More 8 extruder defines
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@ -1957,6 +1957,18 @@
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#define E5_MICROSTEPS 16
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#define E5_MICROSTEPS 16
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#endif
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#endif
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#if AXIS_DRIVER_TYPE_E6(TMC26X)
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#define E6_MAX_CURRENT 1000
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#define E6_SENSE_RESISTOR 91
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#define E6_MICROSTEPS 16
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#endif
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#if AXIS_DRIVER_TYPE_E7(TMC26X)
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#define E7_MAX_CURRENT 1000
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#define E7_SENSE_RESISTOR 91
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#define E7_MICROSTEPS 16
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#endif
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#endif // TMC26X
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#endif // TMC26X
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// @section tmc_smart
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// @section tmc_smart
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@ -2140,6 +2140,10 @@ static_assert(Y_MAX_LENGTH >= Y_BED_SIZE, "Movement bounds (Y_MIN_POS, Y_MAX_POS
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INVALID_TMC_ADDRESS(E4);
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INVALID_TMC_ADDRESS(E4);
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#elif AXIS_DRIVER_TYPE_E5(TMC2209)
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#elif AXIS_DRIVER_TYPE_E5(TMC2209)
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INVALID_TMC_ADDRESS(E5);
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INVALID_TMC_ADDRESS(E5);
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#elif AXIS_DRIVER_TYPE_E6(TMC2209)
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INVALID_TMC_ADDRESS(E6);
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#elif AXIS_DRIVER_TYPE_E7(TMC2209)
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INVALID_TMC_ADDRESS(E7);
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#endif
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#endif
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#undef INVALID_TMC_ADDRESS
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#undef INVALID_TMC_ADDRESS
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@ -78,6 +78,12 @@
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#if AXIS_DRIVER_TYPE_E5(TMC26X)
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#if AXIS_DRIVER_TYPE_E5(TMC26X)
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_TMC26X_DEFINE(E5);
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_TMC26X_DEFINE(E5);
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#endif
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#endif
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#if AXIS_DRIVER_TYPE_E6(TMC26X)
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_TMC26X_DEFINE(E6);
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#endif
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#if AXIS_DRIVER_TYPE_E7(TMC26X)
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_TMC26X_DEFINE(E7);
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#endif
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#define _TMC26X_INIT(A) do{ \
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#define _TMC26X_INIT(A) do{ \
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stepper##A.setMicrosteps(A##_MICROSTEPS); \
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stepper##A.setMicrosteps(A##_MICROSTEPS); \
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@ -127,6 +133,12 @@ void tmc26x_init_to_defaults() {
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#if AXIS_DRIVER_TYPE_E5(TMC26X)
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#if AXIS_DRIVER_TYPE_E5(TMC26X)
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_TMC26X_INIT(E5);
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_TMC26X_INIT(E5);
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#endif
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#endif
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#if AXIS_DRIVER_TYPE_E6(TMC26X)
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_TMC26X_INIT(E6);
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#endif
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#if AXIS_DRIVER_TYPE_E7(TMC26X)
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_TMC26X_INIT(E7);
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#endif
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}
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}
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#endif // TMC26X
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#endif // TMC26X
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@ -49,7 +49,7 @@
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typedef enum : int8_t {
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typedef enum : int8_t {
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INDEX_NONE = -5,
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INDEX_NONE = -5,
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H_PROBE, H_REDUNDANT, H_CHAMBER, H_BED,
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H_PROBE, H_REDUNDANT, H_CHAMBER, H_BED,
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H_E0, H_E1, H_E2, H_E3, H_E4, H_E5
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H_E0, H_E1, H_E2, H_E3, H_E4, H_E5, H_E6, H_E7
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} heater_ind_t;
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} heater_ind_t;
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// PID storage
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// PID storage
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