it's alive

This commit is contained in:
Dario Nieuwenhuis 2021-04-06 01:31:29 +02:00
parent 97ca54fa66
commit aa65d5ccaf
12 changed files with 491 additions and 477 deletions

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@ -7,6 +7,7 @@ version = "0.1.0"
[features]
default = [
"defmt-default",
"f429",
]
defmt-default = []
defmt-trace = []
@ -15,23 +16,23 @@ defmt-info = []
defmt-warn = []
defmt-error = []
stm32f401 = ["embassy-stm32/stm32f401"]
stm32f405 = ["embassy-stm32/stm32f405"]
stm32f407 = ["embassy-stm32/stm32f407"]
stm32f410 = ["embassy-stm32/stm32f410"]
stm32f411 = ["embassy-stm32/stm32f411"]
stm32f412 = ["embassy-stm32/stm32f412"]
stm32f413 = ["embassy-stm32/stm32f413"]
stm32f415 = ["embassy-stm32/stm32f405"]
stm32f417 = ["embassy-stm32/stm32f407"]
stm32f423 = ["embassy-stm32/stm32f413"]
stm32f427 = ["embassy-stm32/stm32f427"]
stm32f429 = ["embassy-stm32/stm32f429"]
stm32f437 = ["embassy-stm32/stm32f427"]
stm32f439 = ["embassy-stm32/stm32f429"]
stm32f446 = ["embassy-stm32/stm32f446"]
stm32f469 = ["embassy-stm32/stm32f469"]
stm32f479 = ["embassy-stm32/stm32f469"]
f401 = ["embassy-stm32/f401"]
f405 = ["embassy-stm32/f405"]
f407 = ["embassy-stm32/f407"]
f410 = ["embassy-stm32/f410"]
f411 = ["embassy-stm32/f411"]
f412 = ["embassy-stm32/f412"]
f413 = ["embassy-stm32/f413"]
f415 = ["embassy-stm32/f405"]
f417 = ["embassy-stm32/f407"]
f423 = ["embassy-stm32/f413"]
f427 = ["embassy-stm32/f427"]
f429 = ["embassy-stm32/f429"]
f437 = ["embassy-stm32/f427"]
f439 = ["embassy-stm32/f429"]
f446 = ["embassy-stm32/f446"]
f469 = ["embassy-stm32/f469"]
f479 = ["embassy-stm32/f469"]
[dependencies]
@ -39,6 +40,7 @@ embassy = { version = "0.1.0", path = "../embassy", features = ["defmt", "defmt-
embassy-traits = { version = "0.1.0", path = "../embassy-traits", features = ["defmt"] }
embassy-stm32 = { version = "0.1.0", path = "../embassy-stm32" }
embassy-extras = {version = "0.1.0", path = "../embassy-extras" }
stm32f4 = { version = "0.13", features = ["stm32f429"] }
defmt = "0.2.0"
defmt-rtt = "0.2.0"
@ -49,5 +51,3 @@ embedded-hal = { version = "0.2.4" }
panic-probe = "0.1.0"
futures = { version = "0.3.8", default-features = false, features = ["async-await"] }
rtt-target = { version = "0.3", features = ["cortex-m"] }
bxcan = "0.5.0"
usb-device = "0.2.7"

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@ -0,0 +1,52 @@
#![no_std]
#![no_main]
#![feature(trait_alias)]
#![feature(min_type_alias_impl_trait)]
#![feature(impl_trait_in_bindings)]
#![feature(type_alias_impl_trait)]
#[path = "../example_common.rs"]
mod example_common;
use embassy_stm32::gpio::{Level, Output};
use embedded_hal::digital::v2::OutputPin;
use example_common::*;
use cortex_m_rt::entry;
use stm32f4::stm32f429 as pac;
#[entry]
fn main() -> ! {
info!("Hello World!");
let pp = pac::Peripherals::take().unwrap();
pp.DBGMCU.cr.modify(|_, w| {
w.dbg_sleep().set_bit();
w.dbg_standby().set_bit();
w.dbg_stop().set_bit()
});
pp.RCC.ahb1enr.modify(|_, w| w.dma1en().enabled());
pp.RCC.ahb1enr.modify(|_, w| {
w.gpioaen().enabled();
w.gpioben().enabled();
w.gpiocen().enabled();
w.gpioden().enabled();
