mirror of
https://github.com/Ralim/IronOS.git
synced 2025-02-26 07:53:55 +00:00
Merge branch 'master' into alpine
This commit is contained in:
@@ -1,7 +1,9 @@
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#!/bin/sh
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#!/bin/bash
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# TS100 Flasher for Linux by Alex Wigen (https://github.com/awigen)
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# Jan 2021 - Update by Ysard (https://github.com/ysard)
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DIR_TMP="/tmp/ts100"
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HEX_FIRMWARE="$DIR_TMP/ts100.hex"
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usage() {
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echo
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@@ -69,13 +71,28 @@ mount_ts100() {
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}
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umount_ts100() {
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if ! mountpoint "$DIR_TMP" > /dev/null && sudo umount "$DIR_TMP"; then
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if ! (mountpoint "$DIR_TMP" > /dev/null && sudo umount "$DIR_TMP"); then
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echo "Failed to unmount $DIR_TMP"
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exit 1
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fi
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rmdir "$DIR_TMP"
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}
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check_flash() {
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RDY_FIRMWARE="${HEX_FIRMWARE%.*}.rdy"
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ERR_FIRMWARE="${HEX_FIRMWARE%.*}.err"
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if [ -f "$RDY_FIRMWARE" ]; then
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echo -e "\e[92mFlash is done\e[0m"
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echo "Disconnect the USB and power up the iron. You're good to go."
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elif [ -f "$ERR_FIRMWARE" ]; then
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echo -e "\e[91mFlash error; Please retry!\e[0m"
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else
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echo -e "\e[91mUNKNOWN error\e[0m"
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echo "Flash result: "
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ls "$DIR_TMP"/ts100*
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fi
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}
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cleanup() {
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enable_gautomount
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if [ -d "$DIR_TMP" ]; then
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@@ -109,7 +126,7 @@ echo "Found TS100 config disk device on $DEVICE"
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mount_ts100
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echo "Mounted config disk drive, flashing..."
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cp -v "$1" "$DIR_TMP/ts100.hex"
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cp -v "$1" "$HEX_FIRMWARE"
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sync
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echo "Waiting for TS100 to flash"
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@@ -119,6 +136,5 @@ echo "Remounting config disk drive"
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umount_ts100
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wait_for_ts100
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mount_ts100
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check_flash
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echo "Flash result: "
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ls "$DIR_TMP"/ts100*
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@@ -194,7 +194,7 @@
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},
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"LanguageSwitch": {
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"text2": ["Sprache:", " DE Deutsch"],
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"desc": ""
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"desc": "Sprache der Firmware ändern"
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},
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"Brightness": {
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"text2": ["Bildschirm-", "kontrast"],
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@@ -29,7 +29,7 @@ typedef struct {
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uint16_t versionMarker;
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uint16_t length; // Length of valid bytes following
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uint16_t settingsValues[SettingsOptionsLength];
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// used to make this nicely "good enough" aligned to 32 butes to make driver code trivial
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// used to make this nicely "good enough" aligned to 32 bytes to make driver code trivial
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uint32_t padding;
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} systemSettingsType;
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@@ -202,35 +202,22 @@ static void gui_solderingTempAdjust() {
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break;
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case BUTTON_B_LONG:
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if (xTaskGetTickCount() - autoRepeatTimer + autoRepeatAcceleration > PRESS_ACCEL_INTERVAL_MAX) {
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if (getSettingValue(SettingsOptions::ReverseButtonTempChangeEnabled)) {
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delta = getSettingValue(SettingsOptions::TempChangeLongStep);
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} else
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delta = -getSettingValue(SettingsOptions::TempChangeLongStep);
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autoRepeatTimer = xTaskGetTickCount();
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autoRepeatAcceleration += PRESS_ACCEL_STEP;
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}
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break;
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case BUTTON_B_SHORT:
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if (getSettingValue(SettingsOptions::ReverseButtonTempChangeEnabled)) {
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delta = getSettingValue(SettingsOptions::TempChangeShortStep);
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} else
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delta = -getSettingValue(SettingsOptions::TempChangeShortStep);
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break;
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case BUTTON_F_LONG:
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if (xTaskGetTickCount() - autoRepeatTimer + autoRepeatAcceleration > PRESS_ACCEL_INTERVAL_MAX) {
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if (getSettingValue(SettingsOptions::ReverseButtonTempChangeEnabled)) {
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delta = -getSettingValue(SettingsOptions::TempChangeLongStep);
