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https://github.com/Ralim/IronOS.git
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5 Commits
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1f7cdf9694 | ||
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b2db129ab8 | ||
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b7e4249d2e |
@@ -31,8 +31,15 @@ This is completely safe, if it goes wrong just put the .hex file from the offici
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6. If it ends with .RDY your done! Otherwise something went wrong.
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7. If it went wrong try on a windows computer, some Mac / Linux machines do not play well with their boot loader.
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There is also a complete device flash backup included in this repository. (Note this includes the bootloader, so will need a SWD programmer to load onto the unit).
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# New Menu System
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This new firmware uses a new menu system to allow access to the settings on the device.
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This menu can be accessed as shown in following flow chart, in the settings numbers roll over from top to bottom.
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# Version Changes:
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V1.02
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- Adds hold both buttons on IDLE to access the therometer mode.
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- Changes the exit soldering mode to be holding both buttons (Like original firmware).
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@@ -103,7 +103,7 @@
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</extensions>
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</storageModule>
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<storageModule moduleId="cdtBuildSystem" version="4.0.0">
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<configuration artifactExtension="elf" artifactName="${ProjName}" buildArtefactType="org.eclipse.cdt.build.core.buildArtefactType.exe" buildProperties="org.eclipse.cdt.build.core.buildArtefactType=org.eclipse.cdt.build.core.buildArtefactType.exe,org.eclipse.cdt.build.core.buildType=org.eclipse.cdt.build.core.buildType.release" cleanCommand="rm -rf" description="" id="fr.ac6.managedbuild.config.gnu.cross.exe.release.1113492345" name="Release" parent="fr.ac6.managedbuild.config.gnu.cross.exe.release" postannouncebuildStep="Generating binary and Printing size information:" postbuildStep="arm-none-eabi-objcopy -O binary "${BuildArtifactFileBaseName}.elf" "${BuildArtifactFileBaseName}.bin"; arm-none-eabi-size -B "${BuildArtifactFileName}"">
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<configuration artifactExtension="elf" artifactName="${ProjName}" buildArtefactType="org.eclipse.cdt.build.core.buildArtefactType.exe" buildProperties="org.eclipse.cdt.build.core.buildArtefactType=org.eclipse.cdt.build.core.buildArtefactType.exe,org.eclipse.cdt.build.core.buildType=org.eclipse.cdt.build.core.buildType.release" cleanCommand="rm -rf" description="" id="fr.ac6.managedbuild.config.gnu.cross.exe.release.1113492345" name="Release" parent="fr.ac6.managedbuild.config.gnu.cross.exe.release" postannouncebuildStep="Generating binary and Printing size information:" postbuildStep="arm-none-eabi-objcopy -O binary "${BuildArtifactFileBaseName}.elf" "${BuildArtifactFileBaseName}.bin"; arm-none-eabi-size -B "${BuildArtifactFileName}";arm-none-eabi-objcopy -O ihex "${BuildArtifactFileBaseName}.elf" "${BuildArtifactFileBaseName}.hex"">
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<folderInfo id="fr.ac6.managedbuild.config.gnu.cross.exe.release.1113492345." name="/" resourcePath="">
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<toolChain id="fr.ac6.managedbuild.toolchain.gnu.cross.exe.release.668479481" name="Ac6 STM32 MCU GCC" superClass="fr.ac6.managedbuild.toolchain.gnu.cross.exe.release">
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<option id="fr.ac6.managedbuild.option.gnu.cross.mcu.302274410" name="Mcu" superClass="fr.ac6.managedbuild.option.gnu.cross.mcu" value="STM32F103T8Ux" valueType="string"/>
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1
workspace/ts100/.gitignore
vendored
1
workspace/ts100/.gitignore
vendored
@@ -1 +1,2 @@
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/Debug/
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/Release/
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@@ -24,10 +24,11 @@ enum {
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SLEEP,
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COOLING,
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UVLOWARN,
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THERMOMETER,
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} operatingMode;
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enum {
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UVCO = 0, SLEEP_TEMP, SLEEP_TIME, MOTIONDETECT, TEMPDISPLAY,LEFTY
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UVCO = 0, SLEEP_TEMP, SLEEP_TIME, MOTIONDETECT, TEMPDISPLAY, LEFTY
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} settingsPage;
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@@ -18,7 +18,7 @@ u8* Oled_DrawArea(u8 x0, u8 y0, u8 wide, u8 high, u8* ptr);
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void Set_ShowPos(u8 x, u8 y);
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void Oled_DisplayFlip();
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void GPIO_Init_OLED(void);
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void Init_Oled(void);
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void Init_Oled(uint8_t leftHanded);
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u8* Data_Command(u8 len, u8* ptr);
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void Clear_Screen(void);//Clear the screen
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/*Functions for writing to the screen*/
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@@ -30,13 +30,13 @@ void setup() {
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I2C_Configuration(); //Start the I2C hardware
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GPIO_Init_OLED(); //Init the GPIO ports for the OLED
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StartUp_Accelerometer(); //start the accelerometer
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Init_Oled(); //init the OLED display
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setupPID(); //init the PID values
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readIronTemp(239, 0); //load the default calibration value
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restoreSettings(); //Load settings
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if (systemSettings.flipDisplay)
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Oled_DisplayFlip();
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OLED_DrawString("VER 1.01",8);
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Init_Oled(systemSettings.flipDisplay);//init the OLED display
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OLED_DrawString("VER 1.03",8);
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delayMs(800);
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Start_Watchdog(1000); //start the system watchdog as 1 seconds timeout
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}
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@@ -16,12 +16,16 @@ void ProcessUI() {
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switch (operatingMode) {
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case STARTUP:
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if ((millis() - getLastButtonPress() > 1000)) {
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if (Buttons & BUT_A) {
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if (Buttons == (BUT_A | BUT_B)) {
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operatingMode = THERMOMETER;
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resetLastButtonPress();
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resetButtons();
