[esp] Add no std example reading from AHT20. #2

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shaunrd0 wants to merge 5 commits from aht20 into master
11 changed files with 303 additions and 0 deletions

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[build]
target = "xtensa-esp32-espidf"
[target.xtensa-esp32-espidf]
linker = "ldproxy"
runner = "espflash flash --monitor"
rustflags = [ "--cfg", "espidf_time64"]
[unstable]
build-std = ["std", "panic_abort"]
[env]
MCU="esp32"
# Note: this variable is not used by the pio builder (`cargo build --features pio`)
ESP_IDF_VERSION = "v5.3.3"

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name: Continuous Integration
on:
push:
branches:
- main
paths-ignore:
- "**/README.md"
pull_request:
workflow_dispatch:
env:
CARGO_TERM_COLOR: always
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
jobs:
rust-checks:
name: Rust Checks
runs-on: ubuntu-latest
strategy:
fail-fast: false
matrix:
action:
- command: build
args: --release
- command: fmt
args: --all -- --check --color always
- command: clippy
args: --all-targets --all-features --workspace -- -D warnings
steps:
- name: Checkout repository
uses: actions/checkout@v4
- name: Setup Rust
uses: esp-rs/xtensa-toolchain@v1.6
with:
default: true
buildtargets: esp32
ldproxy: true
- name: Enable caching
uses: Swatinem/rust-cache@v2
- name: Run command
run: cargo ${{ matrix.action.command }} ${{ matrix.action.args }}

4
esp/rust/04_no-std-aht20/.gitignore vendored Normal file
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/.vscode
/.embuild
/target
/Cargo.lock

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[package]
name = "aht20"
version = "0.1.0"
authors = ["shaun"]
edition = "2021"
resolver = "2"
rust-version = "1.77"
[[bin]]
name = "aht20"
harness = false # do not use the built in cargo test harness -> resolve rust-analyzer errors
[profile.release]
opt-level = "s"
[profile.dev]
debug = true # Symbols are nice and they don't increase the size on Flash
opt-level = "z"
[features]
default = []
experimental = ["esp-idf-svc/experimental"]
[dependencies]
log = "0.4"
esp-idf-svc = "0.51"
embedded-hal = "1.0.0"
esp-backtrace = "0.17.0"
esp-hal = { version = "1.0.0-rc.0", features = ["unstable"] }
fugit = "0.3.7"
esp-println = { version = "0.15.0", features = ["log-04"] }
# --- Optional Embassy Integration ---
# esp-idf-svc = { version = "0.51", features = ["critical-section", "embassy-time-driver", "embassy-sync"] }
# If you enable embassy-time-driver, you MUST also add one of:
# a) Standalone Embassy libs ( embassy-time, embassy-sync etc) with a foreign async runtime:
# embassy-time = { version = "0.4.0", features = ["generic-queue-8"] } # NOTE: any generic-queue variant will work
# b) With embassy-executor:
# embassy-executor = { version = "0.7", features = ["executor-thread", "arch-std"] }
# NOTE: if you use embassy-time with embassy-executor you don't need the generic-queue-8 feature
# --- Temporary workaround for embassy-executor < 0.8 ---
# esp-idf-svc = { version = "0.51", features = ["embassy-time-driver", "embassy-sync"] }
# critical-section = { version = "1.1", features = ["std"], default-features = false }
[build-dependencies]
embuild = "0.33"

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https://asairsensors.com/wp-content/uploads/2021/09/Data-Sheet-AHT20-Humidity-and-Temperature-Sensor-ASAIR-V1.0.03.pdf
https://github.com/rust-dd/embedded-dht-rs/tree/main/src

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fn main() {
embuild::espidf::sysenv::output();
}

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[toolchain]
channel = "esp"

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# Rust often needs a bit of an extra main task stack size compared to C (the default is 3K)
CONFIG_ESP_MAIN_TASK_STACK_SIZE=8000
# Use this to set FreeRTOS kernel tick frequency to 1000 Hz (100 Hz by default).
# This allows to use 1 ms granularity for thread sleeps (10 ms by default).
#CONFIG_FREERTOS_HZ=1000
# Workaround for https://github.com/espressif/esp-idf/issues/7631
#CONFIG_MBEDTLS_CERTIFICATE_BUNDLE=n
#CONFIG_MBEDTLS_CERTIFICATE_BUNDLE_DEFAULT_FULL=n

