rp/pio: handle all pio irqs in one handler
dma does this too, also with 12 bits to check. this decreases code size significantly (increasing speed when the cache is cold), frees up an interrupt handler, and avoids read-modify-write cycles (which makes each processed flag cheaper). due to more iterations per handler invocation the actual runtime of the handler body remains roughly the same (slightly faster at O2, slightly slower at Oz). notably wakers are now kept in one large array indexed by the irq register bit number instead of three different arrays, this allows for machine code-level optimizations of waker lookups.
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ce04b732d1
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@ -12,14 +12,29 @@ use crate::dma::{self, Channel, Transfer};
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use crate::gpio::sealed::Pin as SealedPin;
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use crate::gpio::{Drive, Pin, Pull, SlewRate};
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use crate::pac::dma::vals::{DataSize, TreqSel};
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use crate::{interrupt, pac, peripherals};
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use crate::{interrupt, pac, peripherals, RegExt};
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struct Wakers([AtomicWaker; 12]);
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impl Wakers {
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#[inline(always)]
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fn fifo_in(&self) -> &[AtomicWaker] {
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&self.0[0..4]
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}
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#[inline(always)]
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fn fifo_out(&self) -> &[AtomicWaker] {
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&self.0[4..8]
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}
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#[inline(always)]
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fn irq(&self) -> &[AtomicWaker] {
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&self.0[8..12]
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}
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}
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const PIOS: [&pac::pio::Pio; 2] = [&pac::PIO0, &pac::PIO1];
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const NEW_AW: AtomicWaker = AtomicWaker::new();
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const PIO_WAKERS_INIT: [AtomicWaker; 4] = [NEW_AW; 4];
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static FIFO_OUT_WAKERS: [[AtomicWaker; 4]; 2] = [PIO_WAKERS_INIT; 2];
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static FIFO_IN_WAKERS: [[AtomicWaker; 4]; 2] = [PIO_WAKERS_INIT; 2];
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static IRQ_WAKERS: [[AtomicWaker; 4]; 2] = [PIO_WAKERS_INIT; 2];
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const PIO_WAKERS_INIT: Wakers = Wakers([NEW_AW; 12]);
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static WAKERS: [Wakers; 2] = [PIO_WAKERS_INIT; 2];
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pub enum FifoJoin {
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/// Both TX and RX fifo is enabled
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@ -40,83 +55,28 @@ const RXNEMPTY_MASK: u32 = 1 << 0;
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const TXNFULL_MASK: u32 = 1 << 4;
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const SMIRQ_MASK: u32 = 1 << 8;
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#[interrupt]
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unsafe fn PIO0_IRQ_1() {
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use crate::pac;
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let ints = pac::PIO0.irqs(1).ints().read().0;
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let inte = pac::PIO0.irqs(1).inte();
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for i in 0..4 {
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// Check RXNEMPTY
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if ints & (RXNEMPTY_MASK << i) != 0 {
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inte.modify(|m| {
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m.0 &= !(RXNEMPTY_MASK << i);
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});
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FIFO_IN_WAKERS[0][i].wake();
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}
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// Check IRQ flgs
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if ints & (SMIRQ_MASK << i) != 0 {
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inte.modify(|m| {
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m.0 &= !(SMIRQ_MASK << i);
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});
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IRQ_WAKERS[0][i].wake();
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}
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}
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}
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#[interrupt]
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unsafe fn PIO1_IRQ_1() {
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use crate::pac;
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let ints = pac::PIO1.irqs(1).ints().read().0;
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let inte = pac::PIO1.irqs(1).inte();
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for i in 0..4 {
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// Check all RXNEMPTY
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if ints & (RXNEMPTY_MASK << i) != 0 {
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inte.modify(|m| {
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m.0 &= !(RXNEMPTY_MASK << i);
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});
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FIFO_IN_WAKERS[1][i].wake();
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}
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// Check IRQ flgs
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if ints & (SMIRQ_MASK << i) != 0 {
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inte.modify(|m| {
