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use cast::{u16, u32};
use cortex_m::peripheral::syst::SystClkSource;
use cortex_m::peripheral::SYST;
use crate::rcc::Clocks;
use embedded_hal::blocking::delay::{DelayMs, DelayUs};
#[derive(Clone)]
pub struct Delay {
clocks: Clocks,
}
const MAX_SYSTICK: u32 = 0x00FF_FFFF;
impl Delay {
pub fn new(mut syst: SYST, clocks: Clocks) -> Delay {
syst.set_clock_source(SystClkSource::Core);
syst.set_reload(MAX_SYSTICK);
syst.clear_current();
syst.enable_counter();
Delay { clocks }
}
}
impl DelayMs<u32> for Delay {
fn delay_ms(&mut self, mut ms: u32) {
const MAX_MS: u32 = 0x0000_FFFF;
while ms != 0 {
let current_ms = if ms <= MAX_MS { ms } else { MAX_MS };
self.delay_us(current_ms * 1_000);
ms -= current_ms;
}
}
}
impl DelayMs<u16> for Delay {
fn delay_ms(&mut self, ms: u16) {
self.delay_us(u32::from(ms) * 1_000);
}
}
impl DelayMs<u8> for Delay {
fn delay_ms(&mut self, ms: u8) {
self.delay_ms(u16(ms));
}
}
impl DelayUs<u32> for Delay {
fn delay_us(&mut self, us: u32) {
const MAX_RVR: u32 = 0x007F_FFFF;
let mut total_rvr = if self.clocks.sysclk().0 < 1_000_000 {
us / (1_000_000 / self.clocks.sysclk().0)
} else {
us * (self.clocks.sysclk().0 / 1_000_000)
};
while total_rvr != 0 {
let current_rvr = if total_rvr <= MAX_RVR {
total_rvr
} else {
MAX_RVR
};
let start_count = SYST::get_current();
total_rvr -= current_rvr;
while ((start_count - SYST::get_current()) % MAX_SYSTICK) < current_rvr {}
}
}
}
impl DelayUs<u16> for Delay {
fn delay_us(&mut self, us: u16) {
self.delay_us(u32(us))
}
}
impl DelayUs<u8> for Delay {
fn delay_us(&mut self, us: u8) {
self.delay_us(u32(us))
}
}