w.gpioeen().enabled();
w.gpiofen().enabled();
w
});
let p = embassy_stm32::Peripherals::take().unwrap();
let mut led = Output::new(p.PB7, Level::High);
loop {
info!("high");
led.set_high().unwrap();
cortex_m::asm::delay(1_000_000);
info!("low");
led.set_low().unwrap();
cortex_m::asm::delay(1_000_000);
}
}

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@ -1,42 +0,0 @@
#![no_std]
#![no_main]
#![feature(trait_alias)]
#![feature(min_type_alias_impl_trait)]
#![feature(impl_trait_in_bindings)]
#![feature(type_alias_impl_trait)]
#[path = "../example_common.rs"]
mod example_common;
use example_common::*;
use cortex_m_rt::entry;
use embassy_stm32::hal::prelude::*;
#[entry]
fn main() -> ! {
info!("Hello World!");
let p = embassy_stm32::pac::Peripherals::take().unwrap();
p.DBGMCU.cr.modify(|_, w| {
w.dbg_sleep().set_bit();
w.dbg_standby().set_bit();
w.dbg_stop().set_bit()
});
p.RCC.ahb1enr.modify(|_, w| w.dma1en().enabled());
let gpioa = p.GPIOA.split();
let gpioc = p.GPIOC.split();
let mut led = gpioc.pc13.into_push_pull_output();
let button = gpioa.pa0.into_pull_up_input();
led.set_low().unwrap();
loop {
if button.is_high().unwrap() {
led.set_low().unwrap();
} else {
led.set_high().unwrap();
}
}
}

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@ -11,31 +11,28 @@ defmt-info = [ ]
defmt-warn = [ ]
defmt-error = [ ]
stm32f401 = ["stm32f4xx-hal/stm32f401"]
stm32f405 = ["stm32f4xx-hal/stm32f405"]
stm32f407 = ["stm32f4xx-hal/stm32f407"]
stm32f410 = ["stm32f4xx-hal/stm32f410"]
stm32f411 = ["stm32f4xx-hal/stm32f411"]
stm32f412 = ["stm32f4xx-hal/stm32f412"]
stm32f413 = ["stm32f4xx-hal/stm32f413"]
stm32f415 = ["stm32f4xx-hal/stm32f405"]
stm32f417 = ["stm32f4xx-hal/stm32f407"]
stm32f423 = ["stm32f4xx-hal/stm32f413"]
stm32f427 = ["stm32f4xx-hal/stm32f427"]
stm32f429 = ["stm32f4xx-hal/stm32f429"]
stm32f437 = ["stm32f4xx-hal/stm32f427"]
stm32f439 = ["stm32f4xx-hal/stm32f429"]
stm32f446 = ["stm32f4xx-hal/stm32f446"]
stm32f469 = ["stm32f4xx-hal/stm32f469"]
stm32f479 = ["stm32f4xx-hal/stm32f469"]
stm32l0x1 = ["stm32l0xx-hal/stm32l0x1"]
stm32l0x2 = ["stm32l0xx-hal/stm32l0x2"]
stm32l0x3 = ["stm32l0xx-hal/stm32l0x3"]
f4 = []
f401 = ["f4"]
f405 = ["f4"]
f407 = ["f4"]
f410 = ["f4"]
f411 = ["f4"]
f412 = ["f4"]
f413 = ["f4"]
f415 = ["f4"]
f417 = ["f4"]
f423 = ["f4"]
f427 = ["f4"]
f429 = ["f4"]
f437 = ["f4"]
f439 = ["f4"]
f446 = ["f4"]
f469 = ["f4"]
f479 = ["f4"]
[dependencies]
embassy = { version = "0.1.0", path = "../embassy" }
embassy-macros = { version = "0.1.0", path = "../embassy-macros", features = ["stm32"]}
embassy-macros = { version = "0.1.0", path = "../embassy-macros" }
embassy-extras = {version = "0.1.0", path = "../embassy-extras" }
defmt = { version = "0.2.0", optional = true }
@ -43,9 +40,5 @@ log = { version = "0.4.11", optional = true }
cortex-m-rt = "0.6.13"
cortex-m = "0.7.1"
embedded-hal = { version = "0.2.4" }
embedded-dma = { version = "0.1.2" }
bxcan = "0.5.0"
nb = "*"
stm32f4xx-hal = { version = "0.9.0", features = ["rt", "can", "usb_fs"], optional = true }
stm32l0xx-hal = { version = "0.7.0", features = ["rt"], optional = true }