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m.0 &= !(SMIRQ_MASK << i);
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});
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IRQ_WAKERS[1][i].wake();
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}
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}
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}
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#[interrupt]
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unsafe fn PIO0_IRQ_0() {
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use crate::pac;
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let ints = pac::PIO0.irqs(0).ints().read().0;
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let inte = pac::PIO0.irqs(0).inte();
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//debug!("!{:04x}",ints);
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// Check all TXNFULL
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for i in 0..4 {
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if ints & (TXNFULL_MASK << i) != 0 {
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inte.modify(|m| {
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m.0 &= !(TXNFULL_MASK << i);
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});
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FIFO_OUT_WAKERS[0][i].wake();
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for bit in 0..12 {
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if ints & (1 << bit) != 0 {
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WAKERS[0].0[bit].wake();
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}
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}
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pac::PIO0.irqs(0).inte().write_clear(|m| m.0 = ints);
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}
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#[interrupt]
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unsafe fn PIO1_IRQ_0() {
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use crate::pac;
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let ints = pac::PIO1.irqs(0).ints().read().0;
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let inte = pac::PIO1.irqs(0).inte();
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// Check all TXNFULL
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for i in 0..4 {
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if ints & (TXNFULL_MASK << i) != 0 {
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inte.modify(|m| {
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m.0 &= !(TXNFULL_MASK << i);
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});
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FIFO_OUT_WAKERS[1][i].wake();
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for bit in 0..12 {
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if ints & (1 << bit) != 0 {
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WAKERS[1].0[bit].wake();
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}
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}
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pac::PIO1.irqs(0).inte().write_clear(|m| m.0 = ints);
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}
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/// Future that waits for TX-FIFO to become writable
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@ -131,7 +91,7 @@ impl<'a, PIO: PioInstance, SM: PioStateMachine + Unpin> FifoOutFuture<'a, PIO, S
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pub fn new(sm: &'a mut SM, value: u32) -> Self {
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unsafe {
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critical_section::with(|_| {
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let irq = PIO::IrqOut::steal();
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let irq = PIO::Irq::steal();
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irq.set_priority(interrupt::Priority::P3);
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irq.enable();
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@ -153,9 +113,9 @@ impl<'d, PIO: PioInstance, SM: PioStateMachine + Unpin> Future for FifoOutFuture
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if self.get_mut().sm.try_push_tx(value) {
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Poll::Ready(())
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} else {
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FIFO_OUT_WAKERS[PIO::PIO_NO as usize][SM::Sm::SM_NO as usize].register(cx.waker());
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WAKERS[PIO::PIO_NO as usize].fifo_out()[SM::Sm::SM_NO as usize].register(cx.waker());
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unsafe {
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let irq = PIO::IrqOut::steal();
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let irq = PIO::Irq::steal();
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irq.disable();
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critical_section::with(|_| {
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PIOS[PIO::PIO_NO as usize].irqs(0).inte().modify(|m| {
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@ -193,7 +153,7 @@ impl<'a, PIO: PioInstance, SM: PioStateMachine> FifoInFuture<'a, PIO, SM> {
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pub fn new(sm: &'a mut SM) -> Self {
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unsafe {
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critical_section::with(|_| {
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let irq = PIO::IrqIn::steal();
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let irq = PIO::Irq::steal();
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irq.set_priority(interrupt::Priority::P3);
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irq.enable();
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@ -213,12 +173,12 @@ impl<'d, PIO: PioInstance, SM: PioStateMachine> Future for FifoInFuture<'d, PIO,
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if let Some(v) = self.sm.try_pull_rx() {
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Poll::Ready(v)
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} else {
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FIFO_IN_WAKERS[PIO::PIO_NO as usize][SM::Sm::SM_NO as usize].register(cx.waker());
