Configtool: process a metadata file before reading header files.
This should allow for easier addition of defines as Teacup evolves.
This commit is contained in:
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277de42b00
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/***************************************************************************\
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* *
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* 1. CPU *
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* *
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\***************************************************************************/
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/** \def CPU_TYPE
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CPU types a user should be able to choose from in configtool. All
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commented out.
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*/
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//#define CPU_TYPE atmega1280
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//#define CPU_TYPE atmega2560
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/** \def CPU
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CPU actually present on the board.
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*/
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#define CPU atmega2560
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/** \def F_CPU_OPT
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CPU clock frequencies a user should be able to choose from in configtool.
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All commented out.
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*/
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//#define F_CPU_OPT 16000000UL
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/** \def F_CPU
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Actual CPU clock rate. #ifndef required for Arduino compatibility.
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*/
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#ifndef F_CPU
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#define F_CPU 16000000UL
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#endif
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/** \def MOTHERBOARD
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This is the motherboard, as opposed to the extruder. See extruder/ directory
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for GEN3 extruder firmware.
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*/
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#define MOTHERBOARD
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/***************************************************************************\
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* *
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* 2. PINOUTS *
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* *
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\***************************************************************************/
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#define X_STEP_PIN
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#define X_DIR_PIN
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#define X_MIN_PIN
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#define X_MAX_PIN
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#define X_ENABLE_PIN
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#define X_INVERT_DIR
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#define X_INVERT_MIN
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#define X_INVERT_MAX
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#define X_INVERT_ENABLE
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#define Y_STEP_PIN
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#define Y_DIR_PIN
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#define Y_MIN_PIN
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#define Y_MAX_PIN
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#define Y_ENABLE_PIN
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#define Y_INVERT_DIR
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#define Y_INVERT_MIN
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#define Y_INVERT_MAX
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#define Y_INVERT_ENABLE
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#define Z_STEP_PIN
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#define Z_DIR_PIN
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#define Z_MIN_PIN
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#define Z_MAX_PIN
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#define Z_ENABLE_PIN
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#define Z_INVERT_DIR
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#define Z_INVERT_MIN
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#define Z_INVERT_MAX
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#define Z_INVERT_ENABLE
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#define E_STEP_PIN
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#define E_DIR_PIN
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#define E_ENABLE_PIN
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#define E_INVERT_DIR
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#define E_INVERT_ENABLE
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#define PS_ON_PIN
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#define PS_MOSFET_PIN
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#define STEPPER_ENABLE_PIN
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#define STEPPER_INVERT_ENABLE
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/** \def DEBUG_LED_PIN
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Enable flashing of a LED during motor stepping.
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Disabled by default. Uncommenting this makes the binary a few bytes larger
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and adds a few cycles to the step timing interrrupt in timer.c. Also used
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for precision profiling (profiling works even without actually having such
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a LED in hardware), see
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http://reprap.org/wiki/Teacup_Firmware#Doing_precision_profiling
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*/
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#define DEBUG_LED_PIN
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/***************************************************************************\
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* *
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* 3. TEMPERATURE SENSORS *
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* *
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\***************************************************************************/
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/** \def TEMP_MAX6675 TEMP_THERMISTOR TEMP_AD595 TEMP_PT100 TEMP_INTERCOM
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Which temperature sensor types are you using? Leave all used ones
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uncommented, comment out all others to save binary size and enhance
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performance.
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*/
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#define TEMP_MAX6675
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#define TEMP_THERMISTOR
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#define TEMP_AD595
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#define TEMP_PT100
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#define TEMP_INTERCOM
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/** \def TEMP_SENSOR_PIN
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Temperature sensor pins a user should be able to choose from in configtool.
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All commented out.
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*/
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//#define TEMP_SENSOR_PIN AIO13
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//#define TEMP_SENSOR_PIN AIO14
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//#define TEMP_SENSOR_PIN AIO15
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/** \def DEFINE_TEMP_SENSOR
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Define your temperature sensors here. One line for each sensor, only
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limited by the number of available ATmega pins.
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Name must match the name of the corresponding heater. If a heater "extruder"
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exists, a temperature sensor of that name has to exist as well. Same for
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heater "bed". There can be one sensor without corresponding heater, name it
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"noheater".
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Types are same as TEMP_ list above - TT_MAX6675, TT_THERMISTOR, TT_AD595,
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TT_PT100, TT_INTERCOM. See list in temp.c.
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The "additional" field is used for TT_THERMISTOR only. It defines the
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name of the table(s) in thermistortable.h to use. This name is arbitrary,
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often used names include THERMISTOR_EXTRUDER and THERMISTOR_BED. Also,
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several sensors can share the same table, which saves binary size.
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For a GEN3 set temp_type to TT_INTERCOM and temp_pin to AIO0. The pin
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won't be used in this case.
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*/
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//DEFINE_TEMP_SENSORS_START
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//DEFINE_TEMP_SENSORS_END
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/***************************************************************************\
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* *
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* 4. HEATERS *
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* *
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\***************************************************************************/
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/** \def HEATER_PIN
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Heater pins a user should be able to choose from in configtool. All
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commented out.
