Use FastIO, sanity-check LPC SD options, apply formatting (#12231)
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@ -76,14 +76,14 @@ void Servo_Handler(timer16_Sequence_t timer, Tc *tc, uint8_t channel) {
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tc->TC_CHANNEL[channel].TC_SR;
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tc->TC_CHANNEL[channel].TC_SR;
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if (Channel[timer] < 0)
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if (Channel[timer] < 0)
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tc->TC_CHANNEL[channel].TC_CCR |= TC_CCR_SWTRG; // channel set to -1 indicated that refresh interval completed so reset the timer
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tc->TC_CHANNEL[channel].TC_CCR |= TC_CCR_SWTRG; // channel set to -1 indicated that refresh interval completed so reset the timer
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else if (SERVO_INDEX(timer,Channel[timer]) < ServoCount && SERVO(timer,Channel[timer]).Pin.isActive)
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else if (SERVO_INDEX(timer, Channel[timer]) < ServoCount && SERVO(timer, Channel[timer]).Pin.isActive)
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digitalWrite(SERVO(timer,Channel[timer]).Pin.nbr, LOW); // pulse this channel low if activated
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digitalWrite(SERVO(timer, Channel[timer]).Pin.nbr, LOW); // pulse this channel low if activated
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Channel[timer]++; // increment to the next channel
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Channel[timer]++; // increment to the next channel
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if (SERVO_INDEX(timer, Channel[timer]) < ServoCount && Channel[timer] < SERVOS_PER_TIMER) {
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if (SERVO_INDEX(timer, Channel[timer]) < ServoCount && Channel[timer] < SERVOS_PER_TIMER) {
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tc->TC_CHANNEL[channel].TC_RA = tc->TC_CHANNEL[channel].TC_CV + SERVO(timer,Channel[timer]).ticks;
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tc->TC_CHANNEL[channel].TC_RA = tc->TC_CHANNEL[channel].TC_CV + SERVO(timer,Channel[timer]).ticks;
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if (SERVO(timer,Channel[timer]).Pin.isActive) // check if activated
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if (SERVO(timer,Channel[timer]).Pin.isActive) // check if activated
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digitalWrite( SERVO(timer,Channel[timer]).Pin.nbr,HIGH); // its an active channel so pulse it high
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digitalWrite(SERVO(timer, Channel[timer]).Pin.nbr, HIGH); // its an active channel so pulse it high
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}
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}
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else {
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else {
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// finished all channels so wait for the refresh period to expire before starting over
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// finished all channels so wait for the refresh period to expire before starting over
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@ -74,3 +74,11 @@
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|| MB(RAMPS_14_RE_ARM_SF))
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|| MB(RAMPS_14_RE_ARM_SF))
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#error "Re-ARM with REPRAP_DISCOUNT_FULL_GRAPHIC_SMART_CONTROLLER and TMC2130 require TMC_USE_SW_SPI"
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#error "Re-ARM with REPRAP_DISCOUNT_FULL_GRAPHIC_SMART_CONTROLLER and TMC2130 require TMC_USE_SW_SPI"
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#endif
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#endif
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#if 1 < (ENABLED(LPC_SD_CUSTOM_CABLE) + ENABLED(LPC_SD_LCD) + ENABLED(LPC_SD_ONBOARD))
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#error "Enable only one of LPC_SD_CUSTOM_CABLE, LPC_SD_LCD, or LPC_SD_ONBOARD."
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#endif
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#if 1 < (ENABLED(USB_SD_DISABLED) + ENABLED(USB_SD_ONBOARD))
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#error "Enable only one of USB_SD_DISABLED or USB_SD_ONBOARD."