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} else if (Buttons == BUT_A) {
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//A key pressed so we are moving to soldering mode
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operatingMode = SOLDERING;
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resetLastButtonPress();
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resetButtons();
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} else if (Buttons & BUT_B) {
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} else if (Buttons == BUT_B) {
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//B Button was pressed so we are moving to the Settings menu
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operatingMode = SETTINGS;
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resetLastButtonPress();
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@@ -32,16 +36,18 @@ void ProcessUI() {
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break;
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case SOLDERING:
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//We need to check the buttons if we need to jump out
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if (Buttons & BUT_A) {
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//A key pressed so we are moving to temp set
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if (Buttons == BUT_A || Buttons == BUT_B) {
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//A or B key pressed so we are moving to temp set
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operatingMode = TEMP_ADJ;
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resetLastButtonPress();
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resetButtons();
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} else if (Buttons & BUT_B) {
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//B Button was pressed so we are moving back to idle
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operatingMode = COOLING;
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resetLastButtonPress();
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resetButtons();
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} else if (Buttons == (BUT_A | BUT_B)) {
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if (millis() - getLastButtonPress() > 1000) {
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//Both buttons were pressed, exit back to the cooling screen
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operatingMode = COOLING;
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resetLastButtonPress();
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resetButtons();
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}
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} else {
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//We need to check the timer for movement in case we need to goto idle
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if (systemSettings.movementEnabled)
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@@ -168,20 +174,15 @@ void ProcessUI() {
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setIronTimer(0); //turn off heating
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//This mode warns the user the iron is still cooling down
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uint16_t temp = readIronTemp(0, 1); //take a new reading as the heater code is not taking new readings
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if (temp < 500) { //if the temp is < 50C then we can go back to IDLE
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if (temp < 400) { //if the temp is < 40C then we can go back to IDLE
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operatingMode = STARTUP;
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resetLastButtonPress();
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resetButtons();
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} else if (Buttons & (BUT_A | BUT_B)) { //we check if the user has pushed a button to ack
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//Either button was pushed
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operatingMode = STARTUP;
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resetLastButtonPress();
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resetButtons();
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} else { //we check if the user has pushed a button to ack
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if ((millis() - getLastButtonPress() > 200)
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&& (millis() - getLastButtonPress() < 2000)) {
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if (getButtons() && (BUT_A | BUT_B)) {
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//A button was pushed
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operatingMode = STARTUP;
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resetLastButtonPress();
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resetButtons();
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}
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}
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}
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}
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break;
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@@ -192,6 +193,17 @@ void ProcessUI() {
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operatingMode = STARTUP; //jump back to idle mode
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}
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break;
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case THERMOMETER: {
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//This lets the user check the tip temp without heating the iron.. And eventually calibration will be added here
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if ((millis() - getLastButtonPress() > 1000))
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if (Buttons == (BUT_A | BUT_B)) {
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//If the user is holding both button, exit the temp screen
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operatingMode = STARTUP;
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resetLastButtonPress();
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resetButtons();
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}
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}
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break;
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default:
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break;
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}
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@@ -229,7 +241,7 @@ void DrawUI() {
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if (getIronTimer() == 0) {
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OLED_DrawChar('C', 5);
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} else {
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if (getIronTimer() < 500) {
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if (getIronTimer() < 900) {
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OLED_DrawChar(' ', 5);
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} else { //we are heating
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OLED_DrawChar('H', 5);
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@@ -300,16 +312,21 @@ void DrawUI() {
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//The iron is in sleep temp mode
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//Draw in temp and sleep
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OLED_DrawString("SLP", 3);
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drawTemp(temp, 3);
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drawTemp(temp, 4);
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break;
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case COOLING:
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//We are warning the user the tip is cooling
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OLED_DrawString("COOL", 3);
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drawTemp(temp, 4);
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OLED_DrawString("COOL", 4);
