Add wb55 clocks
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@ -191,6 +191,7 @@ impl RccExt for RCC {
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sys: sys_clk.hz(),
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ahb1: ahb_freq.hz(),
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ahb2: ahb_freq.hz(),
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ahb3: ahb_freq.hz(),
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apb1: apb1_freq.hz(),
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apb2: apb2_freq.hz(),
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}
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@ -531,6 +531,7 @@ pub unsafe fn init(config: Config) {
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sys: core_clocks.c_ck,
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ahb1: core_clocks.hclk,
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ahb2: core_clocks.hclk,
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ahb3: core_clocks.hclk,
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apb1: core_clocks.pclk1,
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apb2: core_clocks.pclk2,
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apb4: core_clocks.pclk4,
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@ -190,6 +190,7 @@ impl RccExt for RCC {
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sys: sys_clk.hz(),
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ahb1: ahb_freq.hz(),
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ahb2: ahb_freq.hz(),
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ahb3: ahb_freq.hz(),
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apb1: apb1_freq.hz(),
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apb2: apb2_freq.hz(),
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}
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@ -14,12 +14,15 @@ pub struct Clocks {
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#[cfg(any(rcc_l0))]
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pub ahb: Hertz,
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#[cfg(any(rcc_l4, rcc_f4, rcc_h7))]
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#[cfg(any(rcc_l4, rcc_f4, rcc_h7, rcc_wb55))]
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pub ahb1: Hertz,
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#[cfg(any(rcc_l4, rcc_f4, rcc_h7))]
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#[cfg(any(rcc_l4, rcc_f4, rcc_h7, rcc_wb55))]
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pub ahb2: Hertz,
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#[cfg(any(rcc_l4, rcc_f4, rcc_h7, rcc_wb55))]
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pub ahb3: Hertz,
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#[cfg(any(rcc_h7))]
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pub apb4: Hertz,
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}
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@ -54,6 +57,9 @@ cfg_if::cfg_if! {
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} else if #[cfg(rcc_f4)] {
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mod f4;
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pub use f4::*;
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} else if #[cfg(rcc_wb55)] {
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mod wb55;
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pub use wb55::*;
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} else {
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#[derive(Default)]
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pub struct Config {}
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204
embassy-stm32/src/rcc/wb55/mod.rs
Normal file
204
embassy-stm32/src/rcc/wb55/mod.rs
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@ -0,0 +1,204 @@
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pub use super::types::*;
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use crate::pac;
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use crate::peripherals::{self, RCC};
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use crate::rcc::{get_freqs, set_freqs, Clocks};
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use crate::time::Hertz;
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use crate::time::U32Ext;
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use core::marker::PhantomData;
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use embassy::util::Unborrow;
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use embassy_extras::unborrow;
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/// Most of clock setup is copied from stm32l0xx-hal, and adopted to the generated PAC,
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/// and with the addition of the init function to configure a system clock.
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/// Only the basic setup using the HSE and HSI clocks are supported as of now.
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/// HSI speed
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pub const HSI_FREQ: u32 = 16_000_000;
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/// System clock mux source
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#[derive(Clone, Copy)]
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pub enum ClockSrc {
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HSE(Hertz),
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HSI16,
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}
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impl Into<u8> for APBPrescaler {
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fn into(self) -> u8 {
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match self {
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APBPrescaler::NotDivided => 1,
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APBPrescaler::Div2 => 0x04,
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APBPrescaler::Div4 => 0x05,
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APBPrescaler::Div8 => 0x06,
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APBPrescaler::Div16 => 0x07,
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}
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}
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}
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impl Into<u8> for AHBPrescaler {
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fn into(self) -> u8 {
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match self {
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AHBPrescaler::NotDivided => 1,
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AHBPrescaler::Div2 => 0x08,
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AHBPrescaler::Div4 => 0x09,
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AHBPrescaler::Div8 => 0x0a,
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AHBPrescaler::Div16 => 0x0b,
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AHBPrescaler::Div64 => 0x0c,
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AHBPrescaler::Div128 => 0x0d,
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AHBPrescaler::Div256 => 0x0e,
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AHBPrescaler::Div512 => 0x0f,
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}
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}
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}
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/// Clocks configutation
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pub struct Config {
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mux: ClockSrc,
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ahb_pre: AHBPrescaler,
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apb1_pre: APBPrescaler,
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apb2_pre: APBPrescaler,
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}
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impl Default for Config {
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#[inline]
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fn default() -> Config {
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Config {
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mux: ClockSrc::HSI16,
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ahb_pre: AHBPrescaler::NotDivided,
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apb1_pre: APBPrescaler::NotDivided,
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apb2_pre: APBPrescaler::NotDivided,
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}
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}
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}
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impl Config {
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#[inline]
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pub fn clock_src(mut self, mux: ClockSrc) -> Self {