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#endif
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@ -56,21 +56,25 @@ void HAL_init() {
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//debug_frmwrk_init();
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//debug_frmwrk_init();
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//_DBG("\n\nDebug running\n");
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//_DBG("\n\nDebug running\n");
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// Initialise the SD card chip select pins as soon as possible
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// Initialise the SD card chip select pins as soon as possible
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#ifdef SS_PIN
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#if PIN_EXISTS(SS)
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digitalWrite(SS_PIN, HIGH);
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WRITE(SS_PIN, HIGH);
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pinMode(SS_PIN, OUTPUT);
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SET_OUTPUT(SS_PIN);
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#endif
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#endif
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#ifdef ONBOARD_SD_CS
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digitalWrite(ONBOARD_SD_CS, HIGH);
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#if defined(ONBOARD_SD_CS) && ONBOARD_SD_CS > -1
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pinMode(ONBOARD_SD_CS, OUTPUT);
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WRITE(ONBOARD_SD_CS, HIGH);
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SET_OUTPUT(ONBOARD_SD_CS);
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#endif
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#endif
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USB_Init(); // USB Initialization
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USB_Init(); // USB Initialization
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USB_Connect(FALSE); // USB clear connection
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USB_Connect(FALSE); // USB clear connection
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delay(1000); // Give OS time to notice
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delay(1000); // Give OS time to notice
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USB_Connect(TRUE);
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USB_Connect(TRUE);
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#ifndef USB_SD_DISABLED
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#if DISABLED(USB_SD_DISABLED)
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MSC_SD_Init(0); // Enable USB SD card access
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MSC_SD_Init(0); // Enable USB SD card access
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#endif
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#endif
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const millis_t usb_timeout = millis() + 2000;
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const millis_t usb_timeout = millis() + 2000;
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while (!USB_Configuration && PENDING(millis(), usb_timeout)) {
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while (!USB_Configuration && PENDING(millis(), usb_timeout)) {
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delay(50);
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delay(50);
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@ -94,7 +98,7 @@ void HAL_init() {
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// HAL idle task
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// HAL idle task
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void HAL_idletask(void) {
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void HAL_idletask(void) {
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#if ENABLED(SDSUPPORT) && defined(SHARED_SD_CARD)
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#if ENABLED(SDSUPPORT) && ENABLED(SHARED_SD_CARD)
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// If Marlin is using the SD card we need to lock it to prevent access from
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// If Marlin is using the SD card we need to lock it to prevent access from
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// a PC via USB.
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// a PC via USB.
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// Other HALs use IS_SD_PRINTING() and IS_SD_FILE_OPEN() to check for access but
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// Other HALs use IS_SD_PRINTING() and IS_SD_FILE_OPEN() to check for access but
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@ -85,8 +85,8 @@ void HAL_timer_start(const uint8_t timer_num, const uint32_t frequency) {
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timerConfig[0].IRQ_Id = TIM5_IRQn;
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timerConfig[0].IRQ_Id = TIM5_IRQn;
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timerConfig[0].callback = (uint32_t)TC5_Handler;
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timerConfig[0].callback = (uint32_t)TC5_Handler;
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HAL_NVIC_SetPriority(timerConfig[0].IRQ_Id, 1, 0);
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HAL_NVIC_SetPriority(timerConfig[0].IRQ_Id, 1, 0);
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pinMode(STEPPER_ENABLE_PIN,OUTPUT);
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SET_OUTPUT(STEPPER_ENABLE_PIN);
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digitalWrite(STEPPER_ENABLE_PIN,LOW);
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WRITE(STEPPER_ENABLE_PIN);
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break;
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break;
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case TEMP_TIMER_NUM:
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case TEMP_TIMER_NUM:
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//TEMP TIMER TIM7 // any available 16bit Timer (1 already used for PWM)
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//TEMP TIMER TIM7 // any available 16bit Timer (1 already used for PWM)
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@ -190,7 +190,7 @@ void TMC26XStepper::start() {
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pinMode(step_pin, OUTPUT);
