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Optimizing the timer0 overflow handler (for millis()), based on work by WestFW and help from mikalhart. Increasing precision of math constants.
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@ -24,32 +24,53 @@
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#include "wiring_private.h"
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// the prescaler is set so that timer0 ticks every 64 clock cycles, and the
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// the overflow handler is called every 256 ticks.
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#define MICROSECONDS_PER_TIMER0_OVERFLOW (clockCyclesToMicroseconds(64 * 256))
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// the whole number of milliseconds per timer0 overflow
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#define MILLIS_INC (MICROSECONDS_PER_TIMER0_OVERFLOW / 1000)
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// the fractional number of milliseconds per timer0 overflow. we shift right
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// by three to fit these numbers into a byte. (for the clock speeds we care
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// about - 8 and 16 MHz - this doesn't lose precision.)
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#define FRACT_INC ((MICROSECONDS_PER_TIMER0_OVERFLOW % 1000) >> 3)
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#define FRACT_MAX (1000 >> 3)
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volatile unsigned long timer0_overflow_count = 0;
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volatile unsigned long timer0_clock_cycles = 0;
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volatile unsigned long timer0_millis = 0;
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static unsigned char timer0_fract = 0;
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SIGNAL(TIMER0_OVF_vect)
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{
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timer0_overflow_count++;
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// timer 0 prescale factor is 64 and the timer overflows at 256
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timer0_clock_cycles += 64UL * 256UL;
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while (timer0_clock_cycles > clockCyclesPerMicrosecond() * 1000UL) {
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timer0_clock_cycles -= clockCyclesPerMicrosecond() * 1000UL;
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timer0_millis++;
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// copy these to local variables so they can be stored in registers
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// (volatile variables must be read from memory on every access)
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unsigned long m = timer0_millis;
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unsigned char f = timer0_fract;
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m += MILLIS_INC;
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f += FRACT_INC;
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if (f >= FRACT_MAX) {
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f -= FRACT_MAX;
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m += 1;
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}
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timer0_fract = f;
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timer0_millis = m;
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timer0_overflow_count++;
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}
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unsigned long millis()
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{
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unsigned long m;
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uint8_t oldSREG = SREG;
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// disable interrupts while we read timer0_millis or we might get an
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// inconsistent value (e.g. in the middle of the timer0_millis++)
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// inconsistent value (e.g. in the middle of a write to timer0_millis)
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cli();
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m = timer0_millis;
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SREG = oldSREG;
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return m;
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}
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@ -41,11 +41,11 @@ extern "C"{
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#define true 0x1
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#define false 0x0
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#define PI 3.14159265
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#define HALF_PI 1.57079
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#define TWO_PI 6.283185
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#define DEG_TO_RAD 0.01745329
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#define RAD_TO_DEG 57.2957786
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#define PI 3.1415926535897932384626433832795
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#define HALF_PI 1.5707963267948966192313216916398
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#define TWO_PI 6.283185307179586476925286766559
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#define DEG_TO_RAD 0.017453292519943295769236907684886
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#define RAD_TO_DEG 57.295779513082320876798154814105
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#define SERIAL 0x0
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#define DISPLAY 0x1
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