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#![no_std]
#![no_main]
/// Represents a reading from the sensor.
pub struct SensorReading<T> {
pub humidity: T,
pub temperature: T,
}
/// Possible errors when interacting with the sensor.
#[derive(Debug)]
pub enum SensorError {
ChecksumMismatch,
Timeout,
PinError,
}
pub struct Dht20<I: I2cEmbedded, D: DelayNs> {
pub i2c: I,
pub delay: D,
}
impl<I: I2cEmbedded, D: DelayNs> Dht20<I, D> {
const SENSOR_ADDRESS: u8 = 0x38;
pub fn new(i2c: I, delay: D) -> Self {
Self { i2c, delay }
}
pub fn read(&mut self) -> Result<SensorReading<f32>, SensorError> {
// Check status
let mut status_response: [u8; 1] = [0; 1];
let _ = self
.i2c
.write_read(Self::SENSOR_ADDRESS, &[0x71], &mut status_response);
// Calibration if needed
if status_response[0] & 0x18 != 0x18 {
let _ = self.i2c.write(Self::SENSOR_ADDRESS, &[0x1B, 0, 0]);
let _ = self.i2c.write(Self::SENSOR_ADDRESS, &[0x1C, 0, 0]);
let _ = self.i2c.write(Self::SENSOR_ADDRESS, &[0x1E, 0, 0]);
}
// Trigger the measurement
self.delay.delay_ms(10);
let _ = self.i2c.write(Self::SENSOR_ADDRESS, &[0xAC, 0x33, 0x00]);
// Read the measurement status
self.delay.delay_ms(80);
loop {
let mut measurement_status_response: [u8; 1] = [0; 1];
let _ = self
.i2c
.read(Self::SENSOR_ADDRESS, &mut measurement_status_response);
let status_word = measurement_status_response[0];
if status_word & 0b1000_0000 == 0 {
break;
}
self.delay.delay_ms(1);
}
// Read the measurement (1 status + 5 data + 1 crc)
let mut measurement_response: [u8; 7] = [0; 7];
let _ = self
.i2c
.read(Self::SENSOR_ADDRESS, &mut measurement_response);
// Humidity 20 bits (8 + 8 + 4)
let mut raw_humidity = measurement_response[1] as u32;
raw_humidity = (raw_humidity << 8) + measurement_response[2] as u32;
raw_humidity = (raw_humidity << 4) + (measurement_response[3] >> 4) as u32;
let humidity_percentage = (raw_humidity as f32 / ((1 << 20) as f32)) * 100.0;
// Temperature 20 bits
let mut raw_temperature = (measurement_response[3] & 0b1111) as u32;
raw_temperature = (raw_temperature << 8) + measurement_response[4] as u32;
raw_temperature = (raw_temperature << 8) + measurement_response[5] as u32;
let temperature_percentage = (raw_temperature as f32 / ((1 << 20) as f32)) * 200.0 - 50.0;
// Compare the calculated CRC with the received CRC
let data = &measurement_response[..6];
let received_crc = measurement_response[6];
let calculated_crc = Self::calculate_crc(data);
if received_crc != calculated_crc {
return Err(SensorError::ChecksumMismatch);
}
Ok(SensorReading {
humidity: humidity_percentage,
temperature: temperature_percentage,
})
}
fn calculate_crc(data: &[u8]) -> u8 {
let polynomial = 0x31u8; // x^8 + x^5 + x^4 + 1
let mut crc = 0xFFu8;
for &byte in data {
crc ^= byte;
// CRC8 - process every bit
for _ in 0..8 {
if crc & 0x80 != 0 {
crc = (crc << 1) ^ polynomial;
} else {
crc <<= 1;
}
}
}
crc
}
}
use embedded_hal::{delay::DelayNs, i2c::I2c as I2cEmbedded};
use esp_backtrace as _;
use esp_hal::{
clock::CpuClock,
delay::Delay,
gpio::{Level, Pull},
i2c::master::I2c,
xtensa_lx_rt::entry,
};
use fugit::{ExtU64, HertzU32};
#[entry]
fn main() -> ! {
let peripherals = esp_hal::init(esp_hal::Config::default());
esp_println::logger::init_logger_from_env();
let mut delay = Delay::new();
// TODO: Remove unwrap
let i2c_for_dht20 =
esp_hal::i2c::master::I2c::new(peripherals.I2C0, esp_hal::i2c::master::Config::default())
.unwrap()
.with_sda(peripherals.pins.gpio21)
.with_scl(peripherals.pins.gpio22);
let mut dht20 = Dht20::new(i2c_for_dht20, delay);
loop {
delay.delay_ms(5000);
match dht20.read() {
Ok(sensor_reading) => log::info!(
"DHT 20 Sensor - Temperature: {} °C, humidity: {} %",
sensor_reading.temperature,
sensor_reading.humidity
),
Err(error) => log::error!("An error occurred while trying to read sensor: {:?}", error),
}
log::info!("-----");
}
}

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├── 01_esp-idf-std # Template project for using ESP-IDF with std enabled.
├── 02_esp-gen-no-std # Template ESP32 project using no std.
├── 03_no-std-lcd # Drawing to LCD using ESP32 no std.
├── 04_no-std-aht20 # Reading temperature and humidity from a AHT20 sensor using ESP32 no std.
└── README.md
```
## Development Setup
Install Rust
```bash
curl --proto '=https' --tlsv1.2 -sSf https://sh.rustup.rs | sh
```
You must run these commands to set up ESP before building any of these examples.
```bash
sudo apt install python3-venv
mkdir /tmp/espup && cd /tmp/espup
cargo install espup --locked
espup install
cargo install ldproxy
sudo usermod -aG dialout $USER
newgrp dialout
```
Some notes I took while setting this up for the first time: [Knoats](https://knoats.com/books/esp32/page/rust)
[Espressif Rust book](https://docs.espressif.com/projects/rust/book/introduction.html)