Small changes to support DAC example.
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		@@ -22,6 +22,7 @@ embassy-traits = { version = "0.1.0", path = "../../embassy-traits", features =
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embassy-stm32 = { version = "0.1.0", path = "../../embassy-stm32", features = ["defmt", "defmt-trace", "stm32l4s5vi"]  }
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					embassy-stm32 = { version = "0.1.0", path = "../../embassy-stm32", features = ["defmt", "defmt-trace", "stm32l4s5vi"]  }
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embassy-extras = {version = "0.1.0", path = "../../embassy-extras" }
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					embassy-extras = {version = "0.1.0", path = "../../embassy-extras" }
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stm32l4 = { version = "0.13", features = ["stm32l4x5" ] }
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					stm32l4 = { version = "0.13", features = ["stm32l4x5" ] }
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					stm32l4xx-hal = { version = "0.6.0", features = ["stm32l4x5"] }
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defmt = "0.2.0"
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					defmt = "0.2.0"
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defmt-rtt = "0.2.0"
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					defmt-rtt = "0.2.0"
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@@ -33,3 +34,6 @@ panic-probe = { version = "0.2.0", features= ["print-defmt"] }
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futures = { version = "0.3.8", default-features = false, features = ["async-await"] }
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					futures = { version = "0.3.8", default-features = false, features = ["async-await"] }
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rtt-target = { version = "0.3", features = ["cortex-m"] }
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					rtt-target = { version = "0.3", features = ["cortex-m"] }
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heapless = { version = "0.7.1", default-features = false }
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					heapless = { version = "0.7.1", default-features = false }
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					micromath = "2.0.0"
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										92
									
								
								examples/stm32l4/src/bin/dac.rs
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										92
									
								
								examples/stm32l4/src/bin/dac.rs
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,92 @@
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					#![no_std]
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					#![no_main]
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					#![feature(trait_alias)]
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					#![feature(min_type_alias_impl_trait)]
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					#![feature(impl_trait_in_bindings)]
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					#![feature(type_alias_impl_trait)]
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					#[path = "../example_common.rs"]
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					mod example_common;
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					use embassy_stm32::gpio::{Level, Output, Input, Pull, NoPin};
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					use embedded_hal::digital::v2::{OutputPin, InputPin};
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					use example_common::*;
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					use cortex_m_rt::entry;
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					//use stm32f4::stm32f429 as pac;
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					use stm32l4::stm32l4x5 as pac;
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					use embassy_stm32::spi::{Spi, MODE_0, ByteOrder, Config};
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					use embassy_stm32::time::Hertz;
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					use embedded_hal::blocking::spi::Transfer;
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					use stm32l4xx_hal::{rcc, prelude::*};
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					use stm32l4xx_hal::rcc::PllSource;
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					use embassy_stm32::dac::{Dac, Value, Channel};
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					use stm32l4xx_hal::gpio::PA4;
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					#[entry]
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					fn main() -> ! {
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					    info!("Hello World, dude!");
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					    //let pp = pac::Peripherals::take().unwrap();
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					    let pp = stm32l4xx_hal::stm32::Peripherals::take().unwrap();
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					    let mut flash = pp.FLASH.constrain();
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					    let mut rcc = pp.RCC.constrain();
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					    let mut pwr = pp.PWR.constrain(&mut rcc.apb1r1);
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					    // TRY the other clock configuration
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					    // let clocks = rcc.cfgr.freeze(&mut flash.acr);
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					    let clocks = rcc
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					        .cfgr
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					        .sysclk(80.mhz())
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					        .pclk1(80.mhz())
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					        .pclk2(80.mhz())
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					        .pll_source(PllSource::HSI16)
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					        .freeze(&mut flash.acr, &mut pwr);
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					    let pp = unsafe { pac::Peripherals::steal() };
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					    pp.DBGMCU.cr.modify(|_, w| {
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					        w.dbg_sleep().set_bit();
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					        w.dbg_standby().set_bit();
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					        w.dbg_stop().set_bit()
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					    });
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					    pp.RCC.apb1enr1.modify(|_, w| {
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					        w.dac1en().set_bit();
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					        w
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					    });
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					    pp.RCC.ahb2enr.modify(|_, w| {
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					        w.gpioaen().set_bit();
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					        w.gpioben().set_bit();
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					        w.gpiocen().set_bit();
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					        w.gpioden().set_bit();
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					        w.gpioeen().set_bit();
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					        w.gpiofen().set_bit();
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					        w
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					    });
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					    let p = embassy_stm32::init(Default::default());
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					    let mut dac = Dac::new(p.DAC1, p.PA4, NoPin);
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					    loop {
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					        for v in 0..=255 {
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					            dac.set(Channel::Ch1, Value::Bit8(to_sine_wave(v)));
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					            dac.trigger( Channel::Ch1 );
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					        }
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					    }
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					}
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					use micromath::F32Ext;
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					fn to_sine_wave(v: u8) -> u8 {
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					    if v >= 128 {
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					        // top half
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					        let r = 3.14 * ( (v-128) as f32/ 128.0) ;
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					        (r.sin() * 128.0 + 127.0) as u8
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					    } else {
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					        // bottom half
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					        let r = 3.14 + 3.14 * (v as f32/ 128.0);
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					        (r.sin() * 128.0 + 127.0) as u8
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					    }
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					}
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