mirror of
https://github.com/embassy-rs/embassy.git
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Merge pull request #2941 from nautd/kkoppul2/update_ospi
Remove OSPI generic DMA
This commit is contained in:
commit
6fa608f516
@ -5,13 +5,16 @@
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pub mod enums;
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use core::marker::PhantomData;
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use embassy_embedded_hal::{GetConfig, SetConfig};
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use embassy_hal_internal::{into_ref, PeripheralRef};
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pub use enums::*;
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use stm32_metapac::octospi::vals::{PhaseMode, SizeInBits};
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use crate::dma::{word, Transfer};
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use crate::gpio::{AFType, AnyPin, Pull, SealedPin as _};
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use crate::dma::{word, ChannelAndRequest};
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use crate::gpio::{AFType, AnyPin, Pull, SealedPin as _, Speed};
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use crate::mode::{Async, Blocking, Mode as PeriMode};
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use crate::pac::octospi::{vals, Octospi as Regs};
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use crate::rcc::RccPeripheral;
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use crate::{peripherals, Peripheral};
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@ -154,7 +157,7 @@ pub enum OspiError {
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}
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/// OSPI driver.
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pub struct Ospi<'d, T: Instance, Dma> {
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pub struct Ospi<'d, T: Instance, M: PeriMode> {
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_peri: PeripheralRef<'d, T>,
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sck: Option<PeripheralRef<'d, AnyPin>>,
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d0: Option<PeripheralRef<'d, AnyPin>>,
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@ -167,259 +170,13 @@ pub struct Ospi<'d, T: Instance, Dma> {
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d7: Option<PeripheralRef<'d, AnyPin>>,
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nss: Option<PeripheralRef<'d, AnyPin>>,
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dqs: Option<PeripheralRef<'d, AnyPin>>,
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dma: PeripheralRef<'d, Dma>,
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dma: Option<ChannelAndRequest<'d>>,
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_phantom: PhantomData<M>,
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config: Config,
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width: OspiWidth,
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}
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impl<'d, T: Instance, Dma> Ospi<'d, T, Dma> {
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/// Create new OSPI driver for a single spi external chip
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pub fn new_singlespi(
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peri: impl Peripheral<P = T> + 'd,
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sck: impl Peripheral<P = impl SckPin<T>> + 'd,
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d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
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d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
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nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
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dma: impl Peripheral<P = Dma> + 'd,
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config: Config,
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) -> Self {
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into_ref!(peri, sck, d0, d1, nss);
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sck.set_as_af_pull(sck.af_num(), AFType::OutputPushPull, Pull::None);
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sck.set_speed(crate::gpio::Speed::VeryHigh);
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nss.set_as_af_pull(nss.af_num(), AFType::OutputPushPull, Pull::Up);
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nss.set_speed(crate::gpio::Speed::VeryHigh);
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d0.set_as_af_pull(d0.af_num(), AFType::OutputPushPull, Pull::None);
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d0.set_speed(crate::gpio::Speed::VeryHigh);
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d1.set_as_af_pull(d1.af_num(), AFType::Input, Pull::None);
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d1.set_speed(crate::gpio::Speed::VeryHigh);
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Self::new_inner(
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peri,
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Some(d0.map_into()),
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Some(d1.map_into()),
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None,