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*/
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//#define HEATER_PIN DIO4
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//#define HEATER_PIN DIO5
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//#define HEATER_PIN DIO8
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//#define HEATER_PIN DIO9
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//#define HEATER_PIN DIO10
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/** \def DEFINE_HEATER
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Define your heaters and devices here.
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To attach a heater to a temp sensor above, simply use exactly the same
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name - copy+paste is your friend. Some common names are 'extruder',
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'bed', 'fan', 'motor', ... names with special meaning can be found
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in gcode_process.c. Currently, these are:
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HEATER_extruder (M104)
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HEATER_bed (M140)
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HEATER_fan (M106)
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Devices don't neccessarily have a temperature sensor, e.g. fans or
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milling spindles. Operate such devices by setting their power (M106),
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instead of setting their temperature (M104).
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Also note, the index of a heater (M106 P#) can differ from the index of
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its attached temperature sensor (M104 P#) in case sensor-less devices
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are defined or the order of the definitions differs. The first defined
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device has the index 0 (zero).
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Set 'pwm' to ...
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1 for using PWM on a PWM-able pin and on/off on other pins.
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0 for using on/off on a PWM-able pin, too.
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Using PWM usually gives smoother temperature control but can conflict
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with slow switches, like solid state relays. PWM frequency can be
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influenced globally with FAST_PWM, see below.
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*/
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//DEFINE_HEATERS_START
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//DEFINE_HEATERS_END
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/***************************************************************************\
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* *
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* 5. COMMUNICATION OPTIONS *
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* *
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\***************************************************************************/
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/** \def BAUD
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Baud rate for the serial RS232 protocol connection to the host. Usually
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115200, other common values are 19200, 38400 or 57600. Ignored when USB_SERIAL
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is defined.
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*/
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#define BAUD
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/** \def XONXOFF
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Xon/Xoff flow control.
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Redundant when using RepRap Host for sending G-code, but mandatory when
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sending G-code files with a plain terminal emulator, like GtkTerm (Linux),
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CoolTerm (Mac) or HyperTerminal (Windows).
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*/
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#define XONXOFF
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/** \def USB_SERIAL
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Define this for using USB instead of the serial RS232 protocol. Works on
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USB-equipped ATmegas, like the ATmega32U4, only.
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*/
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#define USB_SERIAL
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/***************************************************************************\
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* *
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* 6. MECHANICAL/HARDWARE *
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* *
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\***************************************************************************/
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/** \def KINEMATICS_STRAIGHT KINEMATICS_COREXY
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This defines the type of kinematics your printer uses. That's essential!
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Valid values (see dda_kinematics.h):
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KINEMATICS_STRAIGHT
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Motors move axis directions directly. This is the
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traditional type, found in many printers, including
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Mendel, Prusa i3, Mendel90, Ormerod, Mantis.
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KINEMATICS_COREXY
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A bot using CoreXY kinematics. Typical for CoreXY
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are long and crossing toothed belts and a print head
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moving on the X-Y-plane.
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*/
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#define KINEMATICS
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/** \def STEPS_PER_M_X STEPS_PER_M_Y STEPS_PER_M_Z STEPS_PER_M_E
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Steps per meter ( = steps per mm * 1000 ), calculate these values
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appropriate for your machine.
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All numbers are integers, so no decimal point, please :-)
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Valid range: 20 to 4'0960'000 (0.02 to 40960 steps/mm)
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*/
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#define STEPS_PER_M_X
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#define STEPS_PER_M_Y
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#define STEPS_PER_M_Z
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#define STEPS_PER_M_E
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/** \def MAXIMUM_FEEDRATE_X MAXIMUM_FEEDRATE_Y MAXIMUM_FEEDRATE_Z MAXIMUM_FEEDRATE_E
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Used for G0 rapid moves and as a cap for all other feedrates.
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*/
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#define MAXIMUM_FEEDRATE_X
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#define MAXIMUM_FEEDRATE_Y
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#define MAXIMUM_FEEDRATE_Z
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#define MAXIMUM_FEEDRATE_E
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/** \def SEARCH_FEEDRATE_X SEARCH_FEEDRATE_Y SEARCH_FEEDRATE_Z
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Used when doing precision endstop search and as default feedrate. No
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SEARCH_FEEDRATE_E, as E can't be searched.
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*/
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#define SEARCH_FEEDRATE_X
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#define SEARCH_FEEDRATE_Y
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#define SEARCH_FEEDRATE_Z
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/** \def ENDSTOP_CLEARANCE_X ENDSTOP_CLEARANCE_Y ENDSTOP_CLEARANCE_Z
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When hitting an endstop, Teacup properly decelerates instead of doing an
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aprupt stop to save your mechanics. Ineviteably, this means it overshoots
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the endstop trigger point by some distance.
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To deal with this, Teacup adapts homing movement speeds to what your
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endstops can deal with. The higher the allowed acceleration ( = deceleration,
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see #define ACCELERATION) and the more clearance the endstop comes with,
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the faster Teacup will do homing movements.
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Set here how many micrometers (mm * 1000) your endstop allows the carriage
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to overshoot the trigger point. Typically 1000 or 2000 for mechanical
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endstops, more for optical ones. You can set it to zero, in which case
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SEARCH_FEEDRATE_{XYZ} is used, but expect very slow homing movements.