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} else
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delta = getSettingValue(SettingsOptions::TempChangeLongStep);
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autoRepeatTimer = xTaskGetTickCount();
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autoRepeatAcceleration += PRESS_ACCEL_STEP;
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}
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break;
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case BUTTON_F_SHORT:
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if (getSettingValue(SettingsOptions::ReverseButtonTempChangeEnabled)) {
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delta = -getSettingValue(SettingsOptions::TempChangeShortStep);
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} else
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delta = getSettingValue(SettingsOptions::TempChangeShortStep);
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break;
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default:
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@@ -239,9 +226,18 @@ static void gui_solderingTempAdjust() {
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if ((PRESS_ACCEL_INTERVAL_MAX - autoRepeatAcceleration) < PRESS_ACCEL_INTERVAL_MIN) {
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autoRepeatAcceleration = PRESS_ACCEL_INTERVAL_MAX - PRESS_ACCEL_INTERVAL_MIN;
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}
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// constrain between 10-450 C
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uint16_t newTemp = getSettingValue(SettingsOptions::SolderingTemp);
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// If buttons are flipped; flip the delta
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if (getSettingValue(SettingsOptions::ReverseButtonTempChangeEnabled)) {
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delta = -delta;
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}
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if (delta != 0) {
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// constrain between the set temp limits, i.e. 10-450 C
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int16_t newTemp = getSettingValue(SettingsOptions::SolderingTemp);
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newTemp += delta;
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// Round to nearest increment of delta
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delta = abs(delta);
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newTemp = (newTemp / delta) * delta;
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if (getSettingValue(SettingsOptions::TemperatureInF)) {
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if (newTemp > MAX_TEMP_F)
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newTemp = MAX_TEMP_F;
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@@ -253,8 +249,8 @@ static void gui_solderingTempAdjust() {
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if (newTemp < MIN_TEMP_C)
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newTemp = MIN_TEMP_C;
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}
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setSettingValue(SettingsOptions::SolderingTemp, newTemp);
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setSettingValue(SettingsOptions::SolderingTemp, (uint16_t)newTemp);
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}
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if (xTaskGetTickCount() - lastChange > (TICKS_SECOND * 2))
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return; // exit if user just doesn't press anything for a bit
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@@ -508,7 +504,7 @@ static void gui_solderingMode(uint8_t jumpToSleep) {
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case BUTTON_B_LONG:
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case BUTTON_F_SHORT:
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case BUTTON_B_SHORT:
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// Do nothing and display a lock warming
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// Do nothing and display a lock warning
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warnUser(translatedString(Tr->WarningKeysLockedString), TICKS_SECOND / 2);
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break;
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default:
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@@ -552,7 +548,15 @@ static void gui_solderingMode(uint8_t jumpToSleep) {
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}
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}
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// else we update the screen information
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OLED::setCursor(0, 0);
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(50, 0);
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} else {
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OLED::setCursor(-1, 0);
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}
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OLED::clearScreen();
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// Draw in the screen details
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if (getSettingValue(SettingsOptions::DetailedSoldering)) {
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@@ -560,23 +564,55 @@ static void gui_solderingMode(uint8_t jumpToSleep) {
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#ifndef NO_SLEEP_MODE
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if (getSettingValue(SettingsOptions::Sensitivity) && getSettingValue(SettingsOptions::SleepTime)) {
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(32, 0);
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} else {
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OLED::setCursor(47, 0);
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}
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display_countdown(getSleepTimeout());
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}
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#endif
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if (boostModeOn) {
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OLED::setCursor(54, 8);
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(38, 8);
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} else {
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OLED::setCursor(55, 8);
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}
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OLED::print(SymbolPlus, FontStyle::SMALL);
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}
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(0, 0);
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} else {
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OLED::setCursor(67, 0);
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}
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OLED::printNumber(x10WattHistory.average() / 10, 2, FontStyle::SMALL);
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OLED::print(SymbolDot, FontStyle::SMALL);
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OLED::printNumber(x10WattHistory.average() % 10, 1, FontStyle::SMALL);
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OLED::print(SymbolWatts, FontStyle::SMALL);
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(0, 8);