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None,
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None,
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None,
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None,
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None,
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Some(sck.map_into()),
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Some(nss.map_into()),
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None,
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dma,
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config,
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OspiWidth::SING,
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false,
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)
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}
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/// Create new OSPI driver for a dualspi external chip
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pub fn new_dualspi(
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peri: impl Peripheral<P = T> + 'd,
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sck: impl Peripheral<P = impl SckPin<T>> + 'd,
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d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
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d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
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nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
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dma: impl Peripheral<P = Dma> + 'd,
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config: Config,
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) -> Self {
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into_ref!(peri, sck, d0, d1, nss);
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sck.set_as_af_pull(sck.af_num(), AFType::OutputPushPull, Pull::None);
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sck.set_speed(crate::gpio::Speed::VeryHigh);
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nss.set_as_af_pull(nss.af_num(), AFType::OutputPushPull, Pull::Up);
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nss.set_speed(crate::gpio::Speed::VeryHigh);
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d0.set_as_af_pull(d0.af_num(), AFType::OutputPushPull, Pull::None);
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d0.set_speed(crate::gpio::Speed::VeryHigh);
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d1.set_as_af_pull(d1.af_num(), AFType::OutputPushPull, Pull::None);
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d1.set_speed(crate::gpio::Speed::VeryHigh);
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Self::new_inner(
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peri,
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Some(d0.map_into()),
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Some(d1.map_into()),
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None,
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None,
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None,
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None,
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None,
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None,
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Some(sck.map_into()),
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Some(nss.map_into()),
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None,
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dma,
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config,
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OspiWidth::DUAL,
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false,
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)
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}
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/// Create new OSPI driver for a quadspi external chip
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pub fn new_quadspi(
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peri: impl Peripheral<P = T> + 'd,
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sck: impl Peripheral<P = impl SckPin<T>> + 'd,
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d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
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d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
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d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
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d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
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nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
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dma: impl Peripheral<P = Dma> + 'd,
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config: Config,
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) -> Self {
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into_ref!(peri, sck, d0, d1, d2, d3, nss);
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sck.set_as_af_pull(sck.af_num(), AFType::OutputPushPull, Pull::None);
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sck.set_speed(crate::gpio::Speed::VeryHigh);