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Units: micrometers
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Sane values: 0 to 20000 (0 to 20 mm)
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Valid range: 0 to 1000000
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*/
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#define ENDSTOP_CLEARANCE_X
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#define ENDSTOP_CLEARANCE_Y
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#define ENDSTOP_CLEARANCE_Z
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/** \def X_MIN X_MAX Y_MIN Y_MAX Z_MIN Z_MAX
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Soft axis limits. Define them to your machine's size relative to what your
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G-code considers to be the origin (typically the bed's center or the bed's
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front left corner).
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Note that relocating the origin at runtime with G92 will also relocate these
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limits.
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Not defining them at all will disable limits checking and make the binary
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about 250 bytes smaller. Enabling only some of them is perfectly fine.
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Units: millimeters
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Sane values: according to printer build room size
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Valid range: -1000.0 to 1000.0
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*/
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#define X_MIN
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#define X_MAX
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#define Y_MIN
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#define Y_MAX
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#define Z_MIN
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#define Z_MAX
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/** \def E_ABSOLUTE
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Some G-code creators produce relative length commands for the extruder,
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others absolute ones. G-code using absolute lengths can be recognized when
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there are G92 E0 commands from time to time. If you have G92 E0 in your
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G-code, define this flag.
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This is the startup default and can be changed with M82/M83 while running.
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*/
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#define E_ABSOLUTE
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/** \def ACCELERATION_REPRAP ACCELERATION_RAMPING ACCELERATION_TEMPORAL
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Choose optionally one of ACCELERATION_REPRAP, ACCELERATION_RAMPING or
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ACCELERATION_TEMPORAL. With none of them defined, movements are done
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without acceleration. Recommended is ACCELERATION_RAMPING.
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*/
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#define ACCELERATION_REPRAP
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#define ACCELERATION_RAMPING
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#define ACCELERATION_TEMPORAL
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/** \def ACCELERATION
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How fast to accelerate when using ACCELERATION_RAMPING. Start with 10 for
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milling (high precision) or 1000 for printing.
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Units: mm/s^2
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Useful range: 1 to 10'000
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*/
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#define ACCELERATION
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/** \def LOOKAHEAD
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Define this to enable look-ahead during *ramping* acceleration to smoothly
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transition between moves instead of performing a dead stop every move.
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Enabling look-ahead requires about 3600 bytes of flash memory.
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*/
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#define LOOKAHEAD
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/** \def MAX_JERK_X MAX_JERK_Y MAX_JERK_Z MAX_JERK_E
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When performing look-ahead, we need to decide what an acceptable jerk to the
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mechanics is. Look-ahead attempts to instantly change direction at movement
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crossings, which means instant changes in the speed of the axes participating
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in the movement. Define here how big the speed bumps on each of the axes is
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allowed to be.
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If you want a full stop before and after moving a specific axis, define
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MAX_JERK of this axis to 0. This is often wanted for the Z axis. If you want
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to ignore jerk on an axis, define it to twice the maximum feedrate of this
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axis.
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Having these values too low results in more than neccessary slowdown at
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movement crossings, but is otherwise harmless. Too high values can result
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in stepper motors suddenly stalling. If angles between movements in your
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G-code are small and your printer runs through entire curves full speed,
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there's no point in raising the values.
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Units: mm/min
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Sane values: 0 to 400
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Valid range: 0 to 65535
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*/
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#define MAX_JERK_X
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#define MAX_JERK_Y
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#define MAX_JERK_Z
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#define MAX_JERK_E
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/***************************************************************************\
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* *
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* 7. MISCELLANEOUS OPTIONS *
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* *
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\***************************************************************************/
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/** \def USE_INTERNAL_PULLUPS
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The ATmega has internal pullup resistors on it's input pins which are
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counterproductive with the commonly used eletronic endstops, so they should
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be switched off. For other endstops, like mechanical ones, you may want to
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uncomment this.
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*/
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#define USE_INTERNAL_PULLUPS
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/** \def TEMP_HYSTERESIS
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Actual temperature must be target +/- this hysteresis before target
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temperature is considered to be achieved. Also, BANG_BANG tries to stay
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within half of this hysteresis.
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Unit: degree Celsius
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*/
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#define TEMP_HYSTERESIS
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/** \def TEMP_RESIDENCY_TIME
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Actual temperature must be close to target (within set temperature
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+- TEMP_HYSTERESIS) for this long before target is achieved (and a M116
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succeeds).
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Unit: seconds
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*/
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#define TEMP_RESIDENCY_TIME
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/** \def TEMP_EWMA
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Smooth noisy temperature sensors. Good hardware shouldn't be noisy. Set to
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1.0 for unfiltered data (and a 140 bytes smaller binary).
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Instrument Engineer's Handbook, 4th ed, Vol 2 p126 says values of
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0.05 to 0.1 are typical. Smaller is smoother but slower adjusting, larger is
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quicker but rougher. If you need to use this, set the PID parameter to zero
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(M132 S0) to make the PID loop insensitive to noise.
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Valid range: 0.001 to 1.0
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*/
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#define TEMP_EWMA
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/** \def REPORT_TARGET_TEMPS
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With this enabled, M105 commands will return the current temperatures along
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with the target temps, separated by a slash: ok T:xxx.x/xxx.x B:xxx.x/xxx.x
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With this disabled, only temps will be returned: ok T:xxx.x B:xxx.x
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Enabling adds 78 bytes to the image.
