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3 Commits

Author SHA1 Message Date
0513506b98 added examples 2025-12-15 18:22:32 +01:00
df33b51d52 added maybe-async 2025-12-15 18:21:56 +01:00
6691c2e38c fixed typo 2025-12-14 21:05:03 +01:00
19 changed files with 3006 additions and 19 deletions

59
Cargo.lock generated
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@@ -3,10 +3,12 @@
version = 4 version = 4
[[package]] [[package]]
name = "as7265x-rust" name = "as7265x"
version = "0.1.0" version = "0.1.0"
dependencies = [ dependencies = [
"embedded-hal", "embedded-hal",
"embedded-hal-async",
"maybe-async",
] ]
[[package]] [[package]]
@@ -14,3 +16,58 @@ name = "embedded-hal"
version = "1.0.0" version = "1.0.0"
source = "registry+https://github.com/rust-lang/crates.io-index" source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "361a90feb7004eca4019fb28352a9465666b24f840f5c3cddf0ff13920590b89" checksum = "361a90feb7004eca4019fb28352a9465666b24f840f5c3cddf0ff13920590b89"
[[package]]
name = "embedded-hal-async"
version = "1.0.0"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "0c4c685bbef7fe13c3c6dd4da26841ed3980ef33e841cddfa15ce8a8fb3f1884"
dependencies = [
"embedded-hal",
]
[[package]]
name = "maybe-async"
version = "0.2.10"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "5cf92c10c7e361d6b99666ec1c6f9805b0bea2c3bd8c78dc6fe98ac5bd78db11"
dependencies = [
"proc-macro2",
"quote",
"syn",
]
[[package]]
name = "proc-macro2"
version = "1.0.103"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "5ee95bc4ef87b8d5ba32e8b7714ccc834865276eab0aed5c9958d00ec45f49e8"
dependencies = [
"unicode-ident",
]
[[package]]
name = "quote"
version = "1.0.42"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "a338cc41d27e6cc6dce6cefc13a0729dfbb81c262b1f519331575dd80ef3067f"
dependencies = [
"proc-macro2",
]
[[package]]
name = "syn"
version = "2.0.111"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "390cc9a294ab71bdb1aa2e99d13be9c753cd2d7bd6560c77118597410c4d2e87"
dependencies = [
"proc-macro2",
"quote",
"unicode-ident",
]
[[package]]
name = "unicode-ident"
version = "1.0.22"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "9312f7c4f6ff9069b165498234ce8be658059c6728633667c526e27dc2cf1df5"

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@@ -1,7 +1,14 @@
[package] [package]
name = "as7265x-rust" name = "as7265x"
version = "0.1.0" version = "0.1.0"
edition = "2024" edition = "2024"
[dependencies] [dependencies]
embedded-hal = "1.0.0" embedded-hal = "1.0.0"
maybe-async = { version = "0.2.10", features=["is_sync"]}
embedded-hal-async = { version = "1.0.0", optional = true }
[features]
async = [ "embedded-hal-async" ]

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@@ -0,0 +1,16 @@
[target.riscv32imac-unknown-none-elf]
runner = "espflash flash --monitor --chip esp32c6"
[env]
[build]
rustflags = [
# Required to obtain backtraces (e.g. when using the "esp-backtrace" crate.)
# NOTE: May negatively impact performance of produced code
"-C", "force-frame-pointers",
]
target = "riscv32imac-unknown-none-elf"
[unstable]
build-std = ["core"]

22
examples/esp32c6-async/.gitignore vendored Normal file
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@@ -0,0 +1,22 @@
# will have compiled files and executables
debug/
target/
# Editor configuration
.vscode/
.zed/
.helix/
.nvim.lua
# These are backup files generated by rustfmt
**/*.rs.bk
# MSVC Windows builds of rustc generate these, which store debugging information
*.pdb
# RustRover
# JetBrains specific template is maintained in a separate JetBrains.gitignore that can
# be found at https://github.com/github/gitignore/blob/main/Global/JetBrains.gitignore
# and can be added to the global gitignore or merged into this file. For a more nuclear
# option (not recommended) you can uncomment the following to ignore the entire idea folder.
#.idea/