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nss.set_as_af_pull(nss.af_num(), AFType::OutputPushPull, Pull::Up);
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nss.set_speed(crate::gpio::Speed::VeryHigh);
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d0.set_as_af_pull(d0.af_num(), AFType::OutputPushPull, Pull::None);
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d0.set_speed(crate::gpio::Speed::VeryHigh);
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d1.set_as_af_pull(d1.af_num(), AFType::OutputPushPull, Pull::None);
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d1.set_speed(crate::gpio::Speed::VeryHigh);
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d2.set_as_af_pull(d2.af_num(), AFType::OutputPushPull, Pull::None);
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d2.set_speed(crate::gpio::Speed::VeryHigh);
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d3.set_as_af_pull(d3.af_num(), AFType::OutputPushPull, Pull::None);
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d3.set_speed(crate::gpio::Speed::VeryHigh);
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Self::new_inner(
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peri,
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Some(d0.map_into()),
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Some(d1.map_into()),
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Some(d2.map_into()),
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Some(d3.map_into()),
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None,
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None,
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None,
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None,
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Some(sck.map_into()),
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Some(nss.map_into()),
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None,
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dma,
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config,
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OspiWidth::QUAD,
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false,
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)
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}
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/// Create new OSPI driver for two quadspi external chips
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pub fn new_dualquadspi(
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peri: impl Peripheral<P = T> + 'd,
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sck: impl Peripheral<P = impl SckPin<T>> + 'd,
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d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
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d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
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d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
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d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
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d4: impl Peripheral<P = impl D4Pin<T>> + 'd,
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d5: impl Peripheral<P = impl D5Pin<T>> + 'd,
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d6: impl Peripheral<P = impl D6Pin<T>> + 'd,
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d7: impl Peripheral<P = impl D7Pin<T>> + 'd,
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nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
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dma: impl Peripheral<P = Dma> + 'd,
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config: Config,
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) -> Self {
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into_ref!(peri, sck, d0, d1, d2, d3, d4, d5, d6, d7, nss);
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sck.set_as_af_pull(sck.af_num(), AFType::OutputPushPull, Pull::None);
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sck.set_speed(crate::gpio::Speed::VeryHigh);
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nss.set_as_af_pull(nss.af_num(), AFType::OutputPushPull, Pull::Up);
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nss.set_speed(crate::gpio::Speed::VeryHigh);
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d0.set_as_af_pull(d0.af_num(), AFType::OutputPushPull, Pull::None);
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d0.set_speed(crate::gpio::Speed::VeryHigh);
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d1.set_as_af_pull(d1.af_num(), AFType::OutputPushPull, Pull::None);
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d1.set_speed(crate::gpio::Speed::VeryHigh);
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d2.set_as_af_pull(d2.af_num(), AFType::OutputPushPull, Pull::None);
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d2.set_speed(crate::gpio::Speed::VeryHigh);
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d3.set_as_af_pull(d3.af_num(), AFType::OutputPushPull, Pull::None);
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d3.set_speed(crate::gpio::Speed::VeryHigh);
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d4.set_as_af_pull(d4.af_num(), AFType::OutputPushPull, Pull::None);
