mirror of
https://github.com/btclock/btclock_v3.git
synced 2024-11-19 00:30:01 +01:00
Fix turn off LEDs
This commit is contained in:
parent
ad0800c233
commit
4da04ca3ee
60
boards/btclock_rev_b.json
Normal file
60
boards/btclock_rev_b.json
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@ -0,0 +1,60 @@
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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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},
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"core": "esp32",
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"extra_flags": [
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"-DBOARD_HAS_PSRAM",
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"-DARDUINO_BTCLOCK_REV_B",
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"-DARDUINO_ESP32S3_DEV",
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"-DIS_BTCLOCK_REV_B",
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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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"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": "BTClock (rev. B)",
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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": 8388608,
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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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7
partition_8mb.csv
Normal file
7
partition_8mb.csv
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@ -0,0 +1,7 @@
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# Name, Type, SubType, Offset, Size, Flags
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nvs, data, nvs, 36K, 20K,
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otadata, data, ota, 56K, 8K,
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app0, app, ota_0, 64K, 1700K,
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app1, app, ota_1, , 1700K,
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spiffs, data, spiffs, , 400K,
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coredump, data, coredump,, 64K,
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@ -9,7 +9,7 @@
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; https://docs.platformio.org/page/projectconf.html
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[platformio]
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data_dir = data/build_gz
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default_envs = lolin_s3_mini_213epd, lolin_s3_mini_29epd
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default_envs = lolin_s3_mini_213epd, lolin_s3_mini_29epd, btclock_rev_b_213epd
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[env]
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@ -57,6 +57,28 @@ build_flags =
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build_unflags =
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${btclock_base.build_unflags}
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[env:btclock_rev_b]
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extends = btclock_base
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board = btclock_rev_b
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board_build.partitions = partition.csv
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build_flags =
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${btclock_base.build_flags}
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-D MCP_INT_PIN=8
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-D NEOPIXEL_PIN=15
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-D NEOPIXEL_COUNT=4
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-D NUM_SCREENS=7
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-D I2C_SDA_PIN=35
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-D I2C_SCK_PIN=36
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-D HAS_FRONTLIGHT
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-D PCA_OE_PIN=45
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-D PCA_I2C_ADDR=0x42
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lib_deps =
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${btclock_base.lib_deps}
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robtillaart/PCA9685@^0.7.1
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build_unflags =
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${btclock_base.build_unflags}
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[env:lolin_s3_mini_213epd]
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extends = env:lolin_s3_mini
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test_framework = unity
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@ -65,6 +87,15 @@ build_flags =
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-D USE_QR
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-D VERSION_EPD_2_13
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[env:btclock_rev_b_213epd]
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extends = env:btclock_rev_b
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test_framework = unity
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build_flags =
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${env:btclock_rev_b.build_flags}
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-D USE_QR
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-D VERSION_EPD_2_13
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[env:lolin_s3_mini_29epd]
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extends = env:lolin_s3_mini
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test_framework = unity
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@ -7,6 +7,11 @@ Adafruit_MCP23X17 mcp1;
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#ifdef IS_BTCLOCK_S3
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Adafruit_MCP23X17 mcp2;
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#endif
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#ifdef HAS_FRONTLIGHT
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PCA9685 flArray(PCA_I2C_ADDR);
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#endif
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std::vector<std::string> screenNameMap(SCREEN_COUNT);
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std::mutex mcpMutex;
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uint lastTimeSync;
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@ -352,6 +357,10 @@ void setupHardware()
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// ;
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}
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#endif
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#ifdef HAS_FRONTLIGHT
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setupFrontlight();
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#endif
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}
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void improvGetAvailableWifiNetworks()
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@ -658,4 +667,21 @@ String getMyHostname()
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uint getLastTimeSync() {
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return lastTimeSync;
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}
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}
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#ifdef HAS_FRONTLIGHT
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void setupFrontlight() {
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flArray.begin();
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flArray.setFrequency(1000);
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flArray.setOutputEnablePin(PCA_OE_PIN);
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if (!preferences.isKey("flMaxBrightness")) {
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preferences.putUInt("flMaxBrightness", 4095);
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}
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// Initialize all LEDs to off
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// for (int ledPin = 0; ledPin < NUM_SCREENS; ledPin++) {
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// flArray.setPWM(ledPin, 0, 0); // Turn off LED
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// }