futures = { version = "0.3.5", default-features = false, features = ["async-await"] }
stm32-metapac = { path = "../../stm32-metapac"}

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@ -0,0 +1,6 @@
use embassy_extras::peripherals;
peripherals!(
PA0, PA1, PA2, PA3, PA4, PA5, PA6, PA7, PA8, PA9, PA10, PA11, PA12, PA13, PA14, PA15, PB0, PB1,
PB2, PB3, PB4, PB5, PB6, PB7, PB8, PB9, PB10, PB11, PB12, PB13, PB14, PB15,
);

370
embassy-stm32/src/gpio.rs Normal file
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@ -0,0 +1,370 @@
use core::convert::Infallible;
use core::hint::unreachable_unchecked;
use core::marker::PhantomData;
use embassy::util::PeripheralBorrow;
use embassy_extras::{impl_unborrow, unborrow};
use embedded_hal::digital::v2::{InputPin, OutputPin, StatefulOutputPin};
use gpio::vals::{self, Pupdr};
use crate::pac;
use crate::pac::gpio_v2 as gpio;
use crate::peripherals;
/// A GPIO port with up to 16 pins.
#[derive(Debug, Eq, PartialEq)]
pub enum Port {
PortA,
PortB,
}
/// Pull setting for an input.
#[derive(Debug, Eq, PartialEq)]
#[cfg_attr(feature = "defmt", derive(defmt::Format))]
pub enum Pull {
None,
Up,
Down,
}
/*
/// GPIO input driver.
pub struct Input<'d, T: Pin> {
pub(crate) pin: T,
phantom: PhantomData<&'d mut T>,
}
impl<'d, T: Pin> Input<'d, T> {
pub fn new(pin: impl PeripheralBorrow<Target = T> + 'd, pull: Pull) -> Self {
unborrow!(pin);
pin.conf().write(|w| {
w.dir().input();
w.input().connect();
match pull {
Pull::None => {
w.pull().disabled();
}
Pull::Up => {
w.pull().pullup();
}
Pull::Down => {
w.pull().pulldown();
}
}
w.drive().s0s1();
w.sense().disabled();
w
});
Self {
pin,
phantom: PhantomData,
}
}
}
impl<'d, T: Pin> Drop for Input<'d, T> {
fn drop(&mut self) {
self.pin.conf().reset();
}
}
impl<'d, T: Pin> InputPin for Input<'d, T> {
type Error = Infallible;
fn is_high(&self) -> Result<bool, Self::Error> {
self.is_low().map(|v| !v)
}
fn is_low(&self) -> Result<bool, Self::Error> {
Ok(self.pin.block().in_.read().bits() & (1 << self.pin.pin()) == 0)
}
}
*/
/// Digital input or output level.
#[derive(Debug, Eq, PartialEq)]
#[cfg_attr(feature = "defmt", derive(defmt::Format))]
pub enum Level {
Low,
High,
}
/// GPIO output driver.
pub struct Output<'d, T: Pin> {
pub(crate) pin: T,
phantom: PhantomData<&'d mut T>,
}
impl<'d, T: Pin> Output<'d, T> {
pub fn new(pin: impl PeripheralBorrow<Target = T> + 'd, initial_output: Level) -> Self {
unborrow!(pin);
match initial_output {
Level::High => pin.set_high(),
Level::Low => pin.set_low(),
}
cortex_m::interrupt::free(|_| unsafe {
let r = pin.block();
let n = pin.pin() as usize;
r.pupdr().modify(|w| w.set_pupdr(n, vals::Pupdr::FLOATING));
r.otyper().modify(|w| w.set_ot(n, vals::Ot::PUSHPULL));
r.moder().modify(|w| w.set_moder(n, vals::Moder::OUTPUT));
});
Self {
pin,
phantom: PhantomData,
}
}
}
impl<'d, T: Pin> Drop for Output<'d, T> {
fn drop(&mut self) {
cortex_m::interrupt::free(|_| unsafe {
let r = self.pin.block();
let n = self.pin.pin() as usize;
r.moder().modify(|w| w.set_moder(n, vals::Moder::INPUT));
});
}
}
impl<'d, T: Pin> OutputPin for Output<'d, T> {
type Error = Infallible;
/// Set the output as high.