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d4.set_speed(crate::gpio::Speed::VeryHigh);
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d5.set_as_af_pull(d5.af_num(), AFType::OutputPushPull, Pull::None);
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d5.set_speed(crate::gpio::Speed::VeryHigh);
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d6.set_as_af_pull(d6.af_num(), AFType::OutputPushPull, Pull::None);
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d6.set_speed(crate::gpio::Speed::VeryHigh);
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d7.set_as_af_pull(d7.af_num(), AFType::OutputPushPull, Pull::None);
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d7.set_speed(crate::gpio::Speed::VeryHigh);
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Self::new_inner(
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peri,
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Some(d0.map_into()),
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Some(d1.map_into()),
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Some(d2.map_into()),
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Some(d3.map_into()),
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Some(d4.map_into()),
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Some(d5.map_into()),
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Some(d6.map_into()),
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Some(d7.map_into()),
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Some(sck.map_into()),
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Some(nss.map_into()),
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None,
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dma,
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config,
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OspiWidth::QUAD,
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true,
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)
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}
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/// Create new OSPI driver for octospi external chips
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pub fn new_octospi(
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peri: impl Peripheral<P = T> + 'd,
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sck: impl Peripheral<P = impl SckPin<T>> + 'd,
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d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
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d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
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d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
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d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
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d4: impl Peripheral<P = impl D4Pin<T>> + 'd,
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d5: impl Peripheral<P = impl D5Pin<T>> + 'd,
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d6: impl Peripheral<P = impl D6Pin<T>> + 'd,
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d7: impl Peripheral<P = impl D7Pin<T>> + 'd,
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nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
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dma: impl Peripheral<P = Dma> + 'd,
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config: Config,
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) -> Self {
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into_ref!(peri, sck, d0, d1, d2, d3, d4, d5, d6, d7, nss);
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sck.set_as_af_pull(sck.af_num(), AFType::OutputPushPull, Pull::None);
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sck.set_speed(crate::gpio::Speed::VeryHigh);
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nss.set_as_af_pull(nss.af_num(), AFType::OutputPushPull, Pull::Up);
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nss.set_speed(crate::gpio::Speed::VeryHigh);
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d0.set_as_af_pull(d0.af_num(), AFType::OutputPushPull, Pull::None);
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d0.set_speed(crate::gpio::Speed::VeryHigh);
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d1.set_as_af_pull(d1.af_num(), AFType::OutputPushPull, Pull::None);
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d1.set_speed(crate::gpio::Speed::VeryHigh);
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d2.set_as_af_pull(d2.af_num(), AFType::OutputPushPull, Pull::None);
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d2.set_speed(crate::gpio::Speed::VeryHigh);
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d3.set_as_af_pull(d3.af_num(), AFType::OutputPushPull, Pull::None);
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d3.set_speed(crate::gpio::Speed::VeryHigh);
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d4.set_as_af_pull(d4.af_num(), AFType::OutputPushPull, Pull::None);
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d4.set_speed(crate::gpio::Speed::VeryHigh);
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d5.set_as_af_pull(d5.af_num(), AFType::OutputPushPull, Pull::None);
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d5.set_speed(crate::gpio::Speed::VeryHigh);