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flArray.allOFF();
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}
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#endif
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@ -20,6 +20,9 @@
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#include "lib/screen_handler.hpp"
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#include "lib/shared.hpp"
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#include "lib/webserver.hpp"
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#ifdef HAS_FRONTLIGHT
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#include "PCA9685.h"
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#endif
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#define NTP_SERVER "pool.ntp.org"
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#define DEFAULT_MEMPOOL_INSTANCE "mempool.space"
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@ -42,6 +45,11 @@ void tryImprovSetup();
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void setupTimers();
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void finishSetup();
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void setupMcp();
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#ifdef HAS_FRONTLIGHT
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void setupFrontlight();
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extern PCA9685 flArray;
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#endif
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String getMyHostname();
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std::vector<std::string> getScreenNameMap();
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@ -1,6 +1,65 @@
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#include "epd.hpp"
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#ifndef IS_BTCLOCK_S3
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#ifdef IS_BTCLOCK_REV_B
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Native_Pin EPD_CS[NUM_SCREENS] = {
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Native_Pin(2),
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Native_Pin(4),
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Native_Pin(6),
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Native_Pin(10),
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Native_Pin(38),
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Native_Pin(21),
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Native_Pin(17),
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};
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Native_Pin EPD_BUSY[NUM_SCREENS] = {
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Native_Pin(3),
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Native_Pin(5),
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Native_Pin(7),
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Native_Pin(9),
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Native_Pin(37),
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Native_Pin(18),
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Native_Pin(16),
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};
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MCP23X17_Pin EPD_RESET_MPD[NUM_SCREENS] = {
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MCP23X17_Pin(mcp1, 8),
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MCP23X17_Pin(mcp1, 9),
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MCP23X17_Pin(mcp1, 10),
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MCP23X17_Pin(mcp1, 11),
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MCP23X17_Pin(mcp1, 12),
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MCP23X17_Pin(mcp1, 13),
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MCP23X17_Pin(mcp1, 14),
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};
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Native_Pin EPD_DC = Native_Pin(14);
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#elif IS_BTCLOCK_S3
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Native_Pin EPD_DC = Native_Pin(38);
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MCP23X17_Pin EPD_BUSY[NUM_SCREENS] = {
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MCP23X17_Pin(mcp1, 8),
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MCP23X17_Pin(mcp1, 9),
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MCP23X17_Pin(mcp1, 10),
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MCP23X17_Pin(mcp1, 11),
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MCP23X17_Pin(mcp1, 12),
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MCP23X17_Pin(mcp1, 13),
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MCP23X17_Pin(mcp1, 14),
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MCP23X17_Pin(mcp1, 4),
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};
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MCP23X17_Pin EPD_CS[NUM_SCREENS] = {
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MCP23X17_Pin(mcp2, 8), MCP23X17_Pin(mcp2, 10), MCP23X17_Pin(mcp2, 12),
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MCP23X17_Pin(mcp2, 14), MCP23X17_Pin(mcp2, 0), MCP23X17_Pin(mcp2, 2),
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MCP23X17_Pin(mcp2, 4), MCP23X17_Pin(mcp2, 6)};
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MCP23X17_Pin EPD_RESET_MPD[NUM_SCREENS] = {
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MCP23X17_Pin(mcp2, 9),
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MCP23X17_Pin(mcp2, 11),
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MCP23X17_Pin(mcp2, 13),
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MCP23X17_Pin(mcp2, 15),
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MCP23X17_Pin(mcp2, 1),
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MCP23X17_Pin(mcp2, 3),
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MCP23X17_Pin(mcp2, 5),
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MCP23X17_Pin(mcp2, 7),
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};
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#else
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Native_Pin EPD_CS[NUM_SCREENS] = {
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Native_Pin(2),
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Native_Pin(4),
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@ -35,36 +94,6 @@ MCP23X17_Pin EPD_RESET_MPD[NUM_SCREENS] = {
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};
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Native_Pin EPD_DC = Native_Pin(14);
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#else
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Native_Pin EPD_DC = Native_Pin(38);
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MCP23X17_Pin EPD_BUSY[NUM_SCREENS] = {
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MCP23X17_Pin(mcp1, 8),
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MCP23X17_Pin(mcp1, 9),
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MCP23X17_Pin(mcp1, 10),
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MCP23X17_Pin(mcp1, 11),
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MCP23X17_Pin(mcp1, 12),
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MCP23X17_Pin(mcp1, 13),
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MCP23X17_Pin(mcp1, 14),
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MCP23X17_Pin(mcp1, 4),
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};
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MCP23X17_Pin EPD_CS[NUM_SCREENS] = {
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MCP23X17_Pin(mcp2, 8), MCP23X17_Pin(mcp2, 10), MCP23X17_Pin(mcp2, 12),
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MCP23X17_Pin(mcp2, 14), MCP23X17_Pin(mcp2, 0), MCP23X17_Pin(mcp2, 2),
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MCP23X17_Pin(mcp2, 4), MCP23X17_Pin(mcp2, 6)};
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MCP23X17_Pin EPD_RESET_MPD[NUM_SCREENS] = {
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MCP23X17_Pin(mcp2, 9),
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MCP23X17_Pin(mcp2, 11),
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MCP23X17_Pin(mcp2, 13),
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MCP23X17_Pin(mcp2, 15),