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*/
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#define REPORT_TARGET_TEMPS
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/** \def HEATER_SANITY_CHECK
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Check if heater responds to changes in target temperature, disable and spit
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errors if not largely untested, please comment in forum if this works, or
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doesn't work for you!
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*/
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#define HEATER_SANITY_CHECK
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/** \def EECONFIG
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Enable EEPROM configuration storage.
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Enabled by default. Commenting this out makes the binary several hundred
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bytes smaller, so you might want to disable EEPROM storage on small MCUs,
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like the ATmega168.
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*/
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#define EECONFIG
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/** \def BANG_BANG
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Drops PID loop from heater control, reduces code size significantly
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(1300 bytes!).
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*/
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#define BANG_BANG
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/** \def BANG_BANG_ON
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PWM value for Bang Bang 'on'.
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*/
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#define BANG_BANG_ON
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/** \def BANG_BANG_OFF
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PWM value for Bang Bang 'off'.
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*/
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#define BANG_BANG_OFF
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/** \def MOVEBUFFER_SIZE
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Move buffer size, in number of moves.
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Note that each move takes a fair chunk of ram (107 bytes as of this writing),
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so don't make the buffer too big. However, a larger movebuffer will probably
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help with lots of short consecutive moves, as each move takes a bunch of
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math (hence time) to set up so a longer buffer allows more of the math to
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be done during preceding longer moves.
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*/
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#define MOVEBUFFER_SIZE
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|
||||
/** \def DC_EXTRUDER DC_EXTRUDER_PWM
|
||||
If you have a DC motor extruder, configure it as a "heater" above and define
|
||||
this value as the index or name. You probably also want to comment out
|
||||
E_STEP_PIN and E_DIR_PIN in the Pinouts section above.
|
||||
*/
|
||||
#define DC_EXTRUDER
|
||||
#define DC_EXTRUDER_PWM
|
||||
|
||||
/** \def USE_WATCHDOG
|
||||
Teacup implements a watchdog, which has to be reset every 250ms or it will
|
||||
reboot the controller. As rebooting (and letting the GCode sending
|
||||
application trying to continue the build with a then different Home point)
|
||||
is probably even worse than just hanging, and there is no better restore
|
||||
code in place, this is disabled for now.
|
||||
*/
|
||||
#define USE_WATCHDOG
|
||||
|
||||
/** \def TH_COUNT
|
||||
Temperature history count. This is how many temperature readings to keep in
|
||||
order to calculate derivative in PID loop higher values make PID derivative
|
||||
term more stable at the expense of reaction time.
|
||||
*/
|
||||
#define TH_COUNT
|
||||
|
||||
/** \def FAST_PWM
|
||||
Teacup offers two PWM frequencies, 76(61) Hz and 78000(62500) Hz on a
|
||||
20(16) MHz electronics. The slower one is the default, as it's the safer
|
||||
choice and reduces MOSFET heating. Drawback is, in a quiet environment you
|
||||
might notice the heaters and your power supply humming.
|
||||
|
||||
Uncomment this option if you want to get rid of this humming and can afford
|
||||
a hotter MOSFET or want faster PWM for other reasons.
|
||||
|
||||
See also: http://reprap.org/wiki/Gen7_Research#MOSFET_heat_and_PWM
|
||||
*/
|
||||
#define FAST_PWM
|
||||
|
||||
/** \def PID_SCALE
|
||||
This is the scaling of internally stored PID values. 1024L is a good value.
|
||||
*/
|
||||
#define PID_SCALE
|
||||
|
||||
/** \def ENDSTOP_STEPS
|
||||
Number of steps to run into the endstops intentionally. As endstops trigger
|
||||
false alarm sometimes, Teacup debounces them by counting a number of
|
||||
consecutive positives.
|
||||
|
||||
Use 4 or less for reliable endstops, 8 or even more for flaky ones.
|
||||
|
||||
Valid range: 1...255.
|
||||
*/
|
||||
#define ENDSTOP_STEPS 4
|
||||
|
||||
/** \def CANNED_CYCLE
|
||||
G-code commands in this string will be executed over and over again, without
|
||||
user interaction or even a serial connection. It's purpose is e.g. for
|
||||
exhibitions or when using Teacup for other purposes than printing. You can
|
||||
add any G-code supported by Teacup.
|
||||
|
||||
Note: don't miss these newlines (\n) and backslashes (\).
