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https://github.com/esp8266/Arduino.git
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Initial batch of mocks for host side testing
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tests/host/common/Arduino.h
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271
tests/host/common/Arduino.h
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//
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// Arduino.hpp
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// esp8266-host-tests
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//
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// Created by Ivan Grokhotkov on 02/03/16.
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// Copyright © 2016 esp8266.com. All rights reserved.
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//
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#ifndef Arduino_h
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#define Arduino_h
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <stdlib.h>
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#include <stdint.h>
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#include <stdbool.h>
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#include <stddef.h>
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#include <stdarg.h>
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#include <stdio.h>
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#include <string.h>
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#include <math.h>
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#include "binary.h"
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#include "twi.h"
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#include "core_esp8266_features.h"
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#define HIGH 0x1
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#define LOW 0x0
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#define PWMRANGE 1023
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//GPIO FUNCTIONS
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#define INPUT 0x00
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#define INPUT_PULLUP 0x02
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#define INPUT_PULLDOWN_16 0x04 // PULLDOWN only possible for pin16
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#define OUTPUT 0x01
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#define OUTPUT_OPEN_DRAIN 0x03
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#define WAKEUP_PULLUP 0x05
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#define WAKEUP_PULLDOWN 0x07
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#define SPECIAL 0xF8 //defaults to the usable BUSes uart0rx/tx uart1tx and hspi
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#define FUNCTION_0 0x08
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#define FUNCTION_1 0x18
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#define FUNCTION_2 0x28
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#define FUNCTION_3 0x38
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#define FUNCTION_4 0x48
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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 EULER 2.718281828459045235360287471352
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#define SERIAL 0x0
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#define DISPLAY 0x1
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#define LSBFIRST 0
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#define MSBFIRST 1
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//Interrupt Modes
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#define DISABLED 0x00
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#define RISING 0x01
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#define FALLING 0x02
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#define CHANGE 0x03
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#define ONLOW 0x04
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#define ONHIGH 0x05
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#define ONLOW_WE 0x0C
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#define ONHIGH_WE 0x0D
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#define DEFAULT 1
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#define EXTERNAL 0
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//timer dividers
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#define TIM_DIV1 0 //80MHz (80 ticks/us - 104857.588 us max)
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#define TIM_DIV16 1 //5MHz (5 ticks/us - 1677721.4 us max)
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#define TIM_DIV265 3 //312.5Khz (1 tick = 3.2us - 26843542.4 us max)
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//timer int_types
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#define TIM_EDGE 0
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#define TIM_LEVEL 1
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//timer reload values
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#define TIM_SINGLE 0 //on interrupt routine you need to write a new value to start the timer again
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#define TIM_LOOP 1 //on interrupt the counter will start with the same value again
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#define timer1_read() (T1V)
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#define timer1_enabled() ((T1C & (1 << TCTE)) != 0)
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#define timer1_interrupted() ((T1C & (1 << TCIS)) != 0)
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typedef void(*timercallback)(void);
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void timer1_isr_init(void);
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void timer1_enable(uint8_t divider, uint8_t int_type, uint8_t reload);
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void timer1_disable(void);
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void timer1_attachInterrupt(timercallback userFunc);
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void timer1_detachInterrupt(void);
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void timer1_write(uint32_t ticks); //maximum ticks 8388607
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// timer0 is a special CPU timer that has very high resolution but with
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// limited control.
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// it uses CCOUNT (ESP.GetCycleCount()) as the non-resetable timer counter
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// it does not support divide, type, or reload flags
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// it is auto-disabled when the compare value matches CCOUNT
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// it is auto-enabled when the compare value changes
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#define timer0_interrupted() (ETS_INTR_PENDING() & (_BV(ETS_COMPARE0_INUM)))
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#define timer0_read() ((__extension__({uint32_t count;__asm__ __volatile__("esync; rsr %0,ccompare0":"=a" (count));count;})))
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#define timer0_write(count) __asm__ __volatile__("wsr %0,ccompare0; esync"::"a" (count) : "memory")
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void timer0_isr_init(void);
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void timer0_attachInterrupt(timercallback userFunc);
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void timer0_detachInterrupt(void);
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// undefine stdlib's abs if encountered
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#ifdef abs
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#undef abs
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#endif
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#define abs(x) ((x)>0?(x):-(x))
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#define constrain(amt,low,high) ((amt)<(low)?(low):((amt)>(high)?(high):(amt)))
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#define round(x) ((x)>=0?(long)((x)+0.5):(long)((x)-0.5))
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#define radians(deg) ((deg)*DEG_TO_RAD)
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#define degrees(rad) ((rad)*RAD_TO_DEG)
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#define sq(x) ((x)*(x))
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void ets_intr_lock();
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void ets_intr_unlock();
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#ifndef __STRINGIFY
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#define __STRINGIFY(a) #a
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#endif
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// these low level routines provide a replacement for SREG interrupt save that AVR uses
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// but are esp8266 specific. A normal use pattern is like
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//
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//{
