Minor optimizations to planner code
- Prefetch values used more than once
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13fbf42d95
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@ -315,9 +315,8 @@ void planner_recalculate_trapezoids() {
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// Recalculate if current block entry or exit junction speed has changed.
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// Recalculate if current block entry or exit junction speed has changed.
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if (current->recalculate_flag || next->recalculate_flag) {
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if (current->recalculate_flag || next->recalculate_flag) {
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// NOTE: Entry and exit factors always > 0 by all previous logic operations.
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// NOTE: Entry and exit factors always > 0 by all previous logic operations.
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calculate_trapezoid_for_block(current,
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float nom = current->nominal_speed;
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current->entry_speed / current->nominal_speed,
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calculate_trapezoid_for_block(current, current->entry_speed / nom, next->entry_speed / nom);
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next->entry_speed / current->nominal_speed);
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current->recalculate_flag = false; // Reset current only to ensure next trapezoid is computed
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current->recalculate_flag = false; // Reset current only to ensure next trapezoid is computed
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}
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}
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}
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}
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@ -325,8 +324,8 @@ void planner_recalculate_trapezoids() {
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}
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}
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// Last/newest block in buffer. Exit speed is set with MINIMUM_PLANNER_SPEED. Always recalculated.
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// Last/newest block in buffer. Exit speed is set with MINIMUM_PLANNER_SPEED. Always recalculated.
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if (next) {
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if (next) {
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calculate_trapezoid_for_block(next, next->entry_speed/next->nominal_speed,
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float nom = next->nominal_speed;
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MINIMUM_PLANNER_SPEED/next->nominal_speed);
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calculate_trapezoid_for_block(next, next->entry_speed / nom, MINIMUM_PLANNER_SPEED / nom);
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next->recalculate_flag = false;
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next->recalculate_flag = false;
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}
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}
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}
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}
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@ -373,11 +372,9 @@ void plan_init() {
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uint8_t block_index = block_buffer_tail;
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uint8_t block_index = block_buffer_tail;
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while (block_index != block_buffer_head) {
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while (block_index != block_buffer_head) {
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if ((block_buffer[block_index].steps[X_AXIS] != 0) ||
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block_t *block = &block_buffer[block_index];
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(block_buffer[block_index].steps[Y_AXIS] != 0) ||
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if (block->steps[X_AXIS] || block->steps[Y_AXIS] || block->steps[Z_AXIS]) {
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(block_buffer[block_index].steps[Z_AXIS] != 0)) {
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float se = (float)block->steps[E_AXIS] / block->step_event_count * block->nominal_speed; // mm/sec;
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float se=(float(block_buffer[block_index].steps[E_AXIS])/float(block_buffer[block_index].step_event_count))*block_buffer[block_index].nominal_speed;
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//se; mm/sec;
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if (se > high) high = se;
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if (se > high) high = se;
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}
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}
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block_index = next_block_index(block_index);
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block_index = next_block_index(block_index);
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@ -399,14 +396,16 @@ void check_axes_activity() {
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unsigned char tail_valve_pressure = ValvePressure,
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unsigned char tail_valve_pressure = ValvePressure,
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tail_e_to_p_pressure = EtoPPressure;
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tail_e_to_p_pressure = EtoPPressure;
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#endif
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#endif
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block_t *block;
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block_t *block;
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if (blocks_queued()) {
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if (blocks_queued()) {
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uint8_t block_index = block_buffer_tail;
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uint8_t block_index = block_buffer_tail;
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tail_fan_speed = block_buffer[block_index].fan_speed;
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tail_fan_speed = block_buffer[block_index].fan_speed;
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#ifdef BARICUDA
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#ifdef BARICUDA
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tail_valve_pressure = block_buffer[block_index].valve_pressure;
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block = &block_buffer[block_index];
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tail_e_to_p_pressure = block_buffer[block_index].e_to_p_pressure;
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tail_valve_pressure = block->valve_pressure;
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tail_e_to_p_pressure = block->e_to_p_pressure;
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#endif
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#endif
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while (block_index != block_buffer_head) {
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while (block_index != block_buffer_head) {
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block = &block_buffer[block_index];
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block = &block_buffer[block_index];
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