|
||||
*/
|
||||
/*
|
||||
#define CANNED_CYCLE "G1 X100 F3000\n" \
|
||||
"G4 P500\n" \
|
||||
"G1 X0\n" \
|
||||
"G4 P500\n"
|
||||
*/
|
||||
|
|
@ -40,6 +40,7 @@ class BoardPanel(wx.Panel):
|
|||
self.candHeatPins = []
|
||||
self.candThermPins = []
|
||||
self.dir = os.path.join(self.settings.folder, "config")
|
||||
self.cfgDir = os.path.join(self.settings.folder, "config")
|
||||
|
||||
self.SetBackgroundColour(self.deco.getBackgroundColour())
|
||||
self.Bind(wx.EVT_PAINT, self.deco.onPaintBackground)
|
||||
|
|
@ -210,20 +211,26 @@ class BoardPanel(wx.Panel):
|
|||
return
|
||||
|
||||
self.dir = os.path.dirname(path)
|
||||
rc = self.loadConfigFile(path)
|
||||
rc, efn = self.loadConfigFile(path)
|
||||
|
||||
if not rc:
|
||||
dlg = wx.MessageDialog(self, "Unable to process file %s." % path,
|
||||
dlg = wx.MessageDialog(self, "Unable to process file %s." % efn,
|
||||
"File error", wx.OK + wx.ICON_ERROR)
|
||||
dlg.ShowModal()
|
||||
dlg.Destroy()
|
||||
return
|
||||
|
||||
def loadConfigFile(self, fn):
|
||||
cfgFn = os.path.join(self.cfgDir, "board.metadata")
|
||||
try:
|
||||
self.cfgBuffer = list(open(fn))
|
||||
self.cfgBuffer = list(open(cfgFn))
|
||||
except:
|
||||
return False
|
||||
return False, cfgFn
|
||||
|
||||
try:
|
||||
self.userBuffer = list(open(fn))
|
||||
except:
|
||||
return False, fn
|
||||
|
||||
self.configFile = fn
|
||||
|
||||
|
|
@ -234,12 +241,13 @@ class BoardPanel(wx.Panel):
|
|||
self.candThermPins = []
|
||||
self.candProcessors = []
|
||||
self.candClocks = []
|
||||
tempTables = {}
|
||||
self.tempTables = {}
|
||||
gatheringHelpText = False
|
||||
helpTextString = ""
|
||||
helpKey = None
|
||||
|
||||
self.cfgValues = {}
|
||||
self.cfgNames = []
|
||||
self.helpText = {}
|
||||
|
||||
prevLines = ""
|
||||
|
|
@ -281,75 +289,26 @@ class BoardPanel(wx.Panel):
|
|||
prevLines = ""
|
||||
|
||||
if ln.lstrip().startswith("//"):
|
||||
m = reCandThermPins.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.candThermPins.append(t[0])
|
||||
continue
|
||||
self.parseCandidateValues(ln)
|
||||
|
||||
m = reCandHeatPins.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.candHeatPins.append(t[0])
|
||||
continue
|
||||
|
||||
m = reCandProcessors.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.candProcessors.append(t[0])
|
||||
continue
|
||||
|
||||
m = reCandCPUClocks.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.candClocks.append(t[0])
|
||||
continue
|
||||
|
||||
m = reDefTT.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
s = self.parseTempTable(t[1])
|
||||
if s:
|
||||
tempTables[t[0]] = s
|
||||
continue
|
||||
elif ln.lstrip().startswith("#define"):
|
||||
self.parseDefineName(ln)
|
||||
|
||||
prevLines = ""
|
||||
for ln in self.userBuffer:
|
||||
if ln.rstrip().endswith("\\"):
|
||||
prevLines += ln.rstrip()[:-1]
|
||||
continue
|
||||
|
||||
if ln.lstrip().startswith("#define"):
|
||||
m = reDefQS.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
m = reDefQSm.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
tt = re.findall(reDefQSm2, t[1])
|
||||
if len(tt) == 1:
|
||||
self.cfgValues[t[0]] = tt[0]
|
||||
continue
|
||||
elif len(tt) > 1:
|
||||
self.cfgValues[t[0]] = tt
|
||||
continue
|
||||
if prevLines != "":
|
||||
ln = prevLines + ln
|
||||
prevLines = ""
|
||||
|
||||
m = reDefine.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
self.cfgValues[t[0]] = t[1]
|
||||
if reFloatAttr.search(ln):
|
||||
pass
|
||||
continue
|
||||
if ln.lstrip().startswith("//"):
|
||||
self.parseCandidateValues(ln)
|
||||
|
||||
m = reDefBool.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.cfgValues[t[0]] = True
|
||||
elif ln.lstrip().startswith("#define"):
|
||||
self.parseDefineValue(ln)
|
||||
|
||||
else:
|
||||
m = reDefTS.search(ln)
|
||||
|
|
@ -359,7 +318,7 @@ class BoardPanel(wx.Panel):
|
|||
s = self.parseSensor(t[0])
|
||||
if s:
|
||||
self.sensors.append(s)
|
||||
continue
|
||||
continue
|
||||
|
||||
m = reDefHT.search(ln)
|
||||
if m:
|
||||
|
|
@ -368,12 +327,12 @@ class BoardPanel(wx.Panel):
|
|||
s = self.parseHeater(t[0])
|
||||
if s:
|
||||
self.heaters.append(s)
|
||||