1286
examples/esp32c6-async/Cargo.lock generated Normal file

File diff suppressed because it is too large Load Diff

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@@ -0,0 +1,39 @@
[package]
edition = "2024"
name = "esp32c6-async"
rust-version = "1.88"
version = "0.1.0"
[[bin]]
name = "esp32c6-async"
path = "./src/bin/main.rs"
[dependencies]
esp-hal = { version = "1.0.0", features = ["esp32c6", "unstable"] }
esp-rtos = { version = "0.2.0", features = ["embassy", "esp32c6"] }
esp-bootloader-esp-idf = { version = "0.4.0", features = ["esp32c6"] }
embassy-executor = { version = "0.9.1", features = [] }
embassy-time = "0.5.0"
critical-section = "1.2.0"
static_cell = "2.1.1"
as7265x = { path = "../..", features = ["async"] }
esp-println = { version = "0.16.1", features = ["esp32c6"] }
[profile.dev]
# Rust debug is too slow.
# For debug builds always builds with some optimization
opt-level = "s"
[profile.release]
codegen-units = 1 # LLVM can perform better optimizations using a single thread
debug = 2
debug-assertions = false
incremental = false
lto = 'fat'
opt-level = 's'
overflow-checks = false

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@@ -0,0 +1,56 @@
fn main() {
linker_be_nice();
// make sure linkall.x is the last linker script (otherwise might cause problems with flip-link)
println!("cargo:rustc-link-arg=-Tlinkall.x");
}
fn linker_be_nice() {
let args: Vec<String> = std::env::args().collect();
if args.len() > 1 {
let kind = &args[1];
let what = &args[2];
match kind.as_str() {
"undefined-symbol" => match what.as_str() {
"_defmt_timestamp" => {
eprintln!();
eprintln!(
"💡 `defmt` not found - make sure `defmt.x` is added as a linker script and you have included `use defmt_rtt as _;`"
);
eprintln!();
}
"_stack_start" => {
eprintln!();
eprintln!("💡 Is the linker script `linkall.x` missing?");
eprintln!();
}
"esp_rtos_initialized" | "esp_rtos_yield_task" | "esp_rtos_task_create" => {
eprintln!();
eprintln!(
"💡 `esp-radio` has no scheduler enabled. Make sure you have initialized `esp-rtos` or provided an external scheduler."
);
eprintln!();
}
"embedded_test_linker_file_not_added_to_rustflags" => {
eprintln!();
eprintln!(
"💡 `embedded-test` not found - make sure `embedded-test.x` is added as a linker script for tests"
);
eprintln!();
}
_ => (),
},
// we don't have anything helpful for "missing-lib" yet
_ => {
std::process::exit(1);
}
}
std::process::exit(0);
}
println!(
"cargo:rustc-link-arg=--error-handling-script={}",
std::env::current_exe().unwrap().display()
);
}

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@@ -0,0 +1,4 @@
[toolchain]
channel = "stable"
components = ["rust-src"]
targets = ["riscv32imac-unknown-none-elf"]