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drawTemp(temp, 5);
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break;
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case UVLOWARN:
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OLED_DrawString("LOW VOLT", 8);
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break;
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case THERMOMETER:
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temp = readIronTemp(0, 1);//Force a reading as heater is off
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OLED_DrawString("TEMP ", 5);//extra one to it clears the leftover 'L' from IDLE
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drawTemp(temp, 5);
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break;
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default:
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break;
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}
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@@ -13,15 +13,15 @@
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#include "I2C.h"
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#include "Font.h"
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u8 displayOffset = 32;
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int8_t displayOffset = 32;
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/*Setup params for the OLED screen*/
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/*http://www.displayfuture.com/Display/datasheet/controller/SSD1307.pdf*/
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/*All commands are prefixed with 0x80*/
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u8 OLED_Setup_Array[46] = { 0x80, 0xAE,/*Display off*/
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0x80, 0xD5,/*Set display clock divide ratio / osc freq*/
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0x80, 0b01010001,/**/
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0x80, 0x52,/**/
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0x80, 0xA8,/*Set Multiplex Ratio*/
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0x80, 16, /*16 == max brightness,39==dimmest*/
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0x80, 0x0F, /*16 == max brightness,39==dimmest*/
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0x80, 0xC0,/*Set COM Scan direction*/
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0x80, 0xD3,/*Set Display offset*/
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0x80, 0x00,/*0 Offset*/
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@@ -69,7 +69,7 @@ void Oled_DisplayFlip() {
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I2C_PageWrite(data, 2, DEVICEADDR_OLED);
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data[1] = 0xA1;
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I2C_PageWrite(data, 2, DEVICEADDR_OLED);
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displayOffset=0;
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displayOffset = 0;
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}
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/*
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@@ -79,10 +79,10 @@ void Oled_DisplayFlip() {
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*/
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u8* Data_Command(u8 length, u8* data) {
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int i;
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u8 tx_data[128];
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u8 tx_data[129];
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//here are are inserting the data write command at the beginning
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tx_data[0] = 0x40;
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length += 1;
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length++;
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for (i = 1; i < length; i++) //Loop through the array of data
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tx_data[i] = *data++;
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I2C_PageWrite(tx_data, length, DEVICEADDR_OLED); //write out the buffer
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@@ -96,7 +96,7 @@ u8* Data_Command(u8 length, u8* data) {
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void Set_ShowPos(u8 x, u8 y) {
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u8 pos_param[8] = { 0x80, 0xB0, 0x80, 0x21, 0x80, 0x00, 0x80, 0x7F };
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//page 0, start add = x(below) through to 0x7F (aka 127)
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pos_param[5] = x + displayOffset;/*Display offset ==0 for Lefty, == 32 fo righty*/
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pos_param[5] = x + displayOffset;/*Display offset ==0 for Lefty, == 32 for righty*/
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pos_param[1] += y;
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I2C_PageWrite(pos_param, 8, DEVICEADDR_OLED);
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}
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@@ -144,14 +144,19 @@ void GPIO_Init_OLED(void) {
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Function: Init_Oled
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Description: Initalizes the Oled screen
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*******************************************************************************/
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void Init_Oled(void) {
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void Init_Oled(uint8_t leftHanded) {
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u8 param_len;
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OLED_RST();
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delayMs(2);
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delayMs(5);
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OLED_ACT(); //Toggling reset to reset the oled
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delayMs(2);
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delayMs(5);
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param_len = 46;
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if (leftHanded) {
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OLED_Setup_Array[11] = 0xC8;
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OLED_Setup_Array[19] = 0xA1;
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displayOffset = 0;
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}
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I2C_PageWrite((u8 *) OLED_Setup_Array, param_len, DEVICEADDR_OLED);
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}
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@@ -161,7 +166,7 @@ void Init_Oled(void) {
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*******************************************************************************/
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void Clear_Screen(void) {
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u8 tx_data[128];
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memset(&tx_data[0], 0, 128);
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memset(tx_data, 0, 128);
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for (u8 i = 0; i < 2; i++) {
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Oled_DrawArea(0, i * 8, 128, 8, tx_data);
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}
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@@ -196,8 +201,7 @@ void OLED_DrawChar(char c, uint8_t x) {
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ptr += (37) * (FONT_WIDTH * 2);
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} else if (c == '>') {
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ptr += (38) * (FONT_WIDTH * 2);
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}else if (c=='.')
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{
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} else if (c == '.') {
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ptr += (39) * (FONT_WIDTH * 2);
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}
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Reference in New Issue
Block a user