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pinMode(step_pin, OUTPUT);
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pinMode(dir_pin, OUTPUT);
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pinMode(dir_pin, OUTPUT);
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pinMode(cs_pin, OUTPUT);
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pinMode(cs_pin, OUTPUT);
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//pinMode(STEPPER_ENABLE_PIN, OUTPUT);
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//SET_OUTPUT(STEPPER_ENABLE_PIN);
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digitalWrite(step_pin, LOW);
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digitalWrite(step_pin, LOW);
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digitalWrite(dir_pin, LOW);
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digitalWrite(dir_pin, LOW);
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digitalWrite(cs_pin, HIGH);
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digitalWrite(cs_pin, HIGH);
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@ -887,7 +887,7 @@ inline void TMC26XStepper::send262(uint32_t datagram) {
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//}
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//}
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//select the TMC driver
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//select the TMC driver
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digitalWrite(cs_pin,LOW);
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digitalWrite(cs_pin, LOW);
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//ensure that only valid bist are set (0-19)
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//ensure that only valid bist are set (0-19)
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//datagram &=REGISTER_BIT_PATTERN;
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//datagram &=REGISTER_BIT_PATTERN;
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@ -916,7 +916,7 @@ inline void TMC26XStepper::send262(uint32_t datagram) {
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#endif
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#endif
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//deselect the TMC chip
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//deselect the TMC chip
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digitalWrite(cs_pin,HIGH);
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digitalWrite(cs_pin, HIGH);
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//restore the previous SPI mode if neccessary
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//restore the previous SPI mode if neccessary
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//if the mode is not correct set it to mode 3
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//if the mode is not correct set it to mode 3
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@ -187,14 +187,15 @@
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// is powered on to enable SD access.
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// is powered on to enable SD access.
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#if ENABLED(LPC_SD_LCD)
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#if ENABLED(LPC_SD_LCD)
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#define SCK_PIN P0_15
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#define SCK_PIN P0_15
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#define MISO_PIN P0_17
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#define MISO_PIN P0_17
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#define MOSI_PIN P0_18
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#define MOSI_PIN P0_18
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#define SS_PIN P1_23 // Chip select for SD card used by Marlin
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#define SS_PIN P1_23 // Chip select for SD card used by Marlin
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#endif
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#if ENABLED(LPC_SD_ONBOARD)
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#elif ENABLED(LPC_SD_ONBOARD)
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#if ENABLED(USB_SD_ONBOARD)
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#if ENABLED(USB_SD_ONBOARD)
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// When sharing the SD card with a PC we want the menu options to
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// When sharing the SD card with a PC we want the menu options to
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// mount/unmount the card and refresh it. So we disable card detect.
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// mount/unmount the card and refresh it. So we disable card detect.
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@ -206,4 +207,5 @@
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#define MOSI_PIN P0_09
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#define MOSI_PIN P0_09
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#define SS_PIN P0_06 // Chip select for SD card used by Marlin
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#define SS_PIN P0_06 // Chip select for SD card used by Marlin
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#endif
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#endif
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@ -196,16 +196,17 @@
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/*
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/*
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* There are a number of configurations available for the SBase SD card reader.
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* There are a number of configurations available for the SBase SD card reader.
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* A custom cable can be used to allow access to the LCD based SD card.
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* - A custom cable can be used to allow access to the LCD based SD card.
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* A standard cable can be used for access to the LCD SD card (but no SD detect).
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* - A standard cable can be used for access to the LCD SD card (but no SD detect).
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* The onboard SD card can be used and optionally shared with a PC via USB.
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* - The onboard SD card can be used and optionally shared with a PC via USB.