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@@ -0,0 +1,77 @@
#![no_std]
#![no_main]
#![deny(
clippy::mem_forget,
reason = "mem::forget is generally not safe to do with esp_hal types, especially those \
holding buffers for the duration of a data transfer."
)]
use as7265x::{AS7265X, AS7265XConfig, Channel};
use embassy_executor::Spawner;
use embassy_time::{Delay, Duration, Timer};
use esp_hal::clock::CpuClock;
use esp_hal::i2c::master::I2c;
use esp_hal::timer::timg::TimerGroup;
use esp_println::println;
#[panic_handler]
fn panic(_: &core::panic::PanicInfo) -> ! {
loop {}
}
esp_bootloader_esp_idf::esp_app_desc!();
#[esp_rtos::main]
async fn main(_spawner: Spawner) -> ! {
let config = esp_hal::Config::default().with_cpu_clock(CpuClock::max());
let peripherals = esp_hal::init(config);
let timg0 = TimerGroup::new(peripherals.TIMG0);
let sw_interrupt =
esp_hal::interrupt::software::SoftwareInterruptControl::new(peripherals.SW_INTERRUPT);
esp_rtos::start(timg0.timer0, sw_interrupt.software_interrupt0);
let i2c_config = esp_hal::i2c::master::Config::default();
let device: I2c<'_, esp_hal::Async> =
esp_hal::i2c::master::I2c::new(peripherals.I2C0, i2c_config)
.unwrap()
.with_sda(peripherals.GPIO22)
.with_scl(peripherals.GPIO23)
.into_async();
let mut as7265x_device = AS7265X::new(device, AS7265XConfig::default(), Delay);
as7265x_device.init().await.expect("Failed to init device");
loop {
println!("Taking messurment...");
as7265x_device.mesure_with_bulb().await.unwrap();
println!(
"Channel A: {}",
as7265x_device
.read_calibrated_messurement(Channel::A)
.await
.expect("Failed to read value")
);
println!(
"Channel B: {}",
as7265x_device
.read_calibrated_messurement(Channel::B)
.await
.expect("Failed to read value")
);
println!(
"Channel F: {}",
as7265x_device
.read_calibrated_messurement(Channel::F)
.await
.expect("Failed to read value")
);
Timer::after(Duration::from_secs(1)).await;
}
}

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@@ -0,0 +1 @@
#![no_std]

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@@ -0,0 +1,16 @@
[target.riscv32imac-unknown-none-elf]
runner = "espflash flash --monitor --chip esp32c6"
[env]
[build]
rustflags = [
# Required to obtain backtraces (e.g. when using the "esp-backtrace" crate.)
# NOTE: May negatively impact performance of produced code
"-C", "force-frame-pointers",
]
target = "riscv32imac-unknown-none-elf"
[unstable]
build-std = ["core"]

22
examples/esp32c6-sync/.gitignore vendored Normal file
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@@ -0,0 +1,22 @@
# will have compiled files and executables
debug/
target/
# Editor configuration
.vscode/
.zed/
.helix/
.nvim.lua
# These are backup files generated by rustfmt
**/*.rs.bk
# MSVC Windows builds of rustc generate these, which store debugging information
*.pdb
# RustRover
# JetBrains specific template is maintained in a separate JetBrains.gitignore that can
# be found at https://github.com/github/gitignore/blob/main/Global/JetBrains.gitignore
# and can be added to the global gitignore or merged into this file. For a more nuclear
# option (not recommended) you can uncomment the following to ignore the entire idea folder.
#.idea/

1187
examples/esp32c6-sync/Cargo.lock generated Normal file

File diff suppressed because it is too large Load Diff

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@@ -0,0 +1,34 @@
[package]
edition = "2024"
name = "esp32c6-sync"
rust-version = "1.88"
version = "0.1.0"
[[bin]]
name = "esp32c6-sync"
path = "./src/bin/main.rs"
[dependencies]
esp-hal = { version = "1.0.0", features = ["esp32c6","unstable"] }
esp-bootloader-esp-idf = { version = "0.4.0", features = ["esp32c6"] }
critical-section = "1.2.0"
as7265x = { path="../.." }
esp-println = { version = "0.16.1", features = ["esp32c6"] }
[profile.dev]
# Rust debug is too slow.
# For debug builds always builds with some optimization
opt-level = "s"
[profile.release]
codegen-units = 1 # LLVM can perform better optimizations using a single thread
debug = 2
debug-assertions = false
incremental = false
lto = 'fat'
opt-level = 's'
overflow-checks = false