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} else {
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OLED::setCursor(67, 8);
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}
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printVoltage();
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OLED::print(SymbolVolts, FontStyle::SMALL);
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} else {
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@@ -649,9 +685,9 @@ static void gui_solderingMode(uint8_t jumpToSleep) {
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} else {
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setStatusLED(LED_HEATING);
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}
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// If we have tripped thermal runaway, turn off header and show warning
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// If we have tripped thermal runaway, turn off heater and show warning
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if (heaterThermalRunaway) {
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currentTempTargetDegC = 0; // heaater control off
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currentTempTargetDegC = 0; // heater control off
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// TODO WARNING
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warnUser(translatedString(Tr->WarningThermalRunaway), 10 * TICKS_SECOND);
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@@ -910,27 +946,82 @@ void startGUITask(void const *argument) {
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}
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// Clear the lcd buffer
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OLED::clearScreen();
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OLED::setCursor(0, 0);
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(50, 0);
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} else {
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OLED::setCursor(-1, 0);
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}
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if (getSettingValue(SettingsOptions::DetailedIDLE)) {
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if (isTipDisconnected()) {
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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// in right handed mode we want to draw over the first part
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OLED::drawArea(55, 0, 41, 16, disconnectedTipIconFlip);
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} else {
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OLED::drawArea(0, 0, 41, 16, disconnectedTipIcon);
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}
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(-1, 0);
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} else {
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OLED::setCursor(42, 0);
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}
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uint32_t Vlt = getInputVoltageX10(getSettingValue(SettingsOptions::VoltageDiv), 0);
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OLED::printNumber(Vlt / 10, 2, FontStyle::LARGE);
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OLED::print(SymbolDot, FontStyle::LARGE);
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OLED::printNumber(Vlt % 10, 1, FontStyle::LARGE);
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(48, 8);
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} else {
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OLED::setCursor(91, 8);
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}
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OLED::print(SymbolVolts, FontStyle::SMALL);
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} else {
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if (!(getSettingValue(SettingsOptions::CoolingTempBlink) && (tipTemp > 55) && (xTaskGetTickCount() % 1000 < 300)))
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// Blink temp if setting enable and temp < 55°
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// 1000 tick/sec
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// OFF 300ms ON 700ms
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gui_drawTipTemp(true, FontStyle::LARGE); // draw in the temp
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(6, 0);
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} else {
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OLED::setCursor(73, 0); // top right
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}
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OLED::printNumber(getSettingValue(SettingsOptions::SolderingTemp), 3, FontStyle::SMALL); // draw set temp
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if (getSettingValue(SettingsOptions::TemperatureInF))
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OLED::print(SymbolDegF, FontStyle::SMALL);
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else
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OLED::print(SymbolDegC, FontStyle::SMALL);
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}
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#ifdef OLED_FLIP
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if (!OLED::getRotation()) {
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#else
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if (OLED::getRotation()) {
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#endif
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OLED::setCursor(0, 8);
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} else {
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OLED::setCursor(67, 8); // bottom right
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}
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printVoltage(); // draw voltage then symbol (v)
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OLED::print(SymbolVolts, FontStyle::SMALL);
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}
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} else {
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#ifdef OLED_FLIP
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@@ -967,7 +1058,6 @@ void startGUITask(void const *argument) {
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// in right handed mode we want to draw over the first part
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OLED::fillArea(55, 0, 41, 16, 0); // clear the area for the temp
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OLED::setCursor(56, 0);
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} else {
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OLED::fillArea(0, 0, 41, 16, 0); // clear the area
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OLED::setCursor(0, 0);
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@@ -987,7 +1077,6 @@ void startGUITask(void const *argument) {
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#endif
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// in right handed mode we want to draw over the first part
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OLED::drawArea(55, 0, 41, 16, disconnectedTipIconFlip);
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} else {
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OLED::drawArea(0, 0, 41, 16, disconnectedTipIcon);
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}
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