fn set_high(&mut self) -> Result<(), Self::Error> {
self.pin.set_high();
Ok(())
}
/// Set the output as low.
fn set_low(&mut self) -> Result<(), Self::Error> {
self.pin.set_low();
Ok(())
}
}
impl<'d, T: Pin> StatefulOutputPin for Output<'d, T> {
/// Is the output pin set as high?
fn is_set_high(&self) -> Result<bool, Self::Error> {
self.is_set_low().map(|v| !v)
}
/// Is the output pin set as low?
fn is_set_low(&self) -> Result<bool, Self::Error> {
let state = unsafe { self.pin.block().odr().read().odr(self.pin.pin() as _) };
Ok(state == vals::Odr::LOW)
}
}
pub(crate) mod sealed {
use super::*;
pub trait Pin {
fn pin_port(&self) -> u8;
#[inline]
fn _pin(&self) -> u8 {
self.pin_port() % 16
}
#[inline]
fn _port(&self) -> u8 {
self.pin_port() / 16
}
#[inline]
fn block(&self) -> gpio::Gpio {
let p = 0x4002_0000 + (self._port() as u32) * 0x400;
gpio::Gpio(p as *mut u8)
}
/// Set the output as high.
#[inline]
fn set_high(&self) {
unsafe {
self.block()
.bsrr()
.write(|w| w.set_bs(self._pin() as _, true));
}
}
/// Set the output as low.
#[inline]
fn set_low(&self) {
unsafe {
self.block()
.bsrr()
.write(|w| w.set_br(self._pin() as _, true));
}
}
}
pub trait OptionalPin {}
}
pub trait Pin: sealed::Pin + Sized {
/// Number of the pin within the port (0..31)
#[inline]
fn pin(&self) -> u8 {
self._pin()
}
/// Port of the pin
#[inline]
fn port(&self) -> Port {
match self.pin_port() / 16 {
0 => Port::PortA,
1 => Port::PortB,
_ => unsafe { unreachable_unchecked() },
}
}
#[inline]
fn psel_bits(&self) -> u32 {
self.pin_port() as u32
}
/// Convert from concrete pin type PX_XX to type erased `AnyPin`.
#[inline]
fn degrade(self) -> AnyPin {
AnyPin {
pin_port: self.pin_port(),
}
}
}
// Type-erased GPIO pin
pub struct AnyPin {
pin_port: u8,
}
impl AnyPin {
#[inline]
pub unsafe fn steal(pin_port: u8) -> Self {
Self { pin_port }
}
}
impl_unborrow!(AnyPin);
impl Pin for AnyPin {}
impl sealed::Pin for AnyPin {
#[inline]
fn pin_port(&self) -> u8 {
self.pin_port
}
}
// ====================
pub trait OptionalPin: sealed::OptionalPin + Sized {
type Pin: Pin;
fn pin(&self) -> Option<&Self::Pin>;
fn pin_mut(&mut self) -> Option<&mut Self::Pin>;
#[inline]
fn psel_bits(&self) -> u32 {
self.pin().map_or(1u32 << 31, |pin| Pin::psel_bits(pin))
}
/// Convert from concrete pin type PX_XX to type erased `Option<AnyPin>`.
#[inline]
fn degrade_optional(mut self) -> Option<AnyPin> {
self.pin_mut()
.map(|pin| unsafe { core::ptr::read(pin) }.degrade())
}
}
impl<T: Pin> sealed::OptionalPin for T {}
impl<T: Pin> OptionalPin for T {
type Pin = T;
#[inline]
fn pin(&self) -> Option<&T> {
Some(self)
}
#[inline]
fn pin_mut(&mut self) -> Option<&mut T> {
Some(self)
}
}
// Uninhabited enum, so it's actually impossible to create a DummyPin value.
