Anvil v1.0.0 -- Arduino build tool with HAL and test scaffolding
Single-binary CLI that scaffolds testable Arduino projects, compiles, uploads, and monitors serial output. Templates embed a hardware abstraction layer, Google Mock infrastructure, and CMake-based host tests so application logic can be verified without hardware. Commands: new, doctor, setup, devices, build, upload, monitor 39 Rust tests (21 unit, 18 integration) Cross-platform: Linux and Windows
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templates/basic/lib/hal/hal_arduino.h
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93
templates/basic/lib/hal/hal_arduino.h
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#ifndef HAL_ARDUINO_H
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#define HAL_ARDUINO_H
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/*
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* Real hardware implementation of the HAL.
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*
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* This file includes Arduino.h and Wire.h, so it can only be compiled
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* by avr-gcc (via arduino-cli). It is included by .ino files only.
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*
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* Every method is a trivial passthrough to the real Arduino function.
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* The point is not to add logic here -- it is to keep Arduino.h out
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* of your application code so that code can compile on the host.
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*/
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#include <Arduino.h>
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#include <Wire.h>
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#include <hal.h>
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class ArduinoHal : public Hal {
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public:
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// -- GPIO ---------------------------------------------------------------
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void pinMode(uint8_t pin, uint8_t mode) override {
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::pinMode(pin, mode);
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}
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void digitalWrite(uint8_t pin, uint8_t value) override {
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::digitalWrite(pin, value);
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}
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uint8_t digitalRead(uint8_t pin) override {
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return ::digitalRead(pin);
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}
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int analogRead(uint8_t pin) override {
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return ::analogRead(pin);
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}
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void analogWrite(uint8_t pin, int value) override {
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::analogWrite(pin, value);
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}
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// -- Timing -------------------------------------------------------------
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unsigned long millis() override {
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return ::millis();
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}
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unsigned long micros() override {
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return ::micros();
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}
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void delay(unsigned long ms) override {
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::delay(ms);
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}
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void delayMicroseconds(unsigned long us) override {
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::delayMicroseconds(us);
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}
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// -- Serial -------------------------------------------------------------
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void serialBegin(unsigned long baud) override {
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Serial.begin(baud);
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}
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void serialPrint(const char* msg) override {
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Serial.print(msg);
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}
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void serialPrintln(const char* msg) override {
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Serial.println(msg);
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}
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int serialAvailable() override {
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return Serial.available();
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}
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int serialRead() override {
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return Serial.read();
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}
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// -- I2C ----------------------------------------------------------------
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void i2cBegin() override {
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Wire.begin();
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}
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void i2cBeginTransmission(uint8_t addr) override {
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Wire.beginTransmission(addr);
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}
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size_t i2cWrite(uint8_t data) override {
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return Wire.write(data);
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}
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uint8_t i2cEndTransmission() override {
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return Wire.endTransmission();
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}
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uint8_t i2cRequestFrom(uint8_t addr, uint8_t count) override {
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return Wire.requestFrom(addr, count);
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}
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int i2cAvailable() override {
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return Wire.available();
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}
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int i2cRead() override {
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return Wire.read();
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}
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};
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#endif // HAL_ARDUINO_H
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