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*/
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*/
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//#define LPC_SD_CUSTOM_CABLE // Use a custom cable to access the SD
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//#define LPC_SD_CUSTOM_CABLE // Use a custom cable to access the SD
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//#define LPC_SD_LCD // Marlin uses the SD drive attached to the LCD
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//#define LPC_SD_LCD // Marlin uses the SD drive attached to the LCD
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#define LPC_SD_ONBOARD // Marlin uses the SD drive attached to the control board
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#define LPC_SD_ONBOARD // Marlin uses the SD drive attached to the control board
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#ifdef LPC_SD_CUSTOM_CABLE
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#if ENABLED(LPC_SD_CUSTOM_CABLE)
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/**
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/**
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* A custom cable is needed. See the README file in the
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* A custom cable is needed. See the README file in the
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* Marlin\src\config\examples\Mks\Sbase directory
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* Marlin\src\config\examples\Mks\Sbase directory
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@ -218,43 +219,41 @@
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* If you can't find a pin to use for the LCD's SD_DETECT then comment out
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* If you can't find a pin to use for the LCD's SD_DETECT then comment out
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* SD_DETECT_PIN entirely and remove that wire from the the custom cable.
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* SD_DETECT_PIN entirely and remove that wire from the the custom cable.
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*/
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*/
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#define SD_DETECT_PIN P2_11 // J8-5 (moved from EXP2 P0.27)
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#define SD_DETECT_PIN P2_11 // J8-5 (moved from EXP2 P0.27)
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#define SCK_PIN P1_22 // J8-2 (moved from EXP2 P0.7)
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#define SCK_PIN P1_22 // J8-2 (moved from EXP2 P0.7)
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#define MISO_PIN P1_23 // J8-3 (moved from EXP2 P0.8)
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#define MISO_PIN P1_23 // J8-3 (moved from EXP2 P0.8)
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#define MOSI_PIN P2_12 // J8-4 (moved from EXP2 P0.9)
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#define MOSI_PIN P2_12 // J8-4 (moved from EXP2 P0.9)
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#define SS_PIN P0_28 // Chip select for SD card used by Marlin
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#define SS_PIN P0_28 // Chip select for SD card used by Marlin
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#define LPC_SOFTWARE_SPI // With a custom cable we need software SPI because the
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#define LPC_SOFTWARE_SPI // With a custom cable we need software SPI because the
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// selected pins are not on a hardware SPI controller
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// selected pins are not on a hardware SPI controller
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#endif
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#elif ENABLED(LPC_SD_LCD)
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#ifdef LPC_SD_LCD
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// use standard cable and header, SPI and SD detect sre shared with on-board SD card
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// use standard cable and header, SPI and SD detect sre shared with on-board SD card
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// hardware SPI is used for both SD cards. The detect pin is shred between the
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// hardware SPI is used for both SD cards. The detect pin is shred between the
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// LCD and onboard SD readers so we disable it.
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// LCD and onboard SD readers so we disable it.
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#undef SD_DETECT_PIN
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#define SCK_PIN P0_07
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#define SCK_PIN P0_07
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#define MISO_PIN P0_08
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#define MISO_PIN P0_08
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#define MOSI_PIN P0_09
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#define MOSI_PIN P0_09
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#define SS_PIN P0_28 // Chip select for SD card used by Marlin
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#define SS_PIN P0_28 // Chip select for SD card used by Marlin
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#endif
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#elif ENABLED(LPC_SD_ONBOARD)
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#ifdef LPC_SD_ONBOARD
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// The external SD card is not used. Hardware SPI is used to access the card.
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// The external SD card is not used. Hardware SPI is used to access the card.
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#ifdef USB_SD_ONBOARD
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#if ENABLED(USB_SD_ONBOARD)
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// When sharing the SD card with a PC we want the menu options to
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// When sharing the SD card with a PC we want the menu options to
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// mount/unmount the card and refresh it. So we disable card detect.
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// mount/unmount the card and refresh it. So we disable card detect.
