Merge pull request #5110 from thinkyhead/rc_z2_min_allowed
Support Z2 min in M119 report
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commit
43df9ace4e
@ -201,6 +201,10 @@ void Endstops::M119() {
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SERIAL_PROTOCOLPGM(MSG_Z_MIN);
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SERIAL_PROTOCOLLN(((READ(Z_MIN_PIN)^Z_MIN_ENDSTOP_INVERTING) ? MSG_ENDSTOP_HIT : MSG_ENDSTOP_OPEN));
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#endif
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#if HAS_Z2_MIN
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SERIAL_PROTOCOLPGM(MSG_Z2_MIN);
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SERIAL_PROTOCOLLN(((READ(Z2_MIN_PIN)^Z2_MIN_ENDSTOP_INVERTING) ? MSG_ENDSTOP_HIT : MSG_ENDSTOP_OPEN));
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#endif
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#if HAS_Z_MAX
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SERIAL_PROTOCOLPGM(MSG_Z_MAX);
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SERIAL_PROTOCOLLN(((READ(Z_MAX_PIN)^Z_MAX_ENDSTOP_INVERTING) ? MSG_ENDSTOP_HIT : MSG_ENDSTOP_OPEN));
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@ -218,7 +222,7 @@ void Endstops::M119() {
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#if ENABLED(Z_DUAL_ENDSTOPS)
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// Pass the result of the endstop test
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void Endstops::test_dual_z_endstops(EndstopEnum es1, EndstopEnum es2) {
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void Endstops::test_dual_z_endstops(const EndstopEnum es1, const EndstopEnum es2) {
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byte z_test = TEST_ENDSTOP(es1) | (TEST_ENDSTOP(es2) << 1); // bit 0 for Z, bit 1 for Z2
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if (z_test && stepper.current_block->steps[Z_AXIS] > 0) {
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SBI(endstop_hit_bits, Z_MIN);
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@ -86,7 +86,7 @@ class Endstops {
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private:
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#if ENABLED(Z_DUAL_ENDSTOPS)
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static void test_dual_z_endstops(EndstopEnum es1, EndstopEnum es2);
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static void test_dual_z_endstops(const EndstopEnum es1, const EndstopEnum es2);
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#endif
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};
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@ -145,6 +145,7 @@
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#define MSG_Y_MAX "y_max: "
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#define MSG_Z_MIN "z_min: "
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#define MSG_Z_MAX "z_max: "
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#define MSG_Z2_MIN "z2_min: "
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#define MSG_Z2_MAX "z2_max: "
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#define MSG_Z_PROBE "z_probe: "
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#define MSG_ERR_MATERIAL_INDEX "M145 S<index> out of range (0-1)"
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@ -162,14 +162,14 @@ volatile long Stepper::endstops_trigsteps[XYZ];
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#if ENABLED(Z_DUAL_ENDSTOPS)
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#define Z_APPLY_STEP(v,Q) \
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if (performing_homing) { \
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if (Z_HOME_DIR > 0) {\
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if (!(TEST(endstops.old_endstop_bits, Z_MAX) && (count_direction[Z_AXIS] > 0)) && !locked_z_motor) Z_STEP_WRITE(v); \
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if (!(TEST(endstops.old_endstop_bits, Z2_MAX) && (count_direction[Z_AXIS] > 0)) && !locked_z2_motor) Z2_STEP_WRITE(v); \
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} \
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else { \
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if (Z_HOME_DIR < 0) { \
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if (!(TEST(endstops.old_endstop_bits, Z_MIN) && (count_direction[Z_AXIS] < 0)) && !locked_z_motor) Z_STEP_WRITE(v); \
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if (!(TEST(endstops.old_endstop_bits, Z2_MIN) && (count_direction[Z_AXIS] < 0)) && !locked_z2_motor) Z2_STEP_WRITE(v); \
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} \
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else { \
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if (!(TEST(endstops.old_endstop_bits, Z_MAX) && (count_direction[Z_AXIS] > 0)) && !locked_z_motor) Z_STEP_WRITE(v); \
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if (!(TEST(endstops.old_endstop_bits, Z2_MAX) && (count_direction[Z_AXIS] > 0)) && !locked_z2_motor) Z2_STEP_WRITE(v); \
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} \
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} \
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else { \
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Z_STEP_WRITE(v); \
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