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@@ -0,0 +1,56 @@
fn main() {
linker_be_nice();
// make sure linkall.x is the last linker script (otherwise might cause problems with flip-link)
println!("cargo:rustc-link-arg=-Tlinkall.x");
}
fn linker_be_nice() {
let args: Vec<String> = std::env::args().collect();
if args.len() > 1 {
let kind = &args[1];
let what = &args[2];
match kind.as_str() {
"undefined-symbol" => match what.as_str() {
"_defmt_timestamp" => {
eprintln!();
eprintln!(
"💡 `defmt` not found - make sure `defmt.x` is added as a linker script and you have included `use defmt_rtt as _;`"
);
eprintln!();
}
"_stack_start" => {
eprintln!();
eprintln!("💡 Is the linker script `linkall.x` missing?");
eprintln!();
}
"esp_rtos_initialized" | "esp_rtos_yield_task" | "esp_rtos_task_create" => {
eprintln!();
eprintln!(
"💡 `esp-radio` has no scheduler enabled. Make sure you have initialized `esp-rtos` or provided an external scheduler."
);
eprintln!();
}
"embedded_test_linker_file_not_added_to_rustflags" => {
eprintln!();
eprintln!(
"💡 `embedded-test` not found - make sure `embedded-test.x` is added as a linker script for tests"
);
eprintln!();
}
_ => (),
},
// we don't have anything helpful for "missing-lib" yet
_ => {
std::process::exit(1);
}
}
std::process::exit(0);
}
println!(
"cargo:rustc-link-arg=--error-handling-script={}",
std::env::current_exe().unwrap().display()
);
}

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@@ -0,0 +1,4 @@
[toolchain]
channel = "stable"
components = ["rust-src"]
targets = ["riscv32imac-unknown-none-elf"]

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@@ -0,0 +1,67 @@
#![no_std]
#![no_main]
#![deny(
clippy::mem_forget,
reason = "mem::forget is generally not safe to do with esp_hal types, especially those \
holding buffers for the duration of a data transfer."
)]
use esp_println::println;
use as7265x::{AS7265XConfig, Channel, AS7265X};
use esp_hal::clock::CpuClock;
use esp_hal::{i2c, main};
#[panic_handler]
fn panic(_: &core::panic::PanicInfo) -> ! {
loop {}
}
esp_bootloader_esp_idf::esp_app_desc!();
#[main]
fn main() -> ! {
let config = esp_hal::Config::default().with_cpu_clock(CpuClock::max());
let peripherals = esp_hal::init(config);
let device = esp_hal::i2c::master::I2c::new(peripherals.I2C0, i2c::master::Config::default())
.unwrap()
.with_sda(peripherals.GPIO22)
.with_scl(peripherals.GPIO23);
let delay = esp_hal::delay::Delay::new();
let mut as7265x_device = AS7265X::new(device, AS7265XConfig::default(), delay);
as7265x_device.init().expect("Failed to init");
loop {
println!("Taking messurment...");
as7265x_device
.mesure_with_bulb()
.expect("Failed to run messurment");
println!(
"Channel A: {}",
as7265x_device
.read_calibrated_messurement(Channel::A)
.expect("Failed to read value")
);
println!(
"Channel B: {}",
as7265x_device
.read_calibrated_messurement(Channel::B)
.expect("Failed to read value")
);
println!(
"Channel F: {}",
as7265x_device
.read_calibrated_messurement(Channel::F)
.expect("Failed to read value")
);
delay.delay_millis(1000);
}
}

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@@ -0,0 +1 @@
#![no_std]

