[esp] Add Rust example with std.
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esp/README.md
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esp/README.md
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# esp
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```bash
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shaunrd0/klips/esp/
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├── cpp # Examples of ESP32 projects written in C++
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├── rust # Examples of ESP32 projects written in Rust
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└── README.md
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```
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# esp
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# esp/cpp
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```bash
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shaunrd0/klips/esp/
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shaunrd0/klips/esp/cpp
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├── 01_led-button # Simple LED circuit controlled by an on board button.
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├── 02_led-button-web # LED controlled by a button or within a web browser.
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├── 03_temp-humidity-web # Temperature and humidity sensor within a web browser.
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esp/rust/01_esp-idf-std/.cargo/config.toml
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esp/rust/01_esp-idf-std/.cargo/config.toml
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[build]
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target = "xtensa-esp32-espidf"
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[target.xtensa-esp32-espidf]
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linker = "ldproxy"
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runner = "espflash flash --monitor"
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rustflags = [ "--cfg", "espidf_time64"]
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[unstable]
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build-std = ["std", "panic_abort"]
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[env]
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MCU="esp32"
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# Note: this variable is not used by the pio builder (`cargo build --features pio`)
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ESP_IDF_VERSION = "v5.2.3"
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esp/rust/01_esp-idf-std/.gitignore
vendored
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esp/rust/01_esp-idf-std/.gitignore
vendored
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/.vscode
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/.idea
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/.embuild
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/target
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/Cargo.lock
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esp/rust/01_esp-idf-std/Cargo.toml
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esp/rust/01_esp-idf-std/Cargo.toml
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[package]
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name = "esp-idf-std"
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version = "0.1.0"
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authors = ["Shaun Reed <shaunrd0@gmail.com>"]
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edition = "2021"
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resolver = "2"
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rust-version = "1.77"
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[[bin]]
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name = "esp-idf-std"
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harness = false # do not use the built in cargo test harness -> resolve rust-analyzer errors
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[profile.release]
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opt-level = "s"
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[profile.dev]
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debug = true # Symbols are nice and they don't increase the size on Flash
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opt-level = "z"
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[features]
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default = []
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experimental = ["esp-idf-svc/experimental"]
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[dependencies]
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log = "0.4"
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esp-idf-svc = "0.51"
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esp-idf-hal = "0.45.2"
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anyhow = "1.0.98"
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# --- Optional Embassy Integration ---
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# esp-idf-svc = { version = "0.51", features = ["critical-section", "embassy-time-driver", "embassy-sync"] }
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# If you enable embassy-time-driver, you MUST also add one of:
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# a) Standalone Embassy libs ( embassy-time, embassy-sync etc) with a foreign async runtime:
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# embassy-time = { version = "0.4.0", features = ["generic-queue-8"] } # NOTE: any generic-queue variant will work
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# b) With embassy-executor:
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# embassy-executor = { version = "0.7", features = ["executor-thread", "arch-std"] }
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# NOTE: if you use embassy-time with embassy-executor you don't need the generic-queue-8 feature
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# --- Temporary workaround for embassy-executor < 0.8 ---
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# esp-idf-svc = { version = "0.51", features = ["embassy-time-driver", "embassy-sync"] }
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# critical-section = { version = "1.1", features = ["std"], default-features = false }
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[build-dependencies]
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embuild = "0.33"
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esp/rust/01_esp-idf-std/README.md
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esp/rust/01_esp-idf-std/README.md
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# esp-idf-std
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This is an example of using ESP-IDF with std enabled in Rust
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When flashed to a device, the application just adjusts the intensity of the on-board LED for visual verification that flashing works correctly.
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Steps used to generate this project
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```bash
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cargo install cargo-generate
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cargo generate --git https://github.com/esp-rs/esp-idf-template.git --name esp-idf-rust-std -d mcu=esp32 -d std=true
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```
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Steps to build and flash this project
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```bash
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# Install espflash if you don't have it already
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cargo install espflash
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# Export esp-idf build environment
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. ~/export-esp.sh
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# Build and flash to the device
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cargo build
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cargo run
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# Check the serial monitor (optional)
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sudo usermod -aG dialout $USER
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newgrp dialout
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espflash monitor
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```
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For more detailed information on setting up a development environment, see [the esp/rust README](/esp/rust/README.md)
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esp/rust/01_esp-idf-std/build.rs
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esp/rust/01_esp-idf-std/build.rs
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fn main() {
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embuild::espidf::sysenv::output();
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}
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esp/rust/01_esp-idf-std/rust-toolchain.toml
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esp/rust/01_esp-idf-std/rust-toolchain.toml
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[toolchain]
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channel = "esp"
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esp/rust/01_esp-idf-std/sdkconfig.defaults
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esp/rust/01_esp-idf-std/sdkconfig.defaults
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# Rust often needs a bit of an extra main task stack size compared to C (the default is 3K)
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CONFIG_ESP_MAIN_TASK_STACK_SIZE=8000
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# Use this to set FreeRTOS kernel tick frequency to 1000 Hz (100 Hz by default).
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# This allows to use 1 ms granularity for thread sleeps (10 ms by default).
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#CONFIG_FREERTOS_HZ=1000
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# Workaround for https://github.com/espressif/esp-idf/issues/7631
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#CONFIG_MBEDTLS_CERTIFICATE_BUNDLE=n
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#CONFIG_MBEDTLS_CERTIFICATE_BUNDLE_DEFAULT_FULL=n
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esp/rust/01_esp-idf-std/src/main.rs
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esp/rust/01_esp-idf-std/src/main.rs
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use esp_idf_hal::delay::FreeRtos;
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use esp_idf_hal::ledc::*;
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use esp_idf_hal::peripherals::Peripherals;
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use esp_idf_hal::prelude::*;
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fn main() -> anyhow::Result<()> {
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esp_idf_hal::sys::link_patches();
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println!("Configuring output channel");
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let peripherals = Peripherals::take()?;
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// Channel for on-board LED on ESP32
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let mut channel = LedcDriver::new(
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peripherals.ledc.channel0,
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LedcTimerDriver::new(
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peripherals.ledc.timer0,
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&config::TimerConfig::new().frequency(25_u32.kHz().into()),
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)?,
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peripherals.pins.gpio2,
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)?;
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println!("Starting duty-cycle loop");
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let max_duty = channel.get_max_duty();
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// Cycle the channel duty every 2s to visually show that things are working when flashed.
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for numerator in [0, 1, 2, 3, 4, 5].iter().cycle() {
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println!("Duty {numerator}/5");
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channel.set_duty(max_duty * numerator / 5)?;
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FreeRtos::delay_ms(2000);
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}
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// We want this to run forever, so don't let the application terminate.
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loop {
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FreeRtos::delay_ms(1000);
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}
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}
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esp/rust/README.md
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esp/rust/README.md
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# esp/rust
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```bash
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shaunrd0/klips/esp/rust
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├── 01_es-idf-std # Template project for using ESP-IDF with std enabled.
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└── README.md
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```
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## Development Setup
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Some notes I took while setting this up for the first time: [Knoats](https://knoats.com/books/esp32/page/rust)
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[Espressif Rust book](https://docs.espressif.com/projects/rust/book/introduction.html)
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