put ADC in continuous sample mode
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@ -53,7 +53,6 @@ const ERR_LATCHN: u8 = 0x20; // PL5
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const ERR_RESN: u8 = 0x01; // PQ0
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const PWM_LOAD: u16 = (/*pwmclk*/16_000_000u32 / /*freq*/100_000) as u16;
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const ADC_TIMER_LOAD: u32 = /*timerclk*/16_000_000 / /*freq*/100;
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fn set_led(nr: u8, state: bool) {
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@ -240,7 +239,7 @@ fn main() {
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// fADC=32 MHz
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adc0.cc.write(|w| w.cs().syspll().clkdiv().bits(10));
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adc0.im.write(|w| w.mask0().bit(true));
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adc0.emux.write(|w| w.em0().timer());
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adc0.emux.write(|w| w.em0().always());
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adc0.ssmux0.write(|w| {
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w.mux0().bits(0) // IC_ADC
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.mux1().bits(1) // FBI_ADC
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@ -264,18 +263,6 @@ fn main() {
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nvic.enable(Interrupt::ADC0SS0);
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// Set up ADC timer
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sysctl.rcgctimer.modify(|_, w| w.r0().bit(true));
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while !sysctl.prtimer.read().r0().bit() {}
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let timer0 = tm4c129x::TIMER0.borrow(cs);
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timer0.cfg.write(|w| w.cfg()._32_bit_timer());
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timer0.tamr.write(|w| w.tamr().period());
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timer0.tailr.write(|w| unsafe { w.bits(ADC_TIMER_LOAD) });
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timer0.ctl.write(|w| w.taote().bit(true));
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timer0.adcev.write(|w| w.tatoadcen().bit(true));
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timer0.cc.write(|w| w.altclk().bit(true));
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timer0.ctl.modify(|_, w| w.taen().bit(true));
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set_emission_range(EmissionRange::Med);
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HV_PID.borrow(cs).borrow_mut().set_target(200.0);
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