#[doc(hidden)]
pub enum DummyPin {}
impl Pin for DummyPin {}
impl sealed::Pin for DummyPin {
#[inline]
fn pin_port(&self) -> u8 {
unreachable!()
}
}
#[derive(Clone, Copy, Debug)]
pub struct NoPin;
impl_unborrow!(NoPin);
impl sealed::OptionalPin for NoPin {}
impl OptionalPin for NoPin {
type Pin = DummyPin;
#[inline]
fn pin(&self) -> Option<&DummyPin> {
None
}
#[inline]
fn pin_mut(&mut self) -> Option<&mut DummyPin> {
None
}
}
// ====================
macro_rules! impl_pin {
($type:ident, $port_num:expr, $pin_num:expr) => {
impl Pin for peripherals::$type {}
impl sealed::Pin for peripherals::$type {
#[inline]
fn pin_port(&self) -> u8 {
$port_num * 16 + $pin_num
}
}
};
}
impl_pin!(PA0, 0, 0);
impl_pin!(PA1, 0, 1);
impl_pin!(PA2, 0, 2);
impl_pin!(PA3, 0, 3);
impl_pin!(PA4, 0, 4);
impl_pin!(PA5, 0, 5);
impl_pin!(PA6, 0, 6);
impl_pin!(PA7, 0, 7);
impl_pin!(PA8, 0, 8);
impl_pin!(PA9, 0, 9);
impl_pin!(PA10, 0, 10);
impl_pin!(PA11, 0, 11);
impl_pin!(PA12, 0, 12);
impl_pin!(PA13, 0, 13);
impl_pin!(PA14, 0, 14);
impl_pin!(PA15, 0, 15);
impl_pin!(PB0, 1, 0);
impl_pin!(PB1, 1, 1);
impl_pin!(PB2, 1, 2);
impl_pin!(PB3, 1, 3);
impl_pin!(PB4, 1, 4);
impl_pin!(PB5, 1, 5);
impl_pin!(PB6, 1, 6);
impl_pin!(PB7, 1, 7);
impl_pin!(PB8, 1, 8);
impl_pin!(PB9, 1, 9);
impl_pin!(PB10, 1, 10);
impl_pin!(PB11, 1, 11);
impl_pin!(PB12, 1, 12);
impl_pin!(PB13, 1, 13);
impl_pin!(PB14, 1, 14);
impl_pin!(PB15, 1, 15);

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@ -6,395 +6,30 @@
#![feature(type_alias_impl_trait)]
#![allow(incomplete_features)]
#[cfg(any(
feature = "stm32f401",
feature = "stm32f405",
feature = "stm32f407",
feature = "stm32f410",
feature = "stm32f411",
feature = "stm32f412",
feature = "stm32f413",
feature = "stm32f415",
feature = "stm32f417",
feature = "stm32f423",
feature = "stm32f427",
feature = "stm32f429",
feature = "stm32f437",
feature = "stm32f439",
feature = "stm32f446",
feature = "stm32f469",
feature = "stm32f479",
))]
mod f4;
#[cfg(any(
feature = "stm32f401",
feature = "stm32f405",
feature = "stm32f407",
feature = "stm32f412",
feature = "stm32f413",
feature = "stm32f415",
feature = "stm32f417",
feature = "stm32f423",
feature = "stm32f427",
feature = "stm32f429",
feature = "stm32f437",
feature = "stm32f439",
feature = "stm32f446",
feature = "stm32f469",
feature = "stm32f479",
))]
pub use {stm32f4xx_hal as hal, stm32f4xx_hal::stm32 as pac};
#[cfg(any(feature = "stm32l0x1", feature = "stm32l0x2", feature = "stm32l0x3",))]