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@@ -1,10 +1,18 @@
#![no_std] #![no_std]
#[cfg(not(feature = "async"))]
use embedded_hal::{ use embedded_hal::{
delay::DelayNs, delay::DelayNs,
i2c::{self}, i2c::{self},
}; };
#[cfg(feature = "async")]
use embedded_hal_async::{
delay::DelayNs,
i2c::{self},
};
use maybe_async::maybe_async;
const AS7265X_ADDR: u8 = 0x49; const AS7265X_ADDR: u8 = 0x49;
const STATUS_REG: u8 = 0x00; const STATUS_REG: u8 = 0x00;
const WRITE_REG: u8 = 0x01; const WRITE_REG: u8 = 0x01;
@@ -80,7 +88,7 @@ pub enum Channel {
} }
impl Channel { impl Channel {
pub fn get_device_for_chanel(&self) -> Device { pub fn get_device_for_channel(&self) -> Device {
match self { match self {
Channel::A | Channel::B | Channel::C | Channel::D | Channel::E | Channel::F => { Channel::A | Channel::B | Channel::C | Channel::D | Channel::E | Channel::F => {
Device::Uv Device::Uv
@@ -330,6 +338,7 @@ where
config: AS7265XConfig, config: AS7265XConfig,
} }
#[maybe_async]
impl<I, D> AS7265X<I, D> impl<I, D> AS7265X<I, D>
where where
I: i2c::I2c, I: i2c::I2c,
@@ -343,6 +352,7 @@ where
} }
} }
#[maybe_async]
pub async fn init(&mut self) -> Result<(), Error<I::Error>> { pub async fn init(&mut self) -> Result<(), Error<I::Error>> {
self.write_config().await?; self.write_config().await?;
@@ -376,63 +386,75 @@ where
Ok(()) Ok(())
} }
#[maybe_async]
pub async fn soft_reset(&mut self) -> Result<(), Error<I::Error>> { pub async fn soft_reset(&mut self) -> Result<(), Error<I::Error>> {
self.write_virtual_register(CONFIG_ADDR, SOFT_RESET).await?; self.write_virtual_register(CONFIG_ADDR, SOFT_RESET).await?;
self.delay.delay_ms(100); self.delay.delay_ms(100).await;
Ok(()) Ok(())
} }
#[maybe_async]
async fn write_config(&mut self) -> Result<(), Error<I::Error>> { async fn write_config(&mut self) -> Result<(), Error<I::Error>> {
let config_byte = self.config.to_config_byte(); let config_byte = self.config.to_config_byte();
self.write_virtual_register(CONFIG_ADDR, config_byte).await self.write_virtual_register(CONFIG_ADDR, config_byte).await
} }
#[maybe_async]
pub async fn set_integration_time(&mut self, time: u8) -> Result<(), Error<I::Error>> { pub async fn set_integration_time(&mut self, time: u8) -> Result<(), Error<I::Error>> {
self.write_virtual_register(INTEGRATION_ADDR, time).await self.write_virtual_register(INTEGRATION_ADDR, time).await
} }
#[maybe_async]
async fn set_led_config(&mut self, led: Led, config: LedConfig) -> Result<(), Error<I::Error>> { async fn set_led_config(&mut self, led: Led, config: LedConfig) -> Result<(), Error<I::Error>> {
self.select_device(led.get_device()).await?; self.select_device(led.get_device()).await?;
let config_byte = config.config_byte(); let config_byte = config.config_byte();
self.write_virtual_register(LED_ADDR, config_byte).await self.write_virtual_register(LED_ADDR, config_byte).await
} }
#[maybe_async]
pub async fn get_device_type(&mut self) -> Result<u8, Error<I::Error>> { pub async fn get_device_type(&mut self) -> Result<u8, Error<I::Error>> {
self.read_virtual_register(HW_VERSION_HIGH_ADDR).await self.read_virtual_register(HW_VERSION_HIGH_ADDR).await
} }
#[maybe_async]
pub async fn get_hardware_version(&mut self) -> Result<u8, Error<I::Error>> { pub async fn get_hardware_version(&mut self) -> Result<u8, Error<I::Error>> {
