Robin Mueller
4160df667f
- Added basic accelerometer example. Board in not populated so it is not complete, but it provides a starting point - Added ADC base library and example building on the new `max116xx-10bit` device driver crate
187 lines
5.9 KiB
Rust
187 lines
5.9 KiB
Rust
//! MAX11619 ADC example applikcation
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#![no_main]
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#![no_std]
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use core::panic;
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use cortex_m_rt::entry;
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use embedded_hal::spi;
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use panic_rtt_target as _;
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use rtt_target::{rprintln, rtt_init_print};
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use va108xx_hal::{
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gpio::PinsA,
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pac::{self, interrupt, SPIB},
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prelude::*,
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spi::{Spi, SpiBase, SpiConfig, TransferConfig},
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timer::{default_ms_irq_handler, set_up_ms_timer, Delay},
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utility::*,
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};
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use vorago_reb1::max11619::{
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max11619_externally_clocked, max11619_internally_clocked, EocPin, AN2_CHANNEL,
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POTENTIOMETER_CHANNEL,
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};
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#[derive(Debug, PartialEq, Copy, Clone)]
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pub enum ExampleMode {
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UsingEoc,
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NotUsingEoc,
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}
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#[derive(Debug, PartialEq, Copy, Clone)]
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pub enum ReadMode {
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Single,
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Multiple,
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MultipleNToHighest,
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}
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const EXAMPLE_MODE: ExampleMode = ExampleMode::NotUsingEoc;
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const READ_MODE: ReadMode = ReadMode::Multiple;
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#[entry]
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fn main() -> ! {
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rtt_init_print!();
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rprintln!("-- Vorago ADC Example --");
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let mut dp = pac::Peripherals::take().unwrap();
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let tim0 = set_up_ms_timer(
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&mut dp.SYSCONFIG,
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&mut dp.IRQSEL,
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50.mhz().into(),
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dp.TIM0,
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interrupt::OC0,
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);
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let delay = Delay::new(tim0);
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unsafe {
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cortex_m::peripheral::NVIC::unmask(pac::Interrupt::OC0);
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}
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let pinsa = PinsA::new(&mut dp.SYSCONFIG, None, dp.PORTA);
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let mut spi_cfg = SpiConfig::default();
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spi_cfg.scrdv = 0x07;
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let (sck, mosi, miso) = (
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pinsa.pa20.into_funsel_2(),
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pinsa.pa19.into_funsel_2(),
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pinsa.pa18.into_funsel_2(),
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);
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port_mux(&mut dp.IOCONFIG, PortSel::PortB, 16, Funsel::Funsel1).ok();
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// port_mux(&mut dp.IOCONFIG, PortSel::PortB, 17, Funsel::Funsel1).ok();
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port_mux(&mut dp.IOCONFIG, PortSel::PortB, 18, Funsel::Funsel1).ok();
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port_mux(&mut dp.IOCONFIG, PortSel::PortB, 19, Funsel::Funsel1).ok();
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// Set the accelerometer chip select low in case the board slot is populated
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let mut accel_cs = pinsa.pa16.into_push_pull_output();
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accel_cs
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.set_high()
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.expect("Setting accelerometer chip select high failed");
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let transfer_cfg = TransferConfig::new(
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3.mhz(),
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spi::MODE_0,
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Some(pinsa.pa17.into_funsel_2()),
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true,
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false,
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);
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let spi = Spi::spib(
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dp.SPIB,
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(sck, miso, mosi),
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50.mhz(),
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spi_cfg,
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Some(&mut dp.SYSCONFIG),
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Some(&transfer_cfg.downgrade()),
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)
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.downgrade();
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match EXAMPLE_MODE {
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ExampleMode::NotUsingEoc => spi_example_externally_clocked(spi, delay),
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ExampleMode::UsingEoc => {
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spi_example_internally_clocked(spi, delay, pinsa.pa14.into_floating_input());
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}
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}
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}
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#[interrupt]
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fn OC0() {
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default_ms_irq_handler();
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}
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fn spi_example_externally_clocked(spi: SpiBase<SPIB>, mut delay: Delay) -> ! {
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let mut adc = max11619_externally_clocked(spi)
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.expect("Creating externally clocked MAX11619 device failed");
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let mut cmd_buf: [u8; 32] = [0; 32];
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let mut counter = 0;
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loop {
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rprintln!("-- Measurement {} --", counter);
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match READ_MODE {
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ReadMode::Single => {
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rprintln!("Reading single potentiometer channel");
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let pot_val = match adc.read_single_channel(&mut cmd_buf, POTENTIOMETER_CHANNEL) {
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Ok(pot_val) => pot_val,
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_ => {
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panic!("Creating externally clocked MAX11619 ADC failed");
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}
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};
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rprintln!("Single channel read:");
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rprintln!("\tPotentiometer value: {}", pot_val);
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}
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ReadMode::Multiple => {
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let mut res_buf: [u16; 4] = [0; 4];
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match adc.read_multiple_channels_0_to_n(
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&mut cmd_buf,
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&mut res_buf.iter_mut(),
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POTENTIOMETER_CHANNEL,
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) {
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Ok(_) => {
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rprintln!("Multi channel read from 0 to 3:");
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rprintln!("\tAN0 value: {}", res_buf[0]);
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rprintln!("\tAN1 value: {}", res_buf[1]);
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rprintln!("\tAN2 value: {}", res_buf[2]);
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rprintln!("\tAN3 / Potentiometer value: {}", res_buf[3]);
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}
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_ => {
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panic!("Multi-Channel read failed");
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}
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}
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}
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ReadMode::MultipleNToHighest => {
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let mut res_buf: [u16; 2] = [0; 2];
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match adc.read_multiple_channels_n_to_highest(
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&mut cmd_buf,
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&mut res_buf.iter_mut(),
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AN2_CHANNEL,
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) {
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Ok(_) => {
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rprintln!("Multi channel read from 2 to 3:");
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rprintln!("\tAN2 value: {}", res_buf[0]);
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rprintln!("\tAN3 / Potentiometer value: {}", res_buf[1]);
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}
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_ => {
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panic!("Multi-Channel read failed");
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}
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}
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}
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}
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counter += 1;
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delay.delay_ms(500);
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}
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}
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fn spi_example_internally_clocked(spi: SpiBase<SPIB>, mut delay: Delay, mut eoc_pin: EocPin) -> ! {
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let mut adc = max11619_internally_clocked(spi).expect("Creaintg MAX116xx device failed");
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let mut counter = 0;
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loop {
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rprintln!("-- Measurement {} --", counter);
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match adc.request_single_channel(POTENTIOMETER_CHANNEL) {
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Ok(_) => (),
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_ => panic!("Requesting single channel value failed"),
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};
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let pot_val = match nb::block!(adc.get_single_channel(&mut eoc_pin)) {
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Ok(pot_val) => pot_val,
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_ => panic!("Reading single channel value failed"),
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};
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rprintln!("\tPotentiometer value: {}", pot_val);
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counter += 1;
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delay.delay_ms(500);
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}
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}
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