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d6.set_as_af_pull(d6.af_num(), AFType::OutputPushPull, Pull::None);
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d6.set_speed(crate::gpio::Speed::VeryHigh);
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d7.set_as_af_pull(d7.af_num(), AFType::OutputPushPull, Pull::None);
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d7.set_speed(crate::gpio::Speed::VeryHigh);
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Self::new_inner(
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peri,
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Some(d0.map_into()),
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Some(d1.map_into()),
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Some(d2.map_into()),
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Some(d3.map_into()),
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Some(d4.map_into()),
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Some(d5.map_into()),
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Some(d6.map_into()),
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Some(d7.map_into()),
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Some(sck.map_into()),
|
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Some(nss.map_into()),
|
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None,
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dma,
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config,
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OspiWidth::OCTO,
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false,
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)
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}
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impl<'d, T: Instance, M: PeriMode> Ospi<'d, T, M> {
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fn new_inner(
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peri: impl Peripheral<P = T> + 'd,
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d0: Option<PeripheralRef<'d, AnyPin>>,
|
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@ -433,12 +190,12 @@ impl<'d, T: Instance, Dma> Ospi<'d, T, Dma> {
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sck: Option<PeripheralRef<'d, AnyPin>>,
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nss: Option<PeripheralRef<'d, AnyPin>>,
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dqs: Option<PeripheralRef<'d, AnyPin>>,
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dma: impl Peripheral<P = Dma> + 'd,
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dma: Option<ChannelAndRequest<'d>>,
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config: Config,
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width: OspiWidth,
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dual_quad: bool,
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) -> Self {
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into_ref!(peri, dma);
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into_ref!(peri);
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// System configuration
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T::enable_and_reset();
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@ -519,6 +276,7 @@ impl<'d, T: Instance, Dma> Ospi<'d, T, Dma> {
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nss,
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dqs,
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dma,
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_phantom: PhantomData,
|
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config,
|
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width,
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}
|
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@ -702,170 +460,6 @@ impl<'d, T: Instance, Dma> Ospi<'d, T, Dma> {
|
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Ok(())
|
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}
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|
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/// Blocking read with DMA transfer
|
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pub fn blocking_read_dma<W: Word>(&mut self, buf: &mut [W], transaction: TransferConfig) -> Result<(), OspiError>
|
||||
where
|
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Dma: OctoDma<T>,
|
||||
{
|
||||
if buf.is_empty() {
|
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return Err(OspiError::EmptyBuffer);
|
||||
}
|
||||
|
||||
// Wait for peripheral to be free
|
||||
while T::REGS.sr().read().busy() {}
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||||
|
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self.configure_command(&transaction, Some(buf.len()))?;
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||||
|
||||
let current_address = T::REGS.ar().read().address();
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||||
let current_instruction = T::REGS.ir().read().instruction();
|
||||
|
||||
// For a indirect read transaction, the transaction begins when the instruction/address is set
|
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T::REGS.cr().modify(|v| v.set_fmode(vals::FunctionalMode::INDIRECTREAD));
|
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if T::REGS.ccr().read().admode() == vals::PhaseMode::NONE {
|