self.read_virtual_register(HW_VERSION_LOW_ADDR).await self.read_virtual_register(HW_VERSION_LOW_ADDR).await
} }
#[maybe_async]
pub async fn get_firmware_version(&mut self) -> Result<(u8, u8), Error<I::Error>> { pub async fn get_firmware_version(&mut self) -> Result<(u8, u8), Error<I::Error>> {
let high = self.read_virtual_register(FW_VERSION_HIGH_ADDR).await?; let high = self.read_virtual_register(FW_VERSION_HIGH_ADDR).await?;
let low = self.read_virtual_register(FW_VERSION_LOW_ADDR).await?; let low = self.read_virtual_register(FW_VERSION_LOW_ADDR).await?;
Ok((high, low)) Ok((high, low))
} }
#[maybe_async]
async fn select_device(&mut self, device: Device) -> Result<(), Error<I::Error>> { async fn select_device(&mut self, device: Device) -> Result<(), Error<I::Error>> {
self.write_virtual_register(DEV_SELECT_ADDR, device as u8) self.write_virtual_register(DEV_SELECT_ADDR, device as u8)
.await .await
} }
#[maybe_async]
pub async fn read_temperature(&mut self) -> Result<i8, Error<I::Error>> { pub async fn read_temperature(&mut self) -> Result<i8, Error<I::Error>> {
let temp = self.read_virtual_register(TEMP_ADDR).await?; let temp = self.read_virtual_register(TEMP_ADDR).await?;
Ok(temp as i8) Ok(temp as i8)
} }
#[maybe_async]
pub async fn is_data_ready(&mut self) -> Result<bool, Error<I::Error>> { pub async fn is_data_ready(&mut self) -> Result<bool, Error<I::Error>> {
let config = self.read_virtual_register(CONFIG_ADDR).await?; let config = self.read_virtual_register(CONFIG_ADDR).await?;
Ok((config & CONFIG_DATA_RDY) != 0) Ok((config & CONFIG_DATA_RDY) != 0)
} }
#[maybe_async]
pub async fn measure(&mut self) -> Result<(), Error<I::Error>> { pub async fn measure(&mut self) -> Result<(), Error<I::Error>> {
self.write_config().await?; self.write_config().await?;
let wait_time = (self.config.integration_time as u32) * 28 / 10 * 2; let wait_time = (self.config.integration_time as u32) * 28 / 10 * 2;
self.delay.delay_ms(wait_time); self.delay.delay_ms(wait_time).await;
Ok(()) Ok(())
} }
#[maybe_async]
pub async fn mesure_with_bulb(&mut self) -> Result<(), Error<I::Error>> { pub async fn mesure_with_bulb(&mut self) -> Result<(), Error<I::Error>> {
self.set_led_config( self.set_led_config(
Led::White, Led::White,
@@ -490,23 +512,26 @@ where
Ok(()) Ok(())
} }
#[maybe_async]
pub async fn read_raw_measurement(&mut self, channel: Channel) -> Result<u16, Error<I::Error>> { pub async fn read_raw_measurement(&mut self, channel: Channel) -> Result<u16, Error<I::Error>> {
let dev = channel.get_device_for_chanel(); let dev = channel.get_device_for_channel();
self.select_device(dev).await?; self.select_device(dev).await?;
self.read_raw_channel(channel.get_raw_address()).await self.read_raw_channel(channel.get_raw_address()).await
} }
#[maybe_async]
pub async fn read_calibrated_messurement( pub async fn read_calibrated_messurement(
&mut self, &mut self,
channel: Channel, channel: Channel,
) -> Result<f32, Error<I::Error>> { ) -> Result<f32, Error<I::Error>> {
let dev = channel.get_device_for_chanel(); let dev = channel.get_device_for_channel();
self.select_device(dev).await?; self.select_device(dev).await?;
self.read_calibrated_channel(channel.get_cal_address()) self.read_calibrated_channel(channel.get_cal_address())
.await .await
} }
#[maybe_async]