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#define SHARED_SD_CARD
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#define SHARED_SD_CARD
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#undef SD_DETECT_PIN
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#else
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#else
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#define SD_DETECT_PIN P0_27
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#define SD_DETECT_PIN P0_27
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#endif
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#endif
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#define SCK_PIN P0_07
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#define SCK_PIN P0_07
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#define MISO_PIN P0_08
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#define MISO_PIN P0_08
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#define MOSI_PIN P0_09
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#define MOSI_PIN P0_09
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#define SS_PIN P0_06 // Chip select for SD card used by Marlin
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#define SS_PIN P0_06 // Chip select for SD card used by Marlin
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#endif
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#endif
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/**
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/**
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@ -286,6 +285,7 @@
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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#if HAS_DRIVER(TMC2208)
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#if HAS_DRIVER(TMC2208)
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// The shortage of pins becomes apparent.
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// The shortage of pins becomes apparent.
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// Worst case you may have to give up the LCD
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// Worst case you may have to give up the LCD
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@ -363,23 +363,23 @@
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#define ENET_TXD0 P1_00 // (78) J12-11
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#define ENET_TXD0 P1_00 // (78) J12-11
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#define ENET_TXD1 P1_01 // (79) J12-12
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#define ENET_TXD1 P1_01 // (79) J12-12
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//#define USB_SD_DISABLED
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//#define USB_SD_DISABLED
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#define USB_SD_ONBOARD // Provide the onboard SD card to the host as a USB mass storage device
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#define USB_SD_ONBOARD // Provide the onboard SD card to the host as a USB mass storage device
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//#define LPC_SD_LCD // Marlin uses the SD drive attached to the LCD
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//#define LPC_SD_LCD // Marlin uses the SD drive attached to the LCD
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#define LPC_SD_ONBOARD // Marlin uses the SD drive on the control board
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#define LPC_SD_ONBOARD // Marlin uses the SD drive on the control board
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#ifdef LPC_SD_LCD
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#if ENABLED(LPC_SD_LCD)
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#define SCK_PIN P0_15
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#define SCK_PIN P0_15
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#define MISO_PIN P0_17
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#define MISO_PIN P0_17
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#define MOSI_PIN P0_18
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#define MOSI_PIN P0_18
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#define SS_PIN P1_23 // Chip select for SD card used by Marlin
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#define SS_PIN P1_23 // Chip select for SD card used by Marlin
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#endif
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#ifdef LPC_SD_ONBOARD
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#elif ENABLED(LPC_SD_ONBOARD)
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#ifdef USB_SD_ONBOARD
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#if ENABLED(USB_SD_ONBOARD)
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// When sharing the SD card with a PC we want the menu options to
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// When sharing the SD card with a PC we want the menu options to
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// mount/unmount the card and refresh it. So we disable card detect.
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// mount/unmount the card and refresh it. So we disable card detect.
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#define SHARED_SD_CARD
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#define SHARED_SD_CARD
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@ -390,10 +390,11 @@
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#define MOSI_PIN P0_09
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#define MOSI_PIN P0_09
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#define SS_PIN P0_06 // Chip select for SD card used by Marlin
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#define SS_PIN P0_06 // Chip select for SD card used by Marlin
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#define ONBOARD_SD_CS P0_06 // Chip select for "System" SD card
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#endif
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#endif
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/**
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/**
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* Fast PWMS
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* Fast PWMs
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*
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*
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* The LPC1768's hardware PWM controller has 6 channels. Each channel
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* The LPC1768's hardware PWM controller has 6 channels. Each channel
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* can be setup to either control a dedicated pin directly or to generate
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* can be setup to either control a dedicated pin directly or to generate
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@ -418,7 +419,7 @@
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*/
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*/
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/**
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/**
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* special pins
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* Special pins
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* P1_30 (37) - not 5V tolerant
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* P1_30 (37) - not 5V tolerant
|
||||||
* P1_31 (49) - not 5V tolerant
|
* P1_31 (49) - not 5V tolerant
|
||||||
* P0_27 (57) - open collector
|
* P0_27 (57) - open collector
|
||||||
|
Loading…
Reference in New Issue
Block a user