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// uint32_t savedPS = xt_rsil(1); // this routine will allow level 2 and above
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// // do work here
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// xt_wsr_ps(savedPS); // restore the state
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//}
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//
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// level (0-15), interrupts of the given level and above will be active
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// level 15 will disable ALL interrupts,
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// level 0 will enable ALL interrupts,
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//
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#define xt_rsil(level) (__extension__({uint32_t state; __asm__ __volatile__("rsil %0," __STRINGIFY(level) : "=a" (state)); state;}))
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#define xt_wsr_ps(state) __asm__ __volatile__("wsr %0,ps; isync" :: "a" (state) : "memory")
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#define interrupts() xt_rsil(0)
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#define noInterrupts() xt_rsil(15)
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#define clockCyclesPerMicrosecond() ( F_CPU / 1000000L )
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#define clockCyclesToMicroseconds(a) ( (a) / clockCyclesPerMicrosecond() )
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#define microsecondsToClockCycles(a) ( (a) * clockCyclesPerMicrosecond() )
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#define lowByte(w) ((uint8_t) ((w) & 0xff))
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#define highByte(w) ((uint8_t) ((w) >> 8))
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#define bitRead(value, bit) (((value) >> (bit)) & 0x01)
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#define bitSet(value, bit) ((value) |= (1UL << (bit)))
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#define bitClear(value, bit) ((value) &= ~(1UL << (bit)))
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#define bitWrite(value, bit, bitvalue) (bitvalue ? bitSet(value, bit) : bitClear(value, bit))
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// avr-libc defines _NOP() since 1.6.2
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#ifndef _NOP
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#define _NOP() do { __asm__ volatile ("nop"); } while (0)
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#endif
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typedef unsigned int word;
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#define bit(b) (1UL << (b))
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#define _BV(b) (1UL << (b))
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typedef uint8_t boolean;
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typedef uint8_t byte;
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void init(void);
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void initVariant(void);
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int atexit(void (*func)()) __attribute__((weak));
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void pinMode(uint8_t pin, uint8_t mode);
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void digitalWrite(uint8_t pin, uint8_t val);
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int digitalRead(uint8_t pin);
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int analogRead(uint8_t pin);
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void analogReference(uint8_t mode);
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void analogWrite(uint8_t pin, int val);
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void analogWriteFreq(uint32_t freq);
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void analogWriteRange(uint32_t range);
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unsigned long millis(void);
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unsigned long micros(void);
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void delay(unsigned long);
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void delayMicroseconds(unsigned int us);
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unsigned long pulseIn(uint8_t pin, uint8_t state, unsigned long timeout);
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unsigned long pulseInLong(uint8_t pin, uint8_t state, unsigned long timeout);
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void shiftOut(uint8_t dataPin, uint8_t clockPin, uint8_t bitOrder, uint8_t val);
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uint8_t shiftIn(uint8_t dataPin, uint8_t clockPin, uint8_t bitOrder);
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void attachInterrupt(uint8_t pin, void (*)(void), int mode);
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void detachInterrupt(uint8_t pin);
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void setup(void);
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void loop(void);
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void yield(void);
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void optimistic_yield(uint32_t interval_us);
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#define digitalPinToPort(pin) (0)
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#define digitalPinToBitMask(pin) (1UL << (pin))
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#define digitalPinToTimer(pin) (0)
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#define portOutputRegister(port) ((volatile uint32_t*) &GPO)
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#define portInputRegister(port) ((volatile uint32_t*) &GPI)
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#define portModeRegister(port) ((volatile uint32_t*) &GPE)
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#define NOT_A_PIN -1
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#define NOT_A_PORT -1
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#define NOT_AN_INTERRUPT -1
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#define NOT_ON_TIMER 0
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#ifdef __cplusplus
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} // extern "C"
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#endif
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#ifdef __cplusplus
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#include "pgmspace.h"
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#include "WCharacter.h"
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#include "WString.h"
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#include "HardwareSerial.h"
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#include "Esp.h"
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#include "Updater.h"
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#include "debug.h"
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#ifndef _GLIBCXX_VECTOR
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// arduino is not compatible with std::vector
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#define min(a,b) ((a)<(b)?(a):(b))
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#define max(a,b) ((a)>(b)?(a):(b))
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#endif
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#define _min(a,b) ((a)<(b)?(a):(b))
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#define _max(a,b) ((a)>(b)?(a):(b))
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uint16_t makeWord(uint16_t w);
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uint16_t makeWord(byte h, byte l);
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#define word(...) makeWord(__VA_ARGS__)
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unsigned long pulseIn(uint8_t pin, uint8_t state, unsigned long timeout = 1000000L);
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unsigned long pulseInLong(uint8_t pin, uint8_t state, unsigned long timeout = 1000000L);
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void tone(uint8_t _pin, unsigned int frequency, unsigned long duration = 0);
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void noTone(uint8_t _pin);
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// WMath prototypes
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long random(long);
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long random(long, long);
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void randomSeed(unsigned long);
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long map(long, long, long, long, long);
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extern "C" void configTime(long timezone, int daylightOffset_sec,
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const char* server1, const char* server2 = nullptr, const char* server3 = nullptr);
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#endif
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#include "pins_arduino.h"
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#endif /* Arduino_h */
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