mimxrt10xx: Fix neopixel_write
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@ -32,7 +32,6 @@
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#include "py/mperrno.h"
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#include "py/runtime.h"
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#include "common-hal/microcontroller/Pin.h"
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#include "fsl_gpio.h"
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uint64_t next_start_tick_ms = 0;
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uint32_t next_start_tick_us = 1000;
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@ -45,7 +44,7 @@ uint32_t next_start_tick_us = 1000;
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#pragma GCC push_options
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#pragma GCC optimize ("Os")
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void common_hal_neopixel_write (const digitalio_digitalinout_obj_t* digitalinout, uint8_t *pixels,
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void PLACE_IN_ITCM(common_hal_neopixel_write)(const digitalio_digitalinout_obj_t* digitalinout, uint8_t *pixels,
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uint32_t numBytes) {
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uint8_t *p = pixels, *end = p + numBytes, pix = *p++, mask = 0x80;
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uint32_t start = 0;
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@ -54,14 +53,10 @@ void common_hal_neopixel_write (const digitalio_digitalinout_obj_t* digitalinout
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//assumes 800_000Hz frequency
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//Theoretical values here are 800_000 -> 1.25us, 2500000->0.4us, 1250000->0.8us
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//TODO: try to get dynamic weighting working again
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#ifdef MIMXRT1011_SERIES
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uint32_t sys_freq = CLOCK_GetCoreFreq();
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#else
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uint32_t sys_freq = CLOCK_GetAhbFreq();
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#endif
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uint32_t interval = sys_freq/MAGIC_800_INT;
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uint32_t t0 = (sys_freq/MAGIC_800_T0H);
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uint32_t t1 = (sys_freq/MAGIC_800_T1H);
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const uint32_t sys_freq = SystemCoreClock;
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const uint32_t interval = (sys_freq / MAGIC_800_INT);
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const uint32_t t0 = (sys_freq / MAGIC_800_T0H);
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const uint32_t t1 = (sys_freq / MAGIC_800_T1H);
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// This must be called while interrupts are on in case we're waiting for a
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// future ms tick.
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@ -79,9 +74,9 @@ void common_hal_neopixel_write (const digitalio_digitalinout_obj_t* digitalinout
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for(;;) {
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cyc = (pix & mask) ? t1 : t0;
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start = DWT->CYCCNT;
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GPIO_PinWrite(gpio, pin, 1);
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gpio->DR |= (1U << pin);
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while((DWT->CYCCNT - start) < cyc);
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GPIO_PinWrite(gpio, pin, 0);
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gpio->DR &= ~(1U << pin);
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while((DWT->CYCCNT - start) < interval);
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if(!(mask >>= 1)) {
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if(p >= end) break;
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