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self.mux = mux;
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self
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}
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#[inline]
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pub fn ahb_pre(mut self, pre: AHBPrescaler) -> Self {
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self.ahb_pre = pre;
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self
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}
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#[inline]
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pub fn apb1_pre(mut self, pre: APBPrescaler) -> Self {
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self.apb1_pre = pre;
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self
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}
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#[inline]
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pub fn apb2_pre(mut self, pre: APBPrescaler) -> Self {
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self.apb2_pre = pre;
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self
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}
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}
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/// RCC peripheral
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pub struct Rcc<'d> {
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_rb: peripherals::RCC,
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phantom: PhantomData<&'d mut peripherals::RCC>,
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}
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impl<'d> Rcc<'d> {
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pub fn new(rcc: impl Unborrow<Target = peripherals::RCC> + 'd) -> Self {
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unborrow!(rcc);
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Self {
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_rb: rcc,
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phantom: PhantomData,
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}
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}
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// Safety: RCC init must have been called
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pub fn clocks(&self) -> &'static Clocks {
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unsafe { get_freqs() }
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}
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}
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/// Extension trait that freezes the `RCC` peripheral with provided clocks configuration
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pub trait RccExt {
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fn freeze(self, config: Config) -> Clocks;
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}
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impl RccExt for RCC {
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#[inline]
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fn freeze(self, cfgr: Config) -> Clocks {
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let rcc = pac::RCC;
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let (sys_clk, sw) = match cfgr.mux {
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ClockSrc::HSI16 => {
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// Enable HSI16
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unsafe {
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rcc.cr().write(|w| w.set_hsion(true));
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while !rcc.cr().read().hsirdy() {}
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}
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(HSI_FREQ, 0x01)
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}
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ClockSrc::HSE(freq) => {
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// Enable HSE
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unsafe {
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rcc.cr().write(|w| w.set_hseon(true));
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while !rcc.cr().read().hserdy() {}
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}
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(freq.0, 0x02)
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}
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};
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unsafe {
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rcc.cfgr().modify(|w| {
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w.set_sw(sw.into());
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w.set_hpre(cfgr.ahb_pre.into());
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w.set_ppre1(cfgr.apb1_pre.into());
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w.set_ppre2(cfgr.apb2_pre.into());
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});
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}
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let ahb_freq: u32 = match cfgr.ahb_pre {
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AHBPrescaler::NotDivided => sys_clk,
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pre => {
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let pre: u8 = pre.into();
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let pre = 1 << (pre as u32 - 7);
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sys_clk / pre
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}
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};
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let apb1_freq = match cfgr.apb1_pre {
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APBPrescaler::NotDivided => ahb_freq,
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pre => {
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let pre: u8 = pre.into();
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let pre: u8 = 1 << (pre - 3);
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let freq = ahb_freq / pre as u32;
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freq
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}
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};
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let apb2_freq = match cfgr.apb2_pre {
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APBPrescaler::NotDivided => ahb_freq,
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pre => {
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let pre: u8 = pre.into();
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let pre: u8 = 1 << (pre - 3);
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let freq = ahb_freq / (1 << (pre as u8 - 3));
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freq
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}
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};
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Clocks {
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sys: sys_clk.hz(),
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ahb1: ahb_freq.hz(),
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ahb2: ahb_freq.hz(),
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ahb3: ahb_freq.hz(),
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apb1: apb1_freq.hz(),
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apb2: apb2_freq.hz(),
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}
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}
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}
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pub unsafe fn init(config: Config) {
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let r = <peripherals::RCC as embassy::util::Steal>::steal();
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let clocks = r.freeze(config);
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set_freqs(clocks);
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}
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@ -86,7 +86,7 @@ fn find_reg_for_field<'c>(
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rcc.fieldsets.iter().find_map(|(name, fieldset)| {
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// Workaround for some families that prefix register aliases with C1_, which does
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// not help matching for clock name.
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if name.starts_with("C1") {
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if name.starts_with("C1") || name.starts_with("C2") {
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None
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} else if name.starts_with(reg_prefix) {
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fieldset
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