLASS(5, 3, 2, 1);
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#endif
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#endif
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#ifdef ARDUINO_ORANGECLOCK
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GxEPD2_BW<EPD_CLASS, EPD_CLASS::HEIGHT> display = EPD_CLASS(5, 3, 1, 2);
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#endif
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typedef void (*MethodPtr)(String, char);
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typedef void (*MethodPtr)(String, char);
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MethodPtr methods[] = {nullptr, updateRow1, updateRow2, updateRow3};
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MethodPtr methods[] = {nullptr, updateRow1, updateRow2, updateRow3};
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@ -30,14 +35,25 @@ uint currentPrice = 0;
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String currentBlock = "";
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String currentBlock = "";
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String currentFees = "";
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String currentFees = "";
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#define NUM_LEDS 2
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CRGB leds[NUM_LEDS];
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void setup()
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void setup()
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{
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{
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// setCpuFrequencyMhz(40);
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// setCpuFrequencyMhz(40);
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Serial.begin(115200);
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Serial.begin(115200);
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#ifndef IS_ORANGECLOCK
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pinMode(LED_BUILTIN, OUTPUT);
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pinMode(LED_BUILTIN, OUTPUT);
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digitalWrite(LED_BUILTIN, HIGH);
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digitalWrite(LED_BUILTIN, HIGH);
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#else
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FastLED.addLeds<WS2812B, 48, GRB>(leds, NUM_LEDS);
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leds[0] = CRGB::DarkOrange;
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leds[1] = CRGB::OrangeRed;
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FastLED.show();
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#endif
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setupPreferences();
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setupPreferences();
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setupDisplay();
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setupDisplay();
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}
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}
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client.setInsecure();
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client.setInsecure();
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#ifndef IS_ORANGECLOCK
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digitalWrite(LED_BUILTIN, LOW);
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digitalWrite(LED_BUILTIN, LOW);
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#else
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leds[0] = CRGB::Black;
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leds[1] = CRGB::Black;
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FastLED.show();
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delay(100);
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display.setFullWindow();
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display.clearScreen(GxEPD_WHITE);
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display.display(true);
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#endif
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}
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}
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void loop()
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void loop()
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