continue
|
||||
continue
|
||||
|
||||
for k in range(len(self.sensors)):
|
||||
tn = self.sensors[k][0].upper()
|
||||
if tn in tempTables.keys():
|
||||
self.sensors[k][3] = tempTables[tn]
|
||||
if tn in self.tempTables.keys():
|
||||
self.sensors[k][3] = self.tempTables[tn]
|
||||
else:
|
||||
self.sensors[k][3] = None
|
||||
|
||||
|
|
@ -396,7 +355,82 @@ class BoardPanel(wx.Panel):
|
|||
self.pgSensors.setSensors(self.sensors)
|
||||
self.pgHeaters.setHeaters(self.heaters)
|
||||
|
||||
return True
|
||||
return True, None
|
||||
|
||||
def parseDefineName(self, ln):
|
||||
m = reDefBool.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.cfgNames.append(t[0])
|
||||
|
||||
def parseDefineValue(self, ln):
|
||||
m = reDefQS.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
m = reDefQSm.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
tt = re.findall(reDefQSm2, t[1])
|
||||
if len(tt) == 1:
|
||||
self.cfgValues[t[0]] = tt[0]
|
||||
return
|
||||
elif len(tt) > 1:
|
||||
self.cfgValues[t[0]] = tt
|
||||
return
|
||||
|
||||
m = reDefine.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
self.cfgValues[t[0]] = t[1]
|
||||
return
|
||||
|
||||
m = reDefBool.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.cfgValues[t[0]] = True
|
||||
return
|
||||
|
||||
def parseCandidateValues(self, ln):
|
||||
m = reCandThermPins.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.candThermPins.append(t[0])
|
||||
return
|
||||
|
||||
m = reCandHeatPins.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.candHeatPins.append(t[0])
|
||||
return
|
||||
|
||||
m = reCandProcessors.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.candProcessors.append(t[0])
|
||||
return
|
||||
|
||||
m = reCandCPUClocks.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.candClocks.append(t[0])
|
||||
return
|
||||
|
||||
m = reDefTT.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
s = self.parseTempTable(t[1])
|
||||
if s:
|
||||
self.tempTables[t[0]] = s
|
||||
return
|
||||
|
||||
def parseSensor(self, s):
|
||||
m = reSensor.search(s)
|
||||
|
|
@ -489,7 +523,6 @@ class BoardPanel(wx.Panel):
|
|||
self.configFile = path
|
||||
|
||||
values = {}
|
||||
labelFound = []
|
||||
|
||||
for pg in self.pages:
|
||||
v1 = pg.getValues()
|
||||
|
|
@ -557,90 +590,26 @@ class BoardPanel(wx.Panel):
|
|||
skipToHeaterEnd = False
|
||||
continue
|
||||
|
||||
m = reDefineBL.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
if t[0] in values.keys() and values[t[0]] != "":
|
||||
fp.write(defineValueFormat % (t[0], values[t[0]]))
|
||||
self.cfgValues[t[0]] = values[t[0]]
|
||||
labelFound.append(t[0])
|
||||
elif t[0] in values.keys():
|
||||
fp.write("//" + ln)
|
||||
if t[0] in self.cfgValues.keys():
|
||||
del self.cfgValues[t[0]]
|
||||
labelFound.append(t[0])
|
||||
else:
|
||||
fp.write(ln)
|
||||
continue
|
||||
|
||||
m = reDefBoolBL.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
if t[0] in values.keys() and values[t[0]]:
|
||||
fp.write(defineBoolFormat % t[0])
|
||||
self.cfgValues[t[0]] = True
|
||||
labelFound.append(t[0])
|
||||
elif t[0] in values.keys():
|
||||
fp.write("//" + ln)
|
||||
if t[0] in self.cfgValues.keys():
|
||||
del self.cfgValues[t[0]]
|
||||
labelFound.append(t[0])
|
||||
if t[0] in values.keys():
|
||||
v = values[t[0]]
|
||||
self.cfgValues[t[0]] = v
|
||||
if v == "" or v == False:
|
||||
fp.write("//" + ln)
|
||||
elif v == True:
|
||||
fp.write(ln)
|
||||
else:
|
||||
fp.write(defineValueFormat % (t[0], v))
|
||||
else:
|
||||
fp.write(ln)
|
||||
continue
|
||||
|
||||
m = reCommDefBL.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
if t[0] in values.keys() and values[t[0]] != "":
|
||||
fp.write(defineValueFormat % (t[0], values[t[0]]))
|
||||
self.cfgValues[t[0]] = values[t[0]]
|
||||
labelFound.append(t[0])
|
||||
elif t[0] in values.keys():
|
||||
fp.write(ln)
|
||||
labelFound.append(t[0])
|
||||
else:
|
||||
fp.write(ln)
|
||||
continue
|
||||
|
||||
m = reCommDefBoolBL.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
if t[0] in values.keys() and values[t[0]]:
|
||||
fp.write(defineBoolFormat % t[0])
|
||||
self.cfgValues[t[0]] = True
