attenuator: fix return data
This commit is contained in:
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2d7302bdca
commit
dbea9aba30
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@ -1,5 +1,5 @@
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[target.thumbv7em-none-eabihf]
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[target.thumbv7em-none-eabihf]
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runner = "gdb -q -x gdb_config/fpga_config.gdb"
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runner = "gdb -q -x gdb_config/openocd.gdb"
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rustflags = [
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rustflags = [
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"-C", "link-arg=-Tlink.x",
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"-C", "link-arg=-Tlink.x",
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]
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]
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@ -20,7 +20,7 @@ from migen.build.generic_platform import *
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# Filter out SPI record
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# Filter out SPI record
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_io = [record for record in _io if record[0] != "spi"]
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_io = [record for record in _io if record[0] != "spi"]
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# Reinsert new SPI record
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# Reinsert new SPI record, without MISO
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_io.append(
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_io.append(
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("spi", 0,
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("spi", 0,
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Subsignal("cs" , Pins("B13 B14 B15")),
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Subsignal("cs" , Pins("B13 B14 B15")),
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@ -31,6 +31,15 @@ _io.append(
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)
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)
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)
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)
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# Insert LVDS input
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_io.append(
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("eem_in", 2,
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Subsignal("p", Pins("C1")),
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Subsignal("n", Pins("C2")),
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IOStandard("LVDS25"),
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)
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)
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# Inherit Platform to gain the programmed clock attribute
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# Inherit Platform to gain the programmed clock attribute
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class HumpbackPlatform(Platform):
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class HumpbackPlatform(Platform):
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@ -34,16 +34,24 @@ where
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self.data[i] = self.data[i] << 2;
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self.data[i] = self.data[i] << 2;
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}
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}
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let mut clone = self.data.clone();
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let mut clone = self.data.clone();
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// Transmit SPI once to set attenuation
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if self.spi.transfer(&mut clone).map_err(Error::SPI).is_err() {
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return Err(Error::AttenuatorError);
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}
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// Transmit the same data again, to get the return value
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// Report the data returned by SPI, or an error
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clone = self.data.clone();
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match self.spi.transfer(&mut clone).map_err(Error::SPI) {
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match self.spi.transfer(&mut clone).map_err(Error::SPI) {
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Ok(arr) => {
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Ok(arr) => {
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Ok(self.data.clone())
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Ok([arr[0], arr[1], arr[2], arr[3]])
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},
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},
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err => Err(Error::AttenuatorError)
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err => Err(Error::AttenuatorError)
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}
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}
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}
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}
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pub fn set_channel_attenuation(&mut self, channel: u8, attenuation: f32) -> Result<u8, Error<E>> {
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pub fn set_channel_attenuation(&mut self, channel: u8, attenuation: f32) -> Result<u8, Error<E>> {
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assert!((channel < 4) && (channel >= 0));
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assert!(channel < 4);
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let mut arr: [f32; 4] = self.get_attenuation();
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let mut arr: [f32; 4] = self.get_attenuation();
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arr[channel as usize] = attenuation;
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arr[channel as usize] = attenuation;
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match self.set_attenuation(arr) {
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match self.set_attenuation(arr) {
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@ -53,7 +61,7 @@ where
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}
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}
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pub fn get_channel_attenuation(&mut self, channel: u8) -> f32 {
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pub fn get_channel_attenuation(&mut self, channel: u8) -> f32 {
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assert!((channel < 4) && (channel >= 0));
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assert!(channel < 4);
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(self.data[channel as usize] as f32)/8.0
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(self.data[channel as usize] as f32)/8.0
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}
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}
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@ -60,7 +60,7 @@ where
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{
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{
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type Error = Error<E>;
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type Error = Error<E>;
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fn select_chip(&mut self, chip: u8) -> Result<(), Self::Error> {
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fn select_chip(&mut self, chip: u8) -> Result<(), Self::Error> {
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hprintln!("Select chip: {}", chip).unwrap();
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hprintln!("Selected chip {}.", chip);
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match chip & (1 << 0) {
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match chip & (1 << 0) {
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0 => self.chip_select.0.set_low(),
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0 => self.chip_select.0.set_low(),
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_ => self.chip_select.0.set_high(),
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_ => self.chip_select.0.set_high(),
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63
