Reduce Step Smoothing ceiling to 50% CPU usage (#18719)
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@ -2099,10 +2099,10 @@ uint32_t Stepper::block_phase_isr() {
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#if ENABLED(ADAPTIVE_STEP_SMOOTHING)
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uint8_t oversampling = 0; // Assume no axis smoothing (via oversampling)
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// Decide if axis smoothing is possible
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uint32_t max_rate = current_block->nominal_rate; // Get the maximum rate (maximum event speed)
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uint32_t max_rate = current_block->nominal_rate; // Get the step event rate
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while (max_rate < MIN_STEP_ISR_FREQUENCY) { // As long as more ISRs are possible...
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max_rate <<= 1; // Try to double the rate
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if (max_rate >= MAX_STEP_ISR_FREQUENCY_1X) break; // Don't exceed the estimated ISR limit
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if (max_rate < MIN_STEP_ISR_FREQUENCY) // Don't exceed the estimated ISR limit
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++oversampling; // Increase the oversampling (used for left-shift)
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}
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oversampling_factor = oversampling; // For all timer interval calculations
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@ -229,8 +229,10 @@
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#define MAX_STEP_ISR_FREQUENCY_2X ((F_CPU) / ISR_EXECUTION_CYCLES(2))
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#define MAX_STEP_ISR_FREQUENCY_1X ((F_CPU) / ISR_EXECUTION_CYCLES(1))
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// The minimum allowable frequency for step smoothing will be 1/10 of the maximum nominal frequency (in Hz)
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#define MIN_STEP_ISR_FREQUENCY MAX_STEP_ISR_FREQUENCY_1X
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// The minimum step ISR rate used by ADAPTIVE_STEP_SMOOTHING to target 50% CPU usage
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// This does not account for the possibility of multi-stepping.
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// Perhaps DISABLE_MULTI_STEPPING should be required with ADAPTIVE_STEP_SMOOTHING.
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#define MIN_STEP_ISR_FREQUENCY (MAX_STEP_ISR_FREQUENCY_1X / 2)
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//
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// Stepper class definition
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