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🎨 CONF_SERIAL_IS => SERIAL_IN_USE
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@ -37,22 +37,22 @@
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|| X_ENA_PIN == N || Y_ENA_PIN == N || Z_ENA_PIN == N \
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|| X_ENA_PIN == N || Y_ENA_PIN == N || Z_ENA_PIN == N \
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|| BTN_EN1 == N || BTN_EN2 == N \
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|| BTN_EN1 == N || BTN_EN2 == N \
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)
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)
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#if CONF_SERIAL_IS(0)
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#if SERIAL_IN_USE(0)
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// D0-D1. No known conflicts.
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// D0-D1. No known conflicts.
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#endif
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#endif
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#if NOT_TARGET(__AVR_ATmega644P__, __AVR_ATmega1284P__)
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#if NOT_TARGET(__AVR_ATmega644P__, __AVR_ATmega1284P__)
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#if CONF_SERIAL_IS(1) && (CHECK_SERIAL_PIN(18) || CHECK_SERIAL_PIN(19))
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#if SERIAL_IN_USE(1) && (CHECK_SERIAL_PIN(18) || CHECK_SERIAL_PIN(19))
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#error "Serial Port 1 pin D18 and/or D19 conflicts with another pin on the board."
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#error "Serial Port 1 pin D18 and/or D19 conflicts with another pin on the board."
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#endif
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#endif
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#else
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#else
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#if CONF_SERIAL_IS(1) && (CHECK_SERIAL_PIN(10) || CHECK_SERIAL_PIN(11))
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#if SERIAL_IN_USE(1) && (CHECK_SERIAL_PIN(10) || CHECK_SERIAL_PIN(11))
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#error "Serial Port 1 pin D10 and/or D11 conflicts with another pin on the board."
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#error "Serial Port 1 pin D10 and/or D11 conflicts with another pin on the board."
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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 CONF_SERIAL_IS(2) && (CHECK_SERIAL_PIN(16) || CHECK_SERIAL_PIN(17))
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#if SERIAL_IN_USE(2) && (CHECK_SERIAL_PIN(16) || CHECK_SERIAL_PIN(17))
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#error "Serial Port 2 pin D16 and/or D17 conflicts with another pin on the board."
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#error "Serial Port 2 pin D16 and/or D17 conflicts with another pin on the board."
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#endif
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#endif
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#if CONF_SERIAL_IS(3) && (CHECK_SERIAL_PIN(14) || CHECK_SERIAL_PIN(15))
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#if SERIAL_IN_USE(3) && (CHECK_SERIAL_PIN(14) || CHECK_SERIAL_PIN(15))
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#error "Serial Port 3 pin D14 and/or D15 conflicts with another pin on the board."
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#error "Serial Port 3 pin D14 and/or D15 conflicts with another pin on the board."
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#endif
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#endif
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#undef CHECK_SERIAL_PIN
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#undef CHECK_SERIAL_PIN
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@ -36,15 +36,15 @@
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|| X_DIR_PIN == N || Y_DIR_PIN == N || Z_DIR_PIN == N \
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|| X_DIR_PIN == N || Y_DIR_PIN == N || Z_DIR_PIN == N \
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|| X_ENA_PIN == N || Y_ENA_PIN == N || Z_ENA_PIN == N \
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|| X_ENA_PIN == N || Y_ENA_PIN == N || Z_ENA_PIN == N \
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)
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)
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#if CONF_SERIAL_IS(0) // D0-D1. No known conflicts.
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#if SERIAL_IN_USE(0) // D0-D1. No known conflicts.
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#endif
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#endif
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#if CONF_SERIAL_IS(1) && (CHECK_SERIAL_PIN(18) || CHECK_SERIAL_PIN(19))
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#if SERIAL_IN_USE(1) && (CHECK_SERIAL_PIN(18) || CHECK_SERIAL_PIN(19))
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#error "Serial Port 1 pin D18 and/or D19 conflicts with another pin on the board."