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T::REGS.ir().write(|v| v.set_instruction(current_instruction));
|
||||
} else {
|
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T::REGS.ar().write(|v| v.set_address(current_address));
|
||||
}
|
||||
|
||||
let request = self.dma.request();
|
||||
let transfer = unsafe {
|
||||
Transfer::new_read(
|
||||
&mut self.dma,
|
||||
request,
|
||||
T::REGS.dr().as_ptr() as *mut W,
|
||||
buf,
|
||||
Default::default(),
|
||||
)
|
||||
};
|
||||
|
||||
T::REGS.cr().modify(|w| w.set_dmaen(true));
|
||||
|
||||
transfer.blocking_wait();
|
||||
|
||||
finish_dma(T::REGS);
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Blocking write with DMA transfer
|
||||
pub fn blocking_write_dma<W: Word>(&mut self, buf: &[W], transaction: TransferConfig) -> Result<(), OspiError>
|
||||
where
|
||||
Dma: OctoDma<T>,
|
||||
{
|
||||
if buf.is_empty() {
|
||||
return Err(OspiError::EmptyBuffer);
|
||||
}
|
||||
|
||||
// Wait for peripheral to be free
|
||||
while T::REGS.sr().read().busy() {}
|
||||
|
||||
self.configure_command(&transaction, Some(buf.len()))?;
|
||||
T::REGS
|
||||
.cr()
|
||||
.modify(|v| v.set_fmode(vals::FunctionalMode::INDIRECTWRITE));
|
||||
|
||||
let request = self.dma.request();
|
||||
let transfer = unsafe {
|
||||
Transfer::new_write(
|
||||
&mut self.dma,
|
||||
request,
|
||||
buf,
|
||||
T::REGS.dr().as_ptr() as *mut W,
|
||||
Default::default(),
|
||||
)
|
||||
};
|
||||
|
||||
T::REGS.cr().modify(|w| w.set_dmaen(true));
|
||||
|
||||
transfer.blocking_wait();
|
||||
|
||||
finish_dma(T::REGS);
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Asynchronous read from external device
|
||||
pub async fn read<W: Word>(&mut self, buf: &mut [W], transaction: TransferConfig) -> Result<(), OspiError>
|
||||
where
|
||||
Dma: OctoDma<T>,
|
||||
{
|
||||
if buf.is_empty() {
|
||||
return Err(OspiError::EmptyBuffer);
|
||||
}
|
||||
|
||||
// Wait for peripheral to be free
|
||||
while T::REGS.sr().read().busy() {}
|
||||
|
||||
self.configure_command(&transaction, Some(buf.len()))?;
|
||||
|
||||
let current_address = T::REGS.ar().read().address();
|
||||
let current_instruction = T::REGS.ir().read().instruction();
|
||||
|
||||
// For a indirect read transaction, the transaction begins when the instruction/address is set
|
||||
T::REGS.cr().modify(|v| v.set_fmode(vals::FunctionalMode::INDIRECTREAD));
|
||||
if T::REGS.ccr().read().admode() == vals::PhaseMode::NONE {
|
||||
T::REGS.ir().write(|v| v.set_instruction(current_instruction));
|
||||
} else {
|
||||
T::REGS.ar().write(|v| v.set_address(current_address));
|
||||
}
|
||||
|
||||
let request = self.dma.request();
|
||||
let transfer = unsafe {
|
||||
Transfer::new_read(
|
||||
&mut self.dma,
|
||||
request,
|
||||
T::REGS.dr().as_ptr() as *mut W,
|
||||
buf,
|
||||
Default::default(),
|
||||
)
|
||||
};
|
||||
|
||||
T::REGS.cr().modify(|w| w.set_dmaen(true));
|
||||
|
||||
transfer.await;
|
||||
|
||||
finish_dma(T::REGS);
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Asynchronous write to external device
|
||||
pub async fn write<W: Word>(&mut self, buf: &[W], transaction: TransferConfig) -> Result<(), OspiError>
|
||||
where
|
||||
Dma: OctoDma<T>,
|
||||
{
|
||||
if buf.is_empty() {
|
||||
return Err(OspiError::EmptyBuffer);
|
||||
}
|
||||
|
||||
// Wait for peripheral to be free
|
||||
while T::REGS.sr().read().busy() {}
|
||||
|
||||
self.configure_command(&transaction, Some(buf.len()))?;
|
||||
T::REGS
|
||||
.cr()
|
||||
.modify(|v| v.set_fmode(vals::FunctionalMode::INDIRECTWRITE));
|
||||
|
||||
let request = self.dma.request();
|
||||
let transfer = unsafe {
|
||||
Transfer::new_write(
|
||||
&mut self.dma,
|
||||
request,
|
||||
buf,
|
||||
T::REGS.dr().as_ptr() as *mut W,
|
||||
Default::default(),
|
||||
)
|
||||
};
|
||||
|
||||
T::REGS.cr().modify(|w| w.set_dmaen(true));
|
||||
|
||||
transfer.await;
|
||||
|
||||
finish_dma(T::REGS);
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Set new bus configuration
|
||||
pub fn set_config(&mut self, config: &Config) {
|
||||
// Wait for busy flag to clear
|
||||
@ -942,7 +536,470 @@ impl<'d, T: Instance, Dma> Ospi<'d, T, Dma> {
|
||||
}
|
||||
}
|
||||
|
||||
impl<'d, T: Instance, Dma> Drop for Ospi<'d, T, Dma> {
|
||||
impl<'d, T: Instance> Ospi<'d, T, Blocking> {
|
||||
/// Create new blocking OSPI driver for a single spi external chip
|
||||
pub fn new_blocking_singlespi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::Input, Speed::VeryHigh),
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
None,
|
||||
config,
|
||||
OspiWidth::SING,
|
||||
false,
|
||||
)
|
||||
}
|
||||
|
||||
/// Create new blocking OSPI driver for a dualspi external chip
|
||||
pub fn new_blocking_dualspi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
None,
|
||||
config,
|
||||
OspiWidth::DUAL,
|
||||
false,
|
||||
)
|
||||
}
|
||||
|
||||
/// Create new blocking OSPI driver for a quadspi external chip
|
||||
pub fn new_blocking_quadspi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
|
||||
d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d2, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d3, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
None,
|
||||
config,
|
||||
OspiWidth::QUAD,
|
||||
false,
|
||||
)
|
||||
}
|
||||
|
||||
/// Create new blocking OSPI driver for two quadspi external chips
|
||||
