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authorMarc <[email protected]>2025-04-25 00:43:46 +0200
committerMarc <[email protected]>2025-04-25 01:14:47 +0200
commitcd27a8a06b0160d654ebed7b89ca473041710235 (patch)
treeceefe8f02e71a292cbc193a5108f16a895850763
parent2a4b380cb715fface63a438185502f2a96d58d80 (diff)
Updated the pio onewire example
-rw-r--r--examples/rp/src/bin/pio_onewire.rs102
1 files changed, 53 insertions, 49 deletions
diff --git a/examples/rp/src/bin/pio_onewire.rs b/examples/rp/src/bin/pio_onewire.rs
index 991510851..379e2b8f9 100644
--- a/examples/rp/src/bin/pio_onewire.rs
+++ b/examples/rp/src/bin/pio_onewire.rs
@@ -1,4 +1,4 @@
1//! This example shows how you can use PIO to read a `DS18B20` one-wire temperature sensor. 1//! This example shows how you can use PIO to read one or more `DS18B20` one-wire temperature sensors.
2 2
3#![no_std] 3#![no_std]
4#![no_main] 4#![no_main]
@@ -6,9 +6,10 @@ use defmt::*;
6use embassy_executor::Spawner; 6use embassy_executor::Spawner;
7use embassy_rp::bind_interrupts; 7use embassy_rp::bind_interrupts;
8use embassy_rp::peripherals::PIO0; 8use embassy_rp::peripherals::PIO0;
9use embassy_rp::pio::{self, InterruptHandler, Pio}; 9use embassy_rp::pio::{InterruptHandler, Pio};
10use embassy_rp::pio_programs::onewire::{PioOneWire, PioOneWireProgram}; 10use embassy_rp::pio_programs::onewire::{PioOneWire, PioOneWireProgram, PioOneWireSearch};
11use embassy_time::Timer; 11use embassy_time::Timer;
12use heapless::Vec;
12use {defmt_rtt as _, panic_probe as _}; 13use {defmt_rtt as _, panic_probe as _};
13 14
14bind_interrupts!(struct Irqs { 15bind_interrupts!(struct Irqs {
@@ -21,63 +22,66 @@ async fn main(_spawner: Spawner) {
21 let mut pio = Pio::new(p.PIO0, Irqs); 22 let mut pio = Pio::new(p.PIO0, Irqs);
22 23
23 let prg = PioOneWireProgram::new(&mut pio.common); 24 let prg = PioOneWireProgram::new(&mut pio.common);
24 let onewire = PioOneWire::new(&mut pio.common, pio.sm0, p.PIN_2, &prg); 25 let mut onewire = PioOneWire::new(&mut pio.common, pio.sm0, p.PIN_2, &prg);
25 26
26 let mut sensor = Ds18b20::new(onewire); 27 info!("Starting onewire search");
27 28
28 loop { 29 let mut devices = Vec::<u64, 10>::new();
29 sensor.start().await; // Start a new measurement 30 let mut search = PioOneWireSearch::new();
30 Timer::after_secs(1).await; // Allow 1s for the measurement to finish 31 for _ in 0..10 {
31 match sensor.temperature().await { 32 if !search.is_finished() {
32 Ok(temp) => info!("temp = {:?} deg C", temp), 33 if let Some(address) = search.next(&mut onewire).await {
33 _ => error!("sensor error"), 34 if crc8(&address.to_le_bytes()) == 0 {
35 info!("Found addres: {:x}", address);
36 let _ = devices.push(address);
37 } else {
38 warn!("Found invalid address: {:x}", address);
39 }
40 }
34 } 41 }
35 Timer::after_secs(1).await;
36 } 42 }
37}
38 43
39/// DS18B20 temperature sensor driver 44 info!("Search done, found {} devices", devices.len());
40pub struct Ds18b20<'d, PIO: pio::Instance, const SM: usize> {
41 wire: PioOneWire<'d, PIO, SM>,
42}
43 45
44impl<'d, PIO: pio::Instance, const SM: usize> Ds18b20<'d, PIO, SM> { 46 loop {
45 pub fn new(wire: PioOneWire<'d, PIO, SM>) -> Self { 47 onewire.reset().await;
46 Self { wire } 48 // Skip rom and trigger conversion, we can trigger all devices on the bus immediately
47 } 49 onewire.write_bytes(&[0xCC, 0x44]).await;
48 50
49 /// Calculate CRC8 of the data 51 Timer::after_secs(1).await; // Allow 1s for the measurement to finish
50 fn crc8(data: &[u8]) -> u8 { 52
51 let mut temp; 53 // Read all devices one by one
52 let mut data_byte; 54 for device in &devices {
53 let mut crc = 0; 55 onewire.reset().await;
54 for b in data { 56 onewire.write_bytes(&[0x55]).await; // Match rom
55 data_byte = *b; 57 onewire.write_bytes(&device.to_le_bytes()).await;
56 for _ in 0..8 { 58 onewire.write_bytes(&[0xBE]).await; // Read scratchpad
57 temp = (crc ^ data_byte) & 0x01; 59
58 crc >>= 1; 60 let mut data = [0; 9];
59 if temp != 0 { 61 onewire.read_bytes(&mut data).await;
60 crc ^= 0x8C; 62 if crc8(&data) == 0 {
61 } 63 let temp = ((data[1] as u32) << 8 | data[0] as u32) as f32 / 16.;
62 data_byte >>= 1; 64 info!("Read device {:x}: {} deg C", device, temp);
65 } else {
66 warn!("Reading device {:x} failed", device);
63 } 67 }
64 } 68 }
65 crc 69 Timer::after_secs(1).await;
66 }
67
68 /// Start a new measurement. Allow at least 1000ms before getting `temperature`.
69 pub async fn start(&mut self) {
70 self.wire.write_bytes(&[0xCC, 0x44]).await;
71 } 70 }
71}
72 72
73 /// Read the temperature. Ensure >1000ms has passed since `start` before calling this. 73fn crc8(data: &[u8]) -> u8 {
74 pub async fn temperature(&mut self) -> Result<f32, ()> { 74 let mut crc = 0;
75 self.wire.write_bytes(&[0xCC, 0xBE]).await; 75 for b in data {
76 let mut data = [0; 9]; 76 let mut data_byte = *b;
77 self.wire.read_bytes(&mut data).await; 77 for _ in 0..8 {
78 match Self::crc8(&data) == 0 { 78 let temp = (crc ^ data_byte) & 0x01;
79 true => Ok(((data[1] as u32) << 8 | data[0] as u32) as f32 / 16.), 79 crc >>= 1;
80 false => Err(()), 80 if temp != 0 {
81 crc ^= 0x8C;
82 }
83 data_byte >>= 1;
81 } 84 }
82 } 85 }
86 crc
83} 87}