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MCP23X17_Pin(mcp2, 1),
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MCP23X17_Pin(mcp2, 3),
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MCP23X17_Pin(mcp2, 5),
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MCP23X17_Pin(mcp2, 7),
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};
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#endif
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GxEPD2_BW<EPD_CLASS, EPD_CLASS::HEIGHT> displays[NUM_SCREENS] = {
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@ -141,7 +170,7 @@ void setupDisplays()
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updateQueue = xQueueCreate(UPDATE_QUEUE_SIZE, sizeof(UpdateDisplayTaskItem));
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xTaskCreate(prepareDisplayUpdateTask, "PrepareUpd", 4096, NULL, 11, NULL);
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xTaskCreate(prepareDisplayUpdateTask, "PrepareUpd", 2048, NULL, 11, NULL);
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for (uint i = 0; i < NUM_SCREENS; i++)
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{
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@ -329,4 +329,40 @@ void ledTheaterChaseRainbow(int wait) {
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}
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}
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Adafruit_NeoPixel getPixels() { return pixels; }
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Adafruit_NeoPixel getPixels() { return pixels; }
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#ifdef HAS_FRONTLIGHT
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int flDelayTime = 10;
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void frontlightFadeInAll() {
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for (int dutyCycle = 0; dutyCycle <= preferences.getUInt("flMaxBrightness"); dutyCycle += 5) {
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for (int ledPin = 0; ledPin < NUM_SCREENS; ledPin++) {
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flArray.setPWM(ledPin, 0, dutyCycle);
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}
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delay(flDelayTime);
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}
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}
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void frontlightFadeOutAll() {
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for (int dutyCycle = preferences.getUInt("flMaxBrightness"); dutyCycle >= 0; dutyCycle -= 5) {
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for (int ledPin = 0; ledPin < NUM_SCREENS; ledPin++) {
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flArray.setPWM(ledPin, 0, dutyCycle);
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}
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delay(flDelayTime);
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}
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}
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void frontlightFadeIn(uint num) {
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for (int dutyCycle = 0; dutyCycle <= preferences.getUInt("flMaxBrightness"); dutyCycle += 5) {
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flArray.setPWM(num, 0, dutyCycle);
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delay(flDelayTime);
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}
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}
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void frontlightFadeOut(uint num) {
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for (int dutyCycle = preferences.getUInt("flMaxBrightness"); dutyCycle >= 0; dutyCycle -= 5) {
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flArray.setPWM(num, 0, dutyCycle);
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delay(flDelayTime);
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}
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}
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#endif
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@ -56,4 +56,11 @@ void setLights(uint32_t color);
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void ledRainbow(int wait);
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void ledTheaterChaseRainbow(int wait);
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void ledTheaterChase(uint32_t color, int wait);
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Adafruit_NeoPixel getPixels();
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Adafruit_NeoPixel getPixels();
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#ifdef HAS_FRONTLIGHT
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void frontlightFadeInAll();
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void frontlightFadeOutAll();
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void frontlightFadeIn(uint num);
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void frontlightFadeOut(uint num);
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#endif
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@ -45,6 +45,7 @@ void setupWebserver() {
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"/api/show/custom", onApiShowTextAdvanced);
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server.addHandler(handler);
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AsyncCallbackJsonWebHandler *lightsJsonHandler =
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new AsyncCallbackJsonWebHandler("/api/lights", onApiLightsSetJson);
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server.addHandler(lightsJsonHandler);
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@ -301,7 +302,7 @@ void onApiSettingsPatch(AsyncWebServerRequest *request, JsonVariant &json) {
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}
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}
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String uintSettings[] = {"minSecPriceUpd", "fullRefreshMin", "ledBrightness"};
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String uintSettings[] = {"minSecPriceUpd", "fullRefreshMin", "ledBrightness", "flMaxBrightness"};
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for (String setting : uintSettings) {
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if (settings.containsKey(setting)) {
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@ -418,6 +419,13 @@ void onApiSettingsGet(AsyncWebServerRequest *request) {
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root["ip"] = WiFi.localIP();
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root["txPower"] = WiFi.getTxPower();
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#ifdef HAS_FRONTLIGHT
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root["hasFrontlight"] = true;
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root["flMaxBrightness"] = preferences.getUInt("flMaxBrightness", 4095);
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#else
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root["hasFrontlight"] = false;
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#endif
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#ifdef GIT_REV
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root["gitRev"] = String(GIT_REV);
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#endif
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@ -761,6 +769,11 @@ void onApiLightsSetJson(AsyncWebServerRequest *request, JsonVariant &json) {
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JsonArray lights = json.as<JsonArray>();
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if (lights.size() != pixels.numPixels()) {
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if (!lights.size()) {
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// if empty, assume off request
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return onApiLightsOff(request);
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}
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Serial.printf("Invalid values for LED set %d\n", lights.size());
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request->send(400);
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return;
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Block a user