async fn write_virtual_register( async fn write_virtual_register(
&mut self, &mut self,
virtual_addr: u8, virtual_addr: u8,
@@ -517,64 +542,73 @@ where
for _ in 0..MAX_RETRIES { for _ in 0..MAX_RETRIES {
let mut status = [0u8; 1]; let mut status = [0u8; 1];
self.device self.device
.write_read(AS7265X_ADDR, &[STATUS_REG], &mut status)?; .write_read(AS7265X_ADDR, &[STATUS_REG], &mut status)
.await?;
if (status[0] & TX_VALID) == 0 { if (status[0] & TX_VALID) == 0 {
break; break;
} }
self.delay.delay_ms(5); self.delay.delay_ms(5).await;
} }
self.device self.device
.write(AS7265X_ADDR, &[WRITE_REG, 0x80 | virtual_addr])?; .write(AS7265X_ADDR, &[WRITE_REG, 0x80 | virtual_addr])
.await?;
for _ in 0..MAX_RETRIES { for _ in 0..MAX_RETRIES {
let mut status = [0u8; 1]; let mut status = [0u8; 1];
self.device self.device
.write_read(AS7265X_ADDR, &[STATUS_REG], &mut status)?; .write_read(AS7265X_ADDR, &[STATUS_REG], &mut status)
.await?;
if (status[0] & TX_VALID) == 0 { if (status[0] & TX_VALID) == 0 {
break; break;
} }
self.delay.delay_ms(5); self.delay.delay_ms(5).await;
} }
self.device.write(AS7265X_ADDR, &[WRITE_REG, data])?; self.device.write(AS7265X_ADDR, &[WRITE_REG, data]).await?;
Ok(()) Ok(())
} }
#[maybe_async]
async fn read_virtual_register(&mut self, virtual_addr: u8) -> Result<u8, Error<I::Error>> { async fn read_virtual_register(&mut self, virtual_addr: u8) -> Result<u8, Error<I::Error>> {
const MAX_RETRIES: u8 = 100; const MAX_RETRIES: u8 = 100;
for _ in 0..MAX_RETRIES { for _ in 0..MAX_RETRIES {
let mut status = [0u8; 1]; let mut status = [0u8; 1];
self.device self.device
.write_read(AS7265X_ADDR, &[STATUS_REG], &mut status)?; .write_read(AS7265X_ADDR, &[STATUS_REG], &mut status)
.await?;
if (status[0] & TX_VALID) == 0 { if (status[0] & TX_VALID) == 0 {
break; break;
} }
self.delay.delay_ms(5); self.delay.delay_ms(5).await;
} }
self.device self.device
.write(AS7265X_ADDR, &[WRITE_REG, virtual_addr])?; .write(AS7265X_ADDR, &[WRITE_REG, virtual_addr])
.await?;
for _ in 0..MAX_RETRIES { for _ in 0..MAX_RETRIES {
let mut status = [0u8; 1]; let mut status = [0u8; 1];
self.device self.device
.write_read(AS7265X_ADDR, &[STATUS_REG], &mut status)?; .write_read(AS7265X_ADDR, &[STATUS_REG], &mut status)
.await?;
if (status[0] & RX_VALID) != 0 { if (status[0] & RX_VALID) != 0 {
break; break;
} }
self.delay.delay_ms(5); self.delay.delay_ms(5).await;
} }
let mut data = [0u8; 1]; let mut data = [0u8; 1];
self.device self.device
.write_read(AS7265X_ADDR, &[READ_REG], &mut data)?; .write_read(AS7265X_ADDR, &[READ_REG], &mut data)
.await?;
Ok(data[0]) Ok(data[0])
} }
#[maybe_async]
async fn read_raw_channel(&mut self, high_byte_addr: u8) -> Result<u16, Error<I::Error>> { async fn read_raw_channel(&mut self, high_byte_addr: u8) -> Result<u16, Error<I::Error>> {
let high = self.read_virtual_register(high_byte_addr).await?; let high = self.read_virtual_register(high_byte_addr).await?;
let low = self.read_virtual_register(high_byte_addr + 1).await?; let low = self.read_virtual_register(high_byte_addr + 1).await?;
@@ -582,6 +616,7 @@ where
Ok(((high as u16) << 8) | (low as u16)) Ok(((high as u16) << 8) | (low as u16))
} }
#[maybe_async]
async fn read_calibrated_channel( async fn read_calibrated_channel(
&mut self, &mut self,
high_byte_addr: u8, high_byte_addr: u8,