pub use {stm32l0xx_hal as hal, stm32l0xx_hal::pac};
pub mod fmt;
pub mod exti;
pub mod interrupt;
#[cfg_attr(feature = "f401", path = "chip/f401.rs")]
#[cfg_attr(feature = "f405", path = "chip/f405.rs")]
#[cfg_attr(feature = "f407", path = "chip/f407.rs")]
#[cfg_attr(feature = "f410", path = "chip/f410.rs")]
#[cfg_attr(feature = "f411", path = "chip/f411.rs")]
#[cfg_attr(feature = "f412", path = "chip/f412.rs")]
#[cfg_attr(feature = "f413", path = "chip/f413.rs")]
#[cfg_attr(feature = "f415", path = "chip/f415.rs")]
#[cfg_attr(feature = "f417", path = "chip/f417.rs")]
#[cfg_attr(feature = "f423", path = "chip/f423.rs")]
#[cfg_attr(feature = "f427", path = "chip/f427.rs")]
#[cfg_attr(feature = "f429", path = "chip/f429.rs")]
#[cfg_attr(feature = "f437", path = "chip/f437.rs")]
#[cfg_attr(feature = "f439", path = "chip/f439.rs")]
#[cfg_attr(feature = "f446", path = "chip/f446.rs")]
#[cfg_attr(feature = "f469", path = "chip/f469.rs")]
#[cfg_attr(feature = "f479", path = "chip/f479.rs")]
mod chip;
pub use chip::{peripherals, Peripherals};
#[cfg(any(
feature = "stm32f401",
feature = "stm32f405",
feature = "stm32f407",
feature = "stm32f412",
feature = "stm32f413",
feature = "stm32f415",
feature = "stm32f417",
feature = "stm32f423",
feature = "stm32f427",
feature = "stm32f429",
feature = "stm32f437",
feature = "stm32f439",
feature = "stm32f446",
feature = "stm32f469",
feature = "stm32f479",
))]
pub mod can;
pub mod gpio;
//pub mod exti;
//pub mod interrupt;
#[cfg(any(
feature = "stm32f401",
feature = "stm32f405",
feature = "stm32f407",
feature = "stm32f412",
feature = "stm32f413",
feature = "stm32f415",
feature = "stm32f417",
feature = "stm32f423",
feature = "stm32f427",
feature = "stm32f429",
feature = "stm32f437",
feature = "stm32f439",
feature = "stm32f446",
feature = "stm32f469",
feature = "stm32f479",
))]
pub mod rtc;
#[cfg(any(
feature = "stm32f401",
feature = "stm32f405",
feature = "stm32f407",
feature = "stm32f412",
feature = "stm32f413",
feature = "stm32f415",
feature = "stm32f417",
feature = "stm32f423",
feature = "stm32f427",
feature = "stm32f429",
feature = "stm32f437",
feature = "stm32f439",
feature = "stm32f446",
feature = "stm32f469",
feature = "stm32f479",
))]
pub use f4::{serial, spi};
#[cfg(any(
feature = "stm32f401",
feature = "stm32f405",
feature = "stm32f407",
feature = "stm32f410",
feature = "stm32f411",
feature = "stm32f412",
feature = "stm32f413",
feature = "stm32f415",
feature = "stm32f417",
feature = "stm32f423",
feature = "stm32f427",