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WAKERS[PIO::PIO_NO as usize].fifo_in()[SM::Sm::SM_NO as usize].register(cx.waker());
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unsafe {
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let irq = PIO::IrqIn::steal();
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let irq = PIO::Irq::steal();
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irq.disable();
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critical_section::with(|_| {
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PIOS[PIO::PIO_NO as usize].irqs(1).inte().modify(|m| {
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PIOS[PIO::PIO_NO as usize].irqs(0).inte().modify(|m| {
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m.0 |= RXNEMPTY_MASK << SM::Sm::SM_NO;
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});
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});
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@ -234,7 +194,7 @@ impl<'d, PIO: PioInstance, SM: PioStateMachine> Drop for FifoInFuture<'d, PIO, S
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fn drop(&mut self) {
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unsafe {
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critical_section::with(|_| {
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PIOS[PIO::PIO_NO as usize].irqs(1).inte().modify(|m| {
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PIOS[PIO::PIO_NO as usize].irqs(0).inte().modify(|m| {
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m.0 &= !(RXNEMPTY_MASK << SM::Sm::SM_NO);
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});
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});
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@ -253,7 +213,7 @@ impl<'a, PIO: PioInstance> IrqFuture<PIO> {
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pub fn new(irq_no: u8) -> Self {
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unsafe {
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critical_section::with(|_| {
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let irq = PIO::IrqSm::steal();
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let irq = PIO::Irq::steal();
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irq.set_priority(interrupt::Priority::P3);
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irq.enable();
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@ -286,12 +246,12 @@ impl<'d, PIO: PioInstance> Future for IrqFuture<PIO> {
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return Poll::Ready(());
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}
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IRQ_WAKERS[PIO::PIO_NO as usize][self.irq_no as usize].register(cx.waker());
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WAKERS[PIO::PIO_NO as usize].irq()[self.irq_no as usize].register(cx.waker());
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unsafe {
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let irq = PIO::IrqSm::steal();
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let irq = PIO::Irq::steal();
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irq.disable();
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critical_section::with(|_| {
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PIOS[PIO::PIO_NO as usize].irqs(1).inte().modify(|m| {
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PIOS[PIO::PIO_NO as usize].irqs(0).inte().modify(|m| {
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m.0 |= SMIRQ_MASK << self.irq_no;
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});
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});
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@ -305,7 +265,7 @@ impl<'d, PIO: PioInstance> Drop for IrqFuture<PIO> {
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fn drop(&mut self) {
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unsafe {
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critical_section::with(|_| {
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PIOS[PIO::PIO_NO as usize].irqs(1).inte().modify(|m| {
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PIOS[PIO::PIO_NO as usize].irqs(0).inte().modify(|m| {
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m.0 &= !(SMIRQ_MASK << self.irq_no);
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});
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});
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@ -1223,23 +1183,17 @@ pub struct PioInstanceBase<const PIO_NO: u8> {}
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pub trait PioInstance: Unpin {
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const PIO_NO: u8;
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type IrqOut: Interrupt;
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type IrqIn: Interrupt;
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type IrqSm: Interrupt;
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type Irq: Interrupt;
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}
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impl PioInstance for PioInstanceBase<0> {
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const PIO_NO: u8 = 0;
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type IrqOut = interrupt::PIO0_IRQ_0;
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type IrqIn = interrupt::PIO0_IRQ_1;
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type IrqSm = interrupt::PIO0_IRQ_1;
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type Irq = interrupt::PIO0_IRQ_0;
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}
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impl PioInstance for PioInstanceBase<1> {
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const PIO_NO: u8 = 1;
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type IrqOut = interrupt::PIO1_IRQ_0;
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type IrqIn = interrupt::PIO1_IRQ_1;
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type IrqSm = interrupt::PIO1_IRQ_1;
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type Irq = interrupt::PIO1_IRQ_0;
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}
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pub type Pio0 = PioInstanceBase<0>;
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