pub fn new_blocking_dualquadspi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
|
||||
d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
|
||||
d4: impl Peripheral<P = impl D4Pin<T>> + 'd,
|
||||
d5: impl Peripheral<P = impl D5Pin<T>> + 'd,
|
||||
d6: impl Peripheral<P = impl D6Pin<T>> + 'd,
|
||||
d7: impl Peripheral<P = impl D7Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d2, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d3, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d4, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d5, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d6, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d7, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
None,
|
||||
config,
|
||||
OspiWidth::QUAD,
|
||||
true,
|
||||
)
|
||||
}
|
||||
|
||||
/// Create new blocking OSPI driver for octospi external chips
|
||||
pub fn new_blocking_octospi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
|
||||
d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
|
||||
d4: impl Peripheral<P = impl D4Pin<T>> + 'd,
|
||||
d5: impl Peripheral<P = impl D5Pin<T>> + 'd,
|
||||
d6: impl Peripheral<P = impl D6Pin<T>> + 'd,
|
||||
d7: impl Peripheral<P = impl D7Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d2, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d3, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d4, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d5, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d6, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d7, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
None,
|
||||
config,
|
||||
OspiWidth::OCTO,
|
||||
false,
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
impl<'d, T: Instance> Ospi<'d, T, Async> {
|
||||
/// Create new blocking OSPI driver for a single spi external chip
|
||||
pub fn new_singlespi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
dma: impl Peripheral<P = impl OctoDma<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::Input, Speed::VeryHigh),
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
new_dma!(dma),
|
||||
config,
|
||||
OspiWidth::SING,
|
||||
false,
|
||||
)
|
||||
}
|
||||
|
||||
/// Create new blocking OSPI driver for a dualspi external chip
|
||||
pub fn new_dualspi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
dma: impl Peripheral<P = impl OctoDma<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
new_dma!(dma),
|
||||
config,
|
||||
OspiWidth::DUAL,
|
||||
false,
|
||||
)
|
||||
}
|
||||
|
||||
/// Create new blocking OSPI driver for a quadspi external chip
|
||||
pub fn new_quadspi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
|
||||
d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
dma: impl Peripheral<P = impl OctoDma<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d2, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d3, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
None,
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
new_dma!(dma),
|
||||
config,
|
||||
OspiWidth::QUAD,
|
||||
false,
|
||||
)
|
||||
}
|
||||
|
||||
/// Create new blocking OSPI driver for two quadspi external chips
|
||||
pub fn new_dualquadspi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
|
||||
d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
|
||||
d4: impl Peripheral<P = impl D4Pin<T>> + 'd,
|
||||
d5: impl Peripheral<P = impl D5Pin<T>> + 'd,
|
||||
d6: impl Peripheral<P = impl D6Pin<T>> + 'd,
|
||||
d7: impl Peripheral<P = impl D7Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
dma: impl Peripheral<P = impl OctoDma<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d2, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d3, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d4, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d5, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d6, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d7, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
new_dma!(dma),
|
||||
config,
|
||||
OspiWidth::QUAD,
|
||||
true,
|
||||
)
|
||||
}
|
||||
|
||||
/// Create new blocking OSPI driver for octospi external chips
|
||||
pub fn new_octospi(
|
||||
peri: impl Peripheral<P = T> + 'd,
|
||||
sck: impl Peripheral<P = impl SckPin<T>> + 'd,
|
||||
d0: impl Peripheral<P = impl D0Pin<T>> + 'd,
|
||||
d1: impl Peripheral<P = impl D1Pin<T>> + 'd,
|
||||
d2: impl Peripheral<P = impl D2Pin<T>> + 'd,
|
||||
d3: impl Peripheral<P = impl D3Pin<T>> + 'd,
|
||||
d4: impl Peripheral<P = impl D4Pin<T>> + 'd,
|
||||
d5: impl Peripheral<P = impl D5Pin<T>> + 'd,
|
||||
d6: impl Peripheral<P = impl D6Pin<T>> + 'd,
|
||||
d7: impl Peripheral<P = impl D7Pin<T>> + 'd,
|
||||
nss: impl Peripheral<P = impl NSSPin<T>> + 'd,
|
||||
dma: impl Peripheral<P = impl OctoDma<T>> + 'd,
|
||||
config: Config,
|
||||
) -> Self {
|
||||
Self::new_inner(
|
||||
peri,
|
||||
new_pin!(d0, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d1, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d2, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d3, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d4, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d5, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d6, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(d7, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(sck, AFType::OutputPushPull, Speed::VeryHigh),
|
||||
