scpi: refine clock source cmd
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412308b39d
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b11891e57f
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@ -183,7 +183,7 @@ fn main() -> ! {
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let gpiof = dp.GPIOF.split(ccdr.peripheral.GPIOF);
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let gpiog = dp.GPIOG.split(ccdr.peripheral.GPIOG);
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gpiob.pb3.into_alternate_af0().set_speed(Speed::VeryHigh);
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// gpiob.pb3.into_alternate_af0().set_speed(Speed::VeryHigh);
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logger::init();
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68
src/scpi.rs
68
src/scpi.rs
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@ -28,7 +28,9 @@ use scpi::{
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scpi_status,
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scpi_system,
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};
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// use scpi::suffix::{Frequency};
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use scpi::suffix::{Amplitude, Db};
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use uom::si::frequency::{gigahertz, hertz, kilohertz, megahertz, Frequency};
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use uom::si::{f32, f64};
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use embedded_hal::blocking::spi::Transfer;
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@ -39,6 +41,8 @@ use crate::{
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ClockSource,
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};
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use log::{trace, debug, info, warn};
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#[macro_export]
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macro_rules! recursive_scpi_tree {
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// Handle optional headers (end-node)
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@ -232,33 +236,63 @@ impl<T:Device + UrukulTraits> Command<T> for ClockSourceCommand {
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nquery!();
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fn event(&self, context: &mut Context<T>, args: &mut Tokenizer) -> Result<()> {
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let data: &[u8] = match args.next_data(false)? {
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let s: &[u8] = match args.next_data(false)? {
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Some(Token::CharacterProgramData(s)) => s,
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_ => return Err(ErrorCode::IllegalParameterValue.into()),
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};
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// let max_value = f64::Frequency::new::<hertz>(1_000_000_000_000.0);
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// let min_value = f64::Frequency::new::<hertz>(0.0);
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/*
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debug!("Converted data: {:?}", data);
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// let freq: f64::Frequency = args.next_data(true)?
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// .map_or(Ok(f64::Frequency::new::<hertz>(0.0)),
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// |t| {
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// t.numeric(|s| match s {
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// NumericValues::Maximum => Ok(f64::Frequency::new::<hertz>(max_value)),
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// NumericValues::Minimum => Ok(f64::Frequency::new::<hertz>(min_value)),
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// _ => Err(ErrorCode::IllegalParameterValue.into()),
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// })
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// })?;
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if let Ok(str_param) = str::from_utf8(data) {
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if let Ok(cmd) = match str_param {
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"OSC" => context.device.set_clock_source(ClockSource::OSC),
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"MMCX" => context.device.set_clock_source(ClockSource::MMCX),
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"SMA" => context.device.set_clock_source(ClockSource::SMA),
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_ => return Err(ErrorCode::IllegalParameterValue.into()),
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} {
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return Ok(());
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_ => {
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return Err(ErrorCode::IllegalParameterValue.into());
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}
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} {
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debug!("Finished parsing source");
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}
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} else {
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return Err(ErrorCode::IllegalParameterValue.into());
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}
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let s: &[u8] = args
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.next_data(false)?
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.unwrap_or(Token::CharacterProgramData(b"default"))
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.try_into()?;
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*/
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let s_str: &str = str::from_utf8(s)
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.map_err(|_| ErrorCode::CharacterDataError)?;
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match s_str {
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source if source.eq_ignore_ascii_case("OSC") => {
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trace!("Changing clock source to OSC");
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context.device.set_clock_source(ClockSource::OSC);
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},
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source if source.eq_ignore_ascii_case("MMCX") => {
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trace!("Changing clock source to MMCX");
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context.device.set_clock_source(ClockSource::MMCX);
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},
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source if source.eq_ignore_ascii_case("SMA") => {
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trace!("Changing clocksource to SMA");
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context.device.set_clock_source(ClockSource::SMA);
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},
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_ => {
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warn!("Clock selection failed! Argument error!");
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return Err(ErrorCode::IllegalParameterValue.into());
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},
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};
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Err(ErrorCode::IllegalParameterValue.into())
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let frequency: f64::Frequency = args.next_data(true)?
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.map_or(Ok(f64::Frequency::new::<hertz>(0.0)), |t| {
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t.numeric(|s| match s {
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NumericValues::Default => Ok(f64::Frequency::new::<hertz>(0.0)),
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_ => Err(ErrorCode::IllegalParameterValue.into()),
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})
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})?;
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debug!("Received frequency: {:?}", frequency);
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Ok(())
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}
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}
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