|
||||
labelFound.append(t[0])
|
||||
elif t[0] in values.keys():
|
||||
fp.write(ln)
|
||||
labelFound.append(t[0])
|
||||
else:
|
||||
fp.write(ln)
|
||||
continue
|
||||
|
||||
fp.write(ln)
|
||||
|
||||
for k in labelFound:
|
||||
del values[k]
|
||||
|
||||
newLabels = ""
|
||||
for k in values.keys():
|
||||
if newLabels == "":
|
||||
newLabels = k
|
||||
else:
|
||||
newLabels += ", " + k
|
||||
self.addNewDefine(fp, k, values[k])
|
||||
|
||||
if newLabels != "":
|
||||
dlg = wx.MessageDialog(self, "New defines added to board config:\n" +
|
||||
newLabels, "New defines",
|
||||
wx.OK + wx.ICON_INFORMATION)
|
||||
dlg.ShowModal()
|
||||
dlg.Destroy()
|
||||
|
||||
fp.close()
|
||||
return self.generateTempTables()
|
||||
|
||||
|
|
@ -653,17 +622,3 @@ class BoardPanel(wx.Panel):
|
|||
return False
|
||||
|
||||
return True
|
||||
|
||||
def addNewDefine(self, fp, key, val):
|
||||
fp.write("\n")
|
||||
fp.write("/** \\def %s\n" % key)
|
||||
fp.write(" Add help text here.\n")
|
||||
fp.write("*/\n")
|
||||
if val == True:
|
||||
fp.write(defineBoolFormat % key)
|
||||
elif val == False:
|
||||
fp.write("//#define %s\n" % key)
|
||||
elif val == "":
|
||||
fp.write("//#define %s\n" % key)
|
||||
else:
|
||||
fp.write(defineValueFormat % (key, val))
|
||||
|
|
|
|||
|
|
@ -29,6 +29,7 @@ class PrinterPanel(wx.Panel):
|
|||
self.cfgValues = {}
|
||||
self.heaters = []
|
||||
self.dir = os.path.join(self.settings.folder, "config")
|
||||
self.cfgDir = os.path.join(self.settings.folder, "config")
|
||||
|
||||
self.SetBackgroundColour(self.deco.getBackgroundColour())
|
||||
self.Bind(wx.EVT_PAINT, self.deco.onPaintBackground)
|
||||
|
|
@ -171,20 +172,26 @@ class PrinterPanel(wx.Panel):
|
|||
return
|
||||
|
||||
self.dir = os.path.dirname(path)
|
||||
rc = self.loadConfigFile(path)
|
||||
rc, efn = self.loadConfigFile(path)
|
||||
|
||||
if not rc:
|
||||
dlg = wx.MessageDialog(self, "Unable to process file %s." % path,
|
||||
dlg = wx.MessageDialog(self, "Unable to process file %s." % efn,
|
||||
"File error", wx.OK + wx.ICON_ERROR)
|
||||
dlg.ShowModal()
|
||||
dlg.Destroy()
|
||||
return
|
||||
|
||||
def loadConfigFile(self, fn):
|
||||
cfgFn = os.path.join(self.cfgDir, "printer.metadata")
|
||||
try:
|
||||
self.cfgBuffer = list(open(fn))
|
||||
self.cfgBuffer = list(open(cfgFn))
|
||||
except:
|
||||
return False
|
||||
return False, cfgFn
|
||||
|
||||
try:
|
||||
self.userBuffer = list(open(fn))
|
||||
except:
|
||||
return False, fn
|
||||
|
||||
self.configFile = fn
|
||||
|
||||
|
|
@ -194,6 +201,7 @@ class PrinterPanel(wx.Panel):
|
|||
helpKey = None
|
||||
|
||||
self.cfgValues = {}
|
||||
self.cfgNames = []
|
||||
self.helpText = {}
|
||||
|
||||
prevLines = ""
|
||||
|
|
@ -237,34 +245,22 @@ class PrinterPanel(wx.Panel):
|
|||
if ln.lstrip().startswith("//"):
|
||||
continue
|
||||
|
||||
if ln.lstrip().startswith("#define"):
|
||||
m = reDefQS.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
m = reDefQSm.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
tt = re.findall(reDefQSm2, t[1])
|
||||
if len(tt) == 1:
|
||||
self.cfgValues[t[0]] = tt[0]
|
||||
continue
|
||||
elif len(tt) > 1:
|
||||
self.cfgValues[t[0]] = tt
|
||||
continue
|
||||
self.parseDefineName(ln)
|
||||
|
||||
m = reDefine.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
self.cfgValues[t[0]] = t[1]
|
||||
continue
|
||||
prevLines = ""
|
||||
for ln in self.userBuffer:
|
||||
if ln.rstrip().endswith("\\"):
|
||||
prevLines += ln.rstrip()[:-1]
|
||||
continue
|
||||
|
||||
m = reDefBool.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.cfgValues[t[0]] = True
|
||||
if prevLines != "":
|
||||
ln = prevLines + ln
|
||||
prevLines = ""
|
||||
|
||||
if ln.lstrip().startswith("//"):
|
||||
continue
|
||||
|
||||
self.parseDefineValue(ln)
|
||||
|
||||
if os.path.basename(fn) in protectedFiles:
|
||||
self.parent.enableSavePrinter(False, True)
|
||||
|
|
@ -284,7 +280,45 @@ class PrinterPanel(wx.Panel):
|
|||
else:
|
||||
self.pgMiscellaneous.setOriginalHeater(None)
|
||||
|
||||
return True
|
||||
return True, None
|
||||
|
||||
def parseDefineName(self, ln):
|
||||
