adc: read u32 for unipolar coding
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2e72a03b93
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723901b341
@ -129,7 +129,7 @@ impl<SPI: Transfer<u8, Error = E>, NSS: OutputPin, E: fmt::Debug> Adc<SPI, NSS>
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}
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/// Get data
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pub fn read_data(&mut self) -> Result<i32, AdcError<SPI::Error>> {
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pub fn read_data(&mut self) -> Result<u32, AdcError<SPI::Error>> {
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self.read_reg(®s::Data)
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.map(|data| data.data())
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}
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@ -160,16 +160,10 @@ impl if_mode::Data {
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def_reg!(Data, data, 0x04, 3);
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impl data::Data {
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pub fn data(&self) -> i32 {
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let raw =
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pub fn data(&self) -> u32 {
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(u32::from(self.0[0]) << 16) |
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(u32::from(self.0[1]) << 8) |
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u32::from(self.0[2]);
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if raw & 0x80_0000 != 0 {
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((raw & 0x7F_FFFF) | 0x8000_0000) as i32
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} else {
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raw as i32
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}
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u32::from(self.0[2])
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}
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}
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@ -3,7 +3,7 @@ use crate::{ad5680, ad7172, pid, steinhart_hart as sh};
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pub struct ChannelState {
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pub adc_data: Option<i32>,
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pub adc_data: Option<u32>,
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pub adc_time: Instant,
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pub dac_value: u32,
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pub pid_enabled: bool,
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@ -26,7 +26,7 @@ impl Default for ChannelState {
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impl ChannelState {
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/// Update PID state on ADC input, calculate new DAC output
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pub fn update_adc(&mut self, now: Instant, adc_data: i32) {
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pub fn update_adc(&mut self, now: Instant, adc_data: u32) {
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self.adc_data = Some(adc_data);
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self.adc_time = now;
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