src/main.rs
63
src/main.rs
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@ -49,6 +49,7 @@ fn main() -> ! {
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let gpiob = dp.GPIOB.split(ccdr.peripheral.GPIOB);
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let gpiob = dp.GPIOB.split(ccdr.peripheral.GPIOB);
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let gpioc = dp.GPIOC.split(ccdr.peripheral.GPIOC);
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let gpioc = dp.GPIOC.split(ccdr.peripheral.GPIOC);
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let gpiod = dp.GPIOD.split(ccdr.peripheral.GPIOD);
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let gpiod = dp.GPIOD.split(ccdr.peripheral.GPIOD);
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let gpioe = dp.GPIOE.split(ccdr.peripheral.GPIOE);
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let gpiof = dp.GPIOF.split(ccdr.peripheral.GPIOF);
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let gpiof = dp.GPIOF.split(ccdr.peripheral.GPIOF);
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// Setup CDONE for checking
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// Setup CDONE for checking
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@ -71,8 +72,11 @@ fn main() -> ! {
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let sclk = gpioa.pa5.into_alternate_af5();
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let sclk = gpioa.pa5.into_alternate_af5();
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let mosi = gpiob.pb5.into_alternate_af5();
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let mosi = gpiob.pb5.into_alternate_af5();
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let miso = gpioa.pa6.into_alternate_af5();
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let miso = gpioa.pa6.into_alternate_af5();
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// let mut sclk = gpioa.pa5.into_push_pull_output();
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// let mut mosi = gpiob.pb5.into_push_pull_output();
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// let mut miso = gpioa.pa6.into_pull_up_input();
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let (cs0, cs1, cs2) = (
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let (mut cs0, mut cs1, mut cs2) = (
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gpiob.pb12.into_push_pull_output(),
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gpiob.pb12.into_push_pull_output(),
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gpioa.pa15.into_push_pull_output(),
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gpioa.pa15.into_push_pull_output(),
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gpioc.pc7.into_push_pull_output(),
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gpioc.pc7.into_push_pull_output(),
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@ -81,40 +85,45 @@ fn main() -> ! {
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let mut spi = dp.SPI1.spi(
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let mut spi = dp.SPI1.spi(
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(sclk, miso, mosi),
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(sclk, miso, mosi),
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spi::MODE_0,
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spi::MODE_0,
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12.mhz(),
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3.mhz(),
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ccdr.peripheral.SPI1,
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ccdr.peripheral.SPI1,
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&ccdr.clocks,
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&ccdr.clocks,
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);
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);
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let mut switch = CPLD::new(spi, (cs0, cs1, cs2));
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// debug led
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let mut yellow = gpioe.pe1.into_push_pull_output();
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yellow.set_high().unwrap();
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let mut switch = CPLD::new(spi, (cs0, cs1, cs2));
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let parts = switch.split();
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let parts = switch.split();
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let mut attenuator = Attenuator::new(parts.spi2);
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let mut attenuation :[f32; 4] = [24.0, -5.0, 32.0, 10.2];
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attenuator.set_attenuation(attenuation);
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attenuator.set_channel_attenuation(2, 15.3);
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let mut config = ConfigRegister::new(parts.spi1);
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let mut config = ConfigRegister::new(parts.spi1);
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// Target configuration: 0x000FF1CE
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let mut att = Attenuator::new(parts.spi2);
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hprintln!("{:#06X}", config.set_configurations(&mut [
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(CFGMask::RF_SW, 0xE),
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(CFGMask::LED, 0xC),
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(CFGMask::PROFILE, 0x1),
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(CFGMask::IO_UPDATE, 0x1),
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(CFGMask::MASK_NU, 0xF),
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(CFGMask::CLK_SEL0, 0x1),
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(CFGMask::SYNC_SEL, 0x1),
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(CFGMask::RST, 0x1),
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(CFGMask::IO_RST, 0x0),
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(CFGMask::CLK_SEL1, 0x0),
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(CFGMask::DIV, 0x0),
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]).unwrap()).unwrap();
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let mut dds = DDS::new(parts.spi4);
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loop {
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loop {
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nop();
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// let mut counter = config.get_configuration(CFGMask::RF_SW);
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}
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// hprintln!("{}", counter);
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// config.set_configurations(&mut [
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// (CFGMask::RF_SW, ((counter + 1)%16) as u32)
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// ]).unwrap();
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hprintln!("{:?}", att.set_attenuation([33.0, -1.0, 24.0, 12.0]).unwrap()).unwrap();
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hprintln!("{:?}", att.set_attenuation([0.0, 0.0, 0.0, 0.0]).unwrap()).unwrap();
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}
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/*
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cs0.set_low().unwrap();
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cs1.set_low().unwrap();
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cs2.set_low().unwrap();
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let mut arr: [u8; 4] = [0x12, 0x34, 0x56, 0x78];
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loop {
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arr[0] = 0x12;
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arr[1] = 0x34;
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arr[2] = 0x56;
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arr[3] = 0x78;
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cs1.set_high().unwrap();
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hprintln!("{:?}", spi.transfer(&mut arr).unwrap()).unwrap();
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cs1.set_low().unwrap();
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}
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*/
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}
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}
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