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#error "Serial Port 1 pin D18 and/or D19 conflicts with another pin on the board."
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#endif
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#endif
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#if CONF_SERIAL_IS(2) && (CHECK_SERIAL_PIN(16) || CHECK_SERIAL_PIN(17))
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#if SERIAL_IN_USE(2) && (CHECK_SERIAL_PIN(16) || CHECK_SERIAL_PIN(17))
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#error "Serial Port 2 pin D16 and/or D17 conflicts with another pin on the board."
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#error "Serial Port 2 pin D16 and/or D17 conflicts with another pin on the board."
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#endif
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#endif
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#if CONF_SERIAL_IS(3) && (CHECK_SERIAL_PIN(14) || CHECK_SERIAL_PIN(15))
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#if SERIAL_IN_USE(3) && (CHECK_SERIAL_PIN(14) || CHECK_SERIAL_PIN(15))
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#error "Serial Port 3 pin D14 and/or D15 conflicts with another pin on the board."
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#error "Serial Port 3 pin D14 and/or D15 conflicts with another pin on the board."
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#endif
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#endif
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#undef CHECK_SERIAL_PIN
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#undef CHECK_SERIAL_PIN
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@ -95,7 +95,7 @@
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static_assert(IS_FLASH_SECTOR(FLASH_SECTOR), "FLASH_SECTOR is invalid");
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static_assert(IS_FLASH_SECTOR(FLASH_SECTOR), "FLASH_SECTOR is invalid");
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static_assert(IS_POWER_OF_2(FLASH_UNIT_SIZE), "FLASH_UNIT_SIZE should be a power of 2, please check your chip's spec sheet");
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static_assert(IS_POWER_OF_2(FLASH_UNIT_SIZE), "FLASH_UNIT_SIZE should be a power of 2, please check your chip's spec sheet");
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#endif
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#endif // FLASH_EEPROM_LEVELING
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static bool eeprom_data_written = false;
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static bool eeprom_data_written = false;
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@ -189,15 +189,15 @@ bool PersistentStore::access_finish() {
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UNLOCK_FLASH();
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UNLOCK_FLASH();
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uint32_t offset = 0;
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uint32_t offset = 0,
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uint32_t address = SLOT_ADDRESS(current_slot);
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address = SLOT_ADDRESS(current_slot),
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uint32_t address_end = address + MARLIN_EEPROM_SIZE;
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address_end = address + MARLIN_EEPROM_SIZE,
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uint32_t data = 0;
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data = 0;
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bool success = true;
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bool success = true;
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while (address < address_end) {
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while (address < address_end) {
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memcpy(&data, ram_eeprom + offset, sizeof(uint32_t));
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memcpy(&data, ram_eeprom + offset, sizeof(data));
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status = HAL_FLASH_Program(FLASH_TYPEPROGRAM_WORD, address, data);
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status = HAL_FLASH_Program(FLASH_TYPEPROGRAM_WORD, address, data);
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if (status == HAL_OK) {
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if (status == HAL_OK) {
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address += sizeof(uint32_t);
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address += sizeof(uint32_t);
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@ -221,7 +221,8 @@ bool PersistentStore::access_finish() {
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return success;
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return success;
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#else
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#else // !FLASH_EEPROM_LEVELING
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// The following was written for the STM32F4 but may work with other MCUs as well.
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// The following was written for the STM32F4 but may work with other MCUs as well.
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// Most STM32F4 flash does not allow reading from flash during erase operations.
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// Most STM32F4 flash does not allow reading from flash during erase operations.
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// This takes about a second on a STM32F407 with a 128kB sector used as EEPROM.
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// This takes about a second on a STM32F407 with a 128kB sector used as EEPROM.