new_pin!(nss, AFType::OutputPushPull, Speed::VeryHigh, Pull::Up),
|
||||
None,
|
||||
new_dma!(dma),
|
||||
config,
|
||||
OspiWidth::OCTO,
|
||||
false,
|
||||
)
|
||||
}
|
||||
|
||||
/// Blocking read with DMA transfer
|
||||
pub fn blocking_read_dma<W: Word>(&mut self, buf: &mut [W], transaction: TransferConfig) -> Result<(), OspiError> {
|
||||
if buf.is_empty() {
|
||||
return Err(OspiError::EmptyBuffer);
|
||||
}
|
||||
|
||||
// Wait for peripheral to be free
|
||||
while T::REGS.sr().read().busy() {}
|
||||
|
||||
self.configure_command(&transaction, Some(buf.len()))?;
|
||||
|
||||
let current_address = T::REGS.ar().read().address();
|
||||
let current_instruction = T::REGS.ir().read().instruction();
|
||||
|
||||
// For a indirect read transaction, the transaction begins when the instruction/address is set
|
||||
T::REGS.cr().modify(|v| v.set_fmode(vals::FunctionalMode::INDIRECTREAD));
|
||||
if T::REGS.ccr().read().admode() == vals::PhaseMode::NONE {
|
||||
T::REGS.ir().write(|v| v.set_instruction(current_instruction));
|
||||
} else {
|
||||
T::REGS.ar().write(|v| v.set_address(current_address));
|
||||
}
|
||||
|
||||
let transfer = unsafe {
|
||||
self.dma
|
||||
.as_mut()
|
||||
.unwrap()
|
||||
.read(T::REGS.dr().as_ptr() as *mut W, buf, Default::default())
|
||||
};
|
||||
|
||||
T::REGS.cr().modify(|w| w.set_dmaen(true));
|
||||
|
||||
transfer.blocking_wait();
|
||||
|
||||
finish_dma(T::REGS);
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Blocking write with DMA transfer
|
||||
pub fn blocking_write_dma<W: Word>(&mut self, buf: &[W], transaction: TransferConfig) -> Result<(), OspiError> {
|
||||
if buf.is_empty() {
|
||||
return Err(OspiError::EmptyBuffer);
|
||||
}
|
||||
|
||||
// Wait for peripheral to be free
|
||||
while T::REGS.sr().read().busy() {}
|
||||
|
||||
self.configure_command(&transaction, Some(buf.len()))?;
|
||||
T::REGS
|
||||
.cr()
|
||||
.modify(|v| v.set_fmode(vals::FunctionalMode::INDIRECTWRITE));
|
||||
|
||||
let transfer = unsafe {
|
||||
self.dma
|
||||
.as_mut()
|
||||
.unwrap()
|
||||
.write(buf, T::REGS.dr().as_ptr() as *mut W, Default::default())
|
||||
};
|
||||
|
||||
T::REGS.cr().modify(|w| w.set_dmaen(true));
|
||||
|
||||
transfer.blocking_wait();
|
||||
|
||||
finish_dma(T::REGS);
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Asynchronous read from external device
|
||||
pub async fn read<W: Word>(&mut self, buf: &mut [W], transaction: TransferConfig) -> Result<(), OspiError> {
|
||||
if buf.is_empty() {
|
||||
return Err(OspiError::EmptyBuffer);
|
||||
}
|
||||
|
||||
// Wait for peripheral to be free
|
||||
while T::REGS.sr().read().busy() {}
|
||||
|
||||
self.configure_command(&transaction, Some(buf.len()))?;
|
||||
|
||||
let current_address = T::REGS.ar().read().address();
|
||||
let current_instruction = T::REGS.ir().read().instruction();
|
||||
|
||||
// For a indirect read transaction, the transaction begins when the instruction/address is set
|
||||
T::REGS.cr().modify(|v| v.set_fmode(vals::FunctionalMode::INDIRECTREAD));
|
||||
if T::REGS.ccr().read().admode() == vals::PhaseMode::NONE {
|
||||
T::REGS.ir().write(|v| v.set_instruction(current_instruction));
|
||||
} else {
|
||||
T::REGS.ar().write(|v| v.set_address(current_address));
|
||||
}
|
||||
|
||||
let transfer = unsafe {
|
||||
self.dma
|
||||
.as_mut()
|
||||
.unwrap()
|
||||
.read(T::REGS.dr().as_ptr() as *mut W, buf, Default::default())
|
||||
};
|
||||
|
||||
T::REGS.cr().modify(|w| w.set_dmaen(true));
|
||||
|
||||
transfer.await;
|
||||
|
||||
finish_dma(T::REGS);
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Asynchronous write to external device
|
||||
pub async fn write<W: Word>(&mut self, buf: &[W], transaction: TransferConfig) -> Result<(), OspiError> {
|
||||
if buf.is_empty() {
|
||||
return Err(OspiError::EmptyBuffer);
|
||||
}
|
||||
|
||||
// Wait for peripheral to be free
|
||||
while T::REGS.sr().read().busy() {}
|
||||
|
||||
self.configure_command(&transaction, Some(buf.len()))?;
|
||||
T::REGS
|
||||
.cr()
|
||||
.modify(|v| v.set_fmode(vals::FunctionalMode::INDIRECTWRITE));
|
||||
|
||||
let transfer = unsafe {
|
||||
self.dma
|
||||
.as_mut()
|
||||
.unwrap()
|
||||
.write(buf, T::REGS.dr().as_ptr() as *mut W, Default::default())
|
||||
};
|
||||
|
||||
T::REGS.cr().modify(|w| w.set_dmaen(true));
|
||||
|
||||
transfer.await;
|
||||
|
||||
finish_dma(T::REGS);
|
||||
|
||||
Ok(())
|
||||
}
|
||||
}
|
||||
|
||||
impl<'d, T: Instance, M: PeriMode> Drop for Ospi<'d, T, M> {
|
||||
fn drop(&mut self) {
|
||||
self.sck.as_ref().map(|x| x.set_as_disconnected());
|
||||
self.d0.as_ref().map(|x| x.set_as_disconnected());
|
||||
@ -1005,7 +1062,7 @@ foreach_peripheral!(
|
||||
};
|
||||
);
|
||||
|
||||
impl<'d, T: Instance, Dma> SetConfig for Ospi<'d, T, Dma> {
|
||||
impl<'d, T: Instance, M: PeriMode> SetConfig for Ospi<'d, T, M> {
|
||||
type Config = Config;
|
||||
type ConfigError = ();
|
||||
fn set_config(&mut self, config: &Self::Config) -> Result<(), ()> {
|
||||
@ -1014,7 +1071,7 @@ impl<'d, T: Instance, Dma> SetConfig for Ospi<'d, T, Dma> {
|
||||
}
|
||||
}
|
||||
|
||||
impl<'d, T: Instance, Dma> GetConfig for Ospi<'d, T, Dma> {
|
||||
impl<'d, T: Instance, M: PeriMode> GetConfig for Ospi<'d, T, M> {
|
||||
type Config = Config;
|
||||
fn get_config(&self) -> Self::Config {
|
||||
self.get_config()
|
||||
|
Loading…
Reference in New Issue
Block a user