feature = "stm32f429",
feature = "stm32f437",
feature = "stm32f439",
feature = "stm32f446",
feature = "stm32f469",
feature = "stm32f479",
))]
unsafe impl embassy_extras::usb::USBInterrupt for interrupt::OTG_FS {}
use core::option::Option;
use hal::prelude::*;
use hal::rcc::Clocks;
#[cfg(feature = "stm32f446")]
embassy_extras::std_peripherals! {
DCMI,
FMC,
DBGMCU,
DMA2,
DMA1,
// RCC,
GPIOH,
GPIOG,
GPIOF,
GPIOE,
GPIOD,
GPIOC,
GPIOB,
GPIOA,
SYSCFG,
SPI1,
SPI2,
SPI3,
SPI4,
ADC1,
ADC2,
ADC3,
USART6,
USART1,
USART2,
USART3,
DAC,
I2C3,
I2C2,
I2C1,
IWDG,
WWDG,
RTC,
UART4,
UART5,
ADC_COMMON,
TIM1,
TIM2,
TIM8,
// TIM3,
TIM4,
TIM5,
TIM9,
TIM12,
TIM10,
TIM13,
TIM14,
TIM11,
TIM6,
TIM7,
CRC,
OTG_FS_GLOBAL,
OTG_FS_HOST,
OTG_FS_DEVICE,
OTG_FS_PWRCLK,
CAN1,
CAN2,
FLASH,
EXTI,
OTG_HS_GLOBAL,
OTG_HS_HOST,
OTG_HS_DEVICE,
OTG_HS_PWRCLK,
SAI1,
SAI2,
PWR,
QUADSPI,
SPDIFRX,
// SDMMC,
HDMI_CEC,
FPU,
STK,
NVIC_STIR,
FPU_CPACR,
SCB_ACTRL,
}
#[cfg(feature = "stm32f405")]
embassy_extras::std_peripherals! {
RNG,
DCMI,
FSMC,
DBGMCU,
DMA2,
DMA1,
// RCC,
GPIOI,
GPIOH,
GPIOG,
GPIOF,
GPIOE,
GPIOD,
GPIOC,
GPIOJ,
GPIOK,
GPIOB,
GPIOA,
SYSCFG,
SPI1,
SPI2,
SPI3,
I2S2EXT,
I2S3EXT,
SPI4,
SPI5,
SPI6,
SDIO,
ADC1,
ADC2,
ADC3,
USART6,
USART1,
USART2,
USART3,
DAC,
PWR,
I2C3,
I2C2,
I2C1,
IWDG,
WWDG,
RTC,
UART4,
UART5,
UART7,
UART8,
ADC_COMMON,
TIM1,
TIM8,
TIM2,
// TIM3,
TIM4,
TIM5,
TIM9,
TIM12,
TIM10,
TIM13,
TIM14,
TIM11,
TIM6,
TIM7,
ETHERNET_MAC,
ETHERNET_MMC,
ETHERNET_PTP,
ETHERNET_DMA,
CRC,
OTG_FS_GLOBAL,
OTG_FS_HOST,
OTG_FS_DEVICE,
OTG_FS_PWRCLK,
CAN1,
CAN2,
FLASH,
EXTI,
OTG_HS_GLOBAL,
OTG_HS_HOST,
OTG_HS_DEVICE,
OTG_HS_PWRCLK,
SAI1,
LTDC,
HASH,
CRYP,
FPU,
STK,
NVIC_STIR,
FPU_CPACR,
SCB_ACTRL,
}
#[cfg(feature = "stm32f407")]
embassy_extras::std_peripherals! {
RNG,
DCMI,
FSMC,
DBGMCU,
DMA2,
DMA1,
// RCC,
GPIOI,
GPIOH,
GPIOG,
GPIOF,
GPIOE,
GPIOD,
GPIOC,
GPIOJ,
GPIOK,
GPIOB,
GPIOA,
SYSCFG,
SPI1,
SPI2,
SPI3,
I2S2EXT,
I2S3EXT,
SPI4,
SPI5,
SPI6,
SDIO,
ADC1,
ADC2,
ADC3,
USART6,
USART1,
USART2,
USART3,
DAC,
PWR,
I2C3,
I2C2,
I2C1,
IWDG,
WWDG,
RTC,
UART4,
UART5,
UART7,
UART8,
ADC_COMMON,
TIM1,
TIM8,
TIM2,
// TIM3,
TIM4,
TIM5,
TIM9,
TIM12,
TIM10,
TIM13,
TIM14,
TIM11,
TIM6,
TIM7,
ETHERNET_MAC,
ETHERNET_MMC,
ETHERNET_PTP,
ETHERNET_DMA,
CRC,
OTG_FS_GLOBAL,
OTG_FS_HOST,
OTG_FS_DEVICE,
OTG_FS_PWRCLK,
CAN1,
CAN2,
FLASH,
EXTI,
OTG_HS_GLOBAL,
OTG_HS_HOST,
OTG_HS_DEVICE,
OTG_HS_PWRCLK,
SAI1,
LTDC,
HASH,
CRYP,
FPU,
STK,
NVIC_STIR,
FPU_CPACR,
SCB_ACTRL,
}
pub(crate) use stm32_metapac as pac;