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@ -235,7 +236,8 @@ bool PersistentStore::access_finish() {
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TERN_(HAS_PAUSE_SERVO_OUTPUT, RESUME_SERVO_OUTPUT());
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TERN_(HAS_PAUSE_SERVO_OUTPUT, RESUME_SERVO_OUTPUT());
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eeprom_data_written = false;
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eeprom_data_written = false;
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#endif
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#endif // !FLASH_EEPROM_LEVELING
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}
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}
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return true;
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return true;
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@ -2446,7 +2446,7 @@
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//
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//
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// Flag the indexed hardware serial ports in use
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// Flag the indexed hardware serial ports in use
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#define CONF_SERIAL_IS(N) ( (defined(SERIAL_PORT) && SERIAL_PORT == N) \
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#define SERIAL_IN_USE(N) ( (defined(SERIAL_PORT) && SERIAL_PORT == N) \
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|| (defined(SERIAL_PORT_2) && SERIAL_PORT_2 == N) \
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|| (defined(SERIAL_PORT_2) && SERIAL_PORT_2 == N) \
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|| (defined(SERIAL_PORT_3) && SERIAL_PORT_3 == N) \
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|| (defined(SERIAL_PORT_3) && SERIAL_PORT_3 == N) \
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|| (defined(MMU2_SERIAL_PORT) && MMU2_SERIAL_PORT == N) \
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|| (defined(MMU2_SERIAL_PORT) && MMU2_SERIAL_PORT == N) \
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@ -2454,7 +2454,7 @@
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// Flag the named hardware serial ports in use
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// Flag the named hardware serial ports in use
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#define TMC_UART_IS(A,N) (defined(A##_HARDWARE_SERIAL) && (CAT(HW_,A##_HARDWARE_SERIAL) == HW_Serial##N || CAT(HW_,A##_HARDWARE_SERIAL) == HW_MSerial##N))
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#define TMC_UART_IS(A,N) (defined(A##_HARDWARE_SERIAL) && (CAT(HW_,A##_HARDWARE_SERIAL) == HW_Serial##N || CAT(HW_,A##_HARDWARE_SERIAL) == HW_MSerial##N))
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#define ANY_SERIAL_IS(N) ( CONF_SERIAL_IS(N) \
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#define ANY_SERIAL_IS(N) ( SERIAL_IN_USE(N) \
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|| TMC_UART_IS(X, N) || TMC_UART_IS(Y , N) || TMC_UART_IS(Z , N) \
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|| TMC_UART_IS(X, N) || TMC_UART_IS(Y , N) || TMC_UART_IS(Z , N) \
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|| TMC_UART_IS(I, N) || TMC_UART_IS(J , N) || TMC_UART_IS(K , N) \
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|| TMC_UART_IS(I, N) || TMC_UART_IS(J , N) || TMC_UART_IS(K , N) \
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|| TMC_UART_IS(U, N) || TMC_UART_IS(V , N) || TMC_UART_IS(W , N) \
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|| TMC_UART_IS(U, N) || TMC_UART_IS(V , N) || TMC_UART_IS(W , N) \
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@ -2481,7 +2481,7 @@
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#define HW_MSerial9 518
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#define HW_MSerial9 518
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#define HW_MSerial10 519
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#define HW_MSerial10 519
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#if CONF_SERIAL_IS(-1)
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#if SERIAL_IN_USE(-1)
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#define USING_HW_SERIALUSB 1
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#define USING_HW_SERIALUSB 1
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#endif
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#endif
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#if ANY_SERIAL_IS(0)
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#if ANY_SERIAL_IS(0)
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@ -49,19 +49,19 @@
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// manually add pins that have names that are macros which don't play well with these macros
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// manually add pins that have names that are macros which don't play well with these macros
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#if ANY(AVR_ATmega2560_FAMILY, AVR_ATmega1284_FAMILY, ARDUINO_ARCH_SAM, TARGET_LPC1768)
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#if ANY(AVR_ATmega2560_FAMILY, AVR_ATmega1284_FAMILY, ARDUINO_ARCH_SAM, TARGET_LPC1768)
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#if CONF_SERIAL_IS(0)
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#if SERIAL_IN_USE(0)
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static const char RXD_NAME_0[] PROGMEM = { "RXD0" };
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static const char RXD_NAME_0[] PROGMEM = { "RXD0" };
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static const char TXD_NAME_0[] PROGMEM = { "TXD0" };
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static const char TXD_NAME_0[] PROGMEM = { "TXD0" };