m = reDefBool.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.cfgNames.append(t[0])
|
||||
|
||||
def parseDefineValue(self, ln):
|
||||
if ln.lstrip().startswith("#define"):
|
||||
m = reDefQS.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
m = reDefQSm.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
tt = re.findall(reDefQSm2, t[1])
|
||||
if len(tt) == 1:
|
||||
self.cfgValues[t[0]] = tt[0]
|
||||
return
|
||||
elif len(tt) > 1:
|
||||
self.cfgValues[t[0]] = tt
|
||||
return
|
||||
|
||||
m = reDefine.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
self.cfgValues[t[0]] = t[1]
|
||||
return
|
||||
|
||||
m = reDefBool.search(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
self.cfgValues[t[0]] = True
|
||||
return
|
||||
|
||||
def onSaveConfig(self, evt):
|
||||
path = self.configFile
|
||||
|
|
@ -348,7 +382,6 @@ class PrinterPanel(wx.Panel):
|
|||
self.configFile = path
|
||||
|
||||
values = {}
|
||||
labelFound = []
|
||||
|
||||
for pg in self.pages:
|
||||
v1 = pg.getValues()
|
||||
|
|
@ -356,104 +389,25 @@ class PrinterPanel(wx.Panel):
|
|||
values[k] = v1[k]
|
||||
|
||||
for ln in self.cfgBuffer:
|
||||
m = reDefineBL.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
if t[0] in values.keys() and values[t[0]] != "":
|
||||
fp.write(defineValueFormat % (t[0], values[t[0]]))
|
||||
self.cfgValues[t[0]] = values[t[0]]
|
||||
labelFound.append(t[0])
|
||||
elif t[0] in values.keys():
|
||||
fp.write("//" + ln)
|
||||
if t[0] in self.cfgValues.keys():
|
||||
del self.cfgValues[t[0]]
|
||||
labelFound.append(t[0])
|
||||
else:
|
||||
fp.write(ln)
|
||||
continue
|
||||
|
||||
m = reDefBoolBL.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
if t[0] in values.keys() and values[t[0]]:
|
||||
fp.write(defineBoolFormat % t[0])
|
||||
self.cfgValues[t[0]] = True
|
||||
labelFound.append(t[0])
|
||||
elif t[0] in values.keys():
|
||||
fp.write("//" + ln)
|
||||
if t[0] in self.cfgValues.keys():
|
||||
del self.cfgValues[t[0]]
|
||||
labelFound.append(t[0])
|
||||
else:
|
||||
fp.write(ln)
|
||||
continue
|
||||
|
||||
m = reCommDefBL.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 2:
|
||||
if t[0] in values.keys() and values[t[0]] != "":
|
||||
fp.write(defineValueFormat % (t[0], values[t[0]]))
|
||||
self.cfgValues[t[0]] = values[t[0]]
|
||||
labelFound.append(t[0])
|
||||
elif t[0] in values.keys():
|
||||
fp.write(ln)
|
||||
labelFound.append(t[0])
|
||||
else:
|
||||
fp.write(ln)
|
||||
continue
|
||||
|
||||
m = reCommDefBoolBL.match(ln)
|
||||
if m:
|
||||
t = m.groups()
|
||||
if len(t) == 1:
|
||||
if t[0] in values.keys() and values[t[0]]:
|
||||
fp.write(defineBoolFormat % t[0])
|
||||
self.cfgValues[t[0]] = True
|
||||
labelFound.append(t[0])
|
||||
elif t[0] in values.keys():
|
||||
fp.write(ln)
|
||||
labelFound.append(t[0])
|
||||
if t[0] in values.keys():
|
||||
v = values[t[0]]
|
||||
self.cfgValues[t[0]] = v
|
||||
if v == "" or v == False:
|
||||
fp.write("//" + ln)
|
||||
elif v == True:
|
||||
fp.write(ln)
|
||||
else:
|
||||
fp.write(defineValueFormat % (t[0], v))
|
||||
else:
|
||||
fp.write(ln)
|
||||
continue
|
||||
|
||||
fp.write(ln)
|
||||
|
||||
for k in labelFound:
|
||||
del values[k]
|
||||
|
||||
newLabels = ""
|
||||
for k in values.keys():
|
||||
if newLabels == "":
|
||||
newLabels = k
|
||||
else:
|
||||
newLabels += ", " + k
|
||||
self.addNewDefine(fp, k, values[k])
|
||||
|
||||
if newLabels != "":
|
||||
dlg = wx.MessageDialog(self, "New defines added to printer config:\n" +
|
||||
newLabels, "New defines",
|
||||
wx.OK + wx.ICON_INFORMATION)
|
||||
dlg.ShowModal()
|
||||
dlg.Destroy()
|
||||
|
||||
fp.close()
|
||||
|
||||
return True
|
||||
|
||||
def addNewDefine(self, fp, key, val):
|
||||
fp.write("\n")
|
||||
fp.write("/** \\def %s\n" % key)
|
||||
fp.write(" Add help text here.\n")
|
||||
fp.write("*/\n")
|
||||
if val == True:
|
||||
fp.write(defineBoolFormat % key)
|
||||
elif val == False:
|
||||
fp.write("//#define %s\n" % key)
|
||||
elif val == "":
|
||||
fp.write("//#define %s\n" % key)
|
||||
else:
|
||||
fp.write(defineValueFormat % (key, val))
|
||||
|
|
|
|||
Loading…
Reference in New Issue