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#endif
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#endif
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#if CONF_SERIAL_IS(1)
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#if SERIAL_IN_USE(1)
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static const char RXD_NAME_1[] PROGMEM = { "RXD1" };
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static const char RXD_NAME_1[] PROGMEM = { "RXD1" };
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static const char TXD_NAME_1[] PROGMEM = { "TXD1" };
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static const char TXD_NAME_1[] PROGMEM = { "TXD1" };
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#endif
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#endif
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#if CONF_SERIAL_IS(2)
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#if SERIAL_IN_USE(2)
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static const char RXD_NAME_2[] PROGMEM = { "RXD2" };
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static const char RXD_NAME_2[] PROGMEM = { "RXD2" };
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static const char TXD_NAME_2[] PROGMEM = { "TXD2" };
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static const char TXD_NAME_2[] PROGMEM = { "TXD2" };
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#endif
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#endif
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#if CONF_SERIAL_IS(3)
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#if SERIAL_IN_USE(3)
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static const char RXD_NAME_3[] PROGMEM = { "RXD3" };
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static const char RXD_NAME_3[] PROGMEM = { "RXD3" };
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static const char TXD_NAME_3[] PROGMEM = { "TXD3" };
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static const char TXD_NAME_3[] PROGMEM = { "TXD3" };
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#endif
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#endif
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@ -99,7 +99,7 @@ const PinInfo pin_array[] PROGMEM = {
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* 2 bytes containing the digital/analog bool flag
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* 2 bytes containing the digital/analog bool flag
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*/
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*/
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#if CONF_SERIAL_IS(0)
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#if SERIAL_IN_USE(0)
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#if EITHER(AVR_ATmega2560_FAMILY, ARDUINO_ARCH_SAM)
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#if EITHER(AVR_ATmega2560_FAMILY, ARDUINO_ARCH_SAM)
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{ RXD_NAME_0, 0, true },
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{ RXD_NAME_0, 0, true },
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{ TXD_NAME_0, 1, true },
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{ TXD_NAME_0, 1, true },
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@ -112,7 +112,7 @@ const PinInfo pin_array[] PROGMEM = {
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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 CONF_SERIAL_IS(1)
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#if SERIAL_IN_USE(1)
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#if EITHER(AVR_ATmega2560_FAMILY, ARDUINO_ARCH_SAM)
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#if EITHER(AVR_ATmega2560_FAMILY, ARDUINO_ARCH_SAM)
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{ RXD_NAME_1, 19, true },
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{ RXD_NAME_1, 19, true },
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{ TXD_NAME_1, 18, true },
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{ TXD_NAME_1, 18, true },
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@ -130,7 +130,7 @@ const PinInfo pin_array[] PROGMEM = {
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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 CONF_SERIAL_IS(2)
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#if SERIAL_IN_USE(2)
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#if EITHER(AVR_ATmega2560_FAMILY, ARDUINO_ARCH_SAM)
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#if EITHER(AVR_ATmega2560_FAMILY, ARDUINO_ARCH_SAM)
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{ RXD_NAME_2, 17, true },
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{ RXD_NAME_2, 17, true },
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{ TXD_NAME_2, 16, true },
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{ TXD_NAME_2, 16, true },
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@ -145,7 +145,7 @@ const PinInfo pin_array[] PROGMEM = {
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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 CONF_SERIAL_IS(3)
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#if SERIAL_IN_USE(3)
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#if EITHER(AVR_ATmega2560_FAMILY, ARDUINO_ARCH_SAM)
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#if EITHER(AVR_ATmega2560_FAMILY, ARDUINO_ARCH_SAM)
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{ RXD_NAME_3, 15, true },
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{ RXD_NAME_3, 15, true },
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{ TXD_NAME_3, 14, true